CN210135909U - Multifunctional laser ranging leveling device - Google Patents

Multifunctional laser ranging leveling device Download PDF

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Publication number
CN210135909U
CN210135909U CN201921366777.4U CN201921366777U CN210135909U CN 210135909 U CN210135909 U CN 210135909U CN 201921366777 U CN201921366777 U CN 201921366777U CN 210135909 U CN210135909 U CN 210135909U
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signal input
signal output
output end
input end
accommodating groove
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熊秋荣
凌燕
曾许航
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Abstract

The utility model discloses a multifunctional laser ranging leveling device, which comprises a base, a voice recognizer, a rotating disc arranged on the base, a foot screw arranged on the top surface of the rotating disc, three groups of foot screws are arranged, a positioning plate is arranged at the top end of each foot screw, a rectangular equipment frame is arranged on the positioning plate, five holding tanks are arranged on the frame of the equipment frame and respectively hold the sound equipment, the USB interface, the recorder, the voice recognizer and the memory, the voice recognizer is arranged to recognize the equipment or the voice, a user does not rely on the recording of a stroke record or a manual input mode any more, and when the user checks data, or recorded by voice input, the information is finally stored in an internal memory recorder by data and voice, meanwhile, the data is kept and backed up through a memory externally connected with the USB interface, and the safety performance of the data is effectively guaranteed.

