SWITCH MODULE AND MOUSE DEVICE WITH SAME
20200135415 ยท 2020-04-30
Inventors
Cpc classification
G06F3/02
PHYSICS
G06F3/0202
PHYSICS
H01H13/52
ELECTRICITY
G06F3/0362
PHYSICS
International classification
H01H13/52
ELECTRICITY
G06F3/0354
PHYSICS
G06F3/0362
PHYSICS
Abstract
A switch module includes a switch base, a common terminal, a normally open terminal, a resilient piece, an upper cover and a soft element. The resilient piece includes a first portion and a second portion. The first portion of the resilient piece is disposed on the common terminal. The second portion of the resilient piece is located over the normally open terminal. The upper cover is disposed on the switch base to cover the common terminal, the normally open terminal and the resilient piece. The soft element is arranged between the upper cover and the second portion of the resilient piece. When an external force exerted on the resilient piece is eliminated, the second portion of the resilient piece is moved in a direction away from the switch base in response to an elastic restoring force of the resilient piece.
Claims
1. A switch module, comprising: a switch base; a common terminal disposed on a first end of the switch base; a normally open terminal disposed on a second end of the switch base, wherein the first end and the second end are opposed to each other; a resilient piece comprising a first portion and a second portion, wherein the first portion of the resilient piece is disposed on the common terminal, and the second portion of the resilient piece is located over the normally open terminal; an upper cover disposed on the switch base, wherein the common terminal, the normally open terminal and the resilient piece are covered by the upper cover; and a soft element arranged between the upper cover and the second portion of the resilient piece, wherein when an external force is exerted on the resilient piece to press the resilient piece, the resilient piece is subjected to deformation and the second portion of the resilient piece is moved toward the switch base and contacted with the normally open terminal, so that electric connection between the common terminal and the normally open terminal is established, wherein when the external force exerted on the resilient piece is eliminated, the second portion of the resilient piece is moved in a direction away from the switch base in response to an elastic restoring force of the resilient piece, so that the second portion of the resilient piece is contacted with the soft element.
2. The switch module according to claim 1, wherein the upper cover comprises a first lateral wall, a second lateral wall and a top wall, wherein the first lateral wall and the second lateral wall are opposed to each other, the top wall is connected between the first lateral wall and the second lateral wall, the top wall of the upper cover and the switch base are opposed to each other, the first lateral wall is located near the common terminal, the second lateral wall is located near the normally open terminal, and the soft element is arranged between the top wall of the upper cover and the second portion of the resilient piece.
3. The switch module according to claim 2, wherein the soft element comprises a top surface, a bottom surface, a first lateral surface and a second lateral surface, wherein the top surface and the bottom surface are opposed to each other, the first lateral surface and the second lateral surface are connected between the top surface and the bottom surface, the top surface faces the top wall of the upper cover, the bottom surface faces the switch base, the first lateral surface faces the first lateral wall of the upper cover, the second lateral surface faces the second lateral wall of the upper cover, the top surface is in contact with the top wall of the upper cover, and the second lateral surface is in contact with the second lateral wall of the upper cover.
4. The switch module according to claim 3, wherein while the external force exerted on the resilient piece is eliminated and the second portion of the resilient piece is moved in the direction away from the switch base, the second portion of the resilient piece is contacted with the bottom surface of the soft element.
5. The switch module according to claim 2, wherein the switch module further comprises a pressing element, and the upper cover has a perforation that runs through the top wall, wherein the pressing element is in contact with the first portion of the resilient piece, and the pressing element is protruded in a direction away from the resilient piece and penetrated through the perforation of the upper cover, wherein when the first portion of the resilient piece is pushed by the pressing element in response to the external force, the resilient piece is subjected to deformation.
6. The switch module according to claim 1, wherein the soft element is made of silicone or foam.
7. A computing device, comprising: a mouse base; a mouse case, wherein the mouse base is covered by the mouse case; a button installed on the mouse case, wherein an operation surface of the button is exposed outside an outer surface of the mouse case, so that the button is operable; a circuit board disposed on the mouse base; and a switch module arranged between the circuit board and the button, wherein the switch module comprises: a switch base; a common terminal disposed on a first end of the switch base; a normally open terminal disposed on a second end of the switch base, wherein the first end and the second end are opposed to each other; a resilient piece comprising a first portion and a second portion, wherein the first portion of the resilient piece is disposed on the common terminal, and the second portion of the resilient piece is located over the normally open terminal; an upper cover disposed on the switch base, wherein the common terminal, the normally open terminal and the resilient piece are covered by the upper cover; and a soft element arranged between the upper cover and the second portion of the resilient piece, wherein when an external force is exerted on the resilient piece to press the resilient piece, the resilient piece is subjected to deformation and the second portion of the resilient piece is moved toward the switch base and contacted with the normally open terminal, so that electric connection between the common terminal and the normally open terminal is established, wherein when the external force exerted on the resilient piece is eliminated, the second portion of the resilient piece is moved in a direction away from the switch base in response to an elastic restoring force of the resilient piece, so that the second portion of the resilient piece is contacted with the soft element.
