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The 20G11JC1K0JN0NNNNN is a high-power air-cooled AC variable-frequency drive in the PowerFlex 755 series.
It is designed for large three-phase motor applications where high output current, high motor power, industrial enclosure protection, networked control and reliable speed regulation are required.
This particular configuration is a 400 VAC, three-phase, 1,040 A, Frame 9 drive. Its rated power capability is approximately 630 kW in light-duty operation, 560 kW in normal-duty operation and 500 kW in heavy-duty operation.
The unit uses an 800 mm deep MCC-style enclosure, forced-air cooling and IP54 / Type 12 protection. It also has embedded EtherNet/IP capability, making it suitable for integration into larger industrial automation and process-control systems.
The model is particularly appropriate for large pumps, fans, blowers, conveyors, compressors, material-handling systems, mining equipment, cement machinery, steel-processing equipment and other high-power rotating machinery.
| Item | Specification |
|---|---|
| Model | 20G11JC1K0JN0NNNNN |
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex 755 |
| Product Category | AC Variable Frequency Drive |
| Product Type | High-Power Packaged AC Drive |
| Cooling Method | Forced Air / Air Cooled |
| Frame Size | Frame 9 |
| Input Voltage | 400 VAC |
| Input Phase | 3 Phase |
| Nominal Output Current | 1,040 A |
| Light-Duty Rating | 630 kW |
| Normal-Duty Rating | 560 kW |
| Heavy-Duty Rating | 500 kW |
| Enclosure | IP54 / NEMA Type 12 |
| Cabinet Style | 800 mm Deep MCC Style |
| Input Configuration | AC Input with Precharge and DC Terminals |
| EMC / CM Configuration | Filtered, CM Jumper Installed |
| Dynamic Braking | None |
| Human Interface Module | Blank / No HIM |
| Communication | Embedded EtherNet/IP |
| Installation | Floor-mounted industrial cabinet |
| Cooling | Forced Air |
| Dimensions | Large MCC cabinet configuration |
| Weight (kg) | Approximately 1,197 kg, configuration dependent |
The model designation is important because the final characters specify the detailed configuration.
In particular, this model is not simply a generic 755 drive. The complete catalog number identifies the voltage class, frame, enclosure arrangement, input configuration, filtering configuration, braking configuration, display configuration and other options.
| Classification | Product Information |
|---|---|
| Brand | Allen-Bradley |
| Family | PowerFlex |
| Series | PowerFlex 755 |
| Series Group | PowerFlex 750-Series |
| Product Level | High-Performance / Architecture-Class Drive |
| Application Level | Medium- to Very-High-Power Industrial |
| Model | 20G11JC1K0JN0NNNNN |
The PowerFlex 755 series is designed for applications where the variable-frequency drive needs to provide considerably more than basic motor speed control.
It is intended for integration into sophisticated industrial automation systems and supports multiple motor-control strategies, feedback options, I/O configurations, communication options and application-specific functions.
The 20G11JC1K0JN0NNNNN is a large-capacity AC drive designed to regulate the speed, torque and operating characteristics of high-power three-phase AC motors.
Its 1,040 A nominal output-current rating places it in the high-power industrial category.
The drive can be used to control motors in applications where direct-on-line starting would result in excessive starting current, mechanical shock or undesirable process behavior.
Instead of simply applying full voltage to the motor, the drive can regulate the electrical frequency and voltage supplied to the motor.
This makes it possible to control motor speed according to the requirements of the process.
For a large industrial motor, this can provide substantial operational benefits.
For example, a large pump does not always need to operate at full speed.
A large fan may require different airflow levels depending on production requirements.
A conveyor may need controlled acceleration rather than an immediate start.
A process machine may need precise speed regulation throughout different stages of production.
