CN211062597U - Telescopic electromagnetic remote switch refitting device - Google Patents

Telescopic electromagnetic remote switch refitting device Download PDF

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Publication number
CN211062597U
CN211062597U CN201922207992.6U CN201922207992U CN211062597U CN 211062597 U CN211062597 U CN 211062597U CN 201922207992 U CN201922207992 U CN 201922207992U CN 211062597 U CN211062597 U CN 211062597U
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CN
China
Prior art keywords
module
groove
inching
action
electromagnetic
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Expired - Fee Related
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CN201922207992.6U
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Chinese (zh)
Inventor
倪超
李振业
黄卓
邹红艳
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Nanjing Forestry University
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Nanjing Forestry University
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Priority to CN201922207992.6U priority Critical patent/CN211062597U/en
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Publication of CN211062597U publication Critical patent/CN211062597U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a telescopic electromagnetic type remote switch repacking device belongs to remote switch technical field, this device is including consecutive first support module from top to bottom, first action module, second action module and second support module, the inside first remote control module that is provided with of first support module, be provided with first electromagnetic type inching device on the first action module, first remote control module and first electromagnetic type inching device electrical connection can control first electromagnetic type inching device action, the inside second remote control module that is provided with of second support module, be provided with second electromagnetic type inching device on the second action module, second remote control module and second electromagnetic type inching device electrical connection can control second electromagnetic type inching device action. The utility model discloses utilize remote control to realize the inching function, convenient and practical adapts to the switch of different models and specification, does not influence the traditional using-way of switch simultaneously, and a plurality of concatenations of device are used, are suitable for bipolar switch and even multistage switch.

