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The 20BD065A0AYNACD1 model from Allen Bradley is an adjustable frequency AC drive designed for efficient motor control. With a power capacity of 50 HP and an operating voltage of 480V AC, it effectively supports various industrial applications.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Adjustable Frequency AC Drive |
| Product Line | PowerFlex 700 |
| Part Number | 20BD065A0AYNACD1 |
| Weight | 32.00 lbs (14.51 kg) |
| Protection Category | IP20 |
| Brake IGBT | Installed |
| Rated Voltage | 480V AC |
| Rated Power | 50 HP |
| Rated Operating Humidity Range | 5 to 95% (non-condensing) |
| Frequency Rating | 60 Hz |
| Drive Mounted Brake Resistor | Not Installed |
| CE Filter and CM Choke | Available |
| Current Rating | 65 A |
| Number of Phases | 3-Phase |
| Minimum Temperature Rating | 0°C |
| Maximum Temperature Rating | 50°C |
| Control Type | Vector with 115 V AC |
The 20BD065A0AYNACD1 is classified as an adjustable frequency AC drive within the PowerFlex 700 series by Allen Bradley. This drive is specifically rated for a voltage of 480V AC and is capable of delivering a power output of 50 horsepower, making it suitable for demanding industrial applications. The unit can function effectively at a current rating of 65 Amps and is designed for 3-phase use.
Operating at a frequency of 60 Hz, the drive also complies with an IP20 protection rating, ensuring it is suitable for less harsh indoor environments. While it comes equipped with a brake IGBT, there is no drive-mounted brake resistor included in the unit’s design. For installations requiring adherence to safety and performance standards, it offers CE filtering along with a common mode (CM) choke, contributing to the device’s operational stability and noise mitigation.
Humidity levels during operation can range from 5% to 95% in non-condensing conditions, allowing flexibility in various environmental settings. Temperature-wise, the drive can handle a minimum environment of 0°C and a maximum of 50°C, expansions that make it versatile for various temperature conditions. Control is executed using vector methodology coupled with a 115 VAC input, optimizing motor efficiency and performance.