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The 20G11JC1K5JN0NNNNN is a high-power PowerFlex 755 AC Packaged Drive designed for large three-phase AC motor applications. It belongs to the PowerFlex 750-Series, with PowerFlex 755 being the specific drive series.
This is a large industrial variable frequency drive intended for applications where motor power, current capacity, process control, network communication and long-term industrial operation are important considerations.
The model is configured for 400 VAC, three-phase input, with a rated current of 1,480 A. Its published ratings are approximately 900 kW for light duty, 850 kW for normal duty and 710 kW for heavy duty. It is a Frame 9, air-cooled configuration with an 800 mm deep MCC-style enclosure and IP54 / Type 12 protection configuration.
The model includes embedded EtherNet/IP, filtered input circuitry, AC input with precharge/DC terminals, an installed CM jumper and a blank configuration without a standard HIM keypad. It is therefore particularly suitable for centralized industrial automation systems where the drive is controlled and monitored through a plant network rather than operated primarily from a local keypad.
| Item | Detailed Information |
|---|---|
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex 750-Series |
| Specific drive series | PowerFlex 755 |
| Product type | AC Variable Frequency Drive |
| Configuration | AC Packaged Drive |
| Model | 20G11JC1K5JN0NNNNN |
| Frame size | Frame 9 |
| Cooling | Forced-air / air cooled |
| Installation type | Floor-standing MCC-style cabinet |
| Input voltage | 400 VAC |
| Input phase | 3-phase |
| Rated current | 1,480 A |
| Light-duty rating | 900 kW |
| Normal-duty rating | 850 kW |
| Heavy-duty rating | 710 kW |
| Enclosure | Type 12 / IP54 |
| Cabinet depth | 800 mm |
| Input configuration | AC input with precharge / DC terminals |
| Input filtering | Filtered |
| CM jumper | Installed |
| Dynamic braking | None |
| Human interface | Blank / no HIM |
| Network | Embedded EtherNet/IP |
| Motor-control platform | PowerFlex 755 |
| Primary application | High-power industrial AC motor control |
The product is currently identified as an active PowerFlex 755 configuration.
| Parameter | Specification |
|---|---|
| Model | 20G11JC1K5JN0NNNNN |
| Product family | PowerFlex 750-Series |
| Product series | PowerFlex 755 |
| Drive type | AC variable frequency drive |
| Product configuration | AC packaged drive |
| Input voltage | 400 VAC |
| Input phase | 3-phase |
| Input frequency | 50/60 Hz class |
| Rated output current | 1,480 A |
| Light-duty power | 900 kW |
| Normal-duty power | 850 kW |
| Heavy-duty power | 710 kW |
| Light-duty current class | Approximately 1,600 A class |
| Normal-duty current class | 1,480 A |
| Heavy-duty current class | Approximately 1,175 A class |
| Frame | Frame 9 |
| Cooling | Forced air |
| Enclosure | Type 12 / IP54 |
| Cabinet style | MCC-style |
| Cabinet depth | 800 mm |
| Approximate height | 2,200 mm class |
| Approximate width | 800 mm class |
| Approximate depth | 800 mm |
| Approximate dimensions | 2,200 × 800 × 800 mm class |
| Approximate weight | Approximately 1,000 kg class |
| Weight | Approximately 1,000 kg |
| Input arrangement | AC input with precharge / DC terminals |
| Input filter | Filtered |
| CM jumper | Installed |
| Dynamic braking | None |
| Human interface | Blank / no HIM |
| Communication | Embedded EtherNet/IP |
| Motion function | Not integrated as standard in this configuration |
| PID control | Supported |
| Safety functions | Supported through suitable configuration/options |
| Feedback | Available through compatible option modules |
| I/O expansion | Available |
| Communication expansion | Available |
| Installation | Floor-standing |
| Typical environment | Industrial electrical room / controlled industrial area |
| Main motor type | Three-phase AC motor |
| Application class | Large industrial motor control |
The electrical specifications above are consistent across current product descriptions: 1,480 A, 900 kW light duty, 850 kW normal duty, 710 kW heavy duty, 400 VAC, three phase, Frame 9, IP54, air cooled and 800 mm deep MCC-style construction.