The drive provides the electrical control platform required for these types of applications.
| Electrical Parameter | Rating |
|---|---|
| Model | 20G11JC1K0JN0NNNNN |
| Input Voltage | 400 VAC |
| Input Phase | 3 Phase |
| Output Current | 1,040 A |
| Light-Duty Current | 1,040 A class |
| Normal-Duty Current | 1,040 A |
| Heavy-Duty Current | 880 A |
| Light-Duty Power | 630 kW |
| Normal-Duty Power | 560 kW |
| Heavy-Duty Power | 500 kW |
| Light-Duty Overload | Approx. 110% for 1 minute |
| Normal-Duty Overload | Application-dependent |
| Heavy-Duty Overload | Higher short-term overload capability |
| Input Type | AC Input with Precharge |
| DC Terminals | Yes |
| Dynamic Braking | None |
| EMC Filtering | Filtered |
| Common-Mode Jumper | Installed |
| Frame | 9 |
The three power ratings should be understood according to the actual application duty.
The highest rating, 630 kW, is associated with light-duty operation.
The 560 kW rating is the normal-duty rating.
The 500 kW rating is the heavy-duty rating.
For a real motor selection, the motor’s nameplate current and required overload capability are more important than simply comparing motor horsepower or kilowatts.
The light-duty rating is approximately:
630 kW
Light-duty operation is normally associated with applications where the load profile is comparatively smooth and does not continuously demand high overload torque.
Typical examples include large variable-torque loads.
Potential applications include:
The light-duty rating allows the same physical drive platform to support a larger motor power than would be possible under a more demanding heavy-duty operating profile.
The normal-duty rating is:
560 kW
This is one of the most important specifications for the model.
A motor with a nominal output around 560 kW may be a potential application, provided its rated current, voltage, speed, torque and overload requirements are compatible with the drive.
Normal-duty operation is appropriate for many continuous industrial processes.
Examples include:
The heavy-duty rating is approximately:
500 kW
Heavy-duty operation should be considered when the application has higher starting torque, acceleration requirements or repeated overload conditions.
Potential examples include:
The 500 kW heavy-duty rating should be used instead of the higher light-duty rating when the actual load profile demands the additional overload capability.
| Mechanical Parameter | Specification |
|---|---|
| Model | 20G11JC1K0JN0NNNNN |
| Frame | Frame 9 |
| Construction | Packaged AC Drive |
| Cooling | Forced Air |
| Enclosure | IP54 / NEMA Type 12 |
| Cabinet Type | 800 mm Deep MCC Style |
| Installation | Floor Mounted |
| Mounting Orientation | Vertical |
| Cabinet Depth | Approx. 800 mm class |
| Cabinet Height | Configuration-dependent |
| Cabinet Width | Configuration-dependent |
| Approx. Overall Dimensions | Large MCC cabinet class |
| Approx. Dimensions | Approx. 2300 mm H × 1300 mm W × 800 mm D |
| Weight (kg) | Approx. 1,197 kg |
| Service Access | Front / installation dependent |
| Ventilation | Required |
| Installation Environment | Industrial |
The exact final dimensions can vary with the complete cabinet arrangement and accessories.
The 800 mm depth is an important characteristic of this particular MCC-style configuration.
Because this is a floor-mounted high-power drive rather than a small wall-mounted inverter, sufficient installation space must be reserved around the equipment.
The approximate mechanical envelope can be described as:
Height: approximately 2300 mm
Width: approximately 1300 mm
Depth: approximately 800 mm
Weight: approximately 1,197 kg
| Mechanical Item | Approximate Value |
|---|---|
| Height | 2300 mm |
| Width | 1300 mm |
| Depth | 800 mm |
| Weight (kg) | 1,197 kg |
| Installation | Floor-mounted |
| Cabinet Type | MCC-style |
| Frame | Frame 9 |
The dimensions and weight should be regarded as engineering-level approximate values for the packaged configuration, rather than a substitute for the final mechanical drawing.
For transportation, foundation calculations, lifting equipment and site installation, the exact configuration drawing should always take precedence.
The drive uses:
IP54 / NEMA Type 12
This provides a significantly more enclosed configuration than an open-frame drive.
