Portable mechanical positioning equipment

By adopting a positioning module designed with RTK and a portable mechanical positioning device with a lightweight and high-strength shell, the problem of large size and inconvenience of traditional GPS positioning instruments has been solved, achieving high-precision positioning and portability, and improving construction efficiency and user experience.

CN223857411UActive Publication Date: 2026-01-30SHANXI INSTALLATION GRP CO LTD
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Patent Information

Application Number
CN202520371318.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-01-30
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

Traditional GPS positioning instruments are large and complex, making them inconvenient for a single person to carry and affecting construction efficiency.

Method used

The positioning module, designed with RTK, combines a lightweight, high-strength shell, a signal-enhancing antenna, a power supply component, and a backup power module to achieve high-precision positioning and portability. It is waterproof and dustproof, supports multiple data transmission methods, and is equipped with voice prompts and a shock-absorbing buffer layer.

Benefits of technology

It achieves high-precision positioning, improves the portability and practicality of the device, reduces reliance on disposable batteries, lowers operating costs, ensures stable operation and continuous power supply in harsh environments, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223857411U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of mechanical positioning, in particular to portable mechanical positioning equipment, which comprises a positioning module adopting RTK (Real-Time Kinematic) design and used for realizing a rapid and high-precision positioning function; the shell is used for accommodating the positioning module; the power supply assembly is arranged in the shell, the power supply assembly is electrically connected with the positioning module and provides a continuous and stable power supply for the positioning module, and the power supply assembly has a charging function so as to realize recycling; the signal enhancement antenna is connected with the positioning module, the signal enhancement antenna has a telescopic function, when the positioning signal needs to be enhanced, the signal enhancement antenna extends out, and when the signal enhancement antenna is in a storage state, the signal enhancement antenna retracts into the shell; the structure is simple, and the carrying is convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of mechanical positioning, in particular to a portable mechanical positioning equipment. BACKGROUND

[0002] In road construction and many scenes requiring mechanical precise walking, the quality and efficiency of the project are directly affected by the positioning technology. In the past, traditional GPS positioning instruments dominated the field of road mechanical walking equipment. However, with the development of the industry, its inherent defects are increasingly prominent.

[0003] From the point of view of equipment portability, the traditional GPS positioning instrument is large in size and complex in structure. In the process of road construction, mechanical operators often need to operate the equipment frequently in different sections. The large size makes it very inconvenient for a single person to carry, not only increasing the labor intensity, but also seriously slowing down the construction progress. UTILITARIAN CONTENT

[0004] To solve the above technical problems, the utility model provides a portable mechanical positioning equipment which is simple in structure and convenient to carry.

[0005] The portable mechanical positioning equipment of the utility model comprises:

[0006] The positioning module is designed with RTK and is used for realizing rapid high-precision positioning function;

[0007] The shell is used for accommodating the positioning module;

[0008] The power supply assembly is arranged in the shell and is electrically connected with the positioning module to provide continuous and stable power supply for the positioning module, and the power supply assembly has a charging function to realize cyclic use;

[0009] The signal enhancement antenna is connected with the positioning module and has a telescopic function, and when the positioning signal needs to be enhanced, the signal enhancement antenna is extended, and when it is in the storage state, the signal enhancement antenna is retracted into the shell.

[0010] Further, the positioning module comprises a high-precision positioning chip with an RTK algorithm built-in, which is used for realizing centimeter-level high-precision positioning.

[0011] As a preferred, the positioning module further comprises a data transmission unit, the data transmission unit is used for transmitting positioning data to external equipment, and the data transmission unit supports Bluetooth, wifi and 5g data transmission mode.

[0012] Further, the shell is provided with an operation panel, the operation panel comprises function keys and a display screen, the function keys are used for controlling the opening, closing and positioning mode switching of the positioning device, and the display screen is used for displaying positioning information and a working state of the device in real time.

[0013] As preferred, the operation panel is further provided with a voice prompt device, which gives corresponding voice prompt information when the device is opened, closed, positioned successfully or fails.

[0014] Further, the shell is internally provided with a shock-absorbing buffer layer, which surrounds the positioning module and the power supply assembly, and is used for reducing damage to internal components when the device is subjected to vibration or impact.

