Manufacturer Part Number
MC33897D
Manufacturer
NXP Semiconductors
Introduction
The MC33897D is a high-speed, half-duplex CAN bus transceiver designed to interface a CAN protocol controller to the physical CAN bus. It provides a differential driver and a differential receiver to transmit and receive CAN bus signals. The transceiver features high noise immunity and is suitable for industrial and automotive applications.
Product Features and Performance
Supports data rates up to 83.33 Kbps
Differential driver with a high-side and low-side output structure
Differential receiver with 500 mV hysteresis
Operating voltage of 12V
Wide operating temperature range of -40°C to 125°C
Surface mount packaging (14-SOIC)
Product Advantages
Robust design with high noise immunity for reliable CAN bus communication
Supports high-speed CAN bus applications
Wide temperature range makes it suitable for industrial and automotive environments
Space-saving surface mount package
Key Reasons to Choose This Product
Proven CAN bus transceiver technology from a leading semiconductor manufacturer
Reliable and robust performance for critical industrial and automotive applications
Compatibility with a wide range of CAN controllers and bus networks
Cost-effective solution for CAN bus interface requirements
Quality and Safety Features
Robust design with high noise immunity and electrostatic discharge (ESD) protection
Complies with relevant automotive and industrial standards for safety and reliability
Compatibility
Compatible with CAN protocol controllers and CAN bus networks
Application Areas
Industrial automation and control systems
Automotive electronics and infotainment systems
Transportation and machinery control applications
Product Lifecycle
The MC33897D is an obsolete product, meaning it is no longer in active production. However, there may be equivalent or alternative models available from NXP Semiconductors or other manufacturers. If you require more information or assistance in finding a suitable replacement, please contact our sales team through our website.