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The 20G1G3C302LNDNNNNN is a high-power PowerFlex 755TL Cabinet AC Drive designed for demanding industrial motor-control applications.
It is a cabinet-type, air-cooled variable-frequency drive intended for large three-phase AC motors. The unit belongs to the PowerFlex 750 family and specifically to the PowerFlex 755TL product series.
The model is designed around a 400 V AC three-phase power system and provides a 302 A Normal Duty current rating, with additional current ratings available for Light Duty and Heavy Duty operation. The published rating structure for this configuration is approximately 367 A Light Duty, 302 A Normal Duty, and 260 A Heavy Duty.
The large cabinet construction makes this model fundamentally different from compact machine-mounted frequency converters. It is intended for industrial installations where the drive, cooling system, power components, control components, and associated electrical equipment are integrated into a floor-standing cabinet.
The model is particularly suitable for large pumps, fans, compressors, conveyors, process machinery, material-handling equipment, and other high-power motor applications where controlled motor speed, controlled acceleration and deceleration, and stable process operation are required.
| Parameter | Specification |
|---|---|
| Model | 20G1G3C302LNDNNNNN |
| Brand | Allen-Bradley |
| Product family | PowerFlex 750 |
| Product series | PowerFlex 755TL |
| Product type | Cabinet AC Drive |
| Drive category | Variable-frequency AC drive |
| Input voltage | 400 V AC |
| Input configuration | 3-phase AC |
| Cooling | Air cooled |
| Installation | Floor-standing cabinet |
| Drive rating class | High-power industrial |
| Light Duty current | 367 A |
| Normal Duty current | 302 A |
| Heavy Duty current | 260 A |
| Light Duty power class | 200 kW |
| Normal Duty power class | 160 kW |
| Heavy Duty power class | 132 kW |
| Cabinet width | Approx. 1200 mm |
| Cabinet depth | Approx. 675 mm |
| Cabinet height | Approx. 2132 mm |
| Approximate dimensions | 1200 × 675 × 2132 mm (W × D × H) |
| Approximate weight | 861 kg |
| Installation type | Floor mounted |
| Application category | Industrial motor control |
| Typical motor range | Large industrial motors |
| Cabinet construction | Integrated industrial drive cabinet |
The combination of 367 A Light Duty, 302 A Normal Duty, and 260 A Heavy Duty allows the drive to be selected according to the actual load profile rather than simply selecting a drive based on the motor’s nominal horsepower.
For continuous industrial machinery, the Normal Duty rating is generally an important reference point. Applications with significant overload requirements should be evaluated using the appropriate Heavy Duty rating rather than selecting solely from the motor’s nominal power.
The 20G1G3C302LNDNNNNN belongs to the PowerFlex 755TL series.
The PowerFlex 755TL family is intended for applications requiring high-performance motor control in a cabinet-style industrial drive package.
The “TL” configuration is associated with a low-harmonic cabinet drive architecture. This makes the series particularly relevant to industrial facilities where electrical power quality, harmonic management, and high-power motor control are important considerations.
The PowerFlex 755TL series is positioned above compact variable-frequency drives in terms of physical size, power capability, cabinet integration, and system-level application requirements.
It is therefore normally used in large industrial equipment and plant-level systems rather than small standalone machines.
Brand: Allen-Bradley
Allen-Bradley is the brand associated with the product.
For industrial automation engineers, the brand is widely associated with programmable control systems, motor control, variable-frequency drives, industrial networking, safety systems, and automation components.
