The XTR108EA/2K5G4 is a state-of-the-art 4-20mA current transmitter from Texas Instruments, designed for precision sensor signal conditioning. This integrated circuit (IC) is specifically tailored for industrial applications that require high accuracy and reliability in harsh environments.
Key Features
- High Precision: The XTR108EA/2K5G4 offers exceptional accuracy and low offset, ensuring precise signal conversion and transmission for critical measurements.
- Integrated Current Source: It includes an on-chip current source for sensor excitation, providing a stable and accurate current for powering sensors.
- Programmable Gain: Users can adjust the gain settings to match the requirements of various sensors, enhancing the versatility of the device.
- Burnout Detection: The device features sensor burnout detection which alerts the system in case of sensor failure, thus ensuring system safety and reliability.
- Temperature Compensation: The XTR108EA/2K5G4 is equipped with temperature compensation capabilities that help maintain accuracy across a wide temperature range.
Applications
The XTR108EA/2K5G4 is ideal for a broad range of industrial applications, including:
- Process Control Systems
- Factory Automation
- Industrial Instrumentation
- Smart Transmitters
- Pressure and Temperature Sensors
Quality and Reliability
Texas Instruments is known for its commitment to quality, and the XTR108EA/2K5G4 is no exception. It is built to meet the rigorous standards of industrial performance and is packaged in a robust 14-lead TSSOP (Thin Shrink Small Outline Package), ensuring long-term reliability even in the most demanding conditions.
Technical Specifications
| Parameter |
Value |
| Supply Voltage |
7.5V to 36V |
| Output Current Range |
4mA to 20mA |
| Operating Temperature |
-40°C to +85°C |
| Package |
14-lead TSSOP |
For engineers and designers looking for a reliable solution for their sensor interfacing needs, the XTR108EA/2K5G4 from Texas Instruments offers an unmatched combination of performance, flexibility, and durability.