CN211319622U - Distance sensing display mounting structure - Google Patents

Distance sensing display mounting structure Download PDF

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Publication number
CN211319622U
CN211319622U CN202020073385.5U CN202020073385U CN211319622U CN 211319622 U CN211319622 U CN 211319622U CN 202020073385 U CN202020073385 U CN 202020073385U CN 211319622 U CN211319622 U CN 211319622U
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China
Prior art keywords
circuit board
mirror
block
mounting box
mounting
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CN202020073385.5U
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Chinese (zh)
Inventor
张志鹏
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Foshan Chaoyi Technology Co ltd
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Foshan Chaoyi Technology Co ltd
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Abstract

The utility model discloses a apart from response display mounting structure, include the mounting box who is connected with mirror glass layer, the mounting box is provided with the circuit board, the circuit board is connected with the illuminating part that sets up towards mirror glass layer, the circuit board is connected with the flexible mounting piece with the mirror butt, the flexible mounting piece be connected with the distance inductor that the circuit board is connected, the response end apart from the inductor is outside the mirror. Through adopting above-mentioned setting, thereby have and utilize the distance-sensing ware to trigger the illuminating part and make the glass layer show the pattern to improve trigger sensitivity, reduce bathroom mirror glass layer refraction or bathroom in fog disturb's advantage.