8. The mouse device according to claim 7, wherein the mouse device further comprises a scroll wheel, wherein the scroll wheel ins installed on the mouse case and partially exposed outside the mouse case, and the scroll wheel provides a window scrolling function.
9. The mouse device according to claim 7, wherein the switch module further comprises a pressing element, and the upper cover has a perforation that runs through the top wall, wherein the pressing element is in contact with the first portion of the resilient piece, and the pressing element is protruded in a direction away from the resilient piece and penetrated through the perforation of the upper cover, wherein when the first portion of the resilient piece is pushed by the pressing element in response to the external force, the resilient piece is subjected to deformation.
10. The mouse device according to claim 9, wherein the mouse case comprises an opening, and the button comprises a button body and a triggering part, wherein the button body has the operation surface, the triggering part is protruded in the direction toward the mouse base and penetrated through the opening of the mouse case so as to be contacted with the pressing element of the switch module.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0022]
[0023] The structure of the switch module 25 will be described in more details as follows.
[0024]
[0025] Please refer to
[0026] In this embodiment, the soft element 255 has a top surface S1, a bottom surface S2, a first lateral surface S3 and a second lateral surface S4. The top surface S1 and the bottom surface S2 are opposed to each other. The first lateral surface S3 and the second lateral surface S4 are connected between the top surface S1 and the bottom surface S2. The top surface S1 of the soft element 255 faces the top wall W3 of the upper cover 254. The bottom surface S2 of the soft element 255 faces the switch base 250. That is, the bottom surface S2 of the soft element 255 faces the second portion P2 of the resilient piece 253. The first lateral surface S3 of the soft element 255 faces the first lateral wall W1 of the upper cover 254. The second lateral surface S4 of the soft element 255 faces the second lateral wall W2 of the upper cover 254. In this embodiment, the top surface S1 of the soft element 255 is in contact with the top wall W3 of the upper cover 254, and the second lateral surface S4 of the soft element 255 is in contact with the second lateral wall W2 of the upper cover 254. The above connecting relationship between the soft element 255 and the upper cover 254 is presented herein for purpose of illustration and description only. It is noted that the connecting relationship between the soft element 255 and the upper cover 254 is not restricted. For example, in another embodiment, only the top surface S1 of the soft element 255 is in contact with the top wall W3 of the upper cover 254.
[0027] Please refer to
[0028] The operations of the switch module 25 will be described in more details as follows.
[0029] Please refer to
[0030] As shown in
[0031] Please refer to
[0032] Please refer to
[0033] In the embodiment as shown in
[0034] As mentioned above, the switch module 25 is equipped with the soft element 255 between the upper cover 254 and the second portion P2 of the resilient piece 253. While the external force exerted on the resilient piece 253 of the switch module 25 is eliminated and the second portion P2 of the resilient piece 253 is moved in the direction away from the switch base 250, the second portion P2 of the resilient piece 253 is contacted with the soft element 255. That is, the second portion P2 of the resilient piece 253 does not directly collide with the top wall W3 of the upper cover 254, and the contact between the resilient piece 253 and the soft element 255 does not generate any sound. Since the noise generated by the switch module 25 is reduced, the drawbacks of the conventional technologies are solved. In an embodiment, the soft element 255 is made of silicone or foam. The material of the soft element 255 is not restricted as long as the contact between the resilient piece 253 and the soft element 255 does not generate any sound. Moreover, the thickness of the soft element 255 (i.e., the distance between the top surface S1 and the bottom surface S2 of the soft element 255) is not restricted. The thickness of the soft element 255 is not restricted as long as the user's tactile feel corresponding to the travelling distance between the second portion P2 of the resilient piece 253 and the normally open terminal 252 is not adversely affected.
[0035] From the above descriptions, the present invention provides the switch module and the mouse device with the switch module. The switch module is equipped with the soft element between the upper cover and the resilient piece. While the external force exerted on the resilient piece is eliminated and the resilient piece is returned back, the resilient piece is contacted with the soft element. That is, the resilient piece does not directly collide with the upper cover to generate the sound. Since the noise generated by the switch module is reduced, the drawbacks of the conventional technologies are solved. This design is helpful to reduce the noise of the switch module while maintaining the tactile feel of operating the mouse device.
[0036] 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 such modifications and similar structures.