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The 20BD415N3ANNNND1 from Allen Bradley's PowerFlex 700 series is an adjustable frequency AC drive designed for demanding applications. It supports 3-phase systems with a supply voltage of 480 Volts AC, and can manage current levels up to 415 Amperes continuously, with peak overload capabilities reaching 623 Amperes for short durations.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Adjustable Frequency AC Drive |
| Product Line | PowerFlex 700 |
| Part Number | 20BD415N3ANNNND1 |
| Weight | 32.00 lbs (14.51 kg) |
| Braking Unit | No Insulated Gate Bipolar Transistor (IGBT) |
| Current Capacity | 415 Amperes |
| Communication Port | Not included |
| Protection Class | Open enclosure/IP00 |
| System Phase | 3-phase |
| Mounting Method | Flange mount |
| Horsepower Capacity | 350 horsepower (normal duty); 300 horsepower (heavy duty) |
| Supply Voltage Rating | 480 Volts AC |
| Feedback Option | Standard encoder (12 Volts/5 Volts) |
| Input/Output Option | Sensorless vector control with 115 Volts AC input/output |
| Emission Control | No CE/EMC filter |
| Overload Current Capacity | 457 Amperes for 1 minute; 623 Amperes for 3 seconds |
The Allen Bradley 20BD415N3ANNNND1 is an adjustable frequency AC drive within the PowerFlex 700 family. Designed for 3-phase applications, this model operates at a supply voltage of 480 Volts AC. It has a significant current capacity of 415 Amperes, making it suitable for robust motor control tasks.
The unit's construction features an open enclosure with a protection class of IP00, allowing for easy mounting via a flange method. Although this drive does not include an insulated gate bipolar transistor (IGBT) braking unit, it is engineered to manage demanding workloads efficiently, providing up to 350 horsepower for normal duty operations and 300 horsepower rated for heavy duty.
The overload capabilities are noteworthy, allowing for sustained currents of 457 Amperes for one minute and momentary surges of 623 Amperes for up to three seconds, making this drive capable of handling temporary spikes typical in industrial applications.
For feedback, it utilizes a standard encoder operating at either 12 Volts or 5 Volts, enhancing its application in precision control. The drive incorporates sensorless vector control for input and output at 115 Volts AC. However, it lacks a CE/EMC filter for emission control and does not support any communication ports, making it tailored for straightforward operational environments.