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The Allen-Bradley 20F1AND302JA0NNNNN is a high-power industrial AC variable frequency drive belonging to the PowerFlex 753 series.
It is designed for demanding three-phase motor-control applications where a combination of high output current, substantial motor horsepower, adjustable speed, controlled acceleration, process regulation and industrial automation integration is required.
This model is rated for 480 VAC, three-phase operation, with a 302 A output current, a 250 HP normal-duty rating, and a 200 HP heavy-duty rating.
Its approximate metric power ratings are about 186 kW for normal duty and 149 kW for heavy duty.
The drive uses a Frame 7 mechanical construction and a forced-air cooling system. It is supplied as an open-type drive intended for installation inside a suitable electrical cabinet or protected industrial enclosure.
The catalog configuration includes embedded I/O, AC input with precharge, no DC terminals, filtered input configuration, and an installed CM jumper.
An important feature of this exact catalog number is the presence of a dynamic-braking transistor. This makes the model particularly interesting for applications where controlled deceleration and braking management are more demanding than they would be in a simple pump or fan installation.
The drive is supplied with a blank configuration without a HIM, meaning that a separate human-interface module is not included as part of this catalog configuration.
With its 302 A current rating and 250 HP normal-duty capacity, the 20F1AND302JA0NNNNN is positioned toward the high-power end of the PowerFlex 753 family.
| Category | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Series | PowerFlex 753 |
| Product Type | AC Variable Frequency Drive |
| Product Category | Industrial AC Drive |
| Drive Class | High-Power General-Purpose Industrial Drive |
| Voltage Class | 480 VAC |
| Input Phase | 3 Phase |
| Frame | Frame 7 |
| Cooling | Forced Air |
| Enclosure | IP20/IP00 Open Type |
| Enclosure Style | NEMA/UL Open Type |
| Normal-Duty Rating | 250 HP |
| Heavy-Duty Rating | 200 HP |
| Output Current | 302 A |
The PowerFlex 753 series is intended for general-purpose industrial motor control and is designed to provide a flexible platform for applications requiring variable-frequency operation.
Compared with smaller compact drive families, the PowerFlex 753 platform is intended for larger motors and more demanding industrial installations.
It can be used as part of an integrated automation system in which the drive communicates operating information, receives speed commands, monitors motor conditions and participates in machine-level control.
| Parameter | Specification |
|---|---|
| Model | 20F1AND302JA0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 753 |
| Product Type | AC Variable Frequency Drive |
| Input Voltage Class | 480 VAC |
| Input Voltage Range | 380–480 VAC |
| Input Phase | 3 Phase |
| Input Frequency | 50/60 Hz |
| Rated Output Current | 302 A |
| Normal-Duty Power | 250 HP |
| Heavy-Duty Power | 200 HP |
| Normal-Duty Power, Metric | Approx. 186 kW |
| Heavy-Duty Power, Metric | Approx. 149 kW |
| Frame Size | Frame 7 |
| Cooling Method | Forced Air |
| Enclosure | IP20/IP00 |
| Enclosure Type | NEMA/UL Open Type |
| Input Configuration | AC Input with Precharge |
| DC Terminals | No |
| Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | DB Transistor |
| Embedded I/O | Yes |
| HIM | Blank / No HIM |
| Mounting | Cabinet / Panel |
| Height | Approx. 881.5 mm |
| Width | Approx. 430 mm |
| Depth | Approx. 349.6 mm |
| Dimensions | Approx. 881.5 × 430 × 349.6 mm |
| Weight | Approx. 56.7 kg |
The dimensions and weight should be treated as equipment-selection values rather than complete cabinet-design dimensions.
Because this is a large Frame 7 drive, additional space is required for incoming power connections, motor output cables, control wiring, ventilation and maintenance access.
| Electrical Parameter | Specification |
|---|---|
| Model | 20F1AND302JA0NNNNN |
| Input Voltage | 380–480 VAC |
| Nominal Voltage | 480 VAC |
| Input Phase | 3 Phase |
| Input Frequency | 50/60 Hz |
| Output Current | 302 A |
| Normal-Duty Current | 302 A class |
| Normal-Duty Horsepower | 250 HP |
| Heavy-Duty Horsepower | 200 HP |
| Normal-Duty Power | Approx. 186 kW |
| Heavy-Duty Power | Approx. 149 kW |
| Output | Variable-frequency 3-phase AC |
| Frame | 7 |
| Cooling | Forced Air |
| Input | AC with Precharge |
| DC Terminals | No |
| Filtering | Yes |
| CM Jumper | Installed |
| Dynamic Braking | DB Transistor |
| Embedded I/O | Yes |
| HIM | Blank / No HIM |
The 302 A output rating is the key electrical characteristic of this model.
