{"title":"Displays","description":"\u003ch2 data-mce-fragment=\"1\"\u003e\u003cstrong data-mce-fragment=\"1\"\u003eDisplays for Embedded Systems: Elevate Your User Interface\u003c\/strong\u003e\u003c\/h2\u003e\n\u003cp data-mce-fragment=\"1\"\u003eWelcome to The Debug Store's premium collection of displays specially curated for embedded systems. Whether you're a seasoned developer or a tech enthusiast, our range of displays is designed to enhance user experiences and streamline interactions with your embedded projects. From compact OLED screens to high-resolution touch panels, we offer a diverse selection that empowers you to create professional user interfaces that stand out.\u003c\/p\u003e\n\u003ch3 data-mce-fragment=\"1\"\u003e\u003cstrong data-mce-fragment=\"1\"\u003eWhy Choose Our Embedded System Displays?\u003c\/strong\u003e\u003c\/h3\u003e\n\u003cp data-mce-fragment=\"1\"\u003eAt The Debug Store, we understand the crucial role that displays play in modern embedded systems. A display isn't just a visual output; it's the bridge that connects users to your device.\u003c\/p\u003e","products":[{"product_id":"mikroe-597-mikromedia-pic32-board-uk","title":"mikroMedia for PIC32","description":"\u003ch2\u003eSupport for TFT 320x240 Display\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for PIC32 features a large TFT 32 x 240 display sheltered in a resistive touch panel. This functional touch screen allows data to enter and provide display at the same time. The current consumption with backlight on is 56.2 mA (backlight consumption is 42 mA). It displays graphics in 262,144 different colours.\u003c\/p\u003e\u003ch2\u003ePIC32MX460F512L Microcontroller\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for PIC32 development system includes high-performance PIC32MX460F512L microcontroller. It comes with integrated modules, and makes a great choice for developing applications with multimedia content when used in combination with other on-board modules. Featuring a 32-bit MIPS M4K core, this microcontroller features an 80 MHz frequency with 512 KB of program memory, 12 K boot flash; 32 K of RAM memory; 85 I\/O pins, etc.\u003c\/p\u003e\u003ch2\u003ePower Supply Options\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for PIC32 board can be powered using the provided Mini-B USB cable or using a Li-Polymer battery via the on-board battery connector. When using the Mini-B USB cable, on-board voltage regulators will provide the appropriate voltage levels to each part of the board. An MCP73832 battery charger circuit facilitates user to charge the battery over USB connection.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768334278845,"sku":"MIKROE-597","price":118.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-pic32-30238747033789.jpg?v=1685031420"},{"product_id":"mikromedia-dspic33ep-development-mikroe-1159-uk","title":"mikroMedia for DSPIC33EP","description":"\u003ch2\u003edsPIC33EP512MU810 Microcontroller\u003c\/h2\u003e\u003cp\u003eThis compact development system includes high-performance 16-bit dsPIC33EP512MU810 microcontroller. Together with its integrated modules and combination with other on-board modules, this microcontroller makes a great choice for developing applications with multimedia content. It features a 70 MIPS dsPIC DSC core with 512KB of program memory, 24KB of auxiliary flash; 53.248 Bytes of RAM memory; 83 I\/O pins, etc.\u003c\/p\u003e\u003ch2\u003ePower Supply Options\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for dsPIC33EP can be powered using the provided Mini-B USB cable or using a Li-Polymer battery via the on-board battery connector. When using the Mini-B USB cable, on-board voltage regulators will provide the appropriate voltage levels to each part of the board. An MCP73832 battery charger circuit facilitates user to charge the battery over USB connection.\u003c\/p\u003e\u003ch2\u003eLCD with Touch Screen\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for dsPIC33EP includes a TFT 320 x 240 display covered with a resistive touch panel. This functional touch screen enables data to be entered and displayed at the same time. It displays graphics in 262,144 different colours. The current consumption with backlight on is 56.2 mA (backlight consumption is 42 mA).\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768334639293,"sku":"MIKROE-1159","price":154.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-dspic33ep-30238859362493.jpg?v=1685031767"},{"product_id":"mikromedia-pic24ep-development-mikroe-1160-uk","title":"mikroMedia for PIC24EP","description":"\u003cp\u003emikroMedia™ for PIC24EP.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768334672061,"sku":"MIKROE-1160","price":118.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-pic24ep-30238748606653.jpg?v=1685031413"},{"product_id":"mikromedia-pic24-development-mikroe-608-uk","title":"mikroMedia for PIC24","description":"\u003ch2\u003ePIC24FJ256GB110 Microcontroller\u003c\/h2\u003e\u003cp\u003ePIC24FJ256GB110 is an outstanding 16-bit microcontroller with up to 16 MIPS, and has 256 KB of program memory, 16.384 Bytes of RAM, and 84 I\/O pins. Along with a stunning set of integrated modules, it features hardware multiplier and divider, USB OTG, and single cycle execution. It makes a great choice for developing multimedia applications.\u003c\/p\u003e\u003ch2\u003ePower Supply Options\u003c\/h2\u003e\u003cp\u003eSupply power to the mikroMedia™ for PIC24 board using the MINI-B USB cable, or connect it to a Li-Polymer battery via an on-board battery connector. The board features an on-board battery charger circuit MCP73832 that allows for charging the battery over USB connection, and indicates the charging status via a Red LED diode.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768334704829,"sku":"MIKROE-608","price":118.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-pic24-30238827413693.jpg?v=1685192869"},{"product_id":"mikroe-1101-mikromedia-stm32-m3-development-uk","title":"mikroMedia for STM32 M3","description":"\u003ch2\u003eSTM32F207VGT6 microcontroller\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for STM32 M3 development system includes high-performance 32-bit STM32F207VGT6 ARM Cortex-M3 microcontroller. Together with integrated modules on the board as well as combination with other on-board modules, this microcontroller makes a great choice for developing applications with multimedia content. It features a 1.25 DMIPS\/MHz, 32-bit Cortex-M3 Core; 1 Mbyte Flash memory; 128 + 4 Kbytes of SRAM; 83 I\/O pins, etc.\u003c\/p\u003e\u003ch2\u003ePower Supply\u003c\/h2\u003e\u003cp\u003eThe user can power themikroMedia™ for STM32 M3 board using the provided Mini-B USB cable with the on-board voltage regulators provide suitable voltage levels to each section of the board. Another way of powering the board is using a Li-Polymer battery via the on-board battery connector. The battery can be charged over the USB connection via the MCP73832 battery charger circuit.\u003c\/p\u003e\u003ch2\u003eTouch Screen\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for STM32 M3 board has a TFT 320 x 240 display protected with a resistive touch panel that enables data to be entered and displayed at the same time. The TFT display is capable of showing data in 262,144 different colours.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768335098045,"sku":"MIKROE-1101","price":178.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-stm32-m3-29880956682429.jpg?v=1685106294"},{"product_id":"mikroe-1102-mikromedia-stm32-m4-development-uk","title":"mikroMedia for STM32 M4","description":"\u003ch2\u003ePower Supply\u003c\/h2\u003e\u003cp\u003eThe user can use either use a Li-Polymer battery via battery connector, or use a Mini-B USB cable provided with the board, to apply power supply to the mikroMedia™ for STM32 M4. While the MCP73832 battery charger circuit allows for charging the battery over a USB connection, the voltage regulators provide appropriate voltage levels to each component on the board.\u003c\/p\u003e\u003ch2\u003eSTM32F407VGT6 Microcontroller\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for STM32 M4 carries the STM32F407VGT6 microcontroller that delivers high processing power with up to 168 MHz operation. This 32-bit microcontroller with other on-board modules is an ideal choice for performance-demanding applications. It features 1.25 DMIPS\/MHz, 32-bit Cortex-M4 Core; 1 MB flash memory; 192 + 4 KB of SRAM; 83 I\/O pins, etc.\u003c\/p\u003e\u003ch2\u003eProgramming the Microcontroller\u003c\/h2\u003e\u003cp\u003eFor programming the microcontroller, the user can use a bootloader program which is pre-installed in the microcontroller memory. However, it can also be programmed with an external in-circuit programmer\/debugger (not included). The mikroMedia™ for STM32 M4 board comes with pads for installing programming headers compatible with the mikroProg for STM32 programmer. It comes with an adapter from that header to an ST-LINK\/V2 header.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768335130813,"sku":"MIKROE-1102","price":178.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-stm32-m4-29880968380605.jpg?v=1685106287"},{"product_id":"mikroe-1575-mikromedia-tiva-development-uk","title":"mikroMedia for Tiva C Series","description":"\u003ch2\u003e\n\u003cspan\u003e​\u003c\/span\u003eWhat's Onboard mikroMedia for Tiva\u003c\/h2\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikromedia for front\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/on_board\/tiva_front-v1.png\"\u003e\u003c\/p\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ch3\u003eTM4C123GH6PZ\u003c\/h3\u003e\n\n\u003cp\u003ePowerful TM4C123GH6PZ 32-bit microcontroller with ARM Cortex-M4 core, operating at 80-MHz; 100 DMIPS performance, 256 KB single-cycle Flash memory; 32 KB single-cycle SRAM, 2KB EEPROM, and more.\u003c\/p\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikromedia for Tiva back\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/on_board\/tiva_back.png\"\u003e\u003c\/p\u003e\n\n\u003ch3\u003eWhy Choose MikroMedia for Tiva\u003c\/h3\u003e\n\n\u003ch3\u003eProgramming\u003c\/h3\u003e\n\n\u003cp\u003eThe on-board TM4C123GH6PZ microcontroller is preprogrammed with a fast USB HID bootloader, so it's ready to work right out of the box. You don't have to spend a dollar more on programmers. If you need a debugger, use mikroProg™ for Tiva.\u003c\/p\u003e\n\n\u003ch3\u003eCompilers\u003c\/h3\u003e\n\n\u003cp\u003emikromedia for Tiva is fully supported by mikroC, mikroBasic and mikroPascal compilers for ARM. Compilers come with dozens of examples that ddemonstrate every feature of the board.\u003c\/p\u003e\n\n\u003ch3\u003eGUI Design With Visual TFT\u003c\/h3\u003e\n\n\u003cp\u003eCreate fantastic colourful graphical user interfaces (GUI) for mikromedia in VisualTFT software. Even total beginners will be able to create amazing mikromedia applications.\u003c\/p\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ch3\u003eMODULES\u003c\/h3\u003e\n\n\u003ch3\u003eAccelerometer\u003c\/h3\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikroedia-for-tiva-accelerometer_small.j\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/modules\/mikroedia-for-tiva-accelerometer.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eOn-board ADXL345 Digital Accelerometer allows you to measure acceleration.\u003c\/p\u003e\n\n\u003ch3\u003eAudio Connector And Codec\u003c\/h3\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikroedia-for-tiva-audio_small.jpg\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/modules\/mikroedia-for-tiva-audio.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eVS1053 MPEG audio decoder with SPI interface for fast reproducing Ogg Vorbis \/ MP3 \/ AAC \/ WMA \/ FLAC \/ MIDI audio files.\u003c\/p\u003e\n\n\u003ch3\u003eMicroSD Card Slot\u003c\/h3\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikroedia-for-tiva-sdcard_small.jpg\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/modules\/mikroedia-for-tiva-sdcard_small.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003emicroSD Card slot allows you to store large amounts of data externally on a microSD card using fast SDIO communication.\u003c\/p\u003e\n\n\u003ch3\u003eMicrocontroller\u003c\/h3\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikroedia-for-tiva-mcu_small.jpg\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/modules\/mikroedia-for-tiva-mcu_small.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003ePowerful TM4C123GH6PZ 32-bit microcontroller with ARM Cortex-M4 core, operating at 80-MHz; 100 DMIPS performance, 256 KB single-cycle Flash memory; 32 KB single-cycle SRAM, 2KB EEPROM, and more.\u003c\/p\u003e\n\n\u003ch3\u003eMiniUSB Connector\u003c\/h3\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikroedia-for-tiva-usb_small.jpg\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/modules\/mikroedia-for-tiva-usb_small.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eMicrocontroller supports Full Speed and USB 2.0 OTG, so this connector allows you to communicate with a PC or other USB devices using a USB connection.\u003c\/p\u003e\n\n\u003ch3\u003eBattery Connector\u003c\/h3\u003e\n\n\u003cp\u003e\u003cimg alt=\"mikroedia-for-tiva-battery-connection_sm\" class=\"fr-fic fr-dii\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/product\/mikromedia\/mikromedia_2.8\/for_Tiva\/modules\/mikroedia-for-tiva-battery-connection_small.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eLi-Polymer battery connector allows you easier connection with your battery. An autonomous power supply will give your mikromedia the wings it deserves.\u003c\/p\u003e\n\n\u003cp\u003e\u003cspan\u003e​\u003c\/span\u003e\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768335196349,"sku":"MIKROE-1575","price":118.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-tiva-c-series-30249983017149.jpg?v=1685025304"},{"product_id":"mikromedia-stellaris-m3-development-mikroe-974-uk","title":"mikroMedia for Stellaris M3","description":"\u003ch2\u003eLM3S9B95 ARM Cortex-M3 Microcontroller\u003c\/h2\u003e\u003cp\u003eAn ideal choice for multimedia applications, this high performance 32-bit microcontroller has 80-MHz operation; 100 DMIPS performance, Nested Vectored Interrupt Controller (NVIC), 256 KB Flash memory up to 50 MHz; 96 KB SRAM, and more.\u003c\/p\u003e\u003ch2\u003ePower Supply Options\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for Stellaris M3 board can be powered using the provided Mini-B USB cable or using a Li-Polymer battery via the on-board battery connector. Using the Mini-B USB cable, on-board voltage regulators provides the appropriate voltage levels to each part of the board. The green LED indicates the presence of power supply. An MCP73832 battery charger circuit facilitates user to charge the battery over USB connection. The red LED indicates the charging status of the battery.