65HVD232 (6)

The 65HVD232 is available from Texas Instruments at Xecor. Designed for CANbus communication, the 65HVD232 offers high performance, low power consumption, and robust functionality with features like 1Mbps data rate, 100 mV receiver hysteresis, and a wide operating temperature range of -40°C to 85°C. Available in an 8-SOIC package, it is ideal for automotive and industrial applications requiring reliable half-duplex transceiver solutions. Whether used in vehicle control systems, industrial automation, or telecommunication networks, this series ensures efficiency, scalability, and reliability for demanding applications. Xecor is an authorized distributor for Texas Instruments. Please view our extensive selection of the 65HVD232 series below.

部品番号 説明 パッケージ 在庫 BOM に追加
SN65HVD232QDRQ1 CAN 1Mbps Sleep/Standby 3.3V Automotive AEC-Q100 8-Pin SOIC T/R SOP8 6,290
SN65HVD232DR CAN 1Mbps Sleep/Standby 3.3V 8-Pin SOIC T/R SOIC-8 4,882
SN65HVD232D CAN transceiver IC with 3.3-V interface SOIC-8 3,543
SN65HVD232QD Lead-free integrated circuit SOIC-8 8,036
SN65HVD232QDRG4Q1 CAN 1Mbps Sleep/Standby 3.3V Automotive AEC-Q100 8-Pin SOIC T/R SOIC (D)-8 5,100
SN65HVD232DRG4 3.3V CAN Interface IC for Automotive and Industrial Applications" SOIC-8 8,744

Key Featrues

CANbus Protocol Support: The device supports the CANbus protocol, making it ideal for automotive and industrial applications where robust communication and error detection are critical. This ensures reliable data transmission in noisy environments.
Half Duplex Communication: The half-duplex design allows for bidirectional communication over a single channel, optimizing the use of resources and simplifying wiring in systems where simultaneous transmission and reception are not required.
High Data Rate (1Mbps): With a data rate of up to 1Mbps, the transceiver enables fast and efficient communication, suitable for real-time applications such as vehicle control systems or industrial automation.
Wide Operating Temperature Range (-40°C to 85°C): The device operates reliably in extreme temperatures, making it suitable for harsh environments like automotive under-the-hood applications or outdoor industrial systems.
Low Voltage Supply (3V to 3.6V): The low voltage requirement enhances energy efficiency, making it ideal for battery-powered or energy-conscious applications while maintaining high performance.

Applications

Automotive CANbus Communication: The 65HVD232 is ideal for enabling robust communication in automotive networks. Its CANbus protocol and half-duplex operation ensure reliable data transmission between electronic control units (ECUs), sensors, and actuators, even in harsh environments with temperature fluctuations and electrical noise. This makes it suitable for applications like engine control, battery management, and advanced driver-assistance systems (ADAS).
Industrial Control Systems: The 65HVD232 is well-suited for industrial automation and control systems. Its ability to operate at high data rates (up to 1Mbps) and withstand a wide temperature range (-40°C to 85°C) ensures reliable communication between PLCs, sensors, and actuators in manufacturing environments. Its surface-mount design and compact 8-SOIC package make it easy to integrate into space-constrained industrial equipment.
Medical Device Networking: The 65HVD232 can be used in medical devices requiring secure and reliable communication. Its CANbus protocol ensures error-free data transmission between diagnostic equipment, patient monitoring systems, and control units. The device's low-voltage operation (3V to 3.6V) and robust design make it suitable for portable and battery-powered medical devices, ensuring patient safety and system reliability.
Building Automation Systems: The 65HVD232 is ideal for enabling communication in smart building systems. Its CANbus protocol and half-duplex operation allow seamless integration of HVAC controls, lighting systems, and security devices. The device's ability to operate in a wide temperature range and its compact form factor make it suitable for deployment in building automation panels and controllers, ensuring efficient and reliable system performance.