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Thermo 9 Click is a Click board™ equipped with the TSYS01, a digital temperature sensor from TE Connectivity. Given its main features, the Thermo 9 Click, can be used for industrial control, replacement of thermistors and NTCs, heating/cooling systems, and HVAC.
This Click board™ is supported by a mikroSDK compliant library, which includes functions that simplify software development. The Click board™ comes as a fully tested product, ready to be used on a system equipped with a mikroBUS™ socket.
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THERMO Click is an accessory board in mikroBUS form factor. It features the MAX31855K thermocouple-to-digital converter as well as a PCC-SMP connector for K-type thermocouple probes. The MAX31855K measures a temperature range of between -270°C and 1372°C with a sensitivity of about 41uV/°C. It has a built-in 14-bit ADC converter. THERMO Click communicates with the target board via an SPI interface (read-only). The board is designed to use a 3.3V power supply only. It has a green LED which indicates if the board is powered. |
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THERMO K click carries the MCP9600 IC from Microchip. Depending on the type of probe it uses the click can measure temperatures from -200 °C to +1372 °C.
The click is designed to run on either a 3.3V or 5V power supply. It communicates with the target MCU via an I2C interface. |
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Thermo J click is a temperature measurement click board™, which uses a thermocouple type-J probe, connected to a PPC-SMP-J onboard connector. The active part of the Thermo J click is MCP9600 by Microchip - a thermocouple EMF to temperature converter, with 1.5°C of maximum accuracy. The onboard PCC-SMP-J connector ensures the secure connection and accurate readings for the connected thermocouple.
The main advantage of the thermocouples over some other types of temperature measuring devices, is a wide range of temperatures that they can measure. With the addition of four programmable ALERT lines routed to the mikroBUS™ pins, Thermo J click is an ideal solution for the temperature measurements in extreme conditions, hard to reach places, machinery, and similar applications.
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Thermo 2 click carries DS1825, a programmable resolution digital thermometer IC. It measures temperature within a range from - 10°C to 85°C with +/-0.5°C accuracy. You can specify the resolution of the measurements, from 9 to 12-bit, depending on the application. The board communicates with the target microcontroller through a 1-wire interface. Using the onboard jumper, you can choose between two mikroBUS pins for setting the output. Thermo 2 click also features four Address Select jumpers for setting a unique ID for the sensor (allowing for up to 16 sensors to operate on a single 1-Wire bus). |
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Thermo 3 click carries TMP102, a digital temperature sensor IC with a tiny footprint of only 1.6mm x 1.6mm.. Without requiring calibration, TMP102 is accurate within 0.5°C. Measurement range is between -25°C to 85°C. An integrated 12-bit ADC allows for measurement resolutions down to 0.0625°C. Thermo 3 click communicates with the target board MCU through mikroBUS I2C pins (SCL, SDA), and an additional Alert pint (INT on the default mikroBUS configuration). The board is designed to use a 3.3V power supply only. |
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THERMO 4 click carries the LM75A digital temperature sensor and thermal watchdog. The sensor has the range from -55 °C to +125 °C. The click is designed to run on either 3.3V or 5V power supply. It communicates with the target microcontroller over I2C interface, with additional functionality provided by the INT pin on the mikroBUS™ line. |
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THERMO 5 click measures temperature in default range of 0°C to 127°C and extended range of -64°C to 191°C with ±1°C accuracy. It carries the EMC1414 temperature sensor. The click is designed to run on a 3.3V power supply. THERMO 5 click communicates with the target microcontroller over I2C interface, with additional functionality provided by the INT pin on the mikroBUS™ line. |
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Thermo 6 click is a precise and versatile ambient temperature measurement click board™, based on the Maxim Integrated MAX31875 temperature sensor.
This sensor has a great combination of features, such as wide range of temperature measurement, excellent measuring accuracy, and small die size, coupled with the very low power consumption - attributes that make this sensor a great choice for many different applications. |
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Thermo 7 click is a Click board™ equipped with the sensor IC, which can digitize temperature measurements between -55°C and +125°C so that the temperature measurement data can be processed by the host MCU. Thermo 7 click provides an accuracy of ±1°C in the range from -10°C to +85°C. The sensor used on this Click board™ has a great combination of features that make it a perfect choice for any temperature measurement application: low power consumption, selectable sampling resolution, programmable interrupt engine, compact sensor size, alert output pin, and more. The sensor itself requires almost no external components, which simplifies the design, reducing the cost and cutting the time to market. |
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Thermo 8 click is a very accurate thermometer Click board™, with a very high typical measurement accuracy of ±0.25°C, and great data repeatability, with drift in the range of ±0.0625°C. Besides measuring the temperature, this Click board™ offers a set of very useful features, such as the thermostat function, interrupt event and critical temperature alert function. The programmable thresholds allow the user to set trigger conditions, adapting the Click board™ to any type of thermal measurement application. This Click board™ can measure a wide range of temperatures, from -20 °C, up to +100 °C.
