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The 20G1ANF030JA0NNNNN is a high-performance industrial AC variable frequency drive belonging to the PowerFlex 755 family. It is designed for demanding motor-control applications where reliable speed regulation, torque control, acceleration/deceleration management and integration with an industrial automation system are required.
This model is an air-cooled, three-phase, 690 VAC PowerFlex 755 AC drive with a 30 A output rating. Its nominal power capability is 22 kW under normal-duty operation and 18.5 kW under heavy-duty operation.
The unit uses a Frame 6 mechanical configuration and an open-type IP20/IP00 enclosure arrangement. It is equipped with forced-air cooling, an internal dynamic-braking transistor, input precharge and filtering. The model is supplied without a HIM operator interface module, making it suitable for installations where the drive is intended to be integrated into a larger control architecture rather than operated primarily from a local keypad.
| Item | Specification |
|---|---|
| Model | 20G1ANF030JA0NNNNN |
| Product type | AC variable frequency drive / AC motor drive |
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex 755 |
| Drive category | Air-cooled AC drive |
| Application class | Industrial motor control |
| Input configuration | AC input with precharge |
| Input phase | Three-phase |
| Voltage class | 690 VAC |
| Output current | 30 A |
| Normal-duty power | 22 kW |
| Heavy-duty power | 18.5 kW |
| DC terminals | No DC terminals |
| Cooling | Forced air |
| Frame | Frame 6 |
| Enclosure | Open type |
| Protection rating | IP20/IP00 |
| Filtering | Filtered |
| Common-mode configuration | CM jumper installed |
| Dynamic braking | Internal DB transistor |
| HIM | Blank / no HIM |
| Network capability | Embedded Ethernet/IP |
| Approximate weight | 14.51 kg |
| Approximate dimensions | Approximately 570 × 345 × 377 mm, configuration-dependent |
| Typical installation | Industrial control cabinet / electrical enclosure |
Note on dimensions: dimensions can vary according to the exact mechanical arrangement, revision, mounting configuration and accessories. For cabinet design, the actual mechanical drawing for the particular unit should be used rather than relying solely on the approximate dimensions above.
| Parameter | 20G1ANF030JA0NNNNN |
|---|---|
| Model | 20G1ANF030JA0NNNNN |
| Product family | PowerFlex 755 |
| Drive type | AC variable frequency drive |
| Motor-control purpose | Variable-speed motor control |
| Rated input | 690 VAC class |
| Input phase | 3 phase |
| Output current | 30 A |
| Normal-duty rating | 22 kW |
| Heavy-duty rating | 18.5 kW |
| Normal-duty application | Approximately 22 kW motor applications |
| Heavy-duty application | Approximately 18.5 kW motor applications |
| Maximum DC bus voltage class | Approximately 932 VDC class |
| Cooling system | Forced air |
| Mechanical frame | Frame 6 |
| Enclosure type | Open type |
| Enclosure protection | IP20/IP00 |
| Input arrangement | AC input with precharge |
| DC bus terminals | Not provided in this configuration |
| Dynamic braking | Internal braking transistor |
| EMC/filter configuration | Filtered |
| CM capacitor configuration | Jumper installed |
| Local operator interface | No HIM included |
| Communication | Embedded Ethernet/IP |
| Installation environment | Industrial electrical cabinet |
| Motor control | Variable-frequency AC motor control |
| Intended motor class | Industrial AC motors |
| Approximate weight | 14.51 kg |
| Approximate dimensions | 570 × 345 × 377 mm |
| Cooling requirement | Forced-air ventilation |
| Mounting | Panel/cabinet installation |
| Product architecture | Modular industrial drive |
| Typical duty | Continuous industrial operation |
| Braking capability | Dynamic braking through internal transistor |
| Application emphasis | Speed, torque and process control |
The model number 20G1ANF030JA0NNNNN contains a series of configuration identifiers. Understanding the structure helps distinguish this drive from other PowerFlex 755 variants.
| Model section | General meaning |
|---|---|
| 20G | PowerFlex 755 AC drive family |
| 1 | Product configuration identifier |
| A | Drive configuration |
| N | Voltage/configuration designation |
| F | 690 VAC class |
| 030 | 30 A output-current class |
| J | Configuration option |
| A0 | Additional drive configuration |
| NNNNN | Option/configuration fields |
The most important identifying information for practical selection is the combination of PowerFlex 755 + 690 VAC + 30 A + Frame 6 + air-cooled + filtered + dynamic-braking transistor configuration.
