Communication engineering wiring measuring tool

By designing a measurement tool for communication engineering cabling, and utilizing a pole connection mechanism and a wireless remote control, a single person can measure the distance between poles, solving the problem of high manpower consumption in traditional methods and improving the convenience and accuracy of measurement.

CN223882906UActive Publication Date: 2026-02-06SICHUAN XINCHENGNENG ENG DESIGN CO LTD
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Patent Information

Application Number
CN202423054984.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2026-02-06
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

In traditional communication engineering, measuring the distance between utility poles requires two surveyors to work together. It is difficult and labor-intensive for a single person to measure, especially in complex environments where it is difficult to fix the starting end of the measurement strip.

Method used

A communication engineering cabling measurement tool was designed, comprising a winding mechanism, a measuring tape, and a pole connection mechanism. The pole connection mechanism and a wireless remote control are used to achieve automatic positioning of the starting end of the measuring tape for a single person. The starting end is fixed and unlocked by the cooperation of an electromagnet and a magnet.

Benefits of technology

This technology enables a single person to complete the measurement of pole spacing, reducing manpower consumption, simplifying the operation process, and improving the convenience and accuracy of the measurement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of measuring tools, and particularly relates to a communication engineering wiring measuring tool which comprises a winding mechanism, a measuring tape and a telegraph pole connecting mechanism, one end of the measuring tape is a tail end, and the tail end of the measuring tape is connected with the winding mechanism; the winding mechanism comprises a shell, a rotating rod is rotationally connected to the axis position of the shell, a reel located in the shell is fixedly connected to the outer side of the rotating rod, an in-out notch is formed in the outer side of the shell, and the winding mechanism is connected with the winding mechanism through the in-out notch. The tail end of the measuring belt extends into the shell through the in-out notch and is connected with the reel, the starting end of the measuring belt is fixedly connected with a connecting ring, and the connecting ring is slidably connected to the outer side of the connecting belt. According to the utility model, measurement personnel can simply and independently complete the measurement work of the distance between two telegraph poles.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of measuring tool, specifically relates to a communication engineering wiring measurement tool. BACKGROUND

[0002] In the construction and maintenance of communication engineering, accurately measuring the distance between the poles is a very key basic work. The traditional measurement method usually needs two measurement personnel to work together, one of which holds the starting end of the measuring tape (corresponding to the position of a pole) for positioning, and the other person is responsible for unwinding the measuring tape at the target pole and reading the measurement data. This method not only consumes manpower, but also in the actual operation scene, due to the difficulty of personnel allocation, complex working environment and other factors, the phenomenon of single measurement often occurs, and in the process of single measurement, due to the lack of effective auxiliary positioning device, the starting end of the measuring tape is often difficult to fix by the measurement personnel, and the starting end of the measuring tape in the active state greatly increases the difficulty of single measurement. UTILITY MODEL CONTENT

[0003] The utility model aims at providing a communication engineering wiring measurement tool, which can enable the measurement personnel to simply complete the distance measurement work of two poles alone.

[0004] The technical scheme adopted by the utility model is as follows:

[0005] A communication engineering wiring measurement tool, comprising a winding mechanism, a measuring tape and a pole connecting mechanism;

[0006] One end of the measuring tape is a terminal end, and the terminal end of the measuring tape is connected with the winding mechanism;

[0007] The other end of the measuring tape is a starting end, and the starting end of the measuring tape is connected with the pole connecting mechanism.

[0008] Further, the winding mechanism comprises a shell, the shaft center position of the shell is rotationally connected with a rotating rod, the outer side of the rotating rod is fixedly connected with a reel located in the shell, the outer side of the shell is provided with an inlet and outlet slot, and the terminal end of the measuring tape is connected with the reel in the shell through the inlet and outlet slot.

[0009] Further, the pole connecting mechanism comprises a connecting belt, and the connecting belt is connected with the starting end of the measuring tape.

[0010] Further, the starting end of the measuring tape is fixedly connected with a connecting ring, and the connecting ring is slidingly connected to the outer side of the connecting belt.

[0011] Further, one end of the connecting band is fixedly connected with a connecting block, a through communication notch is formed in the connecting block from front to back, the other end of the connecting band is inserted into the through communication notch, a working cavity is formed in the connecting block, a moving mechanism is installed in the working cavity, and a pressing positioning block is installed on the moving mechanism.

[0012] Further, a plurality of positioning conical parts are fixedly connected to one side of the pressing positioning block close to the connecting band.

[0013] Further, the moving mechanism comprises a return spring, an electromagnet, a magnet, a controller and a battery, one end of the return spring is fixedly connected with the pressing positioning block, the other end of the return spring is fixedly connected with the inner wall of the working cavity away from the through communication notch, the magnet is fixedly connected to the pressing positioning block, the electromagnet is fixedly connected to the inner wall of the working cavity away from the through communication notch, the electromagnet and the battery are electrically connected with the controller, and the electromagnet magnetically attracts the magnet when the electromagnet is electrified.