It is appropriate for many indoor industrial electrical environments where protection against dust and incidental moisture is necessary.
| Protection Characteristic | Specification |
|---|---|
| IP Rating | IP54 |
| NEMA / UL Type | Type 12 |
| Construction | Enclosed |
| Installation | Industrial |
| Dust Protection | Suitable within specified environmental limits |
| Moisture Protection | Suitable for incidental moisture exposure |
| Outdoor Installation | Requires separate environmental assessment |
| Washdown Environment | Requires additional evaluation |
IP54 should not be interpreted as unlimited protection against water.
High-pressure washdown, corrosive atmospheres, condensation and outdoor exposure require additional engineering consideration.
The 20G11JC1K0JN0NNNNN uses forced-air cooling.
This is necessary because the power conversion section produces significant heat during normal operation.
At a power level of several hundred kilowatts, thermal management becomes an important part of the overall system design.
The installation should therefore consider:
A high-power drive can perform reliably for long periods when the cooling system is properly maintained.
The model uses:
AC Input with Precharge and DC Terminals
The precharge arrangement helps manage the initial charging of the drive’s DC-link capacitors when the equipment is energized.
This is particularly important for a high-power drive because the DC-link energy storage system is considerably larger than that found in a small industrial inverter.
The DC terminals also provide flexibility for certain system architectures.
The configuration specifies:
Dynamic Braking: None
This is important when evaluating the model for applications involving large rotating inertia.
If the process requires rapid deceleration, the energy returned from the motor during deceleration must be managed appropriately.
Potential system-level solutions may include:
For a motor in the 500–630 kW range, the amount of regenerative energy can be considerable.
Consequently, braking should be considered during the initial system design rather than added as an afterthought.
The model uses a filtered configuration with the common-mode jumper installed.
This arrangement is intended to help manage electromagnetic interference and common-mode electrical effects associated with variable-frequency drive operation.
Correct installation remains essential.
Important installation practices include:
The drive’s filtering arrangement should therefore be considered one part of the overall EMC design.
The PowerFlex 755 platform is designed for integration with industrial Ethernet systems.
The drive can therefore become part of a larger control architecture instead of operating as an isolated motor controller.
A typical system can be represented as:
Supervisory Control
↓
PLC / Process Controller
↓
Industrial Ethernet
↓
PowerFlex 755 Drive
↓
Large AC Motor
↓
Pump / Fan / Conveyor / Process Equipment
This type of arrangement is useful in large plants containing many motors.
| Information | Typical Function |
|---|---|
| Start Command | Starts motor operation |
| Stop Command | Stops motor |
| Speed Reference | Sets target speed |
| Frequency Reference | Sets operating frequency |
| Actual Speed | Reports motor speed |
| Output Current | Reports motor loading |
| Output Frequency | Reports drive operating frequency |
| Drive Status | Indicates drive state |
| Fault Status | Reports faults |
| Alarm Status | Reports warnings |
| Torque | Helps evaluate mechanical loading |
| Diagnostic Information | Supports maintenance |
| Parameter Information | Supports configuration |
This makes the drive useful in automated process environments where operators need access to motor information from a centralized control system.
Large pumps are among the most suitable applications for this type of drive.
Potential applications include:
Variable-speed operation allows the pump to adjust its output to the process rather than continuously operating at full speed.
Large industrial fans can consume hundreds of kilowatts.
Typical applications include:
Fan applications are often particularly suitable for variable-speed control because airflow can be adjusted according to process demand.
The drive can also be used for large blowers.
Typical applications include:
Large conveyors can require very high motor torque and substantial acceleration capability.
Potential applications include:
The drive can provide controlled acceleration and speed regulation.
High-power variable-frequency drives are frequently applicable to large mining machinery.
Potential uses include:
The high current capability of this model makes it particularly relevant to large motor installations.
