Method for uniformly and chemically gold-plating ITO wiring on capacitive touch screen
A capacitive touch screen, chemical gold plating technology, applied in the direction of liquid chemical plating, electrical digital data processing, metal material coating technology, etc., can solve the problem of gold plating peeling off, inconsistent gold plating thickness, touch screen stability, poor ability to transmit signals, etc. problem, to achieve the effect of good signal transmission ability and uniform thickness of gold plating
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specific Embodiment 1
[0027] Specific embodiment one, see figure 1 , figure 2 : the original part to be gilded 1 (see figure 1 ) The length of the single trace 3 is thin, and now the part to be gold-plated is thickened (see 1 figure 2 ) of a single trace 3, to ensure that the area ratio of the trace area of each trace to the single X / or Y direction sensing electrode 4 connected to the corresponding non-gold-plated part 2 is greater than 1%; after that, through chemical nickel plating, chemical The gold-plating process gold-plates the traces of the gold-plated part 1 of each touch glass, and the thickened part is located at the connecting terminal line part 7 between a single trace 3 and a single X / or Y-direction sensing electrode 4 .
specific Embodiment 2
[0028] Specific embodiment two, see image 3 , Figure 4 , Figure 5 , Image 6 : Extend the length of a single trace 3 of the part 1 to be gold-plated, and ensure that the ratio of the trace area of each trace 3 to the area of the single X / or Y-direction sensing electrode 4 connected to the corresponding non-gold-plated part 2 is greater than 1 %; Specifically, to extend the length of the chamfered transition area of the single trace 3 of the part to be gold-plated 1, the Figure 4 The rounded transition in 5 becomes Image 6 Angled slash transitions in 6.
specific Embodiment 3
[0029] Specific embodiment three, see Figure 7 , Figure 8 : Auxiliary wiring 8 is etched in the non-touch screen area of the ITO glass, and the area ratio of the wiring 3 of the part to be gold-plated 1 and the corresponding non-gold-plated part 2 connected to the single X / or Y-direction sensing electrode 4 does not exceed 1%. The trace 3 is connected to the auxiliary trace 8, and the total area of the connected trace 3 and the auxiliary trace 8 is greater than 1% of the area of the single X / or Y direction sensing electrode 4 connected to the corresponding non-gold-plated part 2, After the electroless nickel plating and electroless gold plating are completed, the area of the auxiliary wiring 8 is cut off.
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