Description

Telescopic electromagnetic remote switch refitting device
Technical Field
The utility model belongs to the technical field of remote switch, concretely relates to telescopic electromagnetic type remote switch repacking device.
Background
With the development of information technology and internet of things technology, intelligent remote control equipment increasingly enters the lives of people, so that people can conveniently and remotely control various electronic equipment such as intelligent patch boards, intelligent switches and the like. However, there are many electrical devices controlled by conventional switches in the market at present, such as fluorescent lamp switches, and these switches can be remotely controlled after being attached by a modification device. The existing switch retrofit device has two major disadvantages, firstly, the existing switch retrofit device only supports partial switches with standard sizes and cannot be used for a plurality of irregular switches, and in addition, once the existing switch retrofit device is added on the traditional switch for retrofitting, the traditional switch can be shielded, so that a user cannot press the switch in a traditional mode.
SUMMERY OF THE UTILITY MODEL
The purpose of the invention is as follows: the utility model aims at providing a simple structure, application scope is wide, convenient operation's telescopic electromagnetic type remote switch repacking device to prior art existence.
The technical scheme is as follows: in order to achieve the above purpose, the technical solution adopted by the present invention is as follows: the utility model provides a telescopic electromagnetic type remote switch repacking device, includes consecutive first support module, first action module, second action module and second support module from top to bottom, the inside first remote control module that is provided with of first support module, be provided with first electromagnetic type inching device on the first action module, first remote control module and first electromagnetic type inching device electrical connection can control first electromagnetic type inching device action, the inside second remote control module that is provided with of second support module, be provided with second electromagnetic type inching device on the second action module, second remote control module and second electromagnetic type inching device electrical connection can control second electromagnetic type inching device action.
Preferably, first electromagnetic type inching device sets up in the positive recess of first action module, includes by iron core, coil, permanent magnet and the inching pole that outwards sets up in proper order in the recess, coil parcel iron core, the iron core circular telegram back is opposite with the permanent magnet junction magnetic pole, inching pole one end links to each other with the permanent magnet is fixed, outside the outstanding recess of the other end, but the permanent magnet round trip movement drives the inching pole and comes the motion.
Preferably, the first remote control module comprises a WIFI unit, a relay and a battery, the WIFI unit receives a remote control signal and controls the on-off of a battery circuit through the relay, and when a circuit is switched on, the first electromagnetic type inching device is powered on to act.
Preferably, the first remote control module and the first electromagnetic jog device are electrically connected by: the connection part of the lower end face of the first support module and the first action module is provided with a first insertion groove, the corresponding part of the first action module and the first insertion groove is provided with a second insertion groove, the first insertion groove and the second insertion groove are made of metal materials and are connected through a metal insertion rod, the battery is connected with a first insertion groove electric wire, and the coil is connected with a second insertion groove electric wire.
Preferably, the lower end face of the first action module is provided with a first connecting groove, the upper end face of the second action module is provided with a second connecting groove corresponding to the first connecting groove, and the first connecting groove and the second connecting groove are connected through a telescopic connecting rod.
Preferably, the second motion module and the second cradle module have the same structure and connection manner as the first motion module and the first cradle module.
Preferably, the first electromagnetic inching device is further provided with a convex groove protruding outwards at a position corresponding to the groove, the permanent magnet moves back and forth in a space formed by the groove and the convex groove, and the inching rod is provided with a limiting block at a position close to the permanent magnet.
Preferably, one end of the ignition rod protruding out of the groove is further provided with an extension block, and the extension block is sleeved at one end of the ignition rod.
Preferably, the surfaces of the first support module and the second support module are provided with indicator lamps for indicating the battery power and the WIFI connection state.
Preferably, the side edges of the two sides of the first support module and the second support module are respectively provided with a parallel block and a parallel groove, and the plurality of support modules can be connected with each other through the parallel blocks and the parallel grooves.
Has the advantages that: compared with the prior art, the utility model has the advantages of it is following: 1. the inching function is realized by remote control, the device is convenient and practical, and the device can be adjusted to adapt to switches of different models and specifications; 2. the device does not completely cover the surface of the traditional switch, so that the user can still keep the traditional mode to click the switch; 3. the device can be continuously spliced and used for a plurality of bipolar switches and even multistage switches.
Drawings
Fig. 1 is a schematic view of the overall structure of the embodiment of the present invention;
FIG. 2 is a schematic diagram of a first action module;
FIG. 3 is an exploded view of a first electromagnetic jog device;
FIG. 4 is a schematic top view of a first motion module;
FIG. 5 is a schematic diagram of a first remote control module configuration;
Fig. 6 is a schematic top view of a first rack module.
Detailed Description
The invention will be further elucidated with reference to the drawing.
As shown in fig. 1, the modified device of the telescopic electromagnetic remote switch of the embodiment includes a first bracket module 1, a first action module 2, a second action module 3 and a second bracket module 4 which are sequentially connected from top to bottom, a first remote control module 5 is arranged in the first bracket module 1, a first electromagnetic inching device 6 is arranged in a groove 22 on the first action module 2, the first remote control module 5 and the first electromagnetic inching device 6 are electrically connected and can control the first electromagnetic inching device 6 to act, a second remote control module 7 is arranged in the second bracket module 4, a second electromagnetic inching device 8 is arranged on the second action module 3, and the second remote control module 7 and the second electromagnetic inching device 8 are electrically connected and can control the second electromagnetic inching device 8 to act.
