CN216447813U - Embedded touch all-in-one machine - Google Patents

Embedded touch all-in-one machine Download PDF

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Publication number
CN216447813U
CN216447813U CN202122313721.6U CN202122313721U CN216447813U CN 216447813 U CN216447813 U CN 216447813U CN 202122313721 U CN202122313721 U CN 202122313721U CN 216447813 U CN216447813 U CN 216447813U
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touch
fixedly connected
heat dissipation
strip
bullet
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CN202122313721.6U
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冯庆宏
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Shanghai Jinggong Technology Co ltd
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Shanghai Jinggong Technology Co ltd
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Abstract

The utility model relates to the technical field of touch integrated machines, and discloses an embedded touch integrated machine which comprises a touch integrated machine body, wherein the bottom of the touch integrated machine body is fixedly and movably connected with an adjusting mechanism, the outside of the touch integrated machine body is movably connected with a heat dissipation assembling mechanism, one end of the heat dissipation assembling mechanism is hinged with the adjusting mechanism, the adjusting mechanism comprises a supporting plate, two sides of the top of the supporting plate are fixedly connected with side plates, two opposite surfaces of the two side plates are respectively provided with a limiting chute, a plurality of clamping cavities are respectively arranged in the two limiting chutes, two supporting bars are movably connected between the two limiting chutes, one ends of the two supporting bars, far away from the limiting chutes, are respectively provided with a hinged fixed block, and the two hinged fixed blocks are fixedly connected with the outer side wall of the heat dissipation assembling mechanism. The embedded touch all-in-one machine has the advantages of adjustable angle, convenience in use and the like, and solves the problem that the existing embedded touch all-in-one machine is limited in use after being fixed.

Description

Embedded touch all-in-one machine
Technical Field
The utility model relates to the technical field of touch integrated machines, in particular to an embedded touch integrated machine.
Background
The touch all-in-one machine is composed of advanced touch screens, a mainboard, a memory, a hard disk, a display card and other electronic components, has no difference with the working principle of the traditional PC, can realize public information inquiry, advertisement display, media interaction, conference content display, offline experience shop commodity display and the like according to the size of a touch screen body and by matching with software, can realize specific requirements of fingerprint attendance, card swiping, printing and the like by matching with peripherals such as a fingerprint instrument, a scanner, a card reader, a micro printer and the like, is generally different from an electronic whiteboard, and can realize more functions.
The touch all-in-one machine generally comprises an exposed type touch all-in-one machine and an embedded type touch all-in-one machine, when the embedded type touch all-in-one machine is installed, the whole touch all-in-one machine is generally directly fixed on an operation table, however, in the actual use process of a worker, due to the influence of factors such as a wire passing line and the height of an individual, the fixed embedded type touch all-in-one machine is inconvenient to use of the worker, and therefore an embedded type touch all-in-one machine is needed urgently.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
Aiming at the defects of the prior art, the utility model provides an embedded touch all-in-one machine which has the advantages of adjustable angle, convenience in use and the like and solves the problem that the existing embedded touch all-in-one machine is limited in use after being fixed.
(II) technical scheme
In order to achieve the purpose, the utility model provides the following technical scheme: an embedded touch all-in-one machine comprises a touch all-in-one machine body, wherein the bottom of the touch all-in-one machine body is fixedly and movably connected with an adjusting mechanism, the outside of the touch all-in-one machine body is movably connected with a heat dissipation assembling mechanism, and one end of the heat dissipation assembling mechanism is hinged with the adjusting mechanism;
the adjusting mechanism comprises a supporting plate, side plates are fixedly connected to two sides of the top of the supporting plate, limiting sliding grooves are formed in opposite surfaces of the two side plates, a plurality of clamping cavities are formed in the two limiting sliding grooves, two supporting strips are movably connected between the two limiting sliding grooves, hinged fixing blocks are arranged at one ends, far away from the limiting sliding grooves, of the two supporting strips, and the two hinged fixing blocks are fixedly connected with the outer side wall of the heat dissipation assembly mechanism;
the heat dissipation assembly devices include the assembly frame, the embedded groove has been seted up to the inside of assembly frame, the inside wall fixedly connected with stay of embedded groove, the air current notch has been seted up on the lateral wall of stay, the fixed radiator-grid that even has of interior bottom of embedded groove, the top swing joint of assembly frame has the blank holder strip.
