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SN65HVD231D
+Lista de MateriaisIC TRANSCEIVER HALF 1/1 8SOIC
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FabricanteTexas Instruments
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Peça do Fabricante #SN65HVD231D
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Pacote SOIC-8
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Em Estoque2856
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Especificações
| Atributo | Valor |
| Package | Tube |
| ProductStatus | Active |
| Type | Transceiver |
| Protocol | CANbus |
| NumberofDrivers/Receivers | 1/1 |
| Duplex | Half |
| ReceiverHysteresis | 100 mV |
| DataRate | 1Mbps |
| Voltage-Supply | 3V ~ 3.6V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
Visão Geral
Description
The transceiver is designed to interface between the CAN protocol controller and the physical bus. It features three operating modes: high-speed, slope control, and low-power standby, providing flexibility and efficient power management. The slope control mode helps minimize electromagnetic interference (EMI) by controlling the signal rise and fall times, while the low-power standby mode reduces power consumption when the device is not in use.
The SN65HVD231D offers several protection features, including thermal shutdown, overvoltage protection, and a dominant-time-out function, which prevents bus lock-up. It operates over a wide voltage range (3.0V to 3.6V) and can withstand common automotive conditions, making it robust for various environments. Its compact SOIC-8 package ensures easy integration into circuit designs.
Equivalent
1. MCP2551 (Microchip)
2. TJA1050 (NXP)
3. PCA82C251 (NXP)
4. ADM3053 (Analog Devices)
5. ISO1050 (Texas Instruments)
These alternatives generally offer similar functions like differential signaling for CAN bus communication. Always verify the specifications and pin configurations, as they may vary slightly between manufacturers.
Features
1. Data Rate: Supports data transmission rates up to 1 Mbps.
2. Voltage Range: Operates with a wide supply voltage range from 3.0 V to 3.6 V.
3. Low Power Modes: Offers low-current standby and sleep modes to minimize power consumption.
4. Protection: Provides electrostatic discharge (ESD) protection up to ±16 kV (human body model).
5. Thermal Shutdown: Includes thermal shutdown protection to prevent damage from overheating.
6. Bus Fault Protection: Can withstand bus faults up to ±36 V.
7. Dominant Time-out Function: Prevents lock-up situations on the bus by limiting the maximum time the driver can hold the bus in a dominant state.
8. Silent Mode: Allows the device to listen to the bus while minimizing its own power consumption.
9. Compatible Standards: Complies with the ISO 11898-2 standard for CAN transceivers.
These features make the SN65HVD231D suitable for robust, energy-efficient, and reliable CAN communication in demanding environments.
Pinout
1. VCC (Pin 1): Power supply pin. The device operates with a voltage range typically from 3.0V to 3.6V.
2. GND (Pin 2): Ground connection.
3. D (Pin 3): This is the driver data input pin. It accepts the CAN protocol data to be transmitted onto the bus.
4. R (Pin 4): Receiver data output pin. This pin outputs the received CAN bus data.
5. CANH (Pin 5): CAN high bus line. This is one of the differential pair lines used for CAN communication.
6. CANL (Pin 6): CAN low bus line. This forms the other half of the differential pair for CAN communication.
7. RS (Pin 7): Slope Resistance pin. This pin is used to control the slew rate of the CAN driver to reduce EMI.
8. VREF (Pin 8): Reference Voltage Output for the transceiver.
The SN65HVD231D is designed for high-speed communication in automotive and industrial applications, ensuring reliable CAN bus communication.
Manufacturer
Application
1. Automotive Systems: Used in body control modules, engine control units, and infotainment systems.
2. Industrial Automation: Employed in factory automation, robotics, and PLCs (Programmable Logic Controllers).
3. Building Automation: Utilized in HVAC systems and smart building controls.
4. Medical Equipment: Applied in medical devices requiring reliable data communication.
5. Telecommunications: Used in network infrastructure equipment.
Its robust design ensures reliable data transmission in harsh environments, making it suitable for critical applications.