Within this product family, the PowerFlex designation identifies the variable-frequency drive platform.
| Electrical Parameter | Specification |
|---|---|
| Model | 20G1G3C302LNDNNNNN |
| Input voltage | 400 V AC |
| Input phase | 3-phase |
| Nominal voltage class | 400 V class |
| Light Duty current | 367 A |
| Normal Duty current | 302 A |
| Heavy Duty current | 260 A |
| Light Duty power | 200 kW |
| Normal Duty power | 160 kW |
| Heavy Duty power | 132 kW |
| Motor type | Three-phase AC motor |
| Drive type | Variable-frequency AC drive |
| Input architecture | Low-harmonic cabinet architecture |
| Cooling | Forced-air / air cooled |
| Installation | Floor mounted |
| Cabinet type | Integrated drive cabinet |
| Current-control range | Application dependent |
| Speed-control capability | Application dependent |
| Overload capability | Depends on duty classification |
| Braking configuration | Application/configuration dependent |
| Regenerative operation | Application dependent |
| Harmonic performance | Low-harmonic configuration |
| Communication | Industrial automation communication options available depending on configuration |
| Motor feedback | Optional/configuration dependent |
| Safety functions | Configuration dependent |
| Approximate dimensions | 1200 × 675 × 2132 mm |
| Approximate weight | 861 kg |
The most important electrical distinction is the three-duty rating.
The 367 A Light Duty rating is intended for applications with comparatively moderate overload requirements.
The 302 A Normal Duty rating provides the primary continuous-duty reference for many industrial applications.
The 260 A Heavy Duty rating is intended for applications where the motor experiences higher load demand and greater overload requirements.
The drive has three useful power classes:
| Duty Class | Current | Approx. Power |
|---|---|---|
| Light Duty | 367 A | 200 kW |
| Normal Duty | 302 A | 160 kW |
| Heavy Duty | 260 A | 132 kW |
This rating structure is important because motor applications do not all place the same demands on a drive.
A centrifugal fan, for example, can have a very different load profile from a conveyor carrying heavy material.
A compressor can also require different acceleration and overload characteristics compared with a pump.
Therefore, a drive should not be selected only from the motor nameplate horsepower. The actual load torque, starting condition, acceleration time, overload requirement, operating speed range, and duty cycle should also be considered.
| Mechanical Parameter | Specification |
|---|---|
| Model | 20G1G3C302LNDNNNNN |
| Cabinet width | Approx. 1200 mm |
| Cabinet depth | Approx. 675 mm |
| Cabinet height | Approx. 2132 mm |
| Overall dimensions | Approx. 1200 × 675 × 2132 mm |
| Approximate cabinet volume | Approx. 1.73 m³ |
| Approximate weight | 861 kg |
| Mounting | Floor standing |
| Cooling | Forced air |
| Installation space | Large industrial electrical-room space |
| Transportation | Heavy equipment handling required |
| Cabinet access | Service access required |
| Ventilation | Required |
| Floor loading | Must accommodate approximately 861 kg plus installation allowances |
The physical dimensions are significant.
At approximately 2132 mm high, the cabinet requires careful consideration of room height, transportation routes, door openings, lifting arrangements, and service clearance.
The approximate 861 kg weight also means that the installation floor should be checked for appropriate load-bearing capacity.
The cabinet should not be treated like a conventional wall-mounted variable-frequency drive. It should be planned as a complete industrial electrical cabinet.
The 20G1G3C302LNDNNNNN is designed for high-power variable-speed motor control in industrial environments.
The drive converts incoming three-phase AC electrical power into controlled electrical output for a motor. By controlling the output frequency and voltage, the system can regulate motor speed and torque according to the process requirement.
This approach allows a motor-driven machine to operate at different speeds rather than simply switching between full-speed operation and shutdown.
For many industrial processes, this provides better process control.
For example, a pump does not necessarily need to operate at full speed at all times. A fan may require different airflow during different production conditions. A conveyor may require controlled acceleration and different operating speeds depending on material flow.
The drive provides the electrical control platform required for these applications.
One of the important characteristics of the PowerFlex 755TL series is its low-harmonic architecture.
Large variable-frequency drives can have a significant effect on an industrial electrical distribution system.
When many high-power drives are installed in the same facility, harmonic current can become an important engineering consideration.
The low-harmonic design of the PowerFlex 755TL series is intended for applications where controlling the electrical characteristics seen by the upstream power system is important.
