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The 20BC205A3NNNANA0 is a high-power industrial AC variable frequency drive in the PowerFlex 700 20B family.
It is designed for controlling large three-phase induction motors in industrial machinery where stable speed control, controlled acceleration and deceleration, adjustable torque, motor protection, and reliable operation are important.
This model belongs to the 400 V class and provides a 205 A continuous output-current rating. It is rated for approximately 110 kW normal-duty operation and approximately 90 kW heavy-duty operation.
The drive uses a Frame 6 construction and an IP20 / NEMA Type 1 enclosure arrangement. It is intended primarily for installation inside an electrical cabinet or other protected industrial environment.
The model is configured with standard control and 24 V AC/DC I/O. It includes EMC filtering with a common-mode choke, but it does not have an internal communication module, internal brake resistor, or brake IGBT in this particular configuration.
The model is now a discontinued product, so it is mainly relevant to existing installations, maintenance, replacement, repair, retrofit, and equipment where maintaining compatibility with an established PowerFlex 700 system is important.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product family | PowerFlex 700 AC Drive |
| Series | 20B |
| Model | 20BC205A3NNNANA0 |
| Product type | AC Variable Frequency Drive |
| Drive category | Industrial Adjustable Frequency Drive |
| Frame size | Frame 6 |
| Voltage class | 380–480 V AC |
| Nominal voltage | 400 V AC |
| Input phase | 3-phase |
| Output phase | 3-phase |
| Continuous output current | 205 A |
| Normal-duty rating | 110 kW |
| Heavy-duty rating | 90 kW |
| Enclosure | IP20 / NEMA Type 1 |
| Control configuration | Standard control |
| Control I/O | 24 V AC/DC I/O |
| Feedback option | No feedback |
| Brake IGBT | Without |
| Internal brake resistor | No |
| EMC filter | Included |
| Common-mode choke | Included |
| Communication module | None |
| Custom firmware | None |
| Product status | Discontinued |
The 20BC205A3NNNANA0 should therefore be understood as a large industrial motor-control drive rather than a compact general-purpose inverter.
Its 205 A current class makes it suitable for considerably larger motors than the smaller drives commonly used in packaging machines, small conveyors, or compact pumps.
| Parameter | Specification |
|---|---|
| Catalog number | 20BC205A3NNNANA0 |
| Product family | PowerFlex 700 |
| Series | 20B |
| Frame | 6 |
| Input voltage | 380–480 V AC |
| Nominal input voltage | 400 V AC |
| Input frequency | 50 Hz nominal |
| Input phase | 3-phase |
| Output phase | 3-phase |
| Continuous output current | 205 A |
| Heavy-duty current, 1 minute | 255 A |
| Heavy-duty current, 3 seconds | 313 A |
| Normal-duty motor rating | 110 kW |
| Heavy-duty motor rating | 90 kW |
| Approximate input current | 199 A at 400 V |
| Approximate input power | 148 kVA at 400 V |
| Output voltage | 0 to rated motor voltage |
| Maximum standard-control frequency | 400 Hz |
| Maximum vector-control frequency | 420 Hz |
| Carrier frequency | 2 / 4 / 8 / 10 kHz |
| Rated carrier frequency | 4 kHz |
| Control method | Sine-coded PWM |
| Motor control | Sensorless vector / V/Hz / vector-control capability |
| Speed regulation without feedback | Approximately 0.1% of base speed in vector mode |
| Speed range without feedback | Approximately 120:1 |
| Torque regulation without feedback | Approximately ±5% |
| Digital inputs | 6 |
| Digital outputs | 3 |
| Analog inputs | 2 |
| Analog outputs | 2 |
| Feedback option | None |
| Encoder interface | Not installed as feedback option |
| Encoder supply | 12 V DC, 250 mA capability |
| Communication module | None |
| EMC filter | Yes |
| Common-mode choke | Yes |
| Brake IGBT | No |
| Internal brake resistor | No |
| Enclosure | IP20 / NEMA Type 1 |
| Cooling | Forced air |
| PWM reference | 4 kHz |
| Nominal DC bus voltage | Approximately 540 V DC |
| DC bus undervoltage fault | Approximately 305 V DC |
| DC bus overvoltage trip | Approximately 810 V DC |
| AC input undervoltage trip | Approximately 233 V AC |
| AC input overvoltage trip | Approximately 570 V AC |
| Power ride-through | Approximately 15 ms at full load |
| Logic ride-through | 0.5 s minimum / approximately 2 s typical |
| Efficiency | Approximately 97.5% |
| Maximum altitude without derating | 1,000 m |
| Operating humidity | 5–95% non-condensing |
| Storage temperature | Approximately -40°C |
| Typical ambient range | 0–50°C depending on rating and installation |
| Approximate sound level | 72 dB at Frame 6 / specified fan condition |
| Approximate internal power loss | 493 W under specified normal-duty condition |
| Approximate external power loss | 1,711 W under specified normal-duty condition |
| Approximate total power loss | 2,204 W under specified normal-duty condition |
| Approximate dimensions | See mechanical section below |
| Approximate weight | See mechanical section below |
The most important electrical characteristic of the 20BC205A3NNNANA0 is its 205 A continuous output rating.
