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Practical techniques for rigid-flex boards can help you improve order success rates!

Higher mechanical strength, higher machining accuracy, high practicality, and improved efficiency; Practical techniques for rigid-flex boards can help you improve order success rates! The price is more advantageous.
The best solution for replacing rigid-flex boards with rigid-flex boards. Both of these products can be combined with your product to adapt to circuit boards with different performance requirements.

They can change the rigidity and flexibility of materials, thus requiring more details and flexibility in numerous design issues. When designing circuits, flexible boards cannot use rigid boards that replace rigid boards. Both of these products can be perfectly integrated with your products and engineers to adapt to different purposes and requirements. In extreme cases, flexible plates cannot be used for processes on a series of shapes and contours. Due to the crucial importance of having an infinite number of free spaces in the design of flexible boards, they are an ideal choice for flexible circuits.
ProtectorTM KheetTM (Kheet) is equipped with various specifications of thermoplastic polyimide (TMM) substrates, which can be used for flexible circuits, wires and other thermosetting materials. Compared to FR4 material, Protector Kheet 3 is a P140 high thermal conductivity plastic. An ideal solution for miniaturized production that can transfer heat to additional solids, load or reflux. These materials can be used for solar cells and aerospace, adhesive materials, ceramic and plastic thermosetting plastics, and vinyl substrates.
P140 High thermal conductivity plastic, use the least plastic and vinyl silicide. This kind of production cost is up to 10 times higher than that of most molding plastics and foam composites, which has more heat than traditional resin printing. P140 high thermal conductivity plastic has a thermal conductivity density of 5-10 times, and is easier to peel and shape. P140 also has excellent wear resistance and corrosion resistance.
P140 also has good strength and fatigue properties, such as hot forming and water-based adhesives, making it particularly suitable for heat generating plates that work at high temperatures and low temperatures. The hot welding material of P140 has good strength and wear resistance, which is closely consistent with the friction of the hot plate. Once these points are coated with a layer of pure tin on the contact surface, they are processed to improve corrosion resistance.

P140 also has the quality of welding points and the temperature resistance of soldering iron, and is also used for the application and displacement of welding points in heat treated parts. The quality characteristics of P140 hot plate welding points are stable, with high processing accuracy, and parameters can be customized according to customer requirements.
P140 can achieve rapid spot welding from 360 ° to 360 °, which is particularly suitable for industrial applications. For PCB boards with a thickness of only 40mm or less, the heat source after soldering can be used to send them to the PCB board and then to the welding area, greatly improving work efficiency.
For friends who have many solder joints and are difficult to operate, do not directly exchange boards for welding, otherwise it may be damaged.
The TTL circuit calculates the required electrical parameter values based on the requirements of non working data, thereby calculating the minimum inductance value that an inductor can work on.
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