When replacing the unit, it is therefore not sufficient to select another PowerFlex 755 only by power rating. Input voltage, output current, frame size, braking configuration, filter arrangement, control options, communication requirements and enclosure arrangement should all be checked.
The 20G1ANF030JA0NNNNN is intended to control the speed and operating characteristics of three-phase AC motors in industrial equipment.
Instead of connecting the motor directly to a fixed-frequency AC supply, the drive regulates the electrical conditions supplied to the motor. This allows the motor to operate at different speeds according to the requirements of the machine or process.
For example, a pump does not necessarily need to run at full speed at all times. A conveyor may require different speeds during loading and unloading. A fan may need to respond to changing airflow requirements. A material-handling machine may require controlled acceleration and deceleration.
The drive provides the electrical control layer between the incoming power supply and the motor, allowing the automation system to determine how the motor should operate.
The 30 A output rating makes this model appropriate for medium-power industrial motor applications within its voltage and duty-rating limits.
One of the defining characteristics of this model is its 690 VAC three-phase voltage class.
This makes the drive suitable for industrial electrical systems where higher-voltage motor circuits are used. Compared with lower-voltage drives, a 690 VAC drive is commonly used in applications where motors and distribution systems are designed around higher industrial voltage levels.
The voltage class must always match the actual motor and electrical system requirements. A 690 VAC-rated drive should not simply be substituted for a 400/480 VAC drive without checking the complete electrical system.
The model has an output current rating of approximately 30 A.
For variable-frequency drives, output current is often more useful for sizing than motor kW alone because actual motor current depends on motor efficiency, power factor, duty cycle, operating conditions and application load.
For this reason, when selecting a replacement, the motor nameplate current should be compared with the drive’s applicable continuous output-current rating.
Under normal-duty conditions, the drive is rated around 22 kW.
Normal-duty applications generally represent applications where the motor does not continuously experience unusually high overload requirements.
Typical examples include:
The drive also has an approximately 18.5 kW heavy-duty rating.
Heavy-duty applications typically involve higher starting torque, higher overload requirements or more demanding load cycles.
Examples can include:
The distinction between normal duty and heavy duty is important because selecting a drive solely according to motor horsepower can result in an inappropriate drive if the machine has demanding torque requirements.
The 20G1ANF030JA0NNNNN uses forced-air cooling.
Power electronic components such as IGBTs and capacitors generate heat during operation. Forced-air cooling moves air through the drive’s thermal path to remove heat from the power components.
For cabinet installation, sufficient ventilation space is therefore important.
A suitable installation should take into consideration:
Poor ventilation can reduce component life and may cause thermal protection to activate during high-load operation.
This model includes an internal dynamic-braking transistor.
Dynamic braking is useful when the motor needs to decelerate relatively quickly. During motor deceleration, energy can flow back toward the drive’s DC bus. A braking system provides a means of dissipating this energy.
In practical applications, dynamic braking can help with:
The presence of a braking transistor does not mean that every application automatically has unlimited braking capability. The complete braking system, including the appropriate braking resistor and its thermal rating, must be matched to the application.
The PowerFlex 755 platform is designed for integration with industrial automation systems and this configuration includes embedded Ethernet/IP capability.
This allows the drive to participate in an industrial control architecture where commands, status information and drive parameters can be exchanged digitally.
Typical functions can include:
This is particularly useful in systems using programmable controllers and supervisory control platforms.