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768335229117,"sku":"MIKROE-974","price":21.76,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-stellaris-m3-29701921079485.jpg?v=1685085417"},{"product_id":"mikromedia-pic18fj-development-mikroe-607-uk","title":"mikroMedia for PIC18FJ","description":"\u003cp\u003emikroMedia™ for PIC18FJ.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768335392957,"sku":"MIKROE-607","price":118.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-for-pic18fj-30238828363965.jpg?v=1685031770"},{"product_id":"mikroe-767-mikromedia-proto-shield-uk","title":"MikroMedia Proto Shield","description":"\u003cp\u003eDesigned with innovative features, the mikroMedia™ PROTO shield is a perfect match for a wide range of target boards. This pin-compatible expansion board enables the user to add extra functionality to the mikroMedia™ boards. It is designed with double rows of connection pads that allow user to connect desired pins to the prototyping area easily. Each connection pad is placed at a distance of 2.54mm on the shield. With plenty of connection pins on both sides of the shield, mikroMedia™ PROTO shield has additional VCC \u0026amp; GND lines on sides of the breadboard area as well as a pair of male and female 1x26 stacking headers.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768340406461,"sku":"MIKROE-767","price":8.28,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-shield-mikromedia-proto-shield-29671627522237.jpg?v=1685136528"},{"product_id":"mikroe-1154-mikrobus-shield-for-mikromedia-uk","title":"MikroBUS Shield for mikroMedia","description":"\u003ch2\u003emikroBUS Host Connector\u003c\/h2\u003e\n\n\u003cp\u003eEach mikroBUS host connector consists of two 1x8 female headers containing pins that are most likely to be used in the target accessory board. The mikroBUS host connector perfectly fits into standard breadboards.\u003c\/p\u003e\n\n\u003ch2\u003ePrototyping Area\u003c\/h2\u003e\n\n\u003cp\u003eThe board features a handy prototyping breadboard area in 0.1-inch matrix that enables user to further use it for placing additional components while expanding the base functionality with custom features.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768340570301,"sku":"MIKROE-1154","price":9.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-shield-mikrobus-shield-for-mikromedia-29671492747453.jpg?v=1685138341"},{"product_id":"easyled-board-with-green-leds-mikroe-572-uk","title":"EasyLED Board with Green LEDs","description":"\u003cp\u003eNow easily add LED signals to the design using the \u003cstrong\u003eEasyLED G Board\u003c\/strong\u003e. The EasyLED Board is a cost-effective yet effective solution for visual indication of output signals. Featuring 8 surface mounted LEDs, the EasyLED Board is used to connect a development system port to LEDs. It features two IDC10 header connectors; one female header (CN2) and one male header (CN1). The user can connect a prototype device using its female IDC10 connector, or can be wired to your system using the make 2x5 pin header. These header connectors make EasyLED Board highly compatible with all development boards. The board supports 3.3V or 5V power supply voltage. This board is supplied with Green LEDs. Alternative boards are available fitted with red and yellow LEDs.\u003c\/p\u003e\u003cp\u003eThe EasyLED Board is used to indicate the logic level on the development system ports. When a pin is driven high (logic 1), the appropriate LED connected to that pin gets illuminated. Similarly, if a pin is driven low (logic 0), the appropriate LED remains off.\u003c\/p\u003e\u003cp\u003eThe user can use the EasyLED board with EasyPULL board in order to provide the device pin to VCC or GND via resistors and have visual indication of output signals via LED.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768341094589,"sku":"MIKROE-572","price":9.37,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/lg-easyled-board.jpg?v=1724857236"},{"product_id":"easyled-board-with-yellow-leds-mikroe-573-uk","title":"EasyLED Board with Yellow LEDs","description":"\u003cp\u003eNow easily add LED signals to the design using the \u003cstrong\u003eEasyLED Y Board\u003c\/strong\u003e. The EasyLED Y Board is a cost-effective yet effective solution for visual indication of output signals. Featuring 8 surface mounted LEDs, the EasyLED Board is used to connect a development system port to LEDs. It features two IDC10 header connectors; one female header (CN2) and one male header (CN1). The user can connect a prototype device using its female IDC10 connector, or can be wired to your system using the make 2x5 pin header. These header connectors make EasyLED Board highly compatible with all development boards. The board supports 3.3V or 5V power supply voltage. This board is supplied with Yellow LEDs. Alternative boards are available fitted with red and green LEDs.\u003c\/p\u003e\u003cp\u003eThe EasyLED Board is used to indicate the logic level on the development system ports. When a pin is driven high (logic 1), the appropriate LED connected to that pin gets illuminated. Similarly, if a pin is driven low (logic 0), the appropriate LED remains off.\u003c\/p\u003e\u003cp\u003eThe user can use the EasyLED board with EasyPULL board in order to provide the device pin to VCC or GND via resistors and have visual indication of output signals via LED.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768341127357,"sku":"MIKROE-573","price":9.37,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-display-easyled-board-with-yellow-leds-30257173364925.jpg?v=1685212497"},{"product_id":"character-lcd-2x16-with-blue-backlight-mikroe-55-uk","title":"Character LCD 2x16 with Blue Backlight","description":"\u003cp\u003eCharacter LCD 2x16 with blue backlight.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768342143165,"sku":"MIKROE-55","price":11.76,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-display-character-lcd-2x16-with-blue-backlight-28862743183549.jpg?v=1684998823"},{"product_id":"mikroe-1201-7-seg-click-board-uk","title":"7-Seg Click Board™","description":"\u003cp\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/ZjyrOGNuAwI\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/p\u003e\n\n\u003ch2\u003eIC\/Module: 74HC595 8-bit Serial-In, Parallel-Out Shift Register\u003c\/h2\u003e\n\n\u003cp\u003e74HC595 is an 8-stage serial shift register that feeds an 8-bit D-type storage register with parallel 3-state outputs. Separate clocks are provided for both the shift and storage register. Both the clocks, i.e, shift register clock (SRCLK) and storage register clock (RCLK), are positive-edge triggered. When connected together, the shift register always is one clock pulse ahead of the storage register.\u003c\/p\u003e\n\n\u003ch2\u003eSMD Jumpers\u003c\/h2\u003e\n\n\u003cp\u003e7seg Click Board™ features a J1 SMD jumper, which enable the user to switch between 3.3V or 5V power supply. By default, J1 jumper is soldered in 3.3V position.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768342569149,"sku":"MIKROE-1201","price":12.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-7seg-click-board-28825331663037.jpg?v=1684986950"},{"product_id":"bargraph-click-board-mikroe-1423-uk","title":"BarGraph Click Board™","description":"\u003cp\u003eEach segment is composed of a uniformly lit red coloured LED, which draws about 20mA of current. The bar graph display light intensity can be dimmed by applying a PWM signal on the mikroBUS™ PWM pin. By utilizing two shift-register ICs, it is possible to program any pattern using these 10 segments via the industry-standard SPI interface. The Click board™ offers a lot of possibilities for building custom bar graph applications such as VU meters, status indicators, various types of gauges, and similar applications.\u003c\/p\u003e\n\n\u003ch2\u003eHow Does The Bargraph Click Board™ Work?\u003c\/h2\u003e\n\n\u003cp\u003eWhen it comes to driving an array of LED segments, using so-called shift register ICs is almost unavoidable. Due to their ability to be connected in cascades, they are commonly used for any type of LED segment array. The \u003cstrong\u003eBargraph Click Board™\u003c\/strong\u003e uses two 74HC595, 8-bit serial-in, parallel-out shift registers with output latches, from Texas Instruments to drive the JSB-R102510ZR, a 10-segment bar graph array. The 74HC595 ICs are comprised of a D-type internal storage register, as well as the serial-to-parallel shift register, both 8 bits wide. Each of these registers has its own clock line, making it possible to clock in the desired data, and then clock it out to the parallel output pins.\u003c\/p\u003e\n\n\u003cp\u003eThe JSB-R102510ZR bar graph LED array has 10 red coloured LED segments. Each LED has its anode and cathode routed out, making each LED element absolutely independent, so it can be used in any circuit configuration. However, the JSB-R102510ZR bar graph display is connected as display with the common cathode, meaning that all LED cathodes are connected to a single point. This LED cathodes common line (CC) is connected to the drain of the N channel MOSFET, while its source is connected to the GND. Driving this MOSFET via its gate through the PWM pin of the mikroBUS™ allows dimming of the LED segments. By changing the duty cycle of the PWM signal, it is possible to change the brightness of the XGURUGX10D bar graph display. The gate of this MOSFET is connected to the PWM pin of the mikroBUS™ and it is pulled to VCC, allowing display to work if the PWM pin is left floating.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eBargraph Click Board™\u003c\/strong\u003e communicates with the host MCU via the mikroBUS™ SPI interface pins. Two bytes of information (16 bits in total) are pushed through the serial data input pin (DS) of the first 74HC595 IC, routed to the SDI pin. The 74HC595 construction is such that after receiving 8 bits, clocking in one more bit will shift the existing 8 bits by one place, overflowing the last bit to the Q7S output pin, shifting it out that way. Since the Q7S of the first 74HC595 is connected to the DS pin of the second 74HC595, clocking 16 bits into the first 74HC595 IC will fill up both ICs with required data. Note that only two bits of the second byte will be used, since the second shift register only has 2 output connected to the bar graph display (8 from the first IC + 2 from the second).\u003c\/p\u003e\n\n\u003cp\u003eIt is worth mentioning that the Q7S of the last 74HC595 IC is routed to the MISO pin of the mikroBUS™, labeled as the SDO, allowing connection of multiple devices in cascade, building more complex setups. Adding more devices in cascade would require more 8bit words to be clocked into the first 74HC595 IC in the chain.\u003c\/p\u003e\n\n\u003cp\u003eWhen the data has been clocked in, the SPI clock should be stopped, and the CS pin should be driven to a HIGH logic level. The CS pin of the mikroBUS™ is routed to the STCP pin of the 74HC595 ICs, and it is labeled as LT on the Click board™. A rising edge on the STCP input pins of the 74HC595 ICs will latch the data from their internal storage registers to the output pins, polarizing the connected bar graph segment anodes. The STCP pin is pulled to a LOW logic level by the onboard resistor. If the previously mentioned MOSFET is in conductive state, the current will be able to flow through the LEDs and the polarized LED elements will get lit.\u003c\/p\u003e\n\n\u003cp\u003eThe #MR pin is used to clear the data in the internal storage register of the ICs. The LOW logic level on this pin will clear the content of this storage register, but it will not turn off the outputs which are already activated. The #MR pin is routed to the RST pin of the mikroBUS™, labeled as MR and it is pulled to a HIGH logic level by the onboard resistor.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eBargraph Click Board™\u003c\/strong\u003e works with both 3.3V and 5V MCUs. The operating voltage selection can be done via the onboard SMD jumper, labeled as VCC SEL.\u003c\/p\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eBargraph,LED Segment\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eIt can be used for displaying of various signal or status properties, for building VU-meters, and various types of gauges and signal indicators\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003e74HC595, 8-bit serial-in, parallel-out shift registers with output latches, from Texas Instruments; JSB-R102510ZR, a 10-segment red bar graph LED array\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003eClean and bright bargraph LED display, with uniform light disbursement, simple to use with included software library functions, low current consumption per LED, it is possible to serially connect more devices\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eGPIO,PWM,SPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eM (42.9 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e3.3V or 5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout on the \u003cstrong\u003eBargraph Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable width=\"549\"\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth colspan=\"4\"\u003e\u003cimg alt=\"Mikrobus logo.png\" data-entity-type=\"\" data-entity-uuid=\"\" data-mce-src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\" src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\"\u003e\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e1\u003c\/td\u003e\n            \u003ctd\u003eAN\u003c\/td\u003e\n            \u003ctd\u003ePWM\u003c\/td\u003e\n            \u003ctd\u003e16\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003ePWM\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eDimming PWM IN\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eMemory Clear\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eMR\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e2\u003c\/td\u003e\n            \u003ctd\u003eRST\u003c\/td\u003e\n            \u003ctd\u003eINT\u003c\/td\u003e\n            \u003ctd\u003e15\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eData Latch\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eLT\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e3\u003c\/td\u003e\n            \u003ctd\u003eCS\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e14\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Clock\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSCK\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e4\u003c\/td\u003e\n            \u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eTX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data OUT\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDO\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data IN\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDI\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e3.3V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e5V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003e\n\u003cbr\u003e\nONBOARD SETTINGS AND INDICATORS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eLabel\u003c\/th\u003e\n            \u003cth\u003eName\u003c\/th\u003e\n            \u003cth\u003eDefault\u003c\/th\u003e\n            \u003cth\u003eDescription\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eLD1\u003c\/td\u003e\n            \u003ctd\u003ePWR\u003c\/td\u003e\n            \u003ctd\u003e-\u003c\/td\u003e\n            \u003ctd\u003ePower LED indicator\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eJP1\u003c\/td\u003e\n            \u003ctd\u003eVCC SEL\u003c\/td\u003e\n            \u003ctd\u003eRight\u003c\/td\u003e\n            \u003ctd\u003ePower supply voltage selection: left position 3.3V, right position 5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003e \u003c\/h3\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768343388349,"sku":"MIKROE-1423","price":14.