Preferably, two articulated fixed block fixed connection is in the side that two looks of the lateral wall of assembly frame deviate from, it is articulated each other between articulated fixed block and the support bar.
Because articulated each other between fixed block and the support bar is articulated, fixed connection between articulated fixed block and the assembly frame, consequently, the support bar can not influence the stability of articulated fixed block when rotating the removal for articulated fixed block is more stable supports the regulation to the assembly frame.
Preferably, two fixedly connected with aversion strip between the support bar, the both ends of aversion strip extend in two spacing spouts, sliding connection between the both ends of aversion strip and two spacing spouts.
Spacing spout carries on spacingly to the aversion strip, and the aversion strip drives two support bars synchronous sliding when sliding in spacing spout to make the lift of heat dissipation assembly devices more stable.
Preferably, the clamping cavities are uniformly arranged in the two limiting sliding grooves respectively, and the clamping cavities in the two limiting sliding grooves are symmetrically arranged one by one.
Preferably, the chamber of playing has been seted up to the inside of aversion strip, the inside one end swing joint in chamber of playing has bullet pole one, the inside other end swing joint in chamber of playing has bullet pole two, the shrink chamber has been seted up to the one end that is close to bullet chamber middle part department on the bullet pole two, the one end fixedly connected with inserted bar that is close to bullet chamber middle part department on the bullet pole one, the cover is equipped with the spring on the lateral wall of inserted bar, sliding connection between shrink chamber and the inserted bar, the both ends of spring respectively with play the pole one and play the mutual overlap joint between the pole two.
One end of the first elastic rod and the second elastic rod, which are far away from the spring, extend towards the two ends of the displacement strip and penetrate through the displacement strip and the clamping cavity to be clamped with each other, when the lifting height of the heat dissipation assembly mechanism is adjusted, the displacement strip needs to be fixed, so that the support bar can stably support the heat dissipation assembly mechanism, and the clamping cavity is not arranged in one part of the limiting sliding groove, therefore, a worker can directly pull up the heat dissipation assembly mechanism embedded between the two limiting sliding grooves until the first elastic rod and the second elastic rod are clamped with the first two clamping cavities in the outer end of the displacement strip and the limiting sliding groove, and the support bar is fixed.
Preferably, the outer side wall of the shifting strip is provided with an opening and closing notch, the outer side walls, close to the spring, of the first elastic rod and the second elastic rod are fixedly connected with push-pull plates, the push-pull plates penetrate through the opening and closing notch and extend to the outer part of the opening and closing notch, and the push-pull plates are connected with the opening and closing notch in a sliding mode.
The two push-pull plates are pinched to reduce the distance between the two push-pull plates, the spring contracts, the two push-pull plates drive the elastic rod I and the elastic rod II to stretch into the elastic cavity, the elastic rod I and the elastic rod II are separated from the clamping cavity, and the supporting bar can be moved to be convenient to adjust and fix.
Preferably, the bottom of the blank holder strip is fixedly connected with a side frame, the part of the bottom of the blank holder strip, which is positioned in the side frame, is fixedly connected with a soft adhesive tape, the tops of the assembly frame and the blank holder strip are both provided with threaded holes, and the internal threads of the threaded holes are screwed with bolts.
The touch all-in-one machine body is placed into the assembling frame, the side frame is embedded between the assembling frame and the touch all-in-one machine body, the soft rubber strip presses the top screen frame of the touch all-in-one machine body, and the assembling frame and each threaded hole in the edge pressing strip are connected in a screwed mode through bolts, so that the touch all-in-one machine body is pressed and fixed.