Dimension and weight note: the approximately 2,200 × 800 × 800 mm physical size and approximately 1,000 kg weight should be treated as an equipment-planning estimate for this large packaged configuration rather than a certified shipping value. The exact cabinet dimensions and mass can change according to cabinet construction, power-section arrangement, cable compartments and installed options. For foundation design, transport, lifting and final installation, the exact mechanical configuration should be checked.
The catalog number 20G11JC1K5JN0NNNNN contains configuration information rather than functioning as a simple serial number.
The important characteristics represented by this configuration include the PowerFlex 755 family, the 400 VAC voltage class, high-current Frame 9 construction, air cooling, MCC-style enclosure, filtered input, installed CM jumper, no dynamic braking and blank local HIM configuration.
This is important because two PowerFlex 755 drives can have very similar catalog numbers while having different factory options.
For procurement and replacement work, the complete catalog number should therefore be treated as the product identity.
The PowerFlex 755 platform is designed for large industrial motor-control systems.
A conventional motor starter primarily controls whether a motor is energized or de-energized. A variable frequency drive provides considerably more control over the motor by regulating output frequency and voltage and by using advanced motor-control algorithms.
The 20G11JC1K5JN0NNNNN brings this capability into the very high-power range.
With an approximately 850 kW normal-duty rating and 1,480 A rated current, it is intended for major industrial loads rather than small machines.
The drive can regulate motor speed, manage acceleration and deceleration, control torque and communicate operating information to an industrial automation system.
This makes it particularly suitable for large production equipment where stable motor operation directly affects production efficiency, product quality and equipment life.
The biggest characteristic of the 20G11JC1K5JN0NNNNN is its high power capability.
The published rating reaches:
This places the unit in the high-power industrial-drive category.
It is appropriate for large motors used in mining, cement, water treatment, material handling, heavy manufacturing and other industrial processes.
The normal-duty current rating is approximately 1,480 A.
This high current capability makes the unit suitable for large industrial AC motors where current demand is too high for conventional compact VFDs.
The electrical installation must consequently be designed around high-current incoming and outgoing connections, appropriate protection, grounding and thermal management.
The drive uses forced-air cooling.
At this power level, heat management is a major part of the installation.
The electrical room needs sufficient ventilation, appropriate ambient temperature control and adequate clearance around the cabinet.
Cooling fans and air passages should also be included in preventive-maintenance planning.
The model uses an 800 mm deep MCC-style enclosure with an IP54 / Type 12-class configuration.
This construction is well suited to centralized industrial electrical rooms.
It provides a much more complete installation arrangement than an open-frame drive module and is particularly practical for large motor-control projects.
The drive has embedded EtherNet/IP capability.
This allows it to communicate with an appropriate industrial control system and exchange operating information such as:
| Data Category | Typical Information |
|---|---|
| Command | Start, stop, enable |
| Speed reference | Target motor speed |
| Actual speed | Current motor speed |
| Current | Motor / drive current |
| Status | Ready, running, stopped |
| Fault | Fault condition |
| Warning | Warning condition |
| Diagnostics | Drive operating information |
| Parameters | Configured operating values |
| Process information | Application-related feedback |
The PowerFlex 755 platform is designed to integrate closely with industrial automation architectures, which is particularly useful when many large drives need to be supervised from a central control system.
V/Hz control provides a relatively straightforward method of controlling AC motor speed.
It can be appropriate for applications such as certain fans, pumps and other loads where extremely precise torque regulation is not required.
Sensorless vector control provides better motor performance than basic V/Hz control without necessarily requiring an external speed-feedback device.
It can provide improved speed regulation and torque response.
This is useful for many industrial applications where load conditions vary during operation.
For applications requiring stronger torque regulation and dynamic response, advanced vector-control methods can provide more precise motor operation.
This is useful for equipment such as conveyors, compressors, process machines and high-inertia mechanical systems.
One of the most important points when selecting this model is understanding the difference between light-duty, normal-duty and heavy-duty ratings.
| Duty Rating | Power | Typical Application Characteristics |
|---|---|---|
| Light Duty | 900 kW | Relatively moderate overload requirement |
| Normal Duty | 850 kW | General industrial operation |
| Heavy Duty | 710 kW | Higher overload and demanding starting conditions |
A drive should not be selected solely by comparing motor horsepower with the largest number printed on the specification sheet.
