CN212543753U - Embedded multisource LCD touch screen switch - Google Patents

Embedded multisource LCD touch screen switch Download PDF

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Publication number
CN212543753U
CN212543753U CN202020814039.8U CN202020814039U CN212543753U CN 212543753 U CN212543753 U CN 212543753U CN 202020814039 U CN202020814039 U CN 202020814039U CN 212543753 U CN212543753 U CN 212543753U
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touch screen
lcd touch
bearing shell
face
embedded
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CN202020814039.8U
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Chinese (zh)
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李东民
范国亮
刘盼
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Henan Oxdor Ecological Iot Technology Co ltd
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Henan Oxdor Ecological Iot Technology Co ltd
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Abstract

The utility model relates to an embedded multisource LCD touch screen switch, including bearing the shell, the direction slide rail, the LCD touch screen, lift actuating mechanism, control button and drive circuit, bear a baffle in being established to the shell, and will bear the shell from preceding to the back through the baffle and divide into operation room and control room, the guide way is established to the shell up end that bears that the operation room corresponds, the direction slide rail inlays in the guide way, direction slide rail rear end face passes through the hinge and articulates with guide way left end face and right-hand member face, the LCD touch screen inlays in the operation room, the side surface passes through slider and two direction slide rail sliding connection, the LCD touch screen is connected with operation room bottom through 1-2 lift actuating mechanism in addition. The novel structure can be directly matched with various buildings and control circuit systems for use; on the other hand, the circuit switch has good on-site control and remote control capabilities, and can effectively realize the synchronous display capability of specific information in the circuit switch control process.