Description

Distance sensing display mounting structure
Technical Field
The utility model relates to a technical field of display installation, concretely relates to apart from response display mounting structure.
Background
A mirror is an article with a smooth surface and the ability to reflect light. The mirror is composed of three layers, wherein the first layer is positioned at the outermost side and is glass chemical oxide (Na 2O. CaO.6SiO 2), the main component is silicon dioxide, and the mirror has strong light transmittance. The second layer is made of silver or aluminum material, has stronger light reflection performance and plays the roles of light reflection and mirror image. The third layer is a protective layer for preventing silver or aluminum from being oxidized or scratched.
As the quality of life and the level of technology of people increase, more and more bathroom mirrors cut off a partial area of a silver or aluminum material and a third protective layer, and then a display is mounted on a glass layer of the mirror to make the mirror show a specific pattern. There is a display method in which a specific number or pattern is engraved on the glass layer of the mirror, and then the number or pattern on the glass layer of the mirror is projected by using light emitted from the display screen.
The existing component installed in the mirror and used for triggering the display to emit light is usually an execution switch or a touch screen panel, the touch screen panel is connected with a circuit board and installed behind a glass layer of the mirror, and then is subjected to touch screen sensing by a human hand. Meanwhile, part of the mirrors are installed in a bathroom and are called bathroom mirrors, when people use the bathroom, water mist generated in hot water can be attached to the bathroom mirrors, when a touch screen senses a touch screen panel, the display is often difficult to trigger due to interference of the water mist, and the existing mirror display is not provided with a distance sensing mode to trigger the display, so that the triggering sensing display is difficult.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a distance sensing display installation structure for a mirror, which triggers a display through distance sensing.
The purpose of the utility model is realized through the following technical scheme:
the utility model provides a apart from response display mounting structure, includes the mounting box who is connected with mirror glass layer, the mounting box is provided with the circuit board, the circuit board is connected with the illuminating part that sets up towards mirror glass layer, the circuit board is connected with the flexible mounting piece with the mirror butt, the flexible mounting piece be connected with the distance inductor that the circuit board is connected, the response end apart from the inductor is outside the mirror.
Further, the distance sensor comprises an infrared sensor, the infrared sensor comprises a receiving block and an output block, a plurality of jacks are arranged through the flexible mounting block, and the receiving block and the output block are in interference fit with the jacks respectively.
Furthermore, a buffer block is arranged in the mounting box, and the circuit board is connected with the buffer block; when the mounting box is connected with the mirror, the buffer block extrudes the circuit board until the flexible mounting block and the mirror are mutually abutted.
Furthermore, the light-emitting component includes the light guide plate that is connected with the circuit board, the light guide plate orientation the side of circuit board has seted up and has accomodate the groove, the circuit board be connected with accomodate in accomodate the lamp ball in the groove.
Furthermore, the mounting box also comprises a connecting frame fixedly connected with the glass layer on the back of the mirror, and the mounting box is detachably connected with the connecting frame.
Furthermore, the protruding fixture block that has in side of mounting box, the supply is seted up to the passageway inner wall of splice frame the draw-in groove of fixture block joint, the splice frame is run through threaded hole, the protruding lug that has in side of mounting box, the lug is run through threaded hole, work as the fixture block with during the draw-in groove joint, the lug with the splice frame butt, just threaded hole is just right with threaded hole, the screw with threaded hole and threaded hole are connected to the owner.
Furthermore, a plurality of wire grooves are communicated with the side face of the mounting box, and the wire grooves are communicated with a box opening of the mounting box.
The utility model discloses following beneficial effect has:
a distance induction display mounting structure is characterized in that a mounting box is arranged to be connected with a bathroom mirror, so that circuit board mounting and other parts are mounted in the mounting box by taking the mounting box as a carrier, the mounting and dismounting of the circuit board and other parts are simple and convenient, meanwhile, a light-emitting piece is arranged on the circuit board, so that light is emitted towards a glass layer of the mirror, and patterns carved on the glass layer are obviously displayed; through the flexible mounting piece that sets up with the glass layer butt, be favorable to shortening flexible mounting piece and the direct distance in glass layer, reduce and sense barriers such as glass layer apart from the inductor, and reflect the receiving terminal apart from the inductor with the clearance between flexible mounting piece and the glass layer with the signal, in order to improve the sensitivity apart from the inductor, utilize apart from the inductor and trigger the luminous setting that shows the pattern of luminous and of luminous spare apart from the response, be favorable to reducing because the condition of bathroom mirror glass layer refraction interference or water smoke interference in the bathroom.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is an exploded view of the present invention.
Fig. 3 is an exploded view of the present invention from another perspective.
Fig. 4 is a schematic view of the overall structure of another viewing angle of the present invention.
In the figure: 1. a connecting frame; 11. a card slot; 12. a main threaded hole; 2. mounting a box; 21. a clamping block; 22. a bump; 23. a secondary threaded hole; 24. a wire slot; 3. a buffer block; 4. a circuit board; 41. A lamp ball; 5. a light guide plate; 51. a receiving groove; 6. a flexible mounting block; 61. a jack; 7. a distance sensor; 71. receiving a block; 72. and outputting the block.
Detailed Description
The present invention will be described in further detail with reference to the following drawings and specific embodiments. In the present specification, the terms "upper", "inner", "middle", "left", "right" and "one" are used for convenience of description, and are not intended to limit the scope of the present invention, and the relative relationship between the terms and the corresponding parts may be changed or adjusted without substantial technical changes.
Referring to fig. 1 and 2, the distance sensing display mounting structure comprises a connecting frame 1 with a cuboid-like shape, a channel of the connecting frame 1 is in a cuboid shape, a second layer of aluminum or silver material is cut in a local area of the back surface of a mirror to mount the connecting frame 1, the connecting frame 1 is fixedly bonded with a glass layer in a mirror cutting area, and the channel of the connecting frame 1 is opposite to and communicated with the mirror cutting area.
Connecting frame 1 can be dismantled and be connected with mounting box 2, and the appearance of mounting box 2 is the similar cuboid form, and the box opening of mounting box 2 sets up towards the mirror, and the side arch of mounting box 2 has two fixture blocks 21, and the draw-in groove 11 that supplies fixture block 21 joint is seted up to connecting frame 1's passageway inner wall, and draw-in groove 11 is rectangular form. Connecting frame 1 is on a parallel with the planar terminal surface of mirror and is located the mirror passageway and link up there is main screw hole 12 in the one side of keeping away from draw-in groove 11, the protruding lug 22 that has of side of mounting box 2 (as shown in fig. 4), lug 22 is on a parallel with the planar terminal surface of mirror and links up there is vice screw hole 23, when fixture block 21 and draw-in groove 11 joint, lug 22 and connecting frame 1 keep away from the terminal surface butt of mirror, and vice screw hole 23 is just right with main screw hole 12, through screw and main screw hole 12 and vice screw hole 23 threaded connection with installation fixed mounting box 2, make the box mouth of mounting box 2 and the glass layer butt of mirror simultaneously.
