Digital sensor transmission device

By designing adjustment devices and auxiliary devices in the digital sensor transmission device, the problem of loosening and falling off when the digital sensor is connected to the transmission line for a long time is solved, the connection stability and reliability of data transmission are improved, and the working efficiency is improved by storing the excess transmission line.

CN222915284UActive Publication Date: 2025-05-27SHANXI QIANSHI TECH CO LTD
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Patent Information

Application Number
CN202421930543.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-10
Publication Date
2025-05-27
Estimated Expiration
2034-08-10

AI Technical Summary

Technical Problem

When the digital sensor is connected to the transmission line for a long time, loosening will occur at the interface, causing the transmission line to fall off, affecting the analysis and processing efficiency of data transmission and logistics transmission information.

Method used

A digital sensor transmission device is designed, including a regulating device and an auxiliary device. The adjustment device improves the connection stability between the transmission line and the digital sensor by fixing components such as clamps, connecting rods, adjustment rods and screws. The auxiliary device stores unnecessary transmission lines through components such as storage frames, springs and elastic belts to avoid sagging and wear.

Benefits of technology

The adjustment device improves the connection stability of the digital sensor and the transmission line, avoids loosening and falling off, and ensures the reliability of data transmission. The auxiliary device effectively stores unnecessary transmission lines, protects the line body, and improves transmission stability and working efficiency.

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Abstract

The utility model relates to the field of digital sensors, in particular to a digital sensor transmission device. Comprising a digital sensor body, one side of the digital sensor body is electrically connected with a transmission line, the arc surface of the transmission line is provided with an adjusting device, the adjusting device comprises a fixing clamping opening, the fixing clamping opening is fixedly connected with the transmission line, and the two sides of the inner wall of the fixing clamping opening are fixedly connected with fixing blocks. The sides, close to each other, of the two fixing blocks are fixedly connected with the same connecting rod. According to the digital sensor transmission device provided by the utility model, when the transmission line is connected with the digital sensor, the connection stability between the transmission line and the digital sensor can be improved through the adjusting device, so that the digital sensor and the transmission line can be prevented from loosening through the adjusting device; therefore, the transmission effect of data transmission of the digital sensor through the transmission line can be improved through the adjusting device.
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Description

Technical Field

[0001] The utility model relates to the field of digital sensors, in particular to a digital sensor transmission device. Background Art

[0002] A digital sensor is a device that can convert physical quantities such as temperature, pressure, and light intensity into digital signals for output. Digital sensors can convert the collected analog signals into digital form, and these digital signals can be directly processed and analyzed by a computer or a microprocessor.

[0003] The utility model with the publication number CN216246424U discloses a digital sensor. The key points of its technical solution are as follows: it includes a sensor body, a fixed connection frame, a connecting rod, a fixed block, a transverse rod, a first wire winding device, and a second wire winding device. A screw hole is provided on the side of the sensor body, the fixed connection frame is fixed to the sensor body by screws, both ends of the connecting rod pass through the fixed connection frame and the fixed block to fix them, the transverse rod perpendicularly passes through the connecting rod and penetrates into the fixed block, and the first wire winding device and the second wire winding device are respectively fixed at both ends of the transverse rod. The utility model designs a digital sensor with a wire winder, which can regularly store the external redundant wires, prevent damage caused by entanglement, and reduce the maintenance difficulty.

[0004] Regarding the above related content, there are the following technical defects: The digital sensor for logistics transportation can convert the transportation process information of logistics transportation into digital signals. The digital sensor can connect these digital signals to a computer through a transmission line, and the information can be directly transmitted to the computer for processing and analysis. However, when the digital sensor and the transmission line are connected for a long time, the interface between the digital sensor and the transmission line will become loose, resulting in the transmission line falling off the digital sensor, thereby affecting the use effect of the digital sensor, causing the transmission line to be unable to cooperate with the digital sensor to transmit data to the computer, and affecting the work efficiency of analyzing and processing the logistics transportation information.

[0005] Therefore, it is necessary to provide a new digital sensor transmission device to solve the above technical problems. Summary of the Utility Model

[0006] The purpose of the utility model is to solve the defect in the prior art that when the digital sensor and the transmission line are connected for a long time, the interface between the digital sensor and the transmission line will become loose, resulting in the transmission line falling off the digital sensor, thereby affecting the use effect of the digital sensor, causing the transmission line to be unable to cooperate with the digital sensor to transmit data to the computer, and affecting the work efficiency of analyzing and processing the logistics transportation information.

