


Center-walking machine blade: a new choice for precise adaptation to multiple scenes and efficient processing "Difficult adaptation, poor accuracy and weak force" are often the key pain points restricting efficiency in the field of heart-walking machine processing, and our heart-walking machine blade is solving industry problems with four core advantages to reduce costs and improve efficiency for your processing and production. Whether it is fine carving with small cutting depth or efficient cutting with large cutting depth, our blades can accurately match the demand, without frequent replacement of blade models, calmly cope with different processing conditions, reduce downtime adjustment time, and make the production process smoother. Precision is the core of processing, each blade is subject to strict process control, the precision error is firmly locked within ± 0.01 mm, to ensure that each cutting is stable and accurate, effectively reduce the scrap rate, and escort the product quality. What's more, we adopt the design of "one rod through installation". One type of arbor can be compatible with six series of blades, which greatly reduces the inventory cost of the arbor and simplifies the blade replacement process. Operators do not need to repeatedly debug the arbor, which significantly improves the efficiency of tool replacement. In addition, compared with the traditional installation method, the vertical structure design of the blade can maximize the stability of the processing force, effectively avoid the problems of blade offset and vibration in the cutting process, not only prolong the service life of the blade, but also ensure the surface finish of the processing, and adapt to high-load processing scenarios.

Tungsten Steel Small Diameter Boring Cutter: Precision in Millimeters, Efficiency and Life Double Upgrade In small diameter boring, the three major pain points of "difficult to control precision, time-consuming to change tools, and vulnerable tools" often directly affect the production rhythm and product quality. Our tungsten steel small-diameter boring cutter, with three core advantages, directly hits the pain point and injects efficient kinetic energy into precision machining. Precision is the core criterion of boring. Each tungsten steel small-diameter boring cutter is precisely calibrated in the whole process, and the precision error is strictly controlled within ± 0.01 mm. Even in the face of fine aperture processing, it can ensure dimensional stability and tolerance standards, reduce the scrap rate from the source, and build a strong product quality defense line. Aiming at the problem of time-consuming tool change and debugging, the tool is innovatively equipped with oblique positioning and tool-setting-free design, which does not require repeated calibration and alignment. After replacement, it can be quickly put into production, greatly shortening the downtime adjustment time, especially adapting to batch processing scenarios, so that the production efficiency is significantly improved. At the same time, the surface of the cutter is covered with a special wear-resistant coating, which can effectively resist the high temperature, wear and impact in the cutting process. Compared with the ordinary non-coated boring cutter, the service life is greatly prolonged, the frequency of tool replacement and procurement costs are reduced, and the dual value of "efficient processing + cost reduction and efficiency enhancement" is realized.




Thermoelectric separation t copper substrate: the circuit part and the thermal layer part of the substrate are on different circuit layers, and the thermal layer part is directly in contact with the heat dissipation part of the lamp bead to achieve the best heat dissipation and heat conduction (zero thermal resistance), generally copper substrate. Thermoelectric separation of copper substrate means that a production process of copper substrate is a thermoelectric separation process, in which the circuit part and the thermal layer part of the substrate are on different circuit layers, and the thermal layer part is directly in contact with the heat dissipation part of the lamp bead to achieve the best heat dissipation and heat conduction (zero thermal resistance).

Double-sided aluminum substrate is a kind of composite material which is made of aluminum metal as the base material and double-sided copper foil and aluminum base layer laminated by epoxy resin adhesive. Its core structure is composed of a circuit layer (copper foil), a thermal insulation layer (epoxy resin substrate) and an aluminum base layer. The double-sided circuit connection is realized through the via-hole technology, and the double-sided interconnection is realized through the laser drilling and electroless copper deposition process. The diameter of the via-hole is less than or equal to 0.3mm [1]. The fabrication process consists of drilling, anodizing the aluminum substrate to form an insulating oxide film with a thickness greater than 10 μM, and press molding with a lamination process [2]. The thermal resistance of the thermal insulating layer of the material directly affects the heat dissipation efficiency of the device, and the typical parameters include a thermal conductivity of ≥ 1.0 W/m · K and a withstand voltage strength of 1000-1500 V. Compared with the traditional FR-4 material, the material can improve the power load carrying capacity by more than 60%. In 2024, the utility model patent proposed to add a heat conduction strip and a frame heat dissipation device to build a three-dimensional heat dissipation path to further improve the heat conduction efficiency. In 2021, the technical literature pointed out that the structure could reduce the thermal resistance to 1.2 ℃ · in ²/W. The test showed that the design could reduce the thermal resistance by 18%. Under the working condition of 30 W/m · K thermal conductivity, The junction temperature of the chip drops by 12 ℃ [1]. It is mainly used in high-power LED lighting modules, new energy automotive power modules and other fields. By 2025, the actual measurement of the product shows that the minimum line width spacing can reach 0.5mm, which meets the needs of complex circuit design.


The AS200S series gas mass flow controllers deliver outstanding performance in gasflow control and measurement, significantly enhancing the accuracy and reliability ofmeasurement results. This product supports multiple signal outputs, including digitalsignals, 1~5V analog signals, and 4~20mA analog signals, enabling seamless integrationwith various systems. Equipped with an LCD display, parameters such as flow rate,communication address, and baud rate can be easily configured through the backendmenu bar, ensuring user-friendly operation. Its wide voltage supply design (+12 to +36VDC) ensures stable operation across diverse working environments. Utilizing standardopen communication protocols, it facilitates customer development, enabling easycreation of custom control and data acquisition software. Additionally, it comes bun-dled with powerful free sensor client PC software, accelerating device commissioningand daily operations while enhancing the user experience.

AFD4 series is a vortex water flow sensor based on the principle of Von Karman vorti-ces. Under certain conditions when a certain volume of fluid flow around the distur-bance column, the disturbance column on both sides of the cycle will form a rotat-ing direction of the opposite direction, the regular arrangement of the double rowsof vortices, the formation of Karman vortex street. The sensor senses the frequencyof the vortex flow through the internal chip, thus measuring the liquid flow throughthe pipeline. The sensor is characterized by long service life, resistance to contami-nation, high accuracy, fast response and no drift, making it ideal for demanding andcost-sensitive OEM applications.
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A compact integrated linear servo system, this product serves as a core motion parts for precision electromechanical devices in robotics, industrial automation, medical equipment, and related fields.Internally integrated with high-precision reducers,coreless DC motors,lead screw mecha-nisms,sensors and servo drivers.The actuator enables precise servo positioning control at any point within its stroke range.

The dexterous hands employ an innovative linear drive design, with micro linear servo actuator as its core motion parts.Integrated with a hybrid force-position control algorithm, it delivers ±0.2mm positioning precision,several kilograms grasping force ,real-time force feedback ontrol.Additionally, the dexterous hand was launched in 2020. It is China's first commercial mass-produced dexterous hand.
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