At normal duty, this corresponds to approximately 110 kW of motor power.
For applications classified as heavy duty, the recommended rating is approximately 90 kW.
The drive can also provide short-duration overload capability:
| Operating condition | Current rating |
|---|---|
| Continuous normal duty | 205 A |
| Heavy duty, 1 minute | 255 A |
| Heavy duty, 3 seconds | 313 A |
| Approx. 1-minute overload | 110% |
| Approx. 3-second overload | 150% |
This overload capability is useful for machines where the motor experiences temporary increases in mechanical load.
The actual motor selection should always be based on motor full-load current, duty cycle, overload requirement, motor voltage, operating environment, and application characteristics rather than horsepower alone.
The 20BC205A3NNNANA0 belongs to the 380–480 V AC drive class.
The nominal system voltage is 400 V AC, with three-phase input.
| Voltage parameter | Value |
|---|---|
| Drive voltage class | 380–480 V AC |
| Nominal line voltage | 400 V AC |
| Input phase | 3-phase |
| Nominal motor voltage | 400 V AC |
| Nominal DC bus | Approximately 540 V DC |
| DC bus undervoltage trip | Approximately 305 V DC |
| DC bus overvoltage trip | Approximately 810 V DC |
| Input undervoltage trip | Approximately 233 V AC |
| Input overvoltage trip | Approximately 570 V AC |
| Relative line-voltage tolerance | Approximately ±10% |
The drive is therefore appropriate for industrial electrical systems based around the 400 V class.
For an existing installation, the incoming power system should be checked before replacement because selecting a drive with the wrong voltage class can result in immediate compatibility problems.
The catalog number 20BC205A3NNNANA0 represents a specific hardware configuration within the PowerFlex 700 20B family.
The drive is configured with:
This configuration is particularly suitable for applications that use hardwired control signals and do not require an integrated communication adapter or encoder-feedback option as part of the standard drive configuration.
This configuration includes a control interface with an LCD display and full numeric keypad with programming keys.
This is useful during commissioning and maintenance because technicians can inspect drive parameters, operating values, warnings, and fault information directly from the drive interface.
Typical information that can be monitored includes:
For maintenance teams working with older installations, an integrated local interface can make troubleshooting considerably easier.
The 20BC205A3NNNANA0 supports several motor-control approaches.
The main control capabilities include:
| Control method | Availability |
|---|---|
| V/Hz control | Yes |
| Sensorless vector control | Yes |
| Vector control | Yes |
| Full motor tuning | Supported |
| Encoder feedback | Not included in this configuration |
| Adjustable carrier frequency | Yes |
| Programmable current limit | Yes |
Sensorless vector control is particularly useful when good speed and torque performance are required without installing an encoder.
In vector mode without feedback, the drive can provide approximately 0.1% speed regulation across a 120:1 speed range, assuming the motor and drive are properly configured and tuned.
The drive is capable of operating across a broad speed range.
In sensorless vector operation without feedback, the speed regulation is approximately 0.1% of base speed across a 120:1 speed range.
This makes the drive suitable for applications where the motor needs to run significantly below its base speed while maintaining useful torque and speed stability.
Typical examples include:
Two independently programmable acceleration and deceleration times are available.
Each acceleration or deceleration time can be programmed from approximately 0 to 3,600 seconds, with fine adjustment capability.
This is important for high-inertia machines.
A large conveyor, for example, may require a long acceleration period to prevent sudden mechanical loading.
A fan or pump may require a smoother acceleration profile to avoid pressure changes or mechanical shock.
Similarly, a high-inertia rotating machine may need a carefully controlled deceleration period to prevent excessive DC-bus voltage or mechanical stress.
