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Siemens presents the 6SE6400-0EN00-0AA0, designed specifically as an incremental encoder interface module within the MICROMASTER series. This module is capable of converting signals into TTL differential and HTL formats, ensuring a maximum pulse rate of 300 kHz, making it effective for high-speed applications.
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| Manufacturer | Siemens |
|---|---|
| Product Type | Incremental encoder interface module |
| Product Line | MICROMASTER |
| Part Number | 6SE6400-0EN00-0AA0 |
| UPC | 783087637948 |
| Weight | 0.44 lbs (0.20 kg) |
| Signal Conversion | TTL differential and HTL incremental |
| Max Pulse Rate | 300 kHz |
| Supply Voltage | 5 V (±5%) or 24 V |
| Current Consumption (5 V) | 330 mA max. |
| Power Dissipation | 3 W |
| Encoder Channels | A, B, Z/index |
| Differential Input | Yes |
| Input Signal Compatibility | TTL and HTL |
| Operating Temperature | -10°C to +60°C |
| Response Time | Low-latency signal processing |
| EMI/RFI Resistance | Industrial-grade protection |
The Siemens 6SE6400-0EN00-0AA0 serves as an incremental encoder interface module for the MICROMASTER product line. Engineered for versatility, this unit facilitates signal conversion between TTL differential and HTL methods. Capable of handling a maximum pulse rate of 300 kHz, it ensures rapid signal processing suited for demanding applications.
Power requirements for the module include a supply voltage of either 5 V (with a tolerance of ±5%) or 24 V. When operating at 5 V, the device draws a maximum current of 330 mA. The power dissipation is maintained at 3 W, enhancing its efficiency during operation.
In terms of dimensions, the module measures 73 mm in width, 161 mm in height, and 42 mm in depth. This compact footprint allows for easy integration into existing systems. It boasts encoder channels designated as A, B, and Z/index, which allows for precise feedback in motion control applications. The module accepts differential input for compatibility.
With an operating temperature range between -10°C and +60°C, it is designed for robustness in various environments. Moreover, the low-latency response time ensures quick signal conversion, enabling reliable performance in industrial settings. Its EMI/RFI resistance provides protection against electromagnetic interference, maintaining data integrity in challenging conditions.