A code scanning gun support

CN224771195UActive Publication Date: 2026-09-18SUZHOU HENGHE NEW AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202522422944.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-14
Publication Date
2026-09-18
Estimated Expiration
2035-11-14

AI Technical Summary

Technical Problem

[0003]本实用新型的目的是提供一种扫码枪支架,旨在解决现有技术中扫码枪支架不能自由调节高度和角度,导致使用不便的问题,且支架结构简单,成本低廉,操作方便,能够适应不同的工作环境和使用需求

Benefits of technology

[0008] Preferably, the cylindrical distance adjusting rod includes a cylindrical body. Three sets of slots are evenly distributed around the circumference of the cylindrical body. Three sets of top blocks are housed within the slots. The outer arc surfaces of the three sets of top blocks and the outer circumference of the cylindrical body form a set of cylindrical outer support surfaces. Two sets of cylindrical inner hole slots are also formed at both ends of the cylindrical body. Adjusting blocks are guided into these inner hole slots. One end of each adjusting block facing the center of the cylindrical body has a tapered surface with a narrowing. Both ends of the top blocks have inclined sliding surfaces that are slidably mounted outside the tapered surface. A set of spindles is also pivotally connected to the center of the cylindrical body. The two ends of the spindles are threadedly connected to the two sets of adjusting blocks, which are driven into position by the spindles. Since the movement is reversed, by turning the mandrel, the position of the two sets of adjusting blocks inserted into the cylindrical inner hole groove can be adjusted to drive the three sets of top blocks to push out of the outer periphery of the cylindrical body simultaneously. Then, when clamp body one and clamp body two are clamped outside the cylindrical distance adjusting rod one, the top block can be adjusted to protrude out of the cylindrical body first, and then clamp body one and clamp body two are clamped tightly outside the top block. When it is necessary to adjust the distance and angle at the same time, it is only necessary to turn the mandrel to retract the top block into the slot. At this time, clamp body one and clamp body two are adjusted in position and angle. After adjustment, turning the mandrel in the opposite direction again can tighten clamp body one and clamp body two again through the top block. Therefore, the adjustment is more convenient and the structure is also relatively simple.

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Abstract

The utility model provides a kind of code scanning gun support, it is related to a support structure, including base and through pull pin quick connection installation on base's sliding seat unit, be provided with inverted T section groove on base, sliding seat unit includes inverted T section block that is slidably installed into inverted T section groove, sliding seat unit further include the cylindrical height adjusting lever being positioned in the middle part of inverted T section block, the cylindrical distance adjusting lever one being vertically installed with cylindrical height adjusting lever by clamping body one, the cylindrical distance adjusting lever two being vertically installed with cylindrical distance adjusting lever one by clamping body two, the end of cylindrical distance adjusting lever two is fixed code scanning gun by bracing plate, the utility model aims at solving the problem that code scanning gun support cannot freely adjust height and angle in prior art, leading to inconvenient use, and support structure is simple, low in cost, convenient to operate, can adapt to different working environment and use demand.
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Description

Technical Field

[0001] This utility model relates to a support structure, and more particularly to a barcode scanner support. Background Technology

[0002] Most existing barcode scanner stands are fixed structures, unable to adjust their height and angle according to scanning needs, resulting in inconvenience and limiting scanning efficiency and operational flexibility. Meanwhile, existing adjustable stands on the market are often complex in structure and expensive. Therefore, there is an urgent need for a barcode scanner stand that is simple in structure, low in cost, and allows for easy adjustment of the barcode scanner's height and angle. Utility Model Content

[0003] The purpose of this utility model is to provide a barcode scanner bracket, which aims to solve the problem that the height and angle of the barcode scanner bracket in the prior art cannot be freely adjusted, resulting in inconvenience in use. Moreover, the bracket has a simple structure, low cost, and is easy to operate, and can adapt to different working environments and usage needs.

