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The 1336F-B075-AA-EN-Q is a variable frequency drive designed by Allen Bradley in the PowerFlex 70 series. This unit handles input voltages ranging from 380 to 480V AC in a three-phase configuration and is rated at 75 kW, equivalent to 100 HP, with an output current of 120 A at 480V.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Variable Frequency Drive |
| Product Line | PowerFlex 70 |
| Part Number | 1336F-B075-AA-EN-Q |
| Weight | 150.00 lbs (68.04 kg) |
| Enclosure | NEMA 1 / IP20 |
| Input Voltage | 380–480V AC, 3-phase (±10%) |
| Rated Power (CT) | 75 kW (100 HP) |
| Output Current | 120 A @ 480V |
| Input Current | 119 A @ full load |
| Overload Capacity | 150% for 1 min (CT) |
| Control Method | Sensorless Vector PWM |
| Switching Frequency | 2–8 kHz (4 kHz base) |
| Frequency Range | 0–400 Hz |
| DC Bus Protection | 810V (OV), 400V (UV) |
| Line Protection | 570V (OV), 280V (UV) |
| Communications | DeviceNet, Remote I/O, RS232/485 |
| Braking Support | Dynamic brake |
The Allen Bradley 1336F-B075-AA-EN-Q is an effective variable frequency drive tailored for robust industrial applications. It operates within a voltage range of 380–480V AC, suited specifically for three-phase systems. This drive is rated for a power output of 75 kW, which translates to approximately 100 horsepower. At 480V, it can manage an output current of up to 120 A effectively. Furthermore, during overload conditions, the drive can sustain an impressive 150% current overload for a duration of one minute, ensuring suitability for demanding scenarios.
In terms of control methodology, this drive utilizes sensorless vector PWM, providing efficient motor control across a broad frequency range from 0 to 400 Hz. The switching frequency varies between 2 to 8 kHz, with a default base frequency set at 4 kHz. Protection mechanisms are in place for both DC bus and line inputs, with over-voltage safeguards at 810V and 570V respectively, and under-voltage thresholds of 400V and 280V.
The module incorporates communications capabilities, allowing integration via DeviceNet, as well as RS232/485 and Remote I/O protocols. This feature greatly enhances connectivity options in sophisticated control networks. Additionally, dynamic braking support is included in the drive design, facilitating efficient motor control during deceleration phases, promoting safe operations under various load conditions.