This can be particularly valuable in large manufacturing plants, water-treatment facilities, process plants, production facilities, and other installations containing several large electrical loads.
The 20G1G3C302LNDNNNNN uses an air-cooled design.
At approximately 160 kW Normal Duty, the amount of heat generated by the drive system is significant, so airflow management is an important part of the installation.
The cabinet should have adequate ventilation and sufficient clearance for the cooling system.
The surrounding environment should also be considered.
Dust, high ambient temperature, blocked ventilation paths, excessive humidity, and poor cabinet-room airflow can negatively affect drive operation and service life.
For this reason, the drive-room HVAC and ventilation system should be considered together with the drive installation.
The 302 A Normal Duty rating makes this drive suitable for large industrial motors.
The 160 kW Normal Duty class allows it to serve applications that are beyond the practical range of small and medium machine drives.
This makes it suitable for plant-level motor applications where high output power and controlled speed are required.
The low-harmonic architecture is one of the major system-level advantages of this series.
It can be particularly useful where a large number of variable-frequency drives operate from the same electrical distribution system.
This allows electrical engineers to consider the drive not only as a motor controller but also as part of the plant’s overall power-quality design.
The cabinet design provides an integrated industrial installation.
Instead of installing a large drive module separately and then building a separate enclosure around it, the cabinet configuration provides a dedicated floor-standing drive arrangement.
This can simplify large system architecture and make the drive suitable for centralized electrical rooms.
The three duty ratings provide flexibility.
The same drive configuration can be evaluated for different application load characteristics:
This is useful because industrial machinery does not have a single universal torque profile.
The drive can be used in a wide range of machinery.
Typical applications include:
Large pumps are one of the natural applications for this class of drive.
The drive can control pump speed according to flow or pressure requirements.
Instead of operating a pump continuously at maximum speed, the control system can adjust motor speed according to process demand.
This can improve process flexibility and provide more precise control.
Large fans can require substantial motor power.
The drive can regulate fan speed according to ventilation or process requirements.
Typical applications include industrial exhaust systems, process ventilation, cooling systems, air-handling equipment, and large-scale ventilation systems.
Compressors can have demanding torque characteristics and may require controlled acceleration and speed regulation.
A high-power drive can be integrated into the compressor control system where variable-speed operation is required.
Large conveyors often benefit from controlled starting and stopping.
A variable-frequency drive can provide controlled acceleration, reducing mechanical shock during startup.
Speed adjustment can also allow the conveyor to match the production process.
Industrial process equipment frequently requires a motor to operate at different speeds during different stages of production.
The drive can provide a controllable motor-speed platform for such machinery.
Large pumps, blowers, and process motors are common in water-treatment installations.
A low-harmonic high-power drive can be useful where several large motors operate within the same facility.
The main advantage of using a high-power variable-frequency drive is that the motor becomes part of the process-control system.
Instead of treating the motor as a simple ON/OFF device, the drive allows motor speed and torque to become controllable process variables.
This can be useful for:
Because this is a large cabinet drive, installation planning is more involved than with compact inverters.
The following factors should be considered before installation:
| Installation Item | Recommended Consideration |
|---|---|
| Model | 20G1G3C302LNDNNNNN |
| Power supply | 400 V AC, 3-phase system |
| Cabinet location | Dedicated industrial electrical area |
| Floor loading | Must support approximately 861 kg |
| Cabinet height | Approximately 2132 mm |
| Cabinet width | Approximately 1200 mm |
| Cabinet depth | Approximately 675 mm |
| Ventilation | Required |
| Ambient temperature | Must remain within applicable operating limits |
| Dust control | Important |
| Cable routing | Adequate power and control separation |
| Grounding | Proper industrial grounding required |
| Motor cable | Correctly sized for motor current and installation conditions |
| Maintenance access | Adequate service clearance required |
| Lifting | Heavy-equipment handling required |
| Electrical protection | Must be coordinated with the drive and power system |
| EMC considerations | Should be included in system design |
| Motor compatibility | Verify motor voltage, current, insulation, and duty |
The cabinet dimensions and weight should be incorporated into the plant layout before equipment delivery.
