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The Allen-Bradley 20G14NF142JN0NNNNN is a PowerFlex 755 air-cooled AC drive designed for high-power industrial motor control applications. It is a 690 VAC, three-phase, Frame 6, open-type drive with a Normal Duty rating of 142 A / 132 kW and a Heavy Duty rating of 119 A / 110 kW.
This model uses a DC input with precharge, includes the factory-installed filtering and common-mode capacitor jumper configuration, and is supplied without an operator interface module. The catalog number specifies the JN0 configuration, meaning that an internal dynamic braking transistor is not included.
The drive is intended for applications where accurate motor speed control, adjustable acceleration and deceleration, reliable operation, and integration into a larger industrial automation system are important. Its power rating makes it suitable for substantial motors used in process equipment, pumps, fans, conveyors, compressors, material handling systems, and other demanding industrial machinery.
The 20G14NF142JN0NNNNN belongs to the PowerFlex 755 family and is particularly well suited to larger installations where the drive is installed as part of an electrical control cabinet or industrial drive system rather than as a small standalone wall-mounted inverter.
| Parameter | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Series | PowerFlex 755 |
| Product Family | PowerFlex 750-Series |
| Model / Part Number | 20G14NF142JN0NNNNN |
| Product Type | Air-Cooled AC Drive |
| Drive Configuration | 755 AC Packaged Drive |
| Input Type | DC Input with Precharge |
| Input Voltage Class | 690 VAC |
| Phase | Three Phase |
| Normal Duty Current | 142 A |
| Normal Duty Power | 132 kW |
| Heavy Duty Current | 119 A |
| Heavy Duty Power | 110 kW |
| Enclosure Type | Open Type |
| Frame Size | Frame 6 |
| Cooling Method | Air Cooled |
| Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | None |
| Internal Dynamic Braking Transistor | Not Included |
| Internal Braking Resistor | Not Included |
| HIM | Blank / No HIM |
| Network Capability | Embedded EtherNet/IP capability |
| Mounting | Industrial cabinet / panel mounting |
| Approx. Operating Temperature | 0 to 50 °C |
| Relative Humidity | Approximately 5–95%, non-condensing |
| Storage Temperature | Approximately -40 to +70 °C |
| Dimensions, W × H × D | 308.0 × 665.5 × 346.4 mm |
| Weight | 38.6 kg |
| Product Construction | Industrial open-frame drive |
| Typical Application Class | Heavy industrial motor control |
The 20G14NF142JN0NNNNN is a high-power drive intended for 690 VAC-class industrial systems. Its electrical configuration is particularly useful in installations where a DC bus architecture is required.
| Electrical Parameter | Specification |
|---|---|
| Model / Part Number | 20G14NF142JN0NNNNN |
| Rated Voltage Class | 690 VAC |
| System Phase | 3 Phase |
| Input Configuration | DC Input with Precharge |
| Normal Duty Output Current | 142 A |
| Normal Duty Power Rating | 132 kW |
| Heavy Duty Output Current | 119 A |
| Heavy Duty Power Rating | 110 kW |
| Normal Duty | 132 kW class |
| Heavy Duty | 110 kW class |
| Cooling | Air Cooled |
| Frame | Frame 6 |
| Dynamic Braking | None |
| Dynamic Braking Transistor | No |
| Internal Braking Resistor | No |
| Filtering | Installed |
| CM Capacitor Jumper | Installed |
| Operator Interface | Blank / No HIM |
| Motor Control | Variable-frequency AC motor control |
| Typical Motor Type | Three-phase industrial AC motor |
| Installation Type | Cabinet / panel integration |
| Dimensions | 308.0 × 665.5 × 346.4 mm |
| Weight | 38.6 kg |
The 142 A Normal Duty rating is the key identifying electrical characteristic of this model. In applications where the motor operates continuously under relatively stable load conditions, the 132 kW Normal Duty rating provides a substantial amount of available motor power.
For more demanding applications involving frequent overload conditions, high starting torque, or significant load variation, the Heavy Duty rating of 119 A and 110 kW should be considered during drive selection.