[0015] As preferred, the power supply assembly comprises a charging interface arranged on the side of the shell, which facilitates external charging equipment to charge the power supply assembly, and the charging interface adopts a waterproof and dustproof design.

[0016] Further, a backup power module is installed in the interior of the shell and electrically connected with the power supply assembly and the positioning module, which automatically switches to supply power to the positioning module when the power supply assembly is insufficient, so as to ensure the continuity of positioning work.

[0017] The portable mechanical positioning device comprises a positioning module, a shell, a power supply assembly and a backup power module, wherein the positioning module is designed by RTK, can quickly realize high-precision positioning by means of receiving satellite signals and ground reference station differential correction data, the shell is made of light-weight high-strength material, effectively contains the positioning module, and ensures stable operation of the device in harsh outdoor environments, avoids damage of internal components due to dust and water vapor erosion, prolongs the service life of the device, the power supply assembly is arranged in the shell and electrically connected with the positioning module, provides continuous and stable power supply, has a charging function, can be recycled, reduces the dependence on disposable batteries, reduces use cost and environmental pollution, ensures that the device is always available, the signal enhancement antenna is connected with the positioning module and has a telescopic function, can be stretched out to enhance the positioning signal and improve the positioning accuracy when needed, is retracted into the shell when stored, effectively avoids damage, greatly reduces the size of the device, facilitates the user to carry the device at any time and anywhere, and improves the portability and practicality of the device. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a flowchart of the portable mechanical positioning device in the utility model;

[0019] Figure 2 is a structural schematic view of the portable mechanical positioning device in the utility model at a first angle;

[0020] Figure 3It is a structure schematic view of the portable mechanical positioning equipment under the second angle in the utility model;

[0021] Figure 4 It is an internal structure schematic view of the portable mechanical positioning equipment in the utility model;

[0022] In the drawing, mark: 1, positioning module; 2, shell; 21, function button; 22, display screen; 23, shock-absorbing buffer layer; 3, power supply assembly; 4, signal enhancement antenna; 5, spare power module. Specific embodiment

[0023] The specific embodiment of the utility model is described in further detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but not to limit the scope of the utility model.

[0024] The utility model relates to a kind of portable mechanical positioning equipment, such as Figures 1 to 4 As shown, comprising:

[0025] Positioning module 1, positioning module 1 adopts RTK design, for realizing quick high-precision positioning function, RTK technology is improved positioning accuracy by receiving satellite signal and the differential correction data of ground reference station, applicable to high-precision measurement, surveying and mapping, agriculture, building and other fields;

[0026] Shell 2 is made of lightweight high-strength material, for accommodating positioning module 1, shell 2 is also provided with waterproof and dustproof function, to adapt to the use demand of complex outdoor environment;

[0027] Power supply assembly 3 is arranged inside shell 2, power supply assembly 3 is electrically connected with positioning module 1, provides continuous stable power supply for positioning module 1, and power supply assembly 3 has charging function, to realize cyclic use;

[0028] Signal enhancement antenna 4 is connected with positioning module 1, and signal enhancement antenna 4 has telescopic function, when needing to enhance positioning signal, signal enhancement antenna 4 is stretched out, when being in storage state, signal enhancement antenna 4 is retracted to the inside of shell 2, avoid damaging and reduce equipment volume, convenient to carry;

[0029] The working principle of the device is as follows:

[0030] When using, user carries equipment to target area, opens power switch, power supply assembly 3 powers positioning module 1, positioning module 1 receives satellite signal through signal enhancement antenna 4, and realizes high-precision positioning in combination with RTK technology, user can adjust the telescopic state of signal enhancement antenna 4 as required, to optimize signal receiving effect, after completing positioning task, user can retract signal enhancement antenna 4, turn off power, and store equipment to portable state.

