

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.




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LJ-1270B-2T vertical machining center with double tool magazines is a C-type vertical machining center designed by absorbing advanced technology at home and abroad. The main structure of the machine tool is composed of five castings: the bed, the slide, the worktable, the column and the headstock. The whole machine has high rigidity, good stability and high dynamic and static characteristics. The lathe bed is supported by large span, and the best anti-deformation structure of the casting is obtained according to the Bessel point physical anti-deformation principle. The fuselage design ensures the stability and rigidity of the mechanism through finite element analysis. The X/Y axis of the machine tool adopts high-precision heavy-duty roller linear guide rail, and the Z axis adopts rectangular hard rail structure, so the machine tool has good rigidity, small vibration and high precision during feeding. The machine tool adopts a shoulder-resistant tool magazine structure. The left and right shoulders of the column are equipped with two 32T disc-type manipulator tool magazines. The tool magazine support structure is reasonable and stable. The machine adopts high-performance CNC system, which can realize any three-axis linkage processing. It has the functions of drilling, boring, milling, expanding, reaming, tapping, linear interpolation, circular interpolation, spiral interpolation, three-coordinate linkage, etc. The product has wide application range and strong processing ability, and is suitable for heavy cutting processing. Widely used in mold, new energy, automotive, aerospace, electrical, instrumentation, textile, printing and other industries.

The product can automatically suck the workpiece, automatically detect, automatically repair the grinding wheel, automatically set the tool, and automatically process. First milling, then grinding, the whole processing process is completed at one go, and two processes of milling and grinding can be completed on one machine tool, thereby reducing the processing cost and improving the product quality. To provide customers with a high-speed, high-precision, efficient choice.

The machine tool is equipped with a super-large inverted "T" type bed base, Y-axis integral double-layer wall moving column type, positive hanging headstock type casting structure, heavy duty heavy cutting, roughing and finishing tools, durable; In order to strengthen the function of roughing, the customized thickened spindle is equipped with a 30 KW high-torque motor, which is suitable for roughing and finishing of precision molds, engineering machinery, automotive power, locomotives, ships, marine engineering and other industries.



Titanium has excellent mechanical properties, weldability and excellent corrosion resistance, high compressive strength, can be used for cutting, welding and other machining, and is generally used as a heat-resistant material and a corrosion-resistant material. It has been widely used in aviation, aerospace, military industry, medical treatment, chemical equipment, seawater desalination, ship parts, electroplating industry and other fields.

Titanium is a silver-white metal with high strength, low density, strong corrosion resistance and excellent biocompatibility. The bars made of titanium or titanium alloy are widely used in industrial manufacturing, medical equipment, aerospace and other fields. The surface of the titanium rod can present silver bright metallic luster or be oxidized to form a color film layer, and the physical shape of the titanium rod is usually a cylindrical solid rod, and the length of the titanium rod is customized as required

The strength of titanium alloys even exceeds that of most alloy structural steels. Secondly, titanium alloys have excellent thermal strength and can work stably for a long time at high temperatures of 450-500 degrees Celsius, while the performance of aluminium alloys at this temperature is greatly reduced. Moreover, the corrosion resistance of titanium alloy is excellent, especially in humid environment and seawater, its corrosion resistance is far superior to that of stainless steel, and it has strong resistance to a variety of corrosive media. In addition, titanium alloys have excellent low-temperature properties, and can maintain good mechanical properties even at very low temperatures, so they are preferred as low-temperature structural materials. However, it is also important to note that titanium alloys are chemically reactive and prone to chemical reactions with many elements. At the same time, its thermal conductivity is relatively small, which provides unique advantages for specific application scenarios.