WO2019075759A1 - 开关及开关组件 - Google Patents

开关及开关组件 Download PDF

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Publication number
WO2019075759A1
WO2019075759A1 PCT/CN2017/107157 CN2017107157W WO2019075759A1 WO 2019075759 A1 WO2019075759 A1 WO 2019075759A1 CN 2017107157 W CN2017107157 W CN 2017107157W WO 2019075759 A1 WO2019075759 A1 WO 2019075759A1
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WO
WIPO (PCT)
Prior art keywords
switch
housing
sensing device
flexible sensing
remote controller
Prior art date
Application number
PCT/CN2017/107157
Other languages
English (en)
French (fr)
Inventor
王朝纲
Original Assignee
深圳市柔宇科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to CN201780092166.2A priority Critical patent/CN110753889A/zh
Priority to PCT/CN2017/107157 priority patent/WO2019075759A1/zh
Publication of WO2019075759A1 publication Critical patent/WO2019075759A1/zh

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Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component
    • H01R13/70Structural association with built-in electrical component with built-in switch

Definitions

  • the present invention relates to the field of electronic devices, and in particular, to a switch and a switch assembly.
  • the switch is mounted on the wall, and the user controls the lighting device and the like to turn on and off by pressing the physical button of the switch, the function of the switch is single, and the user experience is low.
  • the invention provides a switch and a switch assembly.
  • the switch of the embodiment of the invention includes: a housing;
  • a flexible sensing device disposed on the housing, the flexible sensing device for receiving user input, the user input for controlling a state of the powered device.
  • the switch can charge the mobile terminal by using the contact terminal, and the flexible sensing device can receive the user input, thereby controlling the state of the power device, and the function of the switch is diversified, and the flexible sensing device can improve the user experience.
  • the switch assembly of the embodiment of the present invention includes a switch and a remote controller, and the switch includes:
  • a first flexible sensing device disposed on the housing, the first flexible sensing device configured to receive a first user input, the first user input to control a state of the powered device;
  • the remote controller is abutted on the housing, and the remote controller includes a charging terminal that is coupled to the contact terminal and is charged by the switch.
  • the switch can charge the remote controller by using the contact terminal, and at the same time, the first flexible sensing device can receive user input, thereby controlling the state of the power device.
  • the function of the switch is diversified, and the first flexible sensing device can improve the user experience.
  • FIG. 1 is a perspective view of a switch according to an embodiment of the present invention.
  • FIG. 2 is an exploded perspective view of a switch according to an embodiment of the present invention.
  • FIG. 3 is an exploded perspective view showing another perspective of the switch according to the embodiment of the present invention.
  • FIG. 4 is a partial structural schematic view of a switch according to an embodiment of the present invention.
  • FIG. 5 is a perspective view of a remote controller according to an embodiment of the present invention.
  • FIG. 6 is an exploded perspective view of a remote controller according to an embodiment of the present invention.
  • FIG. 7 is a schematic plan view of a remote controller according to an embodiment of the present invention.
  • Figure 8 is a cross-sectional view of the remote controller IV-IV of Figure 7;
  • Figure 9 is a partial cross-sectional view showing the remote controller V-V of Figure 7;
  • Figure 10 is an enlarged schematic view showing a portion of the remote controller VI of Figure 9;
  • Figure 11 is a cross-sectional view showing another portion of the remote controller according to the embodiment of the present invention.
  • FIG. 12 is a perspective view of a first case of a remote controller according to an embodiment of the present invention.
  • FIG. 13 is a perspective view of a second case of a remote controller according to an embodiment of the present invention.
  • FIG. 14 is a perspective view of a remote controller assembly according to an embodiment of the present invention.
  • FIG. 15 is a perspective view of a bracket of a remote controller assembly according to an embodiment of the present invention.
  • FIG. 16 is an exploded perspective view of a bracket of a remote controller assembly according to an embodiment of the present invention.
  • Figure 17 is an exploded perspective view of a switch assembly in accordance with an embodiment of the present invention.
  • the first flexible sensing device 320, the flexible circuit board 321, the first support 330, the support plate 331, the convex shell 332, the card hole 333, the first circuit board 340, the illuminant 342, the board 350, the box body 360, and the mounting The sheet 361, the switch magnetic member 370, the panel 380, the first hook 381, and the cushion 390.
  • Remote controller 100 remote controller assembly 102
  • a second support body 10 a support surface 11, a grip surface 12;
  • a second flexible sensing device 20 an input surface 21, a communication module 22;
  • a second shell 32 a top plate 321, a side wall 322, a second engaging structure 323, a first block 324, a second block 325, a window 326, a remote control magnetic member 33;
  • a second circuit board 40 a connector 50, a display screen 60, a transparent panel 70;
  • the bracket 200 The bracket 200, the base 210, the bottom case 211, the weight 212, the bracket 220, the support rod 221, the bearing portion 222, the fixing member 223, the receiving cavity 2231, the mounting member 224, the protrusion 2241, the through hole 2242, and the mounting groove 2243, a cover sheet 225, a second contact terminal 230, a wire 231, and a bracket magnetic member 240.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” or “second” may include one or more of the described features either explicitly or implicitly.
  • the meaning of "a plurality” is two or more unless specifically and specifically defined otherwise.
  • connection In the description of the present invention, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; may be mechanically connected, may be electrically connected or may communicate with each other; may be directly connected, or may be indirectly connected through an intermediate medium, may be internal communication of two elements or interaction of two elements relationship.
  • Connected, or integrally connected may be mechanically connected, may be electrically connected or may communicate with each other; may be directly connected, or may be indirectly connected through an intermediate medium, may be internal communication of two elements or interaction of two elements relationship.
  • the specific meanings of the above terms in the present invention can be understood on a case-by-case basis.
  • the first feature "on” or “under” the second feature may include direct contact of the first and second features, and may also include first and second features, unless otherwise specifically defined and defined. It is not in direct contact but through additional features between them.
  • the first feature "above”, “above” and “above” the second feature includes the first feature directly above and above the second feature, or merely indicating that the first feature level is higher than the second feature.
  • the first feature “below”, “below” and “below” the second feature includes the first feature directly below and below the second feature, or merely the first feature level being less than the second feature.
  • the switch 300 of the embodiment of the present invention includes a housing 302 , a first contact terminal 310 , and a first flexible sensing device 320 .
  • the first contact terminal 310 extends out of the housing 302 from the housing 302, and the first contact terminal 310 is used to charge the mobile terminal disposed on the switch 300.
  • the first flexible sensing device 320 is disposed on the housing 302.
  • the first flexible sensing device 320 is configured to receive a first user input, and the first user input is used to control a state of the powered device.
  • the switch 300 can charge the mobile terminal by using the first contact terminal 310, and the first flexible sensing device 320 can receive the first user input, thereby controlling the state of the power device, and the function of the switch 300 is diverse.
  • the first flexible sensing device 320 can improve the user's experience.
  • the mobile terminal is a mobile terminal such as a mobile phone or a remote controller 100 below. Electrical equipment such as lamps, fans, electric curtains and other electronic products.
  • the switch 300 can be fixedly mounted on the wall to facilitate user operation.
  • the switch 300 can also be fixed to other locations such as the floor.
  • the first contact terminal 310 has a strip shape, and one end of the first contact terminal 310 is exposed outside the housing 302 . It can be understood that the first contact terminal 310 is made of a metal material.
  • the material of the first contact terminal 310 is copper, so that not only the conductivity of the first contact terminal 310 can be improved, but also the corrosion resistance of the first contact terminal 310 can be improved. performance.
  • the first flexible sensing device 320 is in the form of a sheet, and the first flexible sensing device 320 is, for example, a flexible touch screen or a flexible sensor.
  • the flexible touch screen is, for example, a touch screen such as a capacitive type, a resistive type, or an ultrasonic type.
  • the flexible touch screen includes a substrate layer and a cover layer each having a sheet shape on which a plurality of sensing electrodes are formed to sense a user's touch input, and the cover layer covers the package sensing electrodes to prevent the sensing electrodes from being damaged.
  • the first user input includes a plurality of gesture operations
  • the switch 300 is configured to control the operation of the powered device according to the plurality of gesture operations.
  • the user can perform a gesture operation such as clicking, sliding, etc. on the first flexible sensing device 320.
  • the electrical device is a luminaire
  • the user can control the illuminating or extinguishing of the luminaire when the first flexible sensing device 320 performs a click operation; the user can control when the sliding operation is performed on the first flexible sensing device 320.
  • the brightness of the luminaire is a luminaire
  • the switch 300 can be wired or connected to the powered device, or can be connected wirelessly.
  • the switch 300 is connected to the powered device through a wire; for example, the switch 300 is connected to the powered device via a wireless signal such as a radio frequency signal or a Bluetooth signal. It can be understood that when the switch 300 is wirelessly connected to the powered device, the switch 300 and the powered device each include a corresponding wireless communication module.