The approximately 861 kg weight also means that ordinary manual handling is not appropriate for installation.
The following models are closely related PowerFlex 755-family configurations.
They cover different current ratings and therefore different motor-power ranges.
They should be regarded as related models rather than automatically interchangeable replacements.
| Model | Series | Voltage | Light Duty | Normal Duty | Heavy Duty | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 20G1G3C367LNDNNNNN | PowerFlex 755TL | 400 V AC | 460 A / 250 kW | 367 A / 200 kW | 302 A / 160 kW | Approx. 1200 × 675 × 2132 mm | Approx. 861 kg |
| 20G1G3C460LNDNNNNN | PowerFlex 755TL | 400 V AC | 540 A / 315 kW | 460 A / 250 kW | 367 A / 200 kW | Approx. 1200 × 675 × 2132 mm | Approx. 861 kg |
| 20G1G3C540LNDNNNNN | PowerFlex 755TL | 400 V AC | 650 A / 400 kW | 540 A / 315 kW | 460 A / 250 kW | Configuration-dependent cabinet | Approx. 861 kg class |
| 20G1G3C585LNDNNNNN | PowerFlex 755TL | 400 V AC | Higher current class | 585 A class | Application-dependent | Configuration-dependent cabinet | Configuration-dependent |
| 20G1G3C750LNDNNNNN | PowerFlex 755TL | 400 V AC | Higher current class | 750 A class | Application-dependent | Large cabinet configuration | Configuration-dependent |
Among these models, the 20G1G3C367LNDNNNNN and 20G1G3C460LNDNNNNN are particularly useful comparison points because they remain within the same 400 V PowerFlex 755TL cabinet family while providing higher current capacity.
The exact physical dimensions and shipping weight should be confirmed from the mechanical configuration before equipment replacement or cabinet planning because high-current cabinet assemblies can vary depending on the complete configuration.
| Model | Normal Duty Current | Normal Duty Power | Voltage | Cooling | Mounting | Dimensions | Weight |
|---|---|---|---|---|---|---|---|
| 20G1G3C302LNDNNNNN | 302 A | 160 kW | 400 V | Air cooled | Floor cabinet | 1200 × 675 × 2132 mm | 861 kg |
| 20G1G3C367LNDNNNNN | 367 A | 200 kW | 400 V | Air cooled | Floor cabinet | Approx. 1200 × 675 × 2132 mm | Approx. 861 kg |
| 20G1G3C460LNDNNNNN | 460 A | 250 kW | 400 V | Air cooled | Floor cabinet | Approx. 1200 × 675 × 2132 mm | Approx. 861 kg |
| 20G1G3C540LNDNNNNN | 540 A | 315 kW | 400 V | Air cooled | Floor cabinet | Configuration-dependent | Approx. 861 kg class |
| 20G1G3C585LNDNNNNN | 585 A class | Application-dependent | 400 V | Air cooled | Floor cabinet | Configuration-dependent | Configuration-dependent |
The models become progressively larger in electrical capacity as the current rating increases.
When selecting among them, the motor’s full-load current should be compared with the appropriate duty rating.
A 302 A drive should not be replaced by a larger-current model merely because the larger model appears to offer more capacity. The complete system must also be evaluated for protection, cable sizing, cabinet arrangement, power distribution, cooling, and control configuration.
The following five models represent other commonly used drive configurations from the same brand family.