Potential applications include:
Potential applications include:
Potential applications include:
| Application | Suitability | Main Reason |
|---|---|---|
| Large Pump | Excellent | High-power variable-speed control |
| Large Fan | Excellent | Variable airflow control |
| Large Blower | Excellent | Large motor control |
| Conveyor | Excellent | Controlled acceleration and speed |
| Mining Equipment | Excellent | High current and rugged industrial architecture |
| Cement Equipment | Excellent | High-power centralized motor control |
| Steel Processing | Excellent | Large process motors |
| Material Handling | Excellent | Speed and torque regulation |
| Process Machinery | Excellent | Networked drive control |
| Large Production Lines | Excellent | Centralized automation integration |
| Small Machinery | Poor Fit | Excessive capacity |
| Small Pumps | Poor Fit | Drive is unnecessarily large |
The 1,040 A nominal output capability is the defining characteristic of this model.
It allows the drive to operate large industrial motors that would be beyond the practical range of compact variable-frequency drives.
The model provides:
This makes it suitable for a wide range of large industrial loads.
Different industrial applications have different load profiles.
A fan does not have the same torque requirement as a crusher.
A pump does not have the same acceleration requirement as a conveyor.
By providing different duty ratings, the drive can be matched more appropriately to the actual mechanical load.
The IP54 / Type 12 configuration gives the equipment a higher degree of environmental protection than an open-frame configuration.
This is useful in industrial electrical rooms and process environments.
The 800 mm deep MCC-style enclosure is suitable for integration into large industrial electrical installations.
It is designed more like a major plant electrical system component than a small standalone inverter.
Embedded EtherNet/IP capability allows the drive to participate in a larger automation network.
This can simplify:
The PowerFlex 755 platform supports multiple motor-control approaches, making it adaptable to different motor types and application requirements.
Depending on the configuration, the platform can be applied to:
The appropriate control method depends on the motor and required application performance.
The PowerFlex 755 architecture provides useful diagnostic capabilities for large industrial installations.
Maintenance personnel can monitor conditions such as:
This is useful for preventive maintenance.
Instead of waiting for a large motor system to fail, operators can monitor trends and investigate abnormal operating conditions.
The following models are useful comparison choices around the same high-power range.
| Model | Series | Voltage | Output Current | Light Duty | Normal Duty | Heavy Duty | Frame | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|---|---|
| 20G11JC910JN0NNNNN | PowerFlex 755 | 400 VAC | 910 A | 560 kW | 500 kW | 400 kW | 9 | Large MCC / configuration-dependent | Approx. 1,047 |
| 20G11JC1K0JN0NNNNN | PowerFlex 755 | 400 VAC | 1,040 A | 630 kW | 560 kW | 500 kW | 9 | Approx. 2300 × 1300 × 800 mm | Approx. 1,197 |
| 20G11JC1K1JN0NNNNN | PowerFlex 755 | 400 VAC | 1,090 A | 710 kW | 630 kW | 500 kW | 9 | Large MCC / configuration-dependent | Approx. 1,254 |
| 20G11JC1K2JN0NNNNN | PowerFlex 755 | 400 VAC | 1,175 A | 800 kW | 710 kW | 560 kW | 9 | Large MCC / configuration-dependent | Approx. 1,352 |
| 20G11JC1K4JN0NNNNN | PowerFlex 755 | 400 VAC | 1,465 A | 850 kW | 800 kW | 630 kW | 9 | Large MCC / configuration-dependent | Configuration-dependent |
The models above are especially useful when comparing different motor-current requirements around the high-power range.
