

SIEMENS SINUMERIK full range of CNC products.. Enabling mechanical processing enterprises to enhance competitiveness. From compact, as well as standard CNC systems, to modular high-end solutions, to achieve comprehensive technical coverage. The digital solution of the whole value chain for machine tool users can improve the efficiency of production preparation, execution and process verification, as well as the dynamic change of the processing process. Drive closed-loop innovation around the digital twins of product, production, and performance.

SINUMERIK ONE is the first generation of digital native CNC system launched by SIEMENS, which is the key product of SIEMENS to promote the digital transformation of machine tool industry. More than just a hardware innovation, its digital twin technology allows you to fully simulate and test your process in a virtual environment. The CNC system is integrated with SIMATIC S7-1500F PLC, with two specifications of cabinet type and panel type. SINUMERIKONE is fully integrated into TIAPortal, opening this efficient engineering platform to machine tool manufacturers.

The SINUMERIK 828 control system is best suited for standard machines with low modularity and high workpiece throughput. The compact yet powerful SINUMERIK 828D is a solution for cost-conscious markets that require high CNC performance and easy commissioning. Its robust hardware architecture and intelligent control algorithm, as well as excellent drive and motor technology, ensure extremely high dynamic response performance and processing accuracy. The intuitive SINUMERIK operate user interface enables efficient machine operation. The outstanding performance of SINUMERIK828 series control system, 10.4-15.6-inch display, up to 12 axes and 4 channels enable it to meet the various requirements of standard machine tools and ordinary special machine tools, in addition, it also has a large number of digital solutions.


The NK530M five-axis CNC system from Weihong features multiple advanced functions to ensure high-speed machining and precise five-axis联动processing. It guarantees precise and smooth control of tool paths and axis movements, resulting in high surface quality, accuracy, and fast processing speed. The system also simplifies operation and programming, thereby comprehensively improving machining precision, efficiency, and stability. Key features include: Automatic Measurement and Calibration: Simplifies the calibration process for five-axis machines, making it more convenient and user-friendly. RTCP (Tool Tip Control): Provides true five-axis联动processing with nanometer-level control precision. HPPS (High-Precision Path Smoothing): Ensures smooth tool path trajectories and optimized surface quality. Tilted Surface Machining: Simplifies programming steps and enables efficient and precise machining on inclined surfaces. 3D Tool Compensation: Direct compensation for side milling paths, reducing the hassle of size adjustments.

This product is designed for the steel structure industry and is capable of cutting I-beams, channels, and angles with thicknesses exceeding 100mm. When combined with a flatbed tube cutting system, it can also perform cutting on thick plates and standard tubular materials. The traditional cutting method in the steel structure industry is plasma cutting. In contrast, this system leverages the characteristics of laser cutting, which offers high processing efficiency, high precision, excellent cut surface quality, and the ability to perform bevel cutting, thereby eliminating the need for secondary beveling processes. The processing efficiency is more than three times higher than that of plasma cutting. The system employs a range of advanced technologies, including flexible acceleration and deceleration algorithms, five-axis RTCP (Tool Tip Control Point) algorithms, high-precision contour smoothing, high-precision posture smoothing, precise follower control, cross-surface empty travel obstacle avoidance, and error compensation for the cutting head and workpiece. These comprehensive technologies are leading in China and have reached international advanced levels. The project is characterized by its novelty and applicability.

The integrated/distributed I/O bus module is small in size, fast in speed, rich in variety, can communicate with various open-field networks, and supports multiple protocols.

Greatly reduce the wiring time, make the wiring more standardized, and provide a variety of terminal block options.

Minimized design, sensitive contact, good conductivity, simple wiring, quick assembly of electrical cabinet, diversified specifications.



MLT-N30H high-speed 8-axis CNC gear hobbing machine is a high-precision CNC gear hobbing machine elaborately developed by our company with completely independent core technology. The machine integrates the advantages of modern CNC automatic CNC technology, adopts high-speed and high-precision direct-drive motor, and has high-speed, high-precision and excellent dynamic response performance. Compared with other equipment of the same type, it has the characteristics of high processing precision, high processing efficiency and good precision retention, and can process straight teeth, helical teeth, drum-shaped gears and other gears; it can easily achieve 45 ° helical gear processing; it can process splines, gears with fewer teeth and other special gears.

MLT-YK2215a spiral bevel gear milling machine is an excellent domestic spiral bevel gear milling machine elaborately developed by our company with completely independent core technology. The machine integrates the advantages of modern CNC full-automatic numerical control technology, adopts direct drive C-axis, and has high speed, high precision, high torque and excellent dynamic response performance. Compared with other equipment of the same type, it has the characteristics of high processing precision, high processing efficiency and good precision retention. Besides, it adopts the hobbing method to mill spiral bevel gears and hypoid gears, and the plunge method to process small modulus approximate 0 degree large gears.

MLT-YK8020 high-speed six-axis CNC gear lathe is an excellent domestic CNC direct-drive gear lathe elaborately developed by our company with completely independent core technology. The machine tool integrates the advantages of modern CNC full-automatic CNC technology, adopts dual direct drive B and C axes, and has high speed, high precision, high torque and excellent dynamic response performance. Compared with other equipment of the same type, it has the characteristics of high processing precision, high processing efficiency and good precision retention. It can process internal gears, etc., can easily realize the processing of internal teeth such as straight teeth/helical teeth, and can process special gears such as small taper bevel gears.