The 20G1ANF030JA0NNNNN is specified as a filtered configuration and has the CM jumper installed.
Filtering can help manage electrical noise associated with power-electronic switching.
This is important in industrial environments where multiple pieces of electronic equipment operate in the same electrical installation.
Proper grounding, cable routing, motor cable selection, shielding and cabinet layout remain important even when the drive includes filtering.
The model uses an open-type IP20/IP00 configuration.
This means it is intended primarily for installation inside an appropriate electrical cabinet, control panel or protected industrial enclosure.
It should not be treated as a standalone weatherproof motor controller.
A proper installation should provide protection against:
The cabinet itself should provide the environmental protection required by the actual installation location.
The drive can be used to control conveyor motor speed.
Speed adjustment can help coordinate different conveyor sections, control material flow and provide controlled acceleration and deceleration.
For a conveyor with significant starting inertia, the heavy-duty rating and dynamic-braking requirements should be evaluated carefully.
Variable-speed control is particularly useful in pumping systems.
Instead of continuously operating a pump at maximum speed, the drive can adjust motor speed according to process requirements.
Potential benefits include:
The exact energy savings depend on pump characteristics and the process operating profile.
Fans and blowers can benefit from variable-speed operation because airflow requirements frequently change.
The drive can allow the motor to operate at different speeds rather than relying exclusively on mechanical throttling.
Applications may include:
The PowerFlex 755 platform is also suitable for industrial material-handling machinery.
Typical equipment can include:
Controlled acceleration can reduce mechanical shock to gears, couplings, belts and other components.
The drive can be integrated into manufacturing equipment requiring adjustable motor speed.
Examples include:
Applications with significant rotating inertia can benefit from controlled acceleration and deceleration.
Dynamic braking becomes particularly relevant when the process requires the motor to decelerate rapidly.
The 690 VAC class allows the drive to be used in higher-voltage industrial motor systems.
This expands its applicability to industrial equipment designed around higher-voltage three-phase motors.
The drive provides adjustable motor operation rather than fixed-speed operation.
This gives machine designers greater flexibility when determining:
Embedded Ethernet/IP simplifies integration with an industrial automation architecture.
Instead of relying exclusively on hardwired start/stop and analog speed signals, the drive can exchange digital control and diagnostic information with the control system.
The internal braking transistor is useful for applications where controlled deceleration is important.
This is especially valuable when the machine has considerable inertia or requires frequent stopping.
Forced-air cooling provides a practical method for removing heat from the drive during continuous industrial operation.
It is especially suitable for properly ventilated electrical cabinets.
The combination of 30 A output, 22 kW normal-duty capacity and 18.5 kW heavy-duty capacity makes this model suitable for a wide range of medium-power industrial machinery.
The PowerFlex 755 family is designed around a modular architecture with different power ratings and configuration options.
This makes it possible to select another member of the same family when the application changes in terms of motor power, voltage, current or mechanical requirements.
Before installing or replacing the drive, several factors should be checked.
The following models are closely related PowerFlex 755 configurations and are useful when comparing alternative current/power ratings.
| Model | Voltage class | Output current | Normal-duty power | Heavy-duty power | Cooling | Frame | Approx. weight | Approx. dimensions |
|---|---|---|---|---|---|---|---|---|
| 20G1ANF015JA0NNNNN | 690 VAC | 15 A | 11 kW | 7.5 kW | Forced air | Frame 6 | Approx. 14.51 kg* | Approx. 570 × 345 × 377 mm* |
| 20G1ANF020JA0NNNNN | 690 VAC | 20 A | 15 kW | 11 kW | Forced air | Frame 6 | Approx. 14.51 kg* | Approx. 570 × 345 × 377 mm* |
| 20G1ANF023JA0NNNNN | 690 VAC | 23 A | 18.5 kW | 15 kW | Forced air | Frame 6 | Approx. 14.51 kg* | Approx. 570 × 345 × 377 mm* |
| 20G1ANF030JA0NNNNN | 690 VAC | 30 A | 22 kW | 18.5 kW | Forced air | Frame 6 | Approx. 14.51 kg | Approx. 570 × 345 × 377 mm* |
| 20G1ANF034JA0NNNNN | 690 VAC | 34 A | 25 kW | 22 kW | Forced air | Frame 6 | Approx. 14.51 kg* | Approx. 570 × 345 × 377 mm* |
*Approximate mechanical values should be treated as selection/reference values because the exact mechanical configuration, revision and options can affect final dimensions and weight.