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-bargraph-click-board-30264606064829.jpg?v=1684989660"},{"product_id":"mikromedia-battery-boost-shield-mikroe-712-uk","title":"MikroMedia Battery Boost Shield","description":"\u003ch2\u003eIC\/Module: MCP1640 Synchronous Boost Regulator\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003eBattery Boost Shield\u003c\/strong\u003e\u003c\/em\u003e is based on the MCP1640,a compact, synchronous step-up DC-DC converter with up to 96% typical efficiency, capable of low start-up voltage and delivers high efficiency over a wide load range for battery powered applications. MCP1640 chip uses a +4.0V power supply voltage at about 300mA.\u003c\/p\u003e\n\n\u003ch2\u003eLow-voltage Technology; High Efficiency\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eBattery Boost Shield\u003c\/strong\u003e is based on a low-voltage technology that allows the regulator to start-up without high inrush current or output voltage overshoot from a low 0.65V input. The integration of the low resistance N-Channel Boost switch and synchronous P-Channel switch ensures high efficiency.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768344633533,"sku":"MIKROE-712","price":16.8,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-shield-battery-boost-shield-28854133457085.jpg?v=1685101616"},{"product_id":"mikroe-1295-8x8-red-click-board-uk","title":"8x8 R Click Board™","description":"\u003cp\u003eThe \u003cstrong\u003e8x8 R Click Board™ \u003c\/strong\u003eis a 64 LED matrix display Click board™, composed of SMD LEDs organized in 8 rows by 8 columns. It has a digital brightness control in 16 steps, it can control every LED in the display matrix independently, it blanks the display on power up to eliminate glitches and it requires a single resistor to control the current through all the LEDs at once, which simplifies the design. 8x8 R click uses a fast SPI communication protocol, allowing fast display response and no lag.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003e8x8 R Click Board™\u003c\/strong\u003e can be used as a display or signalization output for a range of applications that are designed to display various information or graphics on the matrix LED display. By using functions provided by MikroElektronika, it is possible to make a text scroller in a very simple way, greatly expanding the functionality of the 8x8 click.\u003c\/p\u003e\n\n\u003ch2\u003eHow Does The 8x8 R Click Board™ Work?\u003c\/h2\u003e\n\n\u003cp\u003eThe main active component of the \u003cstrong\u003e8x8 R Click Board™\u003c\/strong\u003e is the MAX7129, a serially interfaced, a common cathode 8-digit LED display driver from Analog Devices. It consists of 8x8 RAM cells for storing the digit data, 16bit data shifter, constant current source for the LED segments, address register decoder, the intensity pulse width modulator, the digit scan section and finally output LED drivers. This IC is primarily designed to drive eight 7-segment LED digits with an additional dot segment (8 digits by 8 segments), but it can be used to drive a set of similar types of displays, such as LED matrices (e.g. 8x8 click), bar graph displays, panel meters, and similar. For that reason, the output drivers are referred to as digit outputs and segment outputs. This categorization also mirrors the way the internal memory is organized. The scan rate of the LED matrix display is 800Hz, typically.\u003cbr\u003e\n\u003cimg alt=\"MikroE Display 8x8 R click\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/www.mikroe.com\/img\/cms\/8x8-r-click-inside-image.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe communication is done via the SPI interface. The data is sent by the host MCU, through the DIN pin of the MAX7129 IC, in packets that are 16 bits wide. A serial clock signal should be present at the CLK pin of this IC, and its frequency should stay below 10MHz. The DIN and CLK pins are routed to the mikroBUS™ SCK and MOSI pins, so that it can be easily connected to the SPI bus of the host MCU. DOUT pin can be used to daisy-chain several devices. The data from DIN pin is mirrored on the DOUT pin, but with the delay of 16.5 clock cycles. This pin is routed to the mikroBUS™ MISO pin. Unlike the regular SPI, this IC allows clocking the data in, regardless of the LOAD pin. However, the internal 16bit shift register will shift the data only on a rising edge of the LOAD pin, which needs to happen on the 16\u003csup\u003eth\u003c\/sup\u003e rising edge, and before the 17\u003csup\u003eth\u003c\/sup\u003e rising edge of the clock signal - else, the current data is discarded, and the shift register expects a new 16bit data packet to be clocked in. The LOAD pin is routed to the CS pin of the mikroBUS™\u003c\/p\u003e\n\n\u003cp\u003eThe input data is clocked in as described above, in a form of 16bit packets. Those packets contain the command and the data, both interleaved inside the packet. The first 8 bits are the data bits (D0 to D7), while the next four bits contain the register address (D8 to D11). The last four bits are disregarded by the internal logic (D12 to D15). The data is clocked MSB first, so the first received bit would be D15.\u003c\/p\u003e\n\n\u003cp\u003eThere is a number of various registers embedded in the MAX7129 IC that are used to perform a range of different functions. It has registers to set modes for each digit, setting it to binary coded decimal format (BCD) or no coding at all. It has a scan limit register, which limits display scanning to an arbitrary number of digits, test register which sets all the segments on all the digits to be fully ON, registers that allow intensity control by changing the duty cycle of the PWM, and so on. It should be noted that some of the registers make sense only if used with 7-segment LED elements, so their use should be avoided completely in the code, as the 8x8 click board is designed as a matrix LED display. More information about the registers and their usage can be found in the MAX7129 datasheet. Using functions provided by MikroElektronika ensures that the correct registers are accessed and exposes a comprehensive set of commands to work with the 8x8 R click.\u003c\/p\u003e\n\n\u003cp\u003eAn onboard resistor sets the peak current through the segments. This current is fine-tuned according to used LEDs requirements. The brightness can be changed by writing data in the intensity register. The lower 4 nibbles of this register are used to control the internal PWM duty cycle, allowing brightness control in 16 steps. This intensity register affects the global brightness, so it is used to dim the entire display at once.\u003c\/p\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eLED Matrix\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eThe \u003cstrong\u003e8x8 R Click Board™\u003c\/strong\u003e brings serial 8x8 RED LED display matrix to your design.\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003eMAX7219 8-digit LED display driver module as well as 64 RED LED diodes\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003eOn-chip BCD code-B decoder with 8x8 area\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eSPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eM (42.9 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout of the \u003cstrong\u003e8x8 R Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable width=\"549\"\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth colspan=\"4\"\u003e\u003cimg alt=\"Mikrobus logo.png\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\"\u003e\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e1\u003c\/td\u003e\n            \u003ctd\u003eAN\u003c\/td\u003e\n            \u003ctd\u003ePWM\u003c\/td\u003e\n            \u003ctd\u003e16\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e2\u003c\/td\u003e\n            \u003ctd\u003eRST\u003c\/td\u003e\n            \u003ctd\u003eINT\u003c\/td\u003e\n            \u003ctd\u003e15\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eData Load\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eCS\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e3\u003c\/td\u003e\n            \u003ctd\u003eCS\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e14\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Clock\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSCK\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e4\u003c\/td\u003e\n            \u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eTX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Output\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDO\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Input\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDI\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e+5V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003e \u003c\/h3\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768344862909,"sku":"MIKROE-1295","price":18.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-8x8-r-click-board-30273161527485.jpg?v=1685205294"},{"product_id":"mikroe-1306-8x8-green-click-board-uk","title":"8x8 G Click Board™","description":"\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003e8x8 G Click Board™\u003c\/strong\u003e\u003c\/em\u003e is a 64 LED matrix display Click board™, composed of SMD LEDs organized in 8 rows by 8 columns. It has a digital brightness control in 16 steps, it can control every LED in the display matrix independently, it blanks the display on power up to eliminate glitches and it requires a single resistor to control the current through all the LEDs at once, which simplifies the design. 8x8 G click uses a fast SPI communication protocol, allowing fast display response and no lag.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003e8x8 G Click Board™\u003c\/strong\u003e can be used as a display or signalization output for a range of applications that are designed to display various information or graphics on the matrix LED display. By using functions provided by MikroElektronika, it is possible to make a text scroller in a very simple way, greatly expanding the functionality of the 8x8 click.\u003c\/p\u003e\n\n\u003ch2\u003eHow Does The 8x8 G Click Board™ Work?\u003c\/h2\u003e\n\n\u003cp\u003eThe main active component of the \u003cstrong\u003e8x8 G Click Board™\u003c\/strong\u003e is the MAX7129, a serially interfaced, a common cathode 8-digit LED display driver from Analog Devices. It consists of 8x8 RAM cells for storing the digit data, 16bit data shifter, constant current source for the LED segments, address register decoder, the intensity pulse width modulator, the digit scan section and finally output LED drivers. This IC is primarily designed to drive eight 7-segment LED digits with an additional dot segment (8 digits by 8 segments), but it can be used to drive a set of similar types of displays, such as LED matrices (e.g. 8x8 click), bar graph displays, panel meters, and similar. For that reason, the output drivers are referred to as digit outputs and segment outputs. This categorization also mirrors the way the internal memory is organized. The scan rate of the LED matrix display is 800Hz, typically.\u003cbr\u003e\n\u003cimg alt=\"\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/www.mikroe.com\/img\/cms\/8x8-g-click-inside-image.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe communication is done via the SPI interface. The data is sent by the host MCU, through the DIN pin of the MAX7129 IC, in packets that are 16 bits wide. A serial clock signal should be present at the CLK pin of this IC, and its frequency should stay below 10MHz. The DIN and CLK pins are routed to the mikroBUS™ SCK and MOSI pins so that it can be easily connected to the SPI bus of the host MCU. DOUT pin can be used to daisy-chain several devices. The data from DIN pin is mirrored on the DOUT pin, but with the delay of 16.5 clock cycles. This pin is routed to the mikroBUS™ MISO pin. Unlike the regular SPI, this IC allows clocking the data in, regardless of the LOAD pin. However, the internal 16bit shift register will shift the data only on a rising edge of the LOAD pin, which needs to happen on the 16\u003csup\u003eth\u003c\/sup\u003e rising edge, and before the 17\u003csup\u003eth\u003c\/sup\u003e rising edge of the clock signal - else, the current data is discarded, and the shift register expects a new 16bit data packet to be clocked in. The LOAD pin is routed to the CS pin of the mikroBUS™\u003c\/p\u003e\n\n\u003cp\u003eThe input data is clocked in as described above, in a form of 16bit packets. Those packets contain the command and the data, both interleaved inside the packet. The first 8 bits are the data bits (D0 to D7), while the next four bits contain the register address (D8 to D11). The last four bits are disregarded by the internal logic (D12 to D15). The data is clocked MSB first, so the first received bit would be D15.\u003c\/p\u003e\n\n\u003cp\u003eThere is a number of various registers embedded in the MAX7129 IC that are used to perform a range of different functions. It has registers to set modes for each digit, setting it to binary coded decimal format (BCD) or no coding at all. It has a scan limit register, which limits display scanning to an arbitrary number of digits, test register which sets all the segments on all the digits to be fully ON, registers that allow intensity control by changing the duty cycle of the PWM, and so on. It should be noted that some of the registers make sense only if used with 7-segment LED elements, so their use should be avoided completely in the code, as the \u003cstrong\u003e8x8 G Click Board™\u003c\/strong\u003e is designed as a matrix LED display. More information about the registers and their usage can be found in the MAX7129 datasheet. Using functions provided by MikroElektronika ensures that the correct registers are accessed and exposes a comprehensive set of commands to work with the 8x8 G click.\u003c\/p\u003e\n\n\u003cp\u003eAn onboard resistor sets the peak current through the segments. This current is fine-tuned according to used LEDs requirements. The brightness can be changed by writing data in the intensity register. The lower 4 nibbles of this register are used to control the internal PWM duty cycle, allowing brightness control in 16 steps. This intensity register affects the global brightness, so it is used to dim the entire display at once.