• Allen Bradley 20G1ANF034JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ANF034JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ANF034JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ANF034JA0NNNNN PowerFlex AC Drive
20G1ANF034JA0NNNNN — Detailed Product Specifications, Product Introduction, Applications, Advantages and Related Models 1. Product Overview The 20G1ANF034JA0NNNNN is an industrial AC variable frequency ……
Allen Bradley 20G1ANF034JA0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G1ANF034JA0NNNNN
  • PowerFlex AC Drive
  • USA
  • 570 × 345 × 377 mm
  • 14.51kg
  • Xiamen, China
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Allen Bradley 20G1ANF034JA0NNNNN PowerFlex AC Drive

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20G1ANF034JA0NNNNN — Detailed Product Specifications, Product Introduction, Applications, Advantages and Related Models

1. Product Overview

The 20G1ANF034JA0NNNNN is an industrial AC variable frequency drive from the PowerFlex 755 series. It is designed for controlling three-phase AC motors in industrial machinery, automated production systems, process equipment, material-handling systems and other applications requiring adjustable motor speed and controlled motor operation.

This model belongs to the 690 VAC class and has a nominal 34 A output-current rating. Its approximate power rating is 30 kW for normal-duty applications and 22 kW for heavy-duty applications.

The drive uses a Frame 6 mechanical configuration and forced-air cooling. The JA0 configuration is particularly notable because it includes an internal dynamic-braking transistor, making it different from closely related configurations without dynamic-braking capability.

The drive is also designed for integration into industrial automation systems, with embedded Ethernet/IP communication. It can therefore be used as part of a centralized control architecture in which the motor drive communicates with a PLC or other industrial controller.


2. Brand and Series Information

Item Information
Brand Allen-Bradley
Product family PowerFlex
Product series PowerFlex 755
Model family 20G
Product type AC Variable Frequency Drive
Voltage class 690 VAC
Mechanical frame Frame 6
Cooling method Forced air
Communication Embedded Ethernet/IP
Main application Industrial AC motor control
Main function Variable-speed and torque control

The PowerFlex 755 series is intended for industrial applications where a higher level of motor control is required than a simple fixed-speed starter can provide.

The series is available in different current and power configurations. This makes it possible to select a drive according to the actual motor current, voltage, duty cycle and mechanical load.


3. Basic Product Parameters

Parameter Specification
Model 20G1ANF034JA0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product type AC Variable Frequency Drive
Input voltage class 690 VAC
Input phase Three-phase
Output phase Three-phase
Output current 34 A
Normal-duty power 30 kW
Heavy-duty power 22 kW
Frame size Frame 6
Cooling Forced air
Enclosure type Open type
Protection class IP20/IP00
Input configuration AC input with precharge
DC terminals None
Filter Filtered configuration
Common-mode configuration CM jumper installed
Dynamic braking Internal DB transistor
HIM Blank / no HIM
Communication Embedded Ethernet/IP
Approx. width 570 mm
Approx. height 345 mm
Approx. depth 377 mm
Approx. dimensions 570 × 345 × 377 mm
Approx. weight 14.51 kg
Installation Electrical cabinet / industrial control panel
Cooling requirement Forced-air ventilation
Main application Variable-speed AC motor control

The dimensions and weight are approximate reference values. For a final cabinet design, the exact mechanical drawing and actual drive configuration should be checked because installation clearances, cable routing and accessory requirements can increase the required cabinet space.


4. Detailed Electrical Parameters

Technical parameter 20G1ANF034JA0NNNNN
Model 20G1ANF034JA0NNNNN
Rated voltage class 690 VAC
Input voltage 690 VAC class
Input phase 3 phase
Output phase 3 phase
Output current 34 A
Normal-duty current Approximately 34 A
Heavy-duty current Approximately 27 A class
Normal-duty motor power 30 kW
Heavy-duty motor power 22 kW
Input frequency 50/60 Hz class
Drive frame Frame 6
Cooling Forced air
Enclosure Open type
Protection IP20/IP00
Input precharge Yes
DC terminals No
Input filtering Filtered
CM jumper Installed
Dynamic-braking transistor Yes
Local HIM Not included
Communication Embedded Ethernet/IP
Mounting Panel/cabinet
Approx. dimensions 570 × 345 × 377 mm
Approx. weight 14.51 kg

5. Normal-Duty Rating

The normal-duty rating of this model is approximately 30 kW.

