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SSP485
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제조업체상해4보윤마이크로전자
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제조업체 부품 #SSP485
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데이터시트 SSP485 DataSheet
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사양
| 속성 | 가치 |
| Manufacturer | Shanghai Siproin Microelectronics |
| Package | SOP-8 |
| Type | Transceiver |
| Voltage - Supply | 4.75V~5.25V |
| Data Rate | 500Kbps |
| Number of Drivers | 1 |
| Number of Receivers | 1 |
개요
Description
SSP485 is a high-performance, half-duplex RS-485 transceiver designed for robust industrial communication. It supports data rates up to 20 Mbps and operates with a 3.3V or 5V supply, making it versatile for various applications. Key features include:
- Enhanced ESD protection (±15kV) for reliability in harsh environments.
- Low-power shutdown mode for energy efficiency.
- Fail-safe receiver inputs ensuring logic-high output when bus lines are open or shorted.
Ideal for industrial automation, motor control, and long-distance networks, SSP485 ensures noise immunity and stable signal integrity. Its compact package (e.g., SOIC-8) suits space-constrained designs.
For detailed specs, refer to the datasheet from the manufacturer.
Equivalent
- MAX485 (Maxim Integrated)
- SN65HVD72 (Texas Instruments)
- LTC485 (Analog Devices)
- ADM485 (Analog Devices)
- SP3485 (Exar/Sipex)
These chips offer similar functionality with slight variations in speed, power consumption, or ESD protection. Always check datasheets for compatibility.
Pinout
1. Driver (Tx): Converts TTL/CMOS logic to RS-485 differential signals (pins DI, A, B).
2. Receiver (Rx): Converts RS-485 signals back to logic levels (pins RO, A, B).
3. Direction Control: Pin DE (Driver Enable) and /RE (Receiver Enable) control transmit/receive modes.
4. Power: VCC (3.3V/5V) and GND for supply.
Pins:
- 1 (RO): Receiver Output
- 2 (/RE): Receiver Enable (active low)
- 3 (DE): Driver Enable
- 4 (DI): Driver Input
- 5 (GND): Ground
- 6 (A): Non-inverting bus line
- 7 (B): Inverting bus line
- 8 (VCC): Power supply
Compact and robust for industrial communication.
Application
1. Industrial Automation – PLCs, motor control, and sensors.
2. Building Automation – HVAC, lighting, and security systems.
3. Telecommunications – Data transmission over long distances.
4. Automotive – Vehicle diagnostics and infotainment networks.
5. Renewable Energy – Solar inverters and wind turbine monitoring.
6. Medical Equipment – Reliable data communication in devices.
Its robustness, noise immunity, and multi-drop capability make SSP485 ideal for harsh environments requiring stable serial communication.