Description

Embedded multisource LCD touch screen switch
Technical Field
The utility model relates to an operating switch is exactly an embedded multisource LCD touch screen switch.
Background
At present, in an electric system such as a lighting system and the like, switch equipment is one of important current control equipment, the use amount is large, the currently used switch equipment is basically controlled through pressure driving, infrared induction and remote wireless control, although the requirements for controlling the electric equipment can be met, on one hand, the switch equipment is often directly installed or embedded on the surface of a building so as to damage the aesthetic property of the building; on the other hand, in the operation, the data communication interaction capacity is often relatively poor, the specific information display and prompt operation cannot be realized, the practical use is greatly unchanged due to the relatively single use function, and meanwhile, due to the lack of the information display and prompt capacity, timely and effective guidance information cannot be provided for a user during the operation, so that the power supply circuit and the electrical equipment are easily broken down or even serious safety accidents are caused due to misoperation.
Therefore, in view of the current situation, there is an urgent need to develop a new switch device to overcome the defects of the existing devices and meet the needs of practical use.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model provides an embedded multisource LCD touch screen switch which has simple structure, flexible and convenient use and good universality, can be directly matched with various buildings and control circuit systems for use, does not influence and damage the integral aesthetic property of the surface of the building, and has good universality and concealment; on the other hand has good on-the-spot control and remote control ability to in carrying out circuit switch and controlling the in-process, can effectively realize carrying out synchronous display capacity to the specificity information, thereby further improved this novel flexibility, convenience and the security of using.
In order to achieve the above purpose, the present invention is realized by the following technical solution:
an embedded multi-source LCD touch screen switch comprises a bearing shell, guide slide rails, an LCD touch screen, a lifting driving mechanism, control keys and a driving circuit, wherein the bearing shell is of a closed cavity structure with a rectangular cross section, a partition plate is arranged in the bearing shell, the bearing shell is divided into an operation chamber and a control chamber from front to back through the partition plate, the upper end face of the bearing shell corresponding to the operation chamber is provided with two guide grooves, the two guide slide rails are embedded in the guide grooves, the rear end face of each guide slide rail is hinged with the left end face and the right end face of each guide groove through hinges, the axis of each guide slide rail is 0-90 degrees with the upper end face of the bearing shell, the LCD touch screen is embedded in the operation chamber and is coaxially distributed with the operation chamber, the side surface of the LCD touch screen is slidably connected with the two guide slide rails through a sliding block, the LCD touch screen is connected with the bottom of the operation chamber through, the drive circuit is embedded in the control chamber and is electrically connected with the LCD touch screen, the lifting drive mechanism and the control button respectively.
Furthermore, bear the weight of the shell rear end and establish four at least locating pieces, two at least binding post and at least one communication terminal, wherein the locating piece encircles and bears the weight of the shell axis equipartition, is connected and exceeds and bears the weight of the shell rear end and bear the weight of the shell rear end and 5 millimeters at least with bearing the weight of the shell rear end, binding post and communication terminal all inlay and bear the weight of the shell rear end and lower 0-5 millimeters than bearing the weight of the shell rear end, just binding post and communication terminal all with drive circuit electrical connection.
Furthermore, at least two loudspeakers are arranged on the side surface of the bearing shell corresponding to the operation chamber, and the loudspeakers are symmetrically distributed along the axis of the bearing shell.
Further, the spout is established to the operation room lateral wall internal surface that the LCD touch screen corresponds, the LCD touch screen lateral wall inlays in the spout and through slider and spout sliding connection, the spout is located under the direction slide rail, and when direction slide rail axis and bear the weight of the perpendicular distribution of shell up end, the direction slide rail is rather than the coaxial distribution of spout below.
Furthermore, the guide groove in be equipped with the elastic sealing strip, just the elastic sealing strip is located direction slide rail below.
Furthermore, the guide slide rail with the guide way axis symmetric distribution, and when guide slide rail axis and the bearing shell up end contained angle be 0, guide way up end and bearing shell up end parallel and level distribute, and the interval is 0-1 millimeter between the preceding terminal surface of two guide slide rails.
Furthermore, the lifting driving mechanism is any one of a worm gear mechanism and a rack mechanism, and when the lifting driving mechanism is one, the lifting driving mechanism and the LCD touch screen are coaxially distributed; when the number of the lifting driving mechanisms is two, the lifting driving mechanisms are symmetrically distributed on the axis of the LCD touch screen.
Furthermore, the driving circuit is a circuit system based on any one of a DSP chip and an FPGA chip, and the driving circuit is additionally provided with a data communication module.
The novel structure is simple, the use is flexible and convenient, the universality is good, on one hand, the novel structure can be directly matched with various buildings and control circuit systems for use, the influence and the damage to the integral aesthetic property of the surface of the building can not be caused, and the universality and the concealment are good; on the other hand has good on-the-spot control and remote control ability to in carrying out circuit switch and controlling the in-process, can effectively realize carrying out synchronous display capacity to the specificity information, thereby further improved this novel flexibility, convenience and the security of using.