The 20BC205A3NNNANA0 does not include an internal brake IGBT.
It also has no internal brake resistor.
This configuration is therefore best suited to applications where:
If rapid stopping is required, the application engineer should evaluate whether an external dynamic-braking solution or another braking method is necessary.
Applications requiring special attention include:
The standard control arrangement provides a useful combination of analog and digital interfaces.
| I/O type | Quantity |
|---|---|
| Digital inputs | 6 |
| Digital outputs | 3 |
| Analog inputs | 2 |
| Analog outputs | 2 |
| Control supply | 24 V AC/DC |
The I/O can be used for conventional hardwired machine-control functions.
Examples include:
The standard configuration does not include an internal communication module.
The PowerFlex 700 platform was designed to work with industrial automation systems and could be integrated with different communication architectures through appropriate hardware.
Depending on the installed configuration, the broader family supports communication technologies associated with industrial networks such as:
However, the specific 20BC205A3NNNANA0 should be treated as having no internal communication module.
This distinction is important when replacing an existing drive because two models with similar current and voltage ratings may have very different networking capabilities.
This model includes an EMC filter with common-mode choke.
This is beneficial in installations where electromagnetic compatibility is an important consideration.
The filtering arrangement can help reduce conducted electrical noise and improve compatibility between the drive, motor cable, control wiring, and surrounding industrial equipment.
This is particularly useful in installations containing:
The drive provides motor and drive protection functions appropriate for industrial operation.
The standard-control configuration provides Class 10 motor overload protection.
Additional protective functions include:
These features are particularly important with large motors because the energy involved in an electrical fault can be considerable.
The drive provides programmable proactive current limiting.
The current limit can be programmed from approximately 20% to 160% of the rated output current.
For a 205 A drive, this gives a broad control range for managing motor acceleration and temporary load increases.
Current limiting can be useful when:
Large conveyors are a natural application for this drive.
A heavy conveyor can have a large amount of inertia. Direct starting can result in high mechanical stress and high starting current.
The variable-frequency drive allows the motor to accelerate gradually.
This can reduce stress on:
The speed can also be adjusted according to production requirements.
The drive can be used for industrial pumps requiring adjustable speed.
Typical applications include:
Variable-speed operation can provide better process control and may reduce energy consumption when the pump operates under variable-flow conditions.
Large fans and blowers often require substantial motor power.
The drive can adjust motor speed according to airflow requirements.
Applications include:
Operating the fan below full speed when full airflow is unnecessary can provide meaningful energy-saving opportunities in suitable systems.
Large industrial mixers frequently require different speeds at different stages of production.
The drive can provide:
This makes it useful for material-processing and production equipment.
The drive can also be considered for large compressor systems where adjustable-speed operation is compatible with the compressor design.
The main benefits include controlled motor starting, adjustable operating speed, and the ability to match motor operation more closely with process requirements.
The 205 A rating makes the drive suitable for heavy material-handling equipment.
Examples include:
The drive can serve as the motor-control section of large industrial processing equipment.
Typical applications include:
The 205 A continuous output rating is the most important feature of this model.
It places the drive in a high-power industrial category and allows it to control substantially larger motors than compact variable-frequency drives.
The approximately 110 kW normal-duty rating makes the drive suitable for large industrial motors.
For demanding heavy-duty applications, the approximately 90 kW heavy-duty rating provides a more conservative selection point.
Vector control provides significantly better motor-control performance than basic scalar control in applications where torque and speed regulation are important.
This can improve machine response under changing loads.
The drive allows the motor to operate at different speeds rather than being restricted to the fixed speed associated with direct line operation.
This is useful for pumps, fans, conveyors, mixers, and process machinery.
Controlled acceleration reduces the mechanical shock associated with direct-on-line starting.
This can improve the operating life of mechanical components.
The drive can control the rate at which the motor slows down.
This is useful for machines where sudden stopping could cause mechanical damage or product-quality problems.
The six digital inputs, three digital outputs, two analog inputs, and two analog outputs provide considerable flexibility for conventional machine control.
The integrated EMC filtering and common-mode choke provide an advantage in electrically complex industrial environments.
The 255 A one-minute and 313 A three-second heavy-duty current capabilities allow the drive to handle short-term increases in load.
For existing systems already built around the PowerFlex 700 20B family, maintaining the same drive family can simplify troubleshooting, parameter management, cabinet integration, and maintenance procedures.
The physical configuration deserves special attention because this is a large Frame 6 drive.
