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SN65HVD251D: CAD Models, Datasheet, Features [FAQ]

  • Contents

Catalog

SN65HVD251D Product Overview

SN65HVD251D CAD Models

SN65HVD251D Pin Configuration

SN65HVD251D Block Diagram

SN65HVD251D Layout

SN65HVD251D Features

SN65HVD251D Applications

SN65HVD251D Package Outline

SN65HVD251D Datasheet

SN65HVD251D Specifications

SN65HVD251D Manufacturer

Using Warning

SN65HVD251D FAQ

 

SN65HVD251D Product Overview

According to ISO 11898 Standard, the SN65HVD251D is designed for use in systems utilizing the Controller Area Network (CAN) serial communication physical layer. At speeds up to 1 megabit per second, the HVD251 offers differential transmit capabilities to the bus and differential receive capability to a CAN controller (Mbps).

 

The device has cross-wire, overvoltage, and loss of ground protection up to 36 V and was built to operate in difficult settings. Additionally included are overheat protection, a common-mode voltage range of -7 to 12, and a tolerance of 200 V for transients. The transceiver connects the differential CAN bus used in industrial, building automation, and automotive applications with the single-ended CAN controller.

 

SN65HVD251D CAD Models

 

 

Figure: PCB Symbol

 

 

 

Figure: Footprint

 

 

 

Figure: 3D Models

 

SN65HVD251D Pin Configuration

 

 

Figure: Pin Configuration

Pin Number Pin Name Description
7 CANH High-level CAN bus line
6 CANL Low-level CAN bus line
1 D CAN transmit data input (LOW for dominant and HIGH for recessive bus states), also called D 1 I
TXD, driver input
2 GND Ground connection
4 R CAN receive data output (LOW for dominant and HIGH for recessive bus states), also called RXD, receiver output
8 RS Mode select pin: strong pulldown to GND = high-speed mode, strong pull up to VCC = low-power mode, 10-kΩ to 100-kΩ pulldown to GND = slope control mode
3 VCC Transceiver 5-V supply voltage
5 VREF Reference output voltage

SN65HVD251D Block Diagram

 

 

Figure: Block Diagram

 

SN65HVD251D Layout

 

 

Figure: Layout

 

SN65HVD251D Features

  • Bus Pin ESD Protection Exceeds 14 kV HBM
  • Unpowered Node Does Not Disturb the Bus
  • Low-Current Standby Mode: 200-µA Typical
  • Thermal Shutdown Protection
  • Glitch-Free Power-Up and Power-Down CAN BusProtection for Hot-Plugging
  • DeviceNet Vendor ID #806
  • Drop-In Improved Replacement for the PCA82C250 and PCA82C251
  • Bus-Fault Protection of ±36 V
  • Meets or Exceeds ISO 11898
  • Signaling Rates(1) up to 1 Mbps
  • High Input Impedance Allows up to 120 Nodes ona Bus

 

SN65HVD251D Applications

  • SAE J1939 Standard Data Bus Interface
  • NMEA 2000 Standard Data Bus Interface
  • CAN Data Buses
  • Industrial Automation

 

SN65HVD251D Package Outline

 

 

Figure: Package Outline

 

SN65HVD251D Datasheet

You can download the datasheet from the link given below:

 

SN65HVD251D Datasheet

 

SN65HVD251D Specifications

Type Desription
Category Integrated Circuits (ICs)
Interface
Drivers, Receivers, Transceivers
Mfr Texas Instruments
Series Automotive, AEC-Q100
Package Tube
Product Status Active
Type Transceiver
Protocol CANbus
Number of Drivers/Receivers 1/1
Duplex Half
Receiver Hysteresis 100 mV
Data Rate 1Mbps
Voltage - Supply 4.5V ~ 5.5V
Operating Temperature -40°C ~ 125°C
Mounting Type Surface Mount
Package / Case 8-SOIC (0.154", 3.90mm Width)
Supplier Device Package 8-SOIC
Base Product Number 65HVD251

 

SN65HVD251D Manufacturer

Texas Instruments Incorporated (TI) is an American technological business with its main office in Dallas, Texas. It creates and produces integrated circuits and semiconductors, which it then sells to producers and designers of electronics around the world. According to sales volume, it is one of the top 10 semiconductor businesses in the world. The company concentrates on creating embedded CPUs and analog circuits, which provide more than 80% of its sales. Calculators, microcontrollers, and multi-core processors are among the educational technology items that TI also makes using its digital light processing technology. As of 2016, the business had 45,000 patents worldwide.

 

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

SN65HVD251D FAQ

What is a CAN bus transceiver?

The transceiver's sole responsibility is to transmit and receive data to and from the bus. It transforms the differential signal sent over the bus from the controller's single-ended logic.

 

How do you isolate a CAN bus?

By putting an isolation barrier at the digital logic interface between the MCU and the CAN transceiver, the CAN bus can be isolated. System designers isolate the CAN bus using either discrete or integrated methods. A CAN transceiver and a digital isolator like ISO7721 can be used to construct a discrete solution.

 

What type of signal is CAN bus?

The Electronic Control Units (ECUs) present in modern automobiles, as well as other equipment, may interact with one another in a dependable, priority-driven manner thanks to the Controller Area Network (CAN) bus, a message-based protocol.

 

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