  • the housing 302 includes a first support body 330.
  • the first support body 330 includes a support plate 331 and a convex shell 332 protruding from the surface of the support plate 331.
  • the first contact terminal 310 passes through the convex shell 332.
  • the first flexible sensing device 320 is coupled to the convex housing 332.
  • the first support body 330 can provide support for the first contact terminal 310, so that the first contact terminal 310 and the first flexible sensing device 320 are mounted on the first support body 330.
  • the first support body 330 may be made of a non-metal material such as plastic or ceramic.
  • the material of the first support body 330 is polyester.
  • the support plate 331 has a substantially rectangular parallelepiped shape and is convex.
  • the case 332 is located substantially at an intermediate position of the support plate 331.
  • the switch 300 includes a first circuit board 340 disposed on the support board 331.
  • the first circuit board 340 and the convex housing 332 are respectively located on opposite sides of the support board 331, the first contact terminals 310 and the first A flexible sensing device 320 is coupled to the first circuit board 340.
  • the first circuit board 340 can supply power to the first contact terminal 310 and the first flexible sensing device 320.
  • the first circuit board 340 can be connected to the mains, and the first circuit board 340 can step down the mains voltage (for example, 220V) to a low voltage (less than 36V), and rectify the alternating current into direct current, so as to be the first contact terminal 310 and the first
  • the flexible sensing device 320 provides a DC low voltage voltage to ensure that the first contact terminal 310 and the first flexible sensing device 320 can operate normally.
  • the first contact terminal 310 may be soldered to the first circuit board 340 to electrically connect the first contact terminal 310 with the first circuit board 340.
  • the first flexible sensing device 320 is connected to the first circuit board 340 through the flexible circuit board 321 such that the first flexible sensing device 320 can communicate with the first circuit board 340 through the flexible circuit board 321 .
  • the first circuit board 340 is configured as a control element of the switch 300, and the first circuit board 340 can control the operation of the powered device according to signals received by the first flexible sensing device 320.
  • the housing 302 includes a card 350 that is inserted into the convex housing 332.
  • the insertion end 351 of the card 350 is disposed opposite to the first circuit board 340, and the first flexible sensing device 320 is attached to the insertion.
  • On board 350 is a card 350 that is inserted into the convex housing 332.
  • the interposer 350 can secure the first flexible sensing device 320.
  • the inserting plate 350 may be fixed to the convex hull 332 by a fastener such as a screw, or may be fixed to the convex hull 332 by bonding. It can be understood that the size of the inserting plate 350 is larger than the size of the first flexible sensing device 320, so that the edge of the first flexible sensing device 320 can be prevented from causing a failure such as bending.
  • the first flexible sensing device 320 can be fixed to the interposer 350 by a glue bonding. For example, the first flexible sensing device 320 is attached to the interposer 350 by an optical curing adhesive.
  • the first flexible sensing device 320 is attached to the surface of the interposer 350 facing the support plate 331. In this way, when the user switch 300 is operated, the user's finger does not directly touch the first flexible sensing device 320, and the first flexible sensing device 320 is prevented from being touched and damaged, thereby improving the first flexible sensing device. The life of 320.
  • the interposer 350 is a light transmissive plate, and the first circuit board 340 is provided with an illuminant 342.
  • the light emitted by the illuminant 342 can be emitted through the interposer 350 to the outside of the interposer 350.
  • the material of the interposer 350 is, for example, a light transmissive material such as acrylic or glass, and the illuminant 342 is, for example, a light emitting diode (LED).
  • the light emitted by the illuminant 342 can indicate the operational state of the switch 300.
  • the illuminant 342 is in a light-emitting state, and when the switch 300 is stopped, the illuminant 342 is in an extinguished state.
  • the light emitted by the illuminant 342 can be emitted through the board 350 to the outside of the switch 300, thereby providing a better experience for the user.
  • the housing 302 includes a case 360 fixed to the support plate 331.
  • the case 360 and the convex case 332 are respectively located on opposite sides of the support plate 331, and the first circuit board 340 is located in the case 360.
  • the space formed by the support plate 331 is inside.
  • the case 360 can protect components (eg, the first circuit board 340) that are mounted within the housing 302.
  • the casing 360 can be housed in the wall to make the switch 300 and the wall more flat.
  • the casing 360 has a substantially rectangular parallelepiped shape, and a mounting piece 361 is disposed in the casing 360.
  • the casing 360 can be fixed to the supporting plate 331 by fasteners such as screws and the supporting plate 331 and the mounting piece 361.
  • the switch 300 includes a switch magnetic member 370 on one side of the first contact terminal 310, and the switch magnetic member 370 is disposed on an inner surface of the convex case 332.
  • the switch magnetic member 370 can adsorb the mobile terminal, so that the mobile terminal can be stably located on the convex shell 332 when charging, and the first contact terminal 310 is ensured to be in good contact with the mobile terminal.
  • an element that is attracted to the switch magnetic member 370 is disposed in the mobile terminal so that the mobile terminal can be attracted to the convex case 332.
  • the number of the switch magnetic members 370 is two, and the two switch magnetic members 370 are respectively located on opposite sides of the first contact terminals 310. As such, this increases the stability of the switch magnetic member 370 to attract the mobile terminal.
  • the housing 302 includes a panel 380 that is disposed over the support plate 331 and the convex housing 332 extends through the panel 380.
  • the panel 380 can cover the appearance of the support plate 331, making the appearance of the switch 300 more aesthetically pleasing.
  • the color of the panel 380 is, for example, white, red, etc., to meet the user's need for switches 300 of different colors. It can be understood that the length and width of the panel 380 are equal to or slightly larger than the size of the support plate 331 such that the panel 380 can cover the support plate 331.
  • the panel 380 is secured to the support plate 331 by snap fit. Thus, the panel 380 is easily attached and detached from the support plate 331.
  • the panel 380 is provided with a first hook 381.
  • the support plate 331 is provided with a card hole 333 that cooperates with the first hook 381.
  • the panel 380 is fastened through the card hole 333 through the first hook 381. Support plate 331.
  • the surface of the convex shell 332 away from the support plate 331 is provided with a cushion 390 spaced apart from the first contact terminal 310.
  • the material of the cushion 390 is, for example, an elastic material such as rubber, silica gel or foam. In this way, the cushion 390 can reduce the impact force of the mobile terminal colliding with the switch 300, not only reducing the noise generated by the collision between the mobile terminal and the switch 300, but also avoiding damage of the mobile terminal due to collision.
  • the remote controller 100 of the embodiment of the present invention includes a second support body 10 and a second flexible sensing device 20.
  • the second support body 10 includes a support surface 11 on which the second flexible sensing device 20 is attached.
  • the second flexible sensing device 20 includes an input face 21 for receiving a second user input.
  • the second flexible sensing device 20 can receive the second user input, and the remote controller 100 can control the operation of the electrical device according to the second user input, and the operation is simple. Electrical equipment such as lamps, fans, electric curtains and other electronic products.
  • the support surface 11 may be a flat surface or a curved surface.
  • the support surface 11 is a flat surface.
  • the second support body 10 further includes a grip surface 12 opposite to the support surface 11, and the grip surface 12 is curved, so that the user's grip on the remote controller 100 is better.
  • the second flexible sensing device 20 is in the form of a sheet, and the second flexible sensing device 20 is, for example, a flexible touch screen or a pressure sensor.
  • the flexible touch screen is, for example, a touch screen such as a capacitive type, a resistive type, or an ultrasonic type.
  • the flexible touch screen includes a substrate layer and a cover layer each having a sheet shape on which a plurality of sensing electrodes are formed to sense a user's touch input, and the cover layer covers the package sensing electrodes to prevent the sensing electrodes from being damaged.
  • the cover layer includes an input face 21.
  • the second flexible sensing device 20 can be fixed on the support surface 11 by adhesive bonding.
  • the adhesive surface eg, optical glue
  • the second flexible sensing device 20 is then adhered to the support surface 11 by adhesive bonding.
  • the second user input includes different gesture operations
  • the remote controller 100 is configured to control different powered devices to operate according to different gesture operations.
  • the user can perform a gesture operation such as clicking, sliding, etc. on the input surface 21.
  • the electrical device is a luminaire, and when the user performs a touch-and-touch operation on the input surface 21, the luminaire can be controlled to be illuminated or extinguished; when the user performs a sliding touch operation on the input surface 21, the brightness of the luminaire can be controlled.
  • the remote controller 100 can simultaneously control a plurality of powered devices.
  • the remote control 100 can simultaneously control the luminaire and the electric curtain.
  • the second flexible sensing device 20 can display a primary operating interface and a secondary operating interface.
