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The Allen-Bradley 20G1ABE295JN0NNNNN is a high-power, air-cooled AC drive belonging to the PowerFlex 755 series within the PowerFlex 750-Series product family.
It is designed for large industrial motor-control applications where high output current, substantial horsepower capability, variable-speed operation, industrial networking, and centralized automation are required.
The drive is configured for a 600 VAC, three-phase input system and provides a rated output current of 295 A. Its published duty ratings are approximately 350 HP for Light Duty, 300 HP for Normal Duty, and 250 HP for Heavy Duty.
The JN0 configuration is important because it is supplied with no local HIM. This makes the drive particularly suitable for installations where the PLC, PAC, HMI, SCADA system, or plant-level control network is intended to provide the primary operator interface.
The drive uses forced-air cooling, an AC input with precharge, no DC terminals, an EMC-filtered input configuration, and a CM jumper installed configuration. It also includes embedded EtherNet/IP for integration into an industrial automation network.
The 20G1ABE295JN0NNNNN is the newer direct-replacement configuration for the discontinued 20G1ABE295AN0NNNNN. The newer J-series configuration retains the same basic 295 A, 600 VAC, Frame 8, no-HIM concept while changing the CM-jumper configuration to the installed/preferred arrangement.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750-Series |
| Product Series | PowerFlex 755 |
| Product Type | Air-Cooled AC Drive |
| Catalog Number | 20G1ABE295JN0NNNNN |
| Configuration | PowerFlex 755 AC Packaged Drive |
| Cooling Method | Forced Air / Air Cooled |
| Input Voltage Class | 600 VAC |
| Input Phase | 3-Phase |
| Rated Output Current | 295 A |
| Light-Duty Rating | 350 HP |
| Normal-Duty Rating | 300 HP |
| Heavy-Duty Rating | 250 HP |
| Frame Size | Frame 8 |
| Enclosure | Type 1 / IP20 |
| MCC Style | 600 mm Deep |
| Input Type | AC Input with Precharge |
| DC Terminals | None |
| EMC Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | None |
| Local HIM | None / Blank Configuration |
| Network | Embedded EtherNet/IP |
| Lifecycle | Active |
| Previous Related Model | 20G1ABE295AN0NNNNN |
| Configuration Role | Newer no-HIM replacement configuration |
The model is part of the PowerFlex 755 architecture, which is intended for high-performance industrial motor control rather than small, basic variable-frequency-drive applications.
The PowerFlex 755 platform is particularly well suited to large motors, complex machines, material-handling equipment, process systems, and plant-wide automation architectures.
| Parameter | Specification |
|---|---|
| Catalog Number | 20G1ABE295JN0NNNNN |
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750-Series |
| Series | PowerFlex 755 |
| Product Type | AC Drive |
| Cooling | Forced Air / Air Cooled |
| Input Voltage | 600 VAC |
| Input Phase | 3-Phase |
| Rated Output Current | 295 A |
| Light-Duty Rating | 350 HP |
| Normal-Duty Rating | 300 HP |
| Heavy-Duty Rating | 250 HP |
| Approx. Light-Duty Power | 261 kW |
| Approx. Normal-Duty Power | 224 kW |
| Approx. Heavy-Duty Power | 186 kW |
| Frame Size | Frame 8 |
| Enclosure | Type 1 / IP20 |
| MCC Style | 600 mm Deep |
| Input Configuration | AC Input with Precharge |
| DC Input Terminals | No |
| EMC Filter | Yes |
| CM Jumper | Installed |
| Dynamic Braking | None |
| Local HIM | None |
| Display | Blank / No HIM |
| Network Interface | Embedded EtherNet/IP |
| Cooling Fan | Backward-Curved Centrifugal |
| Approx. Fan Airflow | 1,805 m³/h |
| Approx. Fan Input Power | 0.45 kW |
| Fan Efficiency | Approximately 63.7% |
| Approx. Dimensions | 2100 × 610 × 600 mm |
| Approx. Weight | Approximately 634 kg |
| Approx. Weight | Approximately 1,397 lb |
| Installation | Industrial MCC / Electrical Cabinet |
| Lifecycle | Active |
The main electrical and configuration characteristics are consistent with the current product description: 600 VAC, three-phase, 295 A, 350 HP LD, 300 HP ND, 250 HP HD, Frame 8, 600 mm deep MCC-style construction, forced-air cooling, no HIM, embedded EtherNet/IP, and filtered input with the CM jumper installed.