For the IP20 / NEMA Type 1 drive configuration, the actual open-frame mechanical dimensions are configuration-dependent.
A separately enclosed IP54 / NEMA Type 12 standalone configuration associated with this rating has approximate dimensions of:
These figures should not be confused with the smaller open-frame IP20 drive dimensions.
For procurement and cabinet-layout work, the exact mechanical drawing should be checked against the physical configuration being supplied.
| Mechanical parameter | Approximate value |
|---|---|
| Frame | Frame 6 |
| Standard enclosure | IP20 / NEMA Type 1 |
| Standalone enclosure option | IP54 / NEMA Type 12 |
| IP54 standalone height | 1,828.8 mm |
| IP54 standalone width | 711.3 mm |
| IP54 standalone depth | 487.8 mm |
| IP54 standalone drive + packaging weight | 229.07 kg |
| Cooling | Forced air |
| Installation | Electrical cabinet / protected industrial installation |
Because the weight and dimensions vary substantially between enclosure configurations, the 229.07 kg figure should be regarded as the standalone IP54/NEMA Type 12 packaged configuration rather than automatically assuming it is the bare IP20 drive weight.
| Environmental parameter | Specification |
|---|---|
| Enclosure | IP20 / NEMA Type 1 |
| Optional standalone enclosure class | IP54 / NEMA Type 12 |
| Operating temperature | Approximately 0–50°C depending on rating |
| Reference temperature | 40°C at 400 V |
| Storage temperature | Approximately -40°C |
| Relative humidity | 5–95% non-condensing |
| Maximum altitude without derating | 1,000 m |
| Shock | 15 G peak for 11 ms |
| Vibration | 0.152 mm displacement / 1 G peak |
| Cooling | Forced air |
| Sound level | Approximately 72 dB for Frame 6 at specified airflow |
| Corrosive atmosphere | Not recommended |
| Pollution degree | Enclosure must be selected according to environment |
| Installation environment | Protected industrial environment |
A drive of this size generates a significant amount of heat.
Under the specified normal-duty operating condition, the approximate losses are:
| Loss category | Approximate value |
|---|---|
| Internal loss | 493 W |
| External loss | 1,711 W |
| Total loss | 2,204 W |
| Efficiency | Approximately 97.5% |
The total heat generated by a drive of this size needs to be considered during cabinet design.
Adequate ventilation or cabinet cooling is important.
The cabinet should not be designed simply by allowing enough physical space for the drive. Thermal management, airflow direction, fan capacity, ambient temperature, and heat generated by other components must also be considered.
The drive provides approximately 15 ms of power ride-through at full load.
The logic-control ride-through capability is approximately 0.5 seconds minimum and 2 seconds typical.
These characteristics can help the drive tolerate short disturbances in the incoming electrical supply without immediately shutting down.
The model has substantial upstream protection requirements because of its high power rating.
| Protection parameter | Approximate value |
|---|---|
| Maximum circuit-breaker rating | 600 A |
| Motor circuit protector maximum | 400 A |
| Non-time-delay fuse range | 250–600 A |
| Dual-element time-delay fuse range | 250–450 A |
| Maximum short-circuit rating | 200,000 A symmetrical |
| Input current | Approximately 199 A at 400 V |
| Input power | Approximately 148 kVA |
Actual protective-device selection should be based on the complete installation, applicable electrical standards, available short-circuit current, cable size, motor requirements, and drive installation requirements.
The following models are useful when comparing the 20BC205A3NNNANA0 with other high-power PowerFlex 700 20B configurations.
Some are very close electrically, while others provide a lower or higher current capacity.
| Model | Series | Voltage class | Continuous current | Normal-duty rating | Heavy-duty rating | Frame / class | Approx. dimensions | Weight kg |
|---|---|---|---|---|---|---|---|---|
| 20BC205A3NNNANA0 | PowerFlex 700 / 20B | 400 V | 205 A | 110 kW | 90 kW | Frame 6 | Configuration dependent | 229.07 kg* |
| 20BC205A0NNNANA0 | PowerFlex 700 / 20B | 400 V | 205 A | 110 kW | 90 kW | Frame 6 | Configuration dependent | Approx. Frame 6 class |
| 20BC205A0NNNANC0 | PowerFlex 700 / 20B | 400 V | 205 A | 110 kW | 90 kW | Frame 6 | Approx. Frame 6 | Approx. 71 kg class |
| 20BC170A0NNNANC0 | PowerFlex 700 / 20B | 400 V | 170 A | 90 kW | 75 kW | Frame 6 | Frame 6 class | Approx. 71 kg class |
| 20BC260A0ANNANC0 | PowerFlex 700 / 20B | 400 V | 260 A | 132 kW class | Higher-duty class | Frame 6 class | Frame 6 class | Approx. 85 kg class |
*The 229.07 kg value refers to the listed standalone IP54/NEMA Type 12 drive-and-packaging configuration and should not be interpreted as the bare IP20 drive weight.