Normal-duty applications generally involve relatively moderate overload requirements. Typical examples include fans, centrifugal pumps and general-purpose machinery where the load does not continuously demand very high starting or overload torque.

The 30 kW rating should not be interpreted as meaning that every 30 kW motor can automatically be connected to the drive.

The motor’s actual nameplate current is an important sizing parameter.

The following should normally be considered together:

  • Motor rated voltage
  • Motor rated current
  • Motor power
  • Motor frequency
  • Load type
  • Starting torque
  • Acceleration requirements
  • Overload requirements
  • Operating temperature

6. Heavy-Duty Rating

For heavy-duty applications, the drive is approximately rated at 22 kW.

Heavy-duty applications can involve:

  • Higher starting torque
  • Frequent acceleration
  • Frequent deceleration
  • Large mechanical inertia
  • Rapid load changes
  • High overload requirements
  • Repeated starting cycles

Typical examples include:

  • Loaded conveyors
  • Mixers
  • Material-handling machines
  • Processing machinery
  • High-inertia equipment
  • Certain positive-displacement pumping systems

The distinction between normal duty and heavy duty is important when selecting the drive.

A motor with a relatively moderate kW rating may still require a larger drive if the application has a demanding torque profile.


7. 690 VAC Design

One of the most important characteristics of the 20G1ANF034JA0NNNNN is its 690 VAC voltage class.

This makes it suitable for industrial systems using higher-voltage three-phase motors.

Higher-voltage motor systems are commonly used in larger industrial installations because they can provide an appropriate electrical architecture for higher-power machinery.

The drive should be matched to the actual motor and electrical supply.

A 30 kW drive with a different voltage class should not automatically be considered a replacement for this 690 VAC model.


8. Output Current

The drive has an approximately 34 A output-current rating.

Output current is one of the most important drive-sizing parameters.

The motor’s actual full-load current should be compared with the drive’s continuous current capability.

For example, two motors with the same nominal power rating can have different full-load currents because of differences in:

  • Motor efficiency
  • Power factor
  • Rated voltage
  • Motor design
  • Operating temperature
  • Application load
  • Motor duty

For replacement applications, the motor nameplate current should therefore be checked before selecting the drive.


9. Dynamic Braking

The JA0 configuration is important because it includes an internal dynamic-braking transistor.

Dynamic braking is used when a motor needs to decelerate while handling energy returned from the motor during braking.

When a high-inertia motor is commanded to slow down, the motor can temporarily operate in a regenerative condition. Energy can return toward the drive’s DC bus.

A braking circuit can provide a controlled path for dissipating this energy through an appropriate braking resistor.

This can be useful for machinery requiring:

  • Rapid deceleration
  • Controlled stopping
  • Frequent stopping
  • High-inertia loads
  • Conveyor systems
  • Centrifuges
  • Material-handling machinery
  • Certain hoisting-related applications

The presence of the internal braking transistor does not mean that the drive can dissipate unlimited braking energy. The braking resistor and its thermal rating must be correctly matched to the actual application.


10. Difference Between JA0 and JN0 Configurations

The 20G1ANF034JA0NNNNN should not be confused with similar PowerFlex 755 configurations using different option codes.

The JA0 configuration is associated with an internal dynamic-braking transistor.

This is an important consideration when replacing a drive.

Feature 20G1ANF034JA0NNNNN Similar JN0 configuration
Voltage 690 VAC 690 VAC
Output current 34 A 34 A class
Normal-duty power 30 kW Similar rating
Heavy-duty power 22 kW Similar rating
Frame 6 6
Cooling Forced air Forced air
Ethernet/IP Yes Yes
Filtered Yes Yes
Dynamic braking Internal DB transistor No internal DB transistor
HIM Blank / no HIM Blank / no HIM
Approx. weight 14.51 kg Approximately similar
Approx. dimensions 570 × 345 × 377 mm Approximately similar

For machinery that requires dynamic braking, the braking configuration should be checked before selecting a replacement.


11. Cooling System

The drive uses forced-air cooling.

The power electronics generate heat during normal operation. Forced airflow removes heat from the power section and helps maintain an acceptable operating temperature.

The cabinet should therefore be designed with appropriate airflow.

Important considerations include:

Cooling consideration Description
Cabinet ventilation Must provide adequate airflow
Ambient temperature Higher temperature increases thermal stress
Fan operation Cooling fans should be checked during maintenance
Dust Excessive dust can obstruct airflow
Clearance Adequate space should be maintained around the drive
Heat load Heat from all cabinet components should be considered
Air circulation Hot air should not be continuously recirculated through the drive

When several drives are installed in one cabinet, the combined heat load needs to be considered.