For industrial drive selection, the motor’s actual nameplate current should be treated as one of the primary selection parameters.
Horsepower provides a convenient reference, but motor current, load torque, duty cycle and acceleration requirements are often more important when determining whether a drive is correctly sized.
The 20F1AND302JA0NNNNN has a 250 HP normal-duty rating.
This corresponds to approximately:
250 HP ≈ 186 kW
Normal-duty operation is generally associated with applications where the motor load is relatively smooth and the required overload performance is less severe than heavy-duty applications.
Typical examples include:
The final selection should always be based on motor current and the actual load profile.
The heavy-duty rating is 200 HP.
This corresponds to approximately:
200 HP ≈ 149 kW
The heavy-duty rating is particularly relevant where the motor experiences higher torque requirements, more demanding acceleration, or repeated overload conditions.
Possible applications include:
The heavy-duty rating should be considered when the machine does not operate like a simple centrifugal load.
A 302 A output current rating places this model firmly in the large industrial-drive category.
This level of current allows the drive to control large motors used in production plants, process facilities, utilities and heavy industrial machinery.
When selecting the drive, the following motor information should be checked:
The 302 A rating provides substantial capacity, but the drive should not be oversized or undersized solely by comparing horsepower values.
The drive belongs to the 480 VAC three-phase class.
The applicable input range is approximately 380–480 VAC.
This voltage class is widely used for large industrial motors because higher voltage allows substantial power to be transmitted at a lower current than would be required at a lower voltage.
This makes the drive suitable for high-power systems such as:
The 20F1AND302JA0NNNNN uses a Frame 7 construction.
Frame 7 is a larger mechanical platform designed to accommodate the electrical and thermal requirements associated with high-current industrial drives.
| Mechanical Parameter | Specification |
|---|---|
| Model | 20F1AND302JA0NNNNN |
| Frame | 7 |
| Height | Approx. 881.5 mm |
| Width | Approx. 430 mm |
| Depth | Approx. 349.6 mm |
| Dimensions | Approx. 881.5 × 430 × 349.6 mm |
| Weight | Approx. 56.7 kg |
| Cooling | Forced Air |
| Enclosure | IP20/IP00 |
| Installation | Electrical Cabinet |
| Construction | Open Type |
The larger Frame 7 format provides the physical space needed for high-current power components and cooling hardware.
It should therefore be planned as a major cabinet component rather than as a small machine-mounted drive.
The approximate physical dimensions are:
881.5 mm high × 430 mm wide × 349.6 mm deep
The approximate equipment weight is:
56.7 kg
| Mechanical Specification | Value |
|---|---|
| Model | 20F1AND302JA0NNNNN |
| Height | 881.5 mm |
| Width | 430 mm |
| Depth | 349.6 mm |
| Overall Dimensions | 881.5 × 430 × 349.6 mm |
| Weight | 56.7 kg |
| Frame | 7 |
| Cooling | Forced Air |
| Enclosure | IP20/IP00 Open Type |
The actual cabinet footprint must be larger than the drive itself.
Additional clearance is needed for power-terminal access, cable routing, cooling airflow and maintenance.
The drive uses an IP20/IP00-class NEMA/UL Open Type construction.
This means that the drive is normally installed within a suitable electrical cabinet or another protected environment.
It should not be treated as a sealed outdoor drive.
The installation should protect the drive from:
A properly designed cabinet can provide the environmental protection that the open-type drive itself does not provide.
The 20F1AND302JA0NNNNN uses forced-air cooling.
At 302 A, the drive can generate substantial heat during operation.
Consequently, thermal management is an important part of system design.
The cabinet should provide sufficient airflow around the drive and should prevent heated air from circulating back through the cooling path.
Important considerations include:
For installations containing several high-power drives, the total cabinet heat load should be calculated.
The drive is configured for AC input with precharge.
This is appropriate for a large industrial drive with a substantial DC-link energy-storage system.
The precharge system manages the initial charging of the internal DC bus when the drive is energized.