  • the user clicks on the primary operation interface the user can enter the secondary operation interface corresponding to the luminaire or the operation interface corresponding to the electric curtain, and the user can perform gesture operation on the corresponding secondary operation interface to control the luminaire or the electric curtain.
  • the user slides to the right in the secondary operation interface the user can return to the primary operation interface.
  • the remote controller 100 includes a communication module 22 that can implement data transmission between the remote controller 100 and the powered device.
  • the second support 10 is a light transmissive body.
  • the material of the second support 10 is acrylic, so that the second support 10 is easily made.
  • a light source (not shown) may be disposed in the remote controller 100, and the light source may display an operating state of the remote controller 100. For example, when the remote controller 100 is in operation, the light source is in a light-emitting state, and when the remote controller 100 stops operating, the light source is in an extinguished state. The light emitted by the light source can be emitted outside the remote controller 100 through the second support body 10, thereby providing a better experience for the user.
  • the second support 10 is cylindrical, and the remote controller 100 includes a mounting shell 30 and a second circuit board 40.
  • the mounting case 30 is provided at one end of the second support body 10 in the longitudinal direction (the left-right direction of FIG. 7).
  • the second circuit board 40 is housed in the mounting case 30.
  • the second flexible sensing device 20 is electrically connected to the second circuit board 40.
  • the second circuit board 40 can perform data transmission with the second flexible sensing device 20 to control the second flexible sensing device 20 to receive user input.
  • a processor (not shown) is disposed on the second circuit board 40, and the processor is connected to the flexible sensing device 30.
  • the mounting case 30 can protect the second circuit board 40, so that the life of the remote controller 100 can be improved.
  • the length of the second support body 10 is greater than the length of the mounting shell 30, the width of the second support body 10 is smaller than the width of the mounting shell 30, and the second support body 10 is inserted into the mounting shell 30.
  • the second flexible sensing device 20 is coupled to the second circuit board 40 by a connector 50.
  • the connection manner of the second flexible sensing device 20 and the second circuit board 40 is simple, which can improve the assembly efficiency of the remote controller 100.
  • the second circuit board 40 may be provided with a connecting base.
  • One end of the connector 50 may be connected to the second flexible sensing device 20 by bonding, and the other end may be inserted into the connecting base. The connector 50 is thereby connected to the second flexible sensing device 20 and the second circuit board 40.
  • the mounting shell 30 includes a first shell 31 and a second shell 32.
  • the first case 31 is fixedly coupled to the second support body 10.
  • the second case 32 is mated to the first case 31.
  • the first case 31 and the second case 32 are detachably connected, and the second flexible sensing device 20 extends from the second case 32 into the mounting case 30 to be connected to the second circuit board 40.
  • the mounting case 30 is matedly coupled by the first case 31 and the second case 32, so that the mounting case 30 is easily formed.
  • the first shell 31 and the second support body 10 may be connected by fasteners (not shown) such as screws, and the fasteners are located in the mounting shell 30, so that the fasteners are prevented from being exposed outside the mounting shell 30, so that the remote controller 100 The appearance is more beautiful.
  • first shell 31 and the second shell 32 are of a separate structure. In the present embodiment, the first shell 31 is located below the second shell 32.
  • the first shell 31 is formed with a first engaging structure 311 (FIG. 12), and the second shell 32 includes a top plate 321 and side walls 322.
  • the side wall 322 extends from the edge of the top plate 321 toward the first shell 31.
  • the side wall 322 is formed with a second engaging structure 323 ( FIG. 13 ).
  • the first engaging structure 311 is engaged with the second engaging structure 323 to detachably connect the first shell 31 and the second shell 32 .
  • first shell 31 and the second shell 32 are connected by the engaging structure, so that the first shell 31 and the second shell 32 need not be connected by fasteners such as screws, and the first shell 31 and the second shell 32 are easily disassembled and assembled, and
  • the appearance of the mounting case 30 has no screw holes, making the remote controller 100 more aesthetically pleasing.
  • the first engaging structure 311 includes a resilient second hook 312 and a card slot 313 spaced from the second hook 312.
  • the second hook 312 includes a first limiting surface 314, and the card slot 313 includes a second limiting surface 315 and a third limiting surface 316 connected to the second limiting surface 315.
  • the first limiting surface 314 and the second limiting surface The faces 315 are opposite in orientation, and the second engaging structure 323 includes a first block 324 and a second block 325 that are spaced apart.
  • the first block 324 abuts against the first limiting surface 314 to restrict movement of the second housing 32 relative to the first housing 31 along the length of the support 10.
  • the second block 325 abuts against the second limiting surface 315 to restrict the second housing 32 from moving relative to the first housing 31 along the length of the second supporting body 10; the second blocking block 325 abuts against the third limiting surface 316
  • the second casing 32 is restricted from moving relative to the first casing 31 in the thickness direction of the support 10 as shown in FIG.
  • connection structure of the first shell 31 and the second shell 32 is simple, and the disassembly of the first shell 31 and the second shell 32 is simple and convenient.
  • first limiting surface 314 faces the left side
  • second limiting surface 315 faces the right side
  • third limiting surface 316 faces downward.
  • the first shell 31 and the second shell 32 are arranged in a wrong manner, as shown in FIG.
  • the shell 32 is located to the right.
  • the second cover 32 is forced to move to the left, when the first block 324 abuts against the second hook 312, the second hook 312 is elastically deformed, so that the first block 324 is located on the left side of the first limiting surface 314.
  • the first blocking block 324 abuts against the first limiting surface 314, so that the second housing 32 can be prevented from moving to the right; at this time, the second clamping block 325 is located in the card slot 313, and the second clamping block 325 is abutted against the second limit.
  • the plane 315 prevents the second casing 32 from moving to the left; the second block 325 abuts against the third limiting surface 316, so that the second casing 32 can be prevented from moving upward, as shown in FIGS. 9 and 10.
  • first shell 31 abuts against the second shell 32, so that the second shell 32 can be prevented from moving downward
  • side wall 322 abuts against the second shell 32, so that the second shell 32 can be prevented from moving left and right.
  • the second shell 32 When the first shell 31 and the second shell 32 are detached, the second shell 32 is pushed to the right by the force, and the first latch 324 abuts against the second hook 312 to elastically deform the second hook 312, so that the first card is caused.
  • the block 324 is disengaged from the second hook 312.
  • the second block 325 is located outside the card slot 313, and the second case 32 can be removed from the first case 31.
  • the first housing 31 includes a bottom plate 317 and side plates 318 .
  • the bottom plate 317 is disposed opposite to the top plate 321 .
  • the bottom plate 317 is fixedly coupled to the second support body 10, and the second circuit board 40 is mounted on the bottom plate 317.
  • the side plate 318 extends from the end of the bottom plate 317 away from the second support body 10 toward the top plate 321 .
  • the second hook 312 extends from the side plate 318 to the second support body 10, and the card slot 313 is formed on the bottom plate 317.
  • the card slot 313 is formed with an opening 3131 facing away from the second support body 10.
  • the second circuit board 40 can be fixed to the bottom plate 317 by a fastener such as a screw.
  • the side plate 318 is substantially curved, the second hook 312 is located at the end of the side plate 318 in the arc length direction, and the number of the second hooks 312 is two, so that the first case 31 and the second case 32 are more firmly connected. It can be understood that the second block 325 is snapped into the card slot 313 from the opening 3131.
  • the remote control 100 includes a display screen 60 that is coupled to the second circuit board 40.
  • the display screen 60 is received in the mounting case 30, the display screen 60 is fixed on the second housing 32, and the second housing 32 is formed with a window 326.
  • the display screen 60 is disposed corresponding to the window 326.
  • the second flexible sensing device 20 when the second flexible sensing device 20 is a flexible pressure sensor, the second flexible sensing device 20 has no display function.
  • the display screen 60 can display the electrical device.
  • Working status For example, display 60 can display parameters of whether the powered device is on and the operation of the powered device.
  • the display screen 60 can be fixed to the second case 32 or the circuit board 40 by fasteners such as screws.
  • the user can view the content displayed on the display screen 60 through the window 326.
  • the shape of the window 326 is substantially the same as the shape of the display screen 60.
  • the window 326 has a rectangular shape.
  • the remote control 100 includes a transparent panel 70 between the display screen 60 and the window 326 that covers the display screen 60.
  • the transparent panel 70 can prevent impurities such as dust from falling onto the display screen 60, so that the content displayed on the display screen 60 is more clear.
  • the remote controller 100 includes a battery 41 disposed on the second circuit board 40, and the battery 41 houses Inside the mounting housing 30.
  • the battery 41 can supply power to the electronic components such as the display screen 60 and the second flexible sensing device 20 to ensure that the remote controller 100 operates normally.
