• Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive
Allen-Bradley 20G14NF023JA0NNNNN PowerFlex 755 AC Drive – Detailed Technical Specifications, Product Overview, Applications, Advantages, and Related Models 1. Product Overview The Allen-Bradley 20G14NF0……
Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G14NF023JA0NNNNN
  • PowerFlex AC Drive
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  • 2145 × 778 × 425 mm
  • 286kg
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Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive

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We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive

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Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive

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We provide 7*24 hours service to our customers. We will be there whenever you need us.

Allen Bradley 20G14NF023JA0NNNNN PowerFlex AC Drive

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All our products are priced very favorably because we have our own warehouse and supply.


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Allen-Bradley 20G14NF023JA0NNNNN PowerFlex 755 AC Drive – Detailed Technical Specifications, Product Overview, Applications, Advantages, and Related Models

1. Product Overview

The Allen-Bradley 20G14NF023JA0NNNNN is a PowerFlex 755 AC drive designed for demanding industrial motor-control applications where reliable speed control, torque management, overload capability, and flexible system integration are important.

This model is a 23 A, 690 VAC, three-phase, Frame 6 drive with an 18.5 kW Normal Duty rating and a 15 kW Heavy Duty rating. It uses a DC-input architecture with precharge, is air cooled, has an open-type construction, includes filtering with the common-mode capacitor jumper installed, and incorporates an internal dynamic-braking transistor.

The product belongs to the PowerFlex 755 series and is intended for industrial applications that require more than simple fixed-speed motor operation. It can be used in equipment where the motor must accelerate smoothly, operate across a controlled speed range, respond to changing load conditions, and decelerate in a controlled manner.

The 20G14NF023JA0NNNNN is particularly interesting for applications in which braking performance is important. The JA configuration includes an internal dynamic-braking transistor, distinguishing it from closely related JN models that do not include the internal braking transistor.


2. Brand and Product Family

Parameter Specification
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Type AC Drive / Variable Frequency Drive
Model Number 20G14NF023JA0NNNNN
Drive Configuration Common-Bus / DC-Input Configuration
Input Type DC Input with Precharge
AC Voltage Class 690 VAC
Nominal DC Bus Class 932 VDC
Phase Three Phase
Output Current Class 23 A
Normal Duty Rating 18.5 kW
Heavy Duty Rating 15 kW
Frame Frame 6
Cooling Air Cooled
Enclosure Open Type
Filtering Filtered
CM Capacitor Jumper Installed
Dynamic Braking Internal DB Transistor
HIM Blank / No HIM
Embedded Communication Embedded Ethernet/IP configuration
Mounting Orientation Vertical
Approx. Dimensions 665.5 × 308 × 346.4 mm H × W × D
Approx. Weight 14.5 kg
Intended Environment Industrial Control / Motor Control

The model description identifies it as a PowerFlex 755 air-cooled packaged drive with a 690 VAC three-phase rating, 23 A output class, 18.5 kW Normal Duty rating, 15 kW Heavy Duty rating, Frame 6 construction, filtering, installed CM jumper, internal dynamic-braking transistor, and no HIM.


3. Detailed Technical Parameters

Technical Parameter Specification
Model Number 20G14NF023JA0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product Type AC Drive
Input Architecture DC Input with Precharge
Maximum AC Input Class 690 VAC
Maximum DC Input Class 932 VDC
Input Phase Three Phase system architecture
Output Current 23 A
Normal Duty Motor Rating 18.5 kW
Heavy Duty Motor Rating 15 kW
Frame Size Frame 6
Cooling Method Air Cooled
Enclosure Type Open Type
Filtering Integrated / Filtered
Common-Mode Capacitor Jumper Installed
Dynamic Braking DB Transistor Installed
Operator Interface Blank / No HIM
Communication Embedded Ethernet/IP
Mounting Vertical
Approx. Height 665.5 mm
Approx. Width 308 mm
Approx. Depth 346.4 mm
Approx. Weight 14.5 kg
Product Construction Industrial modular drive
Typical Motor Application Medium-power industrial motors
Primary Use Variable-speed motor control
Duty Classification Normal Duty / Heavy Duty

The 23 A version is specified for 18.5 kW Normal Duty and 15 kW Heavy Duty operation. The product configuration also specifically identifies DC input with precharge, Frame 6, filtering, installed CM jumper, and a dynamic-braking transistor.