[0007] To solve the above technical problems, the present utility model provides a digital sensor transmission device, comprising: a digital sensor body, one side of the digital sensor body is electrically connected to a transmission line, and an adjusting device is provided on the arc surface of the transmission line. The adjusting device includes a fixed clamp, the fixed clamp is fixedly connected to the transmission line, both sides of the inner wall of the fixed clamp are fixedly connected with fixed blocks, and the same connecting rod is fixedly connected to the side of the two fixed blocks close to each other. An adjusting rod is rotatably connected to the arc surface of the connecting rod, a support block is fixedly connected to the arc surface of the adjusting rod, a screw rod is threadedly connected to the inner wall of the support block, one end of the screw rod away from the support block is rotatably connected to a connecting block, and a connecting clamp is fixedly connected to one side of the connecting block. The inner wall of the connecting clamp is slidably connected to the adjusting rod, and a limiting clamp is provided on the side of the connecting clamp close to the fixed clamp, and the limiting clamp is fixedly connected to the digital sensor body.

[0008] The effects achieved by the above components are as follows: The digital sensor body for logistics transportation is a device that can monitor the logistics transportation and output digital signals for controlling the transportation process of goods. The digital sensor body for logistics transportation will convert the collected analog signals into digital form, and these digits can be directly connected to a computer through a transmission line and directly transmitted to the computer for processing and analysis. However, when the digital sensor body and the transmission line are connected for a long time, the interface between the digital sensor body and the transmission line will become loose, resulting in the transmission line falling off the digital sensor body, and the transmission line cannot cooperate with the digital sensor body to transmit data to the computer. At this time, the adjusting device can be used to improve the tightness when the transmission line and the digital sensor body are connected, so as to improve the stability of the connection between the digital sensor body and the transmission line through the adjusting device.

[0009] Preferably, coil springs are slidably connected to both ends of the arc surface of the connecting rod, and both ends of the coil springs are fixedly connected to the adjusting rod and the fixed block respectively.

[0010] The effects achieved by the above components are as follows: When releasing the connection between the transmission line and the digital sensor body, the coil spring can drive the adjusting rod to rotate on the connecting rod, so that the connection between the transmission line and the digital sensor body can be quickly released.

[0011] Preferably, a plurality of anti-slip grooves are provided on the arc surface of the screw rod, and the plurality of anti-slip grooves are evenly distributed on the arc surface of the screw rod.

[0012] The effects achieved by the above components are as follows: When rotating the screw rod in the support block, the anti-slip grooves provided on the screw rod can increase the friction between the worker's hand and the screw rod, so that the efficiency of rotating the screw rod can be improved through the anti-slip grooves.

[0013] Preferably, a plurality of contact blocks are fixedly connected to one side of the connecting clip opening close to the limiting clip opening, and the plurality of contact blocks are evenly distributed on one side of the connecting clip opening.

[0014] The effects achieved by the above components are as follows: When the connecting clip opening contacts the limiting clip opening, the contact blocks installed on the connecting clip opening can increase the friction force between the connecting clip opening and the limiting clip opening, thereby improving the contact stability between the connecting clip opening and the limiting clip opening through the contact blocks.

[0015] Preferably, an auxiliary device is provided on the arc surface of the transmission line. The auxiliary device includes a storage frame, which is slidably connected to the transmission line. Three diversion blocks are fixedly connected to the bottom wall of the storage frame. Two card slots are opened on one side of the inner wall of the storage frame. Springs are fixedly connected to the bottom walls of the card slots. One limiting plate is fixedly connected to the ends of the two springs away from the bottom walls of the card slots. A fixing plate is fixedly connected to one side of the storage frame. An elastic belt is rotatably connected to the inner wall of the fixing plate. Two connecting holes are opened on the side surface of the elastic belt. Two hooks are fixedly connected to the side of the storage frame away from the fixing plate, and the hooks are slidably connected to the connecting holes.

[0016] The effects achieved by the above components are as follows: When the transmission line is connected to the digital sensor body, the auxiliary device can wind up the excess wire body of the transmission line, thereby avoiding the excess data cable from hanging down to the ground and tripping the workers walking near the digital sensor body. The auxiliary device can also protect the excess transmission line and prevent the surface of the wire body from being damaged, affecting the transmission effect of the digital sensor body through the transmission line.

[0017] Preferably, a telescopic rod is slidably connected to the inner wall of the spring, and the two ends of the telescopic rod are respectively fixedly connected to the limiting plate and the bottom wall of the card slot.

[0018] The effects achieved by the above components are as follows: When the spring moves, the telescopic rod installed in the spring can limit the movement of the spring, and the telescopic rod can prevent the spring from deforming during movement and affecting the service life of the spring.