The dimensions and weight should be treated as engineering planning values. For a final cabinet layout, transportation plan, lifting calculation, or mechanical replacement, the exact dimensional drawing for the configured drive should be used.
The catalog number 20G1ABE295JN0NNNNN contains several useful configuration indicators.
The 20G1 portion identifies the PowerFlex 755 product structure.
The ABE portion identifies the applicable voltage/current configuration family.
The 295 indicates the nominal current class of 295 A.
The JN0 portion identifies the newer configuration and the no-HIM arrangement.
The final configuration characters complete the catalog-number structure for the specific packaged-drive arrangement.
For practical selection purposes, the most important characteristics are therefore:
600 VAC + 3-Phase + 295 A + Frame 8 + 600 mm MCC Style + No HIM + EtherNet/IP + EMC Filter + CM Jumper Installed.
The 20G1ABE295JN0NNNNN is designed for a 600 VAC three-phase electrical system.
This voltage class is particularly appropriate for large industrial installations.
At higher motor power levels, electrical current becomes a significant consideration. A higher-voltage motor system can help reduce current for a given power level compared with an equivalent lower-voltage system.
This makes the 600 VAC configuration useful in industrial plants with higher-power motors, large distribution systems, and substantial motor-control loads.
Typical installations can include large production plants, mining facilities, process plants, water infrastructure, material-handling systems, cement and aggregate facilities, and other industrial environments.
The drive has a nominal output current rating of 295 A.
This places the product firmly in the large industrial drive category.
A 295 A drive is appropriate when the connected motor requires substantial current and when the application cannot be adequately served by a smaller-frame drive.
The actual motor selection should always be based on motor nameplate current and application duty rather than horsepower alone.
For example, two motors with the same horsepower can require different drive selections because their operating conditions, efficiency, power factor, acceleration requirements, and load characteristics may be different.
The drive provides three major duty classifications.
| Duty Classification | Rated Motor Power |
|---|---|
| Light Duty | 350 HP |
| Normal Duty | 300 HP |
| Heavy Duty | 250 HP |
The Light Duty rating allows the drive to be applied to motors up to approximately 350 HP under the applicable load conditions.
The Normal Duty rating is approximately 300 HP.
The Heavy Duty rating is approximately 250 HP.
The difference is important because industrial machines can impose very different mechanical loads.
A fan or pump with a relatively predictable variable-torque load can have different drive requirements from a crusher, conveyor, mixer, or other machine with higher starting torque and transient loading.
The drive should therefore be selected according to the actual load profile.
For engineering reference:
| Rating | Approximate Metric Equivalent |
|---|---|
| 350 HP | 261 kW |
| 300 HP | 224 kW |
| 250 HP | 186 kW |
These values are approximate horsepower-to-kilowatt conversions.
They should not be interpreted as separate electrical ratings independent of the published drive duty classification.
For a final motor-drive selection, the motor nameplate current and the drive’s applicable duty rating should remain the primary selection criteria.
The 20G1ABE295JN0NNNNN uses Frame 8 construction.
Frame 8 is intended for large industrial drive applications where significant electrical power and physical component capacity are required.
The approximate physical dimensions are:
2100 mm high × 610 mm wide × 600 mm deep
The 600 mm depth corresponds to the MCC-style configuration.
This large enclosure provides the necessary space for power semiconductors, bus components, cooling equipment, input circuitry, filtering, control electronics, power terminals, and service access.
Because of the size and weight of the unit, installation should be planned before delivery.
The approximate weight is around 634 kg, or approximately 1,397 lb.
The actual shipping weight can vary according to configuration, accessories, packaging, and installation hardware.
The drive is specified as Type 1 / IP20.
