

Using the radius measurement method with the workpiece rotating, the system can measure and analyze functions such as cylindricity, roundness, straightness, coaxiality, concentricity, face run-out, total face run-out, perpendicularity, parallelism, and flatness. It can also analyze surface waviness, spectral analysis, wave height analysis, adjacent disc run-out, and inter-disc step differences.

Translation: This instrument employs the Cartesian coordinate measurement method with a stylus contact approach. It can measure the following dimensions, angles, tolerances, and generate auxiliary elements, as well as perform roughness and waviness analysis: Dimensions: Horizontal distance Vertical distance Linear distance Radius Diameter Angles: Horizontal angle Vertical angle Included angle Positional Tolerances: Parallelism Perpendicularity Form Tolerances: Straightness Flatness Circular profile Auxiliary Generation: Auxiliary points Auxiliary lines Auxiliary circles Roughness Analysis: Arithmetic mean height (Ra) Root mean square height (Rq) Maximum height of the profile (Rz) Peak height (Rp) Total height of the profile (Rt) Skewness (Rsk) Mean spacing of the profile elements (Rsm) Core roughness depth (Rc) Rz (DIN standard) R3z Rz (JIS standard) Maximum peak height (Rpmax) Maximum profile peak height (Rpm) Kurtosis (Rku) Root mean square height of the profile (Rdq/RΔq) Maximum profile valley depth (RδC) Material ratio at a specified section (Mr1, Mr2) Core roughness depth (Rpk) Valley depth of the core roughness (Rvk) Core roughness depth (Rk) Reduced peak height (Rdc) Amplitude parameters (A1, A2) Maximum profile height (Rx) Maximum profile height (AR) Core roughness depth (Rpc) Maximum roughness depth (Rmax) Rz (ISO standard) Profile height (4um) Maximum profile height (Ry) Waviness Analysis: Total waviness height (Wt) Arithmetic mean waviness height (Wa) Maximum waviness peak height (Wp) Maximum waviness valley depth (Wv) Root mean square waviness height (Wq) Core waviness depth (Wc) Kurtosis (Wku) Skewness (Wsk) Maximum waviness height (W) Maximum waviness height (Wx) Maximum waviness height (Wz) Mean spacing of the waviness profile elements (Wsm) Reduced peak height (Wdc) Total waviness height (Wte) Material ratio at a specified section (Wmr) Amplitude parameter (Aw) Material ratio curve (C(Wmr)) Material ratio at a specified section (Wmr(C)) Root mean square waviness height (Wdq/WΔq) Primary Profile Analysis: Total profile height (Pt) Arithmetic mean profile height (Pa) Maximum profile peak height (Pp) Maximum profile valley depth (Pv) Root mean square profile height (Pq) Core profile depth (Pc) Kurtosis (Pku) Skewness (Psk) Root mean square profile height (Pdq/PΔq) Mean spacing of the profile elements (Psm) Reduced peak height (Pdc) Material ratio at a specified section (Pmr(c)) Maximum profile height (Pz) Material ratio at a specified section (Pmr) Material ratio curve (C(pmr))







This five-axis machining center has the performance characteristics of high speed, high precision and high reliability. The equipment is installed on the five-axis platform and has the function of five-axis linkage processing with the tool tip, which can clamp complex special-shaped products at one time and process them on multiple surfaces with high precision and efficiency.

The spindle speed is 4000 rpm, the maximum processing diameter is 500 mm, the Y-axis stroke is 100 mm, the maximum processing length is 450 mm, and it is equipped with Taiwan 12-station power turret, 8-inch hydraulic Chuck and tailstock.

The integrated high-density resin sand integrated casting bed ensures high rigidity, not easy to deform, stable, durable and easy to use. Equipped with power turret, C-axis, Y-axis and other complete composite functions, the machine tool can mill, drill, tap and clamp multi-surface processing in one machine, and the processing capacity is equivalent to two CNC lathes and milling machines. The processing time and the operation manpower are greatly saved, and the error caused by the movement of the workpiece between the machines is avoided.


