- Model name: 6SE6400-0EN00-0AA0
- Type: Encoder Evaluation Module
- Brand: Siemens
- Core purpose: As an interface module between the inverter and the digital pulse encoder, it can achieve high-precision motor control.
1. High-precision motion control
- Supports the motor to output full load torque at zero speed and improves low-speed stability.
- Significantly enhances the dynamic response performance of speed and torque control, suitable for high-precision speed regulation scenarios.
2. Encoder compatibility
- Adapts to HTL (24V high-level logic) and TTL (5V transistor logic) pulse encoders.
3. High-speed signal processing
- The maximum pulse rate reaches 300 kHz, which meets the needs of high-speed motion control.
Parameter | Parameter Value | Description |
Signal Type | TTL Differential / HTL Incremental | Supports two mainstream encoder protocols
|
Input Channels | ENCA, ENCB, ENCZ / ENC-REC | 3-channel signal input |
Operating Voltage | 5V or 24V DC | Dual-voltage compatible design
|
Power Consumption | 3W | Low-power operation |
Physical Dimensions | 104.9 mm × 215 mm × 60 mm | Compact modular design |
Weight | 0.661 lbs (approx. 300g) | Lightweight structure |
- Matching inverter series: specially designed for Siemens MICROMASTER 440 (MM440) series inverters.
- Extended applications: can be integrated into automation control systems to improve motor speed regulation accuracy (such as conveyor belts, pump equipment, etc.).
1.Industrial automation: production line equipment that requires high-precision speed synchronization (such as textile machinery, packaging machines).
2. Energy-saving system: combine inverters to optimize motor energy consumption (such as fan and water pump frequency conversion control).
3. Scenarios with high dynamic response requirements: such as lifting equipment, elevator control and other fields that require fast torque response.
6SE6400-0EN00-0AA0 is a dedicated encoder interface module developed by Siemens for MM440 inverters. With 300 kHz high-speed signal processing, dual encoder protocol compatibility and zero-speed full torque output as its core advantages, it is suitable for industrial scenarios with strict requirements on motor control accuracy. Its modular design facilitates integration and is a key component for improving the dynamic performance of frequency conversion systems.
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