\u003c\/p\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eLED Matrix\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eThe \u003cstrong\u003e8x8 G Click Board™\u003c\/strong\u003e brings serial 8x8 Green LED display matrix to your design\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003eMAX7219 8-digit LED display driver\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003eOn-chip BCD code-B decoder with 8x8 area\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eSPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eM (42.9 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout of the \u003cstrong\u003e8x8 G Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable width=\"549\"\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth colspan=\"4\"\u003e\u003cimg alt=\"Mikrobus logo.png\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\"\u003e\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e1\u003c\/td\u003e\n            \u003ctd\u003eAN\u003c\/td\u003e\n            \u003ctd\u003ePWM\u003c\/td\u003e\n            \u003ctd\u003e16\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e2\u003c\/td\u003e\n            \u003ctd\u003eRST\u003c\/td\u003e\n            \u003ctd\u003eINT\u003c\/td\u003e\n            \u003ctd\u003e15\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eData Load\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eCS\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e3\u003c\/td\u003e\n            \u003ctd\u003eCS\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e14\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Clock\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSCK\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e4\u003c\/td\u003e\n            \u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eTX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Output\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDO\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Input\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDI\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e+5V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003e \u003c\/h3\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768344895677,"sku":"MIKROE-1306","price":25.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-8x8-g-click-board-28833881686205.jpg?v=1685087398"},{"product_id":"mikroe-1306-8x8-yellow-click-board-uk","title":"8x8 Y Click Board™","description":"\u003cp\u003eThe\u003cem\u003e\u003cstrong\u003e 8x8 Y Click Board™\u003c\/strong\u003e\u003c\/em\u003e\u003cstrong\u003e \u003c\/strong\u003eis a 64 LED matrix display Click board™, composed of SMD LEDs organized in 8 rows by 8 columns. It has a digital brightness control in 16 steps, it can control every LED in the display matrix independently, it blanks the display on power up to eliminate glitches and it requires a single resistor to control the current through all the LEDs at once, which simplifies the design. 8x8 click uses a fast SPI communication protocol, allowing fast display response and no lag.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003e8x8 Y Click Board™\u003c\/strong\u003e can be used as a display or signalization output for a range of applications that are designed to display various information or graphics on the matrix LED display. By using functions provided by MikroElektronika, it is possible to make a text scroller in a very simple way, greatly expanding the functionality of the 8x8 click.\u003c\/p\u003e\n\n\u003ch2\u003eHow Does The 8x8 Y Click Board™ Work?\u003c\/h2\u003e\n\n\u003cp\u003eThe main active component of the \u003cstrong\u003e8x8 Y Click Board™\u003c\/strong\u003e is the MAX7129, a serially interfaced, a common cathode 8-digit LED display driver from Maxim Integrated. It consists of 8x8 RAM cells for storing the digit data, 16bit data shifter, constant current source for the LED segments, address register decoder, the intensity pulse width modulator, the digit scan section and finally output LED drivers. This IC is primarily designed to drive eight 7-segment LED digits with an additional dot segment (8 digits by 8 segments), but it can be used to drive a set of similar types of displays, such as LED matrices (e.g. 8x8 click), bar graph displays, panel meters, and similar. For that reason, the output drivers are referred to as digit outputs and segment outputs. This categorization also mirrors the way the internal memory is organized. The scan rate of the LED matrix display is 800Hz, typically.\u003cbr\u003e\n\u003cimg alt=\"\" data-entity-type=\"\" data-entity-uuid=\"\" data-mce-src=\"https:\/\/www.mikroe.com\/img\/cms\/8x8-y-click-inside-image.jpg\" src=\"https:\/\/www.mikroe.com\/img\/cms\/8x8-y-click-inside-image.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe communication is done via the SPI interface. The data is sent by the host MCU, through the DIN pin of the MAX7129 IC, in packets that are 16 bits wide. A serial clock signal should be present at the CLK pin of this IC, and its frequency should stay below 10MHz. The DIN and CLK pins are routed to the mikroBUS™ SCK and MOSI pins, so that it can be easily connected to the SPI bus of the host MCU. DOUT pin can be used to daisy-chain several devices. The data from DIN pin is mirrored on the DOUT pin, but with the delay of 16.5 clock cycles. This pin is routed to the mikroBUS™ MISO pin. Unlike the regular SPI, this IC allows clocking the data in, regardless of the LOAD pin. However, the internal 16bit shift register will shift the data only on a rising edge of the LOAD pin, which needs to happen on the 16 \u003csup\u003eth \u003c\/sup\u003e rising edge, and before the 17 \u003csup\u003eth \u003c\/sup\u003e rising edge of the clock signal - else, the current data is discarded, and the shift register expects a new 16bit data packet to be clocked in. The LOAD pin is routed to the CS pin of the mikroBUS™\u003c\/p\u003e\n\n\u003cp\u003eThe input data is clocked in as described above, in a form of 16bit packets. Those packets contain the command and the data, both interleaved inside the packet. The first 8 bits are the data bits (D0 to D7), while the next four bits contain the register address (D8 to D11). The last four bits are disregarded by the internal logic (D12 to D15). The data is clocked MSB first, so the first received bit would be D15.\u003c\/p\u003e\n\n\u003cp\u003eThere is a number of various registers embedded in the MAX7129 IC that are used to perform a range of different functions. It has registers to set modes for each digit, setting it to binary coded decimal format (BCD) or no coding at all. It has a scan limit register, which limits display scanning to an arbitrary number of digits, test register which sets all the segments on all the digits to be fully ON, registers that allow intensity control by changing the duty cycle of the PWM, and so on. It should be noted that some of the registers make sense only if used with 7-segment LED elements, so their use should be avoided completely in the code, as the 8x8 click board is designed as a matrix LED display. More information about the registers and their usage can be found in the MAX7129 datasheet. Using functions provided by MikroElektronika ensures that the correct registers are accessed and exposes a comprehensive set of commands to work with the 8x8 Y click.\u003c\/p\u003e\n\n\u003cp\u003eAn onboard resistor sets the peak current through the segments. This current is fine-tuned according to used LEDs requirements. The brightness can be changed by writing data in the intensity register. The lower 4 nibbles of this register are used to control the internal PWM duty cycle, allowing brightness control in 16 steps. This intensity register affects the global brightness, so it is used to dim the entire display at once.\u003c\/p\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eLED Matrix\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eThe \u003cstrong\u003e8x8 Y Click Board™\u003c\/strong\u003e brings serial 8x8 Yellow LED display matrix to your design\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003eMAX7219 8-digit LED display driver module as well as 64 Yellow LED diodes\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003eOn-chip BCD code-B decoder with 8x8 area\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eSPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eM (42.9 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout on \u003cstrong\u003ethe 8x8 Y Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable width=\"549\"\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth colspan=\"4\"\u003e\u003cimg alt=\"Mikrobus logo.png\" data-entity-type=\"\" data-entity-uuid=\"\" data-mce-src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\" src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\"\u003e\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e1\u003c\/td\u003e\n            \u003ctd\u003eAN\u003c\/td\u003e\n            \u003ctd\u003ePWM\u003c\/td\u003e\n            \u003ctd\u003e16\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e2\u003c\/td\u003e\n            \u003ctd\u003eRST\u003c\/td\u003e\n            \u003ctd\u003eINT\u003c\/td\u003e\n            \u003ctd\u003e15\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eData Load\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eCS\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e3\u003c\/td\u003e\n            \u003ctd\u003eCS\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e14\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Clock\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSCK\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e4\u003c\/td\u003e\n            \u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eTX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Output\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDO\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Input\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDI\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e+5V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003cbr\u003e\n             \u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003e \u003c\/h3\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768344928445,"sku":"MIKROE-1294","price":18.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-8x8-y-click-board-28833902788797.jpg?v=1685087392"},{"product_id":"mikroe-1851-alphanum-g-click-board-uk","title":"AlphaNum G Click Board™","description":"\u003cp\u003e\u003ciframe allow=\"accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture\" allowfullscreen=\"\" frameborder=\"0\" height=\"315\" src=\"https:\/\/www.youtube.com\/embed\/IZA6DzbKsZc\" title=\"YouTube video player\" width=\"560\"\u003e\u003c\/iframe\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003eAlphaNum G Click Board™\u003c\/strong\u003e\u003c\/em\u003e is a simple solution for adding 14-segment alphanumeric display to your device. The board carries two TLC5926 16-bit Constant-Current LED sink Drivers as well as a dual character green LED 14-segment display (with two additional segments for commas).\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eAlphaNum G Click Board™\u003c\/strong\u003e communicates with the target board through mikroBUS RST, CS, SCK, MISO, MOSI, PWM and INT pins (marked here as LE2, LE1, CLK, DOUT, DIN, NUMSEL and NUMSEL# respectively). The board is designed to use either a 3.3V or 5V power supply.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768345518269,"sku":"MIKROE-1851","price":18.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-alphanum-g-click-board-30267387412669.jpg?v=1685208003"},{"product_id":"mikroe-1864-alphanum-r-click-board-uk","title":"AlphaNum R Click Board™","description":"\u003cp\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/QpVQECJ7v7U\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/p\u003e\n\n\u003ch3\u003eIC\/Module: TLC5926 16-Bit Constant-Current LED Sink Driver\u003c\/h3\u003e\n\n\u003cp\u003eDesigned for LED displays and LED lighting applications, TLC5926 provides great flexibility and device performance. It provides adjustable output current (from 5 mA to 120 mA) through an external resistor to provide flexibility in controlling the light intensity of LEDs. The 30 MHz high clock frequency allows for high-volume data transmission.\u003c\/p\u003e\n\n\u003ch3\u003e14-segment LED display\u003c\/h3\u003e\n\n\u003cp\u003eAlphaNum R Click Board™ features a dual character red 14-segment LED display with two additional segments for commas or decimal points. Unlike a calculator-standard 7-segment display, which displays only digits, this Click Board™ can render the complete ISO Latin alphabet.\u003c\/p\u003e\n\n\u003ch3\u003eSMD Jumper\u003c\/h3\u003e\n\n\u003cp\u003eAlphaNum Click Board™ carries is a single zero-ohm SMD jumper used to select between 3.3V or 5V I\/O voltage levels. The jumper is soldered in the 3.3V position by default.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768345551037,"sku":"MIKROE-1864","price":18.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-alphanum-r-click-board-30267359166653.jpg?v=1684982632"},{"product_id":"mikroe-938-mikromedia-connect-shield-uk","title":"MikroMedia Connect Shield","description":"\u003ch2\u003eFitted with Screw Terminals\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003emikroMedia™ Connect Shield\u003c\/strong\u003e\u003c\/em\u003e board comes with superior quality screw terminals available on both sides, which allows for making secure and easy connections to each pin quickly without the need of soldering.\u003c\/p\u003e\n\n\u003ch2\u003eCompatibility with mikroMedia™ Boards\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003cstrong\u003emikroMedia™ Connect Shield\u003c\/strong\u003e is compatible with smaller range mikroMedia™ boards with a green PCB, which includes ATmega, Xmega, PIC18FJ, PIC24FJ, PIC24EP, dsPIC33FJ, dsPIC33EP, PIC32, ARM, Stellaris M3, STM32 M3, STM32 M4, Tiva C, PSoC 5LP.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768345780413,"sku":"MIKROE-938","price":19.2,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-shield-mikromedia-connect-shield-29671425900733.jpg?v=1685137083"},{"product_id":"graphic-lcd-128x64-mikroe-4-uk","title":"Graphic LCD 128x64","description":"","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768346108093,"sku":"MIKROE-4","price":35.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-display-graphic-lcd-128x64-29657686114493.jpg?v=1685118710"},{"product_id":"mikromedia-gaming-shield-mikroe-782-uk","title":"MikroMedia Gaming Shield","description":"\u003ch2\u003eControl Buttons and Indicator LEDs\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eMikroMedia™ Gaming Shield\u003c\/strong\u003e provides standard gaming control buttons and indicator LEDs. The button controls provide standard gaming functions: steering (left, right, up, down), actions (triangle, square, x, and circle), but we also added Start and Reset buttons. Also, the board has four indicator LEDs that indicates the game status and other activities.