This type of enclosure is intended for installation in an appropriate industrial electrical environment.
It is not designed to be treated as an outdoor weatherproof drive without additional enclosure protection.
The installation area should be evaluated for:
For harsh industrial environments, the surrounding enclosure and environmental controls should be designed accordingly.
The drive uses forced-air cooling.
Large power-conversion equipment produces considerable heat during normal operation.
The cooling system removes heat generated by the switching devices, conductors, filters, DC-bus components, and other power electronics.
The cooling fan is specified as a backward-curved centrifugal fan, with an approximate airflow of 1,805 m³/h and approximately 0.45 kW electrical input for the fan arrangement. The listed fan efficiency is approximately 63.7%.
The cooling path should therefore be kept clean and unobstructed.
Dust accumulation, blocked ventilation, excessive ambient temperature, or restricted airflow can increase the thermal stress on power electronics.
Regular inspection of the cooling system is recommended for installations operating continuously or in dusty industrial environments.
The drive uses an AC input with precharge configuration.
Precharge is important in a high-power variable-frequency drive because the DC-link capacitors require controlled charging when the drive is energized.
Without an appropriate precharge arrangement, the initial charging current could be excessive.
The catalog configuration does not provide DC input terminals.
This makes the drive primarily an AC-input unit rather than a configuration intended for direct external DC-bus connection.
The 20G1ABE295JN0NNNNN is configured with filtering.
The EMC filter helps control electrical noise associated with high-frequency switching inside the drive.
This is important because large variable-frequency drives can operate in close proximity to:
A properly designed installation should also consider motor-cable construction, grounding, cable shielding, cable routing, and installation practices.
The JN0 configuration uses the CM jumper installed arrangement.
This is a significant distinction from the earlier AN0 configuration.
The older 20G1ABE295AN0NNNNN was configured with the EMC filter arrangement associated with the previous catalog configuration, while the JN0 version is identified with the CM jumper installed configuration.
For retrofit work, this distinction should be checked carefully.
A replacement drive should not be selected only by matching voltage, current, and horsepower.
Grounding arrangement, common-mode behavior, EMC requirements, motor-cable length, and the existing electrical system should also be reviewed.
The JN0 configuration is supplied with no HIM.
This is one of the defining characteristics of the model.
A no-HIM drive is particularly appropriate when local manual operation is not required because the drive is controlled by a central automation system.
Typical control architecture may look like:
PLC / PAC → EtherNet/IP → PowerFlex 755 → Motor
The operator can interact with the machine through a central HMI or SCADA system instead of operating the drive directly from a keypad.
This arrangement is particularly useful in large automated facilities.
The no-HIM configuration has several practical benefits.
First, it provides a clean and centralized operating architecture.
Second, it avoids installing a permanent operator interface where local operation is unnecessary.
Third, it is well suited to machines where the PLC controls the complete operating sequence.
Fourth, it can simplify centralized plant supervision.
Fifth, the same drive architecture can be deployed across multiple machines while the PLC and HMI provide the operator-level interface.
The configuration is especially appropriate for large automated systems where the drives are installed inside electrical rooms, MCCs, or controlled-access electrical cabinets.
The drive includes embedded EtherNet/IP.
This allows it to communicate directly with a compatible industrial control network.
Typical network information can include:
This network capability is particularly useful for large facilities with multiple drives.
Instead of installing independent hardwired control systems for every drive, the automation system can manage many drives through a common network architecture.
The 20G1ABE295JN0NNNNN can be viewed as a high-capacity industrial motor-control platform designed for large machines.
It combines:
This combination is well suited to applications where the drive is part of a larger automated production system.
It is not primarily intended for small machine builders looking for a compact standalone inverter.
Instead, it is better suited to plant-scale machinery and large motor systems.
Large conveyors are one of the strongest applications for this drive.
Variable-speed control allows the conveyor to accelerate and decelerate in a controlled manner.
This can reduce mechanical stress on:
The drive can also be coordinated with upstream and downstream conveyors through the industrial control system.
Mining applications frequently use large motors for continuous material movement and processing.