Compared with the prior art, the utility model provides an embedded touch all-in-one machine, which has the following beneficial effects:
1. the embedded touch integrated machine is provided with an adjusting mechanism, the touch integrated machine body is arranged in a heat dissipation assembly mechanism, the hinged fixed blocks on the supporting bars are hinged with the heat dissipation assembly mechanism, the hinged fixed blocks are fixedly connected with the heat dissipation assembly mechanism, the adjusting mechanism and the heat dissipation assembly mechanism are hinged with each other, when the embedded touch integrated machine is not used, the two supporting bars are pulled towards one end away from the clamping cavity, the heat dissipation assembly mechanism can descend along with the movement of the supporting bars until the heat dissipation assembly mechanism is completely embedded between the two side plates to achieve the purpose of storage, when the embedded touch integrated machine is used, the two supporting bars are pushed towards one end close to the clamping cavity, the heat dissipation assembly mechanism can ascend along with the movement of the supporting bars, at the moment, the supporting bars are continuously pushed and pulled back and forth, the inclination angle of the heat dissipation assembly mechanism can be adjusted so as to be suitable for workers, light rays are reduced, The influence of factors such as the height of a worker on the device used by the worker improves the working efficiency.
2. This embedded touch all-in-one, through being provided with heat dissipation assembly devices, put into the embedded groove with touch all-in-one body, the embedded groove just in time blocks touch all-in-one body, because touch all-in-one body often can produce the heat when using and gather, the fixing device of current touch all-in-one body wraps up touch all-in-one body completely, the heat dissipation difficulty, and the radiator-grid among the device can effectively dispel the heat to the bottom of touch all-in-one body, and the air current notch can make the heat that touch all-in-one body side produced more smooth along with the air current circulation dispel the heat to radiator-grid department, can effectively dispel the heat the protection to touch all-in-one body, improve the life of touch all-in-one body.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic cross-sectional view of the side view of the expanded state of the present invention;
FIG. 3 is a schematic cross-sectional view of the side view of the present invention in a retracted state;
FIG. 4 is a schematic view of the backside structure of the present invention;
FIG. 5 is an enlarged view of the structure at A in FIG. 4 according to the present invention;
FIG. 6 is an enlarged view of the structure at B in FIG. 4 according to the present invention;
FIG. 7 is a partial perspective view of the heat sink assembly mechanism of the present invention;
FIG. 8 is a partial perspective view of the heat sink assembly mechanism of the present invention;
FIG. 9 is a schematic side sectional view of the heat dissipating assembly of the present invention.
Wherein: 1. a touch all-in-one machine body; 2. an adjustment mechanism; 201. a support plate; 202. a side plate; 203. a limiting chute; 204. a card cavity; 205. a supporting strip; 206. the fixed block is hinged; 207. a shift bar; 208. a bullet cavity; 209. a first elastic rod; 210. a second elastic rod; 211. a contracting cavity; 212. inserting a rod; 213. a spring; 214. opening and closing the notch; 215. a push-pull plate; 3. a heat dissipation assembly mechanism; 301. assembling a frame; 302. a groove is embedded; 303. a stay; 304. an airflow slot; 305. a heat-dissipating web; 306. edge pressing strips; 307. a side frame; 308. a soft adhesive tape; 309. a threaded hole; 310. and (4) bolts.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-9, an embedded touch all-in-one machine comprises a touch all-in-one machine body 1, wherein the bottom of the touch all-in-one machine body 1 is fixedly and movably connected with an adjusting mechanism 2, the exterior of the touch all-in-one machine body 1 is movably connected with a heat dissipation assembly mechanism 3, and one end of the heat dissipation assembly mechanism 3 is hinged with the adjusting mechanism 2;
the adjusting mechanism 2 comprises a supporting plate 201, both sides of the top of the supporting plate 201 are fixedly connected with side plates 202, the opposite surfaces of the two side plates 202 are respectively provided with a limiting sliding groove 203, a plurality of clamping cavities 204 are respectively arranged in the two limiting sliding grooves 203, two supporting bars 205 are movably connected between the two limiting sliding grooves 203, one ends of the two supporting bars 205, which are far away from the limiting sliding grooves 203, are respectively provided with a hinged fixed block 206, and the two hinged fixed blocks 206 are fixedly connected with the outer side wall of the heat dissipation assembly mechanism 3;
the heat dissipation assembly devices 3 include assembly frame 301, and embedded groove 302 has been seted up to assembly frame 301's inside, and the inside wall fixedly connected with stay 303 of embedded groove 302 has seted up air current notch 304 on the lateral wall of stay 303, and the interior bottom of embedded groove 302 is fixed even has radiator-grid 305, and assembly frame 301's top swing joint has blank holder 306.