Specifically, through setting up connecting frame 1, can utilize the frock of carving there being digit or pattern to put into connecting frame 1's passageway, make digit or pattern and mirror butt on the frock simultaneously, the circumference size of frock is unanimous with the circumference size of mounting box to in the neat condition of the pattern or the figure on the frock is observed from the front of mirror, thereby be convenient for install connecting frame 1 neatly, make the digit or the pattern of overall structure and display more neat. Meanwhile, the connecting frame 1 is used as a carrier, and other parts such as the mounting box 2 are mounted on the connecting frame 1, so that the connecting frame 1 and the mounting box 2 are prevented from being mounted by frequently observing the tidy condition from the front side and the back side of the mirror, and the mounting is convenient.
Further, through setting up fixture block 21 and draw-in groove 11, can install one side of mounting box 2 at first, then utilize the vice screw hole 23 of lug 22 just to main screw hole 12 to through screw and main screw hole 12 and vice screw hole 23 threaded connection, make the installation and the dismantlement of mounting box 2 easy and simple to handle.
Refer to fig. 2 and 3 and show, the gluey joint is fixed with the buffer block 3 of making by flexible material in the mounting box 2, and the box inner bottom surface setting of mounting box 2 is filled to buffer block 3, and the side that 2 box inner bottoms of mounting box were kept away from to buffer block 3 is glued and is fixed with circuit board 4, and circuit board 4's peripheral edge splices with buffer block 3, and electronic components on the circuit board 4 sets up towards buffer block 3, is favorable to reducing the condition of circuit board 4's electronic components damage.
The mounting box 2 is provided with a plurality of wire grooves 24 which are communicated with the adjacent end surfaces of the convex block 22 and the clamping block 21, the plurality of wire grooves 24 are distributed at equal intervals along the edge of the mounting box 2, the adjacent wire grooves 24 are not communicated with each other, box openings of the mounting box of the wire grooves 24 are communicated, and the wire grooves 24 are used for allowing a circuit of the circuit board 4 to pass through and are connected with a power supply device outside the mounting box 2.
Specifically, the installation box 2 and the wire slot 24 are arranged, so that the circuit of the circuit board 4 is connected to the outside of the installation box 2, and the circuit installation operation of the circuit board 4 is simple and convenient; meanwhile, the wire slot 24 is communicated with the box opening of the mounting box 2, so that the die for producing the mounting box 2 is processed and formed, the condition of increasing side core pulling in die production is reduced, and the effect of saving production and manufacturing cost is achieved.
Referring to fig. 2 to 4, the side of the circuit board 4 far from the buffer block 3 is glued with the light guide plate 5, the light guide plate 5 is in the shape of a similar cuboid, the light guide plate 5 is made of a light-transmitting material, a light source can be converged on the whole plane of the light guide plate 5, thereby achieving the light equalizing effect, so that the light of the pattern display engraved on the glass layer of the mirror is uniform, the edge of the side of the light guide plate 5 facing the circuit board 4 is glued and fixed with the circuit board 4, the side of the light guide plate 5 facing the circuit board 4 is provided with two accommodating grooves 51, and the two accommodating grooves 51 are distributed along the two ends of the. The circuit board 4 is connected with two light balls 41 through a line, and the two light balls 41 are respectively received in the two receiving grooves 51.
It is specific, through setting up light guide plate 5 and accomodating groove 51, so that accomodate lamp ball 41 in light guide plate 5, simultaneously can accomodate the light that lamp ball 41 sent in light guide plate 5 completely, thereby reach the effect of spotlight, be favorable to reducing the condition that light on the lamp ball 41 leaked from the gap between circuit board 4 and the light guide plate 5, utilize light guide plate 5's homogeneous light effect simultaneously, make the light that light guide plate 5 is holistic to send more even, make carved pattern luminance unanimous on the glass simultaneously.
Referring to fig. 2 and 3, a flexible mounting block 6 is glued to the side of the circuit board 4 away from the buffer block 3, the flexible mounting block 6 is made of a flexible material, such as sponge and silica gel with high density, and two insertion holes 61 penetrate through the side of the flexible mounting block 6 parallel to the plane of the mirror.
The circuit connection end of circuit board 4 has distance inductor 7 through the connection of electric lines, distance inductor 7 is infrared sensor, infrared sensor includes the receiving block 71 of received signal and transmits the output block 72 of received signal, receiving block 71 and output block 72 respectively with two jack 61 interference fit of flexible mounting piece 6, the position of two jack 61 that receiving block 71 and output block 72 installed on flexible mounting piece 6 can be exchanged, and the induction end of receiving block 71 and output block 72 all sets up outward towards the mirror.
The working principle of the infrared sensor is as follows: because the receiving block 71 and the output block 72 are installed on the same plane, and the sensing ends of the receiving block 71 and the output block 72 are oriented in the same direction, infrared light is emitted by the output block 72, when the infrared light encounters an obstacle, diffuse reflection is generated, the infrared light after the diffuse reflection is reflected in different directions, and under the condition that no shielding exists, when the infrared light reflected to the sensing end of the receiving block 71 reaches a certain amount, the circuit board 4 is triggered to work.
Referring to fig. 1 to 3, when a clamping block 21 of a mounting box 2 is clamped with a clamping groove 11, a bump 22 is abutted against a connecting frame 1, and a screw is in threaded connection with a main threaded hole 12 and an auxiliary threaded hole 23 to mount the mounting box 2, a buffer block 3 presses a circuit board 4, so that the circuit board 4 presses a light guide plate 5 to abut against a glass layer of a mirror, and the display of numbers or patterns on the mirror on the light guide plate 5 is clearer, and similarly, the circuit board 4 presses a flexible mounting block 6 to abut against the glass layer of the mirror, which is beneficial to shortening the direct gap between the flexible mounting block 6 and the mirror, and reduces the condition that infrared rays emitted by an output block 72 are reflected to a sensing end of a receiving block 71 by generating partial diffuse reflection to the glass layer, so as to improve the sensitivity of infrared sensor sensing, and simultaneously, a large amount of infrared rays of the output block 72 are transmitted outside the glass, so that a large amount of reflected infrared light is transmitted to the sensing end of the receiving block 71 through the glass layer of the mirror to trigger the circuit board 4 to operate.
Specifically, through setting up flexible mounting piece 6 and jack 61, utilize apart from inductor 7 and jack 61 interference fit, because flexible mounting piece 6 is made for flexible material, it is simple and convenient apart from inductor 7's installation.
During the use, through gluing light guide plate 5 and circuit board 4, the lamp ball 41 of circuit board 4 simultaneously accomodates in accomodating the groove, and then will receive piece 71 and output block 72 and install respectively in two jacks 61 of flexible mounting piece 6, then glue flexible mounting piece 6 and circuit board 4. Then install buffer block 3 and circuit board 4 respectively in mounting box 2, and then install mounting box 2 in linking frame 1, make flexible mounting block 6 support tightly with the mirror to reduce the clearance between the two, improve the sensitivity apart from inductor 7, through appointed distance response, when human or human hand are close to apart from inductor 7, alright trigger apart from inductor 7 for light guide plate 5 demonstrates specific digit or pattern, if: temperature, moderate degree, time, weather condition etc. through the operation that triggers light guide plate 5 apart from inductor 7, be favorable to reducing the condition of mirror glass layer refraction effect or interior fog interference of bathroom, improve the convenience that people used.
The embodiment of the present invention is not limited to this, according to the above-mentioned content of the present invention, the common technical knowledge and the conventional means in the field are utilized, without departing from the basic technical idea of the present invention, the present invention can also make other modifications, replacements or combinations in various forms, all falling within the protection scope of the present invention.