The actual motor, load profile, ambient temperature, installation method, cable arrangement, and applicable electrical standards should always be evaluated before final drive sizing.
The 20G14NF142JN0NNNNN uses a Frame 6 mechanical platform. The frame size is important when designing the enclosure, control cabinet, mounting plate, cable routing, ventilation system, and maintenance access.
| Mechanical Parameter | Specification |
|---|---|
| Model / Part Number | 20G14NF142JN0NNNNN |
| Frame Size | Frame 6 |
| Enclosure | Open Type |
| Cooling | Air Cooled |
| Width | 308.0 mm |
| Height | 665.5 mm |
| Depth | 346.4 mm |
| Overall Dimensions | 308.0 × 665.5 × 346.4 mm |
| Approximate Weight | 38.6 kg |
| Mounting Orientation | Vertical industrial mounting |
| Installation Environment | Electrical cabinet / industrial control panel |
| Cabinet Ventilation | Required according to application heat load |
| Service Access | Front and surrounding cabinet access should be considered |
| Installation Construction | Open-frame industrial drive |
The approximately 38.6 kg weight should be taken into account when designing the mounting structure. For cabinet installations, the mounting plate should be sufficiently rigid to support the drive without excessive vibration or deformation.
The 308.0 mm width and 665.5 mm height also mean that this is not a compact machine-mounted inverter. It belongs to a higher-power industrial drive class and normally requires proper cabinet planning.
Adequate ventilation is particularly important for an air-cooled drive. The cabinet designer should provide appropriate airflow and sufficient clearance around heat-generating components.
The catalog number 20G14NF142JN0NNNNN contains useful information about the drive configuration.
| Catalog Number Section | Meaning |
|---|---|
| 20G | PowerFlex 755 drive family |
| 14 | DC-input configuration with precharge |
| N | Drive configuration identifier |
| F | 690 VAC class / related voltage configuration |
| 142 | 142 A Normal Duty rating |
| J | Filtered configuration with CM jumper installed |
| N | No internal dynamic braking transistor |
| 0 | Blank / no HIM configuration |
| NNNNN | No additional specified options in the remaining positions |
The most important distinction for this particular model is the N dynamic braking configuration.
The model therefore should not be treated as equivalent to a similarly rated model containing the internal dynamic braking transistor.
One of the most important characteristics of the 20G14NF142JN0NNNNN is that it is supplied with no internal dynamic braking transistor.
This is different from the corresponding JA0 configuration.
| Feature | 20G14NF142JN0NNNNN | 20G14NF142JA0NNNNN |
|---|---|---|
| Model / Part Number | 20G14NF142JN0NNNNN | 20G14NF142JA0NNNNN |
| Voltage Class | 690 VAC | 690 VAC |
| Normal Duty | 142 A / 132 kW | 142 A / 132 kW |
| Heavy Duty | 119 A / 110 kW | 119 A / 110 kW |
| Frame | Frame 6 | Frame 6 |
| Dynamic Braking Transistor | None | Included |
| Internal Braking Resistor | Not Included | Not Included |
| Filtering | Installed | Installed |
| CM Jumper | Installed | Installed |
| Dimensions | 308.0 × 665.5 × 346.4 mm | 308.0 × 665.5 × 346.4 mm |
| Weight | 38.6 kg | 38.6 kg |
The JN0 version can be a good choice when the application does not require the drive’s internal dynamic braking transistor.
For applications involving rapid deceleration, high-inertia loads, frequent stopping, or regenerative energy, braking requirements should be evaluated carefully. An external braking solution may be required depending on the application.
This makes the JN0 configuration particularly appropriate when braking requirements are modest or when the overall system uses another method of handling regenerative energy.
The Allen-Bradley 20G14NF142JN0NNNNN is built for large industrial motor-control systems where a high-power variable-frequency drive is required.
With a 132 kW Normal Duty rating, it can control large three-phase motors used in a wide range of industrial machinery. The 690 VAC platform is particularly relevant to facilities using higher-voltage industrial distribution systems, helping support large motor installations while keeping current levels appropriate for the power rating.
