TJA1027TK/20/1 NXP

Description

TJA1027TK/20,1

High Performance LIN Transceiver

The TJA1027TK/20,1 is a high performance LIN (Local Interconnect Network) transceiver, designed to meet the requirements of automotive and industrial applications. This integrated circuit provides a reliable and efficient interface between a microcontroller and a LIN bus.

Key Features

  • High Performance: The TJA1027TK/20,1 offers excellent transmitter and receiver performance, ensuring reliable data communication over the LIN bus.
  • Low Power Consumption: With its low power consumption, this transceiver is suitable for applications where energy efficiency is a priority.
  • LIN 2.0 and LIN 2.1 Protocol Compatibility: The TJA1027TK/20,1 supports both LIN 2.0 and LIN 2.1 protocols, ensuring compatibility with a wide range of LIN devices and systems.
  • Internal Pull-up and Pull-down Resistors: The presence of internal pull-up and pull-down resistors simplifies the design and reduces the component count in the application circuit.
  • High ESD Protection: The TJA1027TK/20,1 features high Electrostatic Discharge (ESD) protection, ensuring the reliability and durability of the device in harsh environments.

Specifications

  • LIN Bus Version: LIN 2.0 and LIN 2.1
  • Supply Voltage: 5V to 27V
  • Transmit Data Rate: Up to 20 kbps
  • Receive Data Rate: Up to 20 kbps
  • Operating Temperature Range: -40°C to +125°C
  • Package Type: SO8
  • ESD Protection: ±6 kV HBM, ±4 kV CDM

Applications

The TJA1027TK/20,1 is designed for various applications, including but not limited to:

  • Automotive systems: For communication between electronic control units (ECUs) and sensors or actuators.
  • Industrial automation: For control and monitoring of machinery and equipment.
  • Medical devices: For communication between devices and sensors in medical systems.

Conclusion

The TJA1027TK/20,1 offers high performance, reliability, and compatibility with LIN protocols, making it a versatile choice for a broad range of applications requiring LIN communication. Its robust design, including high ESD protection and a wide operating temperature range, ensures that it can operate effectively in demanding environments.