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The part number 20BD052A0AYNADA0 from Allen Bradley is an adjustable frequency AC drive designed for 3-phase systems. It operates at 480 VAC and accepts input frequencies of 50 or 60 Hz, providing effective power management.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Adjustable Frequency AC Drive |
| Product Line | PowerFlex 700 |
| Part Number | 20BD052A0AYNADA0 |
| Weight | 32.00 lbs (14.51 kg) |
| Operating Voltage | 480 VAC |
| Number of Phases | 3-phase |
| Input Frequency | 50/60 Hz |
| ND Current Value | 52 A |
| Rated Power | 30 kW (40 HP) |
| Frame Class | 3 |
| Enclosure Class | IP20, NEMA 1 |
| HMI Module Type | Blank Cover |
| Braking IGBT | Yes |
| Internal Braking | No |
| Communication Module | DeviceNet |
| Control and I/O Method | Standard, 24V DC/AC |
| Feedback Class | None |
The 20BD052A0AYNADA0 model is part of the PowerFlex 700 series by Allen Bradley, engineered as an adjustable frequency AC drive specifically for 3-phase applications. This drive operates effectively with an input voltage of 480 VAC and accommodates input frequencies within the range of 50/60 Hz.
With a rated output power of 30 kW, equating to 40 horsepower, this drive provides considerable power for various industrial applications. It supports a peak current value of 52 A, facilitating robust performance under demanding loads. Constructed to Frame Class 3 specifications, the drive fits seamlessly into typical industrial frameworks.
The enclosure is rated IP20 and meets NEMA 1 standards, making it suitable for indoor environments while protecting against solid objects over a certain size. It also includes a blank cover for the human-machine interface (HMI) module, indicating a simplified user interaction approach. The model incorporates a braking IGBT, but does not feature internal braking.
Communication is backed by a DeviceNet module, allowing for effective data transfer and control integration within automated systems. The drive utilizes a standard methodology for control and I/O that operates on 24V DC/AC. Feedback systems are not integrated into this model, streamlining its operation for direct applications without the need for feedback loops.