The drive’s air-cooled design provides a practical solution for cabinet-based industrial installations. Rather than requiring a liquid-cooling system, heat generated during operation is managed through forced or controlled airflow.
The open-type construction is also useful for system integrators. The drive can be installed inside a properly designed electrical cabinet together with disconnect equipment, circuit protection, contactors where required, PLC equipment, network components, terminal blocks, and other control hardware.
Another useful characteristic is the installed filtering and CM jumper configuration. This can help simplify the electrical design where the selected system requires the corresponding filtering arrangement.
The model is supplied without a HIM, which makes sense in applications where the drive is operated and monitored through a PLC, HMI, SCADA system, engineering workstation, or another control architecture.
The 20G14NF142JN0NNNNN can be used for large conveyor systems in manufacturing plants, logistics facilities, mining-related material handling, and bulk-material applications.
Variable-speed control allows the conveyor speed to be adjusted according to production requirements.
For long conveyors, the ability to control acceleration and deceleration can also help reduce mechanical stress on belts, gearboxes, couplings, and other transmission components.
Large industrial pumps are another important application.
The drive can provide adjustable motor speed so that pump output can be matched more closely to process requirements.
This can be useful in water treatment, industrial process systems, cooling systems, circulation systems, and other facilities where constant-speed operation is not always necessary.
Large fans and blowers can require substantial motor power, particularly in industrial ventilation, process exhaust, combustion-air systems, and material-processing equipment.
Variable-speed operation allows airflow to be adjusted without relying entirely on mechanical throttling.
For these applications, proper motor and drive sizing is important because fan and blower loads can have substantially different operating characteristics at different speeds.
The drive can also be considered for industrial compressor applications where variable-speed operation is appropriate.
Speed control can help coordinate compressor output with changing process demand.
The specific compressor design, motor type, acceleration requirements, minimum operating speed, and manufacturer requirements should be evaluated before selecting the final drive configuration.
High-power material handling machinery can benefit from adjustable motor speed and controlled acceleration.
Typical examples include large lifting systems, transfer equipment, industrial conveyors, and heavy-duty processing machinery.
The drive can be integrated into a larger automation system so that machine speed, acceleration, stopping, and operating status are coordinated with the rest of the production line.
The drive is suitable for many process machines that require a large three-phase AC motor and adjustable speed.
Applications can include mixers, material-processing machinery, large rotating equipment, and production machinery.
The advantage of using a variable-frequency drive in these systems is that motor speed can be adjusted electronically rather than being fixed by the motor’s direct connection to the electrical supply.
The 690 VAC platform is especially relevant to larger industrial installations.
It can be used in systems where substantial motor power is needed for material movement, crushing-related equipment, processing machinery, ventilation equipment, pumps, and other large rotating loads.
For mining or similarly demanding environments, however, enclosure, environmental protection, cooling, cable routing, grounding, and application-specific certification requirements must be considered separately.
The 132 kW Normal Duty rating provides enough capacity for large industrial motors while maintaining a relatively straightforward variable-speed drive architecture.
This makes the model suitable for installations where smaller drive families would not provide sufficient output capacity.
The 690 VAC rating is useful for high-power industrial systems.
At higher voltage levels, the current required for a given motor power can be reduced compared with lower-voltage systems. This can be beneficial when designing large motor feeders, switchgear, cable systems, and industrial distribution equipment.
The drive provides separate Normal Duty and Heavy Duty ratings.
| Rating | Current | Power |
|---|---|---|
| Normal Duty | 142 A | 132 kW |
| Heavy Duty | 119 A | 110 kW |
This distinction allows the engineer to select the drive according to the actual mechanical load.
A relatively stable load may make use of the Normal Duty rating, while a more demanding application may need to be sized according to the Heavy Duty rating.
Air cooling keeps the drive architecture relatively straightforward.
It avoids the need for a liquid cooling circuit and makes the drive suitable for conventional industrial control cabinets when the cabinet ventilation system is correctly designed.