\u003c\/p\u003e\n\n\u003ch2\u003eAudio Module\u003c\/h2\u003e\n\n\u003cp\u003eGAMING shield comes with two integrated LM4864 audio amplifiers. These are connected to the speakers to work like a stereo audio system. Two connection pins aid in bringing the left and right audio signals to the board from the mikroMedia™ board.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768346403005,"sku":"MIKROE-782","price":42.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-shield-mikromedia-gaming-shield-36305431888095.jpg?v=1685121409"},{"product_id":"mikroe-1307-8x8-blue-click-board-uk","title":"8x8 B Click Board™","description":"\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003e8x8 B Click Board™ \u003c\/strong\u003e\u003c\/em\u003eis a 64 LED matrix display Click board™, composed of SMD LEDs organized in 8 rows by 8 columns. It has a digital brightness control in 16 steps, it can control every LED in the display matrix independently, it blanks the display on power up to eliminate glitches and it requires a single resistor to control the current through all the LEDs at once, which simplifies the design. 8x8 B click uses a fast SPI communication protocol, allowing fast display response and no lag.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003e8x8 B Click Board™\u003c\/strong\u003e can be used as a display or signalization output for a range of applications that are designed to display various information or graphics on the matrix LED display. By using functions provided by MikroElektronika, it is possible to make a text scroller in a very simple way, greatly expanding the functionality of the 8x8 click.\u003c\/p\u003e\n\n\u003ch2\u003eHow Does The 8x8 B Click Board™ Work?\u003c\/h2\u003e\n\n\u003cp\u003eThe main active component of the \u003cstrong\u003e8x8 B Click Board™\u003c\/strong\u003e is the MAX7129, a serially interfaced, a common cathode 8-digit LED display driver from Analog Devices. It consists of 8x8 RAM cells for storing the digit data, 16bit data shifter, constant current source for the LED segments, address register decoder, the intensity pulse width modulator, the digit scan section and finally output LED drivers. This IC is primarily designed to drive eight 7-segment LED digits with an additional dot segment (8 digits by 8 segments), but it can be used to drive a set of similar types of displays, such as LED matrices (e.g. 8x8 click), bar graph displays, panel meters, and similar. For that reason, the output drivers are referred to as digit outputs and segment outputs. This categorization also mirrors the way the internal memory is organized. The scan rate of the LED matrix display is 800Hz, typically.\u003cbr\u003e\n\u003cimg alt=\"\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/www.mikroe.com\/img\/cms\/8x8-b-click-inside-image.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe communication is done via the SPI interface. The data is sent by the host MCU, through the DIN pin of the MAX7129 IC, in packets that are 16 bits wide. A serial clock signal should be present at the CLK pin of this IC, and its frequency should stay below 10MHz. The DIN and CLK pins are routed to the mikroBUS™ SCK and MOSI pins, so that it can be easily connected to the SPI bus of the host MCU. DOUT pin can be used to daisy-chain several devices. The data from DIN pin is mirrored on the DOUT pin, but with the delay of 16.5 clock cycles. This pin is routed to the mikroBUS™ MISO pin. Unlike the regular SPI, this IC allows clocking the data in, regardless of the LOAD pin. However, the internal 16bit shift register will shift the data only on a rising edge of the LOAD pin, which needs to happen on the 16\u003csup\u003eth\u003c\/sup\u003e rising edge, and before the 17\u003csup\u003eth\u003c\/sup\u003e rising edge of the clock signal - else, the current data is discarded, and the shift register expects a new 16bit data packet to be clocked in. The LOAD pin is routed to the CS pin of the mikroBUS™\u003c\/p\u003e\n\n\u003cp\u003eThe input data is clocked in as described above, in a form of 16bit packets. Those packets contain the command and the data, both interleaved inside the packet. The first 8 bits are the data bits (D0 to D7), while the next four bits contain the register address (D8 to D11). The last four bits are disregarded by the internal logic (D12 to D15). The data is clocked MSB first, so the first received bit would be D15.\u003c\/p\u003e\n\n\u003cp\u003eThere is a number of various registers embedded in the MAX7129 IC that are used to perform a range of different functions. It has registers to set modes for each digit, setting it to binary coded decimal format (BCD) or no coding at all. It has a scan limit register, which limits display scanning to an arbitrary number of digits, test register which sets all the segments on all the digits to be fully ON, registers that allow intensity control by changing the duty cycle of the PWM, and so on. It should be noted that some of the registers make sense only if used with 7-segment LED elements, so their use should be avoided completely in the code, as the 8x8 click board is designed as a matrix LED display. More information about the registers and their usage can be found in the MAX7129 datasheet. Using functions provided by MikroElektronika ensures that the correct registers are accessed and exposes a comprehensive set of commands to work with the 8x8 B click.\u003c\/p\u003e\n\n\u003cp\u003eAn onboard resistor sets the peak current through the segments. This current is fine-tuned according to used LEDs requirements. The brightness can be changed by writing data in the intensity register. The lower 4 nibbles of this register are used to control the internal PWM duty cycle, allowing brightness control in 16 steps. This intensity register affects the global brightness, so it is used to dim the entire display at once.\u003c\/p\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eLED Matrix\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eThe \u003cstrong\u003e8x8 B Click Board™\u003c\/strong\u003e brings serial 8x8 BLUE LED display matrix to your design\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003eMAX7219 8-digit LED display driver\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003eOn-chip BCD code-B decoder with 8x8 area\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eSPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eM (42.9 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout of the \u003cstrong\u003e8x8 B Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable width=\"549\"\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth colspan=\"4\"\u003e\u003cimg alt=\"Mikrobus logo.png\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\"\u003e\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e1\u003c\/td\u003e\n            \u003ctd\u003eAN\u003c\/td\u003e\n            \u003ctd\u003ePWM\u003c\/td\u003e\n            \u003ctd\u003e16\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e2\u003c\/td\u003e\n            \u003ctd\u003eRST\u003c\/td\u003e\n            \u003ctd\u003eINT\u003c\/td\u003e\n            \u003ctd\u003e15\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eData Load\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eCS\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e3\u003c\/td\u003e\n            \u003ctd\u003eCS\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e14\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Clock\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSCK\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e4\u003c\/td\u003e\n            \u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eTX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Output\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDO\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSPI Data Input\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDI\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e+5V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003e \u003c\/h3\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768346599613,"sku":"MIKROE-1307","price":22.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-8x8-b-click-board-30269294608573.jpg?v=1685205479"},{"product_id":"mikroe-159-character-lcd-4x20-with-blue-backlight-uk","title":"Character LCD 4x20 with Large Digits and Blue Backlight","description":"","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768346697917,"sku":"MIKROE-159","price":43.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-display-character-lcd-4x20-with-large-digits-and-blue-backlight-23151403892925.jpg?v=1685094422"},{"product_id":"mikroe-1881-4x4-rgb-click-board-uk","title":"4X4 RGB Click Board™","description":"\u003ch3\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/2R-1i9teDwc\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/h3\u003e\n\n\u003cp\u003eThanks to the high brightness of the LED elements and their colour consistency, the \u003cstrong\u003e4x4 RGB Click Board™\u003c\/strong\u003e can be used in various decorative applications, simple pattern displays, colour number displays, and due to a cascade nature of the Click board™ itself, they can even be used for building larger screens and displays.\u003c\/p\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ch3\u003eHow Does The 4x4 RGB Click Board™ Work?\u003c\/h3\u003e\n\n\u003cp\u003eThe \u003cstrong\u003e4x4 RGB Click Board™\u003c\/strong\u003e carries sixteen LED elements labelled as  - intelligent LED elements with integrated control, from Worldsemi Corporation, arranged in a 4 by 4 matrix. These LED elements are composed of red, green, and blue LED segments, forming an RGB LED cell, with their intensities controlled by the integrated logic section. This integrated control section allows separate 8-bit control of each RGB segment, forming a 24-bit colour palette, allowing 16,777,216 different colours to be displayed.\u003cbr\u003e\n\u003cimg alt=\"\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/www.mikroe.com\/img\/cms\/4x4-rgb-click-inside-image.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe integrated logic communicates with the host MCU by a single line. The data transfer protocol uses the non-return-to-zero (NRZ) communication mode, so the timing of the data signal is critical. The logical 1 consists of a signal with a certain HIGH and LOW timing. The logical 0 also consists of a signal with a certain HIGH and LOW timing. The difference between logical 0 and 1 is in the timings of HIGH and LOW signal states, as illustrated in the picture below:\u003cbr\u003e\n\u003cimg alt=\"\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/www.mikroe.com\/img\/cms\/sequence-chart-inside-image.png\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe values of these timings are shown in the following table:\u003c\/p\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eHIGH level timing for logic 0\u003c\/td\u003e\n            \u003ctd\u003eT0H\u003c\/td\u003e\n            \u003ctd\u003e0.5us\u003c\/td\u003e\n            \u003ctd\u003e±150ns\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eLOW level timing for logic 0\u003c\/td\u003e\n            \u003ctd\u003eT0L\u003c\/td\u003e\n            \u003ctd\u003e0.8us\u003c\/td\u003e\n            \u003ctd\u003e±150ns\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eHIGH level timing for logic 1\u003c\/td\u003e\n            \u003ctd\u003eT1H\u003c\/td\u003e\n            \u003ctd\u003e0.7us\u003c\/td\u003e\n            \u003ctd\u003e±150ns\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eLOW level timing for logic 1\u003c\/td\u003e\n            \u003ctd\u003eT1L\u003c\/td\u003e\n            \u003ctd\u003e0.6us\u003c\/td\u003e\n            \u003ctd\u003e±150ns\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eLOW level timing for RESET\u003c\/td\u003e\n            \u003ctd\u003eTRST\u003c\/td\u003e\n            \u003ctd\u003e\u0026gt; 50us\u003c\/td\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003cp\u003eThis means that by sending logical 1 to the WS2812 device, the host MCU has to keep the data line HIGH for 0.7us then LOW for another 0.6us. Once the first 24bits are completed this way, the RST impulse will latch the data in.\u003c\/p\u003e\n\n\u003cp\u003eThe communication line can be selected with the onboard SW1 switch. It offers a selection between the mikroBUS™ RST and CS lines, labelled as IN1 and IN2. The communication voltage level can be set by the onboard SMD jumper, labelled as the IO LEVEL and it can be chosen between 3.3V and 5V, allowing interfacing to both 3.3V and 5V MCUs.\u003cbr\u003e\n\u003cbr\u003e\nThe power supply for the LED elements is provided by the MCP1826 low-voltage, low quiescent current LDO regulator from Microchip, which can provide current up to 1A. While the logic voltage can be selected between 3.3V and 5V rails, the LED power supply is derived from the 5V mikroBUS™ power rail. It is reduced to 3.5V by the LDO, and distributed to the LED supply inputs of the WS2812 elements.\u003c\/p\u003e\n\n\u003cp\u003eThe PWM pin of the mikroBUS™, which is labelled as OUT on this Click board™, allows cascading of multiple 4x4 RGB click devices. It simply routes the data line back to the mikroBUS™, allowing it to be re-used for the next 4x4 RGB click, and so on. The length of the whole chain is limited only by the communication speed, required to scan through all the LED devices, in order to maintain a reasonable refresh speed.\u003c\/p\u003e\n\n\u003cp\u003eA more detailed explanation of the data communication can be found in the WS2812 datasheet. However, the MikroElektronika provides a library that contains functions compatible with the MikroElektronika compilers, which can be used for simplified programming of the 4x4 RGB click. The library also contains an example application, which demonstrates their use. This example application can be used as a reference for custom designs.