This application claims the priority benefit of Taiwan application serial no. 110139453, filed on Oct. 25, 2021. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The disclosure relates to an input structure, and particularly, to a key structure.
The design of personal electronic products such as laptop computers is becoming thinner and lighter, allowing consumers to easily carry and use these electronic products. In the keyboard module of a laptop computer, most key structures include a scissor mechanism for keycaps to be lifted and lowered. However, the configuration of the scissor mechanism increases the thickness of the keyboard module, which goes against the thin design trend of laptop computers.
The disclosure provides a key structure with a small thickness.
The key structure of the disclosure includes a bottom plate, at least one keycap, and a thin-film circuit board. The bottom plate has at least one elastic protruding portion. The keycap is liftably connected to the bottom plate and has a press portion and at least one trigger portion. The press portion is located in a central region of the keycap and faces the elastic protruding portion, and the trigger portion is located in a peripheral region of the keycap. When the keycap is lowered from a first position to a second position relative to the bottom plate, the press portion downwardly presses the elastic protruding portion. The keycap is adapted to restore from the second position to the first position through an elastic force of the elastic protruding portion. The thin-film circuit board is disposed on the bottom plate and located between the bottom plate and the keycap. The thin-film circuit board has at least one electrical trigger point, and the trigger portion faces the electrical trigger point. When the keycap is located at the second position, the trigger portion triggers the electrical trigger point.
In an embodiment of the disclosure, the bottom plate has multiple holes, and a portion of the bottom plate among the holes constitutes the elastic protruding portion.
In an embodiment of the disclosure, the elastic protruding portion has a protruding point, and the protruding point is in contact with the press portion.
In an embodiment of the disclosure, the bottom plate has at least one first sliding portion, the keycap has at least one second sliding portion, and the first sliding portion and the second sliding portion are slidably disposed on each other. When the keycap is lifted and lowered relative to the bottom plate, the first sliding portion and the second sliding portion slide relatively.
In an embodiment of the disclosure, the second sliding portion has a sliding groove, and an end of the first sliding portion is confined in the sliding groove. When the keycap is lifted and lowered relative to the bottom plate, the end slides in the sliding groove.
In an embodiment of the disclosure, the sliding groove has an opening facing the bottom plate, and an outer diameter of the end is greater than an inner diameter of the opening.
In an embodiment of the disclosure, the first sliding portion has a slot, the second sliding portion has a hook, and the hook is clamped in the slot. When the keycap is lifted and lowered relative to the bottom plate, the hook moves in the slot.
In an embodiment of the disclosure, the first sliding portion is formed by bending part of a structure of the bottom plate.
In an embodiment of the disclosure, the thin-film circuit board has an opening, and the first sliding portion passes through the opening and extends toward the keycap.
In an embodiment of the disclosure, the thin-film circuit board has an opening, and the elastic protruding portion passes through the opening and protrudes toward the keycap.
In an embodiment of the disclosure, the keycap has an annular flange extending along a periphery of the keycap, and the trigger portion is at least one convex point formed on the annular flange.
In an embodiment of the disclosure, the number of the trigger portion is plural, and the trigger portions are located at multiple corners of the keycap, respectively.
In summary, in the key structure of the disclosure, the bottom plate itself has elastic protruding portions corresponding to the keycaps. The elastic protruding portions may provide the user with a feel when pressing a keycap through the elastic force and elastic deformation ability, and the keycap may be restored in an upward manner through a top support of the elastic protruding portion after being pressed down. Accordingly, unlike the conventional design which requires the configuration of a scissor mechanism under the keycap, the disclosure may effectively reduce the overall thickness of the key structure.
The thin-film circuit board 130 is disposed on the bottom plate 110 and located between the bottom plate 110 and the keycap 120. The thin-film circuit board 130 has an opening 130a, and the elastic protruding portion 112 of the bottom plate 110 passes through the opening 130a of the thin-film circuit board 130 and protrudes toward the keycap 120. The thin-film circuit board 130 has at least one electrical trigger point 132, and the trigger portion 124 of the keycap 120 faces the electrical trigger point 132 of the thin-film circuit board 130. In
With the configuration, the elastic protruding portion 112 of the bottom plate 110 may provide the user with a feel when pressing the keycap 120 through the elastic force and elastic deformation ability, and the keycap 120 may be restored in an upward manner through a top support of the elastic protruding portion 112 after being pressed down. Accordingly, unlike the conventional design which requires the configuration of other connectors such as a scissor mechanism under the keycap 120, the disclosure may effectively reduce the overall thickness of the key structure 100. Since the elastic protruding portion 112 is formed under the central region of the keycap 120, the trigger position (i.e., the electrical trigger point 132) of signals is not disposed under the central region of the keycap 120 but disposed under the peripheral region of the keycap 120, and the elastic protruding portion 112 is prevented from being overlapped with the trigger position of signals, which contributes to eliminating the configuration difficulty.
In the embodiment, for example, the bottom plate 110 is a metal plate body and has multiple holes 110a, and the portion of the bottom plate 110 among the holes 110a constitutes the elastic protruding portion 112. With the formation of the holes 110a, the elastic protruding portion 112 may have sufficient elastic deformation ability. Moreover, the elastic protruding portion 112 of the embodiment has a protruding point 1121, and the protruding point 1121 is used to be in contact with the press portion 122 of the keycap 120, so that the contact force between the elastic protruding portion 112 and the press portion 122 is concentrated.
The connection relationship between the keycap and the bottom plate of the embodiment is illustrated in detail in the subsequent paragraphs. Referring to
In the embodiment, for example, the bottom plate 110, the elastic protruding portion 112 thereof, and the first sliding portion 114 are formed into an integral structure by stamping a metal plate base material. The elastic protruding portion 112 is stamped into a collapsible dome form and supported by the material of the bottom plate 110 around the elastic protruding portion 112. When the elastic protruding portion 112 is pressed down under an external force, the elastic protruding portion 112 collapses downward relative to the surrounding bottom plate 110 as shown in
In the embodiment, the number of the first sliding portions 114 is two as shown in
The keycap 120 of the embodiment has an annular flange 1201, and the annular flange 1201 extends along the periphery of the keycap 120. The trigger portion 124 is a convex point formed on the annular flange 1201 and is located at multiple corners of the keycap 120, respectively. Thereby, even if the user presses the keycap 120 with an uneven pressing force, as long as any convex point (the trigger portion 124) can be in contact with the corresponding electrical trigger point 132, the trigger effect can be smoothly achieved. In the embodiment, the electrical trigger points 132 in the thin-film circuit board 130 are electrically connected to each other, for example. In other embodiments, the number and positions of the trigger portions may be changed according to design requirements, and the disclosure is not limited thereto.
In summary, in the key structure of the disclosure, the bottom plate itself has elastic protruding portions corresponding to the keycaps. The elastic protruding portions may provide the user with a feel when pressing a keycap through the elastic force and elastic deformation ability, and the keycap may be restored in an upward manner through a top support of the elastic protruding portion after being pressed down. Accordingly, unlike the conventional design which requires the configuration of a scissor mechanism under the keycap, the disclosure may effectively reduce the overall thickness of the key structure. Moreover, since the elastic protruding portion is formed under the central region of the keycap, the trigger position (i.e., the electrical trigger point) of signals is not disposed under the central region of the keycap but disposed under the peripheral region of the keycap, and the elastic protruding portion is prevented from being overlapped with the trigger position of signals, which contributes to eliminating the configuration difficulty.
Number | Date | Country | Kind |
---|---|---|---|
110139453 | Oct 2021 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
8222545 | Tsai | Jul 2012 | B2 |