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SN65HVD233SHKJ
+Lista de MateriaisIC TRANSCEIVER HALF 1/1 8CFP
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FabricanteTexas Instruments
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Peça do Fabricante #SN65HVD233SHKJ
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Pacote CFLATPACK-8
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Especificações
| Atributo | Valor |
| Package / Case | Tube |
| Part Status | Active |
| Type | Transceiver |
| Protocol | CANbus |
| Number of Drivers/Receivers | 1/1 |
| Duplex | Half |
| Receiver Hysteresis | 140 mV |
| Data Rate | 1Mbps |
| Voltage - Supply | 3V ~ 3.6V |
| Operating Temperature | -55°C ~ 210°C |
| Mounting Type | Surface Mount |
Visão Geral
Description
Key features include dominant time-out for bus stability, thermal shutdown protection, and ESD protection up to ±16 kV. The SN65HVD233SHKJ has a low current standby mode, reducing power consumption when the bus is inactive. It comes in a space-saving SOIC-8 package, making it suitable for compact designs.
This transceiver is often used in environments where robust communication and low power consumption are crucial. Typical applications include automotive networks, industrial automation, and building automation systems. Its reliability and compliance with industry standards make it a preferred choice for engineers designing CAN-based communication systems.
Equivalent
1. Microchip Technology MCP2551
2. NXP TJA1050
3. Infineon Technologies TLE6250GV33
4. ON Semiconductor NCV7351
These alternatives offer similar functionalities for CAN communication, though specifications like operating voltage and data rate may differ slightly, so always verify datasheets for compatibility with your specific application.
Features
1. Data Rates: Supports data rates up to 1 Mbps, suitable for high-speed CAN networks.
2. Supply Voltage: Operates at a nominal 3.3 V power supply, enhancing compatibility with low-power systems.
3. Low Power Consumption: Features low current consumption, making it ideal for battery-operated devices.
4. Wide Temperature Range: Operates effectively within an extended temperature range, suitable for harsh environments.
5. Bus Protection: Offers high immunity to electromagnetic interference (EMI) and features bus fault protection up to ±36 V.
6. Standby Mode: Includes a low-power standby mode to conserve energy when the bus is inactive.
7. Loopback Mode: Supports loopback mode for self-diagnostics and testing.
8. ISO 11898-2 Compliance: Complies with the ISO 11898-2 standard, ensuring interoperability in CAN networks.
9. Package: Available in a small SOIC package, facilitating compact circuit designs.
These features make it suitable for applications requiring reliable communication in demanding environments.
Pinout
1. VCC (Pin 1): Power supply input.
2. GND (Pin 2): Ground connection.
3. TXD (Pin 3): Transmit data input, where the microcontroller sends data to be transmitted on the CAN bus.
4. RXD (Pin 4): Receive data output, providing the received CAN bus data to the microcontroller.
5. CANH (Pin 5): High-level CAN bus line.
6. CANL (Pin 6): Low-level CAN bus line.
7. RS (Pin 7): Slope control pin, which adjusts the driver output slope for reduced EMI.
8. NC (Pin 8): No connection, typically left unconnected.
This configuration allows the transceiver to connect a microcontroller to the CAN bus, facilitating data exchange in automotive and industrial applications.
Manufacturer
Application
1. Automotive Systems: Used in in-vehicle networks for communication between various electronic control units (ECUs).
2. Industrial Automation: Facilitates communication in PLCs and other industrial systems.
3. Building Automation: Supports networked control systems such as lighting and HVAC.
4. Medical Equipment: Enables reliable data transmission in complex medical devices.
5. Telecommunications: Used in networking devices to ensure efficient data exchange.
Its features like high-speed communication, fault tolerance, and low power consumption make it suitable for these applications.