The drive can be considered for:
The 600 VAC class and 295 A current rating make the drive suitable for large motor installations where compact low-power drives would not be adequate.
Crushers can impose substantial torque requirements on the motor.
The drive should therefore be selected based on the actual load characteristics rather than simply the motor horsepower.
The PowerFlex 755 platform provides a flexible control architecture for machines where controlled acceleration, speed management, and coordinated operation are important.
Large pumps can benefit from variable-speed control.
Potential applications include:
Speed control can allow the pump to follow changing process requirements.
Large fans and blowers are often suitable for variable-speed operation.
Applications include:
The drive can adjust motor speed according to the required airflow.
Cement and aggregate facilities frequently operate multiple high-power motors.
The drive can be applied to:
The PowerFlex 755 platform is particularly useful in these environments because multiple drive sizes can be standardized around the same general drive architecture.
The drive can also be used for large process machines.
Examples include:
The 295 A output rating gives the drive substantial motor-control capacity.
This allows the product to handle large motors without moving immediately into an even higher current class.
The maximum Light Duty rating of approximately 350 HP gives the drive significant application flexibility.
It can support large motors used in pumps, fans, conveyors, process machinery, and material-handling equipment.
The 600 VAC configuration is appropriate for high-power industrial electrical systems.
It is particularly useful where the plant already uses higher-voltage motor distribution.
The 350 HP LD, 300 HP ND, and 250 HP HD ratings allow engineers to select the drive according to the actual load profile.
This is particularly important for machines with high starting torque or intermittent overload conditions.
The integrated network interface allows the drive to participate directly in an industrial automation architecture.
This makes centralized control and diagnostics easier to implement.
The no-HIM configuration is ideal for centralized automation.
The drive can be installed in an electrical room or MCC while operators interact with the machine through the main HMI or SCADA system.
Frame 8 construction provides a robust platform for large motor-control applications.
It accommodates the physical requirements of a high-power drive, including cooling, power connections, filtering, and control electronics.
The forced-air cooling system is designed for continuous industrial operation when installed in a suitable environment.
Proper ventilation and maintenance are essential for long-term reliability.
The integrated filtering helps manage electrical noise generated by high-frequency switching.
This can be valuable in plants containing sensitive electronic control systems.
The most important related older configuration is 20G1ABE295AN0NNNNN.
| Feature | 20G1ABE295JN0NNNNN | 20G1ABE295AN0NNNNN |
|---|---|---|
| Series | PowerFlex 755 | PowerFlex 755 |
| Voltage | 600 VAC | 600 VAC |
| Phase | 3-Phase | 3-Phase |
| Current | 295 A | 295 A |
| Light Duty | 350 HP | 350 HP |
| Normal Duty | 300 HP | 300 HP |
| Heavy Duty | 250 HP | 250 HP |
| Frame | 8 | 8 |
| Cooling | Forced Air | Forced Air |
| HIM | None | None |
| EtherNet/IP | Embedded | Embedded |
| Input | AC with Precharge | AC with Precharge |
| DC Terminals | None | None |
| EMC Configuration | Filtered | EMC Filter |
| CM Jumper | Installed | Removed |
| Lifecycle | Active | Discontinued |
| Role | Current configuration | Previous configuration |
The most significant practical distinction is the newer JN configuration with the CM jumper installed.
The older AN0 configuration was discontinued, while the JN0 configuration serves as its direct replacement.
The PowerFlex 755 family provides different operator-interface configurations.
| Model Configuration | HIM | Typical Use |
|---|---|---|
| 20G1ABE295JN0NNNNN | No HIM | Centralized PLC / SCADA control |
| 20G1ABE295JN2NNNNN | Enhanced LCD Full Numeric Handheld / Local | Local commissioning and service |
| 20G1ABE295JN4NNNNN | Enhanced LCD Full Numeric Door-Mounted | Local operation at cabinet |
| 20G1ABE295AN2NNNNN | Enhanced LCD Full Numeric Handheld / Local | Older installed-base configuration |
The JN0 is the best choice when the drive does not need a permanent local operator interface.