  • the battery 41 can be a rechargeable battery such as a lithium battery, which can increase the amount of power stored in the battery 41 and increase the time during which the remote controller 100 is continuously used.
  • remote control 100 includes a button 80 and a button 81.
  • the button 80 is mounted on the second circuit board 40.
  • the button 81 is threaded through the mounting housing 30 and abuts against the button 80, as shown in Figures 6 and 8.
  • the button 80 can control whether the remote controller 100 is operating. For example, when the button 80 is pressed by the button 81, the remote controller 100 is turned on, and when the button 80 is pressed again, the remote controller 100 is turned off. Specifically, in the present embodiment, the button 81 passes through the side wall 322 to abut against the button 80.
  • the remote control 100 includes a charging terminal 82 that is coupled to the battery 41 that is exposed outside of the mounting housing 30.
  • the charging terminal 82 is exposed outside the mounting case 30 through the first case 31.
  • the charging terminal 82 is in contact with the second circuit board 40 and is connected to the battery 41 through the second circuit board 40. This allows the charging terminal 82 to charge the battery 41.
  • the remote controller 100 includes a garnish 90 attached to one end of the mounting shell 30 away from the second support body 10, and the mounting shell 30 is sandwiched between the support body 10 and the garnish 90, as shown in the figure. 5 and Figure 6.
  • the remote controller 100 is more aesthetically pleasing.
  • the material of the garnish 90 is the same as the material of the second support 10.
  • the material of the garnish 90 and the material of the second support 10 are both acrylic.
  • the length of the support 10 is greater than the length of the mounting housing 30 for holding, and the mounting housing 30 is for receiving other electronics of the remote control 100 other than the sensing device 20.
  • the mounting case 30 houses an electronic device such as the circuit board 40 described above.
  • a remote controller assembly 102 of an embodiment of the present invention includes a cradle 200 and the remote controller 100 of any of the above embodiments.
  • the remote controller 100 is placed on the cradle 200.
  • the second flexible sensing device 20 can receive a second user input, and the remote controller 100 can control the operation of the electrical device according to the second user input, and the operation is simple.
  • the cradle 200 can facilitate the user to place the remote controller 100.
  • the cradle 200 includes a base 210 and a bracket 220 extending upward from the base 210.
  • the remote controller 100 is supported on the base 210 and abuts against the bracket 220.
  • the base 210 and the bracket 220 collectively carry the remote control 100 such that the remote control 100 is placed more securely from the cradle 200.
  • the second support body 10 is supported on the base 210, and the mounting shell 30 abuts against the bracket 220. Further, the first case 31 abuts against the bracket 220.
  • the base 210 includes a bottom case 211 and a weight 212, and the weight 212 is received in the bottom case 211.
  • the weight 212 can make the center of gravity of the bracket 200 lower and the bracket 200 more stable.
  • the bracket 220 extends obliquely upward from the base 210.
  • the bracket 220 includes a support bar 221 and a bearing portion 222.
  • the support rod 221 is coupled to the base 210.
  • the bearing portion 222 is disposed at one end of the support rod 221 away from the base 210.
  • the bearing portion 222 is provided with a second contact terminal 230 for mating connection with the charging terminal 82.
  • the second contact terminal 230 can charge the battery 41 through the charging terminal 82.
  • a wire 231 is disposed in the bracket 220, and one end of the wire 231 is connected to the second contact terminal 230 and extends to the base 210.
  • the wire 231 can be connected to the circuit after the step-down, so that the second contact terminal 230 can provide a lower charging voltage for the remote controller 100, preventing the user from accidentally touching the second contact terminal 230 to cause an electric shock accident.
  • the abutment portion 222 includes a fastener 223, a mounting member 224, and a cover sheet 225.
  • the fixing member 223 is fixedly coupled to the support rod 221.
  • the fixing member 223 is formed with a receiving cavity 2231.
  • the mounting member 224 is disposed on the fixing member 223, and the mounting member 224 is received in the receiving cavity 2231.
  • the cover sheet 225 is sleeved on the mounting member 224, and the second contact terminal 230 is fixed on the fixing member 223 and passes through the mounting member 224.
  • the mounting member 224 can be mounted on the fixing member 223 by a fastener such as a screw.
  • the mounting member 224 defines a protrusion 2241.
  • the protrusion 2241 defines a through hole 2242 through which the charging terminal 82 passes.
  • the cover piece 225 is sleeved on the cover 225.
  • the protrusion 2241 is such that the second contact terminal 230 can be exposed outside the cover sheet 225 to be connected to the charging terminal 82.
  • the mounting housing 30 is provided with a remote control magnetic member 33.
  • the mounting member 224 is provided with a bracket magnetic member 240 that is attracted to the remote control magnetic member 33, and the remote control magnetic member 33 and the bracket magnetic member. 240 corresponds to the setting.
  • the remote controller 100 is more reliable against the bracket 220, which prevents the charging terminal 82 from being in poor contact with the second contact terminal 230 and unable to charge the remote controller 100.
  • the number of the bracket magnetic members 240 is two
  • the second contact terminal 230 is located between the two bracket magnetic members 240
  • the mounting member 224 is formed with two mounting slots 2243, each of which is mounted on the second magnetic member 240. Corresponding to the mounting slot 2243.
  • the support rod 221 is provided with a groove 2211 facing the surface of the remote controller 100, and a decorative strip 226 covering the groove is attached.
  • the groove 2211 is used for the wire connecting the contact terminal 230 to enter the base 210 through the support rod 221, and is connected to the power interface on the base 210.
  • the trim strip 226 may be fabricated from a soft material, such as rubber, to avoid scratching the surface of the remote control 100 when the remote control 100 is placed against the bracket 220.
  • the switch assembly 400 of the embodiment of the present invention includes a switch 300 and a remote controller 100.
  • the switch 300 includes a housing 302, a first contact terminal 310, and a first flexible sensing device 320.
  • the first contact terminal 310 extends out of the housing 302 from the inside of the housing 302.
  • the first flexible sensing device 320 is disposed on the housing 302.
  • the first flexible sensing device 320 is configured to receive a first user input, and the first user input is used to control a state of the powered device.
  • the remote controller 100 is detachably disposed on the housing 302, and the remote controller 100 includes a charging terminal 230 that is mated with the first contact terminal 310.
  • the remote controller 100 is attached to the housing 302.
  • the switch 300 can charge the remote controller 100 with the first contact terminal 310, and at the same time, the first flexible sensing device 320 can receive user input, thereby controlling the state of the powered device.
  • the function of the switch 300 is diversified, and the first flexible sensing device 320 can improve the user's experience.
  • the housing 302 includes a first support body 330.
  • the first support body 330 includes a support plate 331 and a convex shell 332 protruding from the surface of the support plate 331.
  • the first contact terminal 310 passes through the convex shell 332.
  • the first flexible sensing device 320 is coupled to the convex housing 332.
  • the remote controller 100 is detachably disposed on the convex housing 332.
  • the remote controller 100 includes a second support body 10 and a second flexible sensing device 20, and the second support body 10 covers the first flexible sensing device 320, and the second support body 10 A support surface 11 is included, the support surface 11 faces away from the first flexible sensing device 320; the second flexible sensing device 20 is attached to the support surface 11, and the second flexible sensing device 20 includes an input surface 21 for the input surface 21 A second user input is received, the second user input being used to control the state of the powered device.
  • the remote controller 100 when the remote controller 100 is set to be charged on the switch 300, since the remote controller 100 blocks the first flexible sensing device 320, at this time, the user can control the state of the powered device by using the second flexible sensing device 20; When the 100 is removed from the switch 300, the user can control the state of the powered device using the first flexible sensing device 320 or the second flexible sensing device 20.
  • the control module (such as a processor) integrated on the circuit board 340 of the switch 300 detects that the charging terminal 82 is in contact with the first contact terminal 310
  • the first flexible sensing device 320 of the switch 300 can be turned off, leaving only the first A charging function of the contact terminal 310. Therefore, it is possible to prevent the remote control device 100 from inadvertently touching the first flexible sensing device 320 when it is hung on the switch 300, thereby causing an erroneous operation.
  • the second support body 10 has an elongated shape
  • the remote controller 100 includes a mounting shell 30 disposed at one end of the second support body 10 in the longitudinal direction and a second circuit board 40 received in the mounting shell 30.
  • the second flexible sensing device 20 is connected to the second circuit board 40, and the charging terminal 82 is exposed outside the mounting case 30, and the remote controller 100 is detachably disposed on the convex case 332 through the mounting case 30.
  • the remote controller 100 is hooked on the switch 300 through one end thereof, so that the remote controller 100 is relatively stable. It can be understood that the remote control magnetic member 33 is attracted to the switch magnetic member 370, so that the remote controller 100 can be further stably anchored on the switch 300.
