KEY STRUCTURE AND SCISSORS-TYPE CONNECTING MEMBER THEREOF
20170345588 · 2017-11-30
Inventors
Cpc classification
H01H13/52
ELECTRICITY
International classification
Abstract
A scissors-type connecting member includes a first frame and a second frame. The first frame includes a rotating shaft. The second frame includes a pivot hole, an entrance and a stopper. After the rotating shaft is introduced into the pivot hole through the entrance, the first frame is pivotally coupled to the second frame. The stopper is located near the entrance or arranged between the entrance and the pivot hole. A position of the rotating shaft is limited between the stopper and the pivotal hole by the stopper. Consequently, the scissors-type connecting member is assembled easily, and the stability of connecting a first frame and a second frame of the scissors-type connecting member is enhanced. Moreover, the present invention also provides a key structure with the scissors-type connecting member.
Claims
1. A scissors-type connecting member, comprising: a first frame comprising a rotating shaft, wherein the rotating shaft is disposed on an outer surface of the first frame; and a second frame comprising a mounting part, wherein the mounting part is disposed on an inner surface of the second frame, and the mounting part comprises an entrance, a pivot hole and a stopper, wherein after the rotating shaft is introduced into the pivot hole through the entrance, the first frame is pivotally coupled to the second frame, wherein the stopper is located near the entrance or arranged between the entrance and the pivot hole, and a position of the rotating shaft is limited between the stopper and the pivotal hole by the stopper.
2. The scissors-type connecting member according to claim 1, wherein a top surface of the stopper is located near the entrance, and the stopper has a stopper width corresponding to an axial length of the rotating shaft, wherein the stopper width is smaller than axial length.
3. The scissors-type connecting member according to claim 2, wherein the entrance has an entrance width corresponding to the axial length of the rotating shaft, wherein a sum of the entrance width and the stopper width is substantially equal to a depth of the pivot hole.
4. The scissors-type connecting member according to claim 1, wherein a top surface of the stopper is in parallel with the entrance and lower than the entrance, and the stopper has a stopper width corresponding to an axial length of the rotating shaft, wherein the stopper width is smaller than axial length.
5. The scissors-type connecting member according to claim 1, wherein the mounting part further has a guiding surface, and two ends of the guiding surface are located near the entrance and a bottom side of the pivot hole, respectively, wherein the rotating shaft is guided to the pivot hole along the guiding surface.
6. The scissors-type connecting member according to claim 5, wherein a top side of the pivot hole has a curved surface, and the bottom side of the pivot hole is has flat surface, wherein the rotating shaft comprises a curved periphery and two flat slant surfaces, and the two flat slant surfaces are respectively extended from two opposite sides of the curved periphery, wherein after the rotating shaft is introduced into said pivot hole, the curved periphery is contacted with the top side of the pivot hole, and the bottom side of the pivot hole and the guiding surface interfere with the two flat slant surfaces, so that a rotating angle of the first frame relative to the second frame is limited.
7. A key structure, comprising: a base plate; a keycap disposed over the base plate; and a scissors-type connecting member arranged between the base plate and the keycap, wherein the keycap is moved upwardly or downwardly relative to the base plate through the scissors-type connecting member, and the scissors-type connecting member comprises: a first frame comprising a rotating shaft, wherein the rotating shaft is disposed on an outer surface of the first frame; and a second frame comprising a mounting part, wherein the mounting part is disposed on an inner surface of the second frame, and the mounting part comprises an entrance, a pivot hole and a stopper, wherein after the rotating shaft is introduced into the pivot hole through the entrance, the first frame is pivotally coupled to the second frame, wherein the stopper is located near the entrance or arranged between the entrance and the pivot hole, and a position of the rotating shaft is limited between the stopper and the pivotal hole by the stopper.
8. The key structure according to claim 7, wherein a top surface of the stopper is located near the entrance, and the stopper has a stopper width corresponding to an axial length of the rotating shaft, wherein the stopper width is smaller than axial length.
9. The key structure according to claim 8, wherein the entrance has an entrance width corresponding to the axial length of the rotating shaft, wherein a sum of the entrance width and the stopper width is substantially equal to a depth of the pivot hole.
10. The key structure according to claim 7, wherein a top surface of the stopper is in parallel with the entrance and lower than the entrance, and the stopper has a stopper width corresponding to an axial length of the rotating shaft, wherein the stopper width is smaller than axial length.
11. The key structure according to claim 7, wherein the mounting part further has a guiding surface, and two ends of the guiding surface are located near the entrance and a bottom side of the pivot hole, respectively, wherein the rotating shaft is guided to the pivot hole along the guiding surface.
12. The key structure according to claim 11, wherein a top side of the pivot hole has a curved surface, and the bottom side of the pivot hole has a flat surface, wherein the rotating shaft comprises a curved periphery and two flat slant surfaces, and the two flat slant surfaces are respectively extended from two opposite sides of the curved periphery, wherein after the rotating shaft is introduced into said pivot hole, the curved periphery is contacted with the top side of the pivot hole, and the bottom side of the pivot hole and the guiding surface interfere with the two flat slant surfaces, so that a rotating angle of the first frame relative to the second frame is limited.