| Parameter | 20BC205A3NNNANA0 | 20BC205A0NNNANA0 | 20BC205A0NNNANC0 | 20BC170A0NNNANC0 | 20BC260A0NNNANC0 |
|---|---|---|---|---|---|
| Family | PowerFlex 700 | PowerFlex 700 | PowerFlex 700 | PowerFlex 700 | PowerFlex 700 |
| Series | 20B | 20B | 20B | 20B | 20B |
| Voltage class | 400 V | 400 V | 400 V | 400 V | 400 V |
| Continuous current | 205 A | 205 A | 205 A | 170 A | 260 A |
| Normal-duty power | 110 kW | 110 kW | 110 kW | 90 kW | 132 kW class |
| Heavy-duty power | 90 kW | 90 kW | 90 kW | 75 kW | Higher class |
| Frame | 6 | 6 | 6 | 6 | 6 |
| Standard control | Yes | Yes | Yes | Yes | Configuration dependent |
| EMC filter | Yes | Yes | Yes | Yes | Configuration dependent |
| Communication | None | None | None | None | Configuration dependent |
| Feedback | None | None | None | None | Configuration dependent |
| Internal brake resistor | No | No | No | No | No |
| Brake IGBT | No | No | No | No | Configuration dependent |
| Digital inputs | 6 | 6 | 6 | 6 | 6 class |
| Digital outputs | 3 | 3 | 3 | 3 | 3 class |
| Analog inputs | 2 | 2 | 2 | 2 | 2 class |
| Analog outputs | 2 | 2 | 2 | 2 | 2 class |
| Enclosure | IP20 | IP20 | IP20 | IP20 | IP20 |
| Approx. weight | 229.07 kg* | Frame 6 class | Approx. 71 kg class | Approx. 71 kg class | Approx. 85 kg class |
*Standalone IP54/NEMA Type 12 drive and packaging configuration.
For broader comparison, the following models represent commonly encountered products from the same brand’s industrial drive portfolio.
They cover smaller compact drives as well as more advanced high-power platforms.
| Model | Product family | Voltage class | Current / power class | Control | Enclosure | Approx. dimensions | Weight kg |
|---|---|---|---|---|---|---|---|
| 25B-D017N104 | PowerFlex 525 | 480 V | 17 A / approx. 7.5 kW | Sensorless vector / V/Hz | IP20 | Approx. 109 × 220 × 184 mm | Approx. 2.3 |
| 25B-D010N104 | PowerFlex 525 | 480 V | 10.5 A / approx. 4 kW | Sensorless vector / V/Hz | IP20 | Approx. 87 × 180 × 172 mm | Approx. 1.6 |
| 22B-D017N104 | PowerFlex 40 | 480 V class | 17 A class | Sensorless vector | IP20 | Compact frame | Approx. 4 kg class |
| 20F11ND077JA0NNNNN | PowerFlex 753 | 480 V | 77 A / approx. 60 HP ND | Advanced vector | IP20/IP00 | Frame 5 class | Frame dependent |
| 20G11ND077JA0NNNNN | PowerFlex 755 | 480 V | 77 A / approx. 60 HP ND | Advanced vector | IP20/IP00 | Frame 5 class | Frame dependent |
These five products should not all be considered direct replacements for the 20BC205A3NNNANA0.
The smaller PowerFlex 525 and PowerFlex 40 models are intended for much smaller motors.
The PowerFlex 753 and PowerFlex 755 are more appropriate comparisons when the objective is to modernize a large industrial motor-control system.
The 25B-D017N104 belongs to the PowerFlex 525 family and is designed for substantially smaller motor applications.
Its approximately 17 A current rating is far below the 205 A capability of the main model.