The approximate 14.5 kg figure is useful for equipment planning and handling. Mechanical dimensions should be treated as engineering reference values and verified against the exact mechanical drawing before final cabinet fabrication.


4. Model Number Explanation

The model number 20G14NF023JA0NNNNN contains several configuration identifiers.

Model Segment General Meaning
20G PowerFlex 755 AC drive family
14 Common-bus / DC-input configuration
NF High-voltage 690 VAC / common-bus family designation
023 23 A current class
J Filtered configuration with CM capacitor jumper installed
A Internal dynamic-braking transistor
0 Standard option position
NNNNN Additional default option positions

The 023 portion is particularly important because it identifies the 23 A current class.

The JA portion is also significant. The J identifies the filtering/common-mode capacitor configuration, while A indicates the presence of the internal dynamic-braking transistor. This is the principal configuration difference between the JA model and the closely related JN model.

For replacement work, it is therefore important to match the complete catalog number rather than selecting a replacement solely on the basis of motor horsepower.


5. Product Construction

The 20G14NF023JA0NNNNN is an air-cooled Frame 6 PowerFlex 755 drive.

Its open-type construction is intended for integration into a suitable electrical cabinet or industrial control enclosure. The enclosure surrounding the drive must provide the required environmental protection, ventilation, grounding, wiring separation, and service accessibility.

The Frame 6 construction gives the drive a substantial physical presence compared with smaller motor drives. This is expected because the drive is designed for a relatively high voltage class and medium-power industrial motor applications.

For cabinet design, an approximate envelope of 665.5 mm high × 308 mm wide × 346.4 mm deep can be used as an initial planning reference.

The cabinet designer should also allow additional space around the drive for cable bending, ventilation, maintenance, terminal access, and thermal management.


6. 690 VAC Three-Phase Capability

One of the defining characteristics of the 20G14NF023JA0NNNNN is its 690 VAC three-phase voltage class.

This makes the drive suitable for industrial systems using higher-voltage three-phase motors.

A 690 VAC motor system can be advantageous in larger industrial equipment because higher operating voltage allows a given power level to be transmitted at lower current compared with a lower-voltage system.

The 20G14NF023JA0NNNNN is therefore a particularly relevant choice for medium-power industrial machinery where 690 VAC motor systems are already part of the electrical architecture.

The corresponding DC-bus class is approximately 932 VDC, making correct electrical isolation, protection, precharge management, grounding, and maintenance procedures especially important.


7. 23 A Output Rating

The 23 A current rating is the central electrical rating of this particular model.

The drive provides an 18.5 kW Normal Duty rating and a 15 kW Heavy Duty rating.

Duty Mode Continuous Output Current Motor Rating
Normal Duty 23 A 18.5 kW
Heavy Duty Lower continuous current class 15 kW

The distinction between Normal Duty and Heavy Duty is important because different industrial loads have very different current characteristics.

A centrifugal fan, for example, generally behaves differently from a mixer, conveyor loaded with bulk material, or machine with frequent acceleration and deceleration.

The drive should therefore be selected based on actual motor current and application duty rather than using motor kW alone.


8. Normal Duty Operation

Under Normal Duty conditions, the 20G14NF023JA0NNNNN is rated at 23 A and is associated with an 18.5 kW motor rating.

This makes the drive well suited to applications with relatively predictable load demand and moderate overload requirements.

Typical Normal Duty applications can include conveyors, fans, pumps, material-handling equipment, and process machinery where the motor normally operates within a relatively stable load range.

When the machine is expected to run at high speed for long periods, thermal conditions should also be considered.


9. Heavy Duty Operation

The Heavy Duty rating is 15 kW.

Heavy Duty operation is relevant when the motor experiences higher torque requirements, frequent acceleration, or more severe load changes.

Examples include mixers, loaded conveyors, certain machine tools, process equipment, and other machines in which the motor may need to deliver substantial torque during acceleration.

The Heavy Duty motor rating should always be evaluated against the actual motor nameplate current and load profile.


10. Dynamic Braking

A major feature of the 20G14NF023JA0NNNNN is the internal dynamic-braking transistor.

