The present invention relates to a durable microswitch, particularly to microswitch that applies to electronic devices for generating signals and endures more cycles of pressing activities.
Generally speaking, the components of an electronic device are mainly switches. With advance of science and technology, electronic devices (such as the mouse) trend to be miniaturized, and the switches thereof are thus miniaturized too. Therefore, various microswitches have been developed for miniaturized electronics.
For example, China patents of Nos. CN201060767, CN201327785 and CN201532881 disclosed microswitches each having a common terminal, an NC (normally-closed) terminal and an NO (normally-open) terminal. The common terminal connects with an elastic element, and the elastic element normally contacts the NC terminal. When the pressing element of the microswitch is pressed down, the elastic element is pushed down to contact the NO terminal. Thereby, the electronic device is switched among different circuits to generate different signals. In each of the abovementioned prior art microswitches, the elastic elements may have three components—the left one, the middle one and the right one, wherein the left and right ones are transversely interrupted and electrically connected with the common terminal, and wherein the middle one provides elastic force to prop up the elastic element.
The abovementioned prior art microswitches can indeed switch circuits. However, it is only the middle component that provides elastic force and counteracts downward force. After long time usage, the elastic element is likely to fatigue and fracture because of bending up and down repeatedly. Thus, the microswitch fails to switch circuits.
The primary objective of the present invention is to overcome the abovementioned problem via distributing stress of elastic elements, whereby to prevent elastic elements from being fractured by long time usage and prolong the service life of elastic elements.
To achieve the above-mentioned objective, the present invention proposes a microswitch enduring more cycles of pressing activities, which comprises a casing having an accommodation room, a common terminal, an NC (normally-closed) terminal and an NO (normally-open) terminal that are extended from the accommodation room, and a pressing element able to move up and down. The microswitch further comprises an operating element and an elastic element, which are arranged in the accommodation room. The operating element has a holding hole to hold the common terminal, a pressed member located at one side of the common terminal and compressed by the pressing element, a conduction member located at another side of the common terminal and interposed between the NC terminal and the NO terminal, two connection ribs connecting the pressed member with the conduction member, and an extension member extending from the pressed member toward the common terminal. The elastic element is arranged between the common terminal and the conduction member, and has a first fixing portion coupled to the common terminal and a second fixing portion coupled to the conduction member. Thereby, the operating element is normally supported by the elastic element to contact the NC terminal and pushed down by the pressing element to disconnect from the NC terminal and contact the NO terminal.
In one embodiment, the microswitch of the present invention further comprises a spring propping up the pressed member. The pressed member is interposed between the pressing element and the spring. Two support plates are formed via respectively bending the two connection ribs, enhancing the strength of the operating element. The common terminal has a fixing hole to fix the first fixing portion of the elastic element and one end of the extension member. The first and second fixing portions of the elastic element are latch hooks able to hook the common terminal and the conduction member. Via the abovementioned technical scheme, the present invention enables the operating element to endure more cycles of pressing activities and prolongs the service life of the microswitch.
The technical contents of the present invention are described in detail in cooperation with drawings below.
The present invention discloses a microswitch enduring more cycles of pressing activities. Refer to
The operating element 20, the elastic element 30, and a spring 17 are also arranged inside the accommodation room 121. The operating element 20 is an elastic metal plate and has a holding hole 26 to hold the common terminal 13. On one side of the common terminal 13, the operating element 20 has a pressed member 21 corresponding to the pressing element 16. On another side of the common terminal 13, the operating element 20 has a conduction member 22 corresponding to and between the NC terminal 14 and the NO terminal 15. The operating element 20 also has two connection ribs 23 connecting the pressed member 21 and the conduction member 22. Two support plates 24 are respectively extended downward from two outer sides of the connection ribs 23, enhancing the strength of the operating element 20. The support pates 24 are formed via bending the outer sides of the connection ribs 23 and integral with the connection ribs 23. An extension member 25 extends from the pressed member 21 toward the holding hole 26. One end of the extension member 25 is inserted into a fixing hole 131 of the common terminal 13. A slot 27 is formed between the extension member 25 and one of the connection ribs 23.
The elastic element 30 is an arc-like elastic metal plate and arranged between the common terminal 13 and the conduction member 22. As shown in
Refer to
In the present invention, the extension member 25 of the operating element 20 and the elastic element 30 connecting with the operating element 20 and the common terminal 13 jointly provide support force for the operating element 20 to prevent the operating element 20 from being fractured by repeated bendings, whereby the service life of the operating element 20 increases and the microswitch can endure more cycles of pressing activities.
The embodiments described are only to exemplify the present invention but not to limit the scope of the present invention. Any equivalent modification or variation according to the spirit of the present invention is to be also included within the scope of the present invention.