AD7415ARTZ-0REEL Digital Temperature Sensor
The AD7415ARTZ-0REEL is a high-precision digital temperature sensor from Analog Devices Inc., known for its compact design and exceptional accuracy. This sensor is a part of the AD7415 series, which is designed to provide a digital temperature monitoring solution in a variety of systems, including personal computers, electronic equipment, and industrial controllers.
With its tiny SOT-23 package, the AD7415ARTZ-0REEL is perfect for space-constrained applications. It offers a temperature range from -40°C to +125°C, which ensures its versatility across different environments and applications. The sensor operates with a single supply voltage ranging from 2.7V to 5.5V, making it suitable for both low-power and standard applications.
One of the key features of this sensor is its 10-bit temperature-to-digital converter, which provides a resolution of 0.25°C. This high level of precision allows for accurate temperature monitoring and control. The sensor communicates through a standard I²C-compatible two-wire serial interface, which enables easy integration with microcontrollers and other digital systems.
The AD7415ARTZ-0REEL also boasts a quick conversion time of 30ms for its temperature readings, ensuring timely responses to temperature changes. Moreover, it includes a shutdown mode that reduces the power consumption significantly, an essential feature for battery-powered devices.
As part of the product's robust design, it features over-temperature and under-temperature detection. This function allows the device to signal the system in case of temperature events that exceed the programmed limits, adding an extra layer of protection to sensitive components.
The AD7415ARTZ-0REEL is provided in a reel package, which facilitates efficient assembly for high-volume production. Whether it's for thermal management in computer systems, environmental control, or process monitoring, this temperature sensor stands out as a reliable and precise component for a wide range of temperature-sensing applications.