The open-type enclosure is practical for system integrators building complete electrical panels.
The drive can be incorporated into a larger cabinet containing other automation and power-control equipment.
This provides flexibility for custom machine builders and industrial control engineers.
The PowerFlex 755 platform supports industrial network integration, including EtherNet/IP-based control architectures.
This can reduce the need for isolated drive-control wiring and allows drive status, commands, diagnostic information, and operating parameters to be incorporated into a larger automation system.
For plants using centralized PLC and HMI control, this can make the drive easier to integrate into the overall machine architecture.
The blank / no-HIM configuration is useful when a local keypad is not required.
For automated systems, operators may interact with the machine through an HMI or supervisory control system instead of directly through the drive.
This keeps the drive configuration focused on the requirements of the larger control system.
The factory configuration includes filtering with the CM jumper installed.
This can simplify system planning where the specified filtering arrangement is required.
Electrical installation should still follow the applicable drive installation requirements, grounding practices, cable recommendations, and EMC considerations.
The 20G14NF142JN0NNNNN is a large industrial drive, so cabinet planning should be done before installation.
The mechanical dimensions are approximately:
308.0 mm wide × 665.5 mm high × 346.4 mm deep
with a weight of approximately:
38.6 kg
A rigid mounting surface should be used.
The cabinet should also have enough clearance for cable connections, ventilation, inspection, maintenance, and removal of the drive when servicing is required.
The heat generated by the drive should be included in the cabinet thermal calculation. Simply providing physical space is not enough; the enclosure must also be able to maintain an acceptable internal temperature.
Because this is an air-cooled drive, airflow should not be blocked by nearby equipment, wiring ducts, cable bundles, or incorrectly positioned cabinet components.
When selecting this drive for an actual motor, the engineer should not rely only on the motor’s kW rating.
The following factors should be checked:
| Selection Factor | Consideration |
|---|---|
| Motor Voltage | Must be compatible with the selected drive system |
| Motor Current | Should remain within the appropriate drive rating |
| Motor Power | Check against Normal Duty or Heavy Duty requirements |
| Load Type | Constant torque, variable torque, or another load profile |
| Starting Torque | Important for conveyors, compressors, hoists, and heavy machinery |
| Acceleration Time | Check whether the drive can meet the required acceleration profile |
| Deceleration Time | Especially important for high-inertia loads |
| Regeneration | Determine whether braking hardware is required |
| Ambient Temperature | Verify operating conditions |
| Installation Altitude | Consider derating where applicable |
| Cabinet Cooling | Required for air-cooled installation |
| Cable Length | Evaluate motor cable requirements |
| EMC Requirements | Check filtering and grounding arrangement |
| Network Requirements | Determine PLC/HMI communication architecture |
| Motor Insulation | Verify suitability for inverter-duty operation |
| Maintenance Access | Provide adequate service clearance |
The following models are closely related PowerFlex 755 configurations. They are useful alternatives when the motor power requirement is different or when the braking configuration needs to change.
| Model / Part Number | Voltage Class | Normal Duty | Heavy Duty | Frame | Dynamic Braking | Dimensions | Weight |
|---|---|---|---|---|---|---|---|
| 20G14NF098JN0NNNNN | 690 VAC, 3 PH | 98 A / 90 kW | 82 A / 75 kW | Frame 6 | None | 308.0 × 665.5 × 346.4 mm | 38.6 kg |
| 20G14NF119JN0NNNNN | 690 VAC, 3 PH | 119 A / 110 kW | 98 A / 90 kW | Frame 6 | None | 308.0 × 665.5 × 346.4 mm | 38.6 kg |
| 20G14NF142JN0NNNNN | 690 VAC, 3 PH | 142 A / 132 kW | 119 A / 110 kW | Frame 6 | None | 308.0 × 665.5 × 346.4 mm | 38.6 kg |
| 20G14NF171JN0NNNNN | 690 VAC, 3 PH | 171 A / 160 kW | 142 A / 132 kW | Frame 7 | None | 430 × 881.5 × 349.6 mm | 72.6–108.9 kg |
| 20G14NF212JN0NNNNN | 690 VAC, 3 PH | 212 A / 200 kW | 171 A / 160 kW | Frame 7 | None | 430 × 881.5 × 349.6 mm | 72.6–108.9 kg |
The 20G14NF098JN0NNNNN is a logical choice when the required motor rating is below the 132 kW class.
