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The Allen Bradley 20BP170A0ANNANC1 PowerFlex 700 AC Drive is an industrial AC drive used to control motor operation in demanding automation and process applications. It serves as the electrical control stage between the incoming power source and an AC motor, allowing motor operation to be coordinated with machine requirements.
In a conventional fixed-speed motor installation, the motor is largely governed by the electrical supply. A PowerFlex 700 drive adds an adjustable control layer, allowing the automation system to manage motor operation according to production speed, process demand, material flow, or machine sequencing.
The 20BP170A0ANNANC1 belongs to the PowerFlex 700 family and can be incorporated into systems containing Allen Bradley PLCs, operator interfaces, communication equipment, motor protection, and mechanical drive components.
For maintenance applications, the complete catalog number should be confirmed before replacement. The existing motor configuration, control connections, drive parameters, and installation conditions should also be reviewed to ensure that the replacement is suitable for the original application.
| Parameter | Specification |
|---|---|
| Manufacturer | Allen Bradley |
| Model | 20BP170A0ANNANC1 |
| Product Family | PowerFlex 700 |
| Product Type | AC Drive |
| Primary Function | Variable-Speed AC Motor Control |
| System Role | Motor Speed and Power Control |
| Application | Industrial Automation / Motor Control |
| Dimensions | 850 × 403.9 × 275.5 mm |
| Weight | 71.44 kg |
The 20BP170A0ANNANC1 combines motor-speed control with the drive-level monitoring required in an industrial automation system.
Key characteristics include:
Application suitability should be evaluated from the complete motor-drive system. Electrical supply, motor characteristics, load behavior, control requirements, and installation conditions all need to be considered.
The 20BP170A0ANNANC1 receives electrical power from the plant distribution system and regulates the output delivered to the connected AC motor.
A simplified operating path is:
Incoming Electrical Power → PowerFlex 700 → AC Motor → Mechanical Equipment
The control process can be divided into the following stages:
Power Reception
The drive receives electrical power from the upstream power system.
Electrical Conversion
Internal power electronics process the incoming power for controlled motor operation.
Control Command
The drive receives a motor operating command from the applicable control architecture.
Output Regulation
The drive adjusts its motor-side output according to the requested operating condition and configured parameters.
Motor Operation
The AC motor converts the controlled electrical energy into mechanical torque.
Machine Response
The motor drives the connected mechanical equipment at the required operating condition.
Status Monitoring
Drive status and diagnostic information can be used to evaluate operation and identify abnormal conditions.
The resulting control chain is:
Process Demand → Controller → PowerFlex 700 → Motor → Mechanical Output
This makes the drive an active part of the machine-control system rather than simply a power-transfer device.
The 20BP170A0ANNANC1 occupies the motor power-control layer within an automation system.
A typical arrangement is:
PLC / Controller → Drive Command → PowerFlex 700 → AC Motor → Machine
The PLC manages the process logic, sequencing, interlocking, and operating commands. The PowerFlex 700 then handles the electrical side of motor control.
This architecture is particularly useful in machinery where motor speed must follow changing production conditions. For example, a conveyor can require controlled acceleration during startup, a stable running speed during production, and a controlled slowdown before stopping.
From a maintenance perspective, this layered architecture provides a practical diagnostic sequence:
Control Command → Drive Status → Motor Output → Motor → Mechanical Load
Following this path helps determine whether an abnormal motor condition originates in the control system, drive, electrical circuit, motor, or machine.
| Application | Typical Use |
|---|---|
| Conveyor Systems | Variable-speed material transportation |
| Pumping Equipment | Adjusting motor operation to process demand |
| Industrial Fans | Controlling airflow through motor speed |
| Material Handling | Coordinating motor-driven equipment |
| Manufacturing Machinery | Controlling rotating production equipment |
| Process Systems | Matching motor operation to process conditions |
| Production Lines | Coordinating motor speed with production cycles |
| Industrial Mechanical Equipment | Variable-speed AC motor control |
The actual application should be determined from the motor characteristics, mechanical load, operating cycle, and drive configuration.
The 20BP170A0ANNANC1 should be treated as part of a complete electrical drive system during installation and service.
Recommended practices include:
If a fault occurs only when the machine reaches a higher load, inspect the mechanical system and motor circuit alongside the drive. Excessive mechanical resistance or abnormal motor conditions can produce drive trips even when the drive itself is operating correctly.
| Component | Function |
|---|---|
| Allen Bradley PLC | Executes process logic and generates drive commands |
| PowerFlex 700 AC Drive | Controls motor electrical output |
| AC Motor | Converts electrical energy into mechanical rotation |
| Motor Cable | Transfers drive output to the motor |
| Circuit Protection | Protects the electrical power circuit |
| Disconnect Device | Provides electrical isolation |
| HMI | Provides operator control and monitoring |
| Communication Network | Transfers commands and drive status |
| Mechanical Load | Receives motor torque |
| Grounding System | Supports electrical safety and system integrity |
| Model / Product Family | Product Type | Typical Application |
|---|---|---|
| Allen Bradley 20BP170A0ANNANC1 | PowerFlex 700 AC Drive | Variable-speed AC motor control |
| Allen Bradley 20BP140A3ANNANC0 | PowerFlex 700 AC Drive | Industrial motor control |
| Allen Bradley 20BP140A3ANNACC1 | PowerFlex 700 AC Drive | Industrial motor control |
| Allen Bradley 20BP105A3ANNACC1 | PowerFlex 700 AC Drive | Variable-speed motor applications |
| Allen Bradley PowerFlex 700 | AC Drive Family | Machine and process automation |
Verify the drive catalog number, incoming power connections, motor wiring, grounding, control connections, and relevant configuration parameters. If the installation differs from the original configuration, the fault may result from wiring or setup rather than defective hardware.
Motor current is affected not only by speed but also by the torque required from the mechanical load. Increased material load, mechanical resistance, bearing problems, or process changes can therefore increase drive demand without a change in commanded speed.
The drive should be evaluated progressively as the machine is brought toward normal operating conditions. Monitoring drive status, motor behavior, current demand, and mechanical response under load can help identify problems that do not appear during unloaded testing.
PowerFlex 700 units can have different configurations and application characteristics. Confirming the complete catalog number helps prevent the installation of a physically similar but functionally unsuitable unit and provides a reliable starting point for comparing the existing system configuration.