[0019] Preferably, a limiting block is fixedly connected to the end of the hook away from the storage frame.

[0020] The effects achieved by the above components are as follows: When the connecting hole on the elastic belt is connected to the hook, the limiting block installed on the hook can improve the contact stability between the hook and the connecting hole, thereby improving the contact effect of the connection between the connecting hole and the hook through the limiting block.

[0021] Compared with the related art, a digital sensor transmission device provided by the present invention has the following beneficial effects:

[0022] The present utility model provides a digital sensor transmission device. When connecting a transmission line to a digital sensor by setting an adjusting device, the connection stability between the transmission line and the digital sensor can be increased through the adjusting device, so that the loosening between the digital sensor and the transmission line can be avoided through the adjusting device, and thus the transmission effect of data transmission by the digital sensor through the transmission line can be improved.

[0023] By setting an auxiliary device to connect the transmission line to the digital sensor, the auxiliary device can wind up the surface of the redundant transmission line, so that the redundant transmission line can be prevented from dropping to the ground and affecting the walking of workers, and the surface of the redundant transmission line can also be prevented from being worn through the auxiliary device, thereby improving the transmission stability of the transmission line to the digital sensor. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic structural diagram of a digital sensor transmission device provided by the present utility model;

[0025] Figure 2 is Figure 1 a schematic structural diagram of the adjusting device shown;

[0026] Figure 3 is Figure 1 a schematic exploded view of the adjusting device shown;

[0027] Figure 4 is Figure 3 an enlarged view of part A shown;

[0028] Figure 5 is Figure 1 a schematic structural diagram of the auxiliary device shown;

[0029] Figure 6 is Figure 5 an enlarged view of part B shown;

[0030] Figure 7 is Figure 1 a schematic exploded view of the auxiliary device shown.

[0031] Reference numerals in the figure: 1, digital sensor body; 2, adjusting device; 201, fixed clamping mouth; 202, fixed block; 203, connecting rod; 204, adjusting rod; 205, supporting block; 206, screw; 207, connecting block; 208, connecting clamping mouth; 209, limiting clamping mouth; 210, contact block; 211, anti-slip groove; 212, coil spring; 3, auxiliary device; 301, storage frame; 302, card slot; 303, spring; 304, limiting plate; 305, fixing plate; 306, elastic band; 307, connecting hole; 308, hook; 309, diversion block; 310, limiting block; 311, telescopic rod; 4, transmission line. Detailed implementation manners

[0032] In order to make the objectives, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0033] The following describes in detail the specific implementation of the present utility model with reference to specific embodiments.

[0034] Please refer to Figures 1 to 7 , a digital sensor transmission device provided by an embodiment of the present utility model includes: a digital sensor body 1, a transmission line 4 is electrically connected to one side of the digital sensor body 1, an adjusting device 2 is provided on the arc surface of the transmission line 4, and an auxiliary device 3 is provided on the arc surface of the transmission line 4.

[0035] In an embodiment of the present utility model, please refer to Figures 2 to 4, the adjusting device 2 includes a fixed clamping mouth 201, the fixed clamping mouth 201 is fixedly connected to the transmission line 4, both sides of the inner wall of the fixed clamping mouth 201 are fixedly connected with fixed blocks 202, and the same connecting rod 203 is fixedly connected to the side of the two fixed blocks 202 close to each other. The arc surface of the connecting rod 203 is rotatably connected with an adjusting rod 204, and a support block 205 is fixedly connected to the arc surface of the adjusting rod 204. A screw rod 206 is threadedly connected to the inner wall of the support block 205. One end of the screw rod 206 away from the support block 205 is rotatably connected with a connecting block 207. A connecting clamping mouth 208 is fixedly connected to one side of the connecting block 207. The inner wall of the connecting clamping mouth 208 is slidably connected to the adjusting rod 204. A limiting clamping mouth 209 is provided on the side of the connecting clamping mouth 208 close to the fixed clamping mouth 201. The limiting clamping mouth 209 is fixedly connected to the digital sensor body 1. The digital sensor body 1 for logistics transportation is a device that can monitor the logistics transportation and output digital signals for controlling the transportation process of goods. The digital sensor body 1 for logistics transportation will convert the collected analog signals into digital form. These digital signals can be directly connected to a computer through the transmission line 4 and can be directly transmitted to the computer for processing and analysis. However, when the digital sensor body 1 and the transmission line 4 are connected for a long time, the interface between the digital sensor body 1 and the transmission line 4 will become loose, resulting in the transmission line 4 falling off the digital sensor body 1, causing the transmission line 4 to be unable to cooperate with the digital sensor body 1 to transmit data to the computer. At this time, the adjusting device 2 can be used to improve the tightness of the connection between the transmission line 4 and the digital sensor body 1, thereby improving the stability of the connection between the digital sensor body 1 and the transmission line 4 through the adjusting device 2. Both ends of the arc surface of the connecting rod 203 are slidably connected with coil springs 212. The two ends of the coil springs 212 are respectively fixedly connected to the adjusting rod 204 and the fixed block 202. When releasing the connection between the transmission line 4 and the digital sensor body 1, the coil springs 212 can drive the adjusting rod 204 to rotate on the connecting rod 203, so as to quickly release the connection between the transmission line 4 and the digital sensor body 1. A number of anti-slip grooves 211 are provided on the arc surface of the screw rod 206, and a number of anti-slip grooves 211 are evenly distributed on the arc surface of the screw rod 206. When rotating the screw rod 206 in the support block 205, the anti-slip grooves 211 provided on the screw rod 206 can improve the friction between the worker's hand and the screw rod 206, so as to improve the efficiency of rotating the screw rod 206 through the anti-slip grooves 211. A number of contact blocks 210 are fixedly connected to the side of the connecting clamping mouth 208 close to the limiting clamping mouth 209, and a number of contact blocks 210 are evenly distributed on one side of the connecting clamping mouth 208. When the connecting clamping mouth 208 comes into contact with the limiting clamping mouth 209, the contact blocks 210 installed on the connecting clamping mouth 208 can improve the friction between the connecting clamping mouth 208 and the limiting clamping mouth 209, so as to improve the contact stability between the connecting clamping mouth 208 and the limiting clamping mouth 209 through the contact blocks 210;