They are included as comparison products rather than direct substitutes for the 20G1G3C302LNDNNNNN.
| Model | Product Series | Input Voltage | Current | Power Class | Cooling | Dimensions | Weight |
|---|---|---|---|---|---|---|---|
| 20F1AND302JA0NNNNN | PowerFlex 753 | 480 V AC | 302 A | 250 HP ND | Air cooled | Configuration-dependent | Configuration-dependent |
| 20F1AND248JN0NNNNN | PowerFlex 753 | 480 V AC | 248 A | 200 HP ND | Air cooled | Configuration-dependent | Configuration-dependent |
| 25B-B011N104 | PowerFlex 525 | 200–240 V AC | 11 A | 3 HP / 2.2 kW | Air cooled | Compact frame | Configuration-dependent |
| 25B-B024N104 | PowerFlex 525 | 200–240 V AC | 24 A | 7.5 HP / 5.5 kW | Air cooled | Compact frame | Configuration-dependent |
| 25B-E019N104 | PowerFlex 525 | 525–600 V AC | 19 A | 15 HP / 11 kW | Air cooled | Compact frame | Configuration-dependent |
These models cover a much broader power range.
The PowerFlex 753 products are closer to the PowerFlex 755 family in terms of industrial applications.
The PowerFlex 525 products are considerably smaller and are intended for compact machine applications.
The 20F1AND302JA0NNNNN is a high-power PowerFlex 753 AC drive.
It is designed for 480 V AC three-phase systems and has a 302 A current rating.
Its normal-duty rating is approximately 250 HP, making it suitable for large industrial motors.
| Parameter | Specification |
|---|---|
| Model | 20F1AND302JA0NNNNN |
| Series | PowerFlex 753 |
| Input voltage | 480 V AC |
| Phase | 3-phase |
| Current | 302 A |
| Normal Duty | Approx. 250 HP |
| Heavy Duty | Approx. 200 HP |
| Cooling | Forced air |
| Input | AC input |
| Frame | Large industrial frame |
| Enclosure | Open industrial configuration |
| Dynamic braking | Available through configured braking arrangement |
| Dimensions | Configuration-dependent |
| Weight | Configuration-dependent |
This model is considerably closer to the original product in terms of power level than the compact PowerFlex 525 models.
The 20F1AND248JN0NNNNN provides a somewhat lower current capacity.
| Parameter | Specification |
|---|---|
| Model | 20F1AND248JN0NNNNN |
| Series | PowerFlex 753 |
| Input voltage | 480 V AC |
| Phase | 3-phase |
| Current | 248 A |
| Normal Duty | Approx. 200 HP |
| Heavy Duty | Approx. 150 HP |
| Cooling | Forced air |
| Input | AC input |
| Enclosure | Open industrial configuration |
| Frame | Large industrial frame |
| Dimensions | Configuration-dependent |
| Weight | Configuration-dependent |
This type of drive can be considered for large industrial machinery when the electrical system is based on a 480 V supply and the required motor current is below the available rating.
The 25B-B011N104 belongs to a much smaller drive platform.
It is designed for compact industrial equipment and is suitable for applications where the motor power is only a few kilowatts.
| Parameter | Specification |
|---|---|
| Model | 25B-B011N104 |
| Series | PowerFlex 525 |
| Input voltage | 200–240 V AC |
| Phase | 3-phase |
| Current | 11 A |
| Power | Approx. 3 HP / 2.2 kW |
| Cooling | Air cooled |
| Enclosure | IP20/open type |
| Communication | Embedded industrial Ethernet capability |
| Safety | Integrated safety functionality |
| Installation | Compact panel mounting |
| Dimensions | Compact frame; exact dimensions depend on frame |
| Weight | Lightweight compared with PowerFlex 755 cabinet drives |
This product is not a direct replacement for the 20G1G3C302LNDNNNNN.
The two products serve completely different power ranges and physical installation requirements.