These models are particularly useful when the motor requirement is close to the 20G1ANF030JA0NNNNN rating but the required current or power is somewhat lower or higher.
The following are examples of commonly encountered models within the same broad industrial drive portfolio. They cover different power levels and product families, so they should not be treated as direct drop-in replacements for the 20G1ANF030JA0NNNNN.
| Model | Product family | Typical voltage class | Output current / rating | Power range / rating | Cooling | Approx. weight | Approx. dimensions |
|---|---|---|---|---|---|---|---|
| 20G11NC022JA0NNNNN | PowerFlex 755 | 690 VAC class | Approx. 22 A class | Approx. 15–18.5 kW class | Forced air | Approx. 14–15 kg* | Approx. Frame 6 size* |
| 20F11ND034AA0NNNNN | PowerFlex 753 | 480 VAC class | Approx. 34 A class | Approx. 22 kW class | Forced air | Approx. 10–15 kg* | Configuration dependent |
| 25B-D017N114 | PowerFlex 525 | 480 VAC class | Approx. 17 A class | Approx. 7.5 kW class | Fan cooled | Approx. 4 kg* | Compact frame |
| 25B-D030N114 | PowerFlex 525 | 480 VAC class | Approx. 30 A class | Approx. 15 kW class | Fan cooled | Approx. 7 kg* | Compact frame |
| 25A-D017N114 | PowerFlex 523 | 480 VAC class | Approx. 17 A class | Approx. 7.5 kW class | Fan cooled | Approx. 3–4 kg* | Compact frame |
*Values are approximate and intended for preliminary comparison. These models have different mechanical and electrical architectures, so final selection should be based on the motor nameplate, supply voltage, overload requirement, control functions and installation environment.
| Feature | 20G1ANF015JA0NNNNN | 20G1ANF020JA0NNNNN | 20G1ANF023JA0NNNNN | 20G1ANF030JA0NNNNN | 20G1ANF034JA0NNNNN |
|---|---|---|---|---|---|
| Series | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 |
| Voltage | 690 VAC | 690 VAC | 690 VAC | 690 VAC | 690 VAC |
| Output current | 15 A | 20 A | 23 A | 30 A | 34 A |
| ND power | 11 kW | 15 kW | 18.5 kW | 22 kW | 25 kW |
| HD power | 7.5 kW | 11 kW | 15 kW | 18.5 kW | 22 kW |
| Cooling | Forced air | Forced air | Forced air | Forced air | Forced air |
| Frame | 6 | 6 | 6 | 6 | 6 |
| Dynamic braking transistor | Yes/configuration dependent | Yes/configuration dependent | Yes/configuration dependent | Yes | Yes/configuration dependent |
| Filtered configuration | Yes | Yes | Yes | Yes | Yes |
| Approx. weight | 14.51 kg* | 14.51 kg* | 14.51 kg* | 14.51 kg | 14.51 kg* |
| Approx. dimensions | 570 × 345 × 377 mm* | 570 × 345 × 377 mm* | 570 × 345 × 377 mm* | 570 × 345 × 377 mm* | 570 × 345 × 377 mm* |
If the purpose is to replace an existing 20G1ANF030JA0NNNNN, the closest match should normally be selected by checking the complete specification rather than selecting a model simply because its kW value is similar.