The 20G14NF119JN0NNNNN provides a step between the 90 kW and 132 kW Normal Duty ranges.
The 20G14NF142JN0NNNNN is the direct same-rating reference and is therefore the most natural model for comparison.
The 20G14NF171JN0NNNNN and 20G14NF212JN0NNNNN move into the larger Frame 7 range and are appropriate when a higher-power motor is required.
If the application requires an internal dynamic braking transistor, the corresponding JA0 configurations are worth considering.
| Model / Part Number | Voltage | Normal Duty | Heavy Duty | Frame | Dynamic Braking | Dimensions | Weight |
|---|---|---|---|---|---|---|---|
| 20G14NF098JA0NNNNN | 690 VAC, 3 PH | 98 A / 90 kW | 82 A / 75 kW | Frame 6 | DB transistor included | 308.0 × 665.5 × 346.4 mm | 38.6 kg |
| 20G14NF119JA0NNNNN | 690 VAC, 3 PH | 119 A / 110 kW | 98 A / 90 kW | Frame 6 | DB transistor included | 308.0 × 665.5 × 346.4 mm | 38.6 kg |
| 20G14NF142JA0NNNNN | 690 VAC, 3 PH | 142 A / 132 kW | 119 A / 110 kW | Frame 6 | DB transistor included | 308.0 × 665.5 × 346.4 mm | 38.6 kg |
| 20G14NF171JA0NNNNN | 690 VAC, 3 PH | 171 A / 160 kW | 142 A / 132 kW | Frame 7 | DB transistor included | 430 × 881.5 × 349.6 mm | 72.6–108.9 kg |
| 20G14NF212JA0NNNNN | 690 VAC, 3 PH | 212 A / 200 kW | 171 A / 160 kW | Frame 7 | DB transistor included | 430 × 881.5 × 349.6 mm | 72.6–108.9 kg |
These models maintain the same general PowerFlex 755 platform while changing the dynamic braking configuration.
The choice between JN0 and JA0 should therefore be made based on the braking requirements of the machine rather than simply choosing the model with the higher apparent feature count.
The following are widely recognized models from the Allen-Bradley drive portfolio and cover lower-power and different PowerFlex application ranges.
| Model / Part Number | Series | Voltage Class | Current / Power Class | Typical Application | Dimensions | Weight |
|---|---|---|---|---|---|---|
| 25B-D017N114 | PowerFlex 525 | 480 VAC class | 17 A class / approximately 7.5 kW class | General machine control, conveyors, pumps, fans | Configuration dependent | Configuration dependent |
| 25B-D024N114 | PowerFlex 525 | 480 VAC class | 24 A class / approximately 11 kW class | Machine automation and general-purpose motor control | Configuration dependent | Configuration dependent |
| 25B-D030N114 | PowerFlex 525 | 480 VAC class | 30 A class / approximately 15 kW class | Pumps, fans, conveyors, machinery | Configuration dependent | Configuration dependent |
| 20G11NC5P0JA0NNNNN | PowerFlex 755 | 480 VAC class | 50 A class / approximately 37–45 kW class | Large industrial motor control | Configuration dependent | Configuration dependent |
| 20G11NC072JA0NNNNN | PowerFlex 755 | 480 VAC class | 72 A class / approximately 55 kW class | Heavy industrial equipment and process machinery | Configuration dependent | Configuration dependent |
For these models, exact mechanical dimensions and weights depend on the particular frame, enclosure, input configuration, options, and product construction. They should therefore be confirmed against the exact catalog number before being used for cabinet fabrication or shipping calculations.
