• Allen Bradley 20G11LE630JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11LE630JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11LE630JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11LE630JN0NNNNN PowerFlex AC Drive
20G11LE630JN0NNNNN PowerFlex 755 AC Drive — Detailed Product Description, Specifications, Applications, Advantages and Recommended Models The 20G11LE630JN0NNNNN is a high-power AC variable frequency dri……
Allen Bradley 20G11LE630JN0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G11LE630JN0NNNNN
  • PowerFlex AC Drive
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20G11LE630JN0NNNNN PowerFlex 755 AC Drive — Detailed Product Description, Specifications, Applications, Advantages and Recommended Models

The 20G11LE630JN0NNNNN is a high-power AC variable frequency drive in the PowerFlex 755 family. It is an air-cooled, three-phase industrial drive designed for large AC motors and demanding automation applications.

This particular configuration is a 600 VAC, 630 A, Frame 9 drive in an 800 mm deep MCC-style enclosure configuration. It is rated at approximately 800 HP for light-duty applications, 700 HP for normal-duty applications, and 600 HP for heavy-duty applications, making it suitable for large pumps, fans, conveyors, compressors, mixers and other high-power industrial machinery.

The product is configured with AC input with precharge, DC terminals, filtering, a CM jumper installed, and no internal dynamic-braking transistor. It is also specified without a local HIM/operator module in this catalog configuration.


1. Basic Product Information

Parameter Specification
Model 20G11LE630JN0NNNNN
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Type AC Variable Frequency Drive
Drive Configuration AC Packaged Drive
Cooling Method Air cooled
Input Voltage 600 VAC class
Input Phase 3-phase
Output Current 630 A
Frame Frame 9
Power Class 800 HP LD / 700 HP ND / 600 HP HD
Input Configuration AC input with precharge
DC Connection DC terminals
Filtering EMC filtering
CM Configuration CM jumper installed
Dynamic Braking No internal braking transistor
HIM None / blank configuration
Enclosure Style Type 1 / IP20
Mechanical Format 800 mm deep MCC style
Approximate Physical Width 800 mm class
Height Configuration-dependent
Depth Approximately 800 mm class
Weight (kg) Approximately 200–300 kg class for the complete large-frame packaged configuration; exact assembled/shipping weight is configuration-dependent
Motor Application Large three-phase AC motors
Main Function Variable-speed, torque and motor control
Typical Installation Industrial control cabinet / MCC
Application Level Heavy industrial

2. Product Overview

The 20G11LE630JN0NNNNN is designed for situations where a large AC motor needs more than simple ON/OFF control.

A conventional motor starter applies the available line voltage directly to the motor. A variable frequency drive takes a different approach. It electronically controls the frequency and voltage supplied to the motor, allowing the motor speed and torque to be adjusted according to the process requirements.

For a large industrial motor, this is particularly valuable.

A motor connected directly to the electrical supply can draw a high starting current and can create a sudden mechanical load on the machine. With a properly configured variable frequency drive, the motor can accelerate gradually, operate at different speeds and decelerate according to a programmed profile.

The 20G11LE630JN0NNNNN is therefore intended for large industrial systems where controlled motor operation, reliable speed regulation and integration with an automation system are important.


3. Product Model Interpretation

The catalog number contains multiple configuration sections.

Catalog Number Section General Meaning
20G PowerFlex 755 drive family
11 Air-cooled drive configuration
LE 600 V class / large-frame configuration
630 630 A output-current class
J Specific drive configuration with the associated power/input arrangement
N0 Configuration without the internal dynamic-braking transistor and associated option arrangement
NNNNN Additional catalog configuration positions

The complete catalog number should always be treated as one specific configured product rather than as a simple combination of voltage and current.

For replacement work, the entire catalog number is important because options such as braking, filtering, input arrangement, control hardware and operator-interface configuration can affect the electrical and mechanical characteristics of the installation.


4. Main Electrical Parameters

Parameter Value
Model 20G11LE630JN0NNNNN
AC Input Voltage 600 VAC class
Maximum DC Bus Class Approximately 810 VDC
Input Phase 3-phase
Output Current 630 A
Light-Duty Rating 800 HP
Normal-Duty Rating 700 HP
Heavy-Duty Rating 600 HP
Approximate Normal-Duty Power 522 kW
Approximate Heavy-Duty Power 447 kW
Light-Duty Power Approximately 597 kW
Frequency Variable-frequency output
Motor Type Three-phase AC motor
Cooling Forced-air / air cooled
Frame Frame 9
Input Arrangement AC input with precharge
DC Terminals Yes
EMC Filter Included
CM Jumper Installed
Internal Braking Transistor No
HIM Not included in this configuration
Installation MCC-style
Enclosure Type 1 / IP20 configuration

The distinction between LD, ND and HD is important.

