INTEGRATED SWITCH
20200373102 ยท 2020-11-26
Inventors
- Chunkai Zheng (Yueqing City, CN)
- Ziping Li (Yueqing City, CN)
- Bangran Huang (Yueqing City, CN)
- Zhihao Chen (Yueqing City, CN)
- Zhihai Zhang (Yueqing City, CN)
Cpc classification
H01H9/30
ELECTRICITY
H01H1/0036
ELECTRICITY
H01H9/04
ELECTRICITY
H01H13/18
ELECTRICITY
International classification
H01H9/30
ELECTRICITY
Abstract
An integrated switch is provided in the present application, comprising: a housing; a first circuit board, arranged in the housing; a movable stand, movably connected in the housing; a contact component; a second circuit board, arranged in the housing and connected with an inner wall thereof, and electrically connected with the first circuit board; an electric brush, arranged between the movable stand and the second circuit board, having one end connected with the movable stand and the other end slidably connected with the second circuit board, driven by the movable stand, the electric brush has a connection state after sliding to a first position of the second circuit board, and a disconnection state after sliding to a second position of the second circuit board, and the moving contact shifts from a power-on state to a power-off state after the electric brush slides to the disconnection state.
Claims
1. An integrated switch, comprising: a housing; a first circuit board, arranged in the housing; a movable stand, movably connected in the housing; a contact component, arranged in the housing and electrically connected with the first circuit board, comprising a static contact and a moving contact connected with the movable stand, wherein, the moving contact has a power-off state when separated from the static contact and a power-on state when in contact with the static contact driven by the movable stand; a second circuit board, arranged in the housing and connected with an inner wall thereof, and electrically connected with the first circuit board; and an electric brush, arranged between the movable stand and the second circuit board, having one end connected with the movable stand and the other end slidably connected with the second circuit board, driven by the movable stand, wherein, the electric brush has a connection state when connected with the first circuit board after sliding to a first position of the second circuit board, and a disconnection state when cut off from the first circuit board after sliding to a second position of the second circuit board, and the moving contact shifts from a power-on state to a power-off state after the electric brush slides to the disconnection state.
2. The integrated switch according to claim 1, wherein, the second circuit board comprises a plate body, and a first electrical conductor and a second electrical conductor mounted thereon, the first circuit board is respectively connected with the first electrical conductor and the second electrical conductor, the first electrical conductor and the second electrical conductor on the plate body are spaced apart and arranged in parallel along a moving direction of the movable stand, when the electric brush is on a first position of the second circuit board, the electric brush is connected with both the first electrical conductor and the second electrical conductor, and when the electric brush is on a second position of the second circuit board, the electric brush is connected with the first electrical conductor and disconnected with the second electrical conductor.
3. The integrated switch according to claim 2, wherein, the second circuit board further comprises a third electrical conductor mounted on the plate body, along the moving direction of the movable stand, the third electrical conductor and the first electrical conductor on the plate body are spaced apart and arranged in parallel, and the third electrical conductor and the second electrical conductor are spaced apart and arranged in parallel, when the electric brush is on a second position of the second circuit board, the electric brush is connected with both the first electrical conductor and the third electrical conductor and not connected with the second electrical conductor.
4. The integrated switch according to claim 3, wherein, length directions of the first electrical conductor, the second electrical conductor and the third electrical conductor are the same as the moving direction of the movable stand.
5. The integrated switch according to claim 3, wherein, a side face of the first electrical conductor near the first circuit board is even with a side face of the second electrical conductor near the first circuit board, and a side face of the first electrical conductor away from the first circuit board is even with a side face of the third electrical conductor away from the first circuit board.
6. The integrated switch according to claim 3, further comprising at least two electrical connectors, some of the electrical connectors are respectively connected with the first electrical conductor and the first circuit board, and the remaining ones of the electrical connectors are respectively connected with the second electrical conductor and the first circuit board, and the electrical connector connected with the first electrical conductor is spaced apart from the electrical connector connected with the second electrical conductor.