LF606F is designed to measure in all 3 spatial directions: forces in tension and compression (±Fx, ±Fy, and ±Fz) as well as torques or moments in clockwise and counterclockwise (±Mx, ±My or ±Mz). 6 Axis Force Sensors are used for product testing, robotic assembly, grinding, polishing, and other industrial applications where holding a steady position and trajectory high-repeatability is necessary. This sensor is particularly important in complex assembly operations where the robot will encounter different problems (misalignments, tight fits, force tests, etc) and precision motion control over the end-of-arm tooling (EOAT) applied force (robot end-effector) is paramount. The six axis load cell allows the controller to recognize what is going on with the robot tool and improves end-effector dexterity.

The S-type load cell LFS-02 is Ligent Sensor's star product. It features a compact structure, high precision, support for both tension and compression measurement, and a high dynamic response frequency. Suitable for force detection and control on equipment with limited installation space, it offers a wide force range (250g–200kg) and is widely used for force measurement in industries including consumer electronics, medical care, robotics, and textile & paper manufacturing.

The L400B control indicator, designed for precision measurement applications, is a versatile, multifunctional display with high resolution. It supports a wide range of force sensor inputs, as well as both analog signal output and multiple communication methods (RS485/RS232/EtherCAT/Ethernet) for reading digital signals. The conditioned signal can be directly and seamlessly input into computers, PLCs, DAQ systems, and other measurement or control instruments.


Widely used in various sealed products such as automobiles, new energy, high and low-voltage distribution cabinets, refrigeration, purification and filtration, waterproof boxes, explosion-proof industries, lighting fixtures, etc. Equipped with an intelligent control system that can be customized in Chinese, English, and other languages. Workpiece dimensions, drawings, and technical parameters can be stored in the system; Using a six-axis motion control card, Kaiwei's independently developed adhesive control system; The system has a glue path simulation function: the mixing head completes the glue path according to the drawing without dispensing glue; The system control adopts three-axis linkage; The graphic import function eliminates the need to edit code programs and reduces the requirements for operators.

Suitable for foam sealing, bonding, and pouring of flat or nonflat workpieces, the viscosity range of the adhesive can range from several hundred to several million centipoises. Small footprint, high level of intelligence, and simple maintenance. The system's intelligent operation simulation function completely eliminates machining errors caused by human-size issues during the production process. Intelligent graphic automatic generation function, two-dimensional products do not require programming. Glue can be applied to any shape or trajectory (circular, square, trapezoidal, L-shaped, C-shaped, straight, etc.), and the thickness of any segment of the adhesive strip in a single shape can be changed. The system has a simulated memory function, which can achieve calibration without graphics.

The technology of on-site sealing, dispensing and pouring molding is adopted, and the processed sealing strip can be as thin as 2mm, especially suitable for sealing small workpieces. This equipment not only processes more accurately but also is easy to operate. The processed sealing strip is formed in one go, without seams, and has strong adhesion. Humanized intelligent control system: both two-dimensional and three-dimensional workpieces can be switched for processing; Fault alarm function; Automatic graphic generation system; Low pressure alarm function; Intelligent water cleaning function; Digital display of AB material pressure, convenient ingredient adjustment; Raw material barrel: automatic temperature control double-layer stainless steel material barrel, automatic alarm when there is no material, automatic mixing device, and automatic air replenishment.

Features: It is suitable for spot welding and full welding of various metal frame structure parts, sheet metal parts and other complex special-shaped internal angles, external angles, seams, etc. It has the advantages of simple operation, beautiful welding spots, fast welding speed, etc. Applications: Widely used in mobile phones, computers, lugs, microelectronic components, precision parts, intelligent terminal products, components, medical equipment and other industries, and various metal materials: carbon steel, stainless steel, copper, aluminum, galvanized and other materials, such as laser welding

Features: Customized for soldering inductive transformer terminals. The arc formed by welding is stable, the appearance of the welding seam is smooth and flat, the welding strength is high, and the welding defects such as insufficient welding and missing welding are not easy to occur. Application: It is widely used in the terminal welding of inductance components in various electronic equipment, such as power adapters, chargers, electronic transformers, etc. It is also used in the terminal welding of inductance components in electronic control systems, sensors and other equipment in the field of automotive electronics.

Features: fast welding speed, beautiful welding seam, small deformation, wide processing range, simple and flexible operation, high efficiency, high precision and high performance welding. Application: Suitable for welding of stainless steel plate, aluminum alloy plate, carbon steel, galvanized sheet and other metal materials; widely used in cabinets, kitchens, stairs, elevators, racks, ovens, stainless steel doors and windows guardrails, distribution boxes, stainless steel home and other industries.