12. Enclosure and Protection

The drive uses an open-type IP20/IP00 construction.

This type of drive is normally installed inside an electrical control cabinet.

It is not intended to function as a standalone weatherproof motor controller.

The external enclosure should protect the drive against environmental conditions such as:

  • Water
  • Condensation
  • Dust
  • Conductive particles
  • Oil contamination
  • Corrosive materials
  • Mechanical impact

The appropriate cabinet protection level depends on the actual installation environment.


13. Ethernet/IP Communication

The drive has embedded Ethernet/IP communication.

This allows it to be integrated into an industrial automation system.

A PLC or other controller can exchange information with the drive.

Typical information includes:

  • Start command
  • Stop command
  • Speed reference
  • Actual speed
  • Output current
  • Drive status
  • Fault status
  • Alarm information
  • Parameter information
  • Diagnostic data

This can reduce the amount of hardwired control required in a large automated machine.


14. No Local HIM

The specified configuration is a blank / no-HIM configuration.

This means the drive does not rely on a permanently installed local operator interface for normal machine operation.

In a centralized automation system, the drive can instead be controlled through the industrial network.

A typical architecture can be:

PLC → Ethernet/IP → Drive → Motor

The operator may interact with the PLC or HMI rather than directly operating the drive.

This arrangement is common in automated production machinery.


15. AC Input With Precharge

The drive uses an AC input configuration with precharge.

The internal DC-link capacitors require controlled charging when the drive is energized.

Precharge helps limit the initial charging current and provides a controlled startup sequence for the drive’s DC-link system.

This is particularly important in higher-power electronic drive systems.


16. Filtering

The specified configuration includes filtering.

Variable-frequency drives use high-frequency switching devices to generate the motor output waveform.

These switching actions can generate electrical noise.

The filtered configuration helps manage electrical interference within the electrical installation.

Correct installation remains important.

Recommended installation practices include:

  • Proper grounding
  • Appropriate motor cable selection
  • Correct cable shielding
  • Separation between power and signal cables
  • Suitable cabinet layout
  • Correct termination of shields and grounds

17. Common-Mode Configuration

The configuration includes a CM jumper installed arrangement.

Common-mode components can influence high-frequency electrical behavior and leakage currents.

The configuration should be maintained according to the requirements of the actual electrical system.

The grounding and motor-cable arrangement should be considered together with the drive configuration.


18. Product Applications

18.1 Conveyor Systems

The 20G1ANF034JA0NNNNN is suitable for industrial conveyor systems where motor speed needs to be adjusted.

Typical functions include:

  • Controlled starting
  • Adjustable speed
  • Controlled stopping
  • Production-line synchronization
  • Material-flow control

Dynamic braking can be particularly useful where the conveyor has significant rotating inertia or requires relatively fast stopping.


18.2 Pumping Equipment

The drive can be used for industrial pumps where flow or pressure needs to be adjusted.

Typical applications include:

  • Process-water pumps
  • Cooling-water pumps
  • Circulation systems
  • Industrial fluid-transfer systems
  • Manufacturing process pumps

Variable-speed operation can reduce the need to operate a pump continuously at full speed.


18.3 Fans and Blowers

Fans and blowers often operate at different airflow requirements depending on production conditions.

The drive can vary motor speed to match the required operating condition.

Typical applications include:

  • Industrial ventilation
  • Exhaust systems
  • Cooling systems
  • Air-handling equipment
  • Process ventilation

18.4 Mixers

Industrial mixers can require controlled acceleration and adjustable speed.

The drive can be used to control the motor during:

  • Startup
  • Mixing
  • Processing
  • Speed changes
  • Shutdown

The exact motor and drive rating should be selected according to the material being mixed and the required torque.


18.5 Material-Handling Equipment

The drive is suitable for many material-handling applications.

Examples include:

  • Conveyors
  • Feeders
  • Transfer equipment
  • Production-line material handling
  • Automated movement systems

Controlled acceleration can reduce mechanical shock to belts, gears, couplings and shafts.


18.6 High-Inertia Machines

The internal braking transistor makes this configuration particularly interesting for applications where controlled deceleration is required.

Examples can include:

  • Large rotating machinery
  • High-inertia conveyors
  • Certain centrifuge applications
  • Rapid-cycle production machinery

The complete braking resistor arrangement must be designed according to the application’s braking energy.


