Product Overview: TJA1041T/N,112
The TJA1041T/N,112 is a high-speed CAN (Controller Area Network) transceiver designed by NXP Semiconductors, a leader in automotive and secure connectivity solutions. This transceiver serves as an interface between a CAN protocol controller and the physical two-wire CAN bus, suitable for automotive applications and industrial automation systems.
Key Features
- High-Speed CAN Interface: Supports the ISO 11898 standard for high-speed (up to 1 Mbit/s) data communication in automotive networking.
- Improved Electromagnetic Compatibility (EMC): With features such as differential receiver with wide common-mode range and an integrated slope control to minimize EMC emissions, the TJA1041T/N,112 ensures reliable operation in electrically noisy environments.
- Low Power Consumption: The device has a very low current standby mode with bus wake-up capability, making it ideal for power-sensitive applications.
- Bus Fault Protection: Features robust protection against transients, overvoltage, and loss of ground, safeguarding the transceiver and other network components from damage.
- Thermal Protection: Incorporates an automatic thermal shutdown feature to protect against excessive power dissipation.
Applications
The TJA1041T/N,112 is designed for use in a wide range of applications that require robust communication with high immunity against disturbances:
- Automotive networks (e.g., powertrain, chassis control, body control).
- Industrial automation systems.
- Building automation.
- Medical equipment.
Product Details
The device is housed in a compact 14-pin SO package, making it easy to integrate into various designs. The TJA1041T/N,112 operates over a wide temperature range from -40°C to +125°C, ensuring performance in harsh conditions. It also complies with the stringent automotive quality standards for reliability and longevity.
With its advanced features and robust design, the TJA1041T/N,112 from NXP is a reliable choice for designers looking to implement a high-speed CAN network with confidence in performance and durability.