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The SGDR-COA080A01BN is a Yaskawa servo converter designed for specific use with HP20 and EA1900N robots. It operates with a mains voltage of 220 V and accepts a 3-phase AC input, functioning at a line frequency of either 50 or 60 Hz.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Servo converter |
| Product Line | SGDR |
| Part Number | SGDR-COA080A01BN |
| Robot Compatibility | HP20 / EA1900N |
| Mains Voltage Class | 220 V |
| AC Input | 3-phase |
| Line Frequency | 50/60 Hz |
| Undervoltage Floor | ~170 V |
| Overvoltage Ceiling | ~242 V |
| DC Bus Interface | PN bus |
| Control Power I/O | CN101 / CNP11 |
| Converter Control | CN1 |
| Regeneration Path | CNP3 resistor |
| Status Indicator | Charge LED |
| Panel Integration | Cabinet mount |
Yaskawa's SGDR-COA080A01BN servo converter serves as a vital component in robotics systems, particularly compatible with HP20 and EA1900N models. The converter requires a mains voltage of 220 V and operates on a 3-phase AC input, accommodating line frequencies of 50 or 60 Hz. This capability makes it versatile for different electrical standards.
For operational safety, there is an undervoltage threshold of about 170 V, which ensures the device functions efficiently without damage during lower voltage occurrences. Conversely, the device can tolerate overvoltages up to approximately 242 V, protecting it from electrical surges. In terms of interfacing, the converter employs a PN bus that facilitates effective communication and data exchange within a broader system.
Control power I/O is manageable through connections CN101 and CNP11, while CN1 serves as the converter control interface. To aid in functionality, a regeneration path is established utilizing a CNP3 resistor, ensuring that electrical energy can be recycled effectively. Users can easily monitor the converter's operational status via the onboard charge LED, providing insight into the device’s power state.
Designed with panel integration in mind, the SGDR-COA080A01BN is intended for mounting within cabinets, allowing for organized setups in electrical panels. This design consideration, alongside its robust specifications, contributes to the converter's reliability and usability in automation applications.