  • the same or similar content portions of the switch 300 of the present invention and the remote controller 100 can be mutually explained.
  • the explanation of the second flexible sensing device 20 is applicable to the explanation of the first flexible sensing device 320, the first flexibility.
  • the explanation of the sensing device 320 is applicable to the explanation of the second flexible sensing device 20 and will not be described herein.

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Abstract

一种开关(300)及开关组件(400),开关(300)包括壳体(302)、接触端子(310)和柔性传感装置(320)。接触端子(310)自壳体(302)内伸出壳体(302)外。接触端子(310)用于向设置在开关(300)上的移动终端充电。柔性传感装置(320)设置于壳体(302)。柔性传感装置(320)用于接收用户输入,用户输入用以控制用电设备的状态。

Description

开关及开关组件 技术领域
本发明涉及电子设备领域,尤其涉及一种开关及开关组件。
背景技术
在相关技术中,开关安装在墙体上,用户通过按压开关的物理按键以控制灯具等用电设备开启及关闭,开关的功能单一,且用户体验度低。
发明内容
本发明提供一种开关及一种开关组件。
本发明实施方式的开关包括:壳体;
自所述壳体内伸出所述壳体外的接触端子;和
设置于所述壳体上的柔性传感装置,所述柔性传感装置用于接收用户输入,所述用户输入用以控制用电设备的状态。
上述开关中,开关可以利用接触端子向移动终端充电,柔性传感装置可以接收用户输入,从而控制用电设备的状态,开关的功能多元化,柔性传感装置可以提高用户的体验度。
本发明实施方式的开关组件包括开关和遥控器,所述开关包括:
壳体;
自所述壳体内伸出所述壳体外的接触端子;和
设置于所述壳体上的第一柔性传感装置,所述第一柔性传感装置用于接收第一用户输入,所述第一用户输入用以控制用电设备的状态;
所述遥控器挂靠在所述壳体上,所述遥控器包括与所述接触端子配合连接的充电端子而通过所述开关充电。
上述开关组件中,开关可以利用接触端子向遥控器充电,同时,第一柔性传感装置可以接收用户输入,从而控制用电设备的状态。开关的功能多元化,第一柔性传感装置可以提高用户的体验度。
本发明的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施方式的描述中将变得明显和容易理解,其中:
图1是本发明实施方式的开关的立体示意图;
图2是本发明实施方式的开关的分解示意图;
图3是本发明实施方式的开关的另一个视角的分解示意图;
图4是本发明实施方式的开关的部分结构示意图;
图5是本发明实施方式的遥控器的立体示意图;
图6是本发明实施方式的遥控器的分解示意图;
图7是本发明实施方式的遥控器的平面示意图;
图8是图7的遥控器IV-IV向的剖面示意图;
图9是图7的遥控器V-V向的部分剖面示意图;
图10是图9的遥控器VI部分的放大示意图;
图11是本发明实施方式的遥控器的另一部分剖面示意图;
图12是本发明实施方式的遥控器的第一壳的立体示意图;
图13是本发明实施方式的遥控器的第二壳的立体示意图;
图14是本发明实施方式的遥控器组件的立体示意图;
图15是本发明实施方式的遥控器组件的托架的立体示意图;
图16是本发明实施方式的遥控器组件的托架的分解示意图;
图17是本发明实施方式的开关组件的分解示意图。
主要元件符号说明:
开关300、壳体302、第一接触端子310;
第一柔性传感装置320、柔性电路板321、第一支撑体330、支撑板331、凸壳332、卡孔333、第一电路板340、发光体342、插板350、盒体360、安装片361、开关磁性件370、面板380、第一卡勾381、缓冲垫390。
遥控器100、遥控器组件102;
第二支撑体10、支撑面11、握持面12;
第二柔性传感装置20、输入面21、通信模块22;
安装壳30、第一壳31、第一卡合结构311、第二卡勾312、卡槽313、开口3131、第一限位面314、第二限位面315、第三限位面316、底板317、侧板318;
第二壳32、顶板321、侧壁322、第二卡合结构323、第一卡块324、第二卡块325、窗口326、遥控器磁性件33;
第二电路板40、连接器50、显示屏60、透明面板70;
按键80、按钮81、充电端子82、装饰件90;
托架200、底座210、底壳211、配重块212、支架220、支撑杆221、承靠部222、固定件223、收容腔2231、安装件224、凸起2241、过孔2242、安装槽2243、覆盖片225、第二接触端子230、导线231、托架磁性件240。
具体实施方式
下面详细描述本发明的实施方式,所述实施方式的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施方式是示例性的,仅用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个所述特征。在本发明的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接或可以相互通讯;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
在本发明中,除非另有明确的规定和限定,第一特征在第二特征之“上”或之“下”可以包括第一和第二特征直接接触,也可以包括第一和第二特征不是直接接触而是通过它们之间的另外的特征接触。而且,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”包括第一特征在第二特征正下方和斜下方,或仅仅表示第一特征水平高度小于第二特征。
下文的公开提供了许多不同的实施方式或例子用来实现本发明的不同结构。为了简化本发明的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本发明。此外,本发明可以在不同例子中重复参考数字和/或参考字母,这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施方式和/或设置之间的关系。此外,本发明提供了的各种特定的工艺和材料的例子,但是本领域普通技术人员可以意识到其 他工艺的应用和/或其他材料的使用。
请参阅图1,本发明实施方式的开关300包括壳体302、第一接触端子310和第一柔性传感装置320。第一接触端子310自壳体302内伸出壳体302外,第一接触端子310用于向设置在开关300上的移动终端充电。第一柔性传感装置320设置于壳体302。第一柔性传感装置320用于接收第一用户输入,第一用户输入用以控制用电设备的状态。
本发明实施方式的开关300中,开关300可以利用第一接触端子310向移动终端充电,第一柔性传感装置320可以接收第一用户输入,从而控制用电设备的状态,开关300的功能多元化,第一柔性传感装置320可以提高用户的体验度。移动终端例如手机、下文的遥控器100等移动终端。用电设备例如为灯具、风扇、电动窗帘等电子产品。
具体地,开关300可以固定安装在墙体上以方便用户操作。当然,开关300也可以固定在地板等其他位置。
请参阅图2-图4,第一接触端子310呈条状,第一接触端子310一端露出于壳体302外。可以理解,第一接触端子310由金属材质制成,例如,第一接触端子310的材质为铜,这样不仅可以提高第一接触端子310的导电率,还可以提高第一接触端子310的防腐蚀性能。
第一柔性传感装置320呈片状,第一柔性传感装置320例如为柔性触摸屏或柔性传感器。柔性触摸屏例如为电容式、电阻式、超声波式等触摸屏。柔性触摸屏包括均呈片状的衬底层和覆盖层,衬底层上形成有多个感应电极以感应用户的触摸输入,覆盖层覆盖封装感应电极以避免感应电极被损坏。
第一用户输入包括多种的手势操作,开关300用于根据多种的手势操作控制用电设备运行。例如,用户可以在第一柔性传感装置320上进行点击、滑移等手势操作。
在一个例子中,用电设备为灯具,用户在第一柔性传感装置320进行点击操作时,可以控制灯具发光或熄灭;用户在第一柔性传感装置320上进行滑移操作时,可以控制灯具的亮度。
开关300与用电设备可以有线连接,也可以无线连接。例如,开关300与用电设备通过电线连接;又如,开关300与用电设备通过射频信号、蓝牙信号等无线信号连接。可以理解,当开关300与用电设备无线连接时,开关300及用电设备均包括相应的无线通信模块。
