


High speed spindle servo motor, with a maximum speed of up to 24000 revolutions, is designed for high-speed and high-precision machining scenarios. It adopts optimized electromagnetic design and high-precision dynamic balance technology, with stable operation, small vibration and low noise; It has the advantages of fast response, constant power output and strong overload capacity. With efficient heat dissipation structure, it can operate stably at high speed for a long time. It is widely adapted to high-speed drilling, fine carving and milling, precision machining center and other equipment, which significantly improves the processing efficiency and surface finish. It is the ideal power core of high-end equipment.

High load, high speed, low noise, high torque High-precision five-pole-pair motor reconstructs servo performance with precision magnetic circuit design. Five-pole structure brings stronger torque output and smoother running experience, no shaking at low speed, no whistling at high speed, accurate and reliable positioning. Under the same power, the volume is smaller, the efficiency is better, the long-term operation temperature rise is lower, and the service life is longer. Provide a more reliable power core for the equipment.

520 Series drives support up to 23-Bit high resolution encoders for high performance precision positioning control. It has three built-in modes of position, speed and torque, which can meet the needs of diversified command control.



H400 CNC lathe is a patented product of our company, with the patent number of ZL2018207776267. It is an integral asynchronous lathe head and ZL2018218955114 CNC lathe with direct-drive spindle. The CNC lathe adopts a semi-closed loop control CNC lathe system. The standard configuration is three-axis control C \ X \ Z \ Y \ A, the main machine adopts 30 ° inclined carriage, stepped rail layout, Z-axis pulley is triangular structure, and the carriage has strong rigidity. The spindle (C axis) is an integrated AC asynchronous servo motor directly driven by a non-transmission mechanism to realize position control and speed control. The spindle can realize rotary feeding, indexing and accurate stop. Spindle clamping is realized by using the hydraulic rotary cylinder to drive the three-jaw Chuck. X and Z are driven by ball screw and linear rolling guide. The guide rail is fully protected, and the feed motor is a 5-pair servo motor (23-bit encoder). The machine tool has good dynamic characteristics, high precision and strong rigidity. The acceleration and deceleration time of the spindle is short, the roughness of the machined surface can reach Ra0.8 or lower, and the gravity acceleration is as high as 0.8G.

H500 CNC lathe is a patented product of our company, with the patent number of ZL2018207776267. It is an integral asynchronous lathe head and ZL2018218955114 CNC lathe with direct-drive spindle. The CNC lathe adopts a semi-closed loop control CNC lathe system. The standard configuration is three-axis control C \ X \ Z, the host adopts 30 inclined carriage, stepped rail layout, Z-axis carriage is triangular structure, and the carriage has strong rigidity. The spindle (C axis) is a direct-drive AC asynchronous servo spindle without transmission mechanism, which realizes position control and speed control. The spindle can realize rotary feeding, indexing and calibration. The clamping of the main shaft is realized by the three-jaw Chuck driven by the hydraulic rotary cylinder. X and Z are driven by ball screw, rolling linear guide rail; guide rail protection adopts full protection, carriage feeding adopts absolute value AC servo motor. The machine tool has good dynamic characteristics, high precision and strong rigidity.

H48 CNC lathe is a patented product of our company, with the patent number of ZL2018207776267-type integral asynchronous bed head and ZL2018218955114 CNC lathe with direct-drive spindle. The CNC lathe is equipped with five-axis (X/Z/C/A/B) semi-closed-loop control CNC lathe system as standard. The standard configuration is three-axis control C/X/Z, the host adopts 45 "inclined guide rail layout, and the X carriage is an integrated carriage. The X axis is in the same plane as the Z axis. The main shaft (C shaft) is an AC asynchronous servo main shaft directly driven by a non-transmission mechanism to realize position control and speed control. The main shaft can realize rotary feeding, indexing and accurate stop. Two shafts can be expanded on the carriage in the later period. Spindle clamping is realized by using hydraulic rotary cylinder to drive three-jaw Chuck or elastic Chuck to clamp the workpiece. The X. Z is driven by the ball screw and rolls the linear guide rail. The carriage can automatically eliminate the reverse clearance of the carriage by gravity. The guide rail protection adopts full protection and absolute value AC servo motor. The machine tool has good dynamic characteristics, high precision and strong rigidity.


Based on ISO5393 standard, Danikor Intelligent Tightening Tool adopts self-developed high-precision algorithm, which makes its performance more stable and durable, and provides a variety of tightening strategies to adapt to the increasingly complex working conditions of new energy vehicle assembly. By monitoring the torque or angle of each step in the tightening process, abnormal tightening conditions such as floating lock and sliding tooth can be found in time, and the floating screw problem is solved by high order clamping torque strategy. It has the functions of data acquisition, uploading and storage, which is convenient for timely analysis and optimization of tightening process. In addition, tightening data can be uploaded to MES system in real time to achieve traceability of tightening results. It provides a cost-effective intelligent tightening solution for the assembly of new energy vehicles, and helps the digital intelligent assembly of new energy vehicles to enter the "fast lane".

With the transformation of the new energy vehicle industry from policy driven to market driven, the new energy vehicle industry has entered a stage of rapid development. The assembly process is highly automated and cleaning requirements. The clean step feeder developed by Danikor can be equipped with a variety of cleaning schemes to ensure the full cleaning of screws in the feeding process. With multiple types of tightening modules, it can realize the cleaning of both feeding and tightening processes and greatly improve the assembly quality. The screw feeding and tightening system with stable performance is widely used in the industries of new energy vehicle electronics, general assembly, auto parts and power assembly.

The types and specifications of materials used are diverse and complex in the production process of new energy automobile industry. The multi feeder of Danikor can realize the feeding of various materials with different specifications and structures, and multi variety compatibility and rapid switching, so as to avoid equipment scrapping caused by product change and reduce equipment investment. The multi feeding method also solves the jam problem and improves the production efficiency.



Industrial high flexible towline cable, robot cable, sensor cable, servo motor special wire and cable for industrial equipment
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Industrial Connectors/Waterproof Plug Receptacles




Pure cam mechanical structure, flexible and smooth action, high-speed stability, travel range of 60mm-328mm, nearly 500 kinds of derivatives to choose from; The cycle time can reach 0.4S, the speed is three times faster than that of the sliding table module, there is no impact inertia, and the repetition accuracy can reach ± 0.02 mm, which can realize the accurate movement of high-speed and high-precision automatic transmission, picking and placing, handling and transplanting in the limited space.

Electric energy is directly converted into linear motion machinery without any transmission device of an intermediate conversion mechanism, and is not influenced by the inertia and the resistance of the intermediate mechanism, so that the response speed is higher, the sensitivity is higher, the follow-up performance is better, the efficiency is higher, the structure is simpler, and the positioning precision is more accurate and stable. At that same time, the move stator of the linear motor is suspended and operate without contact, so that abrasion does not occur, the service life is longer, the stroke is not limited, multiple mover can be coaxially used, and the application range is quite wide.

Driven by high-performance servo motor, it can realize rapid positioning, lifting, moving and other actions, with high precision and stability, and can replace a number of manual work on the stamping station. For the processing industries with repeatability, danger and high rhythm, such as stamping, the swing arm manipulator can save labor costs and improve labor and equipment safety. It plays an important role in maintaining product capacity, quality and process stability.