853 results
Allen Bradley / Motors / VPL Servo Motors
This low-inertia servo motor operates at a nominal voltage of 400 volts and has a compact frame size of 63 mm. Rated for speeds up to 4500 rpm, it utilizes dual magnet stacks for effective motion control. The feedback mechanism consists of an 18-bit absolute single-turn digital encoder using the Hip
Allen Bradley / Motors / VPL Servo Motors
Designed for versatility, the VPL-B1306F-PK14AS offers six magnet stacks for superior performance. It incorporates an 18-bit absolute multi-turn digital encoder that operates under the Hiperface DSL protocol to ensure precise feedback. The motor features a smooth shaft and includes a single SpeedTec
Allen Bradley / Motors / VPL Servo Motors
This servo motor features three magnet stacks and supports connectivity through a right-angle, 325° rotatable SpeedTec DIN connector. It has a shaft key for secure attachment, making it suitable for various industrial applications. The mounting flange adheres to IEC metric standards, allowing for fl
Allen Bradley / Motors / VPL Servo Motors
This low-inertia servo motor achieves a maximum speed of 6750 RPM and operates at 400V. It comprises two magnet stacks, providing enhanced performance and control. The unit uses an 18-bit absolute multi-turn digital encoder, adhering to the Hiperface DSL protocol for precise feedback. The setup incl
Allen Bradley / Motors / VPL Servo Motors
Featuring three magnet stacks, this servo motor utilizes an 18-bit absolute multi-turn digital encoder with the Hiperface DSL protocol for precise feedback. It has a smooth shaft design and a DIN connector that rotates 325 degrees to facilitate flexible installation, along with an IEC metric mountin
Allen Bradley / Motors / VPL Servo Motors
This servo motor operates at 200V with a frame size of 75 mm and achieves a maximum speed of 3500 RPM. It incorporates dual magnet stacks for improved performance. Equipped with an 18-bit absolute single-turn digital encoder utilizing the Hiperface DSL protocol, it ensures precise feedback. The IP r