The 25B-B024N104 provides 24 A current capacity and approximately 7.5 HP / 5.5 kW power capability.
| Parameter | Specification |
|---|---|
| Model | 25B-B024N104 |
| Series | PowerFlex 525 |
| Input voltage | 200–240 V AC |
| Phase | 3-phase |
| Current | 24 A |
| Power | Approx. 7.5 HP / 5.5 kW |
| Cooling | Air cooled |
| Enclosure | IP20/open type |
| Communication | Embedded industrial Ethernet capability |
| Safety | Integrated safety functionality |
| Installation | Compact panel mounting |
| Dimensions | Compact frame; exact dimensions depend on frame |
| Weight | Compact/lightweight configuration |
Typical applications include small conveyors, pumps, fans, packaging machines, material-handling equipment, and general machine automation.
The 25B-E019N104 is a higher-voltage PowerFlex 525 configuration.
| Parameter | Specification |
|---|---|
| Model | 25B-E019N104 |
| Series | PowerFlex 525 |
| Input voltage | 525–600 V AC |
| Phase | 3-phase |
| Current | 19 A |
| Power | Approx. 15 HP / 11 kW |
| Cooling | Air cooled |
| Enclosure | IP20/open type |
| Communication | Embedded industrial Ethernet capability |
| Safety | Integrated safety functionality |
| Installation | Compact panel mounting |
| Dimensions | Compact frame; exact dimensions depend on frame |
| Weight | Compact/lightweight configuration |
This model is intended for applications using a higher-voltage motor and electrical distribution system.
The relationship between the main product families can be summarized as follows:
| Product Family | Typical Application Scale | Typical Drive Size | Typical Application |
|---|---|---|---|
| PowerFlex 525 | Small | Compact | Machine-level automation |
| PowerFlex 753 | Medium to large | Industrial | Pumps, fans, conveyors, machinery |
| PowerFlex 755 | Large | Industrial | High-performance motor control |
| PowerFlex 755TL | Large to very large | Cabinet | Low-harmonic high-power applications |
The 20G1G3C302LNDNNNNN belongs to the last category.
Its cabinet construction, current rating, power class, and physical size clearly place it in the large industrial-drive category.
The drive provides substantial motor-control capacity within a dedicated cabinet system.
This makes it suitable for centralized drive installations where several large motor systems are installed within the same industrial electrical area.
The low-harmonic architecture makes this type of drive suitable for applications where the electrical network must be carefully managed.
This is especially relevant to plants with multiple large drives and other sensitive electrical equipment.
The drive is not restricted to one machine type.
The same basic platform can be used in pumping, ventilation, conveying, processing, compression, and material-handling applications, provided the motor and load requirements match the drive ratings.
The cabinet construction is designed for industrial installations.
It provides a substantial enclosure for the drive system and supports installation in dedicated electrical rooms or industrial equipment areas.
The Light Duty, Normal Duty, and Heavy Duty classifications allow the engineer to match the drive more closely to the actual load profile.
For pump applications, variable-speed control can allow the pump to operate closer to actual process requirements.
For example, a water-treatment system may require different flow rates during different production periods.
Instead of maintaining the motor at a fixed speed and controlling flow through mechanical throttling, the drive can adjust motor speed according to the process requirement.
This provides a more flexible control architecture and can reduce unnecessary mechanical stress.
For conveyors, controlled acceleration can reduce mechanical shock.
A large conveyor may have a significant amount of mechanical mass.
Starting the motor abruptly can place stress on couplings, gearboxes, belts, shafts, and other mechanical components.
A variable-frequency drive allows the acceleration profile to be controlled according to the machine requirement.
Fan systems frequently operate at different required airflow levels.
Variable-speed control allows the fan speed to be adjusted to match the required airflow.
This is useful for industrial ventilation, process cooling, extraction systems, and other applications where full-speed operation is not continuously necessary.
Compressors often require carefully managed acceleration and operating speed.
A high-power drive can provide controlled motor operation and integrate motor speed into the overall compressor-control strategy.
The exact suitability depends on compressor type, motor characteristics, pressure requirements, acceleration requirements, and the manufacturer’s application requirements.
Large cabinet drives require a planned maintenance strategy.
Important maintenance areas include:
Dust accumulation can be particularly important for air-cooled equipment.