\u003c\/p\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eLED Matrix\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eRGB Matrix display that can be used for many decorative functions, showing a different kinds of patterns or characters, or for providing a visual feedback\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003eWS2812 - intelligent LED elements with integrated control, from the Worldsemi Corporation; MCP1826, a low-voltage LDO regulator from Microchip\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003eHigh brightness smart LED elements to allow display of various patterns in 16,777,216 different colours, data out pin for cascading additional devices, simplified programming with the included library functions\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eGPIO\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eL (57.15 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e3.3V or 5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout of the \u003cstrong\u003e4x4 RGB Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003e \u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e1\u003c\/td\u003e\n            \u003ctd\u003eAN\u003c\/td\u003e\n            \u003ctd\u003ePWM\u003c\/td\u003e\n            \u003ctd\u003e16\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eOUT\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eOutput pin\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eData input 1\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eIN1\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e2\u003c\/td\u003e\n            \u003ctd\u003eRST\u003c\/td\u003e\n            \u003ctd\u003eINT\u003c\/td\u003e\n            \u003ctd\u003e15\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eData input 2\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eIN2\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e3\u003c\/td\u003e\n            \u003ctd\u003eCS\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e14\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e4\u003c\/td\u003e\n            \u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eTX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e \u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e3.3V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e5V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ch3\u003eONBOARD SETTINGS AND INDICATORS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eLabel\u003c\/th\u003e\n            \u003cth\u003eName\u003c\/th\u003e\n            \u003cth\u003eDefault\u003c\/th\u003e\n            \u003cth\u003eDescription\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSW1\u003c\/td\u003e\n            \u003ctd\u003eSW1\u003c\/td\u003e\n            \u003ctd\u003eRight\u003c\/td\u003e\n            \u003ctd\u003eData Input selection jumper: left position IN2, right position IN1\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eJP1\u003c\/td\u003e\n            \u003ctd\u003eIO level\u003c\/td\u003e\n            \u003ctd\u003eRight\u003c\/td\u003e\n            \u003ctd\u003eVoltage Logic Level Selection: left position 3.3V, right position 5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003ch3\u003e \u003c\/h3\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768347549885,"sku":"MIKROE-1881","price":23.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-4x4-rgb-click-board-30270712086717.jpg?v=1685207102"},{"product_id":"graphic-lcd-128x64-with-touchpanel-mikroe-240-uk","title":"Graphic LCD 128x64 with TouchPanel","description":"\u003cp\u003e.\u003c\/p\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eLCD\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eDisplay size\u003c\/td\u003e\n            \u003ctd\u003e64x128 Characters\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGraphic controller\u003c\/td\u003e\n            \u003ctd\u003eNT7108\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eTouch Screen\u003c\/td\u003e\n            \u003ctd\u003eNone\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eParallel 8-bit\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768351940797,"sku":"MIKROE-240","price":47.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-display-graphic-lcd-128x64-with-touchpanel-29806550515901.jpg?v=1685159576"},{"product_id":"mikroe-1649-oled-w-click-board-uk","title":"OLED W Click Board™","description":"\u003ch3\u003eSmall but Bright and Crisp Display\u003c\/h3\u003e\n\n\u003cp\u003eOLED W Click Board™ features a passive matrix monochrome OLED display featuring small (19.3 x 7.8mm) active display area with a bright and crisp 96 x 39px resolution. The wide viewing angle allows the user to watch your display from any position without losing sight.\u003c\/p\u003e\n\n\u003cp\u003e\u003cbr\u003e\n.\u003c\/p\u003e\n\n\u003cp\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/PbhkdLQTbzE\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/p\u003e\n\n\u003ch3\u003eon-board SSD1306 Controller\u003c\/h3\u003e\n\n\u003cp\u003eSSD1306 is a single-chip CMOS OLED driver that embeds with contrast control, display RAM and oscillator, which reduces the number of external components and power consumption. The controller provides horizontal and vertical scrolling functions, contrast control, normal or inverse image display, and more.\u003c\/p\u003e\n\n\u003ch3\u003eOther OLED Displays\u003c\/h3\u003e\n\n\u003cp\u003eJust like OLED W Click Board™ (for white text), OLED B Click Board™ (for blue text) is also a member of the monochrome OLED display family. The only difference between these two OLED displays is the colour in which the text is displayed.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768352596157,"sku":"MIKROE-1649","price":29.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-oled-w-click-board-30240840122557.jpg?v=1685021689"},{"product_id":"mikroe-1650-oled-b-click-board-uk","title":"OLED B Click Board™","description":"\u003ch3\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/zAYh5h4NpXA\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/h3\u003e\n\n\u003ch3\u003eHow Does The OLED B Click Board™ Work?\u003c\/h3\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003eOLED B Click Board™\u003c\/strong\u003e\u003c\/em\u003e as its foundation uses the MI9639BO-B2, a 19.3x7.8mm 96x39px light blue monochrome passive matrix OLED display from Multi-Inno Technology. The MI9639BO-B2 display features an SSD1306, a 128x64 dot-matrix OLED\/PLED segment\/common driver with a controller. The controller has built-in functionalities like contrast control (256-step brightness control), normal or inverse image display, vertical and horizontal scrolling functions, and much more accessible through the I2C serial interface.\u003c\/p\u003e\n\n\u003cp\u003e\u003cimg alt=\"oled b click inneri\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/www.mikroe.com\/img\/images\/oled_b_click_inneri.jpg\"\u003e\u003c\/p\u003e\n\n\u003cp\u003eOLEDs are emissive and don't require a separate backlight as LCD technology does, reducing the OLED display's overall power consumption compared to LCDs. It also does not suffer from loss of contrast due to bleed-through of the backlight in the \"off\" pixels. OLEDs, being emissive, have a consistent contrast ratio greater than 100:1 with no limitation in viewing angle. In addition, they don't suffer from temperature-related response time delays and contrast changes.\u003c\/p\u003e\n\n\u003cp\u003eLike any OLED display, the MI9639BO-B2 is made from a thin film of an organic compound that emits light when exposed to a current. A small monochrome display like this one represents an ideal solution for displaying text or icons. The MI9639BO-B2 display is bright, has a wide viewing angle, and low power consumption.\u003c\/p\u003e\n\n\u003cp\u003eIn addition to the display's main power supply, taken from the +3.3V microBUS™ power rail, the MI9639BO-B2 has another power pin, more precisely the power supply for DC\/DC converter circuit. This pin is the power supply pin for the internal buffer of the DC\/DC voltage converter. Therefore, for this pin, the Click board™ uses a low dropout linear regulator AP7331 from Diodes Incorporated, providing a 3.6V power supply out of 5V mikroBUS™ rail.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eOLED B Click Board™\u003c\/strong\u003e communicates with MCU using the standard I2C 2-Wire interface to read data and configure settings. It provides the possibility of the communication-enable feature routed to the CS pin of the mikroBUS™ socket, enabling the OLED B Click for MCU communication only when the CS pin is pulled to a low logic state. In addition, it has two more pins. First is related to the reset function, routed to the RST pin on the mikroBUS™ socket (when the pin is in a low logic state, the initialization of the chip is executed), and the second labelled as D\/C and routed to the PWM pin on the mikroBUS™ socket is I2C slave address selection pin.\u003c\/p\u003e\n\n\u003cp\u003e\u003cstrong\u003eNOTE: \u003c\/strong\u003e If the noise accidentally occurs at the displaying window during the operation, please reset the display to recover the display function.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eOLED B Click Board™\u003c\/strong\u003e is designed to be operated only with a 3.3V logic voltage level, while 5V is used as a supply voltage of the AP7331 LDO. The board must perform appropriate logic voltage level conversion before use with MCUs with different logic levels. However, the Click board™ comes equipped with a library containing easy-to-use functions and an example code that can be used, as a reference, for further development.\u003c\/p\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eOLED\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eThe \u003cstrong\u003eOLED B Click Board™ \u003c\/strong\u003eis Ideal for displaying bright and crisp blue text or icons\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003eSSD1306 controller, 96 x 39px blue monochrome passive matrix OLED display\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003e96 x 39px resolution, 19.3 x 7.8mm active area\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eGPIO,I2C,SPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eM (42.9 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e3.3V,5V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout of the \u003cstrong\u003eOLED B Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable width=\"549\"\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth colspan=\"4\"\u003e\u003cimg alt=\"Mikrobus logo.png\" data-entity-type=\"\" data-entity-uuid=\"\" src=\"https:\/\/cdn.mikroe.com\/img\/mikrobus\/mikroBUS-logo-black.png\"\u003e\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e1\u003c\/td\u003e\n            \u003ctd\u003eAN\u003c\/td\u003e\n            \u003ctd\u003ePWM\u003c\/td\u003e\n            \u003ctd\u003e16\u003c\/td\u003e\n            \u003ctd\u003e\u003cb\u003eD\/C\u003c\/b\u003e\u003c\/td\u003e\n            \u003ctd\u003eI2C Slave Address Selection\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eReset\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eRST\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e2\u003c\/td\u003e\n            \u003ctd\u003eRST\u003c\/td\u003e\n            \u003ctd\u003eINT\u003c\/td\u003e\n            \u003ctd\u003e15\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCommunication Enable\u003c\/td\u003e\n            \u003ctd\u003e\u003cb\u003eCS\u003c\/b\u003e\u003c\/td\u003e\n            \u003ctd\u003e3\u003c\/td\u003e\n            \u003ctd\u003eCS\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e14\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e4\u003c\/td\u003e\n            \u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eTX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSCL\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eI2C Clock\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDA\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eI2C Data\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003ePower Supply\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e3.3V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e5V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003ePower Supply\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003eONBOARD SETTINGS AND INDICATORS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eLabel\u003c\/th\u003e\n            \u003cth\u003eName\u003c\/th\u003e\n            \u003cth\u003eDefault\u003c\/th\u003e\n            \u003cth\u003eDescription\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eLD1\u003c\/td\u003e\n            \u003ctd\u003ePWR\u003c\/td\u003e\n            \u003ctd\u003e-\u003c\/td\u003e\n            \u003ctd\u003ePower LED Indicator\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003eOLED B CLICK ELECTRICAL SPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eDescription\u003c\/th\u003e\n            \u003cth\u003eMin\u003c\/th\u003e\n            \u003cth\u003eTyp\u003c\/th\u003e\n            \u003cth\u003eMax\u003c\/th\u003e\n            \u003cth\u003eUnit\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eReceiver inputs voltage range\u003c\/td\u003e\n            \u003ctd\u003e3.3\u003c\/td\u003e\n            \u003ctd\u003e-\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eV\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eReceiver inputs voltage range\u003c\/td\u003e\n            \u003ctd\u003e-\u003c\/td\u003e\n            \u003ctd\u003e96(H) x 39(V)\u003c\/td\u003e\n            \u003ctd\u003e-\u003c\/td\u003e\n            \u003ctd\u003epx\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eReceiver inputs voltage range\u003c\/td\u003e\n            \u003ctd\u003e-40\u003c\/td\u003e\n            \u003ctd\u003e+25\u003c\/td\u003e\n            \u003ctd\u003e+70\u003c\/td\u003e\n            \u003ctd\u003e°C\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003e \u003c\/h3\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768352628925,"sku":"MIKROE-1650","price":29.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-oled-b-click-board-30240928858301.jpg?v=1685022062"},{"product_id":"mikroe-1404-tft-color-display-320x240-with-touch-screen-uk","title":"TFT Color Display 320x240 with Touch Screen - MI0283QT-9A","description":"\u003cp\u003eThe 2.83\" TFT colour display MI0283QT-9A with 320x240 pixel resolution, which is driven by ILI9341 display controller, capable of showing advanced graphical content. Each pixel can display 262K different colors. TFT display is covered with a resistive touch panel which can be used as input device.\u003c\/p\u003e\n\n\u003ch2\u003eSpecifications\u003c\/h2\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eTFT\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eDisplay size\u003c\/td\u003e\n            \u003ctd\u003e2.8\"\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGraphic controller\u003c\/td\u003e\n            \u003ctd\u003eILI9341\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eTouch Screen\u003c\/td\u003e\n            \u003ctd\u003eResistive\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eI2C,SPI,Parallel 18-bit\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e2.8V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768353677501,"sku":"MIKROE-1404","price":31.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-display-tft-color-display-320x240-with-touch-screen-mi0283qt-9a-23151719415997.jpg?v=1685047980"},{"product_id":"mikroe-1585-oled-c-click-board-uk","title":"OLED C Click Board™","description":"\u003cp\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/pwkPJRLw1U8\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003eOLED C Click Board™\u003c\/strong\u003e\u003c\/em\u003e is equipped with the 96x96 high-color OLED display. It can display up to 65K\/262K different colors and shades on a compact size display, based on the OLED technology. The OLED technology provides a very good brightness-to-contrast ratio, doesn't require any backlight - since the pixel elements emit light on their own, better angle of viewing - compared to traditional TFT screens, better power consumption, better picture quality, better response times and more. The OLED technology is constantly being perfected and it is slowly taking over the existing liquid crystal technology (TFT).