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The Allen Bradley 20BD8P0A2AYNARC1 is designed as an adjustable frequency AC drive suitable for precise motor control. It operates at a voltage of 480 VAC and is configured for a three-phase input, ensuring compatibility with various industrial systems. With a rated power output of 5 HP and a rated power of 3.7 kW, it effectively meets operational demands.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Adjustable Frequency AC Drive |
| Product Line | PowerFlex 700 |
| Part Number | 20BD8P0A2AYNARC1 |
| Weight | 12.00 lbs (5.44 kg) |
| Operating Voltage | 480 VAC |
| Number of Phases | 3-phase |
| Input Frequency | 50/60 Hz |
| ND Current Value | 8.0 A |
| Rated Power (kW) | 3.7 kW |
| Rated Power (HP) | 5 HP |
| Frame Class | 0 |
| Enclosure Class | IP20, NEMA 1 |
| HMI Module Type | Digital LCD |
| Braking IGBT | Yes |
| Internal Braking | No |
| Communication Module | RIO |
| Control and I/O Method | Vector, 24 VDC |
| Feedback Class | Encoder 12V/5V |
The 20BD8P0A2AYNARC1 adjustable frequency AC drive by Allen Bradley is engineered for high-performance motor control. Functioning at 480 VAC, it supports a three-phase environment with input frequencies of 50/60 Hz. The drive has a nominal current rating of 8.0 A and provides a solid power output of 3.7 kW, equating to 5 HP.
This unit falls under Frame Class 0 and is housed in an enclosure classed as IP20, complying with NEMA 1 standards for dust and moisture protection. Operating within this enclosures class ensures the 20BD8P0A2AYNARC1 is ideal for indoor applications where environmental factors are manageable.
An integral digital LCD module aids users in monitoring and adjusting settings with clarity. The design incorporates a braking IGBT feature but does not include internal braking capability, streamlining operational requirements.
Communication capabilities are enhanced due to the RIO communication module, making it easy to implement within existing systems for data transfer and control. Feedback is accomplished through an encoder system operating at 12V and 5V, crucial for high-precision applications. The control and I/O methods utilize vector control, supported by a 24 VDC supply, offering enhanced performance across various motor control applications.