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The Siemens 6SL3120-2TE15-0AA4 is a dual motor module within the SINAMICS series. It operates with a DC-link voltage ranging from 510 VDC to 720 VDC and can output up to 71.7% of the DC-link voltage, making it efficient for specific applications.
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| Manufacturer | Siemens |
|---|---|
| Product Line | SINAMICS |
| Part Number | 6SL3120-2TE15-0AA4 |
| UPC | 887621204105 |
| Weight | 15.00 lbs (6.80 kg) |
| Module Type | Dual Motor Module |
| Output Voltage | 0–71.7% DC-link voltage |
| DC-Link Voltage | 510–720 VDC |
| Overvoltage Trip | 820 VDC |
| Undervoltage Trip | 380 VDC |
| Electronics Supply | 24 VDC |
| Power Loss | 132.6 W |
| Rated Current (ln) | 2 x 5 A |
| Peak Current (Imax) | 2 x 10 A |
| Intermittent Current | 2 x 6 A (40% duty) |
| Max DC-Link Current | 12:00 AM |
| DC-Link Capacitance | 220 μF |
| Cooling | Internal fan |
| Base Current (IH) | 2 x 4.3 A |
The Siemens 6SL3120-2TE15-0AA4 module, designed as a dual motor controller, is part of the SINAMICS series. This unit is tailored to manage motor operations effectively by functioning over a DC-link voltage range of 510 VDC to 720 VDC. It supports output voltages of up to 71.7% of its DC-link voltage, making it apt for various applications.
Built for reliable performance, this module incorporates vital trip settings. The overvoltage trip is set at 820 VDC, while the undervoltage trip activates at 380 VDC. This ensures the system can protect itself from extreme voltage conditions. The device operates on an electronics supply of 24 VDC and exhibits a power loss of 132.6 W during operation.
Regarding current ratings, the 6SL3120-2TE15-0AA4 has a rated current of 2 x 5 A and can reach peak current levels of 2 x 10 A. It can safely handle intermittent currents of 2 x 6 A at a 40% duty cycle. The maximum DC-link current is an additional specification that ensures reliability under load.
This module weighs 5.3 kg and features a DC-link capacitance of 220 μF, ensuring smoother operational characteristics. Cooling is achieved through an internal fan, which assists in maintaining optimal temperatures during extended use. The base current is measured at 2 x 4.3 A, further contributing to its performance capabilities.