The present invention relates to key switch technology and more particularly, to an enhanced push-button with a thin overall structure and strong rigidity.
As the overall design of notebook computers becomes thinner and lighter, in addition to continuously mounting more functional electronic circuit components in a very small internal space, computer manufacturers must let various electronic circuit components have the same functions or even play better functions than ever before, in order to meet the needs of consumers and the market.
Taking the keyboard for a notebook computer as an example, the current common keyboards can be divided into mechanical keyboards and membrane keyboards. If you want an intuitive and stable press-button feedback and a long-lasting typing experience, the user's first choice is a mechanical keyboard. Although operating the push-buttons of a mechanical keyboard has a better pressing feel, the overall cost is higher, so the membrane keyboard provides another operation that is different from the mechanical keyboard.
In order to make the aforementioned various keyboards meet the requirements of the thin and light design of notebook computers, in addition to lowering the height of each component of the keyboard, the keyboard can also reduce the actuation stroke of each push-button.
Or it is designed to change the pressing relationship between the push-button and the silicone elastic member to have a preloading state, so as to meet the requirement of lowering the overall keyboard height.
At present, the common scissors-type push-button actuation stroke can be reduced to 0.8 mm and continues to be actively design toward less actuation strokes. How to meet the design conditions of reducing the height of the structure and the actuation stroke, and also taking into account the structural rigidity of the overall button, especially for the special buttons that strengthen the ratio of length to width, is an important topic in keyboard design.
For example, China Patent CN104124091B discloses a push-button switch and a keyboard. As shown in
Another example is the key cap structure disclosed in the Chinese Utility Model CN201029081Y, which is to place the reinforcing component on the bottom surface of the keycap to achieve the purpose of strengthening the keycap. However, if the thickness of the above reinforcing component is too thin, the reinforcing effect cannot be achieved. If the thickness of the reinforcing component is too thick, the pressure pre-stressed on the silicone elastic member will be too large. Thus, the elastic member can easily exceed the stroke position of the paragraph drop point, which causes the operation to have a poor sense of touch or a problem without a paragraph, and seriously affects the service life of the silicone elastic member. In summary, the existing push-buttons still have many design problems and challenges that need to be broken.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide an enhanced push-button, which has better overall structural rigidity and operating feel, can maintain the pressing quality of the push-button and is suitable for use in a low profile keyboard.
To achieve this and other objects of the present invention, an enhanced push-button comprises a keycap and a reinforcing member. The keycap is disposed above an elastic member, comprising a top surface and an opposing bottom surface. The reinforcing member is mounted on the bottom surface of the keycap, comprising an outer surface and an abutting portion located on the outer surface. The abutting portion comprises a contact surface recessed on the outer surface. The outer surface faces the elastic member. The elastic member extends into the abutting portion such that the contact surface is abutted against the elastic member for allowing the keycap to be pressed with the reinforcing member against the elastic member to trigger a circuit switch. By means of utilizing the above-mentioned constituent members, the present invention has better overall structural rigidity and operating feel and can maintain the pressing quality of the push-button and is suitable for use in a low profile keyboard.
Other advantages and features of the present invention will be fully understood by reference to the following specification in conjunction with the accompanying drawings, in which like reference signs denote like components of structure.
It should be noted that the enhanced button provided by the present invention can be widely applied to various types of keyboards, such as membrane keyboards or mechanical keyboards. Those skilled in the art should be able to understand that the constituent members, explanatory terms, and the like in the present preferred embodiment are all generic descriptions that do not limit specific components or technical fields, and the quantity term “a” includes the number of one or more plural elements.
Referring to
The keycap 10 has a top surface 12 and an opposing bottom surface 14. The reinforcing member 20 is mounted on the bottom surface 14 of the keycap 10 of the enhanced push-button. In the present preferred embodiment, the reinforcing member 20 is exemplified by an elongated plate whose material rigidity is greater than keycap 10, such as various metal plates. The reinforcing member 20 has an abutting portion 26 corresponding to the elastic member 30. The abutting portion 26 has an outer surface 22, an opposing inner surface 24, and a first thickness T1 between the outer surface 22 and the inner surface 24. The abutting portion 26 comprise an edge 50, an inner wall 52 disposed along the edge 50, and a contact surface 28 located inside the edge 50 and the inner wall 52. The edge 50 of the present preferred embodiment is formed by a closed curve as example, such as a circle or other closed curve with similar characteristics. The edge 50 is directly formed on the outer surface 22, and the inner wall 52 is extend from the edge 50 to the inner surface 24 and surrounds the contact surface 28, thereby forming the contact surface 28 recessed on the outer surface 22, wherein a second thickness T2 between the inner surface 24 and the contact surface 28. The first thickness T1 is greater than the second thickness T2. The inner wall 52 between the outer surface 22 and the contact surface 28 may be vertical or inclined. The outer surface 22 faces the elastic member 30, and the elastic member 30 extends into the abutting portion 26 of the outer surface 22 of the reinforcing member 20 to directly abut against the contact surface 28. Since the elastic member 30 extends into the outer surface 22 of the abutting portion 26 of the reinforcing member 20 to directly abut against the contact surface 28, the reinforcing member 20 can increase the overall strength of the key cap 10 by using its own material characteristics, and the elastic member 30 does not touch the keycap 10. Therefore, the elastic force of the elastic member 30 will not cause deformation of the keycap 10 during environmental testing.
The reinforcing member 20 of the preferred embodiment is exemplified by a monolithic plate body, and the opposite surface of the outer surface 22 is also exemplified by a plane. The opposite face of the contact surface 28 may alternatively be substantially the same height as the opposite face of the outer surface 22, or the opposite face of the contact surface 28 as shown in
It is worth mentioning that, in addition to the monolithic plate as described above, the reinforcing member 20 can also be as shown in
In order to increase the structural strength of the reinforcing member 20 without increasing the thickness of the reinforcing member 20, as shown in
As shown in
As shown in
As shown in
With the above-described constituent members of the present invention, the keycap 10 is coupled with the reinforcing member 20 to increase the overall rigidity of the push-button, and the abutting portion 26 recessed in the reinforcing member 20 further presses the contact surface 28 against the elastic member 30. Thus, the structural rigidity is maintained without increasing the overall height of the push-button. More importantly, the contact surface 28 of the abutting portion 26 is pre-stressed against the elastic member 30 at a low pressure. The reinforcing member 20 of the present invention does not cause the pre-stress of the push-button to be excessively large, avoiding causing the elastic member 30 to lose its own characteristics. Thus, the elastic member 30 of the present invention can maintain a good characteristic curve, so that the present invention can be applied to a low-profile keyboard and can also meet various mechanical and performance quality specifications to achieve the object of the invention.
Number | Date | Country | Kind |
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201811500219.2 | Dec 2018 | CN | national |
201910914537.1 | Sep 2019 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
6689977 | Ito | Feb 2004 | B2 |
8624140 | Nishino | Jan 2014 | B2 |
9373454 | Takemae | Jun 2016 | B2 |
9455097 | Chen | Sep 2016 | B2 |
10340100 | Yang | Jul 2019 | B1 |
20080093206 | Chang | Apr 2008 | A1 |
Number | Date | Country |
---|---|---|
201029081 | Feb 2008 | CN |
103383902 | Nov 2013 | CN |
105655180 | Jun 2016 | CN |
104124091 | Dec 2017 | CN |
Number | Date | Country | |
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20200185164 A1 | Jun 2020 | US |