7. The integrated switch according to claim 6, wherein, the electrical connector is an elastic part.
8. The integrated switch according to claim 7, wherein, a distance between the end of the first electrical conductor near the first circuit board and the first circuit board is smaller than a length of the elastic part in free state, and a distance between the end of the second electrical conductor near the first circuit board and the first circuit board is smaller than a length of the elastic part in free state.
9. The integrated switch according to claim 7, wherein, some of the elastic parts are respectively fixedly connected with the first electrical conductor and the first circuit board, and the remaining ones of the elastic parts are respectively fixedly connected with the second electrical conductor and the first circuit board.
10. The integrated switch according to claim 6, comprising two electrical connectors, spaced apart, one of which is respectively connected with the first electrical conductor and the first circuit board, and the other of which is respectively connected with the second electrical conductor and the first circuit board.
11. The integrated switch according to claim 4, wherein, a side face of the first electrical conductor near the first circuit board is even with a side face of the second electrical conductor near the first circuit board, and a side face of the first electrical conductor away from the first circuit board is even with a side face of the third electrical conductor away from the first circuit board.
12. The integrated switch according to claim 4, further comprising at least two electrical connectors, some of the electrical connectors are respectively connected with the first electrical conductor and the first circuit board, and the remaining ones of the electrical connectors are respectively connected with the second electrical conductor and the first circuit board, and the electrical connector connected with the first electrical conductor is spaced apart from the electrical connector connected with the second electrical conductor.
13. The integrated switch according to claim 5, further comprising at least two electrical connectors, some of the electrical connectors are respectively connected with the first electrical conductor and the first circuit board, and the remaining ones of the electrical connectors are respectively connected with the second electrical conductor and the first circuit board, and the electrical connector connected with the first electrical conductor is spaced apart from the electrical connector connected with the second electrical conductor.
14. The integrated switch according to claim 8, wherein, some of the elastic parts are respectively fixedly connected with the first electrical conductor and the first circuit board, and the remaining ones of the elastic parts are respectively fixedly connected with the second electrical conductor and the first circuit board.
15. The integrated switch according to claim 7, comprising two electrical connectors, spaced apart, one of which is respectively connected with the first electrical conductor and the first circuit board, and the other of which is respectively connected with the second electrical conductor and the first circuit board.
16. The integrated switch according to claim 8, comprising two electrical connectors, spaced apart, one of which is respectively connected with the first electrical conductor and the first circuit board, and the other of which is respectively connected with the second electrical conductor and the first circuit board.
17. The integrated switch according to claim 9, comprising two electrical connectors, spaced apart, one of which is respectively connected with the first electrical conductor and the first circuit board, and the other of which is respectively connected with the second electrical conductor and the first circuit board.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] In order to make a clearer description of technical solutions in specific implementations of the present application or prior art, drawings involved in description for the specific implementations or the prior art will be briefly introduced, and apparently, the drawings described below illustrate some implementations of the present application, for one with ordinary skill in the art, other drawings can also be obtained in accordance with these drawings without delivering creative efforts.
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
DESCRIPTION FOR REFERENCE NUMERALS
[0044] 1. housing; 2. first circuit board; 3. movable stand; 4. moving contact; 5.static contact; 6. normally closed contact; 7. second circuit board; 71. plate body; 72. first electrical conductor; 73. second electrical conductor; 74. third electrical conductor; 8. electric brush; 9. electrical connector; 10. lever; 11. movable contact frame.
DETAILED DESCRIPTION OF EMBODIMENT
[0045] Technical solutions of the present application will be described clearly and completely as follows in conjunction with the drawings, apparently, the described embodiments are just part rather than all embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by one with ordinary skill in the art without delivering creative efforts shall fall into the protection scope of the present application.
[0046] In the description of the present application, it should be noted that, orientation or position relationships indicated by terms such as centre, upper, lower, left, right, vertical, horizontal, inner, outer, etc. are orientation or position relationships indicated on the basis of the accompanying drawings, are only intended to facilitate description or simplified description of the present application, rather than indicating or implying that the involved apparatus or element shall have specific orientations, or be configured and operated specifically, and therefore shall not be construed as limitations to the present application. In addition, terms such as first, second, third, which are merely intended to deliver description, can not be construed as indicating or implying relative importance.