The JN2 is better when technicians need local access during commissioning and maintenance.
The JN4 is appropriate when operators or maintenance personnel need a permanently accessible interface mounted on the cabinet door.
| Recommended Model | Voltage | Current | LD Rating | ND Rating | HD Rating | HIM | Frame |
|---|---|---|---|---|---|---|---|
| 20G1ABE295JN2NNNNN | 600 VAC | 295 A | 350 HP | 300 HP | 250 HP | Handheld / Local LCD | 8 |
| 20G1ABE295JN4NNNNN | 600 VAC | 295 A | 350 HP | 300 HP | 250 HP | Door-Mounted LCD | 8 |
| 20G1ABE355JN0NNNNN | 600 VAC | 355 A | 400 HP | 350 HP | 300 HP | No HIM | 8 |
| 20G1ABE395JN0NNNNN | 600 VAC | 395 A | 450 HP | 400 HP | 350 HP | No HIM | 8 |
| 20G1ABE435JN0NNNNN | 600 VAC | 435 A | 500 HP | 450 HP | 350 HP | No HIM | 8 |
These are useful comparison models because they remain close to the same PowerFlex 755 600 VAC architecture.
The first two models keep the same 295 A electrical rating but change the local operator-interface arrangement.
The 355 A, 395 A, and 435 A configurations increase the available current and horsepower capability for larger motors.
| Model | Main Difference | Recommended Application |
|---|---|---|
| 20G1ABE295JN0NNNNN | 295 A, no HIM | Centralized automation |
| 20G1ABE295JN2NNNNN | 295 A, local HIM | Commissioning and maintenance |
| 20G1ABE295JN4NNNNN | 295 A, door HIM | Local operator access |
| 20G1ABE355JN0NNNNN | 355 A | Larger motors |
| 20G1ABE395JN0NNNNN | 395 A | Higher-power machinery |
This makes the 20G1ABE family useful for standardizing a plant around one basic drive platform.
The engineering team can maintain a common PowerFlex 755 architecture while changing the current rating or HIM configuration according to the application.
| Model | Series | Voltage Class | Approx. Current / Capacity | Typical Application | Main Advantage |
|---|---|---|---|---|---|
| 25B-D030N114 | PowerFlex 525 | 480 VAC Class | 30 A class | General machine control | Compact and versatile |
| 25C-D030N114 | PowerFlex 523 | 480 VAC Class | 30 A class | General-purpose machinery | Compact drive platform |
| 20G1ABC302JN4NNNNN | PowerFlex 755 | 480 VAC | 302 A class | Large industrial motors | High-power Frame 8 |
| 20G1ABC460JN4NNNNN | PowerFlex 755 | 480 VAC | 460 A class | Large conveyors and process equipment | High-current capability |
| 20G1ABC650JN4NNNNN | PowerFlex 755 | 480 VAC | 650 A class | Very large industrial machinery | Very high-power application |
The PowerFlex 525 and PowerFlex 523 models are considerably smaller than the 20G1ABE295JN0NNNNN.
They are generally better suited to compact machinery, standalone equipment, and lower-power motor applications.
The PowerFlex 755 models are much closer to the 20G1ABE295JN0NNNNN in terms of architecture and application philosophy.
The physical size of this drive should be considered carefully during project planning.
The approximate dimensions are:
2100 mm × 610 mm × 600 mm
The approximate weight is:
634 kg
This means the installation is not comparable to a small cabinet-mounted VFD.
A suitable support structure, transportation method, lifting arrangement, cabinet access, and service area should be prepared before installation.
Important installation considerations include:
For replacement work, the existing installation should be measured before ordering the new drive.
The forced-air cooling system is an important part of the drive.
Maintenance personnel should periodically inspect:
A clean cooling path is particularly important for a large power converter.
In a dusty industrial environment, maintenance intervals may need to be shortened.
A typical centralized installation can use the following architecture:
Plant PLC / PAC
↓
Industrial Ethernet / EtherNet/IP
↓
20G1ABE295JN0NNNNN
↓
Large AC Motor
The HMI or SCADA system can sit at the supervisory level and provide the operator with:
The drive itself handles the motor-control function.