在某些实施方式中,壳体302包括第一支撑体330,第一支撑体330包括支撑板331和凸设在支撑板331表面的凸壳332,第一接触端子310穿设凸壳332,第一柔性传感装置320连接凸壳332。
如此,第一支撑体330可以为第一接触端子310提供支撑,方便第一接触端子310及第一柔性传感装置320安装在第一支撑体330上。具体地,第一支撑体330可以由塑料、陶瓷等非金属材料制成,例如,第一支撑体330的材料为聚酯。支撑板331大致呈长方体形,凸 壳332大致位于支撑板331的中间位置。
在某些实施方式中,开关300包括设置在支撑板331上的第一电路板340,第一电路板340与凸壳332分别位于支撑板331相背的两侧,第一接触端子310和第一柔性传感装置320均连接第一电路板340。
如此,第一电路板340可以为第一接触端子310和第一柔性传感装置320供电。第一电路板340可以连接市电,第一电路板340可以把市电电压(例如220V)降压为低电压(小于36V),并将交流电整流为直流电,以为第一接触端子310和第一柔性传感装置320提供直流低压的电压,保证第一接触端子310和第一柔性传感装置320可以正常的工作。第一接触端子310可以通过焊接的方式焊接在第一电路板340上,从而实现第一接触端子310与第一电路板340电连接。较佳地,第一柔性传感装置320通过柔性电路板321与第一电路板340连接,使得第一柔性传感装置320可以通过柔性电路板321与第一电路板340进行通信。
第一电路板340被配置为开关300的控制元件,第一电路板340可以根据第一柔性传感装置320接收的信号控制用电设备运行。
在某些实施方式中,壳体302包括插设在凸壳332上的插板350,插板350的插入端351与第一电路板340相对设置,第一柔性传感装置320贴合在插板350上。
如此,插板350可以固定第一柔性传感装置320。插板350可以通过螺钉等紧固件固定在凸壳332上,也可以通过粘接的方式固定在凸壳332上。可以理解,插板350的尺寸大于第一柔性传感装置320的尺寸,这样可以防止第一柔性传感装置320的边缘产生折弯等故障。第一柔性传感装置320可以通过胶体贴合固定在插板350上,例如,第一柔性传感装置320通过光学固化胶贴合在插板350上。
较佳地,第一柔性传感装置320贴合在插板350面对支撑板331的表面上。如此,在用户开关300上进行操作时,用户的手指不会直接地触碰第一柔性传感装置320,避免第一柔性传感装置320被触碰而损坏,提高了第一柔性传感装置320的寿命。
在某些实施方式中,插板350为透光板,第一电路板340上设置有发光体342,发光体342发出的光线能够透过插板350出射至插板350外。插板350的材料例如为亚克力、玻璃等透光材料,发光体342例如为发光二极管(LED)。
如此,发光体342发出的光线可以指示开关300的工作状态。例如,当开关300工作时,发光体342处于发光状态,当开关300停止工作时,发光体342处于熄灭状态。发光体342发出的光线可以透过插板350出射至开关300外,从而为用户提供更佳的体验。
在某些实施方式中,壳体302包括固定在支撑板331上的盒体360,盒体360与凸壳332分别位于支撑板331相背的两侧,第一电路板340位于盒体360与支撑板331形成的空间内。
如此,盒体360可以保护安装在壳体302内的元件(例如第一电路板340)。在安装开关 300的时候,盒体360可以收容于墙体内,以使开关300与墙面更加平整。盒体360大致呈长方体形,盒体360内设置安装片361,盒体360可以通过螺钉等紧固件依次穿过支撑板331及安装片361而固定在支撑板331上。
在某些实施方式中,开关300包括位于第一接触端子310一侧的开关磁性件370,开关磁性件370设置在凸壳332的内表面。如此,开关磁性件370可以吸附移动终端,使得移动终端在充电时可以稳定地位于凸壳332上,保证第一接触端子310与移动终端接触良好。例如,移动终端内设置有与开关磁性件370相吸的元件,从而使得移动终端可以吸附在凸壳332上。
进一步地,开关磁性件370的数量为两个,两个开关磁性件370分别位于第一接触端子310相背的两侧。如此,这样提高了开关磁性件370吸引移动终端的稳定性。
在某些实施方式中,壳体302包括覆盖设置在支撑板331上的面板380,凸壳332穿设面板380。如此,面板380可以遮盖支撑板331的外观,使得开关300的外观更加美观。面板380的颜色例如为白色、红色等,以满足用户对不同颜色的开关300需求。可以理解,面板380的长度及宽度等于或略大于支撑板331的尺寸,从而使得面板380可以覆盖支撑板331。
在某些实施方式中,面板380通过扣合的方式固定在支撑板331上。如此,面板380容易从支撑板331上安装及拆卸。本实施方式中,面板380上设置有第一卡勾381,支撑板331上设置有与第一卡勾381配合的卡孔333,面板380通过第一卡勾381穿过卡孔333扣合在支撑板331上。
在某些实施方式中,凸壳332远离支撑板331的表面设置有缓冲垫390,缓冲垫390与第一接触端子310间隔设置。缓冲垫390的材料例如为橡胶、硅胶或泡棉等弹性材料。如此,缓冲垫390可以降低移动终端与开关300碰撞的冲击力,不仅降低了移动终端与开关300碰撞产生的噪音,还可以避免移动终端因碰撞而损坏。
请参阅图5,本发明实施方式的遥控器100包括第二支撑体10和第二柔性传感装置20。第二支撑体10包括支撑面11,第二柔性传感装置20贴合在支撑面11上。第二柔性传感装置20包括输入面21,输入面21用于接收第二用户输入。
上述遥控器100中,第二柔性传感装置20可以接收第二用户输入,遥控器100可以根据第二用户输入控制用电设备运行,操作简单。用电设备例如为灯具、风扇、电动窗帘等电子产品。
具体地,支撑面11可以为平面也可以为曲面。本实施方式中,支撑面11为平面。第二支撑体10还包括与支撑面11相背的握持面12,握持面12为曲面,这样使得用户握持遥控器100的手感较佳。
第二柔性传感装置20呈片状,第二柔性传感装置20例如为柔性触摸屏或压力传感器。柔性触摸屏例如为电容式、电阻式、超声波式等触摸屏。柔性触摸屏包括均呈片状的衬底层和覆盖层,衬底层上形成有多个感应电极以感应用户的触摸输入,覆盖层覆盖封装感应电极以避免感应电极被损坏。覆盖层包括输入面21。
第二柔性传感装置20可以通过粘胶贴合固定在支撑面11上,例如,在安装第二柔性传感装置20时,可以先在支撑面11上涂上粘胶(例如光学胶),然后将第二柔性传感装置20通过粘胶粘接贴合在支撑面11上。
第二用户输入包括不同的手势操作,遥控器100用于根据不同的手势操作控制不同的用电设备运行。例如,用户可以在输入面21上进行点击、滑移等手势操作。
在一个例子中,用电设备为灯具,用户在输入面21进行点击触摸操作时,可以控制灯具发光或熄灭;用户在输入面21上进行滑移触摸操作时,可以控制灯具的亮度。
需要指出的是,遥控器100可以同时控制多个用电设备。例如,遥控器100可以同时控制灯具和电动窗帘。在一个例子中,第二柔性传感装置20可以显示初级操作界面及二级操作界面。用户在初级操作界面点击时,可以进入与灯具对应的二级操作界面或与电动窗帘对应的操作界面,用户可以在相应的二级操作界面进行手势操作从而可以控制灯具或电动窗帘。用户在二级操作界面向右滑移时,可以返回到初级操作界面。
请参阅图6,可以理解,遥控器100包括通信模块22,通信模块22可以实现遥控器100与用电设备之间的数据传输。
在某些实施方式中,第二支撑体10为透光体。例如,第二支撑体10的材料为亚克力,这样使得第二支撑体10容易制成。具体地,遥控器100内可以设置有光源(图未示),光源可以显示遥控器100的工作状态。例如,当遥控器100工作时,光源处于发光状态,当遥控器100停止工作时,光源处于熄灭状态。光源发出的光线可以透过第二支撑体10出射至遥控器100外,从而为用户提供更佳的体验。
请参阅图6-图8,在某些实施方式中,第二支撑体10呈柱状,遥控器100包括安装壳30和第二电路板40。安装壳30设置在第二支撑体10长度方向(如图7的左右方向)的一端。第二电路板40收容于安装壳30内。第二柔性传感装置20与第二电路板40电连接。
如此,第二电路板40可以与第二柔性传感装置20进行数据传输,从而控制第二柔性传感装置20接收用户的输入。进一步地,第二电路板40上设置有处理器(图未示),处理器与柔性传感装置30连接。安装壳30可以保护第二电路板40,从而可以提高遥控器100的寿命。
本实施方式中,第二支撑体10的长度大于安装壳30的长度,第二支撑体10的宽度小于安装壳30的宽度,第二支撑体10插入安装壳30中。
在某些实施方式中,第二柔性传感装置20通过连接器50与第二电路板40连接。
如此,第二柔性传感装置20与第二电路板40的连接方式简单,这样可以提高遥控器100的组装效率。具体地,第二电路板40上可以设置有连接座,连接器50的一端可以通过绑定(bonding)的方式与第二柔性传感装置20连接,另一端可以通过插设在连接座上,从而使得连接器50连接第二柔性传感装置20及第二电路板40。