The first remote control module 5 is electrically connected with the first electromagnetic inching device 6 by arranging a first inserting groove 11 at the joint of the lower end surface of the first bracket module 1 and the first action module 2, arranging a second inserting groove 21 at the corresponding position of the first action module 2 and the first inserting groove 11, wherein the first inserting groove 11 and the second inserting groove 21 are made of metal materials and are connected through a metal inserting rod 12, the first remote control module 5 is connected with the first inserting groove 11 through an electric wire, the first electromagnetic inching device 6 is connected with the second inserting groove 21 through an electric wire, so that the process from the first remote control module 5 to the control of the first electromagnetic inching device 6 can be completed, the number of grooves on the opposite surfaces of the first bracket module 1 and the first action module 2 is four, wherein the number of the first inserting groove 11 and the second inserting groove 21 is two, the shapes of the two pairs of grooves are the same as that of the first inserting groove 11, and the shape of the inserting rod is the same as that of the metal inserting rod 12, in addition, the two pairs of grooves and the inserted rods can play a better role in fixing the device connection, the structures and the connection modes of the second action module 3 and the second support module 4 are the same as those of the first support module 1 and the first action module 2, and the second action module 3 and the second support module 4 are used in an inverted mode.
Be provided with pilot lamp 13 on first support module 1 and the second support module 4 and be used for instructing battery power and WIFI connection status, the bright light colour is blue to represent that WIFI does not connect up, green shows to have connected, bright light quantity shows the electric quantity surplus, 3 check show that the electric quantity is the most, 1 check show that the electric quantity is minimum, the lamp goes out completely and shows that the electric quantity exhausts and need to change the battery.
The terminal surface is provided with four first spread groove 23 under the first action module 2, and the corresponding department of second action module 3 up end and first spread groove 23 is provided with four second spread groove 33, is connected through telescopic connecting rod 24 between first spread groove 23 and the second spread groove 33, adopts telescopic connecting rod 24 to make whole repacking device length can adjust, adapts to the switch of different length.
As shown in fig. 2 and 3, the first electromagnetic inching device 6 is disposed in the groove 22 on the front surface of the first action module 2, and includes an iron core 62, a coil 61, a permanent magnet 63 and an inching rod 64 sequentially disposed outward from the groove 22, the coil 61 wraps the iron core 62, the iron core 62 is opposite in magnetic pole at the connection with the permanent magnet 63 after being electrified, one end of the inching rod 64 is fixedly connected with the permanent magnet 63, the other end protrudes out of the groove 22, the permanent magnet 63 can move back and forth in the groove 22 and drive the inching rod 64 to move back and forth, the coil 61 is electrified, the iron core 62 is converted into an electromagnet, the magnetic pole direction of the electromagnet is the same as that of the permanent magnet 63, the permanent magnet 63 is subjected to magnetic force and drives the inching rod 64 to move in the groove 22 towards the direction away from the iron core 62, thereby generating the pressing action of simulating the hands of a person, pressing the traditional switch action, after the action is finished, the coil 61 loses power, the iron core 62 returns to normal, and the permanent magnet 63 is attracted back to the groove 22 under the action of magnetic force; the second electromagnetic jog device 8 and the first electromagnetic jog device 6 have the same structure.
As shown in fig. 4, a convex groove 25 protruding outward is further disposed at a corresponding position of the groove 22, the permanent magnet 63 moves back and forth in a space formed by the groove 22 and the convex groove 25, a limit block 641 is disposed at a position, close to the permanent magnet 63, of the inching rod 64 for limiting the action range of the inching rod 64, an extension block 642 is further disposed at one end, protruding out of the groove 22, of the inching rod 64, the extension block 642 is sleeved at one end of the inching rod 64, when the distance of the inching rod 64 is insufficient, the distance can be increased by increasing the extension block 642, the extension block 642 can be in a circular shape or other shapes on the drawing, so that the inching range is wider, the switch can be inching work more reliably, and the device is suitable for switches with irregular shapes.
As shown in fig. 5 and 1, the first remote control module 5 is disposed in the first cradle module 1, and includes a WIFI unit 51, a relay 52 and a battery 53, the WIFI unit 51 and the relay 52 are disposed beside the battery 53, and a power supply of the WIFI unit 51 is also provided by the battery 53, when the device is used, the WIFI unit 51 receives a remote control signal and controls a circuit from the battery 53 to the inserting slot 11 to be switched on and off through the relay 52, when the circuit is switched on, the first electromagnetic type inching device 6 is powered on, the relay 52 is switched off after a period of time, and the first electromagnetic type inching device 6 is powered off and returns to an original state; the second remote control module 7 and the first remote control module 5 have the same structure, and the WIFI unit 51 in the remote control module may be other wireless connection modes, such as bluetooth connection, infrared connection, and the like, besides the WIFI connection mode.
As shown in fig. 6, the both sides side of first support module 1 is provided with two parallel blocks 9 and parallel groove 91 respectively, and parallel blocks 9 and parallel groove 91 interference fit use, a plurality of support module accessible parallel blocks 9 and parallel groove 91 interconnect, and second support module 4 is the same with first support module 1's structure, and a single device is applicable to single pole switch, when needs use on multi-stage switch, can use a plurality ofly the utility model discloses a device concatenation is used, convenient and practical.
When the device is used, the double faced adhesive tape can be used for enabling the first bracket module 1 and the second bracket module 4 to be attached to the upper wall surface and the lower wall surface around the switch, the length of the device is adjusted by using the telescopic connecting rod 24 according to the upper length and the lower length of the switch, the inching rod 64 is used by the height distance increasing and extending block 642 from the device to the switch button, and under the normal condition, people can click the upper part and the lower part of the button on the switch through fingers to complete the opening and closing actions when using the switch, the utility model discloses the device designs the first bracket module 1 and the first action module 2 to be matched to complete the first inching work through the remote control function, which is equivalent to the finger clicking the upper part of the switch button to complete the opening; the second action module 3 and the second support module 4 are matched to complete the second jogging work, namely, the lower part of the switch button is clicked by a finger to complete the 'off' action. When the device is not used, a distance from the original switch does not influence the manual use of the switch.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (10)