The Click board™ is supported by a mikroSDK compliant library, which includes functions that simplify software development. The Click board™ comes as a fully tested product, ready to be used on a system equipped with a mikroBUS™ socket.
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Thermo 9 Click is a Click board™ equipped with the TSYS01, a digital temperature sensor from TE Connectivity. Given its main features, the Thermo 9 Click, can be used for industrial control, replacement of thermistors and NTCs, heating/cooling systems, and HVAC.
This Click board™ is supported by a mikroSDK compliant library, which includes functions that simplify software development. The Click board™ comes as a fully tested product, ready to be used on a system equipped with a mikroBUS™ socket.
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Thermo 11 Click is a Click board™ equipped with the sensor IC, which can digitize temperature measurements between -55°C and +150°C so that the temperature measurement data can be processed by the host MCU. Thermo 11 click provides an accuracy of ±0.1°C in the range from -20°C to +50°C. The sensor used on this Click board™ has a great combination of features that make it a perfect choice for any temperature measurement application: low power consumption, Selectable averaging, programmable interrupt engine, compact sensor size, interrupt output pin, and more. The sensor itself requires almost no external components, which simplifies the design, reducing the cost and cutting the time to market.
Thermo 11 click click 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.
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Thermo 12 click is a Click board™ equipped with the sensor IC, which can digitize temperature measurements between -40°C and +150°C so that the temperature measurement data can be processed by the host MCU. Thermo 12 click provides an accuracy of ±0.2°C in the range from -10°C to +85°C. The sensor used on this Click board™ has a great combination of features that make it a perfect choice for any temperature measurement application: ultralow temperature drift, low power consumption, programmable interrupt engine, compact sensor size, interrupt and critical temperature output pins, and more. The sensor itself requires almost no external components, which simplifies the design, reducing the cost and cutting the time to market.
Thermo 12 click click 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.
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Thermo 13 Click is a Click board™ equipped with the sensor IC, which can digitize temperature measurements between -30°C and +95°C so that the temperature measurement data can be processed by the host MCU. Thermo 13 click provides good measurement accuracy in the range from -20°C to +85°C. The sensor used on this Click board™ has a great combination of features that make it a perfect choice for any temperature measurement application: low power consumption, programmable interrupt engine, compact sensor size, interrupt output pin, and more. The sensor itself requires almost no external components, which simplifies the design, reducing the cost and cutting the time to market.
Thermo 13 click 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.
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Thermo 15 Click is a Click board™ equipped with the sensor IC, which can digitize temperature measurements between -55°C and +125°C so that the temperature measurement data can be processed by the host MCU. Thermo 15 click provides an accuracy of ±1°C in the range from 0°C to 70°C. The sensor used on this Click board™ has a great combination of features that make it a perfect choice for any temperature measurement application: low temperature drift, low power consumption, programmable alert engine, compact sensor size, critical temperature warnings, and more. The sensor itself requires almost no external components, which simplifies the design, reducing the cost and cutting the time to market.
Thermo 15 click 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.
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Thermo 16 Click is a Click board™ equipped with the sensor IC, which can measure temperature measurements between -40°C and +150°C so that the temperature measurement data can be processed by the host MCU. Thermo 16 click provides an accuracy of ±1°C in the range from 0°C to 70°C. The sensor used on this Click board™ has a great combination of features that make it a perfect choice for any temperature measurement application: Analog signal output, low power consumption, compact sensor size, and more. The sensor itself requires almost no external components, which simplifies the design, reducing the cost and cutting the time to market.
Thermo 16 click click 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
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Thermostat click carries the MAX7502 IC digital temperature sensor, that also provides an overtemperature alarm/interrupt/shutdown output, and an SN74LVC1G126 single bus buffer from Texas Instruments. MAX7502 IC can measure temperatures from -25°C to +100°C, within the accuracy of ±1.5°C.