[0036] In an embodiment of the present utility model, please refer to Figures 5 to 7 As shown in the figure, the auxiliary device 3 includes a storage frame 301. The storage frame 301 is slidably connected to the transmission line 4. Three diversion blocks 309 are fixedly connected to the bottom wall of the storage frame 301. Two card slots 302 are opened on one side of the inner wall of the storage frame 301. Springs 303 are fixedly connected to the bottom walls of the card slots 302. One same limiting plate 304 is fixedly connected to the ends of the two springs 303 away from the bottom walls of the card slots 302. One fixed plate 305 is fixedly connected to one side of the storage frame 301. An elastic belt 306 is rotatably connected to the inner wall of the fixed plate 305. Two connection holes 307 are opened on the side surface of the elastic belt 306. Two hooks 308 are fixedly connected to the side of the storage frame 301 away from the fixed plate 305. The hooks 308 are slidably connected to the connection holes 307. When the transmission line 4 is connected to the digital sensor body 1, the auxiliary device 3 can wind up the redundant line body of the transmission line 4, so as to avoid the redundant data lines from drooping to the ground and tripping the workers walking near the digital sensor body 1 by winding up the transmission line 4. The auxiliary device 3 can also protect the redundant transmission line 4 and prevent the surface of the line body from being damaged, affecting the transmission effect of the digital sensor body 1 through the transmission line 4. A telescopic rod 311 is slidably connected to the inner wall of the spring 303. The two ends of the telescopic rod 311 are respectively fixedly connected to the limiting plate 304 and the bottom wall of the card slot 302. When the spring 303 moves, the telescopic rod 311 installed in the spring 303 can limit the movement of the spring 303. The telescopic rod 311 can prevent the spring 303 from deforming during movement and affecting the service life of the spring 303. A limiting block 310 is fixedly connected to the end of the hook 308 away from the storage frame 301. When the connection hole 307 on the elastic belt 306 is connected to the hook 308, the limiting block 310 installed on the hook 308 can improve the contact stability between the hook 308 and the connection hole 307, so as to improve the contact effect of the connection between the connection hole 307 and the hook 308 through the limiting block 310;

[0037] The working principle of a digital sensor transmission device provided by the present utility model is as follows: When it is necessary to improve the connection stability between the digital sensor body 1 and the transmission line 4, first connect the transmission line 4 to the digital sensor body 1. At this time, the adjusting rod 204 can be rotated through the connecting rod 203 installed on the fixing block 202, and the adjusting rod 204 is rotated to the limiting clamping opening 209. At this time, the screw rod 206 installed on the supporting block 205 can be rotated. The rotation of the screw rod 206 will drive the connecting clamping opening 208 to move through the connecting block 207. Therefore, the rotation of the screw rod 206 will drive the connecting clamping opening 208 to move along the rod body direction of the adjusting rod 204, so as to drive the connecting clamping opening 208 to be connected to the limiting clamping opening 209, and the connection stability between the transmission line 4 and the digital sensor body 1 can be improved by the contact between the connecting clamping opening 208 and the limiting clamping opening 209.

