# Title: NO2 2 Click Board™ ## Description: The NO2 2 Click Board™ contains the required resistances used to form a voltage divider with the sensor, as well as the accurate SAR type ADC with 12-bit resolution which allows the voltage to be converted, using 5V from the mikroBUS rail as a voltage reference. Featuring the MiCS-2714, a robust and reliable gas sensor which requires a minimal number of additional components, the MCP3201, an accurate 12-bit ADC by Microchip, proven in many Click Board™ designs so far, the NO2 2 Click Board™ represents an ideal solution for a rapid development in all kinds of harsh environments of applications such as gas leakage applications, fire detection applications, CO detectors, and similar reducing gasses detecting applications. How Does The NO2 2 Click Board™ Work? The NO2 2 Click Board™ is equipped with the MiCS-2714 sensor, a compact MOS sensor from SGX Sensortech. This sensor consists of a micromachined metal oxide semiconductor diaphragm, with an integrated heating resistor. The resistor produces heat which catalyzes the reaction, which in turn affects the electrical resistance of the oxide layer itself. The temperature of the heater is quite high: it is in the range from 350 °C to 550 °C. After the initial preheating period, the sensor can detect gas changes in time intervals below two seconds. The resistance of the MiCS-2714 sensor does not change linearly with the gas concentration, so a proper calibration must be performed prior to using it for absolute gas concentration measurement applications. The impedance changes the most when used with low gas concentrations. As the atmosphere gets saturated with gas, the impedance changes slower. The MiCS-2714 sensor is a simple device: it has only four connections. Two pins are the connections of the internal heating element, while the other two pins are the MOS sensor connections. The application is reduced to calculating a proper resistor for the voltage divider. The middle tap between the sensor (as a resistor) and the fixed resistance is used to provide an output voltage. It directly depends on the resistance of the sensor, allowing it to be used as the input into the MCP3201, a low-power 12-bit A/D converter with I2C interface, from Microchip. This ADC allows the output voltage to be translated into a digital information, which can be accessed over the I2C pins on the mikroBUS socket. By using the power supply voltage as the voltage reference for the conversion, this ADC further reduces the complexity of the design, still offering a good conversion quality, thanks to its low noise input. Due to the sensor's inert nature, this ADC is more than fast enough, although it can provide up to 22.3 ksps when operated in the I2C Fast mode. The NO2 2 Click Board™ is designed to be operated only with 5V logic level. A proper logic voltage level conversion should be performed before the Click Board™ is used with MCUs with logic levels of 3.3V. SPECIFICATIONS Type Gas,NO2 Applications It can be used for various applications, such as gas leakage applications, fire detection applications, CO detectors, and similar reducing gasses detecting applications. On-board modules MiCS-2714 - a compact metal oxide (MOS) sensor from SGX Sensortech Key Features Robust and reliable MOS sensor, a high-quality 12-bit ADC from Microchip onboard, can detect a range of different redux gasses, ideal for a various application development, etc Interface SPI Compatibility mikroBUS Click Board™ size S (28.6 x 25.4 mm) Input Voltage 5V PINOUT DIAGRAM This table shows how the pinout of the NO2 2 Click Board™ corresponds to the pinout on the mikroBUS socket (the latter shown in the two middle columns). Notes Pin Pin Notes NC 1 AN PWM 16 PHT Preheating NC 2 RST INT 15 NC Chip Select CS 3 CS RX 14 NC SPI Clock SCK 4 SCK TX 13 NC SPI Data Out SDO 5 MISO SCL 12 NC NC 6 MOSI SDA 11 NC NC 7 3.3V 5V 10 5V Power Supply Ground GND 8 GND GND 9 GND Ground ONBOARD SETTINGS AND INDICATORS Label Name Default Description LD1 PWR - Power LED Indicator NO2 2 Click Board™ ELECTRICAL SPECIFICATIONS Description Min Typ Max Unit Measurement range 0 - 10 ppm Response time - 200 - s Operating Temperature Range (recommended) -30 - 85 ˚C Operating Humidity Range (non-condensing) 5 - 95 % RH ## Product type: Click Board ## Vendor: Mikroelektronika d.o.o. ## Tags: Amphenol SGX Sensortech, Click Board, Gas, MikroE, Sensor ## Price range: 32.9 - 32.9 GBP ## Link: https://thedebugstore.com/products/no2-2-click-board-mikroe-3700-uk ## Compare-at price range: 47.0 - 47.0 GBP ## Options - Title: Default Title ## Collections - [New Products](https://thedebugstore.com/a/llms/collections/new-products-debug-store) - [Mikroelektronika d.o.o. 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The NO2 2 Click Board™ contains the required resistances used to form a voltage divider with the sensor, as well as the accurate SAR type ADC with 12-bit resolution which allows the voltage to be converted, using 5V from the mikroBUS rail as a voltage reference. Featuring the MiCS-2714, a robust and reliable gas sensor which requires a minimal number of additional components, the MCP3201, an accurate 12-bit ADC by Microchip, proven in many Click Board™ designs so far, the NO2 2 Click Board™ represents an ideal solution for a rapid development in all kinds of harsh environments of applications such as gas leakage applications, fire detection applications, CO detectors, and similar reducing gasses detecting applications.