The G6D PCB power relay can control up to 5A, 250V AC/30V DC loads. |
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Thermostat 2 click is a general-purpose thermostat Click board™ designed to be used with any temperature sensor based on the DS1820 sensor design: 3-pin package with 1-Wire® communication interface. The Click board™ is equipped with a 3-pole terminal and a 3-pin female socket. DS1820 (or compatible) sensor can be connected either over the terminal or can be installed directly into the socket. The Click board™ also contains a high-quality relay from Omron, that can be used to open or close an electric circuit. Despite its small size, it can be used with voltage up to 30VDC/220AC and current up to 5A.
Thermostat 2 Click 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.
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Thermostat 3 Click is a general-purpose thermostat Click board™ designed to be used with any temperature sensor based on the MAX31855 sensor design. The Click board™ is equipped with a 2-pin female socket for thermocouple connection. The K-type thermocouple can be connected directly into the socket, allowing the MAX31855 to take care of the signal-conditioning and output the absolute temperature value. The Click board™ also contains a high-quality relay from Omron, that can be used to open or close an electric circuit. Despite its small size, it can be used with voltage up to 30VDC/220AC and current up to 5A.
Thermostat 3 click 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.
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IrThermo Click features either the MLX90614ESF-BAA (3.3V) or MLX90614ESF-AAA (5V) single zone infrared thermometer module capable of non-contact temperature measurements. It is calibrated in wide temperature ranges: -40 to 85°C for the ambient temperature and -70 to +380°C for the object temperature (-20 to 120°C in PWM mode). IrThermo Click communicates with the microcontroller via mikroBUS I2C lines (SCL, SDA) or PWM line. The sensor is ideal for automotive use, industrial temperature control, body temperature measurement, movement detection, air conditioning control and more. |
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IrThermo 2 click is a non-contact temperature measurement solution. The click board carries the TMP007 infrared thermopile sensor with an integrated math engine. The sensor absorbs the infrared radiation emitted by the target object (within the sensor's field of view) and the integrated math engine calculates its temperature by comparing it with the temperature of the silicon die. The measurement range of the sensor is between -40°C to 125°C (with a 14-bit resolution). The board is designed to use either a 3.3V or a 5V power supply. |
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IrThermo 3 click is a device which allows contactless measurement of the object temperature. It uses highly advanced MLX90632 FIR sensor, which detects the average temperature of objects within its field of view (FOV), which is typically ±25°. It is factory calibrated, with the calibration constants stored in its internal EEPROM. Besides EEPROM used for storing trimming values, device settings, and calibration constants, it has additional RAM area that can be used for auxiliary measurement data storage. The integrated temperature sensor provides ambient temperature measurement, necessary for a proper calibration. The device is calibrated to sense objects with the temperature ranging from -20 ? up to 200 ?, and the ambient temperature ranging up to 80?. The measurement resolution is 0.02?. Measured data is available via the industry standard I2C communication bus. |
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The SHT11 Click board is an accessory board in mikroBus form factor. It includes a SHT11 digital humidity and temperature sensor. A unique capacitive sensor element is used to measure relative humidity while the temperature is measured by a band-gap sensor. Serial I2C interface and factory calibration allow fast and easy system integration. The board is set to use the 3.3V mikroBus power supply by default, however soldering the PWR SEL SMD jumper to the 5V position will allow it to be used with 5V mikroBus systems. |
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The SHT1X PROTO Board is used to connect your prototype device with a temperature/humidity sensor. It features the SHT11 sensor that uses a 2-wire serial interface, thus enabling you to measure temperature and humidity. |
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The SHT1X Board features the SHT11 sensor. It is connected to a development board through a 2-wire serial interface, thus enabling you to measure temperature and humidity. |
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HTU21D click carries a high-precision, easy-to-use relative humidity sensor with temperature output. It's a great solution for quickly developing reliable environmental sensing nodes. The sensor is plug and play, requiring no calibration to use. The measurement range of HTU21D click is from 0 to 100 percents of relative humidity, and -40 to +125 degrees of Celsius. The board communicates with the target microcontroller through mikroBUS I2C lines: SCL (clock) and SDA (data). The default resolution of the signal is set to 12-bit for relative humidity and 14-bit for temperature readings. HTU21D click uses a 3.3V power supply. |
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DHT22 click is a temperature and humidity measurement board carrying the sensor of the same name. It's a low cost reliable solution that communicates with the target board microcontroller through a single Serial Data Line. The sensor can detect temperatures between - 40 and 80 degrees centigrade with a half a degree precision. The relative humidity measurement from 0 - 100% is accurate within 2%. DHT22 has two jumpers. One for choosing between two mikroBUS pins (CS or INT) for communicating with the target board microcontroller. Another for setting up the power supply voltage either at 3.3V or 5V. |
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DHT22 2 click is used for measuring the environmental temperature and relative humidity. It uses the CM2322 sensor, with very accurate thermal and humidity measuring capabilities. It can use either 1-Wire or I2C protocol to communicate with the integrated circuit.