This is identified directly in the product configuration as DB Transistor.

Dynamic braking becomes important when a motor must decelerate quickly or when the rotating load contains significant stored mechanical energy.

During deceleration, the motor can return energy to the drive’s DC bus. If this energy is not managed, the DC-bus voltage can rise.

A dynamic-braking system provides a controlled method for handling this regenerative energy through an appropriate braking resistor arrangement.

The internal transistor is therefore an important advantage for applications involving repeated stopping, rapid speed changes, high-inertia loads, or demanding deceleration profiles.


11. JA Configuration vs. JN Configuration

The difference between the JA and JN configurations is particularly important for this model.

Feature 20G14NF023JA0NNNNN 20G14NF023JN0NNNNN
Current 23 A 23 A
Normal Duty 18.5 kW 18.5 kW
Heavy Duty 15 kW 15 kW
Frame 6 6
Filtering Yes Yes
CM Jumper Installed Installed
Dynamic-Braking Transistor Yes No
Cooling Air Cooled Air Cooled
Open Type Yes Yes
Approx. Dimensions 665.5 × 308 × 346.4 mm 665.5 × 308 × 346.4 mm
Approx. Weight 14.5 kg Approx. same frame class

The two models can therefore appear very similar in terms of voltage, current, motor power, and physical size.

The braking configuration is the major distinction.

For applications where dynamic braking is required, the JA configuration is the more relevant choice.

For systems in which braking is handled elsewhere or is not required, a JN configuration may be considered.


12. Filtering and Common-Mode Capacitor Jumper

The 20G14NF023JA0NNNNN includes a filtered configuration with the common-mode capacitor jumper installed.

This configuration is useful in industrial environments where electrical noise and common-mode effects need to be managed carefully.

Variable-frequency drives naturally generate high-frequency switching components as part of their power-conversion operation.

Good installation practices remain essential, including suitable grounding, cable routing, motor-cable management, cabinet layout, and separation between power and sensitive control wiring.

The integrated filtering should therefore be viewed as one part of the overall electromagnetic compatibility strategy rather than as a replacement for correct installation practices.


13. DC Input with Precharge

The model uses DC Input with Precharge.

This is particularly relevant to common-bus drive systems.

A DC-bus drive contains substantial DC-link capacitance. When the system is initially energized, these capacitors can otherwise draw a very large charging current.

The precharge arrangement manages this initial charging process.

This architecture is useful in systems where multiple drives share a common DC-bus power source.

It can also make the drive more suitable for larger industrial machinery in which power distribution is organized around a centralized DC bus rather than individual conventional AC input sections.


14. Air-Cooled Design

The drive uses forced-air or air-cooled thermal management.

Air cooling is a familiar approach in industrial control cabinets and makes the unit practical for many manufacturing environments.

The cabinet designer should consider:

  • Ambient temperature.
  • Airflow direction.
  • Heat generated by adjacent equipment.
  • Cabinet internal temperature.
  • Required clearance.
  • Ventilation arrangement.
  • Dust and contamination.
  • Maintenance access.
  • Fan and filter maintenance.

Proper thermal management is particularly important when the drive operates continuously near its rated current.


15. Open-Type Construction

The 20G14NF023JA0NNNNN is an open-type drive.

This means the drive is intended to be installed within an appropriate enclosure rather than being treated as a completely self-contained environmental enclosure.

The final cabinet should therefore provide the environmental protection required by the installation.

The cabinet should also account for high-voltage isolation, cable entry, grounding, airflow, service access, and protection from dust, moisture, conductive contamination, and other environmental hazards.


16. No HIM Configuration

The model is supplied in a Blank / No HIM configuration.

This is useful in automated machinery where the drive is expected to be managed through the machine’s control system rather than by a permanently mounted local operator interface.

A no-HIM configuration can also provide more freedom when designing the cabinet front panel.

The machine designer can decide whether local control should be performed through a separate operator panel, machine HMI, supervisory system, or other control architecture.

For commissioning and maintenance, an appropriate method of accessing parameters and diagnostics should still be provided.


17. Dimensions and Weight

The approximate mechanical information can be summarized as follows.