This separation between operator control and drive-level motor control is one of the main reasons a no-HIM configuration can be attractive in large automated plants.
| Industry | Typical Equipment |
|---|---|
| Mining | Conveyors, crushers, feeders |
| Cement | Fans, conveyors, crushers, pumps |
| Aggregate | Crushers, conveyors, screens |
| Water Treatment | Large pumps, blowers |
| Manufacturing | Large production machinery |
| Metals | Process machinery, material handling |
| Material Handling | Conveyors, transfer systems |
| Process Industry | Pumps, mixers, fans |
| Utilities | Pumps, blowers, large rotating equipment |
| Heavy Industry | Large motors and automated machinery |
The model is particularly attractive when the application requires a combination of high power and centralized control.
A smaller drive may not provide sufficient current.
A basic general-purpose drive may not provide the required networking and control architecture.
A HIM-equipped drive may not be necessary when every drive is managed through a centralized PLC and SCADA system.
The 20G1ABE295JN0NNNNN fills this role well.
It provides a large 295 A output, 600 VAC operation, 350 HP Light Duty capacity, Frame 8 construction, embedded EtherNet/IP, forced-air cooling, and a no-HIM configuration.
That combination makes it especially suitable for large automated equipment.
| Advantage | Engineering Benefit |
|---|---|
| 295 A Output | Controls large industrial motors |
| 350 HP LD | High Light Duty horsepower capability |
| 300 HP ND | Suitable for substantial continuous loads |
| 250 HP HD | Supports demanding motor-duty applications |
| 600 VAC | Suitable for high-power industrial distribution |
| Frame 8 | Large industrial power platform |
| 600 mm MCC Style | Suitable for large MCC installations |
| Forced Air | High-capacity thermal management |
| Embedded EtherNet/IP | Centralized network control |
| No HIM | Clean centralized automation architecture |
| EMC Filter | Improved electrical-noise management |
| CM Jumper Installed | Current J-series configuration |
| AC Precharge | Controlled DC-bus energization |
| No DC Terminals | Dedicated AC-input architecture |
| PowerFlex 755 | Flexible high-performance drive platform |
The Allen-Bradley 20G1ABE295JN0NNNNN is a large-frame PowerFlex 755 AC drive designed for demanding industrial motor-control applications.
Its 600 VAC three-phase input, 295 A output, 350 HP Light Duty rating, 300 HP Normal Duty rating, and 250 HP Heavy Duty rating place it in a substantial industrial power category.
The Frame 8 mechanical construction and 600 mm deep MCC-style design make it suitable for large electrical installations rather than compact machine cabinets.
The forced-air cooling system provides the thermal-management architecture required for high-power operation.
The EMC-filtered input, AC precharge, and CM jumper installed configuration provide an electrical arrangement intended for integration into an industrial power and grounding system.
The most distinctive configuration characteristic is the absence of a HIM.
This makes the JN0 version particularly suitable for centralized automation systems where the drive is controlled through PLC, PAC, HMI, SCADA, or EtherNet/IP rather than through a permanently installed local keypad.
The embedded EtherNet/IP interface further supports this architecture by allowing the drive to exchange commands, status information, operating data, and diagnostics with the plant control system.
For an existing installation, the model is also important because it represents the newer replacement configuration for the discontinued 20G1ABE295AN0NNNNN.
Compared with the older AN0 configuration, the JN0 version maintains the same general 295 A / 600 VAC / Frame 8 / no-HIM concept while using the newer CM-jumper-installed configuration.
For new equipment, this model is particularly appropriate for large conveyors, mining machinery, crushers, pumps, fans, blowers, cement and aggregate equipment, process machinery, material-handling systems, and other high-power automated equipment.
Overall, the 20G1ABE295JN0NNNNN is best regarded as a plant-level, high-power variable-speed motor controller for applications where electrical capacity, centralized automation, network communication, industrial construction, and flexible duty selection are more important than compact size or local keypad operation.