Attributes like the ultra-small size, low power consumption,data signal transmission distance up to 20 meters, make this sensor the perfect choice for all kinds of applications that require measurement of the temperature and humidity. |
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HDC1000 click is a humidity (and temperature) measurement click board carrying the HDC1000 sensor from TI. Its chief features are low power consumption, precision, and resistance to dust, dirt, and similar environmental contaminants. The relative humidity (0-100%RH) is measured with an accuracy of ±3%; the temperature is measured within a range from -20°C to 85°C with ±0.2°C accuracy. HDC1000 click communicates with the target board MCU through mikroBUS I2C and INT lines. It operates as a slave device on the I2C interface. A pair of onboard jumpers allow you to specify the slave byte address, with four to choose from. The board is designed to use a 3.3V power supply only. |
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Temp&Hum click carries ST’s HTS221 temperature and relative humidity sensor. Its temperature measurement accuracy is ±1°C within a 0-60°C range. The precision is increased to ±0.5°C in a narrower range from 15 to 40°C. The highly sensitive relative humidity measurement range is from 0 to 100% with ±6% accuracy (or ±4.5% in the 20-80% range). The measurements are output in 16-bit resolution through the mikroBUS I2C interface. The board uses a 3.3V power supply. |
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Temp-Hum 2 click is a smart temperature and humidity sensor click board™, packed with features, that allow easy and simple integration into any design that requires accurate and reliable humidity and temperature measurements. It measures a wide range of temperature and relative humidity values with a great accuracy. The Si7034 sensor IC from Silicon labs used on this Click board™ utilizes the patented industry-standard low-K polymeric dielectrics for humidity sensing. It allows low drift and, power consumption, low hysteresis, and excellent long-term stability. |
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Smart environmental temperature and humidity sensor
Temp-Hum 3 click is a smart environmental temperature and humidity sensor Click board™, packed with features which allow easy and simple integration into any design that requires accurate and reliable humidity and temperature measurements. The sensor IC has integrated sensing elements placed on the bottom of the die, so they are not directly exposed to the environmental contamination. This translates to a prolonged life of the Click board™ itself. |
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Smart environmental temperature and humidity sensor
Temp-Hum 4 click is a smart environmental temperature and humidity sensor Click board™, packed with features which allow easy and simple integration into any design that requires accurate and reliable humidity and temperature measurements. The sensor IC itself has integrated sensing elements placed on the bottom of the die, so they are not directly exposed to the environmental contamination, which translates to a prolonged life of the Click board™. |
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Temp&Hum 5 click is a temperature and humidity sensing click board™, packed with features that allow simple integration into any design. It can measure a wide range of temperature and relative humidity values with high accuracy. The Click board™ is equipped with the HIH6130 sensor, offering the complete measurement system onboard: capacitive humidity sensor, bandgap thermal sensor, signal processing, and the I2C communication interface. Featuring good reliability over time, high accuracy, and low hysteresis, it represents an ideal solution to be used in various temperature and humidity related applications.
Temp&Hum 5 click 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.
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Temp&Hum 6 click is a smart temperature and humidity sensing click board™, packed with features that allow easy and simple integration into any design. It measures a wide range of temperature and relative humidity values with great accuracy. The ENS210 sensor IC used on this Click board™ is an ultra-accurate temperature and relative humidity sensor (RH), featuring very low drift, very low power consumption, small hysteresis, and excellent long-term stability. Thanks to its advanced logic back-end, the sensor IC can offer measurement readings in Kelvin and %RH directly, over the I2C interface.
Temp&Hum 6 click 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.