[0004] This utility model provides the following technical solution: A barcode scanner bracket includes a base and a slide unit that is quickly mounted on the base via pull pins. The base has an inverted T-shaped cross-section groove. The slide unit includes an inverted T-shaped cross-section block that is slidably mounted into the inverted T-shaped cross-section groove. Two sets of pull pins are provided and are symmetrically arranged on both sides of the inverted T-shaped cross-section block. Quick-connect holes are also provided on both sides of the inverted T-shaped cross-section block. The pull pins are used to insert into the base and position the inverted T-shaped cross-section block in the quick-connect holes to quickly position the inverted T-shaped cross-section block that slides into the inverted T-shaped cross-section groove. The positioning structure is simple and the installation is relatively convenient. The slide unit also includes a cylindrical height adjustment rod positioned in the middle of the inverted T-shaped cross-section block, a cylindrical distance adjustment rod one that is perpendicular to the cylindrical height adjustment rod through a clamping body one, and a cylindrical distance adjustment rod two that is perpendicular to the cylindrical distance adjustment rod one through a clamping body two. The end of the cylindrical distance adjustment rod two is fixed to the barcode scanner by a support plate. Thus, this barcode scanner bracket device can quickly assemble the sliding unit and base using inverted T-shaped cross-section blocks and inverted T-shaped cross-section grooves, and quickly position itself using pull-out pins. Furthermore, by adjusting the position of clamp one on the cylindrical height adjustment rod, the height of the components on the cylindrical distance adjustment rod can be quickly adjusted. Simultaneously, by adjusting the position of clamp two on the cylindrical distance adjustment rod, the position of the barcode scanner on the cylindrical distance adjustment rod can be quickly adjusted. Additionally, the rotation angle of clamp one and clamp two around the cylindrical height adjustment rod and cylindrical distance adjustment rod one can be controlled to quickly adjust the scanning angle of the barcode scanner. The overall structure is relatively simple, the adjustment is convenient, and the equipment adjustment cost is low.

[0005] Preferably, one end of the inverted T-shaped cross-section groove is also provided with a set of baffles for blocking the end of the inverted T-shaped cross-section block. When the inverted T-shaped cross-section block abuts against the baffle, it indicates that it has slid into place. At this time, the mating hole on the base can be connected with the quick-connect hole so that the pull pin can achieve quick positioning of the two.

[0006] Preferably, the clamp body has clamping openings at both ends for clamping the cylindrical height adjustment rod and the cylindrical distance adjustment rod, the opening directions of the two sets of clamping openings are arranged vertically, and they are locked and clamped by screws.

[0007] Preferably, the two ends of the clamp body 2 are provided with clamping slots 2 for clamping the cylindrical distance adjustment rod 1 and the tall cylindrical distance adjustment rod 1. The opening directions of the two sets of clamping slots 2 are arranged vertically and are locked and clamped by screws 2.

[0008] Preferably, the cylindrical distance adjusting rod includes a cylindrical body. Three sets of slots are evenly distributed around the circumference of the cylindrical body. Three sets of top blocks are housed within the slots. The outer arc surfaces of the three sets of top blocks and the outer circumference of the cylindrical body form a set of cylindrical outer support surfaces. Two sets of cylindrical inner hole slots are also formed at both ends of the cylindrical body. Adjusting blocks are guided into these inner hole slots. One end of each adjusting block facing the center of the cylindrical body has a tapered surface with a narrowing. Both ends of the top blocks have inclined sliding surfaces that are slidably mounted outside the tapered surface. A set of spindles is also pivotally connected to the center of the cylindrical body. The two ends of the spindles are threadedly connected to the two sets of adjusting blocks, which are driven into position by the spindles. Since the movement is reversed, by turning the mandrel, the position of the two sets of adjusting blocks inserted into the cylindrical inner hole groove can be adjusted to drive the three sets of top blocks to push out of the outer periphery of the cylindrical body simultaneously. Then, when clamp body one and clamp body two are clamped outside the cylindrical distance adjusting rod one, the top block can be adjusted to protrude out of the cylindrical body first, and then clamp body one and clamp body two are clamped tightly outside the top block. When it is necessary to adjust the distance and angle at the same time, it is only necessary to turn the mandrel to retract the top block into the slot. At this time, clamp body one and clamp body two are adjusted in position and angle. After adjustment, turning the mandrel in the opposite direction again can tighten clamp body one and clamp body two again through the top block. Therefore, the adjustment is more convenient and the structure is also relatively simple.