Through the technical scheme, the plurality of card cavities 204 in the limiting sliding groove 203 are arranged at the hinged positions of the deviation adjusting mechanism 2 and the heat dissipation assembly mechanism 3, namely, the card cavities 204 are not arranged at one part of the other end, different from the card cavities 204, in the card cavities 204, after the touch all-in-one machine body 1 is arranged in the heat dissipation assembly mechanism 3, because the hinged fixed blocks 206 on the supporting strips 205 are hinged with the heat dissipation assembly mechanism 3 and the hinged fixed blocks 206 are fixedly connected with the heat dissipation assembly mechanism 3, the adjusting mechanism 2 is hinged with the heat dissipation assembly mechanism 3, when the touch all-in-one machine body is not used, the two supporting strips 205 are pulled towards one end far away from the card cavities 204, the heat dissipation assembly mechanism 3 can descend along with the movement of the supporting strips 205 until the heat dissipation assembly mechanism 3 is completely embedded between the two side plates 202 to achieve the purpose of storage, when the touch all-in-one machine is used, the two supporting strips 205 are pushed towards one end close to the card cavities 204, the heat dissipation assembly devices 3 can rise along with the movement of the supporting bars 205, and at the moment, the supporting bars 205 are continuously pushed and pulled back and forth, so that the inclination angle of the heat dissipation assembly devices 3 can be adjusted, the heat dissipation assembly devices are convenient to adapt to the use of workers, the influence of factors such as light, the height of the workers on the use devices of the workers is reduced, and the working efficiency is improved.
Put into embedded groove 302 with touch all-in-one body 1, embedded groove 302 just in time blocks touch all-in-one body 1, because touch all-in-one body 1 often can produce the heat when using and gather, current touch all-in-one body 1's fixing device wraps up touch all-in-one body 1 completely, the heat dissipation difficulty, and radiator-grid 305 among the device can effectively dispel the heat to the bottom of touch all-in-one body 1, and air current notch 304 can make the heat that touch all-in-one body 1 side produced more smooth along with the air current circulate to radiator-grid 305 department and dispel the heat, can effectively dispel the heat the protection to touch all-in-one body 1, improve the life of touch all-in-one body 1.
Specifically, the two hinge fixing blocks 206 are fixedly connected to two opposite side surfaces of the outer side wall of the assembly frame 301, and the hinge fixing blocks 206 are hinged to the supporting bars 205.
Through the technical scheme, because articulated fixed block 206 and support bar 205 are articulated each other, fixed connection between articulated fixed block 206 and the assembly frame 301, consequently, support bar 205 can not influence the stability of articulated fixed block 206 when the rotation removes for articulated fixed block 206 supports the regulation to assembly frame 301 more stably.
Specifically, a displacement bar 207 is fixedly connected between the two support bars 205, two ends of the displacement bar 207 extend into the two limit sliding grooves 203, and two ends of the displacement bar 207 are slidably connected with the two limit sliding grooves 203.
Through the technical scheme, the limiting sliding groove 203 limits the displacement strip 207, and the displacement strip 207 drives the two supporting strips 205 to synchronously slide when sliding in the limiting sliding groove 203, so that the heat dissipation assembly mechanism 3 is more stable in lifting.
Specifically, the plurality of card cavities 204 are respectively and uniformly arranged in the two limiting sliding grooves 203, and the card cavities 204 in the two limiting sliding grooves 203 are arranged in a one-to-one symmetrical manner.
Specifically, bullet chamber 208 has been seted up to the inside of shift bar 207, the inside one end swing joint in bullet chamber 208 has bullet pole a 209, the inside other end swing joint in bullet chamber 208 has bullet pole two 210, the one end that is close to bullet chamber 208 middle section department on bullet pole two 210 has seted up shrink chamber 211, be close to the one end fixedly connected with inserted bar 212 of bullet chamber 208 middle section department on bullet pole a 209, the cover is equipped with spring 213 on the lateral wall of inserted bar 212, sliding connection between shrink chamber 211 and the inserted bar 212, spring 213's both ends respectively with bullet pole a 209 and play overlap joint each other between the pole two 210.