[0031] The positioning module 1 adopts an RTK design, and can quickly achieve high-precision positioning with the help of satellite signal reception and ground reference station differential correction data. The shell 2 is made of light and high-strength material, which not only effectively accommodates the positioning module 1, but also ensures the stable operation of the device in harsh outdoor environments, avoids damage to internal components due to dust and water vapor erosion, prolongs the service life of the device, and provides a continuous and stable power supply. The power supply assembly 3 is arranged in the shell 2 and is electrically connected with the positioning module 1, and has a charging function, which can be recycled, reduces the dependence on disposable batteries, reduces use cost and environmental pollution, ensures that the device is always available, and the signal enhancement antenna 4 is connected with the positioning module 1 and has a telescopic function. When needed, it can be extended to enhance the positioning signal and improve the positioning accuracy. When it is retracted into the shell 2, it can effectively avoid damage and greatly reduce the size of the device, making it easy for users to carry it anywhere, improving the portability and practicality of the device, and optimizing the user experience.

[0032] As a preferred solution, as shown in Figures 1 to 4 The positioning module 1 includes a high-precision positioning chip with an RTK algorithm, which is used to achieve centimeter-level high-precision positioning.

[0033] The positioning module 1 also includes a data transmission unit, which is used to transmit positioning data to external devices. The data transmission unit supports Bluetooth, wifi and 5g data transmission methods.

[0034] The high-precision positioning chip in the positioning module 1 uses the RTK algorithm, which has excellent computing power and can deeply process satellite signals and ground reference station differential correction data to achieve centimeter-level high-precision positioning. In high-precision measurement operations, it can accurately capture the target position and reduce measurement deviation. In addition, the data transmission unit included in the positioning module 1 supports multiple data transmission methods such as Bluetooth, wifi and 5g, which can be flexibly adapted to different external devices. Whether it is a mobile terminal such as a mobile phone or a tablet for on-site data viewing and analysis through near-distance convenient connection, or a computer or server for data storage and deep processing through wifi, or real-time remote transmission of positioning data to a remote monitoring center through 5g, it can be easily realized, greatly improving data transmission efficiency and flexibility, allowing positioning data to be quickly applied to subsequent work processes, and improving overall work efficiency.

[0035] As a preferred solution, as shown in Figures 1 to 2 The shell 2 is provided with an operation panel, and the operation panel includes function keys 21 and a display screen 22. The function keys 21 are used to control the opening, closing and positioning mode switching of the positioning device, and the display screen 22 is used to display the positioning information and the working state of the device in real time.

[0036] The operation panel is also provided with a voice prompt device, which will issue corresponding voice prompt information when the device is turned on, turned off, successfully positioned, or fails;

[0037] The operation panel on the shell 2 provides a very convenient control mode for the user through the function keys 21, which can easily realize the opening, closing and positioning mode switching of the positioning device, greatly simplifies the operation process, reduces the use threshold, even non-professionals can quickly get started, the display screen 22 presents the positioning information and device working state in real time, so that the user can easily understand the device running situation, and can obtain key data without complex operation, which helps to understand the positioning progress in time and make decisions, and the voice prompt device on the operation panel further optimizes the user experience, which issues prompt information in clear voice at key nodes such as device opening, closing, successful positioning or failure, especially in noisy outdoor environment or when the user cannot pay attention to the screen at all times, the voice prompt can effectively attract the user's attention, convey important information in time, avoid operation mistakes or device problems caused by neglect, and comprehensively improve the ease of use and interactivity of the device, and enhance the user's sense of control over the device.

[0038] As a preferred solution, as shown in Figures 1 to 4 The shell 2 is internally provided with a shock-absorbing buffer layer 23, which surrounds the positioning module 1 and the power supply assembly 3, and the shock-absorbing buffer layer 23 is used to reduce the damage to the internal components when the device is subjected to vibration or impact;

[0039] When the device is subjected to vibration or impact, the shock-absorbing buffer layer 23 can effectively absorb and disperse impact force due to its special material properties and structural design, greatly reducing the impact of vibration and impact on the positioning module 1 and the power supply assembly 3, which not only prevents the high-precision positioning chip and other precision components in the positioning module 1 from being damaged due to external impact, ensuring the stability and precision of the positioning function, but also avoids the loosening of the power supply assembly 3 circuit and the damage of the battery, ensuring the continuous and stable power supply.

