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The 20BD014A2AYNADC1 from Allen Bradley is classified as an adjustable frequency AC drive. Operating at 480 VAC and configured for three phases, it is engineered to deliver a rated output power of 10 horsepower or 7.5 kilowatts, handling dynamic loads effectively.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Adjustable Frequency AC Drive |
| Product Line | PowerFlex 700 |
| Part Number | 20BD014A2AYNADC1 |
| Weight | 15.00 lbs (6.80 kg) |
| Working Voltage | 480 VAC |
| Phase Configuration | 3-phase |
| Input Operating Frequency | 50/60 Hz |
| ND Current | 14 A |
| Rated Output Power (kW) | 7.5 kW |
| Rated Output Power (HP) | 10 HP |
| Frame Category | 1 |
| Enclosure Category | IP20, NEMA 1 |
| HMI Type | Digital LCD |
| IGBT Braking | Yes |
| Internal Braking Resistor | No |
| Communication Block | DeviceNet |
| Control and I/O Standard | Vector, 24 VDC |
| Feedback Category | Encoder 12V/5V |
The PowerFlex 700 series consists of model 20BD014A2AYNADC1, an adjustable frequency AC drive designed to function with a working voltage of 480 VAC. This device supports a 3-phase power configuration and is capable of handling an input operating frequency of either 50 Hz or 60 Hz. It achieves a notable rated output power of 7.5 kW, translating to an operational horsepower of 10 HP, backed by a non-derated current of 14 Amps.
Housed in an IP20 rated enclosure that complies with NEMA 1 specifications, this drive is suitable for various indoor applications. It features a frame categorized as 1, which is compatible with multiple setups. The human-machine interface (HMI) is equipped with a digital LCD, providing a clear and straightforward method for monitoring and controlling the device.
This unit incorporates IGBT braking technology for enhanced performance during operation but lacks an internal braking resistor. Communication is achieved through a DeviceNet communication block, allowing it to integrate seamlessly into existing control systems. Control is executed using a vector method compliant with a 24 VDC standard for inputs and outputs. Feedback is obtained through an encoder system functioning at voltage levels of 12V or 5V, which aids in precise performance tracking for enhanced motor control.