Description

Multifunctional laser ranging leveling device
Technical Field
The utility model relates to an optical measurement instrument technical field particularly, relates to a multi-functional laser rangefinder leveling device.
Background
In the implementation process of various measurement works, leveling measurement is an important work content in engineering measurement, but in the implementation process of projects, due to the fact that a leveling route is long, the number of leveling points is large, and the number of measurement sites is large, the front distance and the rear distance are not easy to control, workers observe data for a long time and are prone to fatigue, and due to the fact that data are recorded manually in the surveying and mapping process, the problems of misreading, miscalculation and the like are prone to being caused.
SUMMERY OF THE UTILITY MODEL
For solving the problem that exists among the prior art, the utility model provides a can real time monitoring and at any time record data's laser rangefinder leveling device.
In order to achieve the above object, the utility model adopts the following technical scheme:
a multifunctional laser ranging leveling device comprises a base, a rotating disc arranged on the base, a foot spiral arranged on the top surface of the rotating disc, three groups of foot spirals arranged on the same plane and distributed in a regular triangle, a positioning plate arranged at the top end of the foot spiral, and a rectangular equipment frame arranged on the positioning plate, wherein a frame of the equipment frame is provided with a first accommodating groove, a second accommodating groove, a third accommodating groove, a fourth accommodating groove and a fifth accommodating groove, the first accommodating groove is internally provided with a sound box, the second accommodating groove is internally provided with a USB interface, the third accommodating groove is internally provided with a sound recorder, the fourth accommodating groove is internally provided with a voice recognizer, the fifth accommodating groove is internally provided with a memory, an inner frame of the equipment frame is provided with a measuring device box, the side surface of the measuring device box is provided with a round level gauge, and the inside of the measuring device box is provided with an optical level gauge, the automatic leveling device is arranged inside the optical level, a telescope is arranged on the front side of the optical level, a laser range finder is arranged at the bottom of the telescope, an infrared emitter is arranged in the laser range finder, the infrared emitter of the laser range finder is coaxial with the telescope, a graphic processor is arranged in the telescope, an eyepiece and a display are arranged on the back side of the measuring device box, a shading cylinder is arranged at one end, away from the eyepiece, of the telescope, and a central processing unit is arranged between the display and the positioning plate;
the first signal output end of the laser range finder is connected with the first signal input end of the display, the first signal output end of the optical level gauge is connected with the first signal input end of the graphic processor, the first signal output end of the graphic processor is connected with the second signal input end of the display, the first signal output end of the display is connected with the first signal input end of the voice recognizer, the first signal output end of the voice recognizer is connected with the first signal input end of the sound box, the first signal output end of the sound box is connected with the first signal input end of the sound recorder, the first signal output end of the sound recorder is connected with the first signal input end of the storage, the first signal output end of the storage is connected with the first signal input end of the USB interface, the first signal output end of the central processing unit is connected with the voice recognizer, the storage, the first signal output end of the central processing unit is connected with the first signal input end, The second signal input part of the sound box, the sound recorder, the USB interface and the display is connected, the first signal input part of the central processing unit is connected with the second signal output parts of the voice recognizer, the storage, the sound box, the sound recorder, the USB interface and the display, the second signal input part of the central processing unit is connected with the signal input part of the automatic leveling device, and the second signal output part of the central processing unit is connected with the third signal input part of the graphic processor.
Firstly, before use, the instrument is supported by an external tripod, a circular level is arranged on the instrument, the inclination degree of the current measuring device box is displayed, the measuring device box is finely adjusted by three groups of pin screws, a user adjusts the inclination angle of the measuring device box by observing the circular level and rotating the pin screws, so that the instrument is initially and slightly leveled, on the basis, an automatic leveling device in the measuring device box automatically performs optical calibration, the optical axis of the level is in a horizontal state, and the horizontal distance between the instrument and the front and rear leveling rulers is measured in a prism-free mode through a laser distance measuring instrument during observation, so that the distance between the instrument and the front and rear rulers can be timely adjusted, the time waste caused by the over limit of the front and rear sight distances is avoided, and the work efficiency is improved; the image on the digital leveling rod acquired by the telescope is processed by the graphic processor, the reading of the position of the central silk is obtained, the identified data is transmitted to the display through the signal output end, an observer can acquire the current reading of the central silk through the reading display, meanwhile, the instrument is provided for a recorder through a voice broadcasting mode, another data reading way is provided on the original basis, thus, the damage of the data observed for a long time to eyes can be avoided, the body health of the observer is protected, the defect of reading error of the observer is avoided, the data is recorded and stored in real time by the memory, the data can be copied by accessing the USB memory through the USB interface at any time after the observation is finished, the worker only needs to pull out the USB memory from the USB interface, and then the USB memory is inserted into the mobile terminal to check and process the data, in the process, in order to avoid interference caused by direct irradiation of external light on the lens of the telescope, the shading cylinder is arranged, so that errors caused by the external light are reduced.
