32456 results
Allen Bradley / Drives / PowerFlex 4M
The adjustable frequency AC drive is configured for 3-phase applications. It incorporates a filtered emission classification, ensuring compliance with electromagnetic standards. The drive is designed for panel mounting and is suited for operation at altitudes up to 1000 meters. Its enclosure type is
Allen Bradley / Drives / PowerFlex 755
This AC drive operates with an input category that includes AC input with precharge and no DC terminals. It supports system frequencies of 50 or 60 Hz. The drive is engineered with an enclosure rated at IP00, IP20, NEMA Open, and NEMA 1, which ensures adequate protection in controlled environments.
Allen Bradley / Drives / 1336 Adjustable
This dynamic brake chopper features a rated DC voltage of 750 V and has a dynamic braking resistor value of 2.5 ohms. The chopper includes IGBT transistors and is enclosed in an open-style design with an IP00 rating. It operates effectively in temperatures from -10°C to 40°C and can be stored in a t
Allen Bradley / Drives / PowerFlex 700
The part 20BD065A3AYNAND0 is an adjustable frequency AC drive designed for three-phase systems with a rated voltage of 480 VAC. It handles an input current of 65 A and operates at an input frequency of 60 Hz. The control method employed is vector control, providing precise motor performance. This mo
Allen Bradley / Drives / PowerFlex 525
With a maximum input current of 18.0 A and an output current rating of 8.0 A, this drive can manage a normal and heavy-duty horsepower rating of 1.5 Hp. The design accommodates relative humidity levels of up to 95% without condensation and operates effectively within a temperature range from -20 to
Allen Bradley / Drives / PowerFlex 753
Designed for effective motor management, this AC drive is housed in an IP20/IP00 enclosure, compliant with NEMA/UL Type Open specifications. The device is equipped with embedded I/O and dynamic braking transistors, improving its operational functionality. The mounting orientation is vertical for eff