在某些实施方式中,安装壳30包括第一壳31和第二壳32。第一壳31与第二支撑体10固定连接。第二壳32与第一壳31配合连接。第一壳31与第二壳32可拆卸地连接,第二柔性传感装置20自第二壳32伸入安装壳30内以与第二电路板40连接。
如此,安装壳30通过第一壳31和第二壳32配合连接,使得安装壳30容易制造形成。第一壳31与第二支撑体10可以通过螺钉等紧固件(图未示)连接,紧固件位于安装壳30内,这样可以避免紧固件露出在安装壳30外,使得遥控器100的外观更加美观。
需要指出的是,第一壳31与第二壳32为分体结构。本实施方式中,第一壳31位于第二壳32下方。
请参阅图9-图13,在某些实施方式中,第一壳31形成有第一卡合结构311(如图12),第二壳32包括顶板321和侧壁322。侧壁322自顶板321的边缘向第一壳31延伸。侧壁322形成有第二卡合结构323(如图13),第一卡合结构311与第二卡合结构323卡合连接以使第一壳31与第二壳32可拆卸地连接。
如此,第一壳31与第二壳32通过卡合结构连接,使得第一壳31与第二壳32无需通过螺钉等紧固件连接,第一壳31与第二壳32拆装方便,并且安装壳30的外观无螺孔,使得遥控器100更加美观。
在某些实施方式中,第一卡合结构311包括弹性的第二卡勾312和与第二卡勾312间隔设置的卡槽313。第二卡勾312包括第一限位面314,卡槽313包括第二限位面315和连接第二限位面315的第三限位面316,第一限位面314与第二限位面315的朝向相反,第二卡合结构323包括间隔设置的第一卡块324和第二卡块325。
第一卡块324抵靠第一限位面314以限制第二壳32沿支撑体10的长度方向相对于第一壳31运动。第二卡块325抵靠第二限位面315,以限制第二壳32沿第二支撑体10的长度方向相对于第一壳31运动;第二卡块325抵靠第三限位面316以限制第二壳32沿支撑体10的厚度方向相对于第一壳31运动,如图10所示。
如此,第一壳31与第二壳32的连接结构简单,第一壳31与第二壳32拆卸简单方便。具体地,如图9的方位所示,第一限位面314朝向左方,第二限位面315朝向右方,第三限位面316朝向下方。
第一壳31与第二壳32组装前,第一壳31与第二壳32相错排布,如图11所示,第二 壳32位于偏右的位置。当用力推动第二壳32向左移动,第一卡块324抵靠第二卡勾312时,第二卡勾312产生弹性变形,使得第一卡块324位于第一限位面314的左侧,第一卡块324抵靠第一限位面314,从而可以防止第二壳32向右移动;此时,第二卡块325位于卡槽313中,第二卡块325抵靠第二限位面315,从而可以防止第二壳32向左移动;第二卡块325抵靠第三限位面316,从而可以防止第二壳32向上移动,如图9及图10所示。
可以理解,第一壳31抵靠在第二壳32上,从而可以防止第二壳32向下移动,侧壁322抵靠在第二壳32上,从而可以防止第二壳32左右移动。
第一壳31与第二壳32拆卸时,用力向右推动第二壳32向右移动,第一卡块324抵靠第二卡勾312使得第二卡勾312产生弹性变形,致使第一卡块324与第二卡勾312脱离配合,此时,第二卡块325位于卡槽313外,第二壳32从而可以第一壳31上取下。
请结合图6及图12,在某些实施方式中,第一壳31包括底板317和侧板318。底板317与顶板321相对设置。底板317与第二支撑体10固定连接,第二电路板40安装在底板317上。侧板318自底板317远离第二支撑体10的一端向顶板321延伸。第二卡勾312自侧板318向第二支撑体10延伸,卡槽313形成于底板317,卡槽313形成有背向第二支撑体10的开口3131。
具体地,第二电路板40可通过螺钉等紧固件固定在底板317上。侧板318大致呈弧形,第二卡勾312位于侧板318弧长方向的端部,第二卡勾312的数量为两个,这样使得第一壳31与第二壳32连接更加牢固。可以理解,第二卡块325从开口3131卡入卡槽313中。
请再次参阅图6,在某些实施方式中,遥控器100包括显示屏60,显示屏60连接第二电路板40的。显示屏60收容于安装壳30内,显示屏60固定在第二壳32上,第二壳32形成有窗口326,显示屏60与窗口326对应设置。
如此,当第二柔性传感装置20为柔性压力传感器时,第二柔性传感装置20没有显示功能,当用户在第二柔性传感装置20上操作后,显示屏60可以显示用电设备的工作状态。例如,显示屏60可以显示用电设备是否开启及用电设备的运行的参数。显示屏60可以通过螺钉等紧固件固定在第二壳32或电路板40上。
用户可以通过窗口326观看到显示屏60显示的内容,窗口326的形状与显示屏60的形状大致相同,本实施方式中,窗口326呈矩形。
在某些实施方式中,遥控器100包括位于显示屏60与窗口326之间的透明面板70,透明面板70覆盖显示屏60。
如此,透明面板70可以防止灰尘等杂质落到显示屏60上,使得显示屏60显示的内容更加清晰。
在某些实施方式中,遥控器100包括设置在第二电路板40上的电池41,电池41收容 于安装壳30内。
如此,电池41可以为显示屏60、第二柔性传感装置20等电子元件供电,以确保遥控器100正常工作。电池41可以为锂电池等充电电池,这样可以增大电池41的蓄电量,提高遥控器100持续使用的时间。
在某些实施方式中,遥控器100包括按键80和按钮81。按键80安装在第二电路板40上。按钮81穿设安装壳30并抵靠在按键80上,如图6及图8所示。
如此,按键80可以控制遥控器100是否工作。例如,当通过按钮81按下按键80时,遥控器100开机,当再次按下按键80时,遥控器100关机。具体地,本实施方式中,按钮81穿过侧壁322以抵靠在按键80上。
在某些实施方式中,遥控器100包括与电池41连接的充电端子82,充电端子82露出在安装壳30外。
具体地,充电端子82通过第一壳31露出在安装壳30外。充电端子82与第二电路板40接触,并通过第二电路板40与电池41连接。这样使得充电端子82可以为电池41充电。
在某些实施方式中,遥控器100包括装饰件90,装饰件90连接在安装壳30远离第二支撑体10的一端,安装壳30夹设于支撑体10与装饰件90之间,如图5及图6所示。
如此,遥控器100更加美观。较佳地,装饰件90的材料与第二支撑体10的材料相同,例如,装饰件90的材料与第二支撑体10的材料均为亚克力。
在某些实施中,支撑体10的长度大于安装壳30的长度,支撑体10用于供握持,安装壳30用于收容除传感装置20之外的遥控器100的其他电子器件。例如,安装壳30收容以上所述的电路板40等电子器件。
请参图14,本发明实施方式的遥控器组件102包括托架200和以上任一实施方式的遥控器100。遥控器100放置在托架200上。
上述遥控器组件102中,第二柔性传感装置20可以接收第二用户输入,遥控器100可以根据第二用户输入控制用电设备运行,操作简单。托架200可以方便用户放置遥控器100。
请结合图15及图16,在某些实施方式中,托架200包括底座210和自底座210向上延伸的支架220,遥控器100支撑在底座210上并抵靠在支架220上。
如此,底座210和支架220共同承载遥控器100,使得遥控器100放置自托架200上更加可靠。具体地,第二支撑体10支撑在底座210上,安装壳30抵靠在支架220上。进一步地,第一壳31抵靠在支架220上。
底座210包括底壳211和配重块212,配重块212收容于底壳211内。配重块212可以使得托架200的重心更低,托架200更加稳定。支架220自底座210向斜上方延伸。
在某些实施方式中,支架220包括支撑杆221和承靠部222。支撑杆221连接底座210。 承靠部222设置在支撑杆221远离底座210的一端。承靠部222设置有用于与充电端子82配合连接的第二接触端子230。
如此,第二接触端子230可以通过充电端子82为电池41充电。具体地,支架220内设置有导线231,导线231的一端连接第二接触端子230,并延伸至底座210。导线231可以连接降压后的电路,这样使得第二接触端子230可以为遥控器100提供较低的充电电压,避免用户不慎触碰第二接触端子230而产生触电事故。
在某些实施方式中,承靠部222包括固定件223、安装件224和覆盖片225。固定件223固定连接支撑杆221。固定件223形成有收容腔2231,安装件224设置在固定件223上,安装件224收容于收容腔2231内。覆盖片225套设在安装件224上,第二接触端子230固定在固定件223上,并穿设安装件224。
具体地,安装件224可以通过螺钉等紧固件安装在固定件223上,安装件224形成凸起2241,凸起2241开设有供充电端子82穿过的过孔2242,覆盖片225套设在凸起2241上,这样使得第二接触端子230可以露出于覆盖片225外,以与充电端子82连接。
在某些实施方式中,安装壳30内设置有遥控器磁性件33,安装件224上设置有与遥控器磁性件33相吸的托架磁性件240,遥控器磁性件33与托架磁性件240对应设置。
如此,遥控器100抵靠在支架220上更加可靠,这样可以防止充电端子82与第二接触端子230接触不良而无法为遥控器100充电。