This is an important part of the input architecture of a high-power variable frequency drive.
This exact configuration does not include external DC terminals.
This makes the model suitable for conventional AC-fed motor applications where an external shared DC bus is not required.
Applications involving regenerative common-bus arrangements or special DC-bus architectures should be evaluated separately.
The 20F1AND302JA0NNNNN is supplied with a filtered configuration and an installed CM jumper.
This configuration is useful in industrial electrical environments where the drive operates alongside other electronic equipment.
Potentially sensitive equipment can include:
Correct grounding and cable-routing practices remain essential even when filtering is included.
One of the major differences between the JA0 configuration and some other PowerFlex 753 configurations is the presence of a dynamic-braking transistor.
The 20F1AND302JA0NNNNN includes a DB transistor.
This is important when the application needs to manage regenerated energy during deceleration.
When a large motor slows down, the rotating mechanical system can return energy toward the drive.
In applications with significant inertia or frequent deceleration, that energy needs to be managed appropriately.
The internal transistor provides an interface for a suitable dynamic-braking resistor arrangement.
This can be particularly useful for:
The actual braking resistor and braking-duty requirements must be selected according to the application.
A drive without a braking transistor may require a different braking strategy.
The JA0 configuration provides more flexibility for applications where braking energy is an important design consideration.
This does not mean that every application requires a braking resistor.
For many centrifugal pumps and fans, the normal deceleration process may be sufficiently gradual.
However, when rapid stopping is required, the dynamic-braking capability becomes much more relevant.
The drive includes embedded I/O.
This provides basic control and monitoring interfaces without necessarily requiring a large amount of additional external interface hardware.
Typical signals may include:
This can simplify the connection between the drive and a machine controller.
For more complex applications, additional I/O or communication options can be added according to the system architecture.
The catalog configuration is supplied as:
Blank — No HIM
This means the drive does not include a local human-interface module as part of this particular catalog number.
This can be advantageous in applications where the drive is controlled primarily through:
A suitable interface can be selected separately when local operator interaction is required.
The 20F1AND302JA0NNNNN is designed for large industrial motor applications in which simple motor starting is not sufficient.
A conventional motor starter can provide basic start and stop control.
A variable frequency drive provides considerably more control.
The drive can change motor speed by controlling output frequency and voltage.
This allows the machine to operate at different speeds according to actual production requirements.
For example, a pump may need reduced speed during low-demand periods.
A conveyor may require slow acceleration to avoid mechanical shock.
A fan may need to maintain a constant pressure.
A mixer may need several different operating speeds.
A large process machine may require coordinated speed changes based on production conditions.
The 20F1AND302JA0NNNNN is designed for this type of industrial application.
The 250 HP normal-duty rating makes the drive suitable for large industrial motors.
This places it significantly above compact machine drives.
The 302 A output-current class provides substantial motor-control capacity.
This makes the drive suitable for large pumps, fans, conveyors, blowers and process machinery.
The 380–480 VAC input range makes the drive compatible with common high-power industrial electrical systems.
Frame 7 provides a robust mechanical platform suitable for the electrical and thermal requirements of a 302 A drive.
The DB transistor provides additional flexibility for applications involving significant regenerative energy during deceleration.
Embedded I/O can simplify basic machine integration.
This can reduce the amount of external interface equipment required for standard control functions.
The PowerFlex 753 architecture allows additional functions and options to be incorporated as the application requires.
Forced-air cooling provides an effective thermal-management approach for high-power industrial drives.
The integrated filtering configuration supports use in industrial electrical environments where electromagnetic compatibility is important.
The open-type construction allows the drive to be integrated into a larger custom electrical cabinet.
Large pumps are one of the most common applications for high-power variable frequency drives.
A pump does not necessarily need to run at full speed continuously.
The drive can adjust motor speed based on process demand.
Typical control variables include:
Applications can include:
For suitable centrifugal-pump systems, variable-speed control can also reduce unnecessary energy consumption.
Large industrial fans can require hundreds of horsepower.
The 20F1AND302JA0NNNNN can regulate fan speed according to actual airflow or pressure requirements.
Potential applications include:
Variable-speed operation allows the fan to operate closer to actual process demand.
Industrial blowers are often operated continuously.
A fixed-speed blower may provide more airflow than the process actually requires.
A variable frequency drive allows the blower to operate at different speeds.
Potential benefits include:
The blower’s torque characteristics should always be considered when selecting the duty rating.