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Temp&Hum 7 click is a Click board™ which is perfectly suited for measuring the relative humidity (RH) and temperature. The Click board™ is equipped with the Si7021-A20, an accurate and reliable sensor IC, packed in a miniature 3x3mm DFN package. By using the patented low-K polymeric dielectrics, this sensor is available to achieve measurements with a very low drift and hysteresis, and excellent long-term stability. Each sensor has the factory calibration parameters pre-programmed in the non-volatile memory, requiring no additional calibration by the user. this Click board™ can be used for the development of the many different relative humidity and temperature measuring applications, including weather stations, reliable monitoring systems, asset tracking, HVAC/R based applications, and more.
It comes in the package which also includes the mikroSDK™ software and a library with all the functions. The Click board™ comes as a fully tested and approved prototype, making it a reliable device ready to use on the development board.
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Temp&Hum 8 click is based on a sensor from the popular SHT family, designed to measure temperature and humidity. This sensor family has already become an industry standard, providing proven reliability and stability while requiring a minimum number of components, making the development of applications cheaper and faster. The sensor used on this click is labeled as SHT21, which features a high degree of measurement linearity, thanks to the factory calibration and testing which is performed for each sensor sample. Featuring high accuracy, good linearity, proven reliability, and long-term stability, you can use this sensor can for many different applications. Some of them include weather stations, various environmental data collection applications, IoT based applications, and all applications that require a reliable thermal and humidity readings over longer periods of time.
It comes in the package which also includes the mikroSDK™ software and a library with all the functions. The Click board™ comes as a fully tested and approved prototype, making it a reliable device ready to use on the development board.
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Temp-Hum 9 click is a smart temperature and humidity sensing click board™, packed with features that allow simple integration into any design. It can measure a wide range of temperature and relative humidity values with high accuracy. The SHTC3 sensors used on this Click board™ offers the complete measurement system: capacitive RH sensor, bandgap thermal sensor, analog and digital data processing, and the I2C communication interface. Featuring a good reliability over time, high accuracy, and low hysteresis, it is an ideal solution to be used in various temperature and humidity related applications.
Temp-Hum 9 click 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.
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Temp&Hum 10 Click is a smart temperature and humidity sensing Click board™, aimed towards IoT applications, due to its extremely small size and very low power consumption. It can measure a wide range of temperature and relative humidity (RH) values with high accuracy. The sensor used on this Click board™ offers the complete measurement system: capacitive RH sensor, thermal sensor, analog and digital data processing, and the I2C communication interface. Featuring a good reliability over time, high accuracy, and low hysteresis, it is an ideal solution to be used in various temperature and humidity related IoT applications.
Temp&Hum 10 click 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.
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Temp-hum 11 click is a temperature and humidity sensing Click board™, equipped with the HDC1080, a high accuracy digital humidity, and temperature sensor. Its key features are its low power consumption, and the measurement accuracy achieved with that much energy. The HDC1080 sensor can sense the relative humidity (RH) with the accuracy of ±2%, while the temperature can be sensed with the accuracy up to ±0.2°C. It has a 14-bit measurement resolution, and it can be operated over a wide supply voltage range, allowing it to be interfaced with both 5V and 3.3V MCUs with no additional components required.
Temp-hum 11 click 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.
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Temp&Hum 12 click is a smart environmental temperature and humidity sensor Click board™, packed with features which allow easy and simple integration into any design that requires accurate and reliable humidity and temperature measurements. The capacitive-based sensor includes new integrated digital features and a heating element to dissipate condensation and moisture. This translates to a prolonged life of the Click board™ itself.
Temp&Hum 12 click is a perfect solution for a wide range of applications that depend on accurate temperature and humidity readings. With its low power consumption and programmable interrupt requests capability, it is also a perfect choice for various temperature and relative humidity based IoT applications, smart thermostats and smart home assistants.
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Temp&Hum 13 Click is a Click board™ which is perfectly suited for measuring the relative humidity (RH) and temperature. The Click board™ is equipped with the HTU21DF, an accurate and reliable sensor IC, packed in a miniature 3x3mm DFN package. This sensor is fully calibrated and features fast response time, low power consumption, full interchangeability with no calibration required, instantaneous desaturation after long periods in saturation phase and many more. This Click board™ can be used for the development of the many different relative humidity and temperature measuring applications, including weather stations, reliable monitoring systems, asset tracking, HVAC/R based applications, and more.
Temp&Hum 13 click 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.
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