The present invention relates to an input device, and more particularly to a keyboard device and a key structure thereof.
With increasing development of science and technology, a variety of electronic devices are designed in views of convenience and user-friendliness. For helping the user well operate the electronic devices, the electronic devices are gradually developed in views of humanization. The input devices of the common electronic devices include for example mouse devices, keyboard devices, trackball devices, or the like. Via the keyboard device, texts or symbols can be inputted into the computer system directly. As a consequence, most users and most manufacturers of input devices pay much attention to the development of keyboard devices.
Generally, a keyboard device comprises plural key structures. Each key structure comprises a keycap, a scissors-type connecting member, a membrane circuit board and a base plate. These components are stacked on each other sequentially. In case that the keyboard device is a luminous keyboard device, the keyboard device is equipped with a backlight module under the base plate.
Moreover, a membrane switch is installed on the membrane circuit board, and an elastic element is arranged between the keycap and the membrane circuit board. The scissors-type connecting member is connected between the keycap and the base plate. Moreover, the scissors-type connecting member comprises a first frame and a second frame. The second frame is pivotally coupled to the first frame. Consequently, the first frame and the second frame can be swung relative to each other. While the keycap of any key structure is pressed down and moved downwardly relative to the base plate, the first frame and the second frame of the scissors-type connecting member are switched from an open-scissors state to a stacked state. Moreover, as the keycap is moved downwardly to compress the elastic element, the corresponding membrane switch is pushed and triggered by the elastic element. Consequently, the keyboard device generates a corresponding key signal.
When the keycap of the key structure is no longer pressed, the keycap is moved upwardly relative to the base plate in response to an elastic force of the elastic element. Meanwhile, the first frame and the second frame are switched from the stacked state to the open-scissors state, and the keycap is returned to its original position.
As mentioned above, each key structure of the conventional keyboard device comprises five main components, including the keycap, the scissors-type connecting member, the membrane circuit board, the base plate and the elastic element. In case that the backlight is required, the keyboard device is equipped with the backlight module under the base plate. Since the base plate is made of metallic material, the overall weight of the keyboard device is largely increased. Moreover, since the membrane circuit board is located over the base plate, it is necessary to form openings in the membrane circuit board at proper locations. As a consequence, the first frame and the second frame of the scissors-type connecting member can be penetrated through the openings and connected with the base plate. However, since the difficulty of the fabricating process is increased, the fabricating cost is increased.
Therefore, there is a need of providing an improved keyboard device in order to overcome the drawbacks of the conventional technologies.
An object of the present invention provides a keyboard device. The overall weight of the keyboard device is reduced, and the structure of the keyboard device is simplified. The present invention also provides a key structure of the keyboard device.
The other objects and advantages of the present invention will be understood from the disclosed technical features.
In accordance with an aspect of the present invention, a keyboard device is provided. The keyboard device includes plural key structures. Each of the plural key structures includes a keycap, a membrane circuit board, a key frame, an elastic conduction element and a connecting member. The membrane circuit board is located under the keycap. The key frame is arranged between the keycap and the membrane circuit board. The key frame includes a frame body and a bottom plate. The bottom plate is arranged between the frame body and the membrane circuit board. The bottom plate includes a perforation. The elastic conduction element is arranged between the keycap and the bottom plate of the key frame. The perforation is covered by the elastic conduction element. The connecting member is arranged between the keycap and the bottom plate of the key frame. The keycap is movable upwardly or downwardly relative to the bottom plate of the key frame through the connecting member.
In an embodiment, the elastic conduction element includes a covering part and a conduction post. The covering part includes an accommodation space. The conduction post is connected with the covering part and disposed within the accommodation space.
In an embodiment, the covering part of the elastic conduction element includes a top wall, a ring-shaped lower part and a lateral wall. The top wall is connected with the keycap. The lateral wall is extended downwardly from a periphery region of the top wall and connected with the ring-shaped lower part. The ring-shaped lower part is contacted with the bottom plate of the key frame. The accommodation space is defined by the top wall and the lateral wall. The conduction post is connected with the top wall.
In an embodiment, while the keycap is moved downwardly relative to the bottom plate of the key frame through the connecting member, the covering part of the elastic conduction element is compressed by the keycap, the lateral wall is subjected to deformation, and the top wall is correspondingly moved downwardly. While the top wall is moved downwardly, the conduction post is moved downwardly in a direction toward the membrane circuit board. While the conduction post is moved downwardly, the conduction post is penetrated through the perforation of the bottom plate and contacted with a membrane switch of the membrane circuit board.