The 20F1AND302JA0NNNNN is well suited to many large conveyor applications.
Large conveyors can contain substantial mechanical inertia.
Starting a conveyor abruptly can create mechanical shock throughout the system.
Variable-frequency control can provide a controlled acceleration ramp.
This can help reduce stress on:
The dynamic-braking transistor also provides an important advantage when the conveyor needs controlled deceleration.
Large material-handling systems can benefit from the high current and horsepower capacity of this model.
Potential applications include:
The drive can coordinate motor speed with upstream and downstream machinery.
Large compressors can require substantial motor power.
Where variable-speed operation is appropriate, the drive can provide:
Compressor applications should be evaluated carefully because compressor torque characteristics can vary considerably.
Large industrial mixers can require considerable starting torque.
The drive can provide controlled acceleration and multiple operating speeds.
A typical process may involve:
The ability to adjust speed can improve process flexibility and reduce unnecessary mechanical stress.
Large agitators are commonly used in process industries.
Typical applications include:
The drive can provide variable-speed operation according to the viscosity and process requirements.
For demanding agitator loads, the 200 HP heavy-duty rating should be evaluated against the motor nameplate current and torque profile.
The drive can serve as the motor-control element in a wide range of process machinery.
Examples include:
The drive can become part of the larger process-control system rather than operating as an isolated motor controller.
PID control is particularly useful when motor speed needs to respond automatically to a process variable.
For example:
The drive can regulate speed to maintain pressure.
The drive can regulate speed to maintain airflow or duct pressure.
The drive can adjust speed according to process pressure.
The drive can respond to a measured process variable and maintain a desired setpoint.
The basic concept is straightforward:
Measured Process Value → PID Calculation → Speed Reference → Motor Speed
This allows the drive to become part of an automatic closed-loop process-control system.
The PowerFlex 753 platform is suitable for integration with industrial automation systems.
A typical system can contain:
The controller can exchange information such as:
This type of integration is particularly valuable in large production systems where the drive must operate according to a centralized machine sequence.
The PowerFlex 753 platform can be integrated into machine-safety architectures using appropriate safety functions and options.
Potential applications include:
The final safety system must be designed according to the complete machine risk assessment.
The drive should be considered one component of the overall safety architecture.
The open-type Frame 7 construction means that cabinet design is particularly important.
The physical drive dimensions are approximately:
881.5 × 430 × 349.6 mm
However, these dimensions should not be used as the complete cabinet dimensions.
Additional space is required for:
The cabinet should be designed around the complete installation rather than the drive body alone.
At 302 A, the drive can generate considerable heat.
The cooling system should therefore be considered during cabinet design.
Important factors include:
If several drives are installed in the same cabinet, their combined heat output should be considered.
| Installation Parameter | Requirement / Consideration |
|---|---|
| Input Voltage | 380–480 VAC |
| Input Phase | 3 Phase |
| Output Current | 302 A |
| ND Rating | 250 HP |
| HD Rating | 200 HP |
| Cooling | Forced Air |
| Enclosure | IP20/IP00 Open Type |
| Cabinet | Required for protected installation |
| Dynamic Braking | DB transistor included |
| Motor Cable | Correctly sized for motor current |
| Grounding | Proper protective grounding |
| EMC | Appropriate grounding and cable routing |
| Protection | Correctly selected upstream protection |
| Thermal Design | Adequate cabinet cooling |
| Maintenance | Sufficient access clearance |
The complete electrical system must be engineered as a coordinated installation.
Motor selection should be based primarily on actual motor data and load requirements.
| Motor Parameter | Importance |
|---|---|
| Rated Voltage | Must match the drive output voltage class |
| Full-Load Current | Primary drive-sizing parameter |
| Rated Power | General selection reference |
| Rated Frequency | Required for setup |
| Rated Speed | Important for motor control |
| Torque | Critical for load matching |
| Starting Torque | Important for heavy-duty applications |
| Service Factor | Useful for application assessment |
| Motor Type | Determines control requirements |
| Encoder | Required for certain closed-loop systems |
| Duty Cycle | Determines thermal and overload requirements |
| Load Type | Determines ND/HD suitability |
The 250 HP normal-duty rating should not be interpreted as a guarantee that every 250 HP motor can be connected without further evaluation.