13. The key structure according to claim 11, further comprising: a membrane switch circuit disposed on the base plate, wherein when the membrane switch circuit is triggered, a key signal is generated; and an elastic element disposed on the membrane switch circuit, wherein a lower part of the elastic element is contacted with the membrane switch circuit, the elastic element is penetrated through the scissors-type connecting member, and an upper part of the elastic element is contacted with the keycap, wherein the elastic element triggers the membrane switch circuit when the elastic element is pushed by keycap, or the elastic element provides an elastic force to the keycap.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0027]
[0028] The membrane switch circuit 33 is arranged between the base plate 31 and the elastic element 34. When the membrane switch circuit 33 is triggered, a corresponding key signal is generated. The elastic element 34 is arranged between the keycap 32 and the membrane switch circuit 33. Moreover, the elastic element 34 comprises an upper part 341 and a lower part 342. For assembling the components of the key structure 3, the upper part 341 of the elastic element 34 is penetrated through the first frame 301 and contacted with the keycap 32. The lower part 342 of the elastic element 34 is contacted with the membrane switch circuit 33.
[0029] The base plate 31 comprises a first hook 311 and a second hook 312. The first hook 311 is located at a first side of the base plate 31, and connected with a first end of the second frame 302. The second hook 312 is located at a second side of the base plate 31, and connected with a first end of the first frame 301. The keycap 32 comprises hooks (not shown), and these hooks are similar to the first hook 311 and the second hook 312. A second end of the first frame 301 and a second end of the second frame 302 are connected with the hooks of the keycap 32.
[0030] The detailed structure of the scissors-type connecting member 30 will be described as follows. Please refer to
[0031] The stopper 30214 is located near the entrance 30211 or arranged between the entrance 30211 and the pivot hole 30212. The stopper 30214 is used for stopping the rotating shaft 3011. Consequently, the position of the rotating shaft 3011 is limited between the stopper 30214 and the pivot hole 30212. In this embodiment, a top surface of the stopper 30214 is located near the entrance 30211. Moreover, the stopper 30214 has a stopper width L4 corresponding to an axial length L1 of the rotating shaft 3011, and the entrance 30211 has an entrance width L3 corresponding to the axial length L1 of the rotating shaft 3011. The sum of the stopper width L4 and the entrance width L3 is substantially equal to a depth L2 of the pivot hole 30212. Since the axial length L1 of the rotating shaft 3011 of the inner frame 221 is equal to or slightly smaller than the depth L2 of the pivot hole 30212, the stopper width L4 of the stopper 30214 and the entrance width L3 of the entrance 30211 are both smaller than the axial length L1 of the rotating shaft 3011.
[0032] As mentioned above, the entrance width L3 of the entrance 30211 of the mounting part 3021 of the second frame 302 is smaller than the axial length L1 of the rotating shaft 3011. Consequently, for combining the first frame 301 with the second frame 302, an external force is applied to the rotating shaft 3011 of the first frame 301 at the entrance 30211 of the mounting part 3021 of the second frame 302 in order to result in slight deformation. Consequently, the rotating shaft 3011 of the first frame 301 is introduced into the mounting part 3021 through the entrance 30211 of the mounting part 3021 and moved to the pivot hole 30212 along the guiding surface 30213.
[0033] In other words, the stopper 30214 of the mounting part 3021 of the second frame 302 provides the function of stopping the rotating shaft 3011 of the first frame 301. That is, if the assembled keyboard with the key structure 3 drops down (e.g., drops down accidentally or undergoes a reliability drop test before leaving the factory) or the assembled keyboard is hit by an external force, the rotating shaft 3011 of the first frame 301 is stopped by the stopper 30214. Consequently, the rotating shaft 3011 of the first frame 301 is not escaped from the entrance 30211 of the mounting part 3021 of the second frame 302. Under this circumstance, the stability of connecting the first frame 301 and the second frame 302 is enhanced.
[0034] In this embodiment, the rotating shaft 3011 of the first frame 301 comprises a curved periphery 30111 and two flat slant surfaces 30112 and 30113. The two flat slant surfaces 30112 and 30113 are extended from two opposite sides of the curved periphery 30111, respectively. In addition, the two flat slant surfaces 30112 and 30113 are intersected with each other and symmetrical to each other. The top side 302122 and the bottom side 302121 of the pivot hole 30212 of the mounting part 3021 of the second frame 302 are a curved surface and a flat surface, respectively.
[0035]
[0036] After the rotating shaft 3011 of the first frame 301 is introduced into the pivot hole 30212 of the mounting part 3021 of the second frame 302, the curved periphery 30111 of the rotating shaft 3011 is contacted with the top side 302122 of the pivot hole 30212. Moreover, as the first frame 301 is rotated relative to the second frame 302, the two flat slant surfaces 30112 and 30113 of the rotating shaft 3011 are respectively stopped by the guiding surface 30213 of the mounting part 3021 and the bottom side 302121 of the pivot hole 30212. That is, the guiding surface 30213 of the mounting part 3021 and the bottom side 302121 of the pivot hole 30212 interfere with the two flat slant surfaces 30112 and 30113 of the rotating shaft 3011. Consequently, the rotating angle of the inner frame 301 relative to the outer frame 3022 is limited.
[0037] In the above embodiment, the shape of the rotating shaft 3011 of the first frame 301 and the shape of the pivot hole 30212 of the mounting part 3021 of the second frame 302 are presented herein for purpose of illustration and description only. It is noted that numerous modifications and alterations of the key structure may be made while retaining the teachings of the invention.
[0038] While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all modifications and similar structures.