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SKU:22F-A2P5N103
22F-A2P5N103 Rockwell Automation VFD 0.37kW 0.5HP
Manufacturer: Allen-Bradley
Product No.: 22F-A2P5N103
Product Type: AC Drive
Product Origin: USA
Payment:T/T, Western Union
Weight: 2000g
Shipping port: Xiamen
Warranty: 12 months
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Tavsif
Product Overview
The 22F-A2P5N103 is a highly compact, cost-effective Adjustable Frequency AC Drive from the Allen-Bradley PowerFlex 4M product line by Rockwell Automation. Engineered for flexible motor speed regulation, this Frame Size A drive accepts a single-phase input voltage range of 200 to 240V AC and converts it to a dynamic 0 to 230V AC three-phase output. Rated at 0.37 kW (0.5 HP) with a continuous output current of 2.5 Amperes, it provides an ideal, space-saving velocity and torque regulation platform for low-power industrial machines and integrated production loops.
Core Technical Advantages
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Detailed Suffix Logic Breakdown:
- 22F-: Identifies the PowerFlex 4M series of compact, cost-effective adjustable frequency AC motor drives.
- -A-: Specifies a single-phase input voltage rating of 200 to 240V AC at standard 50/60 Hz utility frequencies.
- -2P5-: Denotes an operational continuous output current rating of 2.5 Amperes, corresponding to a 0.37 kW (0.5 HP) load.
- -N-: Configures an open-type panel mount enclosure matching an IP20 protection barrier rating without an internal EMC filter.
- -1-: Indicates a fixed standard style LED human-interface module (HIM) keypad integrated on the front chassis plate.
- -03-: Designates the default standard production configuration layer lacking secondary extended brake or communication modifications.
- Efficient Power Conversion: Smoothly translates standard single-phase facility power into a balanced three-phase output array, allowing premium three-phase industrial motors to be operated on standard utility lines.
- Volts per Hertz (V/Hz) Precision: Employs structured Volts-per-Hertz control algorithms, featuring fully configurable torque performance curves and acceleration slopes to handle standard variable torque demands.
- Versatile Control Interfacing: Combines five 24V DC discrete digital inputs, two distinct analog channels, and two Form C programmable relay outputs to facilitate comprehensive remote machine sequence integration.
Technical Specifications
| Parameter | Specification Details |
|---|---|
| Model Catalog Number | 22F-A2P5N103 |
| Product Line Series | Allen-Bradley PowerFlex 4M Series |
| Input Phase Profile | Single-Phase Input Supply Node |
| Input Supply Voltage Range | 200 to 240V AC (Operating Tolerance: +/- 10%) |
| Output Voltage / Phase | 0 to 230V AC / Three-Phase Output Array |
| Rated Operational Current | 2.5 Amperes continuous duty threshold |
| Nominal Power Rating | 0.37 kW (0.5 Horsepower efficiency curve) |
| Enclosure Protection Class | Open Type - IP20 Protection Barrier Unit |
| Mechanical Frame Dimension | Frame Size A footprint profile |
Industrial Applications
- Material Handling Conveyors: Manages localized sorting lines, variable speed product belts, and logistical packaging machinery paths.
- Commercial HVAC Air Distribution: Controls mechanical ventilation extraction fans, blowers, and localized cooling loop air handler motors.
- Fluid Processing Pumps: Governs centrifugal liquid pumps, chemical dosage assemblies, and waste circulation infrastructure.
- Automated Production Tools: Operates small machining spindles, industrial spinning wheels, and automated assembly feeding apparatuses.
Wiring & Installation
Line Termination Parameters
Isolate the primary facility electrical distribution system before starting installation. Terminate single-phase input source power explicitly to the main line-side terminals (L1, L2/N) of the Frame A housing. Output terminal pairs (U, V, W) must feed directly into a balanced three-phase motor arrangement. Never connect line utility power to output terminals, as this causes instant inverter failure.
Environmental Derating and Airflow Clearance
Ensure the mounting site offers adequate spacing clearances around the IP20 chassis to allow consistent thermal convection cooling and prevent hot-spot build up. When installing multiple drives within a single enclosure, maintain an unblocked vertical gap profile of at least 120 mm above and below the drive housing, and do not obstruct side venting spaces.
Control Separation Protocols
Isolate high-voltage power lines from low-voltage I/O lines and RS485 communication wires within your conduit layouts to prevent inductive cross-talk. Route analog speed reference signals using shielded twisted-pair cables, and ground the drain shield line solely at the drive chassis end to eliminate electrical noise loops.
Ground Continuity Check
Securely link a dedicated low-resistance system ground conductor to the drive's protective ground terminal point before applying primary voltage line feeds. Proper ground path termination is vital for suppressing common-mode electromagnetic noise and ensures structural protection margins match local utility codes.
Engineering Advantages
- Compact Control Panel Density: The minimized Frame A profile footprint allows side-by-side Zero-Stack DIN rail deployment or traditional sub-panel screw mountings, maximizing cabinet layout economy.
- Built-In User Configuration Interface: Features an integrated digital display keypad directly on the front panel, allowing for fast manual parameter editing, parameter viewing, and diagnostic troubleshooting.
- Network System Connectivity: Contains an onboard RS485 communication port supporting standard serial network loops, allowing multi-drive control architectures from a centralized PLC platform.
Technical FAQs
Q1: Can I connect a single-phase motor to the output terminals of the 22F-A2P5N103 drive?
A1: No. The output phase configuration is strictly designed to supply three-phase current. Connecting a single-phase motor to the output terminals can cause permanent damage to both the VFD internal inverter and the motor wind structures.
Q2: What should I use the integrated Form C relays for in my control logic loop?
A2: The two Form C relay outputs can be programmed to indicate operational milestones, such as "Drive Faulted," "At Speed Setpoint," or "Motor Running," allowing feedback to an overarching safety module or indicator stack.
Q3: Does this drive require an external braking resistor to decelerate high-inertia loads?
A3: For heavy mechanical loads or extreme decelerating stop ramps, an external dynamic braking resistor network can be added to safely dissipate regenerative energy and prevent overvoltage trips on the DC bus.
Qo'shimcha Texnik Tavsiflar
Skalyar (V/f)
Vektor
AC quvvatli
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