Preferably, the base comprises selection cylinder and round platform, the mirror symmetry is personally submitted about the rotation disc with the round platform of base about the rotation disc is connected with the base, simple to operate to in the installation, can not be injured because of the edges and corners problem, the rotation disc makes its appearance more pleasing to the eye with base round platform longitudinal symmetry coupling simultaneously.
Preferably, the rotating disc top surface middle part is equipped with the gag lever post, during the gag lever post extended to the thread groove that holds the gag lever post, the recess of gag lever post and disc bottom surface cooperateed, and the user can avoid rotating the disc roll-off or break away from when the horizontal adjustment angle.
Preferably, a third signal output end of the voice recognizer is connected with a third signal input end of the sound device, the third signal output end of the sound device is connected with a third signal input end of the sound recorder, the third signal output end of the sound recorder is connected with a third signal input end of the USB interface, a user can record in a way of writing or manual input no longer, information is finally stored in the internal memory in a data and voice mode at the same time, meanwhile, data can be kept and backed up through the memory externally connected with the USB interface, and the safety performance of the data is effectively guaranteed.
The utility model has the advantages that:
1. the user no longer relies on reading the observation data of display as the only way, provides the record person with the mode of voice broadcast on this basis, can avoid like this that the mistake that manual reading brought and the data on the long-time reading display bring the damage to eyes.
2. The section of the rotating disc and the section of the round table of the base are in mirror symmetry, so that the injury caused by corner problems is avoided in the installation process, and meanwhile, the rotating disc and the round table of the base are in up-down symmetrical coupling, so that the appearance of the rotating disc is more attractive.
3. The limiting rod is matched with the groove in the bottom surface of the disc, so that a user can avoid the rotating disc from sliding out or separating from the rotating disc when the angle is horizontally adjusted.
4. The user no longer relies on the mode record of record or manual input, and the user still can be through voice input's mode record data when looking over the data, and the information is finally saved in internal memory recorder with the mode of data and pronunciation simultaneously, still can be through the external memory of USB interface to its data guarantor backup simultaneously, and the security performance of data obtains effective guarantee.
Description of the drawings:
fig. 1 is a schematic view of the overall structure of embodiment 1 of the present invention;
fig. 2 is a schematic view of the overall structure of the equipment frame and the positioning plate according to embodiment 1 of the present invention;
fig. 3 is a sectional view of the base and the rotating disk assembly according to embodiment 2 of the present invention;
fig. 4 is a perspective view of a base and a rotating disk according to embodiment 1 of the present invention;
fig. 5 is a rear view of the equipment frame and the positioning plate according to embodiment 1 of the present invention;
fig. 6 is a plan view of a rotating disk according to embodiment 1 of the present invention;
fig. 7 is an installation schematic diagram of the internal structure of a measuring device box of embodiment 1 of the present invention;
fig. 8 is a mirror view of a telescope according to embodiment 1 of the present invention;
fig. 9 is a schematic flow chart of embodiment 1 of the present invention;
fig. 10 is a schematic flow chart of embodiment 3 of the present invention.
Description of reference numerals:
1. a reservoir; 2. a base; 3. rotating the disc; 301. a thread groove; 4. a limiting rod; 5. positioning a plate; 6. A central processing unit; 7. a display; 8. a measuring device cartridge; 9. a speech recognizer; 10. a foot spiral; 11. a telescope; 1101. an eyepiece; 1102. an objective lens; 12. a shading cylinder; 13. an optical level; 14. a laser range finder; 15. a sound recorder; 16. a USB interface; 17. sounding; 18. an equipment frame; 181. a first accommodating groove; 182. a second accommodating groove; 183. a third accommodating groove; 184. a fourth accommodating groove; 185. a fifth accommodating groove; 19. a circular level; 20. an automatic leveling device; 21. a graphics processor; 22. an infrared emitter.
The specific implementation mode is as follows:
embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
Example 1:
as shown in fig. 1, 2, 4-9, the multifunctional laser ranging leveling device comprises a base 2, a rotating disc 3 disposed on the base 2, three sets of pin screws 10 disposed on the top surface of the rotating disc 3, a positioning plate 5 disposed on the top end of the pin screws 10, a rectangular device frame 18 disposed on the positioning plate 5, a first receiving groove 181, a second receiving groove 182, a third receiving groove 183, a fourth receiving groove 184, and a fifth receiving groove 185 disposed on the frame of the device frame 18, wherein the first receiving groove 181 is provided with a sound 17, the second receiving groove 182 is provided with a USB interface 16, the third receiving groove 183 is provided with a sound recorder 15, the fourth receiving groove 184 is provided with a voice recognizer 9, the fifth receiving groove 185 is provided with a memory 1, and a measuring device box 8 disposed on the inner frame of the device frame 18, a circular level 19 matched with the foot screw 10 is arranged on the side face of the measuring device box 8, an optical level 13 is arranged in the measuring device box 8, an automatic leveling device 20 is arranged in the optical level 13, a telescope 11 is arranged on the front face of the optical level 13, a laser range finder 14 is arranged at the bottom of the telescope 11, an infrared laser emitter 22 is arranged in the laser range finder 14, the front end of the infrared laser emitter 22 in the laser range finder is coaxial with the optical axis of the telescope 11, a graphic processor 21 is arranged in the telescope 11, an eyepiece 1101 and a display 7 are arranged on the back face of the measuring device box 8, a shading cylinder 12 is arranged at one end, away from the eyepiece 1101, of the telescope 11, and a central processing unit 6 is arranged between the display 7 and the positioning plate 5;