Mechanical Parameter Approximate Specification
Frame Frame 6
Height 665.5 mm
Width 308 mm
Depth 346.4 mm
Approximate Weight 14.5 kg
Cooling Air Cooled
Mounting Vertical
Construction Open Type

The approximate dimensions are intended for preliminary engineering and cabinet-layout work.

The weight figure of approximately 14.5 kg is useful for handling and mounting calculations, but shipping weight and accessory-equipped weight can differ from the bare product weight.

For final enclosure fabrication, the exact mechanical drawing for the particular revision should take precedence.


18. Main Product Advantages

18.1 High-Voltage Industrial Capability

The 690 VAC class makes the drive suitable for industrial equipment operating at a higher motor voltage.

This is useful for larger machinery and installations where 690 VAC motors are already part of the plant electrical system.


18.2 18.5 kW Normal Duty Rating

The 18.5 kW Normal Duty rating gives the drive useful capacity for medium-power industrial motors.

This rating makes it a practical choice between smaller drive sizes and significantly larger high-power units.


18.3 15 kW Heavy Duty Rating

The 15 kW Heavy Duty rating provides additional flexibility for applications involving higher torque requirements.

This makes the unit more versatile than a drive intended exclusively for light-duty fan or pump loads.


18.4 Internal Dynamic-Braking Transistor

The integrated dynamic-braking transistor is one of the strongest advantages of the JA configuration.

It provides the electrical switching element required for an appropriate dynamic-braking system, making the drive particularly attractive for machinery with substantial deceleration energy.


18.5 Common DC-Bus Architecture

The DC-input configuration allows the drive to participate in common-bus power architectures.

This is particularly valuable in multi-drive machines where several motors operate as part of one coordinated system.


18.6 Filtered Configuration

The filtered configuration helps support electrical-noise management.

This can be beneficial in large control cabinets containing drives, controllers, communication equipment, instrumentation, and other electrically sensitive equipment.


18.7 Frame 6 Platform

The standardized Frame 6 construction makes it easier to compare this model with other nearby current ratings in the same family.

A designer can therefore move upward or downward in current capacity without completely changing the overall drive-family concept.


19. Industrial Applications

19.1 Conveyor Systems

The 20G14NF023JA0NNNNN is a strong candidate for industrial conveyor systems.

Conveyors frequently require controlled acceleration, stable operating speed, controlled stopping, and reliable operation under changing material loads.

The dynamic-braking capability is particularly useful when the conveyor needs relatively rapid deceleration.


19.2 Material Handling

Material-handling machinery often contains several motors and may require coordinated speed control.

The PowerFlex 755 architecture is well suited to these systems, especially where a common DC-bus architecture is desirable.

Applications can include transfer systems, production conveyors, lifting-related machinery, and automated material movement equipment.


19.3 Pumps

The drive can be applied to variable-speed pumping equipment where motor speed needs to be adjusted according to process demand.

Typical examples include process circulation, transfer, water movement, cooling systems, and industrial fluid handling.

The final drive size should be selected according to actual motor current and pump characteristics.


19.4 Fans and Blowers

Industrial fans and blowers can benefit from variable-speed operation.

Instead of operating continuously at one fixed speed, the motor can be adjusted according to airflow requirements.

For these applications, Normal Duty sizing may be particularly relevant.


19.5 Mixers

Mixers can have significant starting and acceleration requirements.

Material viscosity may change during the process, causing motor torque requirements to vary.

The 15 kW Heavy Duty rating makes this model worth considering for appropriately sized mixing equipment.


19.6 Process Machinery

Process machinery often requires stable motor speed, repeatable acceleration, and controlled stopping.

The 20G14NF023JA0NNNNN can be used in a wide range of medium-power process applications when its current and voltage ratings match the motor and load.


19.7 Machine Tools

Machine tools can require precise speed control and controlled acceleration and deceleration.

The drive can be considered for appropriate auxiliary motors and other variable-speed functions where its electrical rating matches the application.


19.8 Multi-Drive Systems

The common-bus architecture makes the product especially interesting for machinery with several drives.

In such systems, multiple motor axes can be connected to a shared DC power architecture.

This can provide a more integrated power structure than treating every drive as an independent AC-input unit.