The motor’s full-load current must be compatible with the drive’s current rating.
| Application | Typical Duty Consideration |
|---|---|
| Centrifugal Pump | Normal Duty |
| Centrifugal Fan | Normal Duty |
| Large Blower | Normal Duty |
| Cooling Fan | Normal Duty |
| Water Circulation | Normal Duty |
| Large Conveyor | Heavy Duty / Application Specific |
| Mixer | Heavy Duty / Application Specific |
| Agitator | Heavy Duty / Application Specific |
| Compressor | Application Specific |
| High-Inertia Machine | Application Specific |
| Material Handling | Heavy Duty / Application Specific |
| Rapid-Deceleration Machine | Braking Analysis Required |
The built-in DB transistor makes this particular model more flexible for braking applications.
| Application | Braking Consideration |
|---|---|
| Centrifugal Pump | Usually moderate braking requirement |
| Fan | Usually moderate braking requirement |
| Large Blower | Application dependent |
| Conveyor | Dynamic braking may be important |
| Heavy Conveyor | Dynamic braking often requires careful analysis |
| High-Inertia Fan | Braking energy should be calculated |
| Centrifuge | Strong braking consideration |
| Mixer | Depends on inertia and stop time |
| Material Handling | Often important |
| Rapid Stop Machine | Detailed braking analysis required |
The braking resistor must be correctly selected for the regenerated energy, stopping time and duty cycle.
The following models are useful comparison choices within the PowerFlex 753 high-power range.
| Model | Voltage Class | ND Current | HD Current | ND Power | HD Power | Frame | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|---|
| 20F1AND248JA0NNNNN | 480 V | 248 A | 186 A | 200 HP | 150 HP | 6 | Approx. 665.5 × 308 × 346.4 mm | Approx. 38.6 kg |
| 20F1AND302JA0NNNNN | 480 V | 302 A | 248 A | 250 HP | 200 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 56.7 kg |
| 20F1AND367JA0NNNNN | 480 V | 367 A | Approx. 302 A | 300 HP | 250 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 56.7 kg |
| 20F1AND456JA0NNNNN | 480 V | 456 A | Approx. 367 A | 350 HP | 300 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 56.7 kg |
| 20F1AND477JA0NNNNN | 480 V | 477 A | Approx. 367 A | 400 HP | 300 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 124.7 kg* |
*Weight can vary by source, packaging and configuration; the exact installed-unit weight should be confirmed against the mechanical documentation before final cabinet or lifting design.
The 20F1AND302JA0NNNNN is an important midpoint in this high-power group.
It provides considerably more current capacity than the 248 A class while remaining below the 367 A, 456 A and 477 A configurations.
| Model | ND Current | HD Current | ND HP | HD HP | Frame | Approx. Weight |
|---|---|---|---|---|---|---|
| 20F1AND248JA0NNNNN | 248 A | 186 A | 200 HP | 150 HP | 6 | 38.6 kg |
| 20F1AND302JA0NNNNN | 302 A | 248 A | 250 HP | 200 HP | 7 | 56.7 kg |
| 20F1AND367JA0NNNNN | 367 A | Approx. 302 A | 300 HP | 250 HP | 7 | Approx. 56.7 kg |
| 20F1AND456JA0NNNNN | 456 A | Approx. 367 A | 350 HP | 300 HP | 7 | Approx. 56.7 kg |
| 20F1AND477JA0NNNNN | 477 A | Approx. 367 A | 400 HP | 300 HP | 7 | Approx. 124.7 kg* |
This progression makes the 20F1AND302JA0NNNNN a logical selection when the application requires a 250 HP normal-duty drive or a 200 HP heavy-duty drive.
The following models represent different levels within the Allen-Bradley variable-frequency-drive portfolio and can be considered when comparing application requirements.
| Model | Series | Voltage Class | Power Class | Current Class | Typical Application | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 20F1AND302JA0NNNNN | PowerFlex 753 | 480 V | 250 HP ND / 200 HP HD | 302 A | Large industrial motors | 881.5 × 430 × 349.6 mm | 56.7 kg |
| 20F1AND248JA0NNNNN | PowerFlex 753 | 480 V | 200 HP ND / 150 HP HD | 248 A | Pumps, fans, conveyors | Approx. 665.5 × 308 × 346.4 mm | Approx. 38.6 kg |
| 20F1AND477JA0NNNNN | PowerFlex 753 | 480 V | 400 HP ND / 300 HP HD | 477 A | Very large industrial motors | Frame 7 | Approx. 124.7 kg* |
| 20G1AND302JA0NNNNN | PowerFlex 755 | 480 V class | 250 HP class | 302 A class | Advanced industrial applications | Frame-dependent | Frame-dependent |
| 25B-D024N114 | PowerFlex 525 | 480 V class | Approx. 15 HP class | Medium current | Compact industrial machines | Compact | Approx. 7–10 kg |
The purpose of this comparison is to show how different Allen-Bradley drive families address different motor sizes and application requirements.
