The present disclosure relates to a push-button switch, and more particularly to a push-button switch with good balance.
Push-button switch is generally used as an input means for operating an electronic equipment. The quality of the push-button switch determines the experience of an relating input device, which requires the push-button switch to be made with a good touch feeling and acoustic feeling. The existing thin push-button switch using a metal piece as a moving contact piece lacks a touch feeling like a large push-button switch because of the limitation of the internal space in the switch. Moreover, due to the unreasonable internal structure design, the compression stability of the existing switch is poor, resulting in unsmooth pressing and affecting normal use. Furthermore, the existing switch often generates unsmooth stagnation during pressing, which affects the press feeling.
In order to solve the above deficiencies, an object of embodiments of the present disclosure is to provide a push-button switch with good balance, which has a reasonable structure, thereby significantly improving the press balance and press stability, eliminating the unsmooth stagnation, and enhancing the press feeling.
One embodiment of the present invention provides a push-button switch with good balance, including a base and a cover covering the base. The cover is provided with an orifice. The push-button switch further includes a press core, a torsion spring, a conductive assembly and a press core slider, which are respectively arranged on the base. A guide pillar is protruded upwardly from a center position of an upper end of the base, and a guide hole is arranged in a center of the guide pillar. One end of the base is provided with a conductive assembly slot configured to accommodate the conductive assembly, the other end of the base is provided with a torsion spring slot configured to accommodate the torsion spring. Two baffles are arranged on the upper end of the base and at each of opposite sides of the guide pillar. A gap is provided between the two baffles, such that an annular receiving slot is formed around the baffles and the guide pillar. The press core slider is arranged at a side of the press core. An annular slot is formed at a lower end of the press core. A cylinder is protruded downward from a center position of the annular slot. The cylinder is inserted into the guide hole of the base, and the guide pillar of the base is inserted into the annular slot. The guide pillar and the outer side of the cylinder are sleeved with a spring. A balance rod assembly is arranged in the annular receiving slot. The balance rod assembly is split-type and formed by a first balance rod and a second balance rod cross-connected with each other. The first balance rod and the second balance rod are both clamped at the lower end of the press core. Two crossing junctions of the first balance rod and the second balance rod are limited by a positioning slider arranged in the annular receiving slot and in the gap between the two baffles at the same side. During the process of moving up and down of the press core, the first balance rod and the second balance rod swing up and down under the limit of the positioning slider, thereby keeping a press balance.
As a further improvement of the present invention, a side edge of the positioning slider is provided with a limiting slot for clamping the first balance rod and the second balance rod. The limiting slot is provided with an opening. An upper portion and a lower portion of the opening are respectively bent inwardly to form protrusions.
As a further improvement of the present invention, the limiting slot has an arc shape.
As a further improvement of the present invention, each end face of the protrusions has an angle.
As a further improvement of the present invention, a convex rib is arranged on a side wall of the positioning slider and faces the side edge of the press core.
As a further improvement of the present invention, a groove is formed in a lower end surface of the press core, such that a plurality of convex corners are formed in the lower end surface of the press core.
As a further improvement of the present invention, a plurality of relief slots for being inserted by the convex corners or a plurality of relief holes for being passed through by the convex corners are provided on the base and outside of the guide pillar.
As a further improvement of the present invention, an upper end of the cylinder of the press core is formed with a mounting hole, and an LED lamp is arranged in the mounting hole.
As a further improvement of the present invention, the first balance rod and the second balance rod are both U-shaped. An open end of the first balance rod and an open end of the second balance rod are arranged to cross each other. The first balance rod includes a first transverse rod and first longitudinal rods respectively connected to two ends of the first transverse rod. An end of each of the first longitudinal rods is provided with a first hook bent outwardly. The second balance rod includes a second transverse rod and second longitudinal rods respectively connected to two ends of the second transverse rod. An end of each of the second longitudinal rods is provided with a second hook bent inwardly. The first transverse rod is arranged at a lower end of one side of the press core, and the second transverse rod is arranged at a lower end of the other side of the press core.
As a further improvement of the present invention, the conductive assembly includes a static piece and a movable piece.
The invention has the following beneficial effects.
(1) The first balance rod and the second balance rod are built-in and split-type. The first balance rod and the second balance rod swing up and down under the limit of the positioning slider to achieve a press balance, thereby significantly improving press balance and press stability.
(2) The convex corners and the relief slots or the relief holes serving as the relief positions of the base are adopted to provide a relief space for the convex corners. The length of fit before the sliding between the press core and the base is lengthened, which eliminates the unsmooth stagnation. Meanwhile, the height of the push-button switch is lowered, so that the overall thickness of the push-button switch is thinner.
(3) The torsion spring is adopted to enhance the press feeling and make a press sound.
The above illustration is an overview of the technical solutions of the present invention, and the present invention will be further described below with reference to the accompanying drawings and specific embodiments.
In order to more clearly illustrate the technical solutions and merits of the present invention, the specific embodiments will be described in detail with reference to the accompanying drawings and preferred embodiments.
Referring to
In the present embodiment, as shown in
As shown in
As shown in
As shown in
In the present embodiment, the conductive assembly 5 includes a static piece 51 and a movable piece 52.
As shown in
As shown in
In the present embodiment, the relief slots 16 and the relief holes 16′ have the same number as that of the convex corners 33. In the present embodiment, the number of the convex corners 33 is four, while the convex corners 33 may also be set to two or more according to specific needs.
Moreover, the height of the convex corners 33 can be set according to specific needs. In the present embodiment, preferably, the height of the convex corners 33 is 0.4 mm. Through the matching of the convex corners 33 and the relief slots 16 or the relief holes 16′, the relief slots 16 or the relief holes 16′ are used as the avoidance position of the base 1, so that length of fit before the sliding between press core 3 and the base 1 is lengthened, which eliminates an unsmooth stagnation of the press core 3 when pressed. Meanwhile, the height of the push-button switch is lowered, so that the overall thickness of the push-button switch is thinner.
The working principle of the invention is as follows.
As shown in
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The key points of the invention are as follows.
(1) The first balance rod and the second balance rod are built-in and split-type. The first balance rod and the second balance rod swing up and down under the limit of the positioning slider to achieve a press balance, thereby significantly improving press balance and press stability.
(2) The convex corners and the relief slots or the relief holes serving as the relief positions of the base are adopted to provide a relief space for the convex corners. The length of fit before the sliding between the press core and the base is lengthened, which eliminates the unsmooth stagnation. Meanwhile, the height of the push-button switch is lowered, so that the overall thickness of the push-button switch is thinner.
(3) The torsion spring is adopted to enhance the press feeling and make a press sound.
The above description is only the preferred embodiments of the present disclosure and are not intended to limit the present technical disclosure. Any modifications, equivalent replacements, and alterations made within the spirits and principles of the present technical disclosure shall be included in the scope of the present disclosure.
Number | Date | Country | Kind |
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201611219898.7 | Dec 2016 | CN | national |
This application is a continuation of International Patent Application No. PCT/CN2017/117911, filed on Dec. 22, 2017, which claims the benefit of priority from Chinese Application No. 201611219898.7, filed on Dec. 26, 2016. The entirety of each of the above-mentioned patent applications is hereby incorporated by reference herein and made a part of this specification.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2017/117911 | 12/22/2017 | WO | 00 |