[0014] Further, the controller is signal-connected with a wireless remote controller, and the starting end of the measuring band is fixedly connected with the connecting band.

[0015] The technical effects achieved by the utility model are as follows.

[0016] The communication engineering wiring measurement tool of the utility model can position the starting end of the measuring band by using one of the telegraph poles in the process of unwinding the measuring band, and the starting end of the measuring band does not need to be positioned by another measurement personnel, so that the measurement personnel can more simply complete the distance measurement of the two telegraph poles when the measurement personnel measures the distance between the two telegraph poles alone. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structural schematic view of the utility model;

[0018] Figure 2 is a sectional structure schematic view of the winding mechanism of the utility model;

[0019] Figure 3 is a sectional structure schematic view of the utility model Figure 1 A place of the utility model;

[0020] Figure 4 is a sectional side view of the connecting block of the utility model.

[0021] In the drawings, the components represented by the numbers are listed as follows:

[0022] 1, shell; 2, rotating rod; 3, reel; 4, inlet and outlet slot; 5, measuring tape; 6, connecting ring; 7, connecting tape; 8, connecting block; 9, communication slot; 10, working cavity; 11, extrusion positioning block; 12, positioning cone; 13, return spring; 14, electromagnet; 15, magnet; 16, wireless remote controller. DETAILED DESCRIPTION

[0023] In order to make the purpose and advantages of the utility model more clear and obvious, the following will be combined with examples to specifically explain the utility model. It should be understood that the following text is only used to describe one or several specific embodiments of the utility model, and does not strictly limit the protection scope of the utility model specifically requested.

[0024] As shown in Figure 1 A communication engineering wiring measurement tool, comprising a winding mechanism, a measuring tape 5 and a telegraph pole connecting mechanism;

[0025] Wherein, one end of the measuring tape 5 is the terminal, the terminal of the measuring tape 5 is connected with the winding mechanism, and the winding mechanism is used for winding or unwinding the measuring tape 5;

[0026] As shown in Figure 1 And Figure 2 The winding mechanism comprises a shell 1, the shaft center position of the shell 1 is rotationally connected with a rotating rod 2, the outer side of the rotating rod 2 is fixedly connected with a reel 3 located in the shell 1, the outer side of the shell 1 is provided with an inlet and outlet slot 4, the terminal of the measuring tape 5 extends to the inside of the shell 1 and is connected with the reel 3 through the inlet and outlet slot 4, at this time, the reel 3 can be driven to rotate by rotating the rotating rod 2, the reel 3 rotates and winds or unwinds the measuring tape 5, the outer side of the measuring tape 5 is provided with a scale line, when the measuring tape 5 is placed between two telegraph poles, the distance between the two telegraph poles can be roughly measured by observing the scale line, so as to determine the cable laying length between the two telegraph poles.

[0027] Wherein, the other end of the measuring tape 5 is the starting end, the starting end of the measuring tape 5 is connected with the telegraph pole connecting mechanism, and the telegraph pole connecting mechanism is used for connecting with the telegraph pole, so as to connect the starting end of the measuring tape 5 and the telegraph pole together, at this time, the measurer directly drives the shell 1 to move, moves the shell 1 to another telegraph pole, and unwinds the measuring tape 5 in the process of moving, so as to wind the measuring tape 5 between the two telegraph poles, and measure the distance between the two telegraph poles, the starting end of the measuring tape 5 is positioned by one of the telegraph poles in the process of unwinding the measuring tape 5, and the starting end of the measuring tape 5 does not need to be positioned by another measurer, so that when the measurer measures the distance between the two telegraph poles alone, the distance measurement between the two telegraph poles can be relatively simply completed.

[0028] As shown in Figure 1As shown, the electric pole connecting mechanism comprises a connecting band 7 connected with the starting end of the measuring band 5, and the connection of the measuring band 5 and the electric pole can be achieved by binding the connecting band 7 outside the electric pole.

[0029] Meanwhile, the connecting band 7 can be provided with a Velcro hook surface and a Velcro loop surface, and the Velcro hook surface and the Velcro loop surface can be used to form a ring structure outside the electric pole, thus achieving the connection of the measuring band 5 and the electric pole.

[0030] The starting end of the measuring band 5 can be fixedly connected with a connecting ring 6 which is slidingly connected outside the connecting band 7, so as to adjust the relative position of the starting end of the measuring band 5 and the connecting band 7, thus facilitating the operation of the measurer.