19. Product Advantages

19.1 690 VAC Industrial Capability

The drive is designed for a higher-voltage industrial motor system.

This makes it suitable for machinery using 690 VAC class motors and distribution systems.


19.2 34 A Output Capacity

The 34 A output rating provides a useful capacity for medium-power industrial motor applications.

The approximately 30 kW normal-duty rating provides substantial motor-control capacity within the Frame 6 product range.


19.3 30 kW Normal-Duty Rating

The 30 kW normal-duty rating makes this model suitable for applications where the motor operates under relatively moderate overload conditions.

This can include pumps, fans, blowers and general industrial machinery.


19.4 22 kW Heavy-Duty Rating

The 22 kW heavy-duty rating provides a lower power rating for applications requiring greater overload capability.

This makes the drive suitable for more demanding load profiles than a simple kW comparison might suggest.


19.5 Internal Dynamic-Braking Transistor

The internal DB transistor is one of the notable features of the JA0 configuration.

It can simplify the design of applications requiring dynamic braking because the drive already contains the switching element required for the braking circuit.

A correctly selected external braking resistor is still required where the application needs dynamic braking.


19.6 Ethernet/IP Integration

Embedded Ethernet/IP allows the drive to participate in centralized automation.

This can be useful for:

  • Production-line control
  • Centralized monitoring
  • Fault management
  • Speed control
  • Machine diagnostics
  • Drive parameter management

19.7 Forced-Air Cooling

Forced-air cooling is suitable for properly ventilated industrial cabinets.

It provides a practical cooling arrangement for this power level.


19.8 Broad Product Family

The PowerFlex 755 family provides multiple current and voltage configurations.

This allows equipment manufacturers to use a common drive platform across different motor sizes.


20. Five Recommended Models From the Same Series

The following five models are closely related to the 20G1ANF034JA0NNNNN and can be considered when selecting another PowerFlex 755 configuration.

Model Voltage Output current Normal-duty power Heavy-duty power Frame Cooling Approx. dimensions Approx. weight
20G1ANF023JA0NNNNN 690 VAC 23 A 18.5 kW 15 kW Frame 6 Forced air Approx. 570 × 345 × 377 mm Approx. 14.51 kg
20G1ANF030JA0NNNNN 690 VAC 30 A 22 kW 18.5 kW Frame 6 Forced air Approx. 570 × 345 × 377 mm Approx. 14.51 kg
20G1ANF034JA0NNNNN 690 VAC 34 A 30 kW 22 kW Frame 6 Forced air Approx. 570 × 345 × 377 mm Approx. 14.51 kg
20G1ANF046JA0NNNNN 690 VAC 46 A 37 kW 30 kW Frame 6 Forced air Approx. 570 × 345 × 377 mm* Approx. 14.51 kg*
20G1ANF052JA0NNNNN 690 VAC 52 A class Higher power class Higher HD class Frame 6 Forced air Approx. Frame 6 dimensions* Approx. 14.51 kg*

The models above are useful for comparing nearby current and power ratings within the same product family.

The 23 A and 30 A versions are useful when the required motor size is lower than the 34 A configuration, while the 46 A and larger configurations can be considered when additional current capacity is required.

*Approximate physical values for related models should be confirmed against the exact configuration before final cabinet design.


21. Same-Series Model Comparison

Specification 20G1ANF023JA0NNNNN 20G1ANF030JA0NNNNN 20G1ANF034JA0NNNNN 20G1ANF046JA0NNNNN
Voltage class 690 VAC 690 VAC 690 VAC 690 VAC
Output current 23 A 30 A 34 A 46 A
Normal-duty power 18.5 kW 22 kW 30 kW 37 kW
Heavy-duty power 15 kW 18.5 kW 22 kW 30 kW
Frame 6 6 6 6
Cooling Forced air Forced air Forced air Forced air
Enclosure IP20/IP00 IP20/IP00 IP20/IP00 IP20/IP00
Ethernet/IP Yes Yes Yes Yes
Dynamic-braking transistor Yes Yes Yes Yes
HIM None None None None
Approx. dimensions 570 × 345 × 377 mm* 570 × 345 × 377 mm* 570 × 345 × 377 mm 570 × 345 × 377 mm*
Approx. weight 14.51 kg* 14.51 kg* 14.51 kg 14.51 kg*

This comparison shows how the same general architecture can be used across several motor-power levels.