具体地,托架磁性件240的数量为两个,第二接触端子230位于两个托架磁性件240之间,安装件224形成有两个安装槽2243,每个第二磁性件240安装于对应的安装槽2243中。
进一步地,支撑杆221朝向遥控器100的表面上开设有沟槽2211,并贴设有覆盖沟槽的装饰条226。沟槽2211用于供连接接触端子230的导线通过支撑杆221进入底座210,并与底座210上的电源接口连接。由此,托架200可通过外接电源给遥控器100充电。装饰条226可采用软性的材料制造,如橡胶,以避免遥控器100抵靠于支架220上时对遥控器100的表面造成刮花。
需要指出的是,本发明实施方式的遥控器组件102其他未展开的部分,请参考上述遥控器100相同或类似的部分,在此不再赘述。
请参阅图17,本发明实施方式的开关组件400包括开关300和遥控器100,开关300包括壳体302、第一接触端子310和第一柔性传感装置320。第一接触端子310自壳体302内伸出壳体302外。第一柔性传感装置320设置于壳体302上。第一柔性传感装置320用于接收第一用户输入,第一用户输入用以控制用电设备的状态。
遥控器100可拆卸地设置在壳体302上,遥控器100包括与第一接触端子310配合连接的充电端子230。例如,遥控器100挂靠在壳体302上。
上述开关组件400中,开关300可以利用第一接触端子310向遥控器100充电,同时,第一柔性传感装置320可以接收用户输入,从而控制用电设备的状态。开关300的功能多元化,第一柔性传感装置320可以提高用户的体验度。
在某些实施方式中,壳体302包括第一支撑体330,第一支撑体330包括支撑板331和凸设在支撑板331表面的凸壳332,第一接触端子310穿设凸壳332,第一柔性传感装置320连接凸壳332。
遥控器100可拆卸地设置在凸壳332上,遥控器100包括第二支撑体10和第二柔性传感装置20,第二支撑体10遮盖第一柔性传感装置320,第二支撑体10包括支撑面11,支撑面11背向第一柔性传感装置320;第二柔性传感装置20贴合在支撑面11上,第二柔性传感装置20包括输入面21,输入面21用于接收第二用户输入,第二用户输入用以控制用电设备的状态。
如此,当遥控器100设置在开关300上充电时,由于遥控器100遮挡第一柔性传感装置320,此时,用户可以利用第二柔性传感装置20控制用电设备的状态;当遥控器100从开关300上取下时,用户可以利用第一柔性传感装置320或第二柔性传感装置20控制用电设备的状态。
进一步地,开关300的电路板340上集成的控制模块(如处理器)在检测到充电端子82与第一接触端子310接触之后,可以关闭开关300的第一柔性传感装置320,仅保留第一接触端子310的充电功能。由此可避免遥控器100挂在开关300上时无意触碰到第一柔性传感装置320而造成误操作。
在某些实施方式中,第二支撑体10呈长条状,遥控器100包括设置在第二支撑体10长度方向的一端的安装壳30和收容于安装壳30内的第二电路板40,第二柔性传感装置20与第二电路板40连接,充电端子82露出在安装壳30外,遥控器100通过安装壳30可拆卸地设置在凸壳332上。
如此,遥控器100通过其一端挂靠在开关300上,使得遥控器100挂靠得比较稳定。可以理解,遥控器磁性件33与开关磁性件370相吸,使得遥控器100可以进一步稳定地挂靠在开关300上。
需要指出的是,本发明实施方式的开关组件400其他未展开的部分,请参考上述遥控器100及开关300相同或类似的部分,在此不再赘述。
另外,本发明的开关300与遥控器100相同或相似的内容部分可以相互解释说明,例如,第二柔性传感装置20的解释说明适用于第一柔性传感装置320的解释说明,第一柔性传感装置320的解释说明适用于第二柔性传感装置20的解释说明,本文不再赘述。
在本说明书的描述中,参考术语“一个实施方式”、“某些实施方式”、“示意性实施方式”、 “示例”、“具体示例”、或“一些示例”等的描述意指结合所述实施方式或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施方式或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施方式或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施方式或示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施方式,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施方式进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (20)

  1. 一种开关,其特征在于,包括:
    壳体;
    自所述壳体内伸出所述壳体外的接触端子,所述接触端子用于向设置在所述开关上的移动终端充电;和
    设置于所述壳体的柔性传感装置,所述柔性传感装置用于接收用户输入,所述用户输入用以控制用电设备的状态。
  2. 如权利要求1所述的开关,其特征在于,所述壳体包括支撑体,所述支撑体包括支撑板和凸设在所述支撑板表面的凸壳,所述接触端子穿设所述凸壳,所述柔性传感装置连接所述凸壳。
  3. 如权利要求2所述的开关,其特征在于,所述开关包括设置在所述支撑板上的电路板,所述电路板与所述凸壳分别位于所述支撑板相背的两侧,所述接触端子和所述柔性传感装置均连接所述电路板。
  4. 如权利要求3所述的开关,其特征在于,所述壳体包括插设在所述凸壳上的插板,所述插板的插入端与所述电路板相对设置,所述柔性传感装置贴合在所述插板上。
  5. 如权利要求4所述的开关,其特征在于,所述柔性传感装置贴合在所述插板面对所述支撑板的表面上。
  6. 如权利要求4所述的开关,其特征在于,所述插板为透光板,所述电路板上设置有发光体,所述发光体发出的光线能够透过所述插板出射至所述插板外。
  7. 如权利要求3所述的开关,其特征在于,所述壳体包括固定在所述支撑板上的盒体,所述盒体与所述凸壳分别位于所述支撑板相背的两侧,所述电路板位于所述盒体与所述支撑板形成的空间内。
  8. 如权利要求3所述的开关,其特征在于,所述接触端子焊接在所述电路板上;和/或所述柔性传感装置通过柔性电路板与所述电路板连接。
  9. 如权利要求2所述的开关,其特征在于,所述开关包括位于所述接触端子一侧的开关磁性件,所述开关磁性件设置在所述凸壳的内表面。
  10. 如权利要求9所述的开关,其特征在于,所述开关磁性件的数量为两个,两个所述开关磁性件分别位于所述接触端子相背的两侧。
  11. 如权利要求2所述的开关,其特征在于,所述壳体包括覆盖设置在所述支撑板上的面板,所述凸壳穿设所述面板。
  12. 如权利要求11所述的开关,其特征在于,所述面板通过扣合的方式固定在所述支撑板上。
  13. 如权利要求2所述的开关,其特征在于,所述凸壳远离所述支撑板的表面设置有缓冲垫,所述缓冲垫与所述接触端子间隔设置。
  14. 如权利要求1所述的开关,其特征在于,所述柔性传感装置为柔性传感器或柔性触摸屏。
  15. 如权利要求1所述的开关,其特征在于,所述用户输入包括多种手势操作,所述开关用于根据所述多种手势操作控制所述用电设备运行。
  16. 一种开关组件,其特征在于包括开关和遥控器,所述开关包括:
    壳体;
    自所述壳体内伸出所述壳体外的接触端子;和
    设置于所述壳体上的第一柔性传感装置,所述第一柔性传感装置用于接收第一用户输入,所述第一用户输入用以控制用电设备的状态;
    所述遥控器可拆卸地设置在所述壳体上,所述遥控器包括与所述接触端子配合连接的充电端子而通过所述开关充电。
  17. 如权利要求16所述的开关组件,其特征在于,所述壳体包括第一支撑体,所述第一支撑体包括支撑板和凸设在所述支撑板表面的凸壳,所述接触端子穿设所述凸壳,所述第 一柔性传感装置连接所述凸壳;
    所述遥控器可拆卸地设置在所述凸壳上,所述遥控器包括第二支撑体和第二柔性传感装置,所述第二支撑体遮盖所述第一柔性传感装置,所述第二支撑体包括支撑面,所述支撑面背向所述第一柔性传感装置;所述第二柔性传感装置贴合在所述支撑面上,所述第二柔性传感装置包括输入面,所述输入面用于接收第二用户输入,所述第二用户输入用以控制所述用电设备的状态。
  18. 如权利要求17所述的开关组件,其特征在于,所述遥控器包括设置在所述第二支撑体长度方向的一端的安装壳和收容于所述安装壳内的电路板,所述第二柔性传感装置与所述电路板连接,所述充电端子露出在所述安装壳外,所述遥控器通过所述安装壳可拆卸地设置在所述凸壳上。
  19. 如权利要求17所述的开关组件,其特征在于,当所述遥控器安装于所述开关上时,所述开关的所述第一柔性传感装置关闭,所述遥控器的所述第二柔性传感装置开启。
  20. 如权利要求17所述的开关组件,其特征在于,所述凸壳远离所述支撑板的表面设置有缓冲垫,所述缓冲垫与所述接触端子间隔设置,所述遥控器抵靠所述缓冲垫。
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