[0031] As shown in Figure 1 and Figures 3-4 one end of the connecting band 7 is fixedly connected with a connecting block 8, the connecting block 8 is provided with a through slot 9, the other end of the connecting band 7 is inserted into the through slot 9, the connecting block 8 is provided with a working cavity 10, the working cavity 10 is provided with a moving mechanism, the moving mechanism is provided with an extrusion positioning block 11, the extrusion positioning block 11 is moved by the moving mechanism to apply pressure to the connecting band 7, thus achieving the positioning of the connecting band 7, and the side of the extrusion positioning block 11 close to the connecting band 7 is fixedly connected with a plurality of positioning conical bodies 12, which can greatly improve the stability of the extrusion positioning block 11 when locking the connecting band 7.

[0032] The moving mechanism comprises a return spring 13, an electromagnet 14, a magnet 15, a controller and a battery, one end of the return spring 13 is fixedly connected with the extrusion positioning block 11, the other end of the return spring 13 is fixedly connected with the inner wall of the working cavity 10 away from the through slot 9, so as to extrude the connecting band 7 by the elastic force of the return spring 13, the magnet 15 is fixedly connected with the extrusion positioning block 11, the electromagnet 14 is fixedly connected with the inner wall of the working cavity 10 away from the through slot 9, the electromagnet 14 and the battery are electrically connected with the controller, the electromagnet 14 magnetically attracts the magnet 15 when powered on, and applies a pulling force to the extrusion positioning block 11 and the magnet 15, so as to separate the extrusion positioning block 11, the positioning conical bodies 12 and the connecting band 7, and unlock the connecting band 7.

[0033] Meanwhile, the controller can be signal connected with a wireless remote controller 16, at this time, when the user completes the measurement of the interval between the first pole and the second pole, the wireless remote controller 16 can be used to remotely control the moving mechanism to unlock the connecting belt 7, then the pulling force is applied to the measuring belt 5, at this time, the starting end of the measuring belt 5 is directly fixedly connected with the connecting belt 7, the pulling force can be transmitted to the connecting belt 7, so that the connecting belt 7 is pulled out of the connecting groove 9, the separation of the connecting belt 7 and the first pole is completed, and the measuring belt 5 can be wound after the separation of the connecting belt 7, so that the distance of the measuring personnel walking back in the process of continuously measuring the interval between the poles can be reduced.

[0034] The above only describes the preferred embodiments of the present application, and it should be pointed out that, for those skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should also be considered as the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art, unless otherwise specified and limited.

Claims

1. A measurement tool for communication engineering cabling, characterized in that: Includes a winding mechanism, a measuring belt (5), and a pole connection mechanism; One end of the measuring tape (5) is the end point, and the end point of the measuring tape (5) is connected to the winding mechanism; The other end of the measuring band (5) is the starting end, and the starting end of the measuring band (5) is connected to the pole connecting mechanism; The pole connection mechanism includes a connecting belt (7), which is connected to the starting end of the measuring belt (5); One end of the connecting band (7) is fixedly connected to a connecting block (8). The connecting block (8) has a through slot (9) that runs from front to back. The other end of the connecting band (7) is inserted into the inside of the through slot (9). The connecting block (8) has a working cavity (10) inside. A moving mechanism is installed inside the working cavity (10). A pressing positioning block (11) is installed on the moving mechanism. The moving mechanism includes a return spring (13), an electromagnet (14), a magnet (15), a controller, and a battery. One end of the return spring (13) is fixedly connected to the extrusion positioning block (11), and the other end of the return spring (13) is fixedly connected to the inner wall of the working cavity (10) away from the connecting slot (9). The magnet (15) is fixedly connected to the extrusion positioning block (11), and the electromagnet (14) is fixedly connected to the inner wall of the working cavity (10) away from the connecting slot (9). The electromagnet (14) and the battery are both electrically connected to the controller. When the electromagnet (14) is energized, it magnetically attracts the magnet (15).

2. The communication engineering cabling measurement tool according to claim 1, characterized in that: The winding mechanism includes a housing (1), a rotating rod (2) is rotatably connected to the axial position of the housing (1), a reel (3) located inside the housing (1) is fixedly connected to the outside of the rotating rod (2), an inlet / outlet slot (4) is provided on the outside of the housing (1), and the end of the measuring belt (5) extends through the inlet / outlet slot (4) to the inside of the housing (1) and connects with the reel (3).

3. The communication engineering cabling measurement tool according to claim 1, characterized in that: The starting end of the measuring band (5) is fixedly connected to a connecting ring (6), which is slidably connected to the outside of the connecting band (7).

4. The communication engineering cabling measurement tool according to claim 1, characterized in that: The extrusion positioning block (11) has multiple positioning cones (12) fixedly connected to the side of the connecting strip (7).

5. A communication engineering cabling measurement tool according to claim 1, characterized in that: The controller is connected to a wireless remote controller (16), and the starting end of the measuring band (5) and the connecting band (7) are fixedly connected.