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Preparation method of multi-layer glass substrate, glass substrate and Mini-LED glass substrate

A multi-layer glass, glass substrate technology, applied in the direction of multi-layer circuit manufacturing, printed circuit manufacturing, electrical components, etc., can solve the problem of easy short circuit, resin insulating layer can not effectively isolate the inner layer and outer circuit charge transmission, ion bombardment problems of depth

Pending Publication Date: 2021-12-31
SHENZHEN BAROY NEW MATERIAL TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] The purpose of the present invention is to provide a method for preparing a multi-layer glass substrate, a glass substrate and a Mini-LED glass substrate, so as to solve the above-mentioned problems in the background technology: in the prior art, sputtering and electroplating are generally used on glass High-precision circuit graphics are realized on the substrate, but due to the need to make multi-layer circuits, only using this method, the ion bombardment depth is relatively large, and the resin insulating layer cannot effectively isolate the inner layer and the outer layer circuit when processing multi-layer circuit boards The technical problem of charge transport, which is prone to short circuit

Method used

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  • Preparation method of multi-layer glass substrate, glass substrate and Mini-LED glass substrate
  • Preparation method of multi-layer glass substrate, glass substrate and Mini-LED glass substrate
  • Preparation method of multi-layer glass substrate, glass substrate and Mini-LED glass substrate

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Embodiment 1

[0036] figure 1 It is a flow chart of a method for preparing a multilayer glass substrate provided according to an exemplary embodiment, such as figure 1 As shown, the method includes the following steps:

[0037] Step S100, please refer to figure 2 , the first through hole 110 is opened on the glass substrate 100, specifically, the first through hole 110 can be opened on the glass substrate 100 through a laser drilling process, and the laser drilling process can be carried out in a UV manner, please refer to image 3 , and fill the first through hole 110 with the first conductive paste 111. The conductive paste is a conductive paste, also known as interconnection paste, conductive copper paste or interconnection copper paste. The conductive paste can be screen printed or Apply it to the required parts of the substrate by other methods, and then sinter it at a specific temperature to form a conductor. It is mainly used for wiring of thick film integrated circuits, electrode...

Embodiment 2

[0044] Both the first conductive paste 111 and the second conductive paste 311 contain: 30-50% copper powder, 20-40% tin powder, 0-3% silver powder, 5-10% bismuth powder, 0-10% % epoxy resin, 0-5% organic acid activator and 0.5-5% additives. This component system forms a low-temperature alloy type copper alloy. The metal powder is designed by alloying, and then combined with organic additives agent, etc. to achieve low-temperature sintering, and to ensure the formation of good IMC welding intergranular compounds, and can achieve sintering below 190°C, that is, the sintering temperature of the first conductive paste 111 and the second conductive paste 311 is less than 200°C, The energy consumption required for production is reduced, and at the same time, other components of the glass substrate are prevented from being damaged when the sintering temperature is too high, for example, higher than 400°C.

[0045] Further, the pore diameter of the first through hole 110 is 30-100 μm...

Embodiment 3

[0047] The present disclosure also provides a glass substrate, which is made by any one of the methods for preparing a multi-layer glass substrate described above, wherein, please refer to Figure 10 , a glass substrate comprising: a glass substrate 100, the glass substrate 100 is provided with several first through holes 110, the first through holes 110 are filled with a first conductive paste 111, and the surface of the glass substrate 100 is provided with several layers in turn A circuit layer composed of a line 200 and an insulating layer 300, the insulating layer 300 is provided with a second through hole 310, and a second conductive paste 311 is arranged in the second through hole 310, and the second conductive paste 311 and the first conductive paste 111 is turned on.

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Abstract

The invention provides a preparation method of a multi-layer glass substrate, a glass substrate and a Mini-LED glass substrate. The method comprises the following steps: S100, forming a first through hole in a glass substrate, and filling the first through hole with first conductive slurry; S200, carrying out circuit manufacturing; S300, coating with an insulating layer which covers the surface of the glass substrate and the circuit, and then arranging a composite film layer on the surface of the insulating layer; S400, forming a second through hole, used for being filled with second conductive slurry so as to conduct the second conductive slurry with the first conductive slurry, penetrating through the insulating layer and the composite film layer, filling the second through hole with the second conductive slurry, and then taking out the composite film layer t; and S500, circulating step S200 to step S400 for a plurality of times so as to form multiple layers of conductive circuits on the glass substrate, and finally forming the finished product.

Description

technical field [0001] The invention relates to the technical field of circuit boards, in particular to a method for preparing a multilayer glass substrate, a glass substrate and a Mini-LED glass substrate. Background technique [0002] Mini-LED has become a new technology trend in the display industry. As Mini-LED direct display and LED partition backlight control technology further increase the chip density requirements, the traditional PCB substrate process is difficult to meet the traditional PCB substrate and wet process due to the high density and high yield requirements of Mini-LED. The glass substrate has many advantages such as moderate price and heat dissipation capacity, good thermal stability, and high flatness. It is especially suitable as a high-precision, high-density, low-power chip mount circuit substrate, and has become a research hotspot for Mini-LED circuit substrates. [0003] For Mini-LED display circuit boards, due to the high resolution of the outer ...

Claims

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Application Information

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IPC IPC(8): H05K3/46H05K3/42H05K3/12H05K1/11H05K1/02
CPCH05K3/465H05K3/4664H05K3/429H05K3/1291H05K1/0298H05K1/115H05K1/0274
Inventor 崔正丹郭冉胡军辉
Owner SHENZHEN BAROY NEW MATERIAL TECH CO LTD