1. Field of the Invention
The present disclosure relates to a key structure; in particular, to a key structure having a balance mechanism which occupies little space.
2. Description of Related Art
In conventional keyboards, function keys which are longer in one direction than they are in another (e.g. length significantly greater than width) use link bars for balance. A link bar has a circular cross section, is linear and is made of stainless steel. One end of the link bar is pivotally connected to a key cap. Another end of the link bar is slidably disposed on a bottom board. When the key is pressed, the link bar slides on the bottom board and pivots about the key cap, keeping the key cap horizontal to the bottom board. The key cap is prevented from flipping and being unresponsive.
With development of lightweight electronic products, the keyboards thereof are also trending toward slim designs. Thicker link bars (0.8 mm to 0.9 mm) are required to provide sufficient strength for preventing corners of a key cap from being unresponsive to a stroke. However, thicker bars require more space. Specifically, conventional keys have heights of over 3 mm. Therefore, traditional link bars compromises the design of a super thin keyboard.
Hence, the present inventor believes the above mentioned disadvantages can be overcome, and through devoted research combined with application of theory, finally proposes the present disclosure which has a reasonable design and effectively improves upon the above mentioned disadvantages.
The object of the present disclosure is to provide a key structure which saves space while maintaining a normal tactile feel.
In order to achieve the aforementioned objects, the present disclosure provides a key structure comprising: a bottom board; a key cap; and two first balance plates. The two first balance plates are plate shaped (flat and tabular), are disposed between the bottom board and the keycap, and are symmetric to each other. An upper end of each of the two first balance plates is connected to the key cap, and a lower end of each of the two first balance plates is connected to the bottom board.
The present disclosure has the following advantages. The tabular design of the balance plates provides greater strength in a same amount of space compared to traditional link bars having circular cross sections. A normal tactile feel is provided while saving space, thereby achieving a slim design.
Moreover, a strengthening plate can be disposed under the key cap for increasing the strength of the key cap, such that the key cap is not easily damaged.
In order to further the understanding regarding the present disclosure, the following embodiments are provided along with illustrations to facilitate the disclosure of the present disclosure.
Referring to
The two first balance plates 2 are preferably metal plates (e.g. stainless steel) but are not limited thereto. The two first balance plates 2 can be elongated corresponding to the length of the key cap 3. The thickness of the first balance plates 2 is preferably 0.3 mm to 0.6 mm but is not limited thereto. The two first balance plates 2 are disposed between the bottom board 1 and the key cap 3, and are symmetric to each other. An upper end of each of the two first balance plates 2 is connected to the key cap 3, and a lower end of each of the two first balance plates 2 is connected to the bottom board 1. In the present embodiment, the upper end of each of the two first balance plates 2 is pivotally connected to the key cap 3, and the lower end of each of the two first balance plates 2 is slidably connected to the bottom board 1. However, the method of connection between the two first balance plates 2 and the bottom board 1 and between the two first balance plates 2 and the key cap 3 is not limited and can be modified according to need. For example, the upper ends of the two first balance plates 2 can be slidably connected to the key cap 3, and the lower ends of the two first balance plates 2 can be pivotally connected to the bottom board 1.
In the present embodiment, each of the first balance plates 2 has a first top plate 21 which is rectangular, and two first side plates 22 attached to two ends of the first top plate 21. The two first side plates 22 are each substantially perpendicular to the first top plate 21, such that the first balance plate 2 is substantially U-shaped. The end of each of the first side plates 22 distal from the first top plate 21 is connected to the bottom board 1, and the first top plate 21 is connected to the key cap 3. Specifically, the free ends of the two first side plates 22 are each formed with a first sliding connection portion 221, whose structure is not limited. In the present embodiment each of the first sliding connection portions 221 is a plate protruding from the free end of the respective first side plate 22. The width of the first sliding portions 221 is smaller than the width of the first side plates 22.
A first reinforcement portion 23 can be disposed between the first top plate 21 and each of the two first side plates 22. The first reinforcement portions 23 can each form a slanted edge spanning from one of two ends of the first top plate 21 to one of the two first side plates 22, for increasing the strength of the first balance plate 2. A plurality of first pivot connection portions 211 are formed on each of the first top plates 21. The structure of the first pivot connection portions 211 is not limited. In the present embodiment the first pivot connection portions 211 are column shaped pivot shafts.
Additionally, the bottom board 1 can have a plurality of second sliding connection portions 11 configured to engage the first sliding connection portions 221. The second sliding connection portions 11 are integrally formed with the bottom board 1, and their structure is not limited. In the present embodiment, the second sliding portions 11 are each plates bent into an L shape and formed with a first sliding slot 111. Referring to
Additionally, the key cap 3 can have a plurality of second pivot connection portions 31 configured to engage the first pivot connection portions 211. The second pivot connection portions 31 are integrally formed with the key cap 3. The second pivot connection portions 31 can be formed at the edges of the underside of the key cap 3, and their structure is not limited. In the present embodiment, the second pivot connection portions 31 are bases protruding from the underside of the key cap 3, and are each formed with a first pivot hole 311. The first pivot connection portions 211 of the first balance plates 2 can be pivotally connected to the respective second pivot connection portions 31. Namely, the first pivot connection portions 211 can be respectively pivotally connected in the first pivot holes 311, thereby pivotally connecting the upper end of the two first balance plates 2 to the key cap 3. In another embodiment, the structures of the first pivot connection portions 211 and the second pivot connection portions 31 can be interchanged, or replaced by other structures.