the first signal output end of the laser range finder 14 is connected with the first signal input end of the display 7, the first signal output end of the optical level gauge 13 is connected with the first signal input end of the graphic processor 21, the first signal output end of the graphic processor 21 is connected with the second signal input end of the display 7, the first signal output end of the display 7 is connected with the first signal input end of the voice recognizer 9, the first signal output end of the voice recognizer 9 is connected with the first signal input end of the sound box 17, the first signal output end of the sound box 17 is connected with the first signal input end of the sound recorder 15, the first signal output end of the sound recorder 15 is connected with the first signal input end of the storage 1, the first signal output end of the storage 1 is connected with the first signal input end of the USB interface 16, the first signal output end of the central processing unit 601 is connected with the first signal input end of the voice recognizer 9, The storage 1, the sound 17, the recorder 15, the USB interface 16 and the second signal input end of the display 7 are connected, the first signal input end of the central processing unit 601 is connected with the voice recognizer 9, the storage 1, the sound 17, the recorder 15, the USB interface 16 and the second signal output end of the display 7, the second signal input end of the central processing unit 601 is connected with the signal input end of the automatic leveling device 20, and the second signal output end of the central processing unit 601 is connected with the third signal input end of the graphic processor 21;
the middle part of the top surface of the rotating disc is provided with a limiting rod, and the limiting rod extends into a thread groove for accommodating the limiting rod.
The central processor 601 in the above structure is an ADM processor, before use, it is supported by an external tripod, the instrument is provided with a circular level 19, the current inclination degree of the measuring device box 8 is displayed, and the measuring device box 8 is finely adjusted by three groups of foot screws 10, the automatic leveling device 20 and the optical level 13 are collectively called as an automatic leveling level, the user can adjust the inclination angle of the measuring device box 8 by observing the circular level 19 and rotating the foot screws 10, so as to primarily level the instrument, on the basis, the automatic leveling device 20 in the measuring device box 8 automatically calibrates the telescope optical axis of the optical level, so that the telescope optical axis of the optical level is in a horizontal state, the horizontal distance between the instrument and the leveling rod is measured in real time by the laser range finder 14 during observation, and the distance between the instrument and the front and rear leveling rods is adjusted in time, repeated measurement caused by over-limit of sight distance is avoided, work efficiency is improved, an image on a digital leveling rod obtained by a telescope 11 is processed by a graphic processor 21, a reading of the position of a middle wire is obtained, the obtained data is transmitted to a display 7 through a signal output end, an observer can obtain the current reading of the middle wire through the reading display 7, meanwhile, the instrument is provided to a recorder in a voice broadcasting mode, on the original basis, another data reading way is provided, so that the eye injury caused by long-time observation data can be avoided, the body health of the observer is protected, the defect of reading error of the observer is avoided, a memory records and stores data in real time, the external USB memory can be accessed to copy data through a USB interface 16 at any time after observation is finished, and a worker only needs to pull out the external USB memory from the USB interface 16, then, insert and insert the USB memory and can look over the data and handle at mobile terminal, in this process, in order to avoid the external light direct irradiation to cause the interference on the lens of telescope 11, so be equipped with shading tube 12, reduce the error that external light caused, in order to avoid the user when horizontal adjustment angle, with the rolling disc 3 roll-off or break away from, so the recess of gag lever post 4 and disc bottom surface cooperates, restriction rolling disc 3 activity track, consequently can only rotate on gag lever post 4.
Example 2:
as shown in fig. 3, the cross section of the base 2 is composed of a rectangle and a circular truncated cone, the rotating disc 3 and the circular truncated cone of the base 2 are in mirror symmetry with respect to the connecting surface of the rotating disc 3 and the base 2, so that the device or the measuring device box 8 can be mounted and rotated without being damaged due to corner problems, and the rotating disc 3 and the circular truncated cone of the base 2 are coupled in an up-and-down symmetrical manner, so that the appearance is more attractive.
Embodiment 2 the rest of the structure and the working principle are the same as those of the embodiment
Example 3:
as shown in fig. 10, the third signal output end of the speech recognizer 9 is connected to the third signal input end of the audio 17, the third signal output end of the audio 17 is connected to the third signal input end of the sound recorder 15, the third signal output end of the sound recorder 15 is connected to the third signal input end of the USB interface 16, so that a user can record information in a manner of writing or manual input no longer depending on writing, and the information is finally stored in the internal memory in a data and speech manner, and meanwhile, data can be backed up through the memory externally connected to the USB interface 16, and the safety performance of data is effectively guaranteed.
Embodiment 3 the rest of the structure and the operation principle are the same as those of embodiment 1.
The above-mentioned embodiments only express the specific embodiments of the present invention, and the description thereof is specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention.