For example, a conveyor with high starting torque may require a heavy-duty selection even if its motor nameplate power appears to fit within the normal-duty range.
Similarly, a centrifugal pump may have a relatively predictable load profile and therefore be suitable for normal-duty operation.
The motor nameplate current and actual load profile should always be considered together.
The 20G11JC1K5JN0NNNNN is particularly suitable for large pumping applications.
Typical examples include:
The ability to change motor speed allows the pumping system to follow changing process demand.
This can be more efficient than running the motor continuously at maximum speed and controlling the process using mechanical restrictions.
Large industrial fans can consume substantial electrical power.
The drive can adjust motor speed according to airflow and pressure requirements.
Typical applications include:
For applications where the fan does not need to operate continuously at full speed, variable-speed operation can provide significant operational advantages.
Large conveyors can have substantial inertia and starting torque requirements.
The drive can provide controlled acceleration instead of applying full motor torque instantaneously.
This can reduce mechanical stress on:
The result can be smoother equipment operation and better control during production changes.
Mining operations commonly contain very large motor loads.
Potential applications include:
The high-current capability of the drive makes it particularly suitable for centralized high-power motor systems.
Cement plants contain many large motors operating continuously.
Possible applications include:
The ability to integrate drive status and process information into the automation network is especially useful in large continuous-process facilities.
Large industrial motors are used extensively throughout steel and metal-processing facilities.
The drive can be applied to:
The actual motor-control method should be selected according to the mechanical characteristics of the specific equipment.
Pulp and paper facilities frequently use large motors for pumps, fans, conveyors and process machinery.
A high-power variable frequency drive can provide controlled motor speed and torque while allowing operating information to be integrated into the plant automation system.
The approximately 850 kW normal-duty and 1,480 A rating gives this drive enough capacity for very large industrial motors.
This is its primary advantage over smaller drive families.
The PowerFlex 755 platform supports several motor-control approaches.
This allows engineers to select a control strategy according to the requirements of the mechanical system.
Embedded EtherNet/IP provides a convenient way to integrate the drive into an industrial automation network.
The drive can provide operating information to the control system and receive commands or speed references from the control system.
The PowerFlex 755 platform uses a modular architecture that allows additional functions to be added according to application requirements.
Possible expansion areas include:
This provides greater flexibility than a fixed-function drive.
High-power equipment can be expensive to stop unexpectedly.
Drive diagnostics can help maintenance personnel identify operating abnormalities and fault conditions.
This can reduce troubleshooting time and improve maintenance planning.
Large motors can create considerable mechanical stress when started directly across the line.
A variable frequency drive can establish a controlled acceleration ramp.
This can reduce mechanical shock and provide a smoother startup.
Instead of operating at one fixed speed, the motor can run according to actual process requirements.
This can improve process control and, in suitable pump and fan applications, reduce unnecessary energy consumption.
The MCC-style cabinet arrangement is appropriate for centralized industrial electrical installations.
The large cabinet format provides a practical way to accommodate high-power electrical components and associated protection and connection arrangements.
Because this is a very large Frame 9 packaged drive, physical installation should be considered carefully.
| Physical Parameter | Approximate Value |
|---|---|
| Height | 2,200 mm class |
| Width | 800 mm class |
| Depth | 800 mm |
| Overall dimension | Approx. 2,200 × 800 × 800 mm |
| Weight | Approx. 1,000 kg |
| Weight unit | kg |
| Installation | Floor-standing |
| Cabinet type | MCC-style |
| Cooling | Forced air |
| Enclosure | Type 12 / IP54 |
| Frame | Frame 9 |
The 800 mm deep MCC-style construction is a defined characteristic of this configuration.
The exact installed and shipping weight can vary with the final cabinet arrangement. For lifting, transport, floor-loading and structural calculations, the exact equipment drawing should be used rather than relying on the approximate 1,000 kg planning figure.
A drive with an output current around 1,480 A requires substantial electrical infrastructure.