Shorter key structures usually require only two first balance plates 2. The present embodiment discloses a longer key structure. Therefore two second balance plates 6 are disposed. The two second balance plates 6 are preferably metal plates (e.g. stainless steel) but are not limited thereto. The two second balance plates 6 can be short corresponding to the width of the key cap 3. The thickness of the second balance plates 6 is preferably 0.3 mm to 0.6 mm but is not limited thereto. The two second balance plates 6 are disposed between the bottom board 1 and the key cap 3, are symmetric to each other, and arranged proximal to the respective ends of the two first balance plates 2. An upper end of each of the two second balance plates 6 is connected to the key cap 3, and a lower end of each of the two second balance plates 6 is connected to the bottom board 1. In the present embodiment, the upper end of each of the two second balance plates 6 is pivotally connected to the key cap 3, and the lower end of each of the two second balance plates 6 is slidably connected to the bottom board 1. However, the method of connection between the two second balance plates 6 and the bottom board 1 and between the two second balance plates 6 and the key cap 3 is not limited and can be modified according to need. For example, the upper ends of the two second balance plates 6 can be slidably connected to the key cap 3, and the lower ends of the two second balance plates 6 can be pivotally connected to the bottom board 1.
In the present embodiment, each of the second balance plates 6 has a second top plate 61 which is rectangular, and two second side plates 62 attached to two ends of the second top plate 61. The two second side plates 62 are each substantially perpendicular to the second top plate 61, such that the second balance plate 6 is substantially U-shaped. The end of each of the second side plates 62 distal from the second top plate 61 is connected to the bottom board 1, and the second top plate 61 is connected to the key cap 3. Specifically, the free ends of the two second side plates 62 are each formed with a third sliding connection portion 621, whose structure is not limited. In the present embodiment each of the third sliding connection portions 621 is a plate protruding from the free end of the respective second side plate 62. The width of the third sliding portions 621 is smaller than the width of the second side plates 62.
A second reinforcement portion 63 can be disposed between the second top plate 61 and each of the two second side plates 62. The second reinforcement portions 63 can each form a slanted edge spanning from one of two ends of the second top plate 61 to one of the two second side plates 62, for increasing the strength of the first balance plate 2. A plurality of third pivot connection portions 611 are formed on each of the second top plates 61. The structure of the third pivot connection portions 611 is not limited. In the present embodiment the third pivot connection portions 611 are column shaped pivot shafts.
Additionally, the bottom board 1 can have a plurality of fourth sliding connection portions 12 configured to engage the third sliding connection portions 621. The fourth sliding connection portions 12 are integrally formed with the bottom board 1, and their structure is not limited. In the present embodiment, the fourth sliding portions 12 are each plates bent into an L shape and formed with a second sliding slot 121. Referring to
Additionally, the key cap 3 can have a plurality of fourth pivot connection portions 32 configured to engage the third pivot connection portions 611. The fourth pivot connection portions 32 are integrally formed with the key cap 3. The fourth pivot connection portions 32 can be formed at the edges of the underside of the key cap 3, and their structure is not limited. In the present embodiment, the fourth pivot connection portions 32 are bases protruding from the underside of the key cap 3, and are each formed with a second pivot hole 321. The third pivot connection portions 611 of the second balance plates 6 can be pivotally connected to the respective fourth pivot connection portions 32. Namely, the third pivot connection portions 611 can be respectively pivotally connected in the second pivot holes 321, thereby pivotally connecting the upper end of the two second balance plates 6 to the key cap 3. In another embodiment, the structures of the third pivot connection portions 611 and the fourth pivot connection portions 32 can be interchanged, or replaced by other structures.
Additionally, in the present embodiment, the two second balance plates 6 are arranged between the two first balance plates 2, such that the two second balance plates 6 are positioned at inner sides of the two first balance plates 2. However, the two second balance plates 6 can alternately be arranged at outer sides of the first balance plates 2. Namely, the arrangements of the first balance plates 2 and the second balance plates 6 can be modified according to need, and are not limited.
In the present embodiment, a strengthening plate is disposed under the key cap 3. The strengthening plate 7 is preferably a metal plate (e.g. a stainless steel plate) but is not limited thereto. The thickness of the strengthening plate is preferably 0.3 mm to 0.6 mm but is not limited thereto. The strengthening plate 7 can be fixed to the underside of the key cap 3 by adhesives or fusing, for increasing the strength of the key cap 3 such that the key cap 3 is not easily damaged. The strengthening plate 7 can be rectangular and be formed with a plurality of openings 71 such that the strengthening plate 7 is hollow.
Referring to
The present disclosure uses plate shaped balance plates to replace traditional link bars having circular cross sections, providing additional strength in a same amount of space. For example, a balance plate having a thickness of 0.5 mm can achieve a same strength as that of a traditional link bar having a thickness of over 1 mm. An ideal tactile feel at four corners of the key structure is achieved while saving space through an effective geometrical design. A normal tactile feel is provided while saving space, thereby achieving a slim design. The height of the key structure of the present disclosure can be reduced to 2.5 mm to 3.0 mm.
The descriptions illustrated supra set forth simply the preferred embodiments of the present disclosure; however, the characteristics of the present disclosure are by no means restricted thereto. All changes, alterations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the present disclosure delineated by the following claims.
Number | Date | Country | Kind |
---|---|---|---|
103220808 U | Nov 2014 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
20100294340 | Cunningham | Nov 2010 | A1 |
20110303521 | Niu | Dec 2011 | A1 |
20140231234 | Hsu | Aug 2014 | A1 |
20140318942 | Takemae | Oct 2014 | A1 |
Number | Date | Country |
---|---|---|
11039995 | Feb 1999 | JP |
Number | Date | Country | |
---|---|---|---|
20160147312 A1 | May 2016 | US |