Drawings
The present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a schematic structural diagram of the novel LCD touch screen when leakage occurs;
FIG. 2 is a schematic structural diagram of the novel LCD touch screen when embedded;
fig. 3 is a schematic view of the novel sectional partial structure.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1-3, an embedded multi-source LCD touch screen switch comprises a bearing shell 1, guide sliding rails 2, an LCD touch screen 3, a lifting driving mechanism 4, an operation button 5 and a driving circuit 6, wherein the bearing shell 1 is a closed cavity structure with a rectangular cross section, a partition plate 7 is arranged in the bearing shell 1, the bearing shell 1 is divided into an operation chamber 101 and a control chamber 102 from front to back through the partition plate 7, the upper end surface of the bearing shell 1 corresponding to the operation chamber 101 is provided with two guide grooves 103, the two guide sliding rails 2 are embedded in the guide grooves 103, the rear end surface of each guide sliding rail 2 is hinged with the left end surface and the right end surface of each guide groove 103 through hinges, the axial line of each guide sliding rail 2 and the upper end surface of the bearing shell 1 form 0-90 degrees, the LCD touch screen 3 is embedded in the operation chamber 101 and is coaxially distributed with the operation chamber 101, the side surface of the LCD touch screen 3 is slidably, the LCD touch screen 3 is connected with the bottom of the operation room 101 through 1-2 lifting driving mechanisms 4, at least one control key 5 is embedded in the front end face of the bearing shell 1 corresponding to the operation room 101, and the driving circuit 6 is embedded in the control room 102 and is electrically connected with the LCD touch screen 3, the lifting driving mechanisms 4 and the control key 5 respectively.
The rear end face of the bearing shell 1 is provided with at least four positioning blocks 9, at least two wiring terminals 10 and at least one communication terminal 11, wherein the positioning blocks 9 are uniformly distributed around the axis of the bearing shell 1, are connected with the rear end face of the bearing shell 1 and are higher than the rear end face of the bearing shell 1 by at least 5 mm, the wiring terminals 10 and the communication terminals 11 are embedded in the rear end face of the bearing shell 1 and are lower than the rear end face of the bearing shell 1 by 0-5 mm, and the wiring terminals 10 and the communication terminals 11 are electrically connected with the driving circuit 6.
Meanwhile, at least two speakers 12 are arranged on the side surface of the carrying case 1 corresponding to the working chamber 101, and the speakers 12 are symmetrically distributed along the axis of the carrying case 1.
It should be noted that a sliding groove 13 is formed in the inner surface of the side wall of the operation chamber 101 corresponding to the LCD touch screen 3, the side wall of the LCD touch screen 2 is embedded in the sliding groove 13 and is slidably connected with the sliding groove 13 through a sliding block 8, the sliding groove 13 is located right below the guide sliding rail 2, and when the axis of the guide sliding rail 2 is vertically distributed with the upper end surface of the bearing shell 1, the guide sliding rail 2 is coaxially distributed with the sliding groove 13 below the guide sliding rail.
In addition, an elastic sealing strip 14 is arranged in the guide groove 103, and the elastic sealing strip 14 is positioned below the guide sliding rail 2.
It should be noted that the guide rails 2 are symmetrically distributed along the axis of the guide grooves 103, and when the included angle between the axis of the guide rails 2 and the upper end surface of the bearing shell 1 is 0 °, the upper end surface of the guide grooves 103 is flush with the upper end surface of the bearing shell 1, and the distance between the front end surfaces of the two guide rails 2 is 0-1 mm.
Preferably, the lifting driving mechanism 4 is any one of a worm gear mechanism and a rack mechanism, and when one lifting driving mechanism 4 is provided, the lifting driving mechanism 4 and the LCD touch screen 3 are coaxially distributed; when there are two lifting driving mechanisms 4, the lifting driving mechanisms 4 are symmetrically distributed along the axis of the LCD touch screen 3.
In this embodiment, the driving circuit 6 is a circuit system based on any one of a DSP chip and an FPGA chip, and the driving circuit 6 is further provided with a data communication module.
This is novel in concrete implementation, at first to constituting this neotype shell that bears, the direction slide rail, the LCD touch screen, lift actuating mechanism, control button and drive circuit and assemble, then inlay in the building wall body and through locating piece and wall connection this neotype shell rear half that bears after will assembling, make the guide way lateral wall and the outer surface parallel and level of building of its up end distribute simultaneously, will bear binding post and the communication terminal of shell and be connected with the power cord and the communication line of building respectively simultaneously to accomplish this novel assembly.
In the novel operation, on one hand, when the LCD touch screen is embedded in the operating room of the bearing shell, the LCD touch screen can be effectively protected, the LCD touch screen is prevented from being damaged due to external force impact and pollutant corrosion, and meanwhile, corresponding circuit operation is directly carried out through the operation key; on the other hand, when data display is needed, under the lifting driving mechanism, the LCD touch screen generates air from the operation chamber of the bearing shell and drives the guide slide rails to turn over, so that the axes of the guide slide rails are vertically distributed with the upper end face of the bearing shell, at least 80% of the area of the LCD touch screen is embedded between the two guide slide rails, then the LCD touch screen and the control key can be used for synchronously carrying out circuit control operation, and meanwhile, the LCD touch screen and the loudspeaker on the side surface of the bearing shell are synchronously used for carrying out corresponding information display, so that the purposes of improving control safety and reliability are achieved.