22. Five Related Popular Models Under the Same Brand

For applications where a different product series is acceptable, the following models provide additional options from the same brand’s drive portfolio.

They should not be treated as direct replacements without checking voltage, current, power, braking, communication and mechanical requirements.

Model Product series Voltage class Output current / rating Typical power class Cooling Approx. dimensions Approx. weight
20G1ANF030JA0NNNNN PowerFlex 755 690 VAC 30 A 22 kW ND / 18.5 kW HD Forced air Approx. 570 × 345 × 377 mm Approx. 14.51 kg
20G1ANF046JA0NNNNN PowerFlex 755 690 VAC 46 A 37 kW ND / 30 kW HD Forced air Approx. 570 × 345 × 377 mm* Approx. 14.51 kg*
20F11ND034AA0NNNNN PowerFlex 753 480 VAC class Approx. 34 A Approx. 22 kW class Forced air Configuration dependent Approx. 10–15 kg*
25B-D030N114 PowerFlex 525 480 VAC class Approx. 30 A Approx. 15 kW class Fan cooled Compact frame Approx. 7 kg*
25B-D017N114 PowerFlex 525 480 VAC class Approx. 17 A Approx. 7.5 kW class Fan cooled Compact frame Approx. 4 kg*

The first two models are the closest alternatives because they remain within the PowerFlex 755 family.

The PowerFlex 753 and PowerFlex 525 models are more appropriate when the machine has different voltage, size or control requirements.


23. Application Comparison

Application Suitability Main reason
Conveyor High Adjustable speed and controlled acceleration
Pump High Variable-speed flow control
Fan High Adjustable airflow
Blower High Variable process airflow
Mixer High Adjustable motor speed
Material handling High Controlled motor operation
High-inertia machinery Suitable with correct braking design Internal DB transistor
Production line High Networked motor control
Process machinery High Variable speed and automation integration
Fixed-speed simple motor May be unnecessary VFD functionality may exceed requirements

24. Cabinet Installation

The approximate dimensions of the drive are:

570 mm × 345 mm × 377 mm

with an approximate weight of:

14.51 kg

The physical dimensions should not be used as the complete cabinet envelope.

Additional space may be required for:

  • Input power cables
  • Motor cables
  • Control cables
  • Ethernet cable
  • Grounding connections
  • Airflow
  • Terminal access
  • Maintenance
  • Cooling
  • Braking-resistor connections

The drive should be mounted securely because the complete assembly weighs approximately 14.51 kg.


25. Thermal Management

A drive of this power level can generate a considerable amount of heat.

When installing the unit in a cabinet, the following should be considered:

Thermal factor Importance
Ambient temperature High
Cabinet airflow High
Drive cooling fan High
Cabinet heat load High
Neighboring drives High
Dust accumulation Medium to high
Air inlet/outlet arrangement High
Internal cabinet temperature High

A cabinet that is physically large enough may still be thermally unsuitable if airflow is insufficient.


26. Dynamic Braking Application Considerations

The internal braking transistor makes the JA0 configuration useful for applications that require dynamic braking.

However, dynamic braking should be designed according to:

  • Motor inertia
  • Load inertia
  • Desired stopping time
  • Number of braking cycles
  • Motor speed
  • DC-bus energy
  • Braking-resistor rating
  • Resistor duty cycle
  • Ambient temperature

The braking resistor must be capable of handling the energy generated during the actual braking cycle.

For applications involving frequent rapid stops, the braking system should be sized according to the worst operating condition rather than the average operating condition.


27. Advantages in Automated Machinery

The combination of variable-speed operation and network communication makes this drive particularly useful in automated machinery.

For example, a production line can use the drive to:

  1. Receive a speed command from the controller.
  2. Accelerate the motor according to a defined ramp.
  3. Maintain the required operating speed.
  4. Monitor motor operating conditions.
  5. Detect faults.
  6. Reduce speed when the production process changes.
  7. Decelerate when the machine stops.
  8. Report drive status back to the controller.

This provides much greater control than a simple contactor-based motor starter.


28. Maintenance and Service Considerations

Routine inspection is important for long-term operation.

Component / area Inspection item
Cooling fan Operation and abnormal noise
Air passages Dust and obstruction
Power terminals Loose connections and heat marks
Motor cables Insulation and connection
Grounding Connection condition
Cabinet Dust and moisture
Ethernet/IP cable Connection integrity
Braking circuit Resistor and wiring condition
Drive alarms Alarm history
Drive faults Fault history
Ambient temperature Operating environment

Maintenance frequency should be adjusted according to actual operating conditions.