| Parameter | 20G11JC910JN0NNNNN | 20G11JC1K0JN0NNNNN | 20G11JC1K1JN0NNNNN | 20G11JC1K2JN0NNNNN | 20G11JC1K4JN0NNNNN |
|---|---|---|---|---|---|
| Series | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 |
| Input Voltage | 400 VAC | 400 VAC | 400 VAC | 400 VAC | 400 VAC |
| Phase | 3 Phase | 3 Phase | 3 Phase | 3 Phase | 3 Phase |
| Current | 910 A | 1,040 A | 1,090 A | 1,175 A | 1,465 A |
| Light Duty | 560 kW | 630 kW | 710 kW | 800 kW | 850 kW |
| Normal Duty | 500 kW | 560 kW | 630 kW | 710 kW | 800 kW |
| Heavy Duty | 400 kW | 500 kW | 500 kW | 560 kW | 630 kW |
| Frame | 9 | 9 | 9 | 9 | 9 |
| Cooling | Forced Air | Forced Air | Forced Air | Forced Air | Forced Air |
| Enclosure | IP54 / Type 12 | IP54 / Type 12 | IP54 / Type 12 | IP54 / Type 12 | IP54 / Type 12 |
| Cabinet Depth | 800 mm class | 800 mm class | 800 mm class | 800 mm class | 800 mm class |
| Dimensions | Configuration-dependent | Approx. 2300 × 1300 × 800 mm | Configuration-dependent | Configuration-dependent | Configuration-dependent |
| Weight (kg) | Approx. 1,047 | Approx. 1,197 | Approx. 1,254 | Approx. 1,352 | Configuration-dependent |
The 20G11JC1K0JN0NNNNN sits at an important point within the PowerFlex 755 high-power range.
The 910 A model provides lower capacity.
The 1,040 A model increases the capacity to:
630 kW light duty
560 kW normal duty
500 kW heavy duty
The next model increases the output-current capacity further.
Therefore, the 1,040 A configuration can be an attractive choice when a motor is too large for the 910 A model but does not require the capacity of the larger 1,090 A or 1,175 A models.
This is the lower-capacity model immediately below the subject model.
Its 910 A rating makes it appropriate for applications around the 500 kW normal-duty range.
It can be considered where the 1,040 A capacity would otherwise provide unnecessary reserve.
This model increases capacity to approximately 1,090 A.
It is suitable when the application approaches the 630 kW normal-duty range.
This model increases the capacity further.
It is suitable for applications approaching approximately 710 kW normal duty and 800 kW light duty.
This is another higher-capacity option.
It is intended for applications requiring approximately 1,465 A and up to around 800 kW normal duty.
This model moves further into the high-power range and can be considered when the motor requirement exceeds the capacity of the 1,465 A configuration.
For comparison across different capacity levels, the following models are useful examples from the same brand’s drive portfolio.
| Model | Series | Approx. Current Class | Voltage Class | General Application | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|
| 25B-D6P0N104 | PowerFlex 525 | 6 A class | 480 VAC class | Small machines | Compact | Configuration-dependent |
| 25B-D017N104 | PowerFlex 525 | 17 A class | 480 VAC class | Small / medium machines | Compact | Configuration-dependent |
| 25B-D024N114 | PowerFlex 525 | 24 A class | 480 VAC class | Medium machinery | Compact | Configuration-dependent |
| 20F11ND034AA0NNNNN | PowerFlex 753 | 34 A class | Industrial AC | Medium / large machinery | Configuration-dependent | Configuration-dependent |
| 20G11JC1K0JN0NNNNN | PowerFlex 755 | 1,040 A | 400 VAC | Large industrial systems | Approx. 2300 × 1300 × 800 mm | Approx. 1,197 |
| Feature | 25B-D6P0N104 | 25B-D017N104 | 25B-D024N114 | 20F11ND034AA0NNNNN | 20G11JC1K0JN0NNNNN |
|---|---|---|---|---|---|
| Series | PowerFlex 525 | PowerFlex 525 | PowerFlex 525 | PowerFlex 753 | PowerFlex 755 |
| Product Class | Compact | Compact | Compact | Industrial | High Power |
| Current Class | 6 A | 17 A | 24 A | 34 A | 1,040 A |
| Input Voltage Class | 480 VAC | 480 VAC | 480 VAC | Industrial AC | 400 VAC |
| Application Scale | Small | Small / Medium | Medium | Medium / Large | Very Large |
| Cooling | Air Cooled | Air Cooled | Air Cooled | Air Cooled | Forced Air |
| Network Integration | Available | Available | Available | Available | Embedded EtherNet/IP |
| Enclosure | Configuration-dependent | Configuration-dependent | Configuration-dependent | Configuration-dependent | IP54 / Type 12 |
| Cabinet Style | Compact | Compact | Compact | Industrial | 800 mm MCC Style |
| Dimensions | Compact | Compact | Compact | Configuration-dependent | Approx. 2300 × 1300 × 800 mm |
| Weight (kg) | Configuration-dependent | Configuration-dependent | Configuration-dependent | Configuration-dependent | Approx. 1,197 kg |
When choosing this drive for a real industrial installation, the following parameters should be considered together.