A drive’s current rating cannot simply be converted into one universal horsepower figure. The applicable horsepower rating depends on the overload profile and duty requirements of the motor and application.

For a machine with high starting torque, frequent acceleration or repeated overloads, the heavy-duty rating should be used as the more conservative reference.


5. Light-Duty, Normal-Duty and Heavy-Duty Ratings

Duty Classification Approximate Rating Typical Application
Light Duty (LD) 800 HP Lower-overload variable-torque applications
Normal Duty (ND) 700 HP General industrial applications
Heavy Duty (HD) 600 HP High-torque / high-overload machinery

The 600 HP heavy-duty rating is especially important when selecting the drive for demanding machinery.

For example, a heavily loaded conveyor may require substantially more starting torque than a centrifugal fan.

Likewise, a mixer or crusher may experience sudden load changes that are not present in a pump application.

For this reason, the motor nameplate current and actual machine duty should always be considered before selecting the drive.


6. Physical Dimensions and Weight

The 20G11LE630JN0NNNNN is a large industrial drive, not a compact wall-mounted inverter.

Its catalog description identifies it as an 800 mm deep MCC-style configuration.

Physical Parameter Approximate Specification
Model 20G11LE630JN0NNNNN
Mechanical Format MCC-style
Width Class 800 mm class
Depth Class 800 mm
Height Configuration-dependent
Cooling Air cooled
Installation Cabinet / MCC
Enclosure Type 1 / IP20
Weight (kg) Approximately 200–300 kg class for a complete large-frame packaged assembly
Shipping Weight May be higher depending on packaging and cabinet configuration
Service Space Required
Ventilation Space Required
Lifting Equipment Recommended for installation

The exact height, width, depth and weight should be treated as configuration-dependent engineering values.

A large packaged drive can have different physical characteristics depending on enclosure construction, incoming power arrangement, cabinet sections, disconnects, reactors, busbars and other factory-installed equipment.

Therefore, the 800 mm deep MCC-style designation should not be interpreted as the complete H × W × D dimensions of every finished installation.

For transportation, lifting, cabinet fabrication and floor-loading calculations, the final mechanical drawing for the exact configured unit should be used.


7. Product Construction

The drive consists of several major functional sections.

AC Input Section

The input section receives three-phase AC power from the plant electrical distribution system.

The AC input arrangement for this configuration includes precharge functionality.

Precharge is important because a large drive has a substantial DC-link capacitor system. The precharge process limits the initial charging current when the drive is energized.


Rectifier Section

The incoming AC power is converted into DC power.

This creates the DC bus required by the drive’s power-conversion system.


DC Bus

The DC bus provides the intermediate energy-storage and conversion stage between the input and output sections.

The DC bus voltage can reach a high level in a 600 V-class drive, which is why appropriate electrical protection, isolation and service procedures are essential.


Inverter Section

The inverter converts the DC bus energy back into controlled three-phase AC power.

The switching pattern determines the output voltage and frequency supplied to the motor.

By changing the output frequency, the drive can control motor speed.


8. Motor-Speed Control

Motor speed is closely related to the frequency supplied to an AC motor.

For a typical induction motor, increasing the output frequency generally increases operating speed, while reducing frequency reduces speed.

The drive can therefore provide a much wider range of operating speeds than a fixed-frequency motor starter.

This makes the product particularly useful in processes where machine speed must change according to production requirements.

Examples include:

  • Pump flow control
  • Fan airflow control
  • Conveyor speed control
  • Compressor capacity control
  • Mixer speed adjustment
  • Process-line synchronization

9. Product Advantages

9.1 Very High Power Capacity

The 630 A output rating makes this model suitable for very large motors.

The drive is capable of controlling equipment in the several-hundred-kilowatt range.

This makes it suitable for major industrial machinery rather than small production equipment.


9.2 Multiple Duty Ratings

The availability of LD, ND and HD application ratings makes the PowerFlex 755 platform flexible.

The same general drive platform can be considered for different types of mechanical loads.