\u003c\/p\u003e\n\n\u003cp\u003eThe compact size of the display and the used OLED technology makes the \u003cstrong\u003eOLED C Click Board™\u003c\/strong\u003e a perfect solution for many applications which require the display of some information on the screen, in a form of a diagram, text or a pie chart. The Click board™ can be used to display images or any kind of graphics in 96x96 pixels resolution, with 65K\/262K colors. It is a perfect solution to add display functionality to small development systems, such as the Clicker or Clicker 2 systems.\u003c\/p\u003e\n\n\u003ch3\u003eHow Does The OLED C Click Board™ Work?\u003c\/h3\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eOLED C Click Board™\u003c\/strong\u003e features the PSP27801 OLED display, with the resolution of 96x96 pixels. The graphics driver used on this OLED display is the SSD1351, the display driver IC from Solomon Systech with embedded 128x128x18 bit SRAM display buffer. The SSD1351 driver is designed to work with the common cathode type OLED displays. It has both parallel (8080\/6800) and serial interfaces for the communication.\u003c\/p\u003e\n\n\u003cp\u003eThe SSD1351 controller also has built-in functionalities like the vertical and horizontal scrolling, programmable frame rate, row and column remapping, color swapping, etc. It supports two color modes: 65K (6:5:6) and 262K (6:6:6) and up to 128x128 pixels. However, the used OLED display has 96x96 visible pixels.\u003c\/p\u003e\n\n\u003cp\u003eTo send command or data to the SSD1351 controller via the SPI interface, it is necessary to pull the D\/C pin to a LOW or to a HIGH logic state. Sending data requires pulling this pin to a HIGH logic level while sending command requires pulling this pin to a LOW logic level. If the receiving byte is a type of data, it will be written directly to the Graphical Display Data memory (GDDRAM). If the receiving byte is a command, it will be decoded and written into the corresponding command register.\u003c\/p\u003e\n\n\u003cp\u003eThe GDDRAM on the device is sorted in 128x128 cells with 18 bits for each pixel. In the 262K color mode, three 8bit data words are interpreted as the pixel color value: the first word is the RED color data, the second word is GREEN color data and the third word is BLUE color data. Since every pixel can have a maximum of 18bits, each color is taking up 6 bits (6:6:6 color mode). The last 2 bits are disregarded.\u003c\/p\u003e\n\n\u003cp\u003eWhen set to work in 65K color mode, only two 8bit words are required per pixel: the 5 MSB of the first word, is interpreted as the RED color data and the remaining 3 LSB are interpreted as the GREEN color data. The second 8bit word contains 3 more bits for the GREEN color data, while the remaining 5 LSB is the BLUE color data. This comprises the 5:6:5 pixel format.\u003c\/p\u003e\n\n\u003cp\u003eThe CS pin is a part of the SPI communication protocol and it is used to select the device and enable the communication on the serial bus. When this pin is pulled to a LOW logic level, the device expects data (or command, depending on the D\/C pin state) to be clocked in from the MOSI pin of the mikroBUS™.\u003c\/p\u003e\n\n\u003cp\u003eThe R\/W pin is used only for the parallel communication. When using serial communication (like it is a case for the OLED C click) this pin should be pulled to a LOW logic level.\u003c\/p\u003e\n\n\u003cp\u003eThe RST pin is used to reset the device when it is pulled to a LOW logic level. For the normal operation, this pin should stay at the HIGH logic level. When not asserted by the host MCU, this pin is set to a HIGH logic level by the pull-up resistor.\u003c\/p\u003e\n\n\u003cp\u003eThe EN pin is actually routed to the small, low power onboard step-up converter, used to provide voltage for the display. It uses the 3.3V rail of the mikroBUS™ and converts it to 15V on the output. EN pin enables or disables the step-up converter and consequently - the OLED screen itself. To enable this converter, the EN line should be pulled to a HIGH logic level. When not asserted, it is pulled to a LOW logic level by the pull-down resistor.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eOLED C Click Board™\u003c\/strong\u003e comes with the library which contains functions which simplify working with the OLED C click while it is used with mikroC, mikroBASIC and mikroPASCAL compilers. These functions include a display of images, text with a selectable font, some basic shapes, and more. The library comes with the example application that demonstrates using these functions and it can be used as a reference for custom design.\u003c\/p\u003e\n\n\u003ch3\u003eCOMPARISON TABLE\u003c\/h3\u003e\n\n\u003cp\u003eThe table below shows the difference between the old version of the click, that is now obsolete, and the new one with the PSP27801 display.\u003c\/p\u003e\n\n\u003ctable border=\"2\"\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003e\u003cstrong\u003eProduct Version:\u003c\/strong\u003e\u003c\/th\u003e\n            \u003cth\u003eOLED_C_Click_v100\u003c\/th\u003e\n            \u003cth\u003eOLED_C_Click_v101\u003c\/th\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eOLED part number:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eMI9696CO_v1.1\u003c\/td\u003e\n            \u003ctd\u003ePSP27801\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eController:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eSEPS114A\u003c\/td\u003e\n            \u003ctd\u003eSSD1351\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eDisplay color:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e65,536\u003c\/td\u003e\n            \u003ctd\u003e65,536\/262,144\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eSize\/Resolution:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e96x96pix\u003c\/td\u003e\n            \u003ctd\u003e96x96pix\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eModule size:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e25.90 x 30.10 x 1.30 mm\u003c\/td\u003e\n            \u003ctd\u003e25.8 x 48.1 x 1.227mm (type)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eDiagonal A\/A size\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e1.12 inch\u003c\/td\u003e\n            \u003ctd\u003e1.12 inch\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eActive area:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e19.852 x 19.852 mm\u003c\/td\u003e\n            \u003ctd\u003e20.135 x 20.14 mm\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eDot pitch:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e0.207 x 0.207\u003c\/td\u003e\n            \u003ctd\u003e0.07 x 0.21mm\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eDot size:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e0.187 x 0.187\u003c\/td\u003e\n            \u003ctd\u003e0.045 x 0.19mm\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003e\u003cstrong\u003eInterface:\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8-bit parallel,4-wire SPI\u003c\/td\u003e\n            \u003ctd\u003e8\/16\/18 bit parallel, 3-wire and 4-wire SPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003eSPECIFICATIONS\u003c\/h3\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eType\u003c\/td\u003e\n            \u003ctd\u003eOLED\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eApplications\u003c\/td\u003e\n            \u003ctd\u003eThe \u003cstrong\u003eOLED C Click Board™\u003c\/strong\u003e can be used to display images or any kind of graphics in 96x96 pixels resolution, with 65K\/262K colors. It is a perfect solution to add display functionality to small development systems, such as the Clicker or Clicker 2 systems.\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eOn-board modules\u003c\/td\u003e\n            \u003ctd\u003ePSP27801 OLED 1.12 Inch display, with the resolution of 96x96 pixels, and SSD1351 COF display driver IC from Solomon Systech\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eKey Features\u003c\/td\u003e\n            \u003ctd\u003eCompact OLED color display with the resolution of 96x96 pixels, with inherently high contrast ratio, integrated SSD driver IC which provides 5:6:5 and 6:6:6 color formats, wide viewing angle and high-speed SPI communication with low pins count\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInterface\u003c\/td\u003e\n            \u003ctd\u003eSPI\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eCompatibility\u003c\/td\u003e\n            \u003ctd\u003emikroBUS\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eClick board size\u003c\/td\u003e\n            \u003ctd\u003eL (57.15 x 25.4 mm)\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eInput Voltage\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n        \u003c\/tr\u003e\n    \u003c\/tbody\u003e\n\u003c\/table\u003e\n\n\u003ch3\u003ePINOUT DIAGRAM\u003c\/h3\u003e\n\n\u003cp\u003eThis table shows how the pinout of the \u003cstrong\u003eOLED C Click Board™\u003c\/strong\u003e corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).\u003c\/p\u003e\n\n\u003ctable\u003e\n    \u003ctbody\u003e\n        \u003ctr\u003e\n            \u003cth\u003eNotes\u003c\/th\u003e\n            \u003cth\u003ePin\u003c\/th\u003e\n            \u003cth 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\u003ctd\u003eSCK\u003c\/td\u003e\n            \u003ctd\u003eRX\u003c\/td\u003e\n            \u003ctd\u003e13\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSerial data output\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDO\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e5\u003c\/td\u003e\n            \u003ctd\u003eMISO\u003c\/td\u003e\n            \u003ctd\u003eSCL\u003c\/td\u003e\n            \u003ctd\u003e12\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eSerial data input\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eSDI\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e6\u003c\/td\u003e\n            \u003ctd\u003eMOSI\u003c\/td\u003e\n            \u003ctd\u003eSDA\u003c\/td\u003e\n            \u003ctd\u003e11\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003ePower supply\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003e+3.3V\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e7\u003c\/td\u003e\n            \u003ctd\u003e3.3V\u003c\/td\u003e\n            \u003ctd\u003e5V\u003c\/td\u003e\n            \u003ctd\u003e10\u003c\/td\u003e\n            \u003ctd\u003eNC\u003c\/td\u003e\n        \u003c\/tr\u003e\n        \u003ctr\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003e8\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003eGND\u003c\/td\u003e\n            \u003ctd\u003e9\u003c\/td\u003e\n            \u003ctd\u003e\u003cstrong\u003eGND\u003c\/strong\u003e\u003c\/td\u003e\n            \u003ctd\u003eGround\u003c\/td\u003e\n        \u003c\/tr\u003e\n    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TFT display is covered with a resistive touch panel which can be used as an input device. For further connectivity two 1x26 side headers are provided. Mounting holes (ø 2.29 mm) located in each corner simplify integration. Board is designed in the same form factor as mikromedia boards. This allows you to easily switch from \u003cstrong\u003emikroTFT\u003c\/strong\u003e to mikromedia, and vice-versa, while retaining most of the integration features.\u003c\/p\u003e\n\n\u003ch2\u003eILI9341 Display Controller\u003c\/h2\u003e\n\n\u003cp\u003eILI9341 is a 262,144-colour single-chip SOC driver for a-TFT liquid crystal display. Featuring a resolution of 240RGBx320 dots, ILI9341 supports parallel 8-\/9-\/16-\/18-bit data bus MCU interface, 6-\/16-\/18-bit data bus RGB interface and 3-\/4-line serial peripheral interface (SPI). 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The increased size provides room for numerous on-board modules that allow you to write multimedia applications. Internet of things - check! .\u003c\/p\u003e\n\n\u003cp\u003eThe on-board SPWF01SA WiFi module has its own STM32 MCU, with full featured TCP\/IP protocol stacks integrated. 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It has a 128-depth FIFO buffer as well as movement tracking functionality.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768358789309,"sku":"MIKROE-1678","price":58.1,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-display-tft-proto-4-3in-29806419345597.jpg?v=1685048150"},{"product_id":"mikromedia-dspic33-mikroe-606-uk","title":"mikroMedia for DSPIC33","description":"\u003ch2\u003edsPIC33FJ256GP710A microcontroller\u003c\/h2\u003e\u003cp\u003eThe mikroMedia™ for dsPIC33 development system includes 16-bit dsPIC33FJ256GP710A microcontroller. With integrated modules on the board as well as combination with other on-board modules, this high-performance microcontroller makes a great choice for developing applications with multimedia content. It features up to 40 MIPS, 256 KB of program memory, 30.720 Bytes of RAM, and 85 I\/O pins.\u003c\/p\u003e\u003ch2\u003ePower Supply Options\u003c\/h2\u003e\u003cp\u003eThe user can use either use a Li-Polymer battery via battery connector or use a Mini-B USB cable provided with the board to supply power to the mikroMedia™ for dsPIC33. While the MCP73832 battery charger circuit enables user to charge the battery over a USB connection, the voltage regulators provide appropriate voltage levels to each component on the board.\u003c\/p\u003e\u003ch2\u003eProgramming the Microcontroller\u003c\/h2\u003e\u003cp\u003eThe user can program the microcontroller using the USB bootloader, which is pre-installed in the MCU memory. The user can use the free ds30 loader application to transfer a .hex file from a PC to the MCU. 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Just plug in the USB cable and there you go!.\u003c\/p\u003e\u003ch2\u003eProgramming\u003c\/h2\u003e\u003cp\u003eThe board features mikroProg for Tiva programmer and debugger. All you need to do is plug the USB cable into ICDI connector and use mikroProg Suite for ARM or other programming software to upload new device firmware.\u003c\/p\u003e\u003ch2\u003eCompilers\u003c\/h2\u003e\u003cp\u003emikroMedia™ 5 for Tiva is fully supported by mikroC, mikroBasic and mikroPascal compilers for ARM. Compilers come with dozens of examples that demonstrate every feature of the board.\u003c\/p\u003e\u003cp\u003eGUI design with Visual TFT.\u003c\/p\u003e\u003cp\u003eEasily create fantastic colourful graphical user interfaces (GUI) for mikroMedia™ in Visual TFT software. Even total beginners will be able to create amazing applications.