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SN65HVDA540-5-Q1 Datasheet, PDF (1/27 Pages) Texas Instruments – 5-V CAN TRANSCEIVER WITH I/O LEVEL ADAPTING AND LOW-POWER MODE SUPPLY OPTIMIZATION
SN65HVDA540-Q1, SN65HVDA541-Q1, SN65HVDA542-Q1
SN65HVDA540-5-Q1, SN65HVDA541-5-Q1, SN65HVDA542-5-Q1
www.ti.com
SLLS804B – MARCH 2009 – REVISED SEPTEMBER 2010
5-V CAN TRANSCEIVER
WITH I/O LEVEL ADAPTING AND LOW-POWER MODE SUPPLY OPTIMIZATION
Check for
Samples: SN65HVDA540-Q1, SN65HVDA541-Q1, SN65HVDA542-Q1, SN65HVDA540-5-Q1, SN65HVDA541-5-Q1, SN65HVDA542-5-Q1
FEATURES
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• Qualified for Automotive Applications
• Meets or Exceeds the Requirements of
ISO 11898-2 and ISO 11898-5
• GIFT/ICT Compliant
• ESD Protection up to ±12 kV (Human-Body
Model) on Bus Pins
• I/O Voltage Level Adapting
– SN65HVDA54x: Adaptable I/O Voltage
Range (VIO) From 3 V to 5.33 V
– SN65HVDA54x-5: 5 V VCC Device Version
• Operating Modes:
– Normal Mode: All Devices
– Low Power Standby Mode (VCC not
required, only VIO Supply Needed Saving
System Power)
– SN65HVDA540: No Wake Up
– SN65HVDA541: RXD Wake Up Request
– Silent (Receive Only) Mode: SN65HVDA542
• High Electromagnetic Compliance (EMC)
• Package Options: SOIC and VSON
• Protection
– Undervoltage Protection on VIO and VCC
– Bus-Fault Protection of –27 V to 40 V
– TXD Dominant State Time Out
– RXD Wake Up Request Lock Out on CAN
Bus Stuck Dominant Fault (SN65HVDA541)
– Thermal Shutdown Protection
– Power-Up/Down Glitch-Free Bus I/O
– High Bus Input Impedance When
Unpowered (No Bus Load)
DESCRIPTION
The device is designed and qualified for use in
automotive applications and meets or exceeds the
specifications of the ISO 11898 High Speed CAN
(Controller Area Network) Physical Layer standard
(transceiver).
FUNCTIONAL BLOCK DIAGRAM
APPLICATIONS
• SAE J2284 High-Speed CAN for Automotive
Applications
• SAE J1939 Standard Data Bus Interface
• GMW3122 Dual-Wire CAN Physical Layer
• ISO 11783 Standard Data Bus Interface
• NMEA 2000 Standard Data Bus Interface
A. SN65HVDA54x devices pin 5 is VIO.
SN65HVDA54x-5 devices pin 5 is NC and
VIO is internally connected to VCC.
B. SN65HVDA54x-5 devices: VIO is internally
connected to VCC
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Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas
Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.
Copyright © 2009–2010, Texas Instruments Incorporated