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Mikroelektronika d.o.o.

Current 5 Click Board™

Current 5 Click Board™

SKU: MIKROE-4953
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€24,95 EUR exc tax
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Overview

The Current 5 Click Board™ is a compact add-on board that provides a precise and accurate current sensing solution. This board features the INA381, a high-speed current-sense amplifier with an integrated comparator from Texas Instruments. This device has selectable operating modes (transparent or latched) and detects overcurrent conditions by measuring the voltage developed across a current shunt resistor. Then it compares that voltage to a user-defined threshold limit set by the comparator reference potentiometer. The current-shunt monitor can measure differential voltage signals on common-mode voltages that vary from –0.2V to 26V, independent of the supply voltage.

The Current 5 Click Board™ delivers higher performance to applications such as test and measurement, load and power supplies monitoring, low-side phase motor control, and many more.

How Does The Current 5 Click Board™ Work?

The Current 5 Click Board™ as its foundation uses the INA381, a zero-drift topology, a current-sensing amplifier with an integrated comparator that can be used in both low-side and high-side current-sensing and protection applications from Texas Instruments. This current-sensing amplifier accurately measures voltages developed across the current-sensing resistor (also known as current-shunt resistors) on common-mode voltages that far exceed the device supply voltage. Current is measured on IN load connection terminal withstanding the full common-mode voltages from –0.2V to +26V at the input pins when the supply voltage is removed without causing damage.

The INA381 also uses a reference input from an onboard REF potentiometer that simplifies setting the corresponding current threshold level to use for out-of-range comparison. Combining the precision measurement of the current-sense amplifier and the onboard comparator enables an all-in-one overcurrent detection device. This combination creates a highly-accurate design that quickly detects out-of-range conditions and allows the system to take corrective actions to prevent potential component or system-wide damage.

The amplified output voltage of the INA381 is developed across the onboard current-sensing resistor, which is the input voltage across the IN terminal (IN+ and IN– pins) multiplied by the gain of the amplifier (200V/V). The output voltage of the INA381 is then converted to a digital value using the ADC121S021, a low-power, single-channel 12-bit analog to digital converter (ADC), with a high-speed SPI interface also from Texas Instruments.

The INA381's integrated comparator is designed to quickly detect when the sense current is out-of-range, and provide an interrupt alert signal, routed to the INT pin of the mikroBUS™ socket, for quicker and faster responses. This alert output can be configured to operate in two modes, transparent or latched, selectable according to the logic state on the RST pin of the mikroBUS™ socket. In transparent mode, the output status follows the input state, while in the latched mode, the alert output is cleared only when the latch is reset.

The onboard comparator in the INA381 is designed to reduce the possibility of oscillations in the alert output when the measured signal level is near the over-limit threshold level due to noise, with a hysteresis 50mV. When the voltage on the comparator input exceeds the voltage developed at the comparator reference input, the alert signal sets to a low logic state. The output voltage then must drop to less than the reference input threshold voltage by the hysteresis level of 50mV so that the alert pin de-asserts and returns to the nominal high state. Also, this board allows the user to change the hysteresis from a preset value of 50mV via an onboard Hyst potentiometer. The user can also bring external signals such as REF and HYST on the eponymous onboard headers.

The Current 5 Click Board™ can operate with both 3.3V and 5V logic voltage levels selected via the VCC SEL jumper. This way, it is allowed for both 3.3V and 5V capable MCUs to use the communication lines properly. 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.

SPECIFICATIONS

Type Measurements
Applications The Current 5 Click Board™ be used for applications such as test and measurement, load and power supplies monitoring, low-side phase motor control, and many more
On-board modules INA381 - high-speed current-sense amplifier with an integrated comparator from Texas Instruments
Key Features Common-mode input range: –0.2 V to +26 V, high-accuracy amplifier, integrated comparator, 200V/V amplifier gain, alert threshold selection, supports transparent and latching modes, and more
Interface SPI
Compatibility mikroBUS
Click board size L (57.15 x 25.4 mm)
Input Voltage 3.3V or 5V

PINOUT DIAGRAM

This table shows how the pinout of the Current 5 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 NC
Mode Selection RST 2 RST INT 15 ALR Overlimit Alert
SPI 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
Power Supply 3.3V 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
JP1 VCC SEL Left Logic Level Voltage Selection 3V3/5V: Left position 3V3, Right position 5V
J1 Hyst Populated External Comparator Signal Connection
J2 Ref Populated External Comparator Reference Connection
VR1 Ref - Comparator Reference Input Selection
VR2 Hyst - Comparator Signal Input Selection

CURRENT 5 CLICK ELECTRICAL SPECIFICATIONS

Description Min Typ Max Unit
Supply Voltage VCC 3.3 - 4 V
Common-Mode Input Voltage IN -0.2 - 26 V
Gain - 200 - V/V
Accuracy - - ±1 %
Operating Temperature Range -40 +25 +125 °C

Software Support

We provide a library for the Current 5 Click Board™ as well as a demo application (example), developed using MikroElektronika compilers. The demo can run on all the main MikroElektronika development boards.The package can be downloaded/installed directly from NECTO Studio The package Manager (recommended), downloaded from our LibStock™ or found on the

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