The installation should consider:
The actual installation design must be coordinated with the motor, transformer, switchgear and plant electrical system.
Variable frequency drives can provide substantial energy-saving potential in applications where the mechanical load does not always require full motor speed.
This is especially relevant to centrifugal pumps and fans.
For example, if a pump normally operates at full speed but the process frequently requires reduced flow, adjusting motor speed can be more efficient than maintaining full motor speed and restricting flow mechanically.
The actual savings depend on:
Therefore, energy savings should be calculated from the actual operating profile rather than assumed solely from the drive rating.
The drive’s communication and diagnostic capabilities can provide maintenance personnel with more information than a conventional motor starter.
Important information can include:
This can make troubleshooting more systematic.
For high-power equipment, maintenance planning is particularly important because an unexpected failure can affect an entire production line.
The following five models are closely related PowerFlex 755 configurations and are useful when comparing different power and voltage requirements.
| Model | Series | Voltage | Current | Light Duty | Normal Duty | Heavy Duty | Frame | Cooling |
|---|---|---|---|---|---|---|---|---|
| 20G11JC1K4JN0NNNNN | PowerFlex 755 | 400 VAC | 1,465 A | 850 kW | 800 kW | 630 kW | 9 | Air cooled |
| 20G11JC1K5JN0NNNNN | PowerFlex 755 | 400 VAC | 1,480 A | 900 kW | 850 kW | 710 kW | 9 | Air cooled |
| 20G11JC1K6JN0NNNNN | PowerFlex 755 | 400 VAC | 1,590 A | 1,000 kW | 900 kW | 710 kW | 9 | Air cooled |
| 20G11JD1K4JN0NNNNN | PowerFlex 755 | 480 VAC | 1,420 A | 1,350 HP | 1,250 HP | 1,000 HP | 9 | Air cooled |
| 20G11JF1K4JN0NNNNN | PowerFlex 755 | 690 VAC | 1,400 A | 1,500 kW | 1,400 kW | 1,120 kW | 9 | Air cooled |
The related 400 V configurations show the progression from approximately 800 kW normal duty through 850 kW and 900 kW. The 480 V and 690 V versions are useful where the plant uses a different motor-voltage class.
| Model | Normal Duty | Heavy Duty | Voltage | Current | Main Difference |
|---|---|---|---|---|---|
| 20G11JC1K4JN0NNNNN | 800 kW | 630 kW | 400 V | 1,465 A | Lower-power 400 V option |
| 20G11JC1K5JN0NNNNN | 850 kW | 710 kW | 400 V | 1,480 A | Reference model |
| 20G11JC1K6JN0NNNNN | 900 kW | 710 kW | 400 V | 1,590 A | Higher-power 400 V option |
| 20G11JD1K4JN0NNNNN | 1,250 HP | 1,000 HP | 480 V | 1,420 A | 480 V alternative |
| 20G11JF1K4JN0NNNNN | 1,400 kW | 1,120 kW | 690 V | 1,400 A | 690 V high-power alternative |
The three 400 V models are the most directly comparable because they remain in the same voltage class.
The 480 V and 690 V models should be considered when the motor and plant distribution system use those voltage levels.
The following models cover a broader range of drive sizes and are useful for comparison when the motor power is different from the 850 kW class.
| Model | Product Family | Voltage Class | Approx. Rating | Cooling | Typical Application | Size Class |
|---|---|---|---|---|---|---|
| 25B-D010N114 | PowerFlex 525 | 400 V class | 10 A class | Air cooled | Small pumps, fans and machinery | Compact |
| 25B-D017N114 | PowerFlex 525 | 400 V class | 17 A class | Air cooled | Small/medium industrial machines | Compact |
| 20F11NC011JA0NNNNN | PowerFlex 753 | 400 V class | 11 A class | Air cooled | General industrial machinery | Compact / modular |
| 20G11JC1K4JN0NNNNN | PowerFlex 755 | 400 V | 1,465 A / 800 kW ND | Air cooled | Large pumps, fans and conveyors | Large cabinet |
| 20G11JC1K6JN0NNNNN | PowerFlex 755 | 400 V | 1,590 A / 900 kW ND | Air cooled | Very large industrial motors | Large cabinet |
The PowerFlex 525 is intended for much smaller motor applications.