[0047] In the description of the present application, it should be noted that, unless specified and defined otherwise, the terms of installation, interconnection and connection shall be understood in a broad sense, for example, a fixed connection, a removable connection, an integral connection, a mechanical connection, an electrical connection, a direct connection, an indirect connection via intermediate medium, or further, internal communication between two elements. Case-by-case interpretation can be made to the above terms in the present application by one with ordinary skill in the art.
[0048] Moreover, technical features involved in different implementations described in the present application below may be combined with each other as long as no conflicts occur therebetween.
[0049] An integrated switch of the embodiments, as shown in
[0050] a second circuit board 7, arranged in the housing 1 and connected with an inner wall thereof, and electrically connected with the first circuit board 2. The position of the second circuit board 7 is fixed through connection of the second circuit board 7 with the inner wall of the housing 1, so as to fix the second circuit board 7 on the housing 1;
[0051] an electric brush 8, arranged between the movable stand 3 and the second circuit board 7, having one end connected with the movable stand 3 and the other end slidably connected with the second circuit board 7, driven by the movable stand 3, the electric brush 8 has a connection state when connected with the first circuit board after sliding to a first position of the second circuit board 7, and a disconnection state after sliding to a second position of the second circuit board, and the moving contact 4 shifts from a power-on state to a power-off state after the electric brush 8 slides to the disconnection state.
[0052] When the movable stand 3 moves in the housing 1 under the action of external force, the electric brush 8 moves synchronously with the movable stand 3, the electric brush 8 slides relative to the second circuit board 7 and has a connection state when connected with the first circuit board 2 via the second circuit board 7 after sliding to a first position of the second circuit board 7, and has a disconnection state when cut off from the first circuit board 2 after sliding to a second position of the second circuit board 7, and the electric brush 8 is unable to be connected with the first circuit board 2 via the second circuit board 7. Moreover, the moving contact 4 shifts from a power-on state to a power-off state only when the electric brush 8 is in the disconnection state. In other words, when the moving contact 4 is in the power-on state and the electric brush 8 is in the connection state, and the movable stand 3 moves in the opposite direction with the vanishing of the forces imposed thereon, the movable stand 3 first drives the electric brush 8 to slide from the first position to the second position of the second circuit board 7, enabling the electric brush 8 to be cut off from the second circuit board 7, then the circuit in the integrated switch is cut off, and after the movable stand 3 drives the electric brush 8 to slide continuously relative to the second circuit board 7, the movable stand 7 drives the end of the moving contact 4 away from the movable stand 3 to move from the static contact 5 to the normally closed contact 6, and during this process, the moving contact 4 is separated from the static contact 5 before getting in contact with the normally closed contact 6.
[0053] Because the circuit in the integrated switch has been cut off via the electric brush 8 when the moving contact 4 is separated from the static contact 5, the moving contact 4 is not electrically connected with the static contact 5, avoiding of generation of electric arc when the moving contact 4 is separated from the static contact 5, thus protecting the moving contact 4 and the static contact 5 from being damaged by the electric arc, and prolonging the service life of the integrated switch.
[0054] In the prior art, the second circuit board 7 is usually arranged outside the microswitch, causing the components on the second circuit board to be exposed, leading to the tendency of accumulation of dust and thus low dust-proof performance of the components, and the components are ready to be touched and tend to drop off. In the present application, the second circuit board 7 is arranged in the housing 1, avoiding of exposure of the components thereon, improving the dustproof performance of the second circuit board, and the components on the second circuit board are prevented from falling due to touching.
[0055] As shown in
[0056] As shown in
[0057] Along the moving direction of the movable stand 3, the third electrical conductor 72 and the first electrical conductor 73 on the plate body 71 are spaced apart and arranged in parallel, when the electric brush 8 is on the first position of the second circuit board 7, the electric brush 8 is connected with both the first electrical conductor 72 and the second electrical conductor 73, at this point, the electric brush 8, the first electrical conductor 72 and the second electrical conductor 73 form a closed loop with the first circuit board 2, so that the integrated switch is connected with power; and when the electric brush 8 is on the second position of the second circuit board 7, the electric brush 8 is connected with the first electrical conductor 72 and disconnected with the second electrical conductor 73, at this point, the electric brush 8 is not connected with the second electrical conductor 73, one end of the electric brush 8 slides relative to the first electrical conductor 72 while the other end slides relative to the surface of the plate body 72 which is not electrically conductive, so that the electric brush 8, the first electrical conductor 72, and the second electrical conductor 73 is not able to form a closed loop with the first circuit board 2 therebetween, causing the integrated switch to be electrically disconnected.
