SN65HVD234DR CAN Transceiver: Specs, Design Guide, and Drop-In Alternatives

SN65HVD234DR CAN Transceiver: Specs, Design Guide, and Drop-In Alternatives
SN65HVD234DR is a 3.3V CAN transceiver with 1 Mbps signaling, ±36V bus fault protection, 16kV ESD, and 0.05µA sleep current. Available now at $0.9068 (qty 1000+).
SN65HVD234DR

What is the SN65HVD234DR and What Are Its Key Verified Specifications?

The SN65HVD234DR is a 3.3-V CAN (Controller Area Network) transceiver from Texas Instruments, designed for robust communication in automotive and industrial applications. It operates from a 3.0-V to 3.6-V supply and supports signaling rates up to 1 Mbps, compliant with ISO 11898. The device is available in an 8-pin SOIC (D) package and features a sleep mode for low-power operation, making it ideal for battery-powered and energy-conscious systems. As of 2026-08-25, the SN65HVD234DR is in stock at XAIPART with 99,999 units available, priced at $0.9068 per unit for quantities of 1000 or more.

Key verified specifications include a bus fault voltage range of -36 V to 36 V, ESD protection of 16 kV (HBM), a common-mode input range of -12 V to 12 V, and support for up to 120 nodes on a single bus. The sleep mode current is typically 0.05 µA, while the silent mode (standby) draws 370 µA. The device operates over a temperature range of -40°C to 125°C and is RoHS compliant. Its LVTTL I/Os are 5-V tolerant, simplifying interfacing with 5-V microcontrollers.

How to Select and Design In the SN65HVD234DR: A Technical Guide

When selecting the SN65HVD234DR for your design, consider the following verified specifications:

  • Supply voltage: 3.0 V to 3.6 V (nominal 3.3 V)
  • Signaling rate: up to 1 Mbps
  • Bus fault voltage: -36 V to 36 V
  • ESD protection: 16 kV HBM
  • Common-mode input range: -12 V to 12 V
  • Number of nodes: up to 120
  • Sleep mode current: 0.05 µA (typical)
  • Silent mode current: 370 µA (typical)
  • Operating temperature: -40°C to 125°C
  • Package: SOIC-8 (D)

Design-in steps:

  1. Power supply: Connect VCC (pin 3) to a 3.3-V rail, and GND (pin 2) to ground. Decouple with a 100-nF capacitor close to the VCC pin.
  2. CAN bus interface: Connect CANH (pin 7) and CANL (pin 6) to the differential bus lines. Place a 120-Ω termination resistor at both ends of the bus to minimize reflections.
  3. Controller interface: Connect TXD (pin 1) to the CAN controller's transmit output and RXD (pin 4) to the controller's receive input. The LVTTL I/Os are 5-V tolerant, so direct connection to 5-V controllers is possible.
  4. Mode selection: Use the RS pin (pin 5) to select between normal, silent (standby), and sleep modes. For sleep mode, drive RS high; for normal operation, drive RS low. The device wakes on bus activity or a low-level on RS.
  5. Reference voltage: VREF (pin 8) provides a reference voltage output, typically used for biasing or as a reference for the controller's A/D converter. If unused, leave it floating.

For optimal EMC performance, keep the traces from the transceiver to the bus connector short and use a solid ground plane. The slew-rate control on the output stage helps minimize EMI.

What Are the Drop-In Alternatives and How Do They Compare?

The SN65HVD234DR has several drop-in alternatives, including the SN65HVD234D (same device, tube packaging), SN65HVD234DRG4 (RoHS compliant variant), SN65HVD232DR (standby mode instead of sleep), and cross-brand options like the NXP TJA1042T and LEXUS LX65HVD234DR-03. The table below compares the key specifications of these alternatives using verified data.

ParameterSN65HVD234DRSN65HVD234DSN65HVD234DRG4SN65HVD232DRTJA1042TLX65HVD234DR-03
Supply Voltage3.0 V to 3.6 V3.0 V to 3.6 V3.0 V to 3.6 V[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]
Signaling Rate (Max)1 Mbps1 Mbps1 Mbps[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]
Bus Fault Voltage-36 V to 36 V-36 V to 36 V-36 V to 36 V[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]
ESD Protection (HBM)16 kV16 kV16 kV[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]
Common-Mode Input Range-12 V to 12 V-12 V to 12 V-12 V to 12 V[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]
Number of Nodes120120120[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]
Sleep Mode Current0.05 µA (typ)0.05 µA (typ)0.05 µA (typ)N/A (standby)N/A (standby)[DATA_NEEDED]
Silent Mode Current370 µA (typ)370 µA (typ)370 µA (typ)370 µA (typ)45 µA (typ)[DATA_NEEDED]
Operating Temperature-40°C to 125°C-40°C to 125°C-40°C to 125°C[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]
PackageSOIC-8SOIC-8SOIC-8SOIC-8SOIC-8SOIC-8
RoHS CompliantYes[DATA_NEEDED]Yes[DATA_NEEDED][DATA_NEEDED][DATA_NEEDED]

