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The Yaskawa SGDV-5R4D15A is an AC servo drive designed within the Sigma 5 series. This unit operates at an input voltage range of 380 to 480 volts and works efficiently at a frequency of 50/60 Hz, making it suitable for various industrial applications.
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| Manufacturer | Yaskawa |
|---|---|
| Product Line | Sigma 5 |
| Part Number | SGDV-5R4D15A |
| Weight | 1.38 lbs (0.62 kg) |
| Product | AC Servo Drive |
| Input Voltage | 380 to 480 V |
| Operating Frequency | 50/60 Hz |
| Number of Phases | 3 |
| Output Frequency | 0 to 300 Hz |
| Continuous Rated Current | 5.4 A |
| Power Rating | 1.5 kW |
| Peak Rated Current | 14 A |
| Control Mode | Linear Servo |
| Encoder Feedback | Yes |
| Analog Outputs | 2 |
| Digital Inputs | 7 |
| Onboard Communication | Serial |
| Line Regenerative | Yes |
The AC servo drive model SGDV-5R4D15A by Yaskawa is a notable inclusion in the Sigma 5 series. This drive is designed to operate with input voltages ranging from 380 to 480 V and can function under either 50 or 60 Hz operating frequencies. Supporting a three-phase system, it allows for an output frequency that varies from 0 Hz to 300 Hz. This operational capacity enables versatile applications that require different motor speeds and responses.
With a continuous rated current of 5.4 Amps and a peak rated current of 14 Amps, this unit effectively handles various operational demands without overheating or compromising performance. The output power rating of 1.5 kW ensures that it meets the needs of standard applications. Weighing only 3 lbs., this servo drive is lightweight, adding convenience during installation and integration into existing systems.
The control mode is defined as linear servo, which optimizes motion control for applications demanding fine adjustments and precision. Additionally, this unit benefits from encoder feedback, allowing it to make precise adjustments based on real-time positional data. It also includes two analog outputs and seven digital inputs to facilitate greater interaction with external systems.
Onboard communication is conducted via a serial interface, streamlining the integration with other equipment. The capability for line regenerative operation further enhances efficiency by enabling energy recovery during deceleration.