[0058] As shown in
[0059] The additional arrangement of the third electrical conductor 74 on the plate body 71 allows the electric brush 8 to slide relative to the first electrical conductor 72 and the third electrical conductor 74 when the electric brush is on the second position on the second circuit board 7, and due to the fact that the first electrical conductor 72, the second electrical conductor 73 and the third electrical conductor 74 have more desirable surface smoothness than that of the plate body 71, the friction of the electric brush 8 is reduced and thus the wearing can be reduced and the service life of the electric brush can be prolonged.
[0060] As shown in
[0061] As shown in
[0062] As shown in
[0063] As shown in
[0064] As shown in
[0065] A distance between the end of the first electrical conductor 72 near the first circuit board 2 and the first circuit board 2 is smaller than a length of the elastic part in a free state, and a distance between the end of the second electrical conductor 73 near the first circuit board 2 and the first circuit board 2 is smaller than a length of the elastic part in free state.
[0066] The free state of the elastic part refers to a state where the elastic part is neither compressed nor stretched, and the distance between one end of the first electrical conductor 72 near the first circuit board 2 and the first circuit board 2 is smaller than the length of the elastic part in the free state, in other words, the elastic part is in a compressed state when it is located between the first electrical conductor 72 and the first circuit board 2, and the distance between one end of the second electrical conductor 73 near the first circuit board 2 and the first circuit board 2 is smaller than the length of the elastic part in the free state, in other words, the elastic part is in a compressed state when it is located between the second electrical conductor 73 and the first circuit board 2, thus further improving the damping effect of the elastic part, and the strength of connection between the elastic part and first electrical conductor 72, the second electrical conductor 73 or the first circuit board 2.
[0067] There is no restriction on the elastic part, any part that has elasticity and can realize electric connection can be used. For example, the elastic part can be a spring.
[0068] The free length of the electrical connector 9 between the end of second circuit board 7 near first circuit board 2 and the surface of the first circuit board 2 is greater than the distance between the end of the second circuit board 7 near the first circuit board 2 and the surface of the first circuit board 2, which can ensure that the elastic part is in the compressed state between the first circuit board 2 and the second circuit board 7 and further enhance the damping effect of the elastic part.
[0069] As shown in
[0070] As shown in
[0071] As shown in
[0072] As shown in
[0073] Working principle of the integrated switch:
[0074] As shown in
[0075] When the external force on the movable stand 3 vanishes, and the movable stand 3 moves away from the first circuit board 2 under the elasticity of the reset member. The movable stand 3 drives the electric brush 8, the lever 10 and the end of the moving contact 4 near the movable stand 3 to move away from the first circuit board 2 simultaneously, the electric brush 8 slides relative to the second circuit board 7 and moves from being connected with the first electrical conductor 72 and the second electrical conductor 73 to being connected with the first electrical conductor 72 and the third electrical conductor 74 while not being connected with the second electrical conductor 73, at this point, the moving contact 4 is still in contact with the static contact 5, and the integrated switch is disconnected; the movable stand 3 continues to move away from first circuit board 2 to a snap critical point of the lever 10, the moving direction of the end of the moving contact 4 away from the movable stand 3 changes to a direction towards the normally closed contact 6, and then as movable stand 3 continues to move away from the first circuit board 2, the moving contact 4 is separated from the static contact 5, and finally the movable stand 3 drives the moving contact 4 to move to get in contact with the normally closed contact 6.
[0076] Obviously, the above embodiments are merely intended to clearly illustrate rather than limit the numerated implementations. For one with ordinary skill in the art, other different forms of modifications or changes may further be made on the basis of the aforementioned descriptions. It is unnecessary and impossible to exhaust all implementations. And modifications or changes derived herefrom obviously fall into the protection scope of the present application.