[0009] Preferably, both ends of the mandrel that extend out of the adjusting block are also connected to a screw handle to facilitate rotational adjustment.

[0010] The beneficial effects of this utility model are as follows: The purpose of this utility model is to solve the problem that the height and angle of the barcode scanner bracket cannot be freely adjusted in the existing technology, resulting in inconvenience in use. Moreover, the bracket has a simple structure, low cost, and is easy to operate, and can adapt to different working environments and usage needs. In specific operation, the sliding unit and the base can be quickly installed through the inverted T-shaped cross-section block and the inverted T-shaped cross-section groove, and quick positioning can be achieved by inserting the pull pin. Furthermore, the height of the components on the cylindrical distance adjustment rod can be quickly adjusted by adjusting the position of the clamp body one on the cylindrical height adjustment rod. At the same time, the position of the clamp body two on the cylindrical distance adjustment rod one can be quickly adjusted by adjusting the position of the barcode scanner on the cylindrical distance adjustment rod two. In addition, the rotation angle of the clamp body one and the clamp body two around the cylindrical height adjustment rod and the cylindrical distance adjustment rod one can be controlled to quickly adjust the scanning angle of the barcode scanner. Attached Figure Description

[0011] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 yes Figure 1 A structural diagram from another perspective; Figure 3 This is a cross-sectional view of the cylindrical distance adjustment rod 1 in Example 2; Figure 4 This is a side view of the cylindrical distance adjustment rod being installed inside the clamp. Figure 5 This is a side view of the cylindrical body with the top block inside; Figure 6 It is a cross-sectional view of three sets of top blocks protruding from the outer periphery of the cylindrical body; Markings in the diagram: 1. Base; 2. Pull pin; 3. Slide unit; 4. Barcode scanner; 5. Baffle; 31. Inverted T-shaped cross-section block; 32. Cylindrical height adjustment rod; 33. Clamp body one; 34. Cylindrical distance adjustment rod one; 35. Clamp body two; 36. Cylindrical distance adjustment rod two; 37. Support plate; 38. Screw one; 39. Screw two; 341. Cylindrical body; 342. Top block; 343. Cylindrical inner groove; 344. Adjustment block; 345. Conical surface; 346. Inclined sliding surface; 347. Mandrel; 348. Tightening handle. Detailed Implementation

[0012] Example 1 like Figure 1-2As shown, a barcode scanner bracket, in this embodiment, includes a base 1 and a slide unit 3 that is quickly mounted on the base 1 via pull pins 2. The base 1 has an inverted T-shaped cross-section groove. The slide unit 3 includes an inverted T-shaped cross-section block 31 that is slidably mounted into the inverted T-shaped cross-section groove. Two sets of pull pins 2 are provided and are symmetrically arranged on both sides of the inverted T-shaped cross-section block 31. Quick-connect holes are also provided on both sides of the inverted T-shaped cross-section block 31. The pull pins 2 are used to penetrate the base 1 and be positioned in the quick-connect holes to slide into the inverted T-shaped cross-section block 31. The inverted T-shaped cross-section block 31 in the groove is quickly positioned. The positioning structure is simple and the installation is relatively convenient. The slide unit 3 also includes a cylindrical height adjustment rod 32 positioned in the middle of the inverted T-shaped cross-section block 31, a cylindrical distance adjustment rod 34 that is perpendicular to the cylindrical height adjustment rod 32 through a clamp 33, and a cylindrical distance adjustment rod 36 that is perpendicular to the cylindrical distance adjustment rod 34 through a clamp 35. The end of the cylindrical distance adjustment rod 36 is fixed to the barcode scanner 4 through a support plate 37. Thus, the barcode scanner 4 bracket device can quickly install the sliding unit 3 and the base 1 through the inverted T-shaped cross-section block 31 and the inverted T-shaped cross-section groove, and quickly position it by inserting the pull pin 2. Furthermore, by adjusting the position of clamp 1 33 on the cylindrical height adjustment rod 32, the height of the cylindrical distance adjustment rod 1 34 and its components can be quickly adjusted. At the same time, by adjusting the position of clamp 2 35 on the cylindrical distance adjustment rod 1 34, the position of the barcode scanner 4 on the cylindrical distance adjustment rod 2 36 can be quickly adjusted. In addition, the rotation angle of clamp 1 33 and clamp 2 35 around the cylindrical height adjustment rod 32 and the cylindrical distance adjustment rod 1 34 can be controlled to quickly adjust the scanning angle of the barcode scanner 4. The overall structure is relatively simple, the adjustment is relatively convenient, and the equipment adjustment cost is also low.

