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The PowerFlex 700 model 20BD180A0NNNANA0 is an effective solution for motor control, functioning as an adjustable frequency AC drive. This unit operates efficiently at an input voltage of 480 VAC across three phases, supporting a current of 180 A with an impressive rated power of 112 kW (150 HP).
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Adjustable Frequency AC Drive |
| Product Line | PowerFlex 700 |
| Part Number | 20BD180A0NNNANA0 |
| Weight | 32.00 lbs (14.51 kg) |
| Operating Voltage | 480 VAC |
| Number of Phases | 3-Phase |
| Input Frequency | 50/60 Hz |
| ND Current Value | 180 A |
| Rated Power (kW) | 112 kW |
| Rated Power (HP) | 150 HP |
| Frame Class | 6 |
| Enclosure Class | IP20, NEMA 1 |
| HMI Module Type | Blank Cover |
| Braking IGBT | No |
| Internal Braking | No |
| Communication Module | None |
| Control and I/O Method | Standard, 24V DC/AC |
| Feedback Class | None |
The Allen Bradley 20BD180A0NNNANA0 is a robust adjustable frequency AC drive tailored for controlling electrical motors. It operates at a voltage of 480 VAC in a three-phase configuration, making it suitable for substantial industrial applications.
The unit handles an input frequency of either 50 or 60 Hz, ensuring versatility in different settings. It supports a non-demand (ND) current value of 180 A and delivers a rated power output of 112 kW or equivalently 150 HP. Its robust frame class designation is 6, indicating it is built to endure rigorous conditions.
Enclosed within an IP20-rated housing, this drive meets NEMA 1 criteria for basic protection against dust and contact. It is important to note that the drive lacks both a braking IGBT and internal braking capabilities, which may be a factor in specific applications. Furthermore, there is no communication module integrated into the design, streamlining its operation.
This model uses a standard control and I/O method with 24V DC/AC specifications. Feedback capabilities are not present in this configuration, making it ideal for straightforward motor control tasks without the need for complex feedback systems.