It is more appropriate for compact machinery, pumps, fans, conveyors and general machine automation.
Compared with the 20G11JC1K5JN0NNNNN, it belongs to a completely different power range.
The PowerFlex 753 is designed for industrial motor applications where modularity and flexible control are important.
It can be a useful choice for medium-sized machinery that does not require the enormous current capacity of the PowerFlex 755 Frame 9 platform.
The PowerFlex 755 is the appropriate family when the application requires high performance, large motor power and extensive industrial-control integration.
The 20G11JC1K5JN0NNNNN represents one of the high-power configurations within this family.
| Application | Recommended Model Range | Reason |
|---|---|---|
| Small pump | 25B-D010N114 | Compact and economical |
| Small fan | 25B-D017N114 | Suitable current range |
| Medium machine | 20F11NC011JA0NNNNN | Modular industrial drive |
| Large pump | 20G11JC1K4JN0NNNNN | High-power 400 V drive |
| Very large pump | 20G11JC1K5JN0NNNNN | 850 kW ND class |
| Extremely large motor | 20G11JC1K6JN0NNNNN | Higher-current 400 V option |
| 480 V large motor | 20G11JD1K4JN0NNNNN | 480 V configuration |
| 690 V large motor | 20G11JF1K4JN0NNNNN | 690 V configuration |
| Function | Conventional Starter | 20G11JC1K5JN0NNNNN |
|---|---|---|
| Variable speed | Limited | Yes |
| Controlled acceleration | Limited | Yes |
| Controlled deceleration | Limited | Yes |
| Torque control | Limited | Advanced |
| Network communication | Additional equipment may be required | Embedded EtherNet/IP |
| Drive diagnostics | Limited | Extensive |
| Speed reference | Basic | Programmable |
| Process integration | Limited | High |
| Motor protection | Basic | Advanced drive-based functions |
| Expansion | Limited | Modular option architecture |
| Large motor applications | Possible | Excellent |
| Pump speed control | Limited | Excellent |
| Fan speed control | Limited | Excellent |
| Conveyor control | Limited | Excellent |
The 20G11JC1K5JN0NNNNN is especially valuable in large industrial plants because the drive can be integrated into a broader automation system.
Instead of simply controlling the motor’s electrical connection, the drive can participate in the process-control architecture.
The control system can send speed references and operating commands while receiving status, current, fault and diagnostic information.
This can improve:
For a large plant containing many motors, centralized monitoring can be particularly useful.
The model is an industrial high-power cabinet drive and should be installed in an environment appropriate for electrical equipment.
Published product information identifies an operating-temperature range extending approximately from -20°C to 60°C, with the exact allowable conditions depending on configuration and application. IP54 configurations may have additional derating considerations.
The following installation factors deserve particular attention:
| Factor | Importance |
|---|---|
| Ambient temperature | Very high |
| Cabinet ventilation | Very high |
| Dust control | High |
| Humidity control | High |
| Electrical grounding | Very high |
| Cable routing | Very high |
| Motor cable length | High |
| Harmonics | High |
| Short-circuit protection | Very high |
| Maintenance clearance | High |
| Floor loading | Very high |
| Lifting access | Very high |
The specified configuration does not include a dynamic braking transistor.
This is an important point for applications with large rotating inertia.
If the motor must stop quickly, the mechanical system may return significant energy to the drive during deceleration.
Depending on the application, a separate braking or regenerative solution may therefore need to be considered.
This is especially relevant to:
The braking requirement should be evaluated before final drive selection.
The large power rating means that preventative maintenance should be taken seriously.
Important areas include:
Cooling fans are critical components in high-power air-cooled drives.
Fan condition, airflow and abnormal noise should be monitored.
Air passages should remain free of dust and contamination.
Reduced airflow can increase semiconductor and cabinet temperatures.
High-current connections require correct installation and periodic inspection.
Loose high-current connections can produce excessive heat.
The DC bus contains potentially hazardous stored energy.
Appropriate isolation and discharge procedures must be followed before maintenance.
The electrical room should be kept within the specified environmental limits.
