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The Siemens 6RA7096-4MS22 functions as a single-quadrant drive within the SIMOREG series, delivering high performance for various applications. This unit operates with an input voltage of 950 V AC utilizing a three-phase connection and has a substantial input current rating of 1824 A.
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| Manufacturer | Siemens |
|---|---|
| Product Type | Single-quadrant drive |
| Product Line | SIMOREG |
| Part Number | 6RA7096-4MS22 |
| Connection | B6C |
| Input Voltage | 950 V, 3-phase AC |
| Input Current | 1824 A |
| Field Rectifier | D1140/2200 |
| Rectifier Module | MRE-GEEF4S22 |
| Output Voltage (DC) | 1140 V |
| Output Current | 2200 A |
| US Rated Output Voltage | 1140 V DC |
| US Rated Output Current | 1588 A |
| Field Input Voltage | 460 V |
| Field Output Current | 85 A |
| Drive Configuration | Single quadrant |
| Control Type | Controllable field rectifier |
The 6RA7096-4MS22 from Siemens is an advanced single-quadrant drive that exemplifies the capabilities of the SIMOREG series. Designed for high-efficiency operations, this unit can handle an impressive input voltage of 950 volts in a 3-phase AC setup, allowing it to perform effectively under heavy loads. The drive’s input current reaches up to 1824 A, making it suitable for demanding industrial applications.
Output specifications are robust, with the drive providing a maximum DC output voltage of 1140 V and an output current rating of 2200 A. This configuration includes a field rectifier model D1140/2200 and a rectifier module identified as MRE-GEEF4S22, ensuring reliable performance across various operational scenarios.
For applications requiring stringent power control, the drive supports US rated output specifications of 1140 V DC and 1588 A, accommodating even the most power-intensive needs. Its field configuration operates at an input voltage of 460 V with a capacity to output up to 85 A, allowing flexibility in field circuit integration.
The device is structured as a single quadrant drive, which makes it efficient for applications where this configuration is ideal. The controllable field rectifier enhances precise control over the operational characteristics, thus enhancing overall system performance and efficiency.