How Does The NO2 2 Click Board™ Work?

The NO2 2 Click Board™ is equipped with the MiCS-2714 sensor, a compact MOS sensor from SGX Sensortech. This sensor consists of a micromachined metal oxide semiconductor diaphragm, with an integrated heating resistor. The resistor produces heat which catalyzes the reaction, which in turn affects the electrical resistance of the oxide layer itself. The temperature of the heater is quite high: it is in the range from 350 °C to 550 °C. After the initial preheating period, the sensor can detect gas changes in time intervals below two seconds.

NO2 2 Click Board™

The resistance of the MiCS-2714 sensor does not change linearly with the gas concentration, so a proper calibration must be performed prior to using it for absolute gas concentration measurement applications. The impedance changes the most when used with low gas concentrations. As the atmosphere gets saturated with gas, the impedance changes slower.

The MiCS-2714 sensor is a simple device: it has only four connections. Two pins are the connections of the internal heating element, while the other two pins are the MOS sensor connections. The application is reduced to calculating a proper resistor for the voltage divider. The middle tap between the sensor (as a resistor) and the fixed resistance is used to provide an output voltage. It directly depends on the resistance of the sensor, allowing it to be used as the input into the MCP3201, a low-power 12-bit A/D converter with I2C interface, from Microchip. This ADC allows the output voltage to be translated into a digital information, which can be accessed over the I2C pins on the mikroBUS socket. By using the power supply voltage as the voltage reference for the conversion, this ADC further reduces the complexity of the design, still offering a good conversion quality, thanks to its low noise input. Due to the sensor's inert nature, this ADC is more than fast enough, although it can provide up to 22.3 ksps when operated in the I2C Fast mode.

The NO2 2 Click Board™ is designed to be operated only with 5V logic level. A proper logic voltage level conversion should be performed before the Click Board™ is used with MCUs with logic levels of 3.3V.

SPECIFICATIONS

Type Gas,NO2
Applications It can be used for various applications, such as gas leakage applications, fire detection applications, CO detectors, and similar reducing gasses detecting applications.
On-board modules MiCS-2714 - a compact metal oxide (MOS) sensor from SGX Sensortech
Key Features Robust and reliable MOS sensor, a high-quality 12-bit ADC from Microchip onboard, can detect a range of different redux gasses, ideal for a various application development, etc
Interface SPI
Compatibility mikroBUS
Click Board™ size S (28.6 x 25.4 mm)
Input Voltage 5V

 

PINOUT DIAGRAM

This table shows how the pinout of the NO2 2 Click Board™ corresponds to the pinout on the mikroBUS socket (the latter shown in the two middle columns).