Claims (7)

1. A distance sensing display mounting structure is characterized in that: the mirror comprises a mounting box connected with a mirror glass layer, wherein the mounting box is provided with a circuit board, the circuit board is connected with a luminous piece arranged towards the mirror glass layer, the circuit board is connected with a flexible mounting block abutted against a mirror, the flexible mounting block is connected with a distance sensor connected with the circuit board, and a sensing end of the distance sensor faces the outside of the mirror.
2. A distance sensing display mounting structure according to claim 1, wherein: the distance sensor is an infrared sensor, the infrared sensor comprises a receiving block and an output block, a plurality of jacks are communicated through the flexible mounting block, and the receiving block and the output block are in interference fit with the jacks respectively.
3. A distance sensing display mounting structure according to claim 1, wherein: a buffer block is arranged in the mounting box, and the circuit board is connected with the buffer block; when the mounting box is connected with the mirror, the buffer block extrudes the circuit board until the flexible mounting block and the mirror are mutually abutted.
4. A distance sensing display mounting structure according to claim 1, wherein: the light-emitting part comprises a light guide plate connected with the circuit board, the side face of the light guide plate, facing the circuit board, is provided with a containing groove, and the circuit board is connected with a lamp ball contained in the containing groove.
5. A distance sensing display mounting structure according to claim 1, wherein: the mounting box is detachably connected with the connecting frame.
6. A distance sensing display mounting structure according to claim 5, wherein: the side of mounting box is protruding to have the fixture block, the passageway inner wall of carriage is seted up and is supplied the draw-in groove of fixture block joint, the carriage links up threaded hole, the side arch of mounting box has the lug, the lug links up threaded hole, work as the fixture block with during the draw-in groove joint, the lug with the carriage butt, just threaded hole with threaded hole is just right to main, the screw with threaded hole and threaded hole are connected.
7. A distance sensing display mounting structure according to claim 1, wherein: a plurality of wire grooves are arranged on the side face of the mounting box in a penetrating mode, and the wire grooves are communicated with a box opening of the mounting box.
CN202020073385.5U 2020-01-14 2020-01-14 Distance sensing display mounting structure Active CN211319622U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020073385.5U CN211319622U (en) 2020-01-14 2020-01-14 Distance sensing display mounting structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020073385.5U CN211319622U (en) 2020-01-14 2020-01-14 Distance sensing display mounting structure

Publications (1)

Publication Number Publication Date
CN211319622U true CN211319622U (en) 2020-08-21

Family

ID=72058630

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020073385.5U Active CN211319622U (en) 2020-01-14 2020-01-14 Distance sensing display mounting structure

Country Status (1)

Country Link
CN (1) CN211319622U (en)

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