The PowerFlex 525 class is considerably smaller and is better suited to compact machines.
The PowerFlex 753 models are intended for larger industrial motor applications.
The PowerFlex 755 family is generally selected when advanced control, system integration and application flexibility are more important.
| Characteristic | 20F1AND302JA0NNNNN | PowerFlex 755 Class |
|---|---|---|
| Series | PowerFlex 753 | PowerFlex 755 |
| Main Position | General-Purpose Industrial Drive | Advanced Industrial Drive |
| Voltage | 480 V class | Multiple voltage classes |
| Power Range | High Power | Very High Power Capability |
| Application | General Industrial Motor Control | Advanced Motor and Machine Control |
| I/O | Embedded I/O | Extensive expansion capability |
| Feedback | Option-based | Extensive option support |
| Communication | Option-based | Broad communication capability |
| Safety | Available through suitable architecture/options | Extensive safety capability |
| Typical Use | Pumps, fans, conveyors, process equipment | Advanced machinery and high-performance applications |
The 20F1AND302JA0NNNNN is an excellent choice when the application requires a high-power general-purpose industrial drive without necessarily requiring every advanced function available in the larger architecture-class platform.
The drive can provide substantial benefits in large pumping applications.
Variable-speed operation allows the pump to respond to actual process demand.
For example, the pump speed can be adjusted to maintain:
This can improve process stability.
In suitable centrifugal-pump systems, it can also reduce unnecessary energy consumption compared with continuously operating the motor at full speed.
Large fans are another strong application area.
The drive can control fan speed according to:
The controlled acceleration capability can also reduce mechanical shock during startup.
For variable-torque fan systems, speed reduction can have a substantial effect on power consumption.
The 302 A current capacity gives the drive sufficient capability for many large conveyor systems.
Controlled acceleration can help protect mechanical components.
The dynamic-braking transistor is also valuable when a conveyor needs controlled stopping.
This can be particularly important for:
The final braking arrangement should still be calculated according to load inertia and stopping time.
High-inertia machinery can return significant energy to the drive during deceleration.
Examples include:
The integrated dynamic-braking transistor provides a means of managing regenerative energy with an appropriate external braking resistor.
This is an important advantage compared with configurations that do not include an internal braking transistor.
Process machinery often benefits from adjustable speed.
Instead of designing the machine around one fixed motor speed, the drive allows operating speed to become another process variable.
This can be useful for:
The ability to change speed during different production stages can improve overall machine flexibility.
Variable-speed operation can reduce unnecessary motor operation at maximum speed.
This is especially valuable for suitable variable-torque loads such as centrifugal pumps and fans.
The potential benefits include:
Actual energy savings depend strongly on the load profile and machine design.
The approximate weight of the drive is 56.7 kg, making mechanical handling an important part of installation planning.
The Frame 7 enclosure is physically large, so the mounting structure must be strong enough to support the equipment.
Installation planning should consider:
The cooling system should also be inspected periodically.
Because the drive is an open-type industrial component, the installation environment must be controlled.
Important considerations include:
The electrical cabinet should be selected according to the environmental conditions of the actual installation site.