This simplifies product selection for industrial facilities that have a wide range of motor applications.


9.3 Controlled Starting

The drive can gradually increase motor speed rather than applying full power immediately.

This can reduce:

  • Starting current stress
  • Mechanical shock
  • Belt tension changes
  • Coupling stress
  • Gearbox stress
  • Shaft torque shock

This is especially useful for large rotating machinery.


9.4 Controlled Stopping

The drive can also control motor deceleration.

A controlled stop is often preferable to simply disconnecting the motor from the supply.

This can improve machine operation and reduce mechanical stress.


9.5 Improved Process Control

A variable-speed motor allows the machine to operate according to actual process demand.

For example, a pump can operate at a lower speed when full flow is unnecessary.

This provides greater flexibility than a fixed-speed motor.


9.6 Suitable for Large Industrial Automation Systems

The PowerFlex 755 platform is designed for integration into larger automation systems.

It can be incorporated into systems containing:

  • PLC controllers
  • Operator interfaces
  • Industrial networks
  • Supervisory systems
  • Motor feedback systems
  • Process-control equipment

This makes it suitable for large automated factories and process plants.


9.7 Embedded Industrial Networking

This configuration is associated with the PowerFlex 755 platform’s Ethernet/IP-oriented automation architecture.

This can simplify communication between the drive and the rest of an industrial control system.

Drive information such as speed reference, actual speed, current, status and faults can be integrated into the wider control strategy when the required network configuration is used.


9.8 EMC Filtering

The model includes an EMC filtering configuration.

This is useful in industrial environments where many electronic devices operate within the same electrical installation.

Good electromagnetic compatibility can reduce the possibility of interference affecting nearby control and instrumentation equipment.


9.9 Large-Frame Industrial Construction

The 800 mm MCC-style configuration is intended for industrial electrical rooms and large equipment installations.

This format provides a more practical approach to integrating a very high-power drive into an industrial power-distribution architecture.


10. Applications

10.1 Large Industrial Pumps

The 20G11LE630JN0NNNNN is well suited to large pumping systems.

Typical applications include:

  • Industrial water systems
  • Water treatment
  • Process-water circulation
  • Cooling-water systems
  • Large process pumps
  • Utility pumping systems

The ability to adjust motor speed allows the pump to match changing process requirements.


10.2 Large Fans

Large ventilation and process fans can benefit from variable-speed operation.

The drive can adjust fan speed according to airflow requirements.

This can improve process control and can also provide energy-saving opportunities when the fan operates under variable-load conditions.


10.3 Conveyors

Large conveyors are another important application.

A conveyor loaded with heavy material can have substantial mechanical inertia.

Gradual acceleration can reduce sudden belt tension and mechanical shock.

The drive can also provide controlled deceleration.


10.4 Compressors

Large industrial compressors may require precise motor-speed control.

The PowerFlex 755 platform can be used in compressor applications where the motor and compressor design are compatible with variable-speed operation.


10.5 Mixers and Agitators

Industrial mixers often require considerable starting torque.

A properly selected PowerFlex 755 configuration can provide controlled acceleration and torque management.

This is particularly valuable when the material being processed becomes more resistant as the process develops.


10.6 Process Machinery

The drive can be applied to many types of industrial process equipment.

Examples include:

  • Material processing machines
  • Production lines
  • Industrial machinery
  • Large rotating equipment
  • Bulk-material handling systems
  • Manufacturing equipment

11. Application Examples

Application Why the Drive Is Suitable Important Consideration
Large Pump Variable flow and speed control Check pump curve and motor current
Large Fan Adjustable airflow Variable-torque characteristics
Conveyor Controlled starting/stopping Starting torque and inertia
Compressor Variable motor speed Compressor-specific control requirements
Mixer High starting torque Heavy-duty rating
Blower Variable airflow Process operating range
Material Handling Speed coordination Mechanical inertia
Process Machine Precise motor control Required speed/torque profile

12. PowerFlex 755 Series Characteristics

The PowerFlex 755 series is positioned for demanding motor-control applications.

Its strengths include:

  • Large power range
  • High current capability
  • Advanced motor control
  • Speed regulation
  • Torque control
  • Feedback capability
  • Industrial communication
  • Multiple application options
  • Flexible installation
  • Large-motor support

The series is particularly useful when the drive needs to be part of an integrated automation system rather than operate as an isolated motor controller.


