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SKU:22B-B012H204

Adjustable Frequency AC Drive Allen-Bradley 22B-B012H204

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  • Manufacturer: Allen-Bradley

  • Product No.: 22B-B012H204

  • Product Type: AC Drive

  • Product Origin: USA

  • Payment:T/T, Western Union

  • Weight: 1410g

  • Shipping port: Xiamen

  • Warranty: 12 months

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Beskrivelse

Product Overview

The Allen-Bradley 22B-B012H204 is a compact, high-performance adjustable frequency AC drive belonging to the popular PowerFlex 40 series. Delivering 3 HP (2.2 kW) of output power and a continuous current rating of 12 Amps, this Variable Frequency Drive (VFD) provides versatile sensorless vector control for standard three-phase induction motors. It features an integrated programming keypad, a local potentiometer, and built-in RS-485 communication, making it an excellent standalone or networked solution for conveyor systems, fans, pumps, and packaging machinery.

Technical Configuration

Core Technical Advantages

The 22B-B012H204 provides a wide 0-200 Hz adjustable output frequency range backed by a high 150% overload capacity for 60 seconds. Its advanced 16 kHz Pulse Width Modulation (PWM) configuration actively minimizes structural motor noise and harmonic resonance. Operating within a flexible 180-265V AC input range, the drive uses a space-saving plate-drive physical mount that permits direct installation inside shallow mechanical enclosure layouts or existing control panels.

Technical Specifications

Model Number 22B-B012H204
Product Series PowerFlex 40
Output Power 3 HP / 2.2 kW
Output Current Rating 12 Amps
Input Voltage Range 180V to 265V AC, 3-Phase (±15% tolerance)
Frequency Control Span 0 to 200 Hz (fully adjustable)
Overload Capacity 150% rating for 60 seconds
Speed Regulation ±2% of base speed across a 40:1 turn-down range
Operating Temperature -10°C to +55°C
Humidity Window 5% to 95% relative humidity, non-condensing
Net Weight 1.41 kg (3.1 lbs)

Installation Guide

Mechanical Mounting and Clearance

Secure the drive vertically to a rigid, uninsulated panel backplate using the integral mounting flanges. Its lightweight structure of 1.41 kg allows for straightforward handling during retrofit projects. Maintain a minimum 120 mm ventilation clearance above and below the drive structure. If installing multiple PowerFlex drives inside a high-density footprint, you can mount them side-by-side to optimize available rail space.

Input Power and Line Protection

Wire the incoming AC power supply lines (180V–265V) directly to terminals L1, L2, and L3. Install a dedicated circuit breaker or fast-acting semiconductor fuses upstream. Ensure the PE safety terminal connects to a low-impedance facility earth bus to isolate high-frequency leakage currents.

Motor Connections and Shielding

Connect the motor leads to terminal outputs U, V, and W. Use a shielded four-conductor VFD-rated motor cable. Ground the cable shield securely on both the drive chassis bracket and the motor terminal frame to trap radiated high-frequency electrical emissions and protect adjacent automation controls.

Engineering Advantages

Dynamic Low-Speed Control

Featuring sensorless vector performance, the 22B-B012H204 develops robust torque even at low operating speeds. It delivers steady 2% speed regulation over a broad 40:1 range, ensuring material stays aligned and preventing unexpected stalls on variable-load conveyors.

Rapid Process Integration

The integrated RS-485 serial communication port supports native Modbus RTU communication parameters for straightforward integration into existing automation networks. An exceptional 15 ms internal response loop allows the drive to adapt instantly to dynamic load variations, helping to minimize jams and mechanical wear in fast-cycle packaging lines.

Technical FAQs

Q1: Can this specific drive be operated on a single-phase input supply?

A1: No, the 22B-B012H204 model is configured specifically for three-phase AC input parameters. Running single-phase power into this unit will trigger a phase-loss fault code or damage the input rectifier bridge.

Q2: How does the 16 kHz PWM switching rate affect system performance?

A2: Raising the PWM frequency to 16 kHz shifts acoustic motor noise into an ultrasonic range, significantly reducing audible motor hum in quieter work areas like assembly lines or ventilation networks.

Q3: What parameters are adjusted to resolve frequent overvoltage faults during stops?

A3: Frequent overvoltage trips during deceleration usually point to high load inertia feeding energy back into the drive. Increase the deceleration ramp time parameter or install an external dynamic braking resistor loop across terminals BR+ and BR-.

Product Resources

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🏷️ Tags: AC Drive

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