Before selecting the 20F1AND302JA0NNNNN, verify the following:
| Selection Item | Required Evaluation |
|---|---|
| Motor Voltage | Compatible with 480 V class |
| Motor Current | Within the applicable drive rating |
| Motor Power | 250 HP ND / 200 HP HD class |
| Load Type | Determine ND or HD requirement |
| Starting Torque | Evaluate for heavy loads |
| Acceleration | Confirm required acceleration time |
| Deceleration | Determine braking requirement |
| Dynamic Braking | DB transistor available |
| Braking Resistor | Select according to regenerated energy |
| Cabinet | Adequate physical capacity |
| Cooling | Adequate forced-air ventilation |
| Environment | Suitable protected industrial environment |
| Motor Cable | Correctly sized |
| Grounding | Properly engineered |
| Communication | Select required option |
| Feedback | Add appropriate feedback option if required |
| Safety | Evaluate machine safety architecture |
| Category | Parameter | Specification |
|---|---|---|
| Product | Model | 20F1AND302JA0NNNNN |
| Product | Brand | Allen-Bradley |
| Product | Series | PowerFlex 753 |
| Product | Product Type | AC Variable Frequency Drive |
| Product | Drive Configuration | Air-Cooled AC Drive |
| Electrical | Input Voltage | 380–480 VAC |
| Electrical | Nominal Voltage | 480 VAC |
| Electrical | Input Phase | 3 Phase |
| Electrical | Input Frequency | 50/60 Hz |
| Electrical | Output Current | 302 A |
| Electrical | Normal-Duty Rating | 250 HP |
| Electrical | Heavy-Duty Rating | 200 HP |
| Electrical | Normal-Duty Power | Approx. 186 kW |
| Electrical | Heavy-Duty Power | Approx. 149 kW |
| Construction | Frame | 7 |
| Construction | Cooling | Forced Air |
| Construction | Enclosure | IP20/IP00 |
| Construction | Enclosure Type | NEMA/UL Open Type |
| Input | Input Type | AC Input with Precharge |
| Input | DC Terminals | No |
| EMC | Filtering | Filtered |
| EMC | CM Jumper | Installed |
| Braking | Dynamic Braking | DB Transistor |
| Braking | Internal Braking Transistor | Yes |
| Interface | Embedded I/O | Yes |
| Interface | HIM | Blank / No HIM |
| Control | Variable Speed | Yes |
| Control | PID | Supported |
| Mechanical | Height | Approx. 881.5 mm |
| Mechanical | Width | Approx. 430 mm |
| Mechanical | Depth | Approx. 349.6 mm |
| Mechanical | Dimensions | Approx. 881.5 × 430 × 349.6 mm |
| Mechanical | Weight | Approx. 56.7 kg |
| Installation | Mounting | Electrical Cabinet |
| Application | Motor Type | Three-Phase AC Motor |
| Application | Normal-Duty Class | 250 HP |
| Application | Heavy-Duty Class | 200 HP |
| Application | Typical Loads | Pumps, fans, blowers, conveyors, compressors |
| Cooling | Cooling Method | Forced Air |
| Enclosure | Environmental Protection | Requires Protected Installation |
| Braking | Braking Application | Suitable for Dynamic-Braking Applications |
| Model | Voltage | ND Current | HD Current | ND HP | HD HP | Frame | Dimensions | Weight |
|---|---|---|---|---|---|---|---|---|
| 20F1AND248JA0NNNNN | 380–480 V | 248 A | 186 A | 200 HP | 150 HP | 6 | Approx. 665.5 × 308 × 346.4 mm | Approx. 38.6 kg |
| 20F1AND302JA0NNNNN | 380–480 V | 302 A | 248 A | 250 HP | 200 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 56.7 kg |
| 20F1AND367JA0NNNNN | 380–480 V | 367 A | Approx. 302 A | 300 HP | 250 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 56.7 kg |
| 20F1AND456JA0NNNNN | 380–480 V | 456 A | Approx. 367 A | 350 HP | 300 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 56.7 kg |
| 20F1AND477JA0NNNNN | 380–480 V | 477 A | Approx. 367 A | 400 HP | 300 HP | 7 | Approx. 881.5 × 430 × 349.6 mm | Approx. 124.7 kg* |
*The listed weight can vary between references and configurations. For final mechanical design, use the applicable equipment drawing and shipping/installation data.
