The UJA1169TK/F/3Z is a highly integrated system basis chip from NXP Semiconductors, designed to support the networking applications of in-vehicle networks. This compact, state-of-the-art chip provides the interfaces for networking and power supply, with a focus on medium-speed and low-speed CAN (Controller Area Network) communication interfaces.
The UJA1169TK/F/3Z is part of the Mini High-Speed CAN System Basis Chip family and is particularly suitable for body control modules, gateways, and instrument cluster applications. It integrates a CAN transceiver, which works with CAN protocols up to 125 kbps, making it an excellent choice for applications where robust communication is essential.
One of the notable features of this product is its low-power mode with wake-up capability, which allows for significant power savings in applications that are sensitive to power consumption. The chip can wake up from either the CAN bus or local wake-up sources, and it also supports wake-up pattern recognition, further enhancing its utility in modern vehicle networks.
The UJA1169TK/F/3Z also offers excellent electromagnetic compatibility (EMC) and electrostatic discharge (ESD) performance, which are critical for reliable operation in the harsh electrical environments found in automotive applications. Its robust design ensures that the chip can withstand the challenges of the automotive environment, including vibrations, temperature extremes, and electrical transients.
This system basis chip is available in an HVSON14 package, which is known for its small footprint and suitability for space-constrained environments. The UJA1169TK/F/3Z is designed for direct interfacing with microcontrollers and can operate over a wide supply voltage range, making it a versatile solution for various automotive electronic systems.
In summary, the NXP UJA1169TK/F/3Z is a reliable and efficient solution for automotive applications requiring medium and low-speed CAN communication. Its integration of key features such as low-power operation, wake-up capabilities, and robust EMC/ESD protection make it a top choice for designers looking to enhance the functionality and performance of in-vehicle networks.