Allen Bradley 20BC260A3ANNACC0 PowerFlex 700 AC Drive
| Company Information | ||||||||
| [email protected] | ||||||||
| Mobile | +8615305023276 | |||||||
| +8615305023276 | ||||||||
| 15305023276 | ||||||||
| Add to | Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China | |||||||
Technical Specifications
| Parameter | Specification |
|---|---|
| Model | 20BC260A3ANNACC0 |
| Product Series | PowerFlex 700 |
| Product Type | AC Drive |
| Input Voltage | 400 VAC |
| Input Voltage Range | 380–480 VAC |
| Input Phase | 3-phase |
| Input Frequency | 50 Hz |
| Input Current | 255 A @ 400 VAC |
| Input Power | 177 kVA @ 400 VAC |
| Continuous Output Current | 260 A |
| Normal-Duty Power | 132 kW |
| Heavy-Duty Power | 110 kW |
| Heavy-Duty Output Current | 308 A for 1 minute; 410 A for 3 seconds |
| Output Voltage | 0–400 VAC |
| Output Phase | 3-phase |
| Maximum Output Frequency | 420 Hz |
| Control Method | Vector Control with 24V DC I/O |
| Motor Control | Sensorless Vector, V/Hz, Vector Control |
| Speed Regulation | 0.1% of base speed in Vector Control mode without feedback |
| Torque Regulation | ±5% without feedback |
| PWM Carrier Frequency | 2, 4, 8, or 10 kHz |
| Efficiency | 97.5% |
| Analog Inputs | 2 |
| Analog Outputs | 2 |
| Digital Inputs | 6 |
| Digital Outputs | 3 |
| Communication Module | ControlNet Coaxial |
| Communication Options | ControlNet, EtherNet/IP, DeviceNet |
| Feedback | No feedback |
| Brake IGBT | None |
| Internal Braking Resistor | None |
| EMC Filter | EMC filter with common-mode choke |
| Human Interface | LCD display with full digital keypad and programming keys |
| Enclosure Rating | IP20 / NEMA/UL Type 1 |
| Motor Overload Protection | Class 10 |
| Acceleration Time | 0–3600 seconds, programmable |
| Deceleration Time | 0–3600 seconds, programmable |
| Stop Modes | Coast, DC Brake, Fast Brake, Ramp-to-Hold, S-Curve, and other programmable modes |
| DC Bus Voltage | 540 VDC @ 380/400 VAC |
| DC Bus Overvoltage Protection | 810 VDC @ 380/400 VAC |
| Input Undervoltage Protection | 233 VAC @ 380/400 VAC |
| Input Overvoltage Protection | 570 VAC @ 380/400 VAC |
| Operating Temperature | 0–50 °C |
| Relative Humidity | 5–95%, non-condensing |
| Maximum Installation Altitude | 1000 m without derating |
| Conformal Coating | Yes |
| Short-Circuit Rating | Up to 200,000 A symmetrical RMS |
| Dimensions | 850 × 403.9 × 275.5 mm |
| Weight | 71.44 kg |
FAQ
1. What are the rated output current and power ratings of the 20BC260A3ANNACC0?
The 20BC260A3ANNACC0 has a continuous rated output current of 260 A. At 400 VAC, it is suitable for normal-duty applications up to approximately 132 kW and heavy-duty applications up to approximately 110 kW. For short-duration overload conditions, the drive can provide 308 A for one minute and 410 A for three seconds. When selecting this drive, the motor’s full-load current should be compared directly with the drive rating. The application’s starting torque, load inertia, acceleration requirements, and operating cycle should also be evaluated to determine whether normal-duty or heavy-duty operation is appropriate.
2. Which motor control methods are supported by the 20BC260A3ANNACC0?
The drive supports V/Hz, Sensorless Vector, and Vector Control. V/Hz control is suitable for general variable-speed applications such as fans, pumps, and conveyors where basic speed control is sufficient. Sensorless Vector control provides improved low-speed torque and speed regulation without requiring an encoder. Vector Control can be used where better torque response, speed stability, and dynamic performance are required. During commissioning, accurate motor nameplate information should be entered, including rated voltage, current, frequency, and speed. Proper motor tuning can further improve control performance when required by the application.
3. What is the purpose of the ControlNet communication function on the 20BC260A3ANNACC0?
The 20BC260A3ANNACC0 is configured with a ControlNet Coaxial communication interface for exchanging control and status information with an industrial automation system. It can be used to connect the drive with a PLC or other compatible controller and transfer information such as start and stop commands, speed references, operating status, output frequency, motor current, and fault conditions. During commissioning, the network address, communication parameters, control words, status words, and reference data should be verified carefully. Reliable network connections are also important because communication interruptions can prevent the drive from receiving commands correctly.
4. Does the 20BC260A3ANNACC0 include an internal braking resistor or Brake IGBT?
No. The 20BC260A3ANNACC0 does not include an internal braking resistor or Brake IGBT. This should be considered when applying the drive to high-inertia machinery, rapid deceleration systems, or equipment with frequent braking cycles. During rapid deceleration, the motor can return regenerative energy to the drive’s DC bus, causing the DC bus voltage to increase. If the regenerative energy cannot be dissipated properly, an overvoltage fault may occur. Applications requiring rapid stopping should therefore be evaluated for an external braking solution based on motor power, load inertia, deceleration time, and the frequency of braking events.
