Vacuum trigger switch and manufacturing method thereof

A technology of trigger switch and manufacturing method, which is applied in the field of switches, can solve the problems of personnel and equipment safety hazards, safety hazards, vacuum trigger switches do not have gas detection function, etc., and achieves fast response speed, short recovery time, and large market prospects. Effect

Inactive Publication Date: 2016-03-23
吴桂广
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, due to the expansion of its application field, in some environments where dangerous gases exist, the existing vacuum trigger switches generally do not have the function of gas detection, and its use will bring huge safety hazards, which will cause safety hazards to personnel, equipment, etc.

Method used

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  • Vacuum trigger switch and manufacturing method thereof
  • Vacuum trigger switch and manufacturing method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] A vacuum trigger switch. A gas detection module is installed outside the vacuum trigger switch. The gas detection module is made by the following method:

[0051] The specific process is: surface cleaning and treatment of conductive plastic ITO-PET—substrate placed in vacuum chamber—vacuum evaporation of organic layer—evaporation of metal electrodes—encapsulation or testing.

[0052] 1. Conductive plastic ITO-PET cleaning

[0053] First, cut the ITO-PET of a specific size, scrub the ITO-PET substrate with a special detergent and a dust-free cloth to remove various oils and dirt on the substrate, and then put in the compound biological enzyme solution, deionized water, In acetone and ethanol, each sonicate for 35 minutes; then, dry the ITO-PET with high-purity nitrogen to evaporate the ethanol, then put it into the pretreatment chamber, continuously feed high-purity oxygen, and bombard the substrate with plasma for 5 minutes;

[0054] The composition of the compound bio...

Embodiment 2

[0068] A vacuum trigger switch. A gas detection module is installed outside the vacuum trigger switch. The gas detection module is made by the following method:

[0069] The specific process is: surface cleaning and treatment of conductive plastic ITO-PET—substrate placed in vacuum chamber—vacuum evaporation of organic layer—evaporation of metal electrodes—encapsulation or testing.

[0070] 1. Conductive plastic ITO-PET cleaning

[0071] First, cut the ITO-PET of a specific size, scrub the ITO-PET substrate with a special detergent and a dust-free cloth to remove various oils and dirt on the substrate, and then put it in deionized water, acetone, and ethanol in sequence. Ultrasound for 15 minutes each; then, dry the ITO-PET with high-purity nitrogen to evaporate ethanol, then put it into the pretreatment chamber, continuously feed high-purity oxygen, and bombard the substrate with plasma for 5 minutes;

[0072] 2. Preparation of porous structure YSZ

[0073] a) Weigh an appr...

Embodiment 3

[0085] A vacuum trigger switch. A gas detection module is installed outside the vacuum trigger switch. The gas detection module is made by the following method:

[0086] The specific process is: surface cleaning and treatment of conductive plastic ITO-PET—substrate placed in vacuum chamber—vacuum evaporation of organic layer—evaporation of metal electrodes—encapsulation or testing.

[0087] 1. Conductive plastic ITO-PET cleaning

[0088] First, cut the ITO-PET of a specific size, scrub the ITO-PET substrate with a special detergent and a dust-free cloth to remove various oils and dirt on the substrate, and then put in the compound biological enzyme solution, deionized water, Sonicate in acetone and ethanol for 15 minutes each; then, dry the ITO-PET with high-purity nitrogen to evaporate the ethanol, then put it into the pretreatment chamber, continuously feed high-purity oxygen, and bombard the substrate with plasma for 5 minutes;

[0089] The composition of the compound biol...

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PUM

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Abstract

The invention discloses a vacuum trigger switch and a manufacturing method thereof. A gas detection module is installed outside the vacuum trigger switch; the gas detection module is a gas sensor based on organic electroluminescence; creatively optimal designs are carried out in many aspects of the component material, the manufacturing process and the structure of the sensor and the like; the unexpected sensitivity is achieved under the synergistic effect of many factors; therefore, the vacuum trigger switch can perform gas detection of a surrounding environment; and thus, the vacuum trigger switch has a great market prospect.

Description

technical field [0001] The invention belongs to the field of switches, and more specifically relates to a vacuum trigger switch and a manufacturing method thereof. Background technique [0002] The switching element is one of the core elements of the pulse power system. The vacuum trigger switch, as a fast opening and closing (release) switch of energy, is a very promising pulse power switching device in recent years. It has the characteristics of high pressure resistance, small size, no noise, fast ignition and fast recovery, and is not affected by external environmental pressure and temperature. [0003] At present, due to the expansion of its application field, in some environments where dangerous gases exist, the existing vacuum trigger switches generally do not have the function of gas detection, and their use will bring huge safety hazards, which will cause safety hazards to personnel, equipment, etc. . Contents of the invention [0004] Based on the problems exist...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H03K17/54
CPCH03K17/54
Inventor 吴桂广
Owner 吴桂广
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