13. Five Recommended Models in the Same Series or Related Range

The following models are useful comparison candidates around the same PowerFlex 755 family and high-power range.

Model Series Voltage Current LD Rating ND Rating HD Rating Size / Dimensions Weight (kg)
20G11LE595JN0NNNNN PowerFlex 755 600 VAC 595 A 800? HP class* 600 HP class 500 HP class 800 mm deep MCC style Approx. 200–300
20G11LE630JN0NNNNN PowerFlex 755 600 VAC 630 A 800 HP 700 HP 600 HP 800 mm deep MCC style Approx. 200–300
20G11LE760JN0NNNNN PowerFlex 755 600 VAC 760 A 900 HP 800 HP 700 HP 800 mm deep MCC style Approx. 200–300+
20G11LE825JN0NNNNN PowerFlex 755 600 VAC 825 A Higher-power class Higher-power class Higher-power class 800 mm deep MCC style Approx. 200–300+
20G11LE900JN0NNNNN PowerFlex 755 600 VAC 900 A Very high-power class Very high-power class Very high-power class 800 mm deep MCC style Approx. 250–350+

*The exact LD/ND/HD rating should be checked against the complete catalog configuration before using the value for final engineering.

Among these options, the 20G11LE630JN0NNNNN is the central 630 A model, while the 760 A, 825 A and 900 A versions provide additional capacity for larger motors.


14. Recommended Comparison by Current Capacity

Model Output Current Relative Capacity Best Use
20G11LE595JN0NNNNN 595 A Slightly lower Large motors below the 630 A class
20G11LE630JN0NNNNN 630 A Reference model Large general industrial machinery
20G11LE760JN0NNNNN 760 A Higher Larger pumps, fans and process machinery
20G11LE825JN0NNNNN 825 A Higher Very large industrial motors
20G11LE900JN0NNNNN 900 A Very high Very large high-power equipment

15. Five Recommended Popular Models Under the Same Brand

For a broader product selection, the following models are useful examples from the same brand’s industrial drive portfolio.

Model Product Series Voltage Class Current / Power Class Cooling Application Dimensions Weight (kg)
20G11LE630JN0NNNNN PowerFlex 755 600 VAC 630 A / 700 HP ND Air cooled Large industrial machinery 800 mm deep MCC style Approx. 200–300
20G11LE760JN0NNNNN PowerFlex 755 600 VAC 760 A / 800 HP ND Air cooled Large pumps and process equipment 800 mm deep MCC style Approx. 200–300+
20G11LF590JN0NNNNN PowerFlex 755 690 VAC 590 A / 560 kW ND class Air cooled High-voltage industrial motors 800 mm deep MCC style Approx. 200–300
20G11LF650JN0NNNNN PowerFlex 755 690 VAC 650 A / 630 kW ND class Air cooled Large process machinery 800 mm deep MCC style Approx. 200–300+
20G11LF710JN0NNNNN PowerFlex 755 690 VAC 710 A / 710 kW ND class Air cooled Very large industrial equipment 800 mm deep MCC style Approx. 250–350+

The LF-series models are particularly relevant where the plant electrical system uses a 690 V motor class.

The LE-series models are more appropriate for a 600 V-class system.


16. LE-Series and LF-Series Comparison

Feature LE-Series LF-Series
Typical Voltage Class 600 VAC 690 VAC
Main Application Large 600 V-class motors Large 690 V-class motors
Current Range Very high Very high
Typical Installation MCC / industrial cabinet MCC / industrial cabinet
Cooling Air cooled Air cooled
Typical Motor Size Several hundred HP / kW Several hundred kW
Application Pumps, fans, conveyors, compressors Pumps, fans, compressors, large process machines
Selection Priority Match motor voltage Match motor voltage

The motor’s nameplate voltage should always be the starting point when choosing between these configurations.


17. Product Advantages in Real Industrial Operation

Reduced Mechanical Shock

Large machinery can suffer from significant mechanical stress during direct starting.

Controlled acceleration allows the motor to build speed progressively.

This can reduce the shock experienced by belts, couplings, shafts and gearboxes.


Improved Operating Flexibility

A fixed-speed motor provides only limited control.

A variable-speed drive allows operators and control systems to adjust machine speed according to the process.

This can be particularly valuable when production requirements change throughout the day.


Better Coordination With Automation

The drive can operate as part of a larger control system.

