


Burr-Brown (Texas Instruments)
XTR112U
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XTR112U Description
XTR112U Description
The XTR112U is a 4-20mA current transmitter designed and manufactured by Burr-Brown, a subsidiary of Texas Instruments. This interface IC chip is engineered to provide robust and reliable performance in a variety of industrial applications. The XTR112U is classified under the ECCN code EAR99 and falls under the HTSUS code 8542.39.0001. It is available in bulk packaging and is currently an active product in the market, ensuring its availability for ongoing projects and new designs.
XTR112U Features
The XTR112U is a highly versatile and efficient current transmitter that offers several unique features and advantages over similar models. Key technical specifications and performance benefits include:
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Precision Current Output: The XTR112U provides a highly accurate 4-20mA current output, ensuring precise signal transmission over long distances. This precision is crucial in industrial environments where signal integrity is paramount.
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Wide Operating Voltage Range: With a wide operating voltage range, the XTR112U can accommodate various power supply configurations, making it suitable for a broad range of applications. This flexibility reduces the need for additional voltage regulation components, simplifying circuit design.
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Low Power Consumption: The XTR112U is designed to operate with low power consumption, which is beneficial in battery-powered or energy-sensitive applications. This feature helps extend the operational life of devices and reduces overall power requirements.
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High Common-Mode Rejection Ratio (CMRR): The XTR112U exhibits a high CMRR, which effectively minimizes the impact of common-mode noise on the signal. This capability ensures reliable performance in noisy industrial environments, where electromagnetic interference (EMI) can be a significant concern.
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Thermal Stability: The XTR112U maintains excellent thermal stability, ensuring consistent performance across a wide temperature range. This stability is essential for applications in harsh environments where temperature variations can affect the accuracy and reliability of electronic components.
XTR112U Applications
The XTR112U is well-suited for a variety of industrial applications where reliable and precise signal transmission is required. Specific use cases include:
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Process Control Systems: In industrial process control systems, the XTR112U can be used to transmit sensor data, such as temperature, pressure, and flow rates, to control units. Its precision and reliability ensure accurate monitoring and control, enhancing overall system performance.
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Remote Sensing: For remote sensing applications, the XTR112U's ability to transmit signals over long distances without significant loss of accuracy makes it an ideal choice. This capability is particularly beneficial in applications such as environmental monitoring, where sensors may be located far from the central control unit.
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Industrial Automation: In industrial automation, the XTR112U can interface with various sensors and actuators, providing a reliable means of communication between different components of the system. Its robustness and low power consumption make it suitable for use in automated manufacturing processes and robotic systems.
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Data Acquisition Systems: The XTR112U can be integrated into data acquisition systems to transmit analog signals from sensors to data processing units. Its high CMRR and thermal stability ensure accurate data capture and transmission, even in challenging environmental conditions.
Conclusion of XTR112U
The XTR112U is a highly reliable and versatile 4-20mA current transmitter that offers significant advantages over similar models. Its precision, wide operating voltage range, low power consumption, high CMRR, and thermal stability make it an ideal choice for a wide range of industrial applications. Whether used in process control systems, remote sensing, industrial automation, or data acquisition systems, the XTR112U ensures accurate and reliable signal transmission, enhancing the overall performance and efficiency of the system.



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