For a clearer view of where the 20G14NF142JN0NNNNN fits within the 690 VAC PowerFlex 755 range, the following rating ladder is useful.
| Model / Part Number | Normal Duty Current | Normal Duty Power | Heavy Duty Current | Heavy Duty Power | Frame |
|---|---|---|---|---|---|
| 20G14NF034JN0NNNNN | 34 A | 30 kW | 30 A | 22 kW | Frame 6 |
| 20G14NF046JN0NNNNN | 46 A | 37 kW | 34 A | 30 kW | Frame 6 |
| 20G14NF050JN0NNNNN | 50 A | 45 kW | 46 A | 37 kW | Frame 6 |
| 20G14NF061JN0NNNNN | 61 A | 55 kW | 50 A | 45 kW | Frame 6 |
| 20G14NF082JN0NNNNN | 82 A | 75 kW | 61 A | 55 kW | Frame 6 |
| 20G14NF098JN0NNNNN | 98 A | 90 kW | 82 A | 75 kW | Frame 6 |
| 20G14NF119JN0NNNNN | 119 A | 110 kW | 98 A | 90 kW | Frame 6 |
| 20G14NF142JN0NNNNN | 142 A | 132 kW | 119 A | 110 kW | Frame 6 |
| 20G14NF171JN0NNNNN | 171 A | 160 kW | 142 A | 132 kW | Frame 7 |
| 20G14NF212JN0NNNNN | 212 A | 200 kW | 171 A | 160 kW | Frame 7 |
| 20G14NF263JN0NNNNN | 263 A | 250 kW | 212 A | 200 kW | Frame 7 |
This comparison shows that the 20G14NF142JN0NNNNN sits near the upper end of the Frame 6 range.
The next major step is the 171 A model, which moves to Frame 7. This can be an important consideration when designing a cabinet because moving from Frame 6 to Frame 7 changes the physical installation requirements considerably.
The 20G14NF142JN0NNNNN makes sense when the application requires a high-power 690 VAC drive but does not require an internal dynamic braking transistor.
Its combination of 142 A Normal Duty current, 132 kW Normal Duty power, 119 A Heavy Duty current, and 110 kW Heavy Duty power places it in a useful range for large industrial motors.
The Frame 6 construction also provides a relatively compact mechanical platform compared with the larger Frame 7 models in the same voltage and power family.
Another practical advantage is that the model already has the specified filtering and CM jumper configuration, reducing the amount of catalog-number customization required for that part of the installation.
The absence of a HIM can also be an advantage for automated installations where the drive is expected to operate under PLC or supervisory control instead of through a local keypad.
For panel builders and system integrators, the 20G14NF142JN0NNNNN provides a solid base drive for constructing a larger motor-control system.
The open-type design allows the drive to be installed inside a suitable control enclosure along with circuit protection, disconnect equipment, control components, network equipment, terminal blocks, and other system hardware.
Its Frame 6 dimensions are large enough that cabinet layout should be planned carefully, but the dimensions remain manageable compared with the larger Frame 7 drives.
The 38.6 kg weight should also be included in the mechanical design of the mounting plate and cabinet.
From a system architecture perspective, the PowerFlex 755 platform is intended for applications where drive control is part of a broader automation system rather than a simple standalone motor-speed controller.
For the end user, one of the main benefits is the ability to control large motors with adjustable speed rather than operating them continuously at fixed line frequency.
This can improve process flexibility and allow machine speed to be matched to production requirements.
The drive can also provide controlled acceleration and deceleration, which can reduce mechanical shock compared with direct-on-line motor starting in suitable applications.
In process systems, variable-speed operation can help operators adjust production rates and coordinate different sections of a machine.