5. What should be checked when the 20BC260A3ANNACC0 develops an overcurrent fault?
When an overcurrent fault occurs, the motor and mechanical load should be checked first. Verify that there is no mechanical blockage, excessive friction, bearing damage, gearbox problem, or sudden increase in load. The motor cables should then be inspected for phase-to-phase shorts, ground faults, insulation damage, and incorrect U/V/W connections. The acceleration time should also be reviewed because a high-inertia load accelerated too quickly can require excessive current. Motor nameplate parameters programmed into the drive should be compared with the actual motor specifications. If the fault continues after the motor is disconnected, further inspection of the drive’s power module and current-sensing circuitry may be necessary.
6. Why can the 20BC260A3ANNACC0 experience an overvoltage fault during deceleration?
An overvoltage fault during deceleration is commonly caused by regenerative energy from the motor. When a high-inertia load decelerates rapidly, the motor can temporarily operate as a generator and return energy to the drive’s DC bus. If the deceleration time is too short, the regenerated energy can cause the DC bus voltage to rise beyond the allowable protection level. Troubleshooting should include checking the deceleration setting, load inertia, operating cycle, and incoming supply voltage. If the process permits, increasing the deceleration time can reduce the amount of regenerative energy. For applications requiring repeated rapid braking, an appropriately sized external braking system should be considered.
7. What can be monitored or configured through the LCD human interface on the 20BC260A3ANNACC0?
The LCD human interface provides access to drive parameters, operating information, configuration functions, and diagnostic data. Technicians can use the keypad to configure operating parameters and monitor conditions such as output frequency, motor current, drive status, alarms, and fault information. During commissioning, the interface can be used to verify the command source, speed reference, motor data, acceleration and deceleration settings, and selected control mode. When a fault occurs, the displayed fault information can help determine whether the problem is related to the motor, mechanical load, power supply, control system, or drive itself.
8. How can the reliability of the 20BC260A3ANNACC0 be improved in industrial applications?
Reliable operation depends on correct sizing, proper wiring, accurate parameter configuration, effective cooling, and preventive maintenance. The 260 A continuous output capability should be matched to the motor’s actual operating current and the application should be evaluated according to its normal-duty or heavy-duty requirements. Because this model does not include an internal braking resistor or Brake IGBT, regenerative energy should be evaluated for high-inertia and frequent-braking applications. The ControlNet network should also be installed and configured correctly to maintain reliable communication with the automation controller. During routine maintenance, technicians should inspect power terminals, motor cables, grounding connections, cooling airflow, and signs of abnormal temperature rise or contamination. Maintaining records of operating parameters and fault conditions can also make troubleshooting faster and help identify recurring problems before they result in unexpected downtime.
Allen Bradley 20BC260A3ANNACC0 PowerFlex 700 AC Drive is in stock. Please contact us for a quick quote and competitive pricing.
| Company Information | ||||||||
| [email protected] | ||||||||
| Mobile | +8615305023276 | |||||||
| +8615305023276 | ||||||||
| 13950166376 | ||||||||
| Add to | Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China | |||||||
Company Introduction
Xiamen Shengruite Trading Co., Ltd. is a company specializing in the supply of industrial PLC spare parts.
We provide high-quality PLC spare parts to customers in the global manufacturing, energy and power, chemical and other fields.
Since its establishment in 2011, after 13 years of rapid development, the cumulative global shipments have reached 223,650 pieces, with an annual output value of US$50 million.
Successfully served more than 500 customers in more than 100 countries and regions including Saudi Arabia, UAE, the United States, Europe, Africa, and Southeast Asia
Our Mission
Provide customers with the best quality PLC spare parts and the fastest delivery service to ensure that their industrial automation systems are always in the best operating condition.
We provide a 1-year warranty service, and we support returns and exchanges for any issues to ensure your rights and interests are fully protected.
We can provide detailed product images upon request, and our team can arrange warehouse photos for confirmation to ensure you have all the information you need before making a purchase.
Shipping times vary depending on your location. With the support of our 16 global warehouses, we strive to deliver orders as quickly as possible. Contact us to get an estimated delivery time for your specific location.
The minimum order quantity (MOQ) is typically one unit. However, for larger orders, please contact us for potential discounts and pricing details.
Yes, we offer competitive pricing for bulk purchases. Please reach out to our sales team with the specifics of your order to receive a custom quote.
We accept various payment methods for wholesale orders, including bank transfers (T/T), letters of credit, and other options upon agreement. For large transactions, please contact us directly for payment terms.
Yes, we offer flexible ordering options for both small and large quantities. Whether youre looking for a single unit or a large batch, we can accommodate your needs.
We occasionally offer promotional discounts for new wholesale customers. Contact us to learn more about any current offers available for first-time buyers.
If you are unsure of compatibility with your existing setup please provide your system details and our support team can verify compatibility prior to purchase.
Returns are accepted within 30 days if the product is unused, unopened, and in its original packaging. Please note that return shipping and associated costs are the buyer\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\\’s responsibility.
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