| Model | Series | Voltage Class | ND Rating | HD Rating | Current | Typical Application | Dimensions | Weight |
|---|---|---|---|---|---|---|---|---|
| 20F1AND302JA0NNNNN | PowerFlex 753 | 480 V | 250 HP | 200 HP | 302 A | Large industrial motors | 881.5 × 430 × 349.6 mm | 56.7 kg |
| 20F1AND248JA0NNNNN | PowerFlex 753 | 480 V | 200 HP | 150 HP | 248 A | Pumps, fans, conveyors | Approx. 665.5 × 308 × 346.4 mm | Approx. 38.6 kg |
| 20F1AND477JA0NNNNN | PowerFlex 753 | 480 V | 400 HP | 300 HP | 477 A | Very large industrial motors | Frame 7 | Approx. 124.7 kg* |
| 20G1AND302JA0NNNNN | PowerFlex 755 | 480 V class | 250 HP class | 200 HP class | 302 A class | Advanced industrial control | Frame-dependent | Frame-dependent |
| 25B-D024N114 | PowerFlex 525 | 480 V class | Approx. 15 HP class | Application dependent | Medium class | Compact machines | Compact | Approx. 7–10 kg |
| Motor Requirement | Recommended Model | Reason |
|---|---|---|
| Around 150 HP | 20F1AND186JA0NNNNN | Lower current requirement |
| Around 200 HP | 20F1AND248JA0NNNNN | 200 HP normal-duty class |
| Around 250 HP | 20F1AND302JA0NNNNN | 250 HP normal-duty / 200 HP heavy-duty |
| Around 300 HP | 20F1AND367JA0NNNNN | Higher 300 HP class |
| Around 350 HP | 20F1AND456JA0NNNNN | Higher current capacity |
| Around 400 HP | 20F1AND477JA0NNNNN | Highest major PowerFlex 753 class |
The motor’s actual current should always be checked before final selection.
| Application | Suggested Model Class | Main Reason |
|---|---|---|
| Large centrifugal pump | 20F1AND248JA0NNNNN | High-power variable-speed control |
| 250 HP pump | 20F1AND302JA0NNNNN | 250 HP ND capacity |
| Large fan | 20F1AND302JA0NNNNN | High-current variable-speed operation |
| Heavy conveyor | 20F1AND302JA0NNNNN | 200 HP HD capacity and DB transistor |
| Large mixer | 20F1AND302JA0NNNNN | Heavy-duty capability |
| High-inertia machine | 20F1AND302JA0NNNNN | Dynamic-braking capability |
| 300 HP motor | 20F1AND367JA0NNNNN | Higher current capacity |
| 350 HP motor | 20F1AND456JA0NNNNN | Higher power range |
| 400 HP motor | 20F1AND477JA0NNNNN | Highest major PowerFlex 753 capacity |
The 20F1AND302JA0NNNNN is a strong choice when the application requires:
The model is particularly attractive when the motor is too large for the 248 A class but does not yet require the additional capacity of the 367 A or 456 A models.
| Strength | Description |
|---|---|
| 302 A Output | Suitable for large industrial motors |
| 250 HP ND | High normal-duty power capability |
| 200 HP HD | Stronger capability for demanding loads |
| 480 VAC | Suitable for common high-power industrial systems |
| Frame 7 | Robust high-power mechanical platform |
| Forced Air | Effective cooling for high-power applications |
| Dynamic-Braking Transistor | Supports braking-system integration |
| Embedded I/O | Simplifies basic machine integration |
| Filtered | Supports industrial EMC requirements |
| Precharge | Suitable high-power input configuration |
| No DC Terminals | Straightforward conventional AC-fed architecture |
| Open Type | Flexible cabinet integration |
| Variable Speed | Supports process optimization |
| Industrial Platform | Suitable for large automation systems |
The Allen-Bradley 20F1AND302JA0NNNNN is a high-capacity PowerFlex 753 AC variable frequency drive intended for large industrial motor-control applications.
Its principal specifications include:
Its approximate dimensions are:
881.5 × 430 × 349.6 mm
Its approximate equipment weight is:
56.7 kg
The model is especially well suited to large pumps, fans, blowers, conveyors, compressors, mixers, agitators, material-handling systems and high-power process machinery.
The integrated dynamic-braking transistor is a particularly useful feature for applications where the motor must decelerate significant rotating inertia or where braking performance is an important part of the machine design.
From a selection standpoint, the 20F1AND302JA0NNNNN occupies a very useful position within the PowerFlex 753 high-power range.
The 20F1AND248JA0NNNNN provides a lower-capacity alternative, while the 20F1AND367JA0NNNNN, 20F1AND456JA0NNNNN and 20F1AND477JA0NNNNN provide progressively greater current and horsepower capability.
Overall, the 20F1AND302JA0NNNNN can be described as a 250 HP normal-duty, 200 HP heavy-duty, 480 VAC, 302 A, Frame 7 industrial AC drive intended for demanding large-motor applications where adjustable speed, controlled acceleration and deceleration, industrial automation integration and dynamic-braking capability are important.