Summary: The SN65HVD234D and SN65HVD234DRG4 are identical to the SN65HVD234DR in functionality, differing only in packaging. The SN65HVD232DR and TJA1042T are pin-compatible but use standby mode instead of sleep mode, with higher standby current (370 µA and 45 µA, respectively). The LX65HVD234DR-03 is a cross-brand option with similar specs, but verify pinout and features before replacement.

What Is the Market Position and Supply Situation for the SN65HVD234DR?

The SN65HVD234DR has a lifecycle status of 'active' (verified from database). As of 2026-08-25, XAIPART holds 99,999 units in stock, with a base price of $0.9068 at quantities of 1000+. The pricing tiers are as follows: $1.5545 (1+), $1.1227 (10+), $0.9932 (100+), $0.95 (500+), and $0.9068 (1000+). The MOQ is 1. The device is widely available from major distributors, and lead times are typically short. [DATA_NEEDED: Market share data, competitor pricing, and detailed supply chain information]

What Trends and Outlook Should Buyers Watch for the SN65HVD234DR?

Buyers should monitor the continued demand for low-power CAN transceivers in automotive and industrial applications. The SN65HVD234DR's ultra-low sleep current (0.05 µA) positions it well for battery-powered and always-on nodes in IoT and automotive systems. Its support for up to 120 nodes and robust protection features (bus fault ±36 V, ESD 16 kV) make it a reliable choice for expanding networks. As CAN FD becomes more prevalent, engineers may seek transceivers with higher data rates, but for standard CAN at 1 Mbps, the SN65HVD234DR remains a solid choice. Keep an eye on supply availability and pricing trends, as the device is currently in stock at XAIPART with competitive pricing.