Notes Pin mikroBUS logo.png Pin Notes
  NC 1 AN PWM 16 PHT Preheating
  NC 2 RST INT 15 NC  
Chip Select CS 3 CS RX 14 NC  
SPI Clock SCK 4 SCK TX 13 NC  
SPI Data Out SDO 5 MISO SCL 12 NC  
  NC 6 MOSI SDA 11 NC  
  NC 7 3.3V 5V 10 5V Power Supply
Ground GND 8 GND GND 9 GND Ground

ONBOARD SETTINGS AND INDICATORS

Label Name Default  Description
LD1 PWR - Power LED Indicator

NO2 2 Click Board™ ELECTRICAL SPECIFICATIONS

Description Min Typ Max Unit
Measurement range 0 - 10 ppm
Response time - 200 - s
Operating Temperature Range (recommended) -30 - 85 ˚C
Operating Humidity Range (non-condensing) 5 - 95 % RH

 

- description_tag: The NO2 2 Click Board™ is a gas sensor Click Board™, equipped with the MiCS-2714, a compact metal oxide (MOS) sensor. This sensor reacts to the presence of nitrogen dioxide (NO2) and hydrogen (H2). Available from Debug Store UK. - title_tag: MikroE NO2 2 Click Board™ (MIKROE-3700) - manufacturer: Mikroelektronika d.o.o. - warranty: 12 months - amazon_enable: TRUE - amazon_title: NO2 2 Click Board - amazon_product_type: computercomponent - amazon_block: FALSE - amazon_prime_enable: FALSE - amazon_search: MikroElektronika Microelectronica MIKROE-1100 - amazon_uk_price: 34.32 - amazon_uk_currency: GBP - amazon_de_currency: EUR - amazon_de_price: 38.7816 - amazon_fr_currency: EUR - amazon_fr_price: 38.7816 - amazon_es_currency: EUR - amazon_es_price: 38.7816 - amazon_nl_currency: EUR - amazon_nl_price: 38.7816 - amazon_it_currency: EUR - amazon_it_price: 38.7816 - amazon_se_curency: SEK - amazon_se_price: 391.248 - amazon_product_id: 8606018719983 - amazon_product_id_type: EAN - amazon_update: Update - amazon_short_description: The NO2 2 Click Board™ is a gas sensor Click Board™, equipped with the MiCS-2714, a compact metal oxide (MOS) sensor. This sensor reacts to the presence of nitrogen dioxide (NO2) and hydrogen (H2). Its impedance changes as a result of a catalytic reaction, allowing it to be used in a voltage divider configuration. This voltage can be sampled by an accurate A/D converter (ADC), allowing data to be read directly over the I2C interface. The MiCS-2714 sensor itself is a robust sensor, which can be used in harsh environment for gas leakage detection, in breath checking applications, early fire detection, etc.NO2 2 Click Board™ is supported by a mikroSDK compliant library, which includes functions that simplify software development. This Click Board™ comes as a fully tested product, ready to be used on a system equipped with the mikroBUS™ socket. - amazon_long_description:

NO2 2 Click Board™

- amazon_main_image: https://www.thedebugstore.com/images/product/lg-no2-2-click-3700-front_1.jpg - amazon_other_image_1: https://www.thedebugstore.com/images/product/lg-no2-2-click-3700-back_1.jpg - amazon_other_image_2: https://www.thedebugstore.com/images/product/lg-no2-2-click-3700-fusion_1.jpg - amazon_other_image_3: https://www.thedebugstore.com/images/product/lg-no2-2-click-3700-fusion_1.jpg - amazon_browse_node: 428655031 - mpn: MIKROE-3700 - backorder_label: If no stock shown above, check availability - examples:

We provide a library for the NO2 2 Click Board™ on our LibStock page, as well as a demo application (example), developed using MikroElektronika compilers. The demo can run on all the main MikroElektronika development boards.

Library Description

The library includes functions for reading ADC value from device via SPI module. Function for converting ADC value to ppb and control over pht pin.