[0013] One end of the inverted T-shaped cross-section groove is also provided with a set of baffles 5 for blocking the end of the inverted T-shaped cross-section block 31. When the inverted T-shaped cross-section block 31 abuts against the baffles 5, it indicates that it has slid into place. At this time, the mating hole opened on the base 1 can be connected with the quick-connect hole so that the pull pin 2 can achieve quick positioning of the two.

[0014] The clamp body 33 has clamping slots at both ends for clamping the cylindrical height adjustment rod 32 and the cylindrical distance adjustment rod 34. The opening directions of the two sets of clamping slots are arranged vertically and are locked by screws 38.

[0015] The two ends of the clamp body 35 are provided with clamping slots 2 for clamping the cylindrical distance adjustment rod 1 34 and the tall cylindrical distance adjustment rod 1 34. The opening direction of the two sets of clamping slots 2 is arranged vertically, and they are locked and clamped by screws 2 39.

[0016] Example 2 like Figure 4-6As shown, a barcode scanner bracket, in this embodiment, includes a cylindrical distance adjustment rod 34 comprising a cylindrical body 341. Three sets of slots are evenly distributed around the circumference of the cylindrical body 341, and three sets of top blocks 342 are housed within the slots. The outer arc surfaces of the three sets of top blocks 342 and the outer periphery of the cylindrical body 341 form a cylindrical outer support surface. Two sets of cylindrical inner slots 343 are also formed at both ends of the cylindrical body 341. Adjustment blocks 344 are guided into the cylindrical inner slots 343. One end of the adjustment block 344 facing the center of the cylindrical body 341 has a tapered surface 345 with a narrowed opening. The two ends of the top blocks 342 are provided with inclined sliding surfaces 346 that are slidably mounted outside the tapered surface 345. A set of spindles 347 is also pivotally connected to the center of the cylindrical body 341. The two ends of the spindles 347 are threadedly connected to the two sets of adjustment blocks 344. The two sets of adjustment blocks 344 are connected to the spindles 344... 7. Driven to move in the opposite direction, by turning the mandrel 347, the position of the two sets of adjusting blocks 344 extending into the cylindrical inner hole groove 343 can be adjusted to drive the three sets of top blocks 342 to push out of the outer periphery of the cylindrical body 341 simultaneously. Then, when the clamping body 1 33 and clamping body 2 35 are clamped outside the cylindrical distance adjusting rod 1 34, the top block 342 can be adjusted to protrude out of the cylindrical body 341 first, and then the clamping body 1 33 and clamping body 2 35 are clamped tightly outside the top block 342. When it is necessary to adjust the distance and angle at the same time, it is only necessary to turn the mandrel 347 to retract the top block 342 into the slot. At this time, the position and angle of the clamping body 1 33 and clamping body 2 35 are adjusted. After adjustment, the mandrel 347 is turned in the opposite direction again, and the clamping body 1 33 and clamping body 2 35 can be tensioned again by the top block 342. Therefore, the adjustment is more convenient and the structure is also simpler.