In an embodiment, the bottom plate of the key frame further includes a fixing recess. The fixing recess is arranged around the perforation. The ring-shaped lower part of the elastic conduction element is embedded in the fixing recess of the bottom plate.
In an embodiment, the bottom plate of the key frame further includes plural hollow portions, and the perforation is arranged between the plural hollow portions.
In an embodiment, the bottom plate of the key frame has a top surface and a bottom surface, which are opposed to each other. The connecting member is installed on the top surface of the bottom plate. The membrane circuit board is installed on the bottom surface of the bottom plate.
In an embodiment, the connecting member is a scissors-type connecting member.
In an embodiment, the key frame is made of plastic material.
In accordance with another aspect of the present invention, a key structure is provided. The key structure includes a keycap, a membrane circuit board, a key frame, an elastic conduction element and a connecting member. The membrane circuit board is located under the keycap. The key frame is arranged between the keycap and the membrane circuit board. The key frame includes a frame body and a bottom plate. The bottom plate is arranged between the frame body and the membrane circuit board. The bottom plate includes a perforation. The elastic conduction element is arranged between the keycap and the bottom plate of the key frame. The perforation is covered by the elastic conduction element. The connecting member is arranged between the keycap and the bottom plate of the key frame. The keycap is movable upwardly or downwardly relative to the bottom plate of the key frame through the connecting member.
From the above descriptions, the present invention provides the keyboard device. Each key structure of the keyboard device comprises the keycap, the membrane circuit board, the key frame, the elastic conduction element and the connecting member. The key frame made of the plastic material is used in the key structure of the present invention to replace the metallic base plate of the conventional key structure. Consequently, the overall weight of the keyboard device is largely reduced. Moreover, since the membrane circuit board is located under the key frame and the elastic conduction element and the connecting member are installed on the bottom plate of the key frame, it is not necessary to additionally form openings in the membrane circuit board for allowing the connecting member to pass through. Due to this structural design, the process of fabricating the keyboard device is effectively simplified, and the fabricating cost is largely reduced.
The above objects and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
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The key structure 10 of the keyboard device 1 will be described in more details as follows.
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In this embodiment, the key frame 13 is made of plastic material. That is, the frame body 131 and the bottom plate 132 are integrated into a one-piece structure by a plastic molding process. It is noted that the material of the key frame 13 is not restricted. That is, the material of the key frame 13 may be varied according to the practical requirements. Since the key frame 13 is made of the plastic material, the weight of each key structure 10 is reduced. When compared with the conventional keyboard device with the metallic base plate, the overall weight of the keyboard device 1 of the present invention is largely reduced. Especially, the key frame 13 can be easily formed by developing a mold and performing a single injection molding process or a multi-injection molding process. Consequently, the fabricating cost of the keyboard device 1 is effectively reduced.
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As mentioned above, the membrane circuit board 12 and the connecting member 15 are installed on the bottom surface 1322 and the top surface 1321 of the bottom plate 132, respectively. Consequently, the connecting member 15 can be connected with the bottom plate 132 of the key frame 13 without the need of being penetrated through the membrane circuit board 12. In other words, it is not necessary to additionally form openings in the membrane circuit board 12 for allowing the connecting member 15 to pass through. Consequently, the process of fabricating the keyboard device 1 is effectively simplified.
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While the keycap 11 is moved downwardly relative to the bottom plate 132 of the key frame 13 through the connecting member 15, the covering part 141 of the elastic conduction element 14 is compressed by the keycap 11, and the lateral wall 1413 is subjected to deformation. While the lateral wall 1413 is subjected to deformation, the top wall 1411 is correspondingly moved downwardly. While the top wall 1411 is moved downwardly, the conduction post 142 connected with the top wall 1411 is moved downwardly in the direction toward the membrane circuit board 12. While the conduction post 142 is moved downwardly, the conduction post 142 is penetrated through the perforation 130 of the bottom plate 132 and contacted with a membrane switch (not shown) on the membrane circuit board 12.
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From the above descriptions, the present invention provides the keyboard device. Each key structure of the keyboard device comprises the keycap, the membrane circuit board, the key frame, the elastic conduction element and the connecting member. The key frame made of the plastic material is used in the key structure of the present invention to replace the metallic base plate of the conventional key structure. Consequently, the overall weight of the keyboard device is largely reduced. Moreover, since the membrane circuit board is located under the key frame and the elastic conduction element and the connecting member are installed on the bottom plate of the key frame, it is not necessary to additionally form openings in the membrane circuit board for allowing the connecting member to pass through. Due to this structural design, the process of fabricating the keyboard device is effectively simplified, and the fabricating cost is largely reduced.
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.
Number | Date | Country | Kind |
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110121346 | Jun 2021 | TW | national |