Key Functions

Example Description

The application is composed of three sections :

void applicationTask()
{
 uint16_t temp_data_read;
 float data_ppb;
 mikroBUS_logWrite( "ADC : ", _LOG_TEXT );
 temp_data_read = no22_read_data( );
 WordToStr( temp_data_read, demo_text );
 mikroBUS_logWrite( demo_text, _LOG_LINE );
 mikroBUS_logWrite( "PPB : ", _LOG_TEXT );
 data_ppb = no22_get_ppb( );
 FloatToStr( data_ppb, demo_text );
 mikroBUS_logWrite( demo_text, _LOG_LINE );
 mikroBUS_logWrite( "___________________________", _LOG_LINE );
 Delay_ms( 1000 );
}

The full application code, and ready to use projects can be found on our LibStock page.

Other mikroE Libraries used in the example:

Additional Notes and Information

Depending on the development board you are using, you may need a USB UART Click Board™, USB UART 2 Click Board™ or RS232 Click Board™ to connect to your PC, for development systems with no UART to USB interface available on the board. The terminal available in all MikroElektronika compilers, or any other terminal application of your choice, can be used to read the message.

MIKROSDK

The NO2 2 Click Board™ is supported with mikroSDK - MikroElektronika Software Development Kit. To ensure proper operation of mikroSDK compliant Click Board™ demo applications, mikroSDK should be downloaded from the LibStock and installed for the compiler you are using.

- attachments: [{"download_file":[{"download_file":"NO2 2 Click Board™ Schematic"}],"download_filetype":[{"download_filetype":"pdf"}]},{"download_file":[{"download_file":"SGS Sensortech MiCS-2714 NO2 Sensor Datasheet"}],"download_filetype":[{"download_filetype":"pdf"}]}] - condition: new - custom_product: false - mpn: MIKROE-3700 - google_product_category: Electronics - custom_label_0: Click Board - device_vendor: Amphenol SGX Sensortech, Microchip Technology - device_type: MICS-2714, MCP3201-CI/SN - warranty: 12 months - brand: MikroE - manufacturer: Mikroelektronika d.o.o. - badge: - widget:

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- target_keyword: NO2 2 Click Board - brands: gid://shopify/Metaobject/56256004319 - breadcrumbs: ["gid://shopify/Collection/447955239135","gid://shopify/Collection/241680580797","gid://shopify/Collection/241545969853"] - customhs_code: 847330 - detailed_description: {"type":"root","children":[{"type":"paragraph","children":[{"type":"text","value":"The "},{"type":"text","value":"NO2 2 Click Board™","bold":true,"italic":true},{"type":"text","value":" contains the required resistances used to form a voltage divider with the sensor, as well as the accurate SAR type ADC with 12-bit resolution which allows the voltage to be converted, using 5V from the mikroBUS rail as a voltage reference. 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The resistor produces heat which catalyzes the reaction, which in turn affects the electrical resistance of the oxide layer itself. The temperature of the heater is quite high: it is in the range from 350 °C to 550 °C. After the initial preheating period, the sensor can detect gas changes in time intervals below two seconds."}]},{"type":"paragraph","children":[{"type":"text","value":""}]},{"type":"paragraph","children":[{"type":"text","value":"The resistance of the MiCS-2714 sensor does not change linearly with the gas concentration, so a proper calibration must be performed prior to using it for absolute gas concentration measurement applications. The impedance changes the most when used with low gas concentrations. As the atmosphere gets saturated with gas, the impedance changes slower."}]},{"type":"paragraph","children":[{"type":"text","value":"The MiCS-2714 sensor is a simple device: it has only four connections. Two pins are the connections of the internal heating element, while the other two pins are the MOS sensor connections. The application is reduced to calculating a proper resistor for the voltage divider. The middle tap between the sensor (as a resistor) and the fixed resistance is used to provide an output voltage. It directly depends on the resistance of the sensor, allowing it to be used as the input into the MCP3201, a low-power 12-bit A/D converter with I2C interface, from Microchip. This ADC allows the output voltage to be translated into a digital information, which can be accessed over the I2C pins on the mikroBUS socket. By using the power supply voltage as the voltage reference for the conversion, this ADC further reduces the complexity of the design, still offering a good conversion quality, thanks to its low noise input. Due to the sensor's inert nature, this ADC is more than fast enough, although it can provide up to 22.3 ksps when operated in the I2C Fast mode."}]},{"type":"paragraph","children":[{"type":"text","value":"The "},{"type":"text","value":"NO2 2 Click Board™","bold":true},{"type":"text","value":" is designed to be operated only with 5V logic level. A proper logic voltage level conversion should be performed before the Click Board™ is used with MCUs with logic levels of 3.3V."}]},{"type":"heading","level":3,"children":[{"type":"text","value":"SPECIFICATIONS"}]},{"type":"paragraph","children":[{"type":"text","value":"Type\nGas,NO2\nApplications\nIt can be used for various applications, such as gas leakage applications, fire detection applications, CO detectors, and similar reducing gasses detecting applications.\nOn-board modules\nMiCS-2714 - a compact metal oxide (MOS) sensor from SGX Sensortech\nKey Features\nRobust and reliable MOS sensor, a high-quality 12-bit ADC from Microchip onboard, can detect a range of different redux gasses, ideal for a various application development, etc\nInterface\nSPI\nCompatibility\nmikroBUS\nClick Board™ size\nS (28.6 x 25.4 mm)\nInput Voltage\n5V"}]},{"type":"paragraph","children":[{"type":"text","value":" "}]},{"type":"heading","level":3,"children":[{"type":"text","value":"PINOUT DIAGRAM"}]},{"type":"paragraph","children":[{"type":"text","value":"This table shows how the pinout of the "},{"type":"text","value":"NO2 2 Click Board™","bold":true},{"type":"text","value":" corresponds to the pinout on the mikroBUS socket (the latter shown in the two middle columns)."}]},{"type":"paragraph","children":[{"type":"text","value":"Notes\nPin\nPin\nNotes\nNC\n1\nAN\nPWM\n16\nPHT\nPreheating\nNC\n2\nRST\nINT\n15\nNC\nChip Select\nCS\n3\nCS\nRX\n14\nNC\nSPI Clock\nSCK\n4\nSCK\nTX\n13\nNC\nSPI Data Out\nSDO\n5\nMISO\nSCL\n12\nNC\nNC\n6\nMOSI\nSDA\n11\nNC\nNC\n7\n3.3V\n5V\n10\n5V\nPower Supply\nGround\nGND\n8\nGND\nGND\n9\nGND\nGround"}]},{"type":"heading","level":3,"children":[{"type":"text","value":"ONBOARD SETTINGS AND INDICATORS"}]},{"type":"paragraph","children":[{"type":"text","value":"Label\nName\nDefault\n Description\nLD1\nPWR\n-\nPower LED Indicator"}]},{"type":"heading","level":3,"children":[{"type":"text","value":"NO2 2 Click Board™ ELECTRICAL SPECIFICATIONS"}]},{"type":"paragraph","children":[{"type":"text","value":"Description\nMin\nTyp\nMax\nUnit\nMeasurement range\n0\n-\n10\nppm\nResponse time\n-\n200\n-\ns\nOperating Temperature Range (recommended)\n-30\n-\n85\n˚C\nOperating Humidity Range (non-condensing)\n5\n-\n95\n% RH"}]},{"type":"heading","level":3,"children":[{"type":"text","value":" "}]}]} - summary:

The NO2 2 Click Board™ is a gas sensor Click Board™, equipped with the MiCS-2714, a compact metal oxide (MOS) sensor. This sensor reacts to the presence of nitrogen dioxide (NO2) and hydrogen (H2). Its impedance changes as a result of a catalytic reaction, allowing it to be used in a voltage divider configuration. This voltage can be sampled by an accurate A/D converter (ADC), allowing data to be read directly over the I2C interface. The MiCS-2714 sensor itself is a robust sensor, which can be used in a harsh environment for gas leakage detection, in breath checking applications, early fire detection, etc.

The NO2 2 Click Board™ is supported by a mikroSDK compliant library, which includes functions that simplify software development. This Click Board™ comes as a fully tested product, ready to be used on a system equipped with the mikroBUS™ socket.