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An ultra-thin key switch structure with a sense of pressing steps

A switch structure, ultra-thin technology, used in electric switches, electronic switches, emergency actuators, etc., can solve problems such as unfavorable promotion and application, inconvenience, and lack of sense of pressing paragraphs.

Active Publication Date: 2019-01-11
MIKOLTA OPTICAL TECH CO
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, because the patent adopts a butterfly hinge key mechanism, it has the following insurmountable defects: it does not have the function of pressing a paragraph, and does not have a control function with a switch. It is necessary to realize the function of the keyboard input switch and generate The step feeling of pressing (allowing the user to judge and sense the position of the switch conduction), requires an additional assembly of a traditional dome switch
As we all know, the pressing force of the dome switch is relatively large (according to the long-term use habits of the human body, the pressing force of the user's favorite keyboard switch is about 45-60 grams, while the pressing force of the dome switch is generally about 80-160 grams), and The pressing stroke is very short (0.30-0.45mm from the start of pressing to the triggering stroke), which causes the user to feel bad when inputting. Easy to cause user's wrist fatigue
At the same time, the service life of the dome switch is about 1 million to 5 million times, and it is prone to fatigue damage and failure during repeated use by the user, resulting in an increase in the cost of after-sales service, bringing a lot of inconvenience to the user, and is not conducive to a large number of Promotion and application

Method used

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  • An ultra-thin key switch structure with a sense of pressing steps
  • An ultra-thin key switch structure with a sense of pressing steps
  • An ultra-thin key switch structure with a sense of pressing steps

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0125] Such as Figure 1 to Figure 4 As shown, an ultra-thin key switch structure with a sense of pressing in this embodiment includes a keycap 110, a base 140 and a circuit board 150 sequentially connected from top to bottom, and the keycap 110 and the base 140 are provided with two mutually symmetrical swinging pieces 130, the outer ends of the two swinging pieces 130 are respectively fixedly connected with the keycap 110, the base 140 is provided with an elastic piece 120, and the inner ends of the two swinging pieces 130 They are respectively fixedly connected to the elastic member 120, the position of the outer end of the swing member 130 is higher than the position of the inner end of the swing member 130, and the circuit board 150 is provided with an infrared emitting tube 151 and an infrared receiving tube 152;

[0126] When the keycap 110 is pressed, the keycap 110 drives the outer ends of the two swinging members 130 to swing downwards, so that the inner ends of the ...

Embodiment 2

[0147] Such as Figure 5 to Figure 7 As shown, an ultra-thin key switch structure with a sense of pressing in this embodiment includes a keycap 210, a base 240 and a circuit board 250 sequentially connected from top to bottom, and the keycap 210 and the base Two swinging pieces 230 symmetrical to each other are arranged between 240, the outer ends of the two swinging pieces 230 are respectively fixedly connected with the keycap 210, the base 240 is provided with an elastic piece 220, and the inner ends of the two swinging pieces 230 They are respectively fixedly connected to the elastic member 220, the position of the outer end of the swing member 230 is higher than the position of the inner end of the swing member 230, and the circuit board 250 is provided with an infrared emitting tube 251 and an infrared receiving tube 252;

[0148] When the keycap 210 is pressed, the keycap 210 drives the outer ends of the two swinging members 230 to swing downwards, so that the inner ends...

Embodiment 3

[0167] Such as Figure 8 to Figure 10 As shown, an ultra-thin key switch structure with a sense of pressing in this embodiment includes a keycap 310, a base 340 and a circuit board 350 sequentially connected from top to bottom, and the connection between the keycap and the base is There are two swinging pieces 330 symmetrical to each other, the outer ends of the two swinging pieces are respectively fixedly connected with the keycaps, the base is provided with an elastic piece 320, and the inner ends of the two swinging pieces are connected with the elastic piece respectively. Fixed connection, the position of the outer end of the swinging part is higher than the position of the inner end of the swinging part, and the circuit board is provided with an infrared emitting tube 351 and an infrared receiving tube 352;

[0168] When the keycap is pressed, the keycap drives the outer ends of the two swinging parts to swing downwards, so that the inner ends of the two swinging parts sw...

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Abstract

The invention relates to an ultrathin key switch structure having a press segmental feeling. The ultrathin key switch structure comprises a key cap, a base and a circuit board which are sequentially connected from top to bottom, two symmetric swinging pieces are arranged between the key cap and the base, the base is provided with an elastic piece, positions where outer ends of the swinging pieces are located are higher than positions where inner ends of the swinging pieces are located, and an infrared emission tube and an infrared receiving tube are arranged on the circuit board; when the key cap is pressed, the key cap drives the outer ends of the two swinging piece to swing downwards, so that the inner ends of the two swinging pieces swing upwards, light transfer states of the infrared emission tube and the infrared receiving tube are changed, and electrical signal transfer of the circuit board is achieved; and when the key cap is loosen, the inner ends of the two swinging pieces return to original positions under the effects of resilient forces of the elastic pieces, the outer ends of the two swinging pieces return to original positions, and finally, the key cap returns to an original position. The press segmental feeling can be generated when the key switch structure is pressed, and the key switch structure has a switch control function, is comfortable to use and is long in service lifetime.

Description

technical field [0001] The invention relates to the technical field of electronic equipment components, in particular to an ultra-thin key switch structure with a sense of pressing steps. Background technique [0002] Today's popular laptops and tablets require thin, durable and secure enclosures. The keyboard as an input device will occupy a large part of the available space inside the laptop or tablet computer, and the design and promotion of new products often require reducing the size of the keyboard as much as possible and simplifying the structure of the keyboard. In order to meet the increasingly demanding requirements of laptops and tablet computers, Apple Inc. has proposed a patent of a key mechanism and a butterfly assembly with the publication number CN 203588895U, which is used to provide an improved key mechanism design. Specifically, the key mechanism of this patent includes: a keycap assembly; a support structure; and a butterfly hinge comprising two separate...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01H13/705H03K17/94
CPCH01H13/705H01H2221/016H01H2235/028H01H2239/022H03K17/941
Inventor 郎欢标
Owner MIKOLTA OPTICAL TECH CO
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