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768359477437,"sku":"MIKROE-1504","price":225.96,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-5-for-tiva-30239073861821.jpg?v=1685192875"},{"product_id":"7x10-r-click-board-mikroe-1993-uk","title":"7x10 R Click Board™","description":"\u003cp\u003e \u003c\/p\u003e\n\n\u003ch2\u003eA Multi-Faceted Display\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003e7x10 R Click Board™ \u003c\/strong\u003e\u003c\/em\u003eperforms the operation of carrying a matrix of 70 red LEDs driven by a pairs of 8-bit serial-in, parallel-out shift registers, a Darlington Transistor array and a Johnson counter. It communicates with the target MCU through the mikroBUS SPI interface (SCK, SDO, SDI), with additional functionality provided by R CLK, MR#, LATCH and R RST pins.\u003c\/p\u003e\n\n\u003cp\u003e\u003cspan class=\"fr-video fr-fvc fr-dvi fr-draggable\"\u003e\u003ciframe allowfullscreen=\"\" class=\"fr-draggable\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/FY_1OzIALUQ\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/span\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe display is driven by four different chips-a pair of serial-in parallel-out shift register that take the input from an MCU through the mikroBUS SPI interface and a Darlington transistor array that amplifies the current enough for lighting up the LEDs. The \u003cstrong\u003e7x10 R Click Board™\u003c\/strong\u003e is also equipped with Johnson counter IC which does the LED multiplexing, turning LEDs on and off rapidly.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768360100029,"sku":"MIKROE-1993","price":12.6,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-7x10-r-click-board-30270072029373.jpg?v=1685217899"},{"product_id":"mikroe-2246-matrix-g-click-board-uk","title":"Matrix G Click Board™","description":"\u003cp\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/pWYi416CeJY\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003eMatrix G Click Board™\u003c\/strong\u003e\u003c\/em\u003e is a mikroBUS add-on board with two green 5x7 matrices driven by two MAX7219 8-bit LED Display Drivers. The active area of each matrix is 7.62mm high and 5.08 mm wide. 7x5 is a standard resolution for displaying ASCII characters, so the click is essentially a dual-character display capable of showing letters in more readable typefaces compared to a 14-segment display.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eMatrix G Click Board™\u003c\/strong\u003e communicates with the target MCU through the mikroBUS SPI interface with two separate Chip Select lines for each matrix (CSL for the left, CSR for the right). This board is designed to use a 5V power supply.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768364589245,"sku":"MIKROE-2246","price":24.5,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-matrix-g-click-board-30241469956285.jpg?v=1685021341"},{"product_id":"mikroe-2245-matrix-r-click-board-uk","title":"Matrix R Click Board™","description":"\u003cp\u003e\u003ciframe allowfullscreen=\"\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/E0rcz-f0TRk\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003eMatrix R Click Board™\u003c\/strong\u003e\u003c\/em\u003e is a mikroBUS add-on board with two red 5x7 matrices driven by two MAX7219 8-bit LED Display Drivers. The active area of each matrix is 7.62mm high and 5.08 mm wide. 7x5 is a standard resolution for displaying ASCII characters, so the click is essentially a dual-character display capable of showing letters in more readable typefaces compared to a 14-segment display.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003eMatrix R Click Board™\u003c\/strong\u003e communicates with the target MCU through the mikroBUS\u003cstrong\u003e™\u003c\/strong\u003e SPI interface with two separate Chip Select lines for each matrix (CSL for the left, CSR for the right). This board is designed to use a 5V power supply.\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768364622013,"sku":"MIKROE-2245","price":28.7,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-matrix-r-click-board-29636790681789.jpg?v=1685095500"},{"product_id":"matrix-rgb-click-board-mikroe-2239-uk","title":"Matrix RGB Click Board™","description":"\u003cp\u003eThe \u003cem\u003e\u003cstrong\u003eMatrix RGB Click Board™\u003c\/strong\u003e\u003c\/em\u003e is a mikroBUS add-on board powered by a 32-bit FT900 MCU designed specifically for powering 16x32 RGB LED matrices. The board has a 16 wire IDC connector for connecting to a single 16x32 LED panel; however, the firmware inside the FT900x chip can drive more than one panel. Multiple panels can be connected to each other into a daisy-chain configuration (see the video).\u003c\/p\u003e\n\n\u003cp\u003e \u003c\/p\u003e\n\n\u003cp\u003e\u003cspan class=\"fr-video fr-fvc fr-dvi fr-draggable\"\u003e\u003ciframe allowfullscreen=\"\" class=\"fr-draggable\" frameborder=\"0\" src=\"\/\/www.youtube.com\/embed\/gk0COGsMeMo\" style=\"width:500px;height:281px;\"\u003e\u003c\/iframe\u003e\u003c\/span\u003e\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768367341757,"sku":"MIKROE-2239","price":20.3,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-click-board-matrix-rgb-click-board-30241405042877.jpg?v=1685196111"},{"product_id":"mikroe-2275-riverdi-hmi-display-35-uk","title":"mikroMedia HMI 3.5\"","description":"\u003cp\u003emikroMedia™ HMI boards are driven by FTDI Chips FT900Q with their proprietary 32-bit RISC core with industry-leading performance. With execution from shadow memory, the MCU can achieve speeds of 3.1 DMIPS\/MHz at 100 MHz. FT900Q has 256KB of Flash memory, a small part of which is taken by the built-in bootloader.\u003c\/p\u003e\n\n\u003cp\u003eThe concept of mikroMedia™ HMI is to keep only the essential components that simplify its integration into a final product, whilst keeping overall costs down.\u003c\/p\u003e\n\n\u003cp\u003eThe board integrates a microSD card for expanding storage capacity, a haptic feedback motor, small audio speaker, and a micro USB connector. A connector for interfacing the MCU with external electronics, along with a separate connector for FT900Qs parallel camera interface.\u003c\/p\u003e\n\n\u003cp\u003emikroMedia™ for HMI 3.5\" has a high-quality Riverdi display with 16.7M colour depth and 550 NIT brightness. The display is driven by a FT812 graphic controller. A mounting frame surrounding the screen simplifies integration.\u003c\/p\u003e\n\n\u003ch2\u003eExtras\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003ca href=\"https:\/\/thedebugstore.com\/products\/mikroe-2300-mikromedia-hmi-breakout-board-uk\" title=\"mikroMedia™ HMI Breakout Board\"\u003ehttps:\/\/thedebugstore.com\/products\/mikroe-2300-mikromedia-hmi-breakout-board-uk\u003c\/a\u003e (sold separately) contains a micro USB port, an RJ-45 Ethernet connector, as well as an external programmer connector (ideally used with mikroProg for FT90x). Two 24-pin flat cables are included in the packaging, enabling the use of both mikroMedia™ HMI connectors at the same time (MAIN, CAMERA).\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768367538365,"sku":"MIKROE-2275","price":78.12,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-hmi-3-5-29681881972925.jpg?v=1685137253"},{"product_id":"riverdi-hmi-display-35-resistive-touch-mikroe-2276-uk","title":"mikroMedia HMI 3.5\" Res","description":"\u003cp\u003emikroMedia™ HMI boards are driven by FTDI Chips FT900Q with their proprietary 32-bit RISC core with industry-leading performance. With execution from shadow memory, the MCU can achieve speeds of 3.1 DMIPS\/MHz at 100 MHz. FT900Q has 256KB of Flash memory, a small part of which is taken by the built-in bootloader.\u003c\/p\u003e\n\n\u003cp\u003eThe concept of mikroMedia™ HMI is to keep only the essential components that simplify its integration into a final product, whilst keeping overall costs down.\u003c\/p\u003e\n\n\u003cp\u003eThe board integrates a microSD card for expanding storage capacity, a haptic feedback motor, small audio speaker, and a micro USB connector. A connector for interfacing the MCU with external electronics, along with a separate connector for FT900Qs parallel camera interface.\u003c\/p\u003e\n\n\u003cp\u003e\u003cstrong\u003emikroMedia™ for HMI 4.3\" Res\u003c\/strong\u003e has a high-quality Riverdi display with 16.7M colour depth and 550 NIT brightness. The display is driven by a FT812 graphic controller. A mounting frame surrounding the screen simplifies integration.\u003c\/p\u003e\n\n\u003ch2\u003eExtras\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003ca href=\"https:\/\/thedebugstore.com\/products\/mikroe-2300-mikromedia-hmi-breakout-board-uk\"\u003eMikromedia HMI Breakout Board\u003c\/a\u003e (sold separately) contains a micro USB port, an RJ-45 Ethernet connector, as well as an external programmer connector (ideally used with mikroProg for FT90x). Two 24-pin flat cables are included in the packaging, enabling the use of both mikroMedia™ HMI connectors at the same time (MAIN, CAMERA).\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768367833277,"sku":"MIKROE-2276","price":83.16,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-hmi-3-5-res-30238646862013.jpg?v=1685192866"},{"product_id":"mikromedia-hmi-display-43-mikroe-2278-uk","title":"mikroMedia HMI 4.3\"","description":"\u003cp\u003emikroMedia™ HMI boards are driven by FTDI Chips FT900Q with their proprietary 32-bit RISC core with industry-leading performance. With execution from shadow memory, the MCU can achieve speeds of 3.1 DMIPS\/MHz at 100 MHz. FT900Q has 256KB of Flash memory, a small part of which is taken by the built-in bootloader.\u003c\/p\u003e\u003cp\u003eThe concept of mikroMedia™ HMI is to keep only the essential components that simplify its integration into a final product, whilst keeping overall costs down.\u003c\/p\u003e\u003cp\u003eThe board integrates a microSD card for expanding storage capacity, a haptic feedback motor, small audio speaker, and a micro USB connector. A connector for interfacing the MCU with external electronics, along with a separate connector for FT900Qs parallel camera interface.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003emikroMedia™ for HMI 4.3\"\u003c\/strong\u003e has a high-quality Riverdi display with 16.7M color depth and 550 NIT brightness. The display is driven by a FT812 graphic controller. A mounting frame surrounding the screen simplifies integration.\u003c\/p\u003e\u003cp\u003eTutorial on learn.mikroe.com | Code for demo example on Libstock | Schematics on documentation page.\u003c\/p\u003e\u003cp\u003eExtras. mikroMedia™ HMI breakout board (sold separately) contains a micro USB port, an RJ-45 Ethernet connector, as well as an external programmer connector (ideally used with mikroProg for FT90x). Two 24-pin flat cables are included in the packaging, enabling the use of both mikroMedia™ HMI connectors at the same time (MAIN, CAMERA).\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768367898813,"sku":"MIKROE-2278","price":83.16,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-hmi-4-3-30238646763709.jpg?v=1685031587"},{"product_id":"mikromedia-hmi-display-43-resistive-touch-mikroe-2279-uk","title":"mikroMedia HMI 4.3\" Res","description":"\u003cp\u003emikroMedia™ HMI boards are driven by FTDI Chips FT900Q with their proprietary 32-bit RISC core with industry-leading performance. With execution from shadow memory, the MCU can achieve speeds of 3.1 DMIPS\/MHz at 100 MHz. FT900Q has 256KB of Flash memory, a small part of which is taken by the built-in bootloader.\u003c\/p\u003e\n\n\u003cp\u003eThe concept of mikroMedia™ HMI is to keep only the essential components that simplify its integration into a final product, whilst keeping overall costs down.\u003c\/p\u003e\n\n\u003cp\u003eThe board integrates a microSD card for expanding storage capacity, a haptic feedback motor, small audio speaker, and a micro USB connector. A connector for interfacing the MCU with external electronics, along with a separate connector for FT900Qs parallel camera interface.\u003c\/p\u003e\n\n\u003cp\u003eThe \u003cstrong\u003emikroMedia™ for HMI 4.3\" Res\u003c\/strong\u003e has a high-quality Riverdi display with 16.7M color depth and 550 NIT brightness. The display is driven by a FT812 graphic controller. A mounting frame surrounding the screen simplifies integration.\u003c\/p\u003e\n\n\u003ch2\u003eExtras\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003ca href=\"https:\/\/thedebugstore.com\/products\/mikroe-2300-mikromedia-hmi-breakout-board-uk\"\u003eMikromedia HMI Breakout Board\u003c\/a\u003e (sold separately) contains a micro USB port, an RJ-45 Ethernet connector, as well as an external programmer connector (ideally used with mikroProg for FT90x). Two 24-pin flat cables are included in the packaging, enabling the use of both mikroMedia™ HMI connectors at the same time (MAIN, CAMERA).\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768367931581,"sku":"MIKROE-2279","price":96.6,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-hmi-4-3-res-29681722294461.jpg?v=1685136721"},{"product_id":"mikromedia-hmi-display-43-capacitive-touch-mikroe-2280-uk","title":"mikroMedia HMI 4.3\" Cap","description":"\u003cp\u003emikroMedia™ HMI boards are driven by FTDI Chips FT900Q with their proprietary 32-bit RISC core with industry-leading performance. With execution from shadow memory, the MCU can achieve speeds of 3.1 DMIPS\/MHz at 100 MHz. FT900Q has 256KB of Flash memory, a small part of which is taken by the built-in bootloader.\u003c\/p\u003e\n\n\u003cp\u003eThe concept of mikroMedia™ HMI is to keep only the essential components that simplify its integration into a final product, whilst keeping overall costs down.\u003c\/p\u003e\n\n\u003cp\u003eThe board integrates a microSD card for expanding storage capacity, a haptic feedback motor, small audio speaker, and a micro USB connector. A connector for interfacing the MCU with external electronics, along with a separate connector for FT900Qs parallel camera interface.\u003c\/p\u003e\n\n\u003cp\u003emikroMedia™ for HMI 4.3\" Caphas a high-quality Riverdi display with 16.7M colour depth and 550 NIT brightness. The display is driven by a FT813 graphic controller. A mounting frame surrounding the screen simplifies integration.\u003cbr\u003e\n.\u003c\/p\u003e\n\n\u003ch2\u003eExtras\u003c\/h2\u003e\n\n\u003cp\u003eThe \u003ca href=\"https:\/\/thedebugstore.com\/products\/mikroe-2300-mikromedia-hmi-breakout-board-uk\"\u003eMikromedia HMI Breakout Board\u003c\/a\u003e (sold separately) contains a micro USB port, an RJ-45 Ethernet connector, as well as an external programmer connector (ideally used with mikroProg for FT90x). Two 24-pin flat cables are included in the packaging, enabling the use of both mikroMedia™ HMI connectors at the same time (MAIN, CAMERA).\u003c\/p\u003e","brand":"Mikroelektronika d.o.o.","offers":[{"title":"Default Title","offer_id":37768367964349,"sku":"MIKROE-2280","price":125.16,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/products\/mikroelektronika-d-o-o-smart-display-mikromedia-hmi-4-3-cap-30238595514557.jpg?v=1685192872"}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0522\/6931\/8333\/collections\/lg-mikromedia-5-display.jpg?v=1724338163","url":"https:\/\/thedebugstore.com\/en-sk\/collections\/displays.oembed?page=7","provider":"Debug Store","version":"1.0","type":"link"}