[0040] As a preferred solution, as shown in Figures 1 to 4 The power supply assembly 3 includes a charging interface 31, which is arranged on the side of the shell 2, so that the external charging device can charge the power supply assembly 3, and the charging interface 31 is designed to be waterproof and dustproof;

[0041] The charging interface 31 of the power supply assembly 3 is arranged on the side of the shell 2, which is a clever layout that greatly improves the convenience of charging operation. When the user needs to charge, he or she does not need to disassemble or find the hidden interface. The external charging device can be quickly and conveniently connected, greatly saving charging time. The waterproof and dustproof design of the charging interface 31 is in harmony with the overall protection characteristics of the shell 2. It effectively prevents dust and water vapor from entering the device through the charging interface, avoiding short circuit, poor contact and other faults caused by moisture and dust accumulation in the interface.

[0042] As a preferred solution, as shown in Figures 1 to 4 The backup power module 5 is installed in the interior of the shell 2 and is electrically connected with the power supply assembly 3 and the positioning module 1. When the power supply assembly 3 is insufficient, the backup power module 5 automatically switches to supply power to the positioning module 1 to ensure the continuity of the positioning work.

[0043] The backup power module 5 is installed in the interior of the shell 2 and is electrically connected with the power supply assembly 3 and the positioning module 1. It plays a key role in emergency power supply. In actual use, once the power supply assembly 3 is insufficient, the backup power module 5 can quickly and automatically switch to seamlessly connect to supply power to the positioning module 1. This feature ensures that the positioning work will not be interrupted due to the power problem of the main power supply.

[0044] The portable mechanical positioning device of the utility model is installed, connected or arranged in a common mechanical manner, and can be implemented as long as the beneficial effects are achieved.

[0045] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary technical personnel in the technical field, on the premise of not departing from the technical principles of the utility model, a number of improvements and modifications can be made, and these improvements and modifications should be regarded as the protection range of the utility model.

Claims

1. A portable mechanical positioning device, characterized in that, The utility model relates to a high-precision positioning device, including: A positioning module (1) is designed with RTK for fast and high-precision positioning; A housing (2) for accommodating the positioning module (1); A power supply assembly (3) is arranged inside the housing (2) and is electrically connected to the positioning module (1) to provide a continuous and stable power supply for the positioning module (1), and the power supply assembly (3) has a charging function to realize cyclic use; A signal enhancement antenna (4) is connected to the positioning module (1) and has an extension function, which can be extended when the positioning signal needs to be enhanced and retracted into the housing (2) when in the storage state.

2. The portable mechanical positioning apparatus of claim 1, wherein, The positioning module (1) includes a high-precision positioning chip with an RTK algorithm for centimeter-level high-precision positioning.

3. The portable mechanical positioning apparatus of claim 1, wherein, The positioning module (1) also includes a data transmission unit for transmitting positioning data to external devices, which supports Bluetooth, WiFi and 5G data transmission methods.

4. The portable mechanical positioning apparatus of claim 1, wherein, The housing (2) is provided with an operation panel, which includes function keys (21) and a display screen (22), the function keys (21) are used to control the opening, closing and positioning mode switching of the positioning device, and the display screen (22) is used to display the positioning information and the working state of the device in real time.

5. The portable mechanical positioning apparatus of claim 4, wherein, The operation panel is also provided with a voice prompt device, which will issue corresponding voice prompt information when the device is turned on, turned off, positioned successfully or fails.

6. The portable mechanical positioning apparatus of claim 1, wherein, The housing (2) is provided with a shock-absorbing buffer layer (23) around the positioning module (1) and the power supply assembly (3), which is used to reduce the damage to the internal components when the device is subjected to vibration or impact.

7. The portable mechanical positioning apparatus of claim 1, wherein, The power supply assembly (3) includes a charging interface (31) arranged on the side of the housing (2) to facilitate external charging equipment to charge the power supply assembly (3), and the charging interface (31) is designed with waterproof and dustproof.

8. The portable mechanical positioning apparatus of claim 1, wherein, It also includes a backup power module (5) installed inside the housing (2) and electrically connected to the power supply assembly (3) and the positioning module (1), which automatically switches to supply power to the positioning module (1) when the power supply assembly (3) is low, to ensure the continuity of positioning work.