In addition, network integration can make drive status and control information available to the larger automation system.
| Application | Suitability | Main Reason |
|---|---|---|
| Large Conveyor | Excellent | High power and adjustable motor speed |
| Large Pump | Excellent | Variable-speed process control |
| Industrial Fan | Excellent | Adjustable airflow and motor speed |
| Large Blower | Excellent | High-power variable-speed operation |
| Material Handling | Excellent | Controlled acceleration and speed |
| Process Machinery | Excellent | Flexible motor control |
| Compressor | Good to Excellent | Suitable where variable-speed compressor operation is supported |
| Mixer | Good | High-power motor control |
| High-Inertia Load | Good, with braking review | Deceleration and regenerative energy must be evaluated |
| Hoist / Crane | Application-specific | Braking and safety requirements require detailed engineering |
| High-Speed Spindle | Generally not the primary target | Requires application-specific drive and motor selection |
The two ratings should not be confused.
For this model:
Normal Duty: 142 A / 132 kW
Heavy Duty: 119 A / 110 kW
Normal Duty is generally associated with applications where the motor load profile is less severe.
Heavy Duty is intended for applications with greater overload demand or more demanding torque characteristics.
The correct rating should be selected according to the actual motor current and load profile rather than selecting the drive solely by the motor’s nameplate kW.
For example, a motor that appears to be within the 132 kW range may still require a larger drive if its application has significant starting torque, frequent acceleration, repeated overloads, or other demanding operating conditions.
| Item | Value |
|---|---|
| Model / Part Number | 20G14NF142JN0NNNNN |
| Frame | Frame 6 |
| Construction | Open Type |
| Cooling | Air Cooled |
| Width | 308.0 mm |
| Height | 665.5 mm |
| Depth | 346.4 mm |
| Dimensions | 308.0 × 665.5 × 346.4 mm |
| Weight | 38.6 kg |
| Installation | Vertical cabinet / panel installation |
| Cabinet Requirement | Suitable industrial enclosure |
| Thermal Management | Cabinet airflow and heat dissipation required |
| Parameter | Final Specification |
|---|---|
| Model / Part Number | 20G14NF142JN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Family | PowerFlex 750-Series |
| Product | PowerFlex Air-Cooled 755 AC Drive |
| Input | DC Input with Precharge |
| Voltage | 690 VAC |
| Phase | Three Phase |
| Normal Duty | 142 A / 132 kW |
| Heavy Duty | 119 A / 110 kW |
| Frame | 6 |
| Enclosure | Open Type |
| Cooling | Air Cooled |
| Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | None |
| DB Transistor | Not Included |
| Internal Braking Resistor | Not Included |
| HIM | Blank / No HIM |
| Network | Embedded EtherNet/IP capability |
| Operating Temperature | Approximately 0–50 °C |
| Relative Humidity | Approximately 5–95%, non-condensing |
| Storage Temperature | Approximately -40 to +70 °C |
| Width | 308.0 mm |
| Height | 665.5 mm |
| Depth | 346.4 mm |
| Dimensions | 308.0 × 665.5 × 346.4 mm |
| Weight | 38.6 kg |
| Primary Use | High-power industrial AC motor control |
The Allen-Bradley 20G14NF142JN0NNNNN is a high-power PowerFlex 755 AC drive designed for demanding industrial motor-control applications.
Its 690 VAC three-phase input class, 142 A Normal Duty rating, 132 kW Normal Duty capacity, 119 A Heavy Duty rating, and 110 kW Heavy Duty capacity make it suitable for large industrial motors and machinery.
The Frame 6 air-cooled open-type construction is well suited to cabinet-based installations where the drive is integrated into a larger electrical and automation system.
Its filtered configuration with CM jumper installed provides a defined factory configuration for industrial system integration, while the blank/no-HIM configuration makes it appropriate for installations where local keypad operation is not required.
The most important point when specifying this exact catalog number is its JN0 dynamic-braking configuration. The drive does not contain the internal dynamic braking transistor. If the machine requires aggressive deceleration or significant braking of a high-inertia load, the braking arrangement should therefore be evaluated separately during system design.
With dimensions of approximately 308.0 × 665.5 × 346.4 mm and a weight of approximately 38.6 kg, cabinet construction and mechanical support should be planned accordingly.
Overall, this model is best viewed as a large industrial variable-frequency drive for applications requiring substantial motor power, reliable speed control, industrial network integration, and flexible integration into a larger automation system.