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SP485ECN
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FabricanteJLCPCB Assembly
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Peça do Fabricante #SP485ECN
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Especificações
| Atributo | Valor |
| Manufacturer | JLCPCB Assembly |
| Package | SOP-8-150mil |
Visão Geral
Description
The course could also introduce students to relevant methodologies, theoretical frameworks, and real-world applications within the discipline. It may involve lectures, readings, discussions, and assignments to evaluate understanding. Students typically gain critical thinking skills and the ability to apply concepts to various scenarios. This course serves as a stepping stone for more specialized courses in the curriculum and is designed to build a solid foundation for students pursuing further studies in the field. Always refer to the specific institution's course catalog for precise details and descriptions.
Equivalent
1. MAX485 by Maxim Integrated
2. SN75176A by Texas Instruments
3. ADM485 by Analog Devices
4. LTC485 by Linear Technology (now Analog Devices)
5. DS75176B by Texas Instruments
These chips provide similar functionality, featuring low power consumption, high data rates, and compatibility with RS-485 and RS-422 communication standards.
Features
1. Half-Duplex Communication: Allows two-way communication over a single pair of wires, but only in one direction at a time.
2. Wide Voltage Range: Operates from a single 5V power supply.
3. Low Power Consumption: Features low quiescent current draw, making it suitable for battery-powered and energy-efficient systems.
4. Enhanced Noise Immunity: Provides robust communication across long distances, with a high noise immunity due to differential signaling.
5. ESD Protection: Built-in Electrostatic Discharge (ESD) protection up to ±15kV, ensuring durability in harsh environments.
6. High Data Rates: Supports data rates up to 10 Mbps, suitable for high-speed communication.
7. Short-Circuit Protection: Protects the device against short circuits and ensures reliable operation under fault conditions.
8. Thermal Shutdown: Prevents overheating damage by shutting down the device if excessive temperatures are detected.
These features make the SP485ECN ideal for applications requiring robust communication with minimal power consumption.
Pinout
1. RO (Receiver Output): Outputs the received data.
2. RE̅ (Receiver Enable): Active low input to enable the receiver.
3. DE (Driver Enable): Active high input to enable the driver.
4. DI (Driver Input): Input for data that needs to be transmitted.
5. GND: Ground reference for the device.
6. A (Non-Inverting Receiver Input/Driver Output): Data line for differential inputs/outputs.
7. B (Inverting Receiver Input/Driver Output): Data line for differential inputs/outputs.
8. VCC: Power supply input.
These transceivers are commonly used in industrial and commercial applications for reliable data transmission over long distances and in noisy environments. They support half-duplex communication, allowing for both sending and receiving data, but not simultaneously.
Manufacturer
Application
1. Industrial Automation: Facilitates reliable communication in harsh environments for factory automation and process control systems.
2. Building Automation: Supports communication protocols for HVAC systems, lighting control, and security systems.
3. Telecommunications: Used in data networks for transmitting data over long distances.
4. Energy Management: Applied in smart grid and energy metering systems for efficient energy distribution.
5. Embedded Systems: Provides robust data exchange in microcontroller-based applications.
6. Instrumentation: Ensures accurate data transmission in measurement and testing equipment.
These applications leverage the SP485ECN's robustness, noise immunity, and ability to handle multiple devices on a single bus.