The Texas Instruments TMP117MAIDRVR is a high-precision temperature sensor that offers a combination of accuracy, low power consumption, and ease of use, making it an ideal solution for a wide range of temperature sensing applications. This device is part of the TMP117 family of sensors, which are known for their reliability and performance in demanding environments.
Key Features:
- High Accuracy: The TMP117MAIDRVR provides a typical accuracy of ±0.1°C across the temperature range of -20°C to +50°C and ±0.2°C across the full temperature range of -40°C to +125°C. This level of precision ensures that it can be used in applications requiring very tight temperature control.
- Low Power Consumption: Designed for battery-powered applications, the TMP117MAIDRVR has a low operating current and a power-saving shutdown mode, which significantly extends battery life in portable applications.
- No Calibration Needed: The sensor comes factory-calibrated, eliminating the need for system-level calibration and reducing the time and cost associated with bringing a product to market.
- Digital Output: The TMP117MAIDRVR communicates via the I2C interface, providing a direct digital output of the temperature without the need for analog-to-digital conversion.
- Small Form Factor: Housed in a compact 2mm x 3mm WSON package, this sensor is suitable for space-constrained applications.
- Wide Range of Applications: It is ideal for medical applications, high-accuracy thermostats, industrial controls, mobile devices, and any other systems that require precise temperature readings.
Technical Specifications:
| Parameter |
Value |
| Accuracy |
±0.1°C (typical) |
| Temperature Range |
-40°C to +125°C |
| Interface |
I2C |
| Supply Voltage |
1.8V to 5.5V |
| Package |
2mm x 3mm WSON |
Overall, the Texas Instruments TMP117MAIDRVR represents a robust and reliable solution for precision temperature measurement. Its integration of advanced features in a small package makes it a versatile choice for designers looking to enhance the performance and efficiency of their temperature sensing systems.