Instead of manually controlling motor speed, a PLC or process controller can provide the speed command automatically.

This enables more consistent production.


Potential Energy Reduction

For variable-torque loads such as centrifugal pumps and fans, reducing motor speed can produce significant energy savings.

The actual savings depend heavily on the system design and operating profile.

The drive should therefore be viewed as an enabling technology for energy optimization rather than as a guaranteed energy-saving device.


18. Maintenance Requirements

A high-power air-cooled drive requires appropriate maintenance.

The cooling system is particularly important.

Recommended maintenance activities include:

Maintenance Item Purpose
Cooling fan inspection Maintain adequate airflow
Air passage cleaning Prevent overheating
Cabinet inspection Prevent dust accumulation
Electrical connection inspection Prevent hot spots
Grounding inspection Maintain electrical safety
Cable inspection Detect insulation or connection problems
Fault-history review Identify recurring problems
Temperature monitoring Detect cooling problems
Filter inspection Maintain air quality
Visual inspection Identify abnormal conditions

The maintenance interval should be established according to the actual environment.

A clean electrical room and a dusty production area will not have the same maintenance requirements.


19. Installation Considerations

The 20G11LE630JN0NNNNN should be installed by personnel familiar with high-power industrial electrical equipment.

Particular attention should be given to:

  • Input protection
  • Grounding
  • Motor cable routing
  • EMC considerations
  • Cabinet ventilation
  • Cooling airflow
  • Service clearance
  • Cable bending radius
  • Short-circuit protection
  • Motor insulation
  • Motor compatibility
  • Environmental temperature
  • Altitude
  • Cabinet heat dissipation

Because this is a 630 A drive, the electrical installation is substantially more demanding than a small industrial VFD installation.


20. Why the 800 mm MCC-Style Configuration Matters

The 800 mm deep MCC-style construction is an important characteristic of the model.

It indicates that this product is designed around large industrial electrical installations.

This style of construction is particularly appropriate where the drive needs to be integrated into a larger motor-control center or electrical cabinet system.

It also makes the product more suitable for industrial facilities that have dedicated electrical rooms rather than simple machine-side mounting.


21. No Internal Dynamic-Braking Transistor

One important characteristic of this particular catalog configuration is the absence of an internal dynamic-braking transistor.

This should not be overlooked when selecting the drive for applications requiring rapid deceleration.

Applications with large rotating inertia may generate significant regenerative energy when the motor decelerates.

If the machine requires fast stopping, the complete braking solution must therefore be evaluated separately.

Typical applications requiring particular attention include:

  • High-inertia conveyors
  • Centrifuges
  • Large fans
  • Hoisting-related equipment
  • High-speed rotating machines
  • Machines requiring frequent acceleration/deceleration

The appropriate braking method depends on the machine’s regenerative energy and required stopping time.


22. No HIM Configuration

The catalog configuration is specified without a local HIM.

This means the drive does not necessarily include a permanently installed local operator keypad/display in the standard configuration.

For an automated industrial system, this can be perfectly acceptable because commissioning and operation can be handled through the control system or an appropriate external interface.

If local setup and operator adjustment are required, the appropriate interface should be considered as part of the complete system design.


23. EMC Filtering

The model includes an EMC filtering configuration.

This is particularly useful in an industrial environment where the drive shares an electrical installation with:

  • PLCs
  • Sensors
  • Encoders
  • Industrial networks
  • Instrumentation
  • Control panels
  • Communication equipment

High-power switching devices can produce electrical noise, so appropriate EMC design is important.

The filter should be considered together with cable selection, cable routing, grounding and motor installation practices.


24. Typical Industries

Industry Typical Application
Water Treatment Large pumps
Manufacturing Conveyors and process machinery
Mining Conveyors and heavy machinery
Chemical Processing Pumps, mixers and compressors
Oil & Gas Pumps and process equipment
Power Industry Large fans and pumps
Metals Process lines and large motors
Cement Fans, conveyors and process equipment
Paper Large process motors
Material Handling Heavy conveyors

25. Product Selection Checklist

Before selecting 20G11LE630JN0NNNNN, the following should be confirmed:

Selection Requirement Recommended Check
Motor voltage Confirm 600 V-class compatibility
Motor full-load current Confirm against drive current
Motor horsepower Confirm against LD/ND/HD duty
Motor type Confirm supported control method
Starting torque Important for high-inertia machinery
Overload Confirm required duty
Speed range Confirm operating requirements
Braking Confirm whether external braking is needed
Input power Confirm plant supply
Short-circuit rating Confirm system protection
Environment Check temperature and contamination
Installation Check 800 mm MCC arrangement
Cabinet Confirm physical dimensions
Weight Confirm floor loading and lifting
Communication Confirm automation network
Feedback Determine whether encoder feedback is required
HIM Determine whether local operator interface is required

26. Key Specifications at a Glance

Category Specification
Model 20G11LE630JN0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product Type AC Packaged Drive
Cooling Air cooled
Input 600 VAC, 3-phase
Output 630 A
Light Duty 800 HP
Normal Duty 700 HP
Heavy Duty 600 HP
Approx. ND Power 522 kW
Approx. HD Power 447 kW
Frame Frame 9
Enclosure Type 1 / IP20
Mechanical Format 800 mm deep MCC style
Input Type AC input with precharge
DC Terminals Yes
EMC Filter Yes
CM Jumper Installed
Internal Braking Transistor No
HIM None
Cooling Forced air
Dimensions 800 mm deep MCC class; complete H × W × D configuration-dependent
Weight (kg) Approximately 200–300 kg class
Main Applications Pumps, fans, conveyors, compressors, mixers, process machinery
Main Advantage High-power industrial motor control

27. Overall Evaluation

The 20G11LE630JN0NNNNN is a strong choice for large industrial motor applications where a conventional motor starter cannot provide sufficient speed and torque control.

Its 630 A output capacity, 600 VAC class, Frame 9 construction, 800 mm deep MCC-style format and PowerFlex 755 architecture place it firmly in the large industrial-drive category.

The product is particularly attractive for applications that need controlled acceleration, controlled deceleration, variable-speed operation and integration with an industrial automation system.

Its main strengths are high current capacity, flexible motor control, large-motor compatibility, industrial communication capability, EMC filtering and a construction intended for large electrical installations.

Its main limitations are equally important: it is physically large, requires substantial electrical infrastructure, needs proper cooling and installation space, and this particular configuration does not contain an internal dynamic-braking transistor or local HIM.

For a 600 V, 630 A application, this model provides a well-defined high-power solution.


28. Recommended Models — Final Comparison

Model Series Voltage Current Duty / Power Size Weight (kg) Recommendation
20G11LE595JN0NNNNN PowerFlex 755 600 VAC 595 A Lower than 630 A class 800 mm MCC Approx. 200–300 Good for slightly smaller motors
20G11LE630JN0NNNNN PowerFlex 755 600 VAC 630 A 800 HP LD / 700 HP ND / 600 HP HD 800 mm MCC Approx. 200–300 Primary model
20G11LE760JN0NNNNN PowerFlex 755 600 VAC 760 A 900 HP LD / 800 HP ND / 700 HP HD 800 mm MCC Approx. 200–300+ Higher-capacity alternative
20G11LE825JN0NNNNN PowerFlex 755 600 VAC 825 A Very high power 800 mm MCC Approx. 200–300+ Large motor applications
20G11LE900JN0NNNNN PowerFlex 755 600 VAC 900 A Very high power 800 mm MCC Approx. 250–350+ Extremely large applications

29. Final Product Summary

20G11LE630JN0NNNNN can be summarized as a high-power, air-cooled, 600 VAC, 630 A PowerFlex 755 AC drive designed for large industrial motors.

Its 700 HP normal-duty rating and 600 HP heavy-duty rating make it suitable for a broad range of large industrial machinery.

The product is especially well suited to large pumps, fans, conveyors, compressors, mixers and process equipment, where variable speed, controlled acceleration, controlled stopping and automation-system integration are required.

The 800 mm deep MCC-style construction makes it appropriate for large industrial electrical rooms and motor-control installations.

For applications requiring greater current capacity, the 20G11LE760JN0NNNNN, 20G11LE825JN0NNNNN and 20G11LE900JN0NNNNN are logical higher-capacity alternatives.

For applications with a 690 V motor system, the LF-series PowerFlex 755 configurations are worth considering instead.

For final engineering, the most important checks are the motor nameplate voltage, full-load current, duty class, starting torque, overload requirement, braking requirement, installation dimensions and actual equipment weight. The physical dimensions and weight should be verified against the exact configured mechanical drawing, particularly because large packaged MCC-style drives can differ in final dimensions and shipping weight depending on the complete configuration.



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