The novel structure is simple, the use is flexible and convenient, the universality is good, on one hand, the novel structure can be directly matched with various buildings and control circuit systems for use, the influence and the damage to the integral aesthetic property of the surface of the building can not be caused, and the universality and the concealment are good; on the other hand has good on-the-spot control and remote control ability to in carrying out circuit switch and controlling the in-process, can effectively realize carrying out synchronous display capacity to the specificity information, thereby further improved this novel flexibility, convenience and the security of using.
Those skilled in the art should understand that the present invention is not limited by the above embodiments. The foregoing embodiments and description have been made only for the purpose of illustrating the principles of the invention. The present invention can be further modified and improved without departing from the spirit and scope of the present invention. Such changes and modifications are intended to be within the scope of the claimed invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. An embedded multisource LCD touch screen switch which characterized in that: the embedded multi-source LCD touch screen switch comprises a bearing shell, two guide slide rails, an LCD touch screen, a lifting driving mechanism, a control button and a driving circuit, wherein the bearing shell is of a closed cavity structure with a rectangular cross section, a partition plate is arranged in the bearing shell, the bearing shell is divided into an operation chamber and a control chamber from front to back through the partition plate, the upper end face of the bearing shell corresponding to the operation chamber is provided with two guide grooves, the two guide slide rails are embedded in the guide grooves, the rear end face of each guide slide rail is hinged with the left end face and the right end face of each guide groove through hinges, the axis of each guide slide rail is 0-90 degrees with the upper end face of the bearing shell, the LCD touch screen is embedded in the operation chamber and is coaxially distributed with the operation chamber, the side surface of the LCD touch screen is in sliding connection with the two guide slide rails through a sliding block, and the LCD touch screen is further connected with the bottom of the, the control button is at least one and is embedded in the front end face of the bearing shell corresponding to the operation room, and the driving circuit is embedded in the control room and is electrically connected with the LCD touch screen, the lifting driving mechanism and the control button respectively.
2. The embedded multi-source LCD touch screen switch of claim 1, wherein: the bearing shell rear end face is provided with at least four positioning blocks, at least two wiring terminals and at least one communication terminal, wherein the positioning blocks are uniformly distributed around the axis of the bearing shell, are connected with the bearing shell rear end face and are at least 5 mm higher than the bearing shell rear end face, the wiring terminals and the communication terminals are embedded in the bearing shell rear end face and are 0-5 mm lower than the bearing shell rear end face, and the wiring terminals and the communication terminals are electrically connected with a driving circuit.
3. The embedded multi-source LCD touch screen switch of claim 1, wherein: at least two loudspeakers are arranged on the side surface of the bearing shell corresponding to the operation chamber, and the loudspeakers are symmetrically distributed along the axis of the bearing shell.
4. The embedded multi-source LCD touch screen switch of claim 1, wherein: the operation room lateral wall internal surface that the LCD touch screen corresponds establishes the spout, the LCD touch screen lateral wall inlays in the spout and through slider and spout sliding connection, the spout is located under the direction slide rail, and when direction slide rail axis and bear the weight of the perpendicular distribution of shell up end, the direction slide rail is rather than the coaxial distribution of spout below.
5. The embedded multi-source LCD touch screen switch of claim 1 or 3, wherein: the guide way in establish elastic sealing strip, just elastic sealing strip is located direction slide rail below.
6. The embedded multi-source LCD touch screen switch of claim 1, wherein: the guide slide rail with the guide way axis symmetric distribution, and when guide slide rail axis and the bearing shell up end contained angle be 0, guide way up end and bearing shell up end parallel and level distribute, and the preceding terminal surface interval of two guide slide rails is 0-1 millimeter.
7. The embedded multi-source LCD touch screen switch of claim 1, wherein: the lifting driving mechanism is any one of a worm gear mechanism and a rack mechanism, and when the lifting driving mechanism is one, the lifting driving mechanism and the LCD touch screen are coaxially distributed; when the number of the lifting driving mechanisms is two, the lifting driving mechanisms are symmetrically distributed on the axis of the LCD touch screen.
8. The embedded multi-source LCD touch screen switch of claim 1, wherein: the driving circuit is a circuit system based on any one of a DSP chip and an FPGA chip, and is additionally provided with a data communication module.
CN202020814039.8U 2020-05-15 2020-05-15 Embedded multisource LCD touch screen switch Active CN212543753U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020814039.8U CN212543753U (en) 2020-05-15 2020-05-15 Embedded multisource LCD touch screen switch

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020814039.8U CN212543753U (en) 2020-05-15 2020-05-15 Embedded multisource LCD touch screen switch

Publications (1)

Publication Number Publication Date
CN212543753U true CN212543753U (en) 2021-02-12

Family

ID=74541370

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020814039.8U Active CN212543753U (en) 2020-05-15 2020-05-15 Embedded multisource LCD touch screen switch

Country Status (1)

Country Link
CN (1) CN212543753U (en)

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