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SN65HVD22DR
+Lista de MateriaisIC TRANSCEIVER HALF 1/1 8SOIC
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FabricanteTexas Instruments
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Peça do Fabricante #SN65HVD22DR
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Ficha Técnica SN65HVD22DR DataSheet
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Pacote SOIC-8
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Em Estoque5762
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Especificações
| Atributo | Valor |
| Package | Tape & Reel (TR),Cut Tape (CT),Bulk |
| ProductStatus | Active |
| Type | Transceiver |
| Protocol | RS422, RS485 |
| NumberofDrivers/Receivers | 1/1 |
| Duplex | Half |
| ReceiverHysteresis | 130 mV |
| DataRate | 500kbps |
| Voltage-Supply | 4.5V ~ 5.5V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
Visão Geral
Description
Key features include an ESD protection of up to ±16 kV, ensuring resilience against electrostatic discharge. The transceiver supports data rates up to 25 Mbps, making it suitable for high-speed communication. It also features a low standby current, reducing power consumption when the device is not active.
The SN65HVD22DR offers robust communication over long distances and in noisy environments. It includes a thermal shutdown feature to prevent damage from overheating. The device is typically used in applications such as factory automation, motor control, and other industrial communication systems. Its compact SOIC-8 package ensures ease of integration into various printed circuit board designs.
Equivalent
1. MCP2561 by Microchip Technology: A high-speed CAN transceiver.
2. TJA1042 by NXP Semiconductors: A high-speed CAN transceiver, compatible with 3.3V and 5V microcontrollers.
3. ADM3053 by Analog Devices: A robust, isolated CAN transceiver.
4. ATA6561 by Microchip Technology: Designed for high-speed CAN networks.
These alternatives offer similar functionalities and can be used in place of the SN65HVD22DR based on specific application requirements.
Features
1. Operating Voltage: 3.3 V supply voltage, offering compatibility with low-power systems.
2. Data Rate: Supports data rates up to 250 kbps, suitable for many industrial communication applications.
3. Bus Protection: Provides up to ±15 kV ESD protection on bus pins, enhancing reliability.
4. Fail-Safe: Includes a fail-safe receiver for open, shorted, and idle bus conditions.
5. Low Power Consumption: Features a low standby current of typically 1 µA, ideal for battery-powered applications.
6. Thermal Shutdown: Protects the device against excessive power dissipation.
7. Wide Temperature Range: Operates effectively within -40°C to 85°C, suitable for harsh environments.
8. Reduced EMI: Designed with controlled driver output slew rates to minimize electromagnetic interference.
9. Package: Comes in an 8-pin SOIC package, facilitating easy integration with PCB designs.
These features make the SN65HVD22DR a reliable choice for industrial and commercial communication applications requiring robust and energy-efficient solutions.
Pinout
1. VCC (Pin 1): Supply voltage pin.
2. GND (Pin 2): Ground pin.
3. TXD (Pin 3): Transmit data input from the host microcontroller.
4. RXD (Pin 4): Receive data output to the host 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 input, used to select the slew rate of the bus lines.
8. STB (Pin 8): Standby control pin, used to place the device in standby mode to conserve power.
This transceiver facilitates communication on the CAN bus by translating the logic level signals from a microcontroller into differential signals on the CAN bus and vice versa. It supports data rates up to 1 Mbps and includes built-in protection features like short-circuit protection and thermal shutdown.
Manufacturer
Application
1. Industrial Automation: Facilitates reliable communication in factory automation systems, PLCs, and control networks.
2. Building Automation: Used in HVAC systems, security systems, and smart building controls.
3. Energy: Suitable for smart grid communication, including renewable energy systems and substation automation.
4. Transportation: Employed in vehicle networks and railway signaling.
5. Embedded Systems: Provides communication interfaces for microcontrollers in various embedded applications.
Its features, such as wide temperature range and high noise immunity, make it ideal for these critical and harsh environment applications.