Through the technical scheme, one ends of the first elastic rod 209 and the second elastic rod 210, which are far away from the spring 213, extend towards the two ends of the displacement bar 207 and penetrate through the displacement bar 207 to be clamped with the clamping cavities 204, when the lifting height of the heat dissipation assembly mechanism 3 is adjusted, the displacement bar 207 needs to be fixed, so that the support bar 205 stably supports the heat dissipation assembly mechanism 3, and as the clamping cavities 204 are not arranged on one part of the limit sliding groove 203, a worker can directly pull up the heat dissipation assembly mechanism 3 embedded between the two limit sliding grooves 203 until the ends of the first elastic rod 209 and the second elastic rod 210, which are positioned outside the displacement bar 207, are clamped with the first two clamping cavities 204 in the limit sliding groove 203, so that the support bar 205 is fixed.
Specifically, an opening and closing notch 214 is formed in the outer side wall of the shift bar 207, push-pull plates 215 are fixedly connected to the outer side walls, close to the spring 213, of the first elastic rod 209 and the second elastic rod 210, the two push-pull plates 215 penetrate through the opening and closing notch 214 and extend to the outer portion of the opening and closing notch 214, and the two push-pull plates 215 are connected with the opening and closing notch 214 in a sliding mode.
Through the technical scheme, the two push-pull plates 215 are pinched, so that the distance between the two push-pull plates 215 is reduced, the spring 213 is contracted, the two push-pull plates 215 drive the first elastic rod 209 and the second elastic rod 210 to extend and retract into the elastic cavity 208, the first elastic rod 209 and the second elastic rod 210 are separated from the clamping cavity 204, and the support bar 205 can be moved so as to be adjusted and fixed.
Specifically, the bottom fixedly connected with side frame 307 of blank holder 306, the part fixedly connected with soft adhesive tape 308 that blank holder 306 bottom is located side frame 307, threaded hole 309 has all been seted up at the top of assembly frame 301 and blank holder 306, and the internal thread of threaded hole 309 has connect bolt 310 soon.
Through the technical scheme, the touch all-in-one machine body 1 is placed in the assembly frame 301, the side frame 307 is embedded between the assembly frame 301 and the touch all-in-one machine body 1, the soft rubber strip 308 presses the top screen frame of the touch all-in-one machine body 1, and the assembly frame 301 and the edge pressing strip 306 are screwed in threaded holes 309 through the bolts 310 to complete the pressing and fixing of the touch all-in-one machine body 1.
When the touch all-in-one machine is used, the touch all-in-one machine body 1 is placed into the assembly frame 301, the side frame 307 is embedded between the assembly frame 301 and the touch all-in-one machine body 1, the soft rubber strip 308 presses the top screen frame of the touch all-in-one machine body 1, the threaded holes 309 in the assembly frame 301 and the threaded holes in the threaded strips 306 are screwed through the bolts 310 to complete pressing and fixing of the touch all-in-one machine body 1, the two push-pull plates 215 are pinched to enable the distance between the two push-pull plates 215 to be reduced, the springs 213 shrink, the two push-pull plates 215 drive the first elastic rod 209 and the second elastic rod 210 to stretch into the elastic cavity 208, the first elastic rod 209 and the second elastic rod 210 are separated from the clamping cavity 204, and the support bar 205 can be moved.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides an embedded touch all-in-one, includes touch all-in-one body (1), its characterized in that: the bottom of the touch all-in-one machine body (1) is fixedly and movably connected with an adjusting mechanism (2), the outside of the touch all-in-one machine body (1) is movably connected with a heat dissipation assembly mechanism (3), and one end of the heat dissipation assembly mechanism (3) is hinged with the adjusting mechanism (2);
the adjusting mechanism (2) comprises a supporting plate (201), side plates (202) are fixedly connected to two sides of the top of the supporting plate (201), limiting sliding grooves (203) are formed in opposite surfaces of the two side plates (202), a plurality of clamping cavities (204) are formed in the two limiting sliding grooves (203), two supporting strips (205) are movably connected between the two limiting sliding grooves (203), hinged fixing blocks (206) are arranged at one ends, far away from the limiting sliding grooves (203), of the two supporting strips (205), and the two hinged fixing blocks (206) are fixedly connected with the outer side wall of the heat dissipation assembly mechanism (3);
heat dissipation assembly devices (3) are including assembly frame (301), embedded groove (302) have been seted up to the inside of assembly frame (301), the inside wall fixedly connected with stay (303) of embedded groove (302), air current notch (304) have been seted up on the lateral wall of stay (303), the fixed radiator-grid (305) that even has of interior bottom of embedded groove (302), the top swing joint of assembly frame (301) has blank pressing strip (306).
