The TJA1028T/5V0/10/2Z is a high-performance automotive LIN transceiver designed by NXP Semiconductors. This integrated circuit is a part of NXP's robust networking solutions, specifically tailored for Local Interconnect Network (LIN) applications in vehicles. The product is built to facilitate reliable data communication in automotive control systems, enhancing the performance and efficiency of vehicle networks.
Key Features
- Compatible with LIN 2.x and SAE J2602: Designed to support the latest LIN protocol specifications, ensuring seamless integration with modern automotive networks.
- Low-power Mode: Features a sleep mode with a very low current consumption, which helps to minimize the power drain when the network is inactive.
- Excellent EMC Performance: The product boasts superior electromagnetic compatibility, ensuring reliable operation in the electrically noisy environment of a vehicle.
- Integrated Voltage Regulator: Comes with a built-in voltage regulator which can supply a 3.3V or 5V microcontroller, reducing the need for additional external components.
Applications
The TJA1028T/5V0/10/2Z is primarily used in automotive applications. It is ideal for connecting various sensors and actuators in vehicles, such as:
- Door modules
- Seat control
- Climate control
- Steering wheel functions
- Rain and light sensors
Product Specifications
The TJA1028T/5V0/10/2Z transceiver is encapsulated in a small SO8 package, making it suitable for space-constrained applications. It operates over a wide temperature range, which is crucial for automotive environments. The device is designed for a supply voltage of 5V, and it is equipped with two dominant time-out functions to prevent the bus line from being driven permanently at a dominant level.
Quality and Reliability
NXP is known for its commitment to quality, and the TJA1028T/5V0/10/2Z is no exception. It is manufactured to meet the high standards of the automotive industry, ensuring long-term reliability and performance under the rigorous conditions typical of automotive applications.