1. A telescopic electromagnetic type remote switch repacking device which characterized in that: including consecutive first support module (1), first action module (2), second action module (3) and second support module (4) from top to bottom, first support module (1) inside is provided with first remote control module (5), be provided with first electromagnetic type inching device (6) on the first action module (2), first remote control module (5) and first electromagnetic type inching device (6) electrical connection can control first electromagnetic type inching device (6) action, second support module (4) inside is provided with second remote control module (7), be provided with second electromagnetic type inching device (8) on second action module (3), second remote control module (7) and second electromagnetic type inching device (8) electrical connection can control second electromagnetic type inching device (8) action.
2. The telescopic electromagnetic remote switch retrofit device of claim 1 wherein: first electromagnetic type inching device (6) sets up in positive recess (22) of first action module (2), includes iron core (62), coil (61), permanent magnet (63) and inching pole (64) by outside setting gradually in recess (22), coil (61) parcel iron core (62), iron core (62) circular telegram back is opposite with permanent magnet (63) junction magnetic pole, inching pole (64) one end is fixed continuous with permanent magnet (63), outside the outstanding recess (22) of the other end, permanent magnet (63) can the round trip movement in recess (22) and drive inching pole (64) round trip movement.
3. The telescopic electromagnetic remote switch retrofit device of claim 2, wherein: the first remote control module (5) comprises a WIFI unit (51), a relay (52) and a battery (53), the WIFI unit (51) receives remote control signals and controls the on-off of a circuit of the battery (53) through the relay (52), and when a circuit is switched on, the first electromagnetic type inching device (6) is electrified to act.
4. The telescopic electromagnetic remote switch retrofit device of claim 3, wherein: the first remote control module (5) and the first electromagnetic inching device (6) are electrically connected in the following way: the connection part of the lower end face of the first support module (1) and the first action module (2) is provided with a first insertion groove (11), the corresponding part of the first action module (2) and the first insertion groove (11) is provided with a second insertion groove (21), the first insertion groove (11) and the second insertion groove (21) are made of metal materials and are connected through a metal insertion rod (12), the battery (53) is connected with an electric wire of the first insertion groove (11), and the coil (61) is connected with an electric wire of the second insertion groove (21).
5. The telescopic electromagnetic remote switch retrofit device of claim 1 wherein: the lower end face of the first action module (2) is provided with a first connecting groove (23), the corresponding position of the upper end face of the second action module (3) and the first connecting groove (23) is provided with a second connecting groove (33), and the first connecting groove (23) and the second connecting groove (33) are connected through a telescopic connecting rod (24).
6. The telescopic electromagnetic remote switch retrofit device of claim 1 wherein: the structure and the connection mode of the second action module (3) and the second bracket module (4) are the same as those of the first action module (2) and the first bracket module (1).
7. The telescopic electromagnetic remote switch retrofit device of claim 2, wherein: the first electromagnetic type inching device (6) is further provided with a convex groove (25) protruding outwards at the corresponding position of the groove (22), the permanent magnet (63) moves back and forth in a space formed by the groove (22) and the convex groove (25), and the inching rod (64) is provided with a limit block (641) at a position close to the permanent magnet (63).
8. The telescopic electromagnetic remote switch retrofit device of claim 2, wherein: one end of the ignition rod (64) protruding out of the groove (22) is further provided with an extension block (642), and one end of the ignition rod (64) is sleeved with the extension block (642).
9. The telescopic electromagnetic remote switch retrofit device of claim 1 wherein: the surface of the first support module (1) and the surface of the second support module (4) are provided with indicator lamps (13) used for indicating the battery capacity and the WIFI connection state.
10. The telescopic electromagnetic remote switch retrofit device of claim 1 wherein: the side edges of the two sides of the first support module (1) and the second support module (4) are respectively provided with a parallel block (9) and a parallel groove (91), and the plurality of support modules can be connected with each other through the parallel block (9) and the parallel groove (91).
CN201922207992.6U 2019-12-10 2019-12-10 Telescopic electromagnetic remote switch refitting device Expired - Fee Related CN211062597U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922207992.6U CN211062597U (en) 2019-12-10 2019-12-10 Telescopic electromagnetic remote switch refitting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922207992.6U CN211062597U (en) 2019-12-10 2019-12-10 Telescopic electromagnetic remote switch refitting device

Publications (1)

Publication Number Publication Date
CN211062597U true CN211062597U (en) 2020-07-21

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CN201922207992.6U Expired - Fee Related CN211062597U (en) 2019-12-10 2019-12-10 Telescopic electromagnetic remote switch refitting device

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113485239A (en) * 2021-06-22 2021-10-08 郭恩训 Finger pressing device and control circuit
CN114877932A (en) * 2022-04-20 2022-08-09 北京运达华开科技有限公司 Pressure hard spot check out test set

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113485239A (en) * 2021-06-22 2021-10-08 郭恩训 Finger pressing device and control circuit
CN114877932A (en) * 2022-04-20 2022-08-09 北京运达华开科技有限公司 Pressure hard spot check out test set
CN114877932B (en) * 2022-04-20 2023-02-17 北京运达华开科技有限公司 Pressure hard spot check out test set

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20200721

Termination date: 20201210