It is particularly suitable for:
Its main advantage is compact size.
| Parameter | 25B-D017N104 |
|---|---|
| Family | PowerFlex 525 |
| Input voltage | 480 V class |
| Input phase | 3-phase |
| Output current | Approx. 17 A |
| Motor power | Approx. 7.5 kW / 10 HP |
| Control | V/Hz and sensorless vector |
| Enclosure | IP20 |
| Approx. dimensions | 109 × 220 × 184 mm |
| Approx. weight | 2.3 kg |
It is therefore best considered a compact-drive alternative rather than a direct replacement.
The 25B-D010N104 is another compact drive.
It has approximately 10.5 A output capacity and is intended for smaller motors.
| Parameter | 25B-D010N104 |
|---|---|
| Family | PowerFlex 525 |
| Voltage | 480 V class |
| Phase | 3-phase |
| Output current | Approx. 10.5 A |
| Motor power | Approx. 4 kW / 5 HP class |
| Control | V/Hz / sensorless vector |
| Enclosure | IP20 |
| Approx. dimensions | 87 × 180 × 172 mm |
| Approx. weight | 1.6 kg |
Its compact size makes it useful where cabinet space is limited.
The 22B-D017N104 belongs to the PowerFlex 40 family.
It is designed for smaller industrial motor-control applications and is considerably smaller than the Frame 6 20B drive.
| Parameter | 22B-D017N104 |
|---|---|
| Family | PowerFlex 40 |
| Voltage class | 480 V |
| Phase | 3-phase |
| Current class | Approximately 17 A |
| Control | Sensorless vector |
| Enclosure | IP20 |
| Application | Small and medium machine control |
| Approx. dimensions | Compact frame |
| Approx. weight | Approx. 4 kg class |
It is a practical option for basic motor-speed applications where the 205 A capacity of the main drive would be excessive.
The 20F11ND077JA0NNNNN belongs to the PowerFlex 753 family.
It is more relevant when considering a modernization of an older high-power drive system.
| Parameter | 20F11ND077JA0NNNNN |
|---|---|
| Family | PowerFlex 753 |
| Voltage | 480 V class |
| Input phase | 3-phase |
| Output current | 77 A |
| Normal-duty rating | Approx. 60 HP |
| Heavy-duty rating | Approx. 50 HP |
| Control | Advanced vector control |
| Cooling | Forced air |
| Enclosure | IP20/IP00 |
| Frame | Frame 5 class |
| Application | Pumps, fans, conveyors, process machinery |
| Approx. dimensions | Frame-dependent |
| Approx. weight | Frame-dependent |
The PowerFlex 753 is better suited to modernization projects where a newer drive platform is desired.
The 20G11ND077JA0NNNNN belongs to the PowerFlex 755 family.
It is designed for applications requiring advanced motor-control functionality and broader system-integration capabilities.
| Parameter | 20G11ND077JA0NNNNN |
|---|---|
| Family | PowerFlex 755 |
| Voltage | 480 V class |
| Input phase | 3-phase |
| Output current | 77 A |
| Normal-duty rating | Approx. 60 HP |
| Heavy-duty rating | Approx. 50 HP |
| Control | Advanced vector control |
| Enclosure | IP20/IP00 |
| Cooling | Forced air |
| Frame | Frame 5 class |
| Application | High-performance industrial machinery |
| Approx. dimensions | Frame-dependent |
| Approx. weight | Frame-dependent |
This is not a direct 205 A replacement, but it is an important model to consider for a complete system modernization.
| Application | 20BC205A3NNNANA0 | 25B-D017N104 | 25B-D010N104 | 20F11ND077JA0NNNNN | 20G11ND077JA0NNNNN |
|---|---|---|---|---|---|
| Large conveyor | Excellent | Limited | Not suitable | Excellent | Excellent |
| Large pump | Excellent | Limited | Not suitable | Excellent | Excellent |
| Large fan | Excellent | Limited | Not suitable | Excellent | Excellent |
| Large mixer | Excellent | Limited | Not suitable | Excellent | Excellent |
| Compressor | Excellent | Small systems | Small systems | Excellent | Excellent |
| Small conveyor | Over-sized | Excellent | Good | Over-sized | Over-sized |
| Packaging machine | Possible | Excellent | Excellent | Possible | Possible |
| Process machinery | Excellent | Good for small systems | Good for small systems | Excellent | Excellent |
| Heavy material handling | Excellent | Not suitable | Not suitable | Excellent | Excellent |
| High-performance machinery | Good | Good for lower power | Good for lower power | Excellent | Excellent |
The drive’s high current capacity is especially useful when a conveyor contains a large amount of material or has significant mechanical inertia.