2. The touch-sensitive integrated machine of claim 1, wherein: two articulated fixed block (206) fixed connection is on the side that two looks of lateral wall of assembly frame (301) deviate from, it is articulated each other between articulated fixed block (206) and support bar (205).
3. The touch-sensitive integrated machine of claim 1, wherein: two fixedly connected with shifts strip (207) between support bar (205), the both ends of shifting strip (207) extend in two spacing spout (203), sliding connection between the both ends of shifting strip (207) and two spacing spout (203).
4. The touch-sensitive integrated machine of claim 1, wherein: the plurality of the clamping cavities (204) are respectively and uniformly arranged in the two limiting sliding grooves (203), and the clamping cavities (204) in the two limiting sliding grooves (203) are symmetrically arranged one by one.
5. The touch-sensitive integrated machine of claim 3, wherein: bullet chamber (208) have been seted up to the inside of aversion strip (207), the inside one end swing joint in bullet chamber (208) has bullet pole one (209), the inside other end swing joint in bullet chamber (208) has bullet pole two (210), shrink chamber (211) have been seted up to the one end that is close to bullet chamber (208) middle section department on bullet pole two (210), be close to one end fixedly connected with inserted bar (212) of bullet chamber (208) middle section department on bullet pole one (209), the cover is equipped with spring (213) on the lateral wall of inserted bar (212), sliding connection between shrink chamber (211) and inserted bar (212), the both ends of spring (213) overlap each other between the both ends respectively with bullet pole one (209) and bullet pole two (210).
6. The touch-sensitive integrated machine of claim 5, wherein: the outer side wall of the displacement bar (207) is provided with an opening and closing notch (214), the outer side walls, close to the spring (213), of the elastic rod I (209) and the elastic rod II (210) are fixedly connected with push-pull plates (215), the push-pull plates (215) penetrate through the opening and closing notch (214) and extend to the outside of the opening and closing notch (214), and the push-pull plates (215) are connected with the opening and closing notch (214) in a sliding mode.
7. The touch-sensitive integrated machine of claim 1, wherein: the bottom fixedly connected with side frame (307) of blank holder strip (306), the part fixedly connected with soft adhesive tape (308) of blank holder strip (306) bottom position in side frame (307), threaded hole (309) has all been seted up at the top of assembly frame (301) and blank holder strip (306), the internal thread of threaded hole (309) has connect bolt (310) soon.
CN202122313721.6U 2021-09-24 2021-09-24 Embedded touch all-in-one machine Active CN216447813U (en)

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Application Number Priority Date Filing Date Title
CN202122313721.6U CN216447813U (en) 2021-09-24 2021-09-24 Embedded touch all-in-one machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122313721.6U CN216447813U (en) 2021-09-24 2021-09-24 Embedded touch all-in-one machine

Publications (1)

Publication Number Publication Date
CN216447813U true CN216447813U (en) 2022-05-06

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117420903A (en) * 2023-11-22 2024-01-19 深圳中视智能商显科技有限公司 Wall-mounted touch all-in-one machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117420903A (en) * 2023-11-22 2024-01-19 深圳中视智能商显科技有限公司 Wall-mounted touch all-in-one machine

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