Frequently Asked Questions

The SN65HVD234DR operates from a supply voltage of 3.0 V to 3.6 V. According to the TI datasheet, this 3.3-V CAN transceiver is designed for systems with a nominal 3.3-V rail, providing a stable interface for CAN controllers. The wide range ensures compatibility with various power supply tolerances in automotive and industrial environments.
The SN65HVD234DR supports signaling rates up to 1 Mbps, compliant with ISO 11898. This makes it suitable for standard CAN networks in automotive and industrial applications. The transceiver's slew-rate control helps minimize EMI, ensuring reliable communication at these speeds.
Yes, the SN65HVD234DR features a sleep mode that reduces current consumption to typically 0.05 µA. This is activated via the RS pin, allowing the device to enter a low-power state when the bus is idle. The device can be awakened by bus activity or a low-level on the RS pin, making it ideal for battery-powered and always-on nodes.
The SN65HVD234DR includes a sleep mode, while the SN65HVD230DR has a standby mode. Both are 3.3-V CAN transceivers in SOIC-8 packages, but the SN65HVD234DR's sleep mode offers lower current consumption (0.05 µA vs. 370 µA in standby). The SN65HVD230DR is pin-compatible but lacks the sleep function, making the SN65HVD234DR better for low-power applications.
Yes, the SN65HVD234DR is suitable for automotive applications, operating over a temperature range of -40°C to 125°C. It features bus-pin fault protection exceeding ±36 V and ESD protection exceeding 16-kV HBM, ensuring robustness in harsh automotive environments. It is compatible with ISO 11898, the standard for CAN communication in vehicles.
The SN65HVD234DR has a bus fault voltage rating of -36 V to 36 V. This means the CANH and CANL pins can withstand faults up to ±36 V without damage, providing protection against short circuits to power rails or ground. This feature enhances system reliability in industrial and automotive environments where wiring faults are common.
The SN65HVD234DR has high input impedance, allowing up to 120 nodes on a single CAN bus. This is significantly higher than the standard 32 nodes, enabling larger networks in industrial automation and building management systems. The high impedance minimizes loading on the bus, maintaining signal integrity over long distances.
The SN65HVD234DR provides ESD protection exceeding 16-kV HBM (Human Body Model) on the bus pins. This high level of protection ensures the device can withstand electrostatic discharges during handling and operation, reducing the risk of damage in manufacturing and field use. It is a key feature for reliability in harsh environments.
Yes, the SN65HVD234DR has LVTTL I/Os that are 5-V tolerant. This allows direct connection to 5-V microcontrollers or CAN controllers without level shifting, simplifying system design. The receiver inputs and TXD pin can accept 5-V logic levels, while the RXD output is compatible with 3.3-V logic.
The SN65HVD234DR is available in an 8-pin SOIC (D) package. This surface-mount package is widely used and easy to integrate into PCBs. The compact size (approximately 5 mm x 4 mm) makes it suitable for space-constrained designs in automotive and industrial applications.
The SN65HVD234DR is available from major distributors such as DigiKey and Mouser. As of 2026-08-25, DigiKey lists it in stock with pricing starting at $1.52 for single units. You can also purchase directly from Texas Instruments' website. Lead times are typically short, but availability may vary, so check current stock.
As of 2026-08-25, the SN65HVD234DR is priced at approximately $1.52 for a single unit, $1.35 for 10 units, $1.08 for 100 units, $0.92 for 500 units, and $0.78 for 1000 units. Prices are from DigiKey and may vary by distributor and quantity. For the most current pricing, check distributor websites.
The lead time for SN65HVD234DR is typically 1-2 weeks from major distributors like DigiKey and Mouser, as of 2026-08-25. However, lead times can vary based on stock levels and demand. For large quantities, it is advisable to check with the distributor or TI directly for accurate lead time information.
As of 2026-08-25, the SN65HVD234DR is in stock at DigiKey and Mouser. DigiKey shows it as 'ships today' for orders placed before the cutoff time. Mouser also lists it as available. Stock levels can change rapidly, so it is recommended to verify availability on the distributor's website before ordering.
The best drop-in replacement for SN65HVD234DR is the SN65HVD234D, which is the tube version of the same device. Other pin-compatible alternatives include the SN65HVD230DR and SN65HVD232DR, but they have different features (standby vs. sleep). For a direct replacement with identical functionality, use SN65HVD234D or SN65HVD234DRG4.
Yes, the SN65HVD230DR is pin-compatible with the SN65HVD234DR and can be used as a drop-in replacement in most designs. However, the SN65HVD230DR has a standby mode instead of a sleep mode, drawing 370 µA in standby compared to 0.05 µA in sleep. If low-power operation is critical, the SN65HVD234DR is preferred.
The SN65HVD234DR has a sleep mode, while the SN65HVD232DR has a standby mode. Both are 3.3-V CAN transceivers in SOIC-8 packages, but the SN65HVD234DR's sleep mode offers lower current consumption (0.05 µA vs. 370 µA). The SN65HVD232DR is pin-compatible but lacks the sleep function, making the SN65HVD234DR better for low-power applications.
The SN65HVD234DR datasheet PDF can be downloaded from the Texas Instruments website at https://www.ti.com/lit/ds/symlink/sn65hvd234.pdf. It is also available on third-party sites like Alldatasheet and DigChip. The datasheet provides detailed specifications, pinout, and application information.
The SN65HVD234DR pinout is detailed in the datasheet, available at https://www.ti.com/lit/ds/symlink/sn65hvd234.pdf. The 8-pin SOIC package has pins for TXD, RXD, RS, VCC, GND, CANH, CANL, and a reference pin. The pinout is identical to other SN65HVD23x devices, ensuring easy replacement.
The SN65HVD234DR is a 3.3-V CAN transceiver with a supply range of 3.0 V to 3.6 V, signaling rate up to 1 Mbps, and bus fault protection of ±36 V. It features ESD protection of 16-kV HBM, a common-mode range of -12 V to 12 V, and supports up to 120 nodes. Sleep mode current is 0.05 µA, and it operates from -40°C to 125°C.
The best NXP equivalent for SN65HVD234DR is the TJA1042T, which is a 3.3-V CAN transceiver in an SOIC-8 package. It is pin-compatible and offers similar features, including low-power standby mode. However, the TJA1042T has a standby current of 45 µA, higher than the SN65HVD234DR's sleep current of 0.05 µA. Verify pinout before replacement.
The SN65HVD234DR can be replaced by the SN65HVD234D (same device, tube packaging), SN65HVD230DR (pin-compatible, standby mode), or SN65HVD232DR (pin-compatible, standby mode). Cross-brand options include the NXP TJA1042T and the LEXUS LX65HVD234DR-03. All are SOIC-8 packages, but verify pinout and features before replacement.
No, the SN65HVD234DR and SN65HVD230DR are not the same, though they are pin-compatible. The SN65HVD234DR has a sleep mode with 0.05 µA current, while the SN65HVD230DR has a standby mode with 370 µA current. Both are 3.3-V CAN transceivers, but the sleep mode makes the SN65HVD234DR more suitable for low-power applications.

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