The following points are particularly important:
| Selection item | What should be checked |
|---|---|
| Supply voltage | Confirm 690 VAC class |
| Motor voltage | Confirm motor nameplate voltage |
| Motor current | Confirm actual full-load current |
| Motor power | Confirm kW |
| Duty | Determine normal-duty or heavy-duty operation |
| Output current | Confirm continuous and overload requirements |
| Braking | Check whether dynamic braking is required |
| Communication | Check Ethernet/IP requirements |
| Filter | Confirm filtering requirements |
| Mechanical frame | Confirm Frame 6 requirements |
| Cabinet | Confirm available mounting space |
| Cooling | Confirm adequate forced-air ventilation |
| Environment | Confirm temperature, dust and humidity |
| Operator interface | Determine whether a HIM is required |
| Control method | Confirm the machine’s control architecture |
The main strength of this configuration is the combination of high-voltage capability, medium-power output, industrial communication, dynamic-braking functionality and flexible motor control.
A conventional motor starter generally provides simple on/off motor control. A variable-frequency drive provides substantially more control over the motor’s operating condition.
With an appropriate control strategy, the drive can manage motor acceleration, steady-state speed, deceleration and fault conditions.
For automated production equipment, this can make the motor a controlled process variable rather than simply an on/off load.
A typical installation can be understood as:
Three-phase AC supply → Protective equipment → PowerFlex 755 drive → Three-phase motor
The drive can then communicate with a PLC or other industrial controller through its communication interface.
The control system can issue commands such as:
Start → Speed reference → Acceleration → Constant-speed operation → Deceleration → Stop
Feedback from the drive can include:
Running status → Actual speed → Current → Fault → Alarm → Drive status
This type of architecture is well suited to automated manufacturing and process-control systems.
| Advantage | Practical meaning |
|---|---|
| 690 VAC capability | Suitable for higher-voltage industrial motor systems |
| 30 A output | Suitable for medium-power motor applications |
| 22 kW ND rating | Supports substantial normal-duty motor loads |
| 18.5 kW HD rating | Supports more demanding load profiles |
| Ethernet/IP | Convenient integration with industrial control systems |
| Dynamic braking transistor | Supports controlled deceleration |
| Forced-air cooling | Suitable for industrial cabinet installations |
| Filtering | Helps manage electrical noise |
| PowerFlex 755 platform | Wide range of related drive ratings |
| Frame 6 construction | Consistent mechanical platform for this power range |
| Open-type enclosure | Suitable for protected control-panel installations |
| No-HIM configuration | Appropriate where local keypad operation is not required |
The 20G1ANF030JA0NNNNN is a PowerFlex 755, 690 VAC, three-phase, air-cooled AC variable frequency drive designed for medium-power industrial motor control.
Its key electrical rating is 30 A, with approximately 22 kW normal-duty capacity and 18.5 kW heavy-duty capacity. The unit uses a Frame 6 configuration, forced-air cooling and an open-type IP20/IP00 arrangement.
The model is particularly relevant to industrial machinery requiring adjustable motor speed, controlled acceleration and deceleration, dynamic braking and integration with an industrial automation network.
Its application range can include conveyors, pumps, fans, blowers, process machinery, material-handling equipment and other industrial motor-driven systems.
For equipment selection, the most important points are not only the motor’s kW rating but also the 690 VAC supply, motor full-load current, duty classification, overload requirement, braking requirements, communication architecture, environmental conditions and cabinet dimensions.
For the same PowerFlex 755 family, the 20G1ANF015JA0NNNNN, 20G1ANF020JA0NNNNN, 20G1ANF023JA0NNNNN and 20G1ANF034JA0NNNNN provide nearby power/current alternatives around the 30 A model.
For broader product selection, the PowerFlex 753, PowerFlex 525 and PowerFlex 523 families provide alternatives for applications where a different power range, mechanical size or control architecture is required.
Important: The dimensions and weights marked as approximate should be verified against the exact mechanical drawing/nameplate before final cabinet design, procurement, replacement or installation.