20. Application Selection Guide

Application Suitability Main Reason
Conveyor Excellent Speed control and braking
Material Handling Excellent Medium-power motor control
Pump Good Variable-speed operation
Fan Good Efficient speed regulation
Blower Good Variable airflow control
Mixer Excellent Torque and acceleration requirements
Process Machinery Excellent Controlled speed and torque
Machine Tool Good Controlled motor operation
Multi-Drive Machine Excellent Common DC-bus architecture
High-Inertia Machine Excellent candidate Dynamic braking capability
Rapid Stop Application Excellent candidate Internal DB transistor
Light-Duty Standalone Motor Good Depends on system architecture

21. Five Recommended Same-Series / Closely Related Models

The following models are close alternatives within the same PowerFlex 755 common-bus family. They are useful when the motor power or current requirement changes.

Model Voltage Class Current Normal Duty Heavy Duty Frame Filtering Dynamic Braking
20G14NF015JA0NNNNN 690 VAC / 932 VDC 15 A 11 kW 7.5 kW 6 Filtered / CM Jumper Installed DB Transistor
20G14NF020JA0NNNNN 690 VAC / 932 VDC 20 A 15 kW 11 kW 6 Filtered / CM Jumper Installed DB Transistor
20G14NF023JN0NNNNN 690 VAC / 932 VDC 23 A 18.5 kW 15 kW 6 Filtered / CM Jumper Installed None
20G14NF030JA0NNNNN 690 VAC / 932 VDC 30 A 22 kW 18.5 kW 6 Filtered / CM Jumper Installed DB Transistor
20G14NF050JA0NNNNN 690 VAC / 932 VDC 50 A 45 kW 37 kW 6 Filtered / CM Jumper Installed DB Transistor

These models provide a useful progression around the 23 A unit. The 15 A and 20 A versions are suitable when lower motor capacity is required, while the 30 A and 50 A versions provide additional capacity. The closely related 23 A JN version is particularly useful for comparing the effect of the dynamic-braking option. The 20G14NF023JA0NNNNN configuration itself is identified as 23 A, 18.5 kW ND, 15 kW HD, Frame 6, filtered, CM-jumper installed, and DB-transistor equipped.


22. Detailed Comparison of Five Related Models

Model Input ND Current ND Power HD Power Frame Approx. Dimensions Approx. Weight
20G14NF015JA0NNNNN 932 VDC / 690 VAC class 15 A 11 kW 7.5 kW 6 665.5 × 308 × 346.4 mm ~14.5 kg
20G14NF020JA0NNNNN 932 VDC / 690 VAC class 20 A 15 kW 11 kW 6 665.5 × 308 × 346.4 mm ~14.5 kg
20G14NF023JA0NNNNN 932 VDC / 690 VAC class 23 A 18.5 kW 15 kW 6 665.5 × 308 × 346.4 mm ~14.5 kg
20G14NF030JA0NNNNN 932 VDC / 690 VAC class 30 A 22 kW 18.5 kW 6 665.5 × 308 × 346.4 mm ~14.5 kg
20G14NF050JA0NNNNN 932 VDC / 690 VAC class 50 A 45 kW 37 kW 6 665.5 × 308 × 346.4 mm ~14.5 kg

The dimensions and weights in this comparison are engineering-level references for the common Frame 6 configuration rather than shipping-package specifications.

The main selection variable between these models is therefore the electrical capacity rather than the basic physical family.


23. Five Commonly Selected Allen-Bradley Models for Comparison

The following five models are useful broader comparison points when evaluating the 20G14NF023JA0NNNNN against other Allen-Bradley drive configurations.

Model Product Family Voltage Class Current Normal Duty Heavy Duty Frame Dynamic Braking
20G14NF015JA0NNNNN PowerFlex 755 690 VAC 15 A 11 kW 7.5 kW 6 DB Transistor
20G14NF020JA0NNNNN PowerFlex 755 690 VAC 20 A 15 kW 11 kW 6 DB Transistor
20G14NF050JA0NNNNN PowerFlex 755 690 VAC 50 A 45 kW 37 kW 6 DB Transistor
20G14FD077JA0NNNNN PowerFlex 755 480 VAC 77 A 60 HP 50 HP 5 DB Transistor
20G14FC085JA0NNNNN PowerFlex 755 400 VAC 85 A 45 kW 37 kW 5 DB Transistor

These models give a useful overview of the range from medium-power 690 VAC common-bus drives to larger-current 480 VAC and 400 VAC configurations.


