SN65HVD230 Status: ACTIVE

3.3V CAN Transceiver with Standby Mode


      
         
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Datasheet

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 SN65HVD230SN65HVD230Q 
Supply Voltage(s)(V)3.3  3.3  
RatingCatalog  Catalog  
Transient Pulse Protection(V)-25 to 25  -25 to 25  
Operating Temp Range(Celsius)-40 to 85  -40 to 125  
FootprintPCA82C250  PCA82C250  
Low Power ModeStandby   
ICC(Max)(mA)17  17  
Pin/Package8SOIC  8SOIC  
Drivers Per Package1  1  
Receivers Per Package1  1  
Approx. Price (US$) 1.45 | 1ku   1.70 | 1ku  
 SamplesSamples
 InventoryInventory

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Product Information

Features

  • Operates With a 3.3-V Supply
  • Low Power Replacement for the PCA82C250 Footprint
  • Bus/Pin ESD Protection Exceeds 16 kV HBM
  • High Input Impedance Allows for 120 Nodes on a Bus
  • Controlled Driver Output Transition Times for Improved Signal Quality on the SN65HVD230 and SN65HVD231
  • Unpowered Node Does Not Disturb the Bus
  • Compatible With the Requirements of the ISO 11898 Standard
  • Low-Current SN65HVD230 Standby Mode 370 µA Typical
  • Low-Current SN65HVD231 Sleep Mode 40 nA Typical
  • Designed for Signaling Rates(1) up to 1 Megabit/Second (Mbps)
  • Thermal Shutdown Protection
  • Open-Circuit Fail-Safe Design
  • Glitch-Free Power-Up and Power-Down Protection for Hot-Plugging Applications
  • APPLICATIONS
    • Motor Control
    • Industrial Automation
    • Basestation Control and Status
    • Robotics
    • Automotive
    • UPS Control

(1) The signaling rate of a line is the number of voltage transitions that are made per second expressed in the units bps (bits per second).

Description

The SN65HVD230, SN65HVD231, and SN65HVD232 controller area network (CAN) transceivers are designed for use with the Texas Instruments TMS320Lx240x; 3.3-V DSPs with CAN controllers, or with equivalent devices. They are intended for use in applications employing the CAN serial communication physical layer in accordance with the ISO 11898 standard. Each CAN transceiver is designed to provide differential transmit capability to the bus and differential receive capability to a CAN controller at speeds up to 1 Mbps.

Designed for operation in especially-harsh environments, these devices feature cross-wire protection, loss-of-ground and overvoltage protection, overtemperature protection, as well as wide common-mode range.

The transceiver interfaces the single-ended CAN controller with the differential CAN bus found in industrial, building automation, and automotive applications. It operates over a -2-V to 7-V common-mode range on the bus, and it can withstand common-mode transients of ±25 V.

On the SN65HVD230 and SN65HVD231, pin 8 provides three different modes of operation: high-speed, slope control, and low-power modes. The high-speed mode of operation is selected by connecting pin 8 to ground, allowing the transmitter output transistors to switch on and off as fast as possible with no limitation on the rise and fall slopes. The rise and fall slopes can be adjusted by connecting a resistor to ground at pin 8, since the slope is proportional to the pin's output current. This slope control is implemented with external resistor values of 10 kΩ, to achieve a 15-V/µs slew rate, to 100 kΩ, to achieve a 2-V/µs slew rate. See the Application Information section of this data sheet.

The circuit of the SN65HVD230 enters a low-current standby mode during which the driver is switched off and the receiver remains active if a high logic level is applied to pin 8. The DSP controller reverses this low-current standby mode when a dominant state (bus differential voltage > 900 mV typical) occurs on the bus.

The unique difference between the SN65HVD230 and the SN65HVD231 is that both the driver and the receiver are switched off in the SN65HVD231 when a high logic level is applied to pin 8 and remain in this sleep mode until the circuit is reactivated by a low logic level on pin 8.

The Vref pin 5 on the SN65HVD230 and SN65HVD231 is available as a VCC/2 voltage reference.

The SN65HVD232 is a basic CAN transceiver with no added options; pins 5 and 8 are NC, no connection.

