


The permanent magnet brake is a device that relies on the magnetic attraction of the permanent magnet combined with the mechanical structure to achieve braking. When the power is off, the brake is held normally, and when the power is on, the demagnetization is released. Compact structure, low power consumption, quick response, stable braking and strong anti-interference performance, and is suitable for working conditions requiring energy saving and miniaturization, such as embodied robots, joint modules, automation equipment and the like.

A special spring power-off electromagnetic brake for a servo motor adopts a normally-closed design, realizes a precise band-type brake by a spring force when the power is off, and realizes an electromagnetic pull-in release when the power is on, so as to meet the requirements of high-frequency starting and stopping and precise positioning of the servo motor. Compact structure, millisecond response, stable torque, low noise, no impact, good protection, suitable for servo motor, humanoid robot and other automatic precision transmission conditions.

BXR ultra-thin brake is designed for spring power loss, with a thickness of only 2/3 of the traditional model, and its ultra-compact structure greatly saves installation space. With lightweight low-inertia rotor, the backlash is very small, the braking operation is quiet and smooth, and it is suitable for precision transmission conditions such as servo motors and surgical robots.



Applications:Maglev centrifugal compressor, SCO2 generator system, waste heat recovery, flywheel energy storage, micro-gas turbine power generation, etc Advantages:The invention has the advantages of high rotating speed, low vibration and noise, 85% reduction in volume and 30% reduction in loss compared with the traditional permanent magnet motor, and original high-precision bearing control technology and integrated displacement detection technology, with suspension accuracy as high as 2UM.

Low temperature rise: The excellent heat dissipation structure design can minimize the thermal elongation of the lead screw and ensure the accuracy of feed positioning. Vibration resistance: The vibration resistance design that meets the national standard A vibration standard can ensure the stability of the feed system under various working conditions. Reliability: Low slot torque and low speed fluctuation, both in light and heavy cutting can maintain good accuracy. High protection: With unique sealing technology,Kaibang servo motors can achieve 1P67 protection level and maintain good condition even in harsh environments.

High efficiency: IE5 energy efficiency, 30% less than traditional motor losses Small size: the volume of traditional high-efficiency industrial motor is reduced by more than 1/3 High reliability: anti-demagnetization ability more than 2.5 times, strong overload ability The industry's first IE5 ultra-high efficiency reluctance industrial motor is 50% smaller than the traditional high-efficiency industrial motor, light-load efficiency is obvious, comprehensive efficiency is higher, low noise and smooth operation, longer life, the use of standard shell, more versatile.



Applied to the drag chain system, high flexibility drag chain cable: high flexibility, bending resistance, wear resistance, oil resistance, long service life, good protection of the normal operation of the equipment. For equipment with high speed requirements, Shijiang high-speed drag chain cable is more flexible and bending-resistant because of its special flexible structure design, which is suitable for installation and use in high-frequency mobile bending occasions.

Used in industrial robot joints and control systems, this high flexible shielding harness is designed for high frequency bending and high speed motion scenes. It has excellent bending resistance, can withstand millions of reciprocating movements of robot joints, and has excellent wear resistance, oil resistance and aging resistance. It can operate stably for a long time under harsh working conditions such as welding and spraying, and effectively guarantee the high-precision action and signal transmission of the robot. Its highly flexible conductor structure and bending-resistant sheath also keep it soft when the robot moves at high speed, and it will not break or degrade due to long-term bending, which provides a solid guarantee for the reliable operation of industrial robots.