Starting a large conveyor directly from the electrical line can result in high starting current and mechanical shock.
The drive provides a much more controlled startup.
The acceleration profile can be adjusted to match the conveyor’s mechanical characteristics.
This can reduce stress on belts, couplings, gearboxes, bearings, and drive shafts.
The adjustable speed capability also makes it possible to match conveyor speed with upstream and downstream production equipment.
For suitable centrifugal-pump applications, variable-speed control can provide significant process flexibility.
The motor does not necessarily need to operate continuously at full speed.
When process demand is lower, reducing motor speed can reduce pump output.
This can improve process control and may reduce energy consumption.
The drive also provides controlled acceleration, which can be useful when starting large pumps.
Large industrial fans can consume considerable power.
Using variable-speed operation allows airflow to be adjusted according to process requirements.
This can be useful for:
The variable-speed approach can be considerably more flexible than simply switching a fixed-speed motor on and off.
Industrial mixing processes often require different speeds during different production stages.
For example, the machine may need:
The drive’s programmable speed, acceleration, deceleration, and current-limit functions make this type of operating sequence practical.
Material-handling machinery frequently requires both high motor power and controlled movement.
The 205 A output capability provides substantial motor-control capacity.
The drive can also be configured with different acceleration and deceleration profiles.
This makes it suitable for machinery where sudden acceleration could cause:
Because this is a Frame 6 high-power drive, cabinet design should be handled carefully.
The designer should consider:
The physical enclosure dimensions can be significantly different depending on whether the drive is supplied as an IP20 cabinet-mounted component or as a standalone higher-protection enclosure.
For maintenance teams, several parameters should be recorded before replacing the drive.
| Item | Why it matters |
|---|---|
| Complete catalog number | Identifies the exact configuration |
| Series | Confirms hardware family |
| Voltage | Determines electrical compatibility |
| Current rating | Determines motor compatibility |
| Motor power | Confirms capacity |
| Feedback configuration | Determines speed-control architecture |
| Brake configuration | Determines stopping capability |
| Communication module | Determines network integration |
| I/O configuration | Determines hardwired control |
| Enclosure | Determines environmental protection |
| Frame | Determines mechanical compatibility |
| Firmware | Determines software behavior |
| Motor parameters | Required for correct tuning |
| Acceleration/deceleration | Determines machine behavior |
| Current limit | Affects motor torque |
| Control mode | Affects motor performance |
When selecting a replacement for 20BC205A3NNNANA0, the first priority should be electrical compatibility.
The replacement should be checked for:
| Recommendation | Model | Main reason to consider |
|---|---|---|
| 1 | 20BC205A0NNNANA0 | Same 205 A / 110 kW class with closely related configuration |
| 2 | 20BC205A0NNNANC0 | Same current and power class, useful for configuration comparison |
| 3 | 20BC170A0NNNANC0 | Lower-current alternative for approximately 90 kW applications |
| 4 | 20BC260A0NNNANC0 | Higher-current alternative for larger motor requirements |
| 5 | 20BC260A0ANNACA0 | Higher-capacity 20B configuration for applications requiring additional current |
| Recommendation | Model | Product family | Main application |
|---|---|---|---|
| 1 | 25B-D017N104 | PowerFlex 525 | Compact motor control |
| 2 | 25B-D010N104 | PowerFlex 525 | Small motor applications |
| 3 | 22B-D017N104 | PowerFlex 40 | General-purpose small/medium motor control |
| 4 | 20F11ND077JA0NNNNN | PowerFlex 753 | Industrial modernization |
| 5 | 20G11ND077JA0NNNNN | PowerFlex 755 | Advanced high-performance motor control |
| Category | 20BC205A3NNNANA0 |
|---|---|
| Brand | Allen-Bradley |
| Product family | PowerFlex 700 AC Drive |
| Series | 20B |
| Model | 20BC205A3NNNANA0 |
| Product type | Adjustable Frequency AC Drive |
| Lifecycle | Discontinued |
| Voltage class | 380–480 V AC |
| Nominal voltage | 400 V AC |
| Input frequency | 50 Hz |
| Input phase | 3-phase |
| Output phase | 3-phase |
| Continuous output current | 205 A |
| 1-minute overload current | 255 A |
| 3-second overload current | 313 A |
| Normal-duty motor rating | 110 kW |
