The TJA1044GTK/3Z is a high-speed CAN (Controller Area Network) transceiver designed by NXP Semiconductors, which provides an interface between a CAN protocol controller and the physical two-wire CAN bus. This sophisticated device is tailored for use in automotive applications and industrial automation controls, ensuring reliable communication in harsh environments.
Featuring an ISO 11898-2 and ISO 11898-5 compliant transceiver, the TJA1044GTK/3Z offers both high-speed CAN communication up to 1 Mbps and a low-power mode with wake-up capability, making it an ideal choice for networks that require efficient power management. Its robust design includes features such as a 'silent mode' in which the transceiver is disabled to avoid influencing the bus lines when the device is not in use.
Key Features:
- Compatibility: Compliant with ISO 11898-2 (high-speed CAN specification) and ISO 11898-5 (CAN with low-power mode).
- Low Power Consumption: Features a low current standby mode with bus wake-up capability.
- Protection: Equipped with thermal protection, as well as an undervoltage detection feature for improved safety and reliability.
- Signal Improvement: Offers differential receiver with wide common-mode range for high electromagnetic immunity.
- Flexibility: Supports both 3.3V and 5V operation, making it versatile for different system requirements.
Applications:
- Automotive networks such as body control modules, gateway modules, and powertrain applications.
- Industrial automation systems requiring robust communication protocols.
- Networking equipment for building automation and control.
The TJA1044GTK/3Z transceiver is delivered in a leadless HVSON14 package, which is designed to save space on the PCB while providing excellent thermal performance. This package is also suitable for Automatic Optical Inspection (AOI) processes used in modern manufacturing. By integrating this transceiver into your design, you can expect reliable performance and communication resilience, essential for today's sophisticated electronic systems.