24. Detailed Comparison with 20G14NF020JA0NNNNN

The 20 A model is one of the closest alternatives to the 23 A model.

Parameter 20G14NF020JA0NNNNN 20G14NF023JA0NNNNN
Voltage Class 690 VAC / 932 VDC 690 VAC / 932 VDC
Current 20 A 23 A
Normal Duty 15 kW 18.5 kW
Heavy Duty 11 kW 15 kW
Frame 6 6
Filtering Yes Yes
CM Jumper Installed Installed
Dynamic Braking DB Transistor DB Transistor
Cooling Air Cooled Air Cooled
Open Type Yes Yes
Approx. Dimensions 665.5 × 308 × 346.4 mm 665.5 × 308 × 346.4 mm
Approx. Weight ~14.5 kg ~14.5 kg

The 23 A model provides a step up in current and motor-power capability without moving to a completely different Frame 6 family.

This makes it an attractive choice when a 20 A drive is close to the motor’s current requirement but does not provide sufficient margin.


25. Why the 23 A Model Is an Important Selection Point

The 23 A version sits in a useful position within the 690 VAC PowerFlex 755 common-bus range.

The 20 A model provides 15 kW Normal Duty capacity, while the 23 A model moves to 18.5 kW Normal Duty.

For a machine designer, this can provide additional capacity without immediately moving to the 30 A model.

This is particularly useful when the motor current is close to the boundary of the 20 A unit.

Rather than operating too close to the drive’s continuous current limit, selecting the 23 A model can provide a more comfortable electrical operating point when the actual application justifies the additional capacity.


26. Braking Applications

The 20G14NF023JA0NNNNN is especially attractive for machines with significant braking requirements.

Potential applications include:

  • High-inertia conveyors.
  • Rapid-cycle machinery.
  • Material-handling systems.
  • Certain lifting and lowering applications.
  • Centrifugal equipment requiring controlled stopping.
  • Process machinery with frequent speed changes.
  • Machinery with repeated acceleration/deceleration cycles.

The internal dynamic-braking transistor is useful because it provides the drive-side switching element needed for an appropriately designed braking system.

The actual braking resistor and braking energy requirements must still be calculated based on motor power, inertia, speed, stopping time, duty cycle, and frequency of braking events.


27. Common-Bus Machine Architecture

A major reason to select this model is the possibility of using it as part of a common DC-bus machine architecture.

In a multi-drive machine, several drives may share a common DC power source.

This architecture can be useful when several motors are mechanically or electrically related.

For example, a machine could have multiple conveyor sections or multiple coordinated process motors.

A centralized DC architecture can provide a more integrated power system and can be particularly attractive in large machines.

The design must nevertheless include appropriate DC-bus protection, precharge, isolation, grounding, and maintenance procedures.


28. Cabinet Design Considerations

The physical size of the drive should be considered at the beginning of cabinet design.

Cabinet Design Item Recommendation
Drive Frame Frame 6
Approx. Drive Height 665.5 mm
Approx. Drive Width 308 mm
Approx. Drive Depth 346.4 mm
Approx. Product Weight 14.5 kg
Mounting Vertical
Cooling Air Cooled
Enclosure Open Type
Service Clearance Provide sufficient working space
Power Cable Routing Keep organized and separated where appropriate
Control Wiring Avoid unnecessary proximity to high-power conductors
Grounding Provide appropriate industrial grounding
Ventilation Maintain adequate airflow
Maintenance Allow access to service areas

Cabinet design should not simply place the drive into an enclosure with minimum physical clearance.

Heat generated by the drive and other components must be considered as a complete thermal system.


29. Motor Matching

The motor’s actual nameplate current should be the starting point for final drive selection.

A motor marked 18.5 kW does not automatically guarantee that every 18.5 kW drive is suitable.

Different motors can have different full-load currents depending on motor design, voltage, efficiency, power factor, speed, and operating conditions.

The drive should therefore be selected by comparing:

  • Motor voltage.
  • Motor full-load current.
  • Motor power.
  • Motor frequency.
  • Required speed range.
  • Starting torque.
  • Acceleration time.
  • Deceleration time.
  • Duty cycle.
  • Overload requirements.
  • Ambient temperature.
  • Installation altitude.