[0038] When the redundant transmission line 4 needs to be stored, first pull the limit plate 304 to the side away from the storage frame 301. The movement of the limit plate 304 will drive the spring 303 in the card slot 302 to stretch. Therefore, the redundant transmission line 4 can be placed in the storage frame 301 through the limit plate 304, and the transmission line 4 can be separated in the storage frame 301 through the diversion block 309. At this time, the limit plate 304 can be released, and the reset of the spring 303 can drive the limit plate 304 to move in the direction of the transmission line 4. Therefore, the transmission line 4 can be contacted through the limit plate 304 to temporarily limit the transmission line 4. At this time, rotate the elastic band 306 in the fixing plate 305. When the elastic band 306 is pulled, the elastic band 306 deforms. Connect the connection hole 307 at the beginning of the elastic band 306 with the hook 308, and the elastic band 306 can be fixed on the hook 308 through the connection hole 307, and the storage of the redundant transmission line 4 can be completed.

[0039] The circuits and controls involved in the present utility model are all prior arts and will not be elaborated here.

[0040] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied to other related technical fields, shall be similarly included in the patent protection scope of the present utility model.

Claims

1. A digital sensor transmission device, characterized in that: include: A digital sensor body (1), one side of the digital sensor body (1) is electrically connected to a transmission line (4), an arc surface of the transmission line (4) is provided with an adjustment device (2), the adjustment device (2) comprises a fixing clamp (201), the fixing clamp (201) is fixedly connected to the transmission line (4), both sides of the inner wall of the fixing clamp (201) are fixedly connected to fixing blocks (202), the sides of the two fixing blocks (202) close to each other are fixedly connected to the same connecting rod (203), the arc surface of the connecting rod (203) is rotatably connected to an adjustment rod (204), the adjustment rod The arc surface of (204) is fixedly connected to a support block (205), the inner wall of the support block (205) is threadedly connected to a screw rod (206), one end of the screw rod (206) away from the support block (205) is rotatably connected to a connection block (207), one side of the connection block (207) is fixedly connected to a connection clamp (208), the inner wall of the connection clamp (208) is slidably connected to the adjustment rod (204), and a limit clamp (209) is provided on the side of the connection clamp (208) close to the fixed clamp (201), and the limit clamp (209) is fixedly connected to the digital sensor body (1).

2. A digital sensor transmission device according to claim 1, characterized in that: Both ends of the arc surface of the connecting rod (203) are slidably connected to coil springs (212), and both ends of the coil spring (212) are fixedly connected to the adjustment rod (204) and the fixing block (202), respectively.

3. A digital sensor transmission device according to claim 1, characterized in that: The arc surface of the screw rod (206) is provided with a plurality of anti-slip grooves (211), and the plurality of anti-slip grooves (211) are evenly distributed on the arc surface of the screw rod (206).

4. A digital sensor transmission device according to claim 1, characterized in that: A plurality of contact blocks (210) are fixedly connected to one side of the connection clamp (208) close to the limiting clamp (209), and the plurality of contact blocks (210) are evenly distributed on one side of the connection clamp (208).

5. A digital sensor transmission device according to claim 1, characterized in that: The arc surface of the transmission line (4) is provided with an auxiliary device (3), the auxiliary device (3) comprising a storage frame (301), the storage frame (301) being slidably connected to the transmission line (4), three guide blocks (309) being fixedly connected to the bottom wall of the storage frame (301), two slots (302) being provided on one side of the inner wall of the storage frame (301), the bottom wall of the slot (302) being fixedly connected to a spring (303), the two springs (303) being away from the slot (302). ) one end of the bottom wall of the storage frame (301) is fixedly connected to a same limiting plate (304), one side of the storage frame (301) is fixedly connected to a fixing plate (305), the inner wall of the fixing plate (305) is rotatably connected to an elastic band (306), the side of the elastic band (306) is provided with two connecting holes (307), and the side of the storage frame (301) away from the fixing plate (305) is fixedly connected to two hooks (308), and the hooks (308) are slidably connected to the connecting holes (307).

6. A digital sensor transmission device according to claim 5, characterized in that: The inner wall of the spring (303) is slidably connected to a telescopic rod (311), and two ends of the telescopic rod (311) are respectively fixedly connected to the limit plate (304) and the bottom wall of the slot (302).

7. A digital sensor transmission device according to claim 5, characterized in that: One end of the hook (308) away from the storage frame (301) is fixedly connected to the limiting block (310).

Citation Information

Patent Citations

  • Digital sensor

    CN216246424U