29. Important Selection Factors

When choosing the 20G1ANF034JA0NNNNN for a new machine or replacement project, the following parameters should be checked.

Selection factor Required check
Motor voltage Must match drive application
Supply voltage Must match 690 VAC class
Motor current Must be within applicable drive rating
Motor power Compare with ND/HD rating
Duty type Normal or heavy duty
Acceleration Check motor and load inertia
Deceleration Check braking requirements
Dynamic braking JA0 configuration provides DB transistor
Communication Confirm Ethernet/IP requirements
Cabinet size Confirm dimensions and clearance
Cooling Confirm adequate airflow
Environment Check temperature, dust and humidity
Motor cable Check cable length and construction
Grounding Confirm system grounding
Maintenance access Allow adequate service space

30. Model Number and Configuration Significance

The catalog number 20G1ANF034JA0NNNNN is not simply a model name.

The individual sections identify different aspects of the drive configuration.

The important practical information represented by the model includes:

  • PowerFlex 755 family
  • 690 VAC class
  • 34 A current class
  • Frame 6 mechanical arrangement
  • JA configuration
  • Dynamic-braking transistor
  • Filter configuration
  • Communication configuration
  • Operator-interface configuration

This is why two drives that appear almost identical can have different electrical capabilities.

For replacement work, the complete catalog number should be compared rather than selecting a drive solely from the nominal motor power.


31. Quick Reference Table

Category 20G1ANF034JA0NNNNN
Model 20G1ANF034JA0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Voltage 690 VAC
Phase Three-phase
Output current 34 A
Normal-duty power 30 kW
Heavy-duty power 22 kW
Frame Frame 6
Cooling Forced air
Enclosure Open type
Protection IP20/IP00
Ethernet/IP Yes
HIM None / blank
Dynamic braking Internal DB transistor
Input precharge Yes
DC terminals None
Filter Yes
CM jumper Installed
Dimensions 570 × 345 × 377 mm
Weight 14.51 kg
Main applications Pumps, fans, conveyors, mixers, material handling, process machinery
Installation Industrial electrical cabinet

32. Final Product Summary

The 20G1ANF034JA0NNNNN is a high-capacity industrial variable-frequency drive in the PowerFlex 755 series.

It is designed for 690 VAC three-phase motor systems and provides approximately 34 A output current, 30 kW normal-duty capacity and 22 kW heavy-duty capacity.

Its Frame 6 construction, forced-air cooling, Ethernet/IP communication, filtered configuration and open-type IP20/IP00 enclosure make it suitable for integration into industrial control panels and automated production equipment.

One of the most significant characteristics of this particular model is its internal dynamic-braking transistor. This provides an important advantage in applications where controlled deceleration is required, although the external braking resistor must still be selected according to the actual braking energy and duty cycle.

The approximate physical dimensions are 570 × 345 × 377 mm, and the approximate weight is 14.51 kg. These figures are useful for product comparison and preliminary cabinet planning, while the exact mechanical drawing should be used for final installation.

The drive can be used for conveyors, pumps, fans, blowers, mixers, material-handling systems, production machinery, process equipment and high-inertia applications where variable motor speed and controlled acceleration/deceleration are required.

Its main advantages include 690 VAC operation, 34 A output capability, 30 kW normal-duty capacity, 22 kW heavy-duty capability, Ethernet/IP integration, forced-air cooling, filtered electrical configuration, Frame 6 construction and an internal dynamic-braking transistor.

For applications requiring a similar drive with a different power rating, the 20G1ANF023JA0NNNNN, 20G1ANF030JA0NNNNN, 20G1ANF046JA0NNNNN and other PowerFlex 755 configurations provide useful alternatives.

For a broader product selection, the PowerFlex 753 and PowerFlex 525 families provide options for applications requiring different voltage classes, power ranges, physical sizes or machine-control architectures.

When selecting a replacement or designing a new system, the most important factors are the motor nameplate voltage, motor full-load current, motor kW, duty classification, overload requirement, acceleration/deceleration characteristics, braking requirements, communication method, cabinet dimensions, cooling conditions and installation environment.

The JA0 configuration should be specifically identified when dynamic braking is required. A similar model with a different option code may have the same voltage and current rating but may not provide the same braking hardware.



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