    

Pricing / Packaging / CAD Design Tools / Samples

PricePackagingCAD Design ToolsSamples
DeviceStatusTemp (oC)Price | QuantityPackage | PinsTop Side MarkingPackage QTY | Package CarrierSymbolsFootprintsSamples
SN65HVD230DACTIVE-40 to 851.60 | 1kuSOIC (D) | 8 View 75 | TUBE Download CAD Format for this Symbol Download CAD Format for this FootprintPurchase Samples
SN65HVD230DG4ACTIVE-40 to 851.60 | 1kuSOIC (D) | 8 View 75 | TUBE Download CAD Format for this Symbol Download CAD Format for this FootprintPurchase Samples
SN65HVD230DRACTIVE-40 to 851.45 | 1kuSOIC (D) | 8 View 2500 | LARGE T&R Download CAD Format for this Symbol Download CAD Format for this Footprint
SN65HVD230DRG4ACTIVE-40 to 851.45 | 1kuSOIC (D) | 8 View 2500 | LARGE T&R Download CAD Format for this Symbol Download CAD Format for this Footprint

* Suggested Resale Price per unit (USD) for BUDGETARY USE ONLY. For higher volume price quotes,prices in local currency or delivery quotes, please contact your local Texas Instruments Sales Office or Authorized Distributor.

Inventory

Reported Distributor Inventory as of 11:14 AM GMT, 08 Nov 2009
RegionCompanyIn StockPurchase
TI Lead Time*: 20 WeeksSN65HVD230D
AmericasArrow >1k
Rochester Electronics >1k
AsiaFarnell Asia 918
EuropeArrow Northern Europe 65
Avnet-SILICA 509
Compel 50
Farnell 738
TI Lead Time*: 20 WeeksSN65HVD230DG4
EuropeAbacus Polar 50
WorldwideMouser Electronics 90
TI Lead Time*: 20 WeeksSN65HVD230DR
AmericasArrow >1k
AsiaFarnell Asia 478
WPI 283
EuropeFarnell 454
TI Lead Time*: 20 WeeksSN65HVD230DRG4
None Reported
View Distributors
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** Lead time information is not available at this time. However, our information is updated daily so please check back with us soon. Please contact your preferred TI Authorized Distributor for additional information.

Quality & Lead (Pb)-Free Data

 Product ContentDPPM / MTBF / FIT Rate
DeviceEco Plan* Lead / Ball FinishMSL Rating / Peak ReflowDetailsDetails
SN65HVD230D RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-1-260C-UNLIMViewView
SN65HVD230DG4 RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-1-260C-UNLIMViewView
SN65HVD230DR RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-1-260C-UNLIMViewView
SN65HVD230DRG4 RoHS Compliant Green (RoHS & no Sb/Br) CU NIPDAU Level-1-260C-UNLIMViewView

* The planned eco-friendly classification: Pb-Free (RoHS) or Pb-Free (RoHS Exempt) or Green (RoHS & no Sb/Br) - please click on the Product Content Details "View" link in the table above for the latest availability information and additional product content details.

If the information you are requesting is not available online at this time, contact one of our Product Information Centers regarding the availability of this information.

Technical Documents

Most useful technical documents for SN65HVD230 Help

Datasheet

Application Notes

Reference Designs

Description Part # Company
Industrial Control via the CAN Bus Demonstration Platform CANBUS-DEMO Texas Instruments

Simulation Models

Part # Name Product Family Comments
TMS320F2810   32-Bit Digital Signal Controller with Flash   C2000™ 32-BIT MICROCONTROLLERS - 28X FIXED-POINT SERIES   SN65HVD230 is optimized for use in CAN buses using TMS320F2810    
TMS320LF2403A   16-Bit Fixed-Point DSP with Flash   C2000™ 32-BIT MICROCONTROLLERS - 24X 16-BIT SERIES   SN65HVD230 is optimized for use in CAN buses using TMS320LF2403A    
TMS320LC2406A   16-bit fixed point DSP with ROM   C2000™ 32-BIT MICROCONTROLLERS - 24X 16-BIT SERIES   SN65HVD230 is optimized for use in CAN buses using TMS320LC2406A    
TMS320LF2406A   16-bit fixed point DSP with Flash   C2000™ 32-BIT MICROCONTROLLERS - 24X 16-BIT SERIES   SN65HVD230 is optimized for use in CAN buses using TMS320LF2406A    
TMS320LF2407A   16-bit fixed point DSP with Flash   C2000™ 32-BIT MICROCONTROLLERS - 24X 16-BIT SERIES   SN65HVD230 is optimized for use in CAN buses using TMS320LF2407A    
TMS320F2812   32-Bit Digital Signal Controller with Flash   C2000™ 32-BIT MICROCONTROLLERS - 28X FIXED-POINT SERIES   SN65HVD230 is optimized for use in CAN buses using TMS320F2812    
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