30. Advantages for System Integrators

For system integrators, the 20G14NF023JA0NNNNN provides several useful characteristics.

First, it belongs to a broad drive family with multiple current and power ratings.

Second, its Frame 6 construction allows related models to be considered without completely redesigning the overall cabinet architecture.

Third, the DC-input configuration supports common-bus system design.

Fourth, the internal dynamic-braking transistor makes the JA configuration useful for applications where deceleration energy must be managed.

Fifth, the filtered configuration helps address electrical-noise considerations.

Sixth, the no-HIM configuration leaves the machine designer free to implement the preferred operator-interface architecture.


31. Advantages for Maintenance

From a maintenance perspective, the standardized PowerFlex 755 family can simplify equipment identification.

Technicians can identify the drive by its catalog number and then determine its current class, voltage class, braking configuration, and other major characteristics.

The model number is therefore an important maintenance reference.

For replacement work, the complete catalog number should always be compared rather than assuming that a model with the same kW rating is automatically interchangeable.

In particular, the difference between JA and JN configurations should be checked carefully.


32. Advantages for Replacement Projects

The 20G14NF023JA0NNNNN can be particularly useful as a replacement when the existing machine already uses a closely related 690 VAC PowerFlex 755 architecture.

The 23 A current class provides a practical middle point between the 20 A and 30 A versions.

The integrated dynamic-braking transistor is also an important factor when replacing an older drive that depends on dynamic braking.

Before replacement, engineers should compare:

Replacement Check Required Verification
Catalog Number Exact match or engineered replacement
Voltage 690 VAC / DC-bus requirements
Motor Current Must remain within drive capability
Motor Power Normal and Heavy Duty requirements
Braking JA vs. JN configuration
Frame Frame 6
Cooling Air-cooled requirements
Cabinet Physical clearance
Communication Existing machine-control architecture
HIM Existing operator-interface requirements
Parameter Set Verify before commissioning

33. Product Selection Summary

Requirement 20G14NF023JA0NNNNN
Medium-Power Motor Yes
690 VAC Motor System Yes
18.5 kW Normal Duty Yes
15 kW Heavy Duty Yes
Common DC Bus Yes
Dynamic Braking Yes
Filtered Configuration Yes
CM Jumper Installed Yes
Air Cooling Yes
Frame 6 Yes
Open-Type Cabinet Integration Yes
No HIM Configuration Yes
Multi-Drive Applications Very Suitable
High-Inertia Loads Suitable with correct braking design
Rapid Deceleration Suitable with correct braking-resistor design

34. Final Assessment

The Allen-Bradley 20G14NF023JA0NNNNN is a substantial industrial variable-frequency drive within the PowerFlex 755 family.

Its combination of 23 A output capability, 18.5 kW Normal Duty rating, 15 kW Heavy Duty rating, 690 VAC three-phase operation, Frame 6 construction, DC input with precharge, filtered configuration, and internal dynamic-braking transistor makes it a versatile choice for medium-power industrial machinery.

The internal dynamic-braking transistor is one of the most important characteristics of the model.

Compared with the corresponding JN configuration, the JA version is better suited to applications where controlled dynamic braking is part of the machine design.

The DC-input architecture also makes the model particularly relevant to common-bus systems and multi-drive machines.

From a mechanical perspective, the Frame 6 design provides a standardized platform for a range of nearby current ratings. This makes the 20G14NF023JA0NNNNN a useful selection when the 20 A version is too close to the motor’s current requirement but a substantially larger drive is unnecessary.

Its potential applications include conveyors, material-handling equipment, pumps, fans, blowers, mixers, process machinery, machine tools, and larger coordinated multi-drive systems.

For final selection, the most important items to verify are the motor nameplate current, operating voltage, Normal Duty or Heavy Duty classification, acceleration and deceleration requirements, braking-energy requirements, common DC-bus architecture, cabinet thermal conditions, physical dimensions, and required control/communication configuration.

Overall, the 20G14NF023JA0NNNNN is best viewed as a medium-power, high-voltage, Frame 6 PowerFlex 755 drive with common-bus capability and integrated dynamic-braking-transistor functionality, making it particularly valuable in industrial machinery where controlled motor performance and braking are both important.



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