| Selection Factor | Importance |
|---|---|
| Motor Rated Voltage | Very High |
| Motor Rated Current | Extremely High |
| Motor Rated Power | Very High |
| Duty Classification | Extremely High |
| Starting Torque | High |
| Acceleration Time | High |
| Deceleration Time | High |
| Motor Inertia | High |
| Load Torque | Very High |
| Motor Speed | High |
| Cable Length | Medium / High |
| Ambient Temperature | High |
| Installation Altitude | Medium / High |
| Cooling Conditions | Very High |
| Harmonic Requirements | High |
| Short-Circuit Rating | High |
| Braking Requirements | Very High |
| Communication Requirements | Medium / High |
| Feedback Requirements | Application-dependent |
| Cabinet Space | Very High |
| Floor Loading | Very High |
For a drive weighing roughly 1.2 tonnes, mechanical installation and transportation are important engineering considerations.
Because this is a very large floor-mounted drive, the installation should not be treated like the installation of a compact inverter.
Important considerations include:
The approximate equipment weight is around 1,197 kg.
The floor or foundation should therefore be capable of supporting the equipment safely.
Special lifting and transportation equipment may be required.
The cabinet should be moved according to the mechanical handling provisions of the actual configuration.
The drive produces substantial heat.
Adequate ventilation and thermal management are essential.
Sufficient clearance should be provided for:
Large motor cables require appropriate bending radius, support and routing.
Power cables should also be separated from sensitive communication and control wiring where required.
| Maintenance Area | Recommended Check |
|---|---|
| Cooling Fans | Check operation and abnormal noise |
| Airflow | Ensure unrestricted ventilation |
| Filters | Inspect and clean where applicable |
| Power Connections | Check for looseness and overheating |
| Bus Connections | Inspect regularly |
| Grounding | Verify grounding integrity |
| Motor Cable | Inspect insulation and terminals |
| Cabinet | Keep clean and dry |
| Communication | Check network status |
| Fault History | Review recurring faults |
| Alarm History | Review abnormal conditions |
| Motor Load | Monitor current and torque |
| Temperature | Check abnormal heating |
| Mechanical Load | Monitor vibration and abnormal loading |
For a high-power drive, preventive maintenance can significantly reduce unexpected downtime.
The drive can provide several practical benefits to an industrial process.
The motor does not necessarily need to be started at full electrical stress.
The drive can gradually increase motor speed according to the programmed acceleration profile.
The drive can control the deceleration process rather than simply removing power.
This can reduce mechanical shock.
Motor speed can be matched to actual production requirements.
This is particularly valuable for pumps and fans.
The motor can operate at the speed required by the process instead of operating continuously at one fixed speed.
Operating information can be transferred through the industrial communication system.
Drive status, alarms and faults can be monitored from the automation system.
