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Barcode Click Board

The Barcode Click Board is a very fast and agile barcode scanner on a click board, which is compliant with a wide range of different 1D and 2D barcode protocols. The barcode scanner module is equipped with the micro USB port; thus, it can work both as a standalone device and a standard click board, which communicates with the MCU via the RX, TX, RST and PWM pin of the mikroBUS. The barcode module has two red LEDs, used to illuminate the area in low light conditions. Also, Barcode click features two push buttons, used to control the device when working as a standalone device.



Counter Click Board

The Counter Click is an accessory board designed to keep the DC motor shafts in check. Featuring the LS7366R quadrature counter, Counter click board uses the MikroBUS SPI interface (CSK, MISO, MOSI), plus enable (CNT EN) and interrupt (LFLAG or DFLAG) pins for communication with the target board microcontroller. The 32-bit quadrature counter is to be used with a rotary encoder to quantify the speed and direction of rotation of DC motor shafts. It enables the user to calculate the number of rotations of a shaft precise when things get blur to the naked human eye. The rotary encoder on a DC motor outputs ENCA and ENCB signals which are out of phase to each other. For decoding the signal, the other end of these wires is connected to the pinout on the top of the board for interfacing with incremental encoders. In addition to ENCA and ENB, the pinout aboard the Counter click also an ENCI pin, which is a programmable index. The board is designed to operate using either a 3.3V or 5V power supply.

Counter click is an ideal choice for applications that include measurement of the direction and RPM of DC motor shafts.



Current Click Board

The MikroE Current Click is a complete electric current measurement solution that supports bandwidth up to 500 kHz. This add-on board includes a high-speed, voltage output INA196 current shunt monitor, a 12-bit resolution MCP3201 ADC, a low-dropout, micropower MAX6106 voltage reference, as well as two on-board screw terminals.

The package includes four shunts with different values: 0.05.



DIGI POT 2 Click Board

The Digi Pot 2 Click Board™ is a mikroBUS™ add-on board with a single channel digital potentiometer TPL0501 with 256 wiper positions.



DIGI POT 3 Click Board

The DIGI POT 3 Click Board is a versatile and feature-rich digital potentiometer click with 1024 steps and an internal non-volatile memory (EEMEM), which can be used for storing the wiper position, but also for storing various user data. The user EEMEM area has 14 words, each with 16bit length. The Click board can be used with both unipolar and bipolar signals, selectable by onboard SMD jumpers. The wiper position can be increased or decreased linearly or by the logarithmic scale (6db/step) with a single command. A special scratch register allows direct programming of the wiper position. It can be stored to the non-volatile memory and on the power on, it is automatically restored. This means that the device restores its last position after the power on - just like its mechanical counterpart.




DIGI POT 4 Click Board

The DIGI POT 4 Click Board is a digitally controlled dual potentiometer, with the resistance of 10K??. It has a 10bit resolution which allows for a very smooth linear wiper positioning through 1024 steps. Digital wiper position can be controlled via SPI interface. DIGI POT 4 click also features a non-volatile durable EEPROM memory for storing the wiper position, which means that the device can restore its last position after the power on - just like its mechanical counterpart.



DIGI POT 5 Click Board

The DIGI POT 5 Click Board is a digitally controlled quad potentiometer, with the resistance of 10K??. It has an 8bit wiper step resolution, which allows the wiper to take 257 different discrete positions (across 256 internal resistors). The digital wiper position can be controlled via the SPI interface. DIGI POT 5 click features a durable EEPROM non-volatile (NV) memory for storing the wiper position. The content of the wiper register memory located in the NV memory is copied to the actual wiper registers after the power-on or reset state, so the device acts similar to its mechanical counterpart, recalling its last used wiper position after being powered on. The device also features the WiperLock technology, which effectively locks the wiper position in place.



DIGI POT Click Board

The DIGI POT Click Board is a compact accessory board that incorporates a MCP4161 single-channel digital potentiometer. With a single resistor network, this digital POT features an 8-bit (256 wiper steps) resolution. DIGI POT click communicates with the target board microcontroller using industry standard SPI interface. DIGI POT click offers WiperLock Technology allows application-specific calibration settings to be secured in the EEPROM. The MCP4161 module is available with a resistor value of 10 k?



Fiber Opt Click Board

The Fiber Opt Click Board is a compact and easy solution for adding fibre-optic communication to your design.

It features an IF-D91 fiber-optic photodiode as well as two operational amplifiers.



FLICKER Click Board

Thanks to the on-board NA556 dual precision timer from Texas Instruments and the G6D-ASI power PCB relay from Omron, the FLICKER Click Board can control loads up to 5A, 250 VAC/30 VDC at a predefined time interval.

The on/off period can last from 0.1 to 6 seconds, that can be set by the two ON/OFF on-board potentiometers. The external load can be connected to the board through the screw terminal. FLICKER click runs on 5V power supply and it communicates with the MCU over RST pin.



Force Click Board

The Force Click Board is a mikroBUS add-on board with circuitry for implementing Interlink Electronics?? Force Sensing Resistors into your projects (with a single zone force sensing resistor included with the click).



GainAMP 2 Click Board

The GainAMP 2 Click Board is a 6-channel programmable gain amplifier, used to amplify signals on any of the 6 non-inverting input channels up to 32x, in eight discrete steps. The gain can be set via the SPI communication interface. The click has a high signal to noise ratio, a good bandwidth, and very low gain error. These features make it an ideal solution for amplifying sensitive low signals from various sources.