Excessive dust, moisture and heat can shorten equipment life.
When selecting this model for a new installation, the following sequence is practical.
| Step | Selection Requirement |
|---|---|
| 1 | Identify motor power |
| 2 | Identify motor voltage |
| 3 | Identify motor full-load current |
| 4 | Determine normal-duty or heavy-duty requirement |
| 5 | Check starting torque |
| 6 | Check acceleration and deceleration requirements |
| 7 | Determine whether braking is required |
| 8 | Determine whether encoder feedback is required |
| 9 | Confirm EtherNet/IP architecture |
| 10 | Confirm required I/O |
| 11 | Confirm safety requirements |
| 12 | Check cabinet dimensions |
| 13 | Check approximately 1,000 kg class floor loading |
| 14 | Confirm ventilation |
| 15 | Confirm incoming electrical capacity |
| 16 | Confirm motor-cable arrangement |
| 17 | Confirm environmental conditions |
| 18 | Match the complete catalog number |
| Strength | Description |
|---|---|
| High power | Up to approximately 900 kW light duty |
| High normal-duty rating | 850 kW |
| High current | 1,480 A |
| Heavy-duty capability | 710 kW |
| 400 V operation | Suitable for 400 V-class industrial systems |
| Advanced control | Multiple motor-control methods |
| EtherNet/IP | Integrated industrial communication |
| Expandable | I/O, feedback, communication and safety options |
| Air cooling | Suitable for large industrial installations |
| IP54 / Type 12 | Suitable for appropriate industrial electrical environments |
| Frame 9 | Large industrial cabinet platform |
| MCC-style | Suitable for centralized electrical rooms |
| Diagnostic capability | Supports troubleshooting and maintenance |
| Variable speed | Better process control |
| Controlled acceleration | Reduced mechanical stress |
| Large motor compatibility | Suitable for major industrial machinery |
The 20G11JC1K5JN0NNNNN is a high-power PowerFlex 755 AC drive designed for large industrial motor applications.
Its 1,480 A rated current, 850 kW normal-duty rating, 710 kW heavy-duty rating and 900 kW light-duty rating place it firmly in the large industrial-drive category.
The combination of 400 VAC three-phase operation, Frame 9 construction, forced-air cooling, IP54 / Type 12 enclosure, 800 mm deep MCC-style cabinet and embedded EtherNet/IP makes it particularly suitable for centralized industrial motor-control installations.
The product is most appropriate for large pumps, fans, conveyors, compressors, mining machinery, cement-processing equipment, steel-processing equipment, water-treatment systems, material-handling equipment and other heavy industrial machines.
Its greatest practical advantages are not simply its large power rating. The more important combination is high power + flexible motor control + network connectivity + diagnostics + expandable architecture + industrial cabinet construction.
This combination allows the drive to function as part of a complete automation system rather than as an isolated motor-speed controller.
For applications where the motor operates continuously under changing process conditions, the variable-speed capability can also provide better process control and potentially reduce energy consumption.
For conveyors and other high-inertia machines, controlled acceleration and deceleration can reduce mechanical stress.
For pumps and fans, variable-speed operation can provide better process regulation and can potentially reduce energy consumption when the process frequently operates below maximum demand.
If the requirement is specifically for a 400 V-class, approximately 850 kW normal-duty, high-current industrial AC drive, the 20G11JC1K5JN0NNNNN is a strong choice within the PowerFlex 755 platform.
The closest same-series alternatives are:
For broader product selection, 25B-D010N114, 25B-D017N114, 20F11NC011JA0NNNNN, 20G11JC1K4JN0NNNNN and 20G11JC1K6JN0NNNNN provide useful comparison points across smaller, medium and very large drive applications.
Among all of these, the correct choice should ultimately be based on motor nameplate current, motor voltage, required overload, duty cycle, speed range, braking requirements, feedback requirements, network architecture, environmental conditions and cabinet space rather than motor kW alone.
The 20G11JC1K5JN0NNNNN is therefore best positioned as a large-frame, high-power, 400 V industrial variable frequency drive for demanding motor-control applications where high current capacity, process control, automation integration and reliable cabinet-based operation are required.