Product features: beautiful appearance, exquisite structure, low noise, high efficiency, closed cooling duct, optimized energy-saving design Standard spindle control functions: low-speed high-torque cutting, zero-speed spindle locking, C-axis function, high-speed constant power cutting, quasi-stop control, rigid tapping Industry application: CNC lathe, turning and milling machine tool, vertical lathe, heavy horizontal lathe, CNC milling machine, vertical machining center, horizontal machining center, CNC boring machine, gantry planer, gantry milling machine, CNC grinder, vertical grinder, floor boring and milling machine, drilling and tapping center, engraving and milling machine, gear hobbing machine, gear shaper, gear milling machine

Built-in high-precision absolute encoder improves positioning accuracy and low-speed operation stability. And can be control with high precision and high dynamic response. The motor is designed with low cogging force to achieve smooth operation. The torque ripple of the motor is reduced by using a new magnetic field analysis design and motor processing technology, thus improving the speed stability and reducing the torque ripple of the servo system. The stator of the servo motor adopts a new lamination and splicing process, which reduces the temperature rise of the motor, improves the electromagnetic characteristics of the motor, and improves the efficiency and reliability.

It is driven by a high-efficiency asynchronous built-in motor, and the rotor is made of cast copper, with high power, low heat and high efficiency. Ceramic angular contact ball bearings are used, with low heat, low thermal expansion coefficient and high speed. The pre-tightening mode mainly adopts positioning pre-tightening and constant pressure pre-tightening. Positioning pre-tightening can meet the requirements of high rigidity and large torque, and constant pressure pre-tightening can meet the requirements of ultra-high speed. Dynamic balance correction is within G1. Low noise and small thermal deformation. And that dynamic rotation precision is high. Tool internal cooling, temperature sensor and vibration sensor are optional.


Scenario: Suitable for high-speed, small-spacing, and small-load applications. Features: High speed, high precision, small load capacity; Precise control, capable of coordinating multiple moving parts High-precision multi-mover coordinated control: By adjusting the thrust, speed, and position of multiple movers, high-precision coordinated control is achieved, enabling complex functions such as precise clamping and accurate synchronization.

Scenario: Suitable for high-speed, small-pitch, and light-load applications. Feature: Magnetic-driven axis linked with external axes to achieve planar interpolation motion; applicable for precision dispensing, spraying, loading/unloading, screw tightening, etc.

Mag-Drive Segment: High precision, highspeed, high intelligence, high flexibility.Belt Segment: Low precision, low speed,basic intelligence, low cost. The hybrid model combines the advantagesof both, offering customizable combinationsto provide customers with cost-effectivemag-drive solutions.


It integrates rich and efficient motion instructions and logic instructions, and can complete complex logic action programming. Expand up to one IO board as required to ensure that the system can complete motion control with high precision and respond to external input signals in time. In addition, the rich extended communication interfaces can be flexibly used with other production auxiliary equipment. In view of the lathe loading and unloading scene, the double tray mode is added to support the double-arm anti-collision, which can effectively avoid personal and property losses. Support ethercat communication, can adapt to different servo manufacturers.

The control system of embodied robot is an intelligent control platform for the development of high-Dof embodied robot, which focuses on multi-axis coordination and whole-machine coordinated motion, and is the core driver of the new generation of embodied agent. The system adopts dual-master control architecture, and the overall control cycle reaches 1ms. This brings higher real-time and stability, ensures that the 14-axis dual-arm still maintains precise coordination under high-speed action, and can be extended to the coordinated control of more degrees of freedom such as head and waist.

Integrated with advanced technology and dual mode locking safety protection, the system cost can be recovered by reducing the loss of one mode collision/shutdown, the average ROI is -6 months, the man-machine interface is intuitive and flexible, and the reliability is fully upgraded. It is an innovative integration of vision, real-time monitoring of in-mold abnormalities, precise anti-collision of molds, maintenance saving, one-stop cost reduction, efficiency enhancement and intelligent management, and protection of mold safety and quality.


The motion controller is controlled with nanometer precision, serving the fields of semiconductor, laser processing, high-precision machine tools, industrial automation, medical equipment, etc. Its main features are as follows: macro and micro motion integration/nanometer precision/drive and control integration/servo drive; GL + special script visual programming, design freedom; complex motion, simple control; The control frequency is 200 kHz, and the control bandwidth can reach 10 kHz; the synchronization accuracy is better than 10 ns, and the positioning accuracy is 0.5 nm; it is suitable for semiconductor/life science/precision machining/laser manufacturing/medical equipment and other fields.

The active shock absorber has achieved a new high yield of semiconductor industry with VC-G level stability, and can serve precision manufacturing and scientific research fields such as optics, life sciences, aerospace, display panels, laser processing, etc. Products are divided into steel spring/air suspension/magnetic suspension/piezoelectric/composite/vacuum categories; active damping bandwidth is as low as 0.5Hz; vibration transmissibility is -50dB @ 10Hz; unidirectional thrust is more than 2kN; setting time is less than 100ms

The joint module products are self-developed motors with highly integrated compact topology optimization, high efficiency and low torque fluctuation, and rated torque density of over 30Nm/kg, serving various models such as humanoid, collaborative, SCARA, quadruped, etc.