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Siemens' 1PH7137-2NG02-0CA0 is a compact asynchronous motor that delivers substantial power output ranging from 28 to 29 kW, or equivalently 37 to 40 HP. It operates at rated speeds of 2000 to 2300 RPM, providing efficient performance in various applications.
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| Manufacturer | Siemens |
|---|---|
| Product Line | SIMOTICS |
| Part Number | 1PH7137-2NG02-0CA0 |
| UPC | 662643384543 |
| Weight | 286.00 lbs (129.73 kg) |
| Description | Asynchronous Motor |
| Build | Compact |
| Power Rating (kW) | 28/29 kW |
| Power Rating (HP) | 37 to 40 HP |
| Rated Speed | 2000/2300 rpm |
| Rated Torque (Nm) | 120.4 / 133.7 Nm |
| Rated Current | 56/60 Amps |
| No. of Phases | 3-phase |
| Voltage Rating | 400 VAC |
| Supply Frequency | 50 Hz |
| Fan | Yes |
| Holding Brake | No |
| Encoder | Yes |
| Shaft End | IM B5 |
| Vibration Severity Grade | S |
The Siemens 1PH7137-2NG02-0CA0 is an asynchronous motor renowned for its compact structure. This unit is engineered to generate power ratings between 28 kW and 29 kW, translating to approximately 37 to 40 HP. Motor operation is available at rated speeds of either 2000 or 2300 RPM.
Torque specifications reveal a rated torque of 120.4 Nm for the lower speed and 133.7 Nm for the higher speed setting, effectively catering to diverse operation requirements. The motor consumes a rated current varying from 56 to 60 Amps, indicative of its performance capability across different scenarios. Designed for 3-phase setups, this motor operates with a voltage rating of 400 VAC, paired with a supply frequency set at 50 Hz, making it suitable for a range of industrial applications.
To facilitate adequate cooling, a fan is incorporated into the design; however, there is no holding brake included. Additionally, the presence of an encoder enhances the motor’s functionality by providing accurate position feedback. The shaft end follows the IM B5 configuration, which ensures compatibility with various mounting requirements. Lastly, the motor is classified under vibration severity grade S, thereby supporting stable and reliable performance throughout its operational life.