The cooling system should be inspected regularly in environments containing dust, fibers, oil mist, or other airborne contaminants.
When replacing an existing 20G1G3C302LNDNNNNN, the replacement should not be selected only by comparing horsepower.
The following characteristics should be matched:
| Selection Parameter | Why It Matters |
|---|---|
| Model | 20G1G3C302LNDNNNNN |
| Input voltage | Must match the electrical distribution system |
| Motor voltage | Must match the motor |
| Motor current | Determines required drive current capacity |
| Duty class | Determines usable current and overload capability |
| Power rating | Must correspond to motor and load requirements |
| Harmonic requirements | Important for plant power quality |
| Cabinet dimensions | Required for mechanical replacement |
| Cabinet weight | Important for transportation and installation |
| Cooling | Must match installation environment |
| Braking | Must match stopping requirements |
| Regeneration | Important for regenerative loads |
| Communication | Must match automation architecture |
| Safety | Must match machine safety requirements |
| Motor feedback | Required when feedback control is used |
| Environmental conditions | Determines enclosure and cooling requirements |
A replacement that has the same current rating but a different input architecture may not be a direct functional replacement.
Likewise, a drive with the same horsepower but a different voltage class cannot be treated as an equivalent product.
| Parameter | 20G1G3C302LNDNNNNN |
|---|---|
| Model | 20G1G3C302LNDNNNNN |
| Brand | Allen-Bradley |
| Family | PowerFlex 750 |
| Series | PowerFlex 755TL |
| Product type | Cabinet AC Drive |
| Input | 400 V AC |
| Phase | 3-phase |
| Light Duty current | 367 A |
| Normal Duty current | 302 A |
| Heavy Duty current | 260 A |
| Light Duty power | 200 kW |
| Normal Duty power | 160 kW |
| Heavy Duty power | 132 kW |
| Cooling | Air cooled |
| Installation | Floor mounted |
| Cabinet width | Approx. 1200 mm |
| Cabinet depth | Approx. 675 mm |
| Cabinet height | Approx. 2132 mm |
| Dimensions | Approx. 1200 × 675 × 2132 mm |
| Weight | Approx. 861 kg |
| Application | Large industrial motor control |
| Typical loads | Pumps, fans, compressors, conveyors, process machinery |
| Drive architecture | Low-harmonic cabinet configuration |
| Installation environment | Industrial electrical room / equipment area |
| Duty selection | Light / Normal / Heavy Duty |
| Product scale | High-power industrial |
The 20G1G3C302LNDNNNNN is a large cabinet-type variable-frequency drive belonging to the PowerFlex 755TL series within the PowerFlex 750 family.
Its primary electrical configuration is 400 V AC, three-phase, with a 367 A Light Duty rating, 302 A Normal Duty rating, and 260 A Heavy Duty rating. The corresponding power classes are approximately 200 kW, 160 kW, and 132 kW respectively.
The unit is designed for high-power industrial motor applications where precise motor-speed control, controlled acceleration and deceleration, and low-harmonic operation are important.
Its physical construction is substantial, with an approximate cabinet size of 1200 mm wide × 675 mm deep × 2132 mm high and an approximate weight of 861 kg.
Because of this size and weight, the product should be planned as a complete industrial electrical cabinet rather than as a conventional compact inverter.
The PowerFlex 755TL platform is particularly suitable for large industrial pumps, fans, compressors, conveyors, process machinery, water-treatment systems, material-handling systems, and other large motor-driven equipment.
The low-harmonic design is an important characteristic for plants where multiple high-power drives share the same electrical distribution network.
For equipment replacement, the complete catalog number should always be compared with the proposed replacement. Voltage, current, duty class, power rating, cabinet dimensions, cooling, braking, harmonic architecture, communication options, and motor requirements should all be checked together.
For engineering documentation, procurement, and equipment replacement, the 20G1G3C302LNDNNNNN should therefore be treated as a specific high-power cabinet-drive configuration rather than simply as a generic 302 A frequency converter.