| Advantage | Description |
|---|---|
| High Current | 1,040 A output capability |
| High Power | Up to 630 kW light duty |
| Normal Duty | 560 kW |
| Heavy Duty | 500 kW |
| Industrial Construction | MCC-style floor-mounted package |
| Enclosure | IP54 / Type 12 |
| Cooling | Forced Air |
| Communication | Embedded EtherNet/IP |
| Motor Control | Multiple control strategies |
| Automation | Designed for network integration |
| Diagnostics | Extensive operating and fault information |
| Application Range | Pumps, fans, conveyors, mining and process equipment |
| Scalability | Multiple power ratings and related models |
| Installation | Suitable for large industrial electrical systems |
| Category | Parameter | Specification |
|---|---|---|
| Identification | Model | 20G11JC1K0JN0NNNNN |
| Identification | Brand | Allen-Bradley |
| Identification | Family | PowerFlex |
| Identification | Series | PowerFlex 755 |
| Product | Product Type | High-Power AC Drive |
| Product | Drive Type | Variable Frequency AC Drive |
| Product | Cooling | Forced Air |
| Electrical | Input Voltage | 400 VAC |
| Electrical | Input Phase | 3 Phase |
| Electrical | Output Current | 1,040 A |
| Electrical | Light-Duty Power | 630 kW |
| Electrical | Normal-Duty Power | 560 kW |
| Electrical | Heavy-Duty Power | 500 kW |
| Electrical | Input Type | AC Input with Precharge |
| Electrical | DC Terminals | Yes |
| Electrical | Dynamic Braking | None |
| Electrical | EMC Filter | Filtered |
| Electrical | CM Jumper | Installed |
| Frame | Frame Size | 9 |
| Enclosure | Protection | IP54 / Type 12 |
| Cabinet | Cabinet Style | 800 mm Deep MCC Style |
| Communication | Ethernet | Embedded EtherNet/IP |
| Display | HIM | Blank / No HIM |
| Mechanical | Height | Approx. 2300 mm |
| Mechanical | Width | Approx. 1300 mm |
| Mechanical | Depth | Approx. 800 mm |
| Mechanical | Dimensions | Approx. 2300 × 1300 × 800 mm |
| Mechanical | Weight (kg) | Approx. 1,197 kg |
| Mounting | Installation | Floor Mounted |
| Cooling | Air Cooling | Forced Air |
| Application | Pumps | Highly Suitable |
| Application | Fans | Highly Suitable |
| Application | Blowers | Highly Suitable |
| Application | Conveyors | Highly Suitable |
| Application | Mining | Highly Suitable |
| Application | Cement | Highly Suitable |
| Application | Steel Processing | Highly Suitable |
| Application | Material Handling | Highly Suitable |
| Application | Process Machinery | Highly Suitable |
The 20G11JC1K0JN0NNNNN is a high-power PowerFlex 755 AC drive intended for demanding industrial motor-control applications.
Its core specification can be summarized as:
400 VAC
3 Phase
1,040 A
630 kW Light Duty
560 kW Normal Duty
500 kW Heavy Duty
Frame 9
Forced-Air Cooling
IP54 / NEMA Type 12
800 mm Deep MCC Style
Embedded EtherNet/IP
No Dynamic Braking
Approx. 2300 × 1300 × 800 mm
Approx. 1,197 kg
The strongest characteristic of this model is its combination of high current capacity and large motor-power capability.
The 1,040 A output rating allows it to control very large AC motors, while the three duty ratings make it possible to match the drive to different mechanical load profiles.
For a continuous industrial application, the 560 kW normal-duty rating is particularly important.
For variable-torque applications such as large fans and certain pumps, the 630 kW light-duty rating can provide additional motor-power capacity.
For more demanding loads involving high torque or overload requirements, the 500 kW heavy-duty rating should be considered.
The IP54 / Type 12 enclosure provides a suitable level of protection for many industrial environments, while the 800 mm deep MCC-style cabinet makes the product appropriate for centralized industrial electrical installations.
The embedded EtherNet/IP capability is another major advantage because the drive can be integrated into a larger automation system for commands, speed references, status monitoring, alarms and diagnostics.
The most suitable applications are large pumps, industrial fans, blowers, conveyors, mining machinery, cement equipment, steel-processing systems, bulk-material handling and other large process machines.
From a mechanical perspective, this is a substantial piece of industrial equipment. An approximate 2300 × 1300 × 800 mm envelope and approximately 1,197 kg weight should be considered when planning the electrical room, foundation, transportation route, lifting method and maintenance access.
When selecting a replacement or alternative, the most useful same-series comparisons are the 910 A, 1,090 A, 1,175 A and 1,465 A configurations. The correct choice should ultimately be based on the motor nameplate current, duty cycle, torque requirements, overload requirements, braking requirements, ambient conditions and the complete electrical-system design rather than motor kW alone.