| Heavy-duty motor rating | 90 kW |
| Frame | 6 |
| Control | Standard control |
| Motor control | V/Hz / sensorless vector / vector capability |
| Feedback | None |
| Communication module | None |
| Brake IGBT | None |
| Internal brake resistor | None |
| EMC filter | Yes |
| Common-mode choke | Yes |
| Digital inputs | 6 |
| Digital outputs | 3 |
| Analog inputs | 2 |
| Analog outputs | 2 |
| Control supply | 24 V AC/DC |
| Output frequency | 0–400 Hz standard control |
| Vector output frequency | Up to approximately 420 Hz |
| Carrier frequency | 2 / 4 / 8 / 10 kHz |
| Rated carrier frequency | 4 kHz |
| Speed regulation without feedback | Approximately 0.1% |
| Speed range | Approximately 120:1 |
| Torque regulation without feedback | Approximately ±5% |
| Efficiency | Approximately 97.5% |
| Nominal DC bus | Approximately 540 V DC |
| DC bus undervoltage trip | Approximately 305 V DC |
| DC bus overvoltage trip | Approximately 810 V DC |
| AC input undervoltage trip | Approximately 233 V |
| AC input overvoltage trip | Approximately 570 V |
| Input current | Approximately 199 A |
| Input power | Approximately 148 kVA |
| Short-circuit rating | Up to 200,000 A symmetrical |
| Power ride-through | Approximately 15 ms |
| Logic ride-through | 0.5 s minimum / 2 s typical |
| Enclosure | IP20 / NEMA Type 1 |
| Optional standalone enclosure | IP54 / NEMA Type 12 |
| Cooling | Forced air |
| Operating temperature | Approximately 0–50°C |
| Reference temperature | 40°C |
| Relative humidity | 5–95% non-condensing |
| Maximum altitude without derating | 1,000 m |
| Storage temperature | Approximately -40°C |
| Shock | 15 G peak |
| Vibration | 1 G peak |
| Sound level | Approximately 72 dB |
| Internal power loss | Approximately 493 W |
| External power loss | Approximately 1,711 W |
| Total power loss | Approximately 2,204 W |
| IP54 standalone height | 1,828.8 mm |
| IP54 standalone width | 711.3 mm |
| IP54 standalone depth | 487.8 mm |
| IP54 standalone weight | 229.07 kg |
| Typical applications | Conveyors, pumps, fans, mixers, compressors, process machinery |
| Main advantage | High-power industrial motor control with flexible speed and torque regulation |
The 20BC205A3NNNANA0 is a high-capacity industrial variable-frequency drive intended for demanding motor-control applications.
Its 205 A continuous output rating and approximately 110 kW normal-duty capacity make it appropriate for large industrial motors.
The approximately 90 kW heavy-duty rating should be used when the application involves more demanding overload conditions.
The combination of sensorless vector capability, programmable acceleration and deceleration, current limiting, motor overload protection, flexible I/O, EMC filtering, and high overload capability makes the drive suitable for a broad range of industrial equipment.
Its Frame 6 construction also indicates that the product is designed for substantial industrial installations rather than compact machine applications.
For an existing system, the biggest practical advantage is maintaining the same PowerFlex 700 architecture.
For a new machine, however, the discontinued status means that the long-term availability of spare units, replacement hardware, engineering support, and system modernization should be considered before making a new design around this model.
For an existing machine that already uses the 20BC205A3NNNANA0, the closest comparison should begin with other 205 A / 400 V / Frame 6 PowerFlex 700 20B configurations.
If the motor load is lower, the 20BC170 class can provide a more appropriately sized solution.
If additional current capacity is required, the 20BC260 class is worth evaluating.
For modernization rather than like-for-like replacement, the PowerFlex 753 and PowerFlex 755 families are more appropriate candidates to investigate.
The key specifications to retain during replacement are:
400 V class, three-phase input, 205 A continuous output, 110 kW normal duty, 90 kW heavy duty, Frame 6, IP20/NEMA Type 1, standard control, 24 V AC/DC I/O, EMC filtering, no internal brake resistor, no brake IGBT, no feedback option, and no internal communication module.
The most important mechanical point is that dimensions and weight depend on the enclosure configuration. The listed 229.07 kg figure corresponds to the standalone IP54/NEMA Type 12 drive-and-packaging configuration, while the open-frame IP20 Frame 6 version is considerably different.
For purchasing, replacement, cabinet design, or maintenance work, the complete catalog number 20BC205A3NNNANA0 should be retained rather than identifying the unit only as a generic 205 A PowerFlex 700 drive.