[0017] Both ends of the spindle 347 protrude from the ends of the adjusting block 344 and are connected to a screw handle 348 for easy rotational adjustment.

[0018] The working principle of this utility model is as follows: The purpose of this utility model is to solve the problem that the height and angle of the barcode scanner 4 bracket cannot be freely adjusted in the existing technology, resulting in inconvenience in use. Moreover, the bracket has a simple structure, low cost, and is easy to operate, and can adapt to different working environments and usage needs. In specific operation, the slide unit 3 and the base 1 can be quickly installed through the inverted T-shaped cross-section block 31 and the inverted T-shaped cross-section groove, and quick positioning can be achieved by inserting the pull pin 2. Then, by adjusting the position of the clamp 1 33 on the cylindrical height adjustment rod 32, the height of the cylindrical distance adjustment rod 1 34 and its components can be quickly adjusted. At the same time, by adjusting the position of the clamp 2 35 on the cylindrical distance adjustment rod 1 34, the position of the barcode scanner 4 on the cylindrical distance adjustment rod 2 36 and its components can be quickly adjusted. At the same time, the rotation angle of the clamp 1 33 and the clamp 2 35 around the cylindrical height adjustment rod 32 and the cylindrical distance adjustment rod 1 34 can be controlled to quickly adjust the scanning angle of the barcode scanner 4.

[0019] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A barcode scanner bracket, characterized in that, The device includes a base and a slide unit that is quickly mounted on the base via pull pins. The base has an inverted T-shaped cross-section groove. The slide unit includes an inverted T-shaped cross-section block that is slidably mounted into the inverted T-shaped cross-section groove. Two sets of pull pins are provided and are symmetrically arranged on both sides of the inverted T-shaped cross-section block. Quick-connect holes are also provided on both sides of the inverted T-shaped cross-section block. The pull pins are used to insert into the base and be positioned in the quick-connect holes. The slide unit also includes a cylindrical height adjustment rod positioned in the middle of the inverted T-shaped cross-section block, a cylindrical distance adjustment rod one that is perpendicular to the cylindrical height adjustment rod through a clamping body one, and a cylindrical distance adjustment rod two that is perpendicular to the cylindrical distance adjustment rod one through a clamping body two. The end of the cylindrical distance adjustment rod two is fixed to the barcode scanner by a support plate.

2. The code scanning gun support of claim 1, wherein, One end of the inverted T-shaped cross-section groove is also provided with a set of baffles for blocking the end of the inverted T-shaped cross-section block.

3. The code scanning gun support of claim 1, wherein, The clamp body has two clamping openings at both ends for clamping the cylindrical height adjustment rod and the cylindrical distance adjustment rod. The opening directions of the two clamping openings are arranged vertically and are locked by screws.

4. The code scanning gun support of claim 1, wherein, The two ends of the clamp body are provided with clamping slots for clamping the cylindrical distance adjustment rod and the tall cylindrical distance adjustment rod. The opening direction of the two sets of clamping slots is arranged vertically and they are locked and clamped by screws.

5. The code scanning gun support of claim 1, wherein, The cylindrical distance adjustment rod includes a cylindrical body with three sets of slots evenly distributed around its circumference. Three sets of top blocks are housed within these slots. The outer arc surfaces of the top blocks and the outer circumference of the cylindrical body form a cylindrical outer support surface. Two sets of cylindrical inner slots are also formed at both ends of the cylindrical body. Adjustment blocks are guided into these inner slots. One end of each adjustment block facing the center of the cylindrical body has a tapered surface with a narrow opening. The two ends of each top block have inclined sliding surfaces that are slidably mounted outside the tapered surface. A set of spindles is also connected to the center of the cylindrical body. The two ends of the spindles are threadedly connected to the two sets of adjustment blocks, which are driven by the spindles to move in opposite directions.

6. The code scanning gun support of claim 5, wherein, Both ends of the mandrel that extend out of the end of the adjusting block are also connected to a screw handle.