The Texas Instruments 65HVD230 series Drivers Interface ICs are designed for use in applications employing the Controller Area Network (CAN) serial communication physical layer in accordance with the ISO 11898 standard. The 65HVD230 series is compatible with both 3.3-V and 5-V systems and is available in a small-footprint SOIC package. The devices are designed to provide differential transmit capability to the bus and differential receive capability to a CAN controller at signaling rates up to 1 Mbps.
Texas Instruments 65HVD230 series Drivers Interface ICs
Comprehensive Guide to 65HVD230 Integrated Circuits (ICs) Drivers Interface ICs
This post lists the Key Component Features, Diverse Applications, Associated Series Parts, Technical Documents(PDF Datasheets, User Guides), Frequently asked questions, and Related Series of Texas Instruments 65HVD230 series Drivers Interface ICs products.
FEATURES
- Available in a small-footprint SOIC package
- Compatible with both 3.3-V and 5-V systems
Applications
- Industrial transport (non-car & non-light truck)
- Medical
Associated Products
Part Number | Description | Stock | RFQ |
---|---|---|---|
SN65HVD230MDREP | TEXAS INSTRUMENTS - SN65HVD230MDREP - CAN TRANSCEIVER, 1MBPS, 1/1, 3.3V, SOIC-8 | 3115 | RFQ |
SN65HVD230D | TEXAS INSTRUMENTS - SN65HVD230D . - Bus CAN, CAN, 1, 1, 3 V, 3.6 V, SOIC | 43 | RFQ |
SN65HVD230QD | TEXAS INSTRUMENTS - SN65HVD230QD - CAN TRANSCEIVER, 1MBPS, 1/1, 3.3V, SOIC-8 | 27 | RFQ |
SN65HVD230QDG4 | TEXAS INSTRUMENTS - SN65HVD230QDG4 - CAN TRANSCEIVER, 1MBPS, 1/1, 3.3V, SOIC-8 | 0 | RFQ |
SN65HVD230DRG4 | TEXAS INSTRUMENTS - SN65HVD230DRG4 - CAN TRANSCEIVER, 1MBPS, 1/1, 3.3V, SOIC-8, FULL REEL | 50000 | RFQ |
SN65HVD230DR | TEXAS INSTRUMENTS - SN65HVD230DR - IC, CAN TRANSCEIVER, 1MBPS, 8SOIC | 30000 | RFQ |
SN65HVD230DG4 | TEXAS INSTRUMENTS - SN65HVD230DG4 - CAN TRANSCEIVER, 1MBPS, 1/1, 3.3V, SOIC-8 | 66 | RFQ |
SN65HVD230QDG4Q1 | TEXAS INSTRUMENTS - SN65HVD230QDG4Q1 - CAN TRANSCEIVER, 1MBPS, 1/1, 3.3V, SOIC-8 | 89 | BUY |
SN65HVD230QDRQ1 | IC TRANSCEIVER HALF 1/1 8SOIC | 6 | BUY |
SN65HVD230QDRG4Q1 | IC CAN TRANSCEIVER 3.3V 8-SOIC | 12 | RFQ |
SN65HVD230QDR | IC CAN TRANSCEIVER 3.3V 8-SOIC | 4000 | RFQ |
SN65HVD230QDRG4 | IC TXRX CAN W/STNDBY 3.3V 8-SOIC | 0 | RFQ |
Technical Documents
- Mult Devices Font 21/Apr/2018
- Mult Devices Font 21/Apr/2018
- SN65HVD230DR-Texas-Instruments-datasheet-37140773.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-149765.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-10256024.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-14436966.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-26446540.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-8096.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-111868.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-8442861.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-14121709.pdf
- SN65HVD230DR-Texas-Instruments-datasheet-48117850.pdf
Frequently Asked Questions
What are the similar products or Substitute Components of Texas Instruments 65HVD230 series Drivers Interface ICs
NXP Semiconductors - PCA82C250: The PCA82C250 is a widely used driver interface IC for the Controller Area Network (CAN) protocol. It offers similar features to the 65HVD230, including high-speed data transmission, robustness, and compatibility with the CAN bus. Infineon Technologies - TLE7259-3GE: The TLE7259-3GE is a CAN transceiver IC that provides similar functionality to the 65HVD230. It offers high-speed data transmission, fault tolerance, and compatibility with the CAN bus for reliable communication in industrial and automotive applications. Microchip Technology - MCP2551: The MCP2551 is a popular CAN transceiver IC that can be used as an alternative to the 65HVD230. It offers similar features, including high-speed data transmission, fault tolerance, and compatibility with the CAN bus.
What is the difference between SN65HVD232 and 65HVD230?
According to the data sheet of SN65HVD230 and SN65HVD231, the difference between the two is that both the driver and the receiver are switched off in the SN65HVD231 when a high logic level is applied to the R S pin. In this sleep mode, the device will not be able to transmit messages to the bus or receive messages from the bus