Claims (4)

1. A multifunctional laser ranging leveling device is characterized by comprising a base, a rotating disc arranged on the base, foot screws arranged on the top surface of the rotating disc, three groups of the foot screws, a positioning plate arranged at the top end of the foot screws and a rectangular equipment frame arranged on the positioning plate, wherein the foot screws are arranged on the three groups of the foot screws and positioned on the same plane and distributed in a regular triangle, a first accommodating groove, a second accommodating groove, a third accommodating groove, a fourth accommodating groove and a fifth accommodating groove are formed in the frame of the equipment frame, a sound box is arranged in the first accommodating groove, a USB interface is arranged in the second accommodating groove, a sound recorder is arranged in the third accommodating groove, a voice recognizer is arranged in the fourth accommodating groove, a storage device is arranged in the fifth accommodating groove, a measuring device box is arranged on the inner frame of the equipment frame, a round level is arranged on the side surface of the measuring device box, and an optical level is arranged in the, the automatic leveling device is arranged inside the optical level, a telescope is arranged on the front side of the optical level, a laser range finder is arranged at the bottom of the telescope, an infrared emitter is arranged in the laser range finder, the infrared emitter of the laser range finder is coaxial with the telescope, a graphic processor is arranged in the telescope, an eyepiece and a display are arranged on the back side of the measuring device box, a shading cylinder is arranged at one end, away from the eyepiece, of the telescope, and a central processing unit is arranged between the display and the positioning plate;
the first signal output end of the laser range finder is connected with the first signal input end of the display, the first signal output end of the optical level gauge is connected with the first signal input end of the graphic processor, the first signal output end of the graphic processor is connected with the second signal input end of the display, the first signal output end of the display is connected with the first signal input end of the voice recognizer, the first signal output end of the voice recognizer is connected with the first signal input end of the sound box, the first signal output end of the sound box is connected with the first signal input end of the sound recorder, the first signal output end of the sound recorder is connected with the first signal input end of the storage, the first signal output end of the storage is connected with the first signal input end of the USB interface, the first signal output end of the central processing unit is connected with the voice recognizer, the storage, the first signal output end of the central processing unit is connected with the first signal input end, The second signal input part of the sound box, the sound recorder, the USB interface and the display is connected, the first signal input part of the central processing unit is connected with the second signal output parts of the voice recognizer, the storage, the sound box, the sound recorder, the USB interface and the display, the second signal input part of the central processing unit is connected with the signal input part of the automatic leveling device, and the second signal output part of the central processing unit is connected with the third signal input part of the graphic processor.
2. The multifunctional laser ranging and leveling device according to claim 1, wherein the base is composed of a cylinder and a circular truncated cone, and the rotating disc and the circular truncated cone of the base are in mirror symmetry with respect to a connecting surface of the rotating disc and the base.
3. The multifunctional laser ranging and leveling device according to claim 2, wherein a limiting rod is arranged in the middle of the top surface of the rotating disk, and the limiting rod extends into a thread groove for accommodating the limiting rod.
4. The multifunctional laser ranging and leveling device according to claim 1, wherein a third signal output end of the voice recognizer is connected with a third signal input end of a sound box, the third signal output end of the sound box is connected with a third signal input end of a sound recorder, the third signal output end of the sound recorder is connected with a third signal input end of a storage, and the third signal output end is connected with a third signal input end of a USB interface.
CN201921366777.4U 2019-08-21 2019-08-21 Multifunctional laser ranging leveling device Active CN210135909U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921366777.4U CN210135909U (en) 2019-08-21 2019-08-21 Multifunctional laser ranging leveling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921366777.4U CN210135909U (en) 2019-08-21 2019-08-21 Multifunctional laser ranging leveling device

Publications (1)

Publication Number Publication Date
CN210135909U true CN210135909U (en) 2020-03-10

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Application Number Title Priority Date Filing Date
CN201921366777.4U Active CN210135909U (en) 2019-08-21 2019-08-21 Multifunctional laser ranging leveling device

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CN (1) CN210135909U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115854218A (en) * 2023-02-21 2023-03-28 北京中联勘工程技术有限责任公司 A centering flattening equipment for engineering survey

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115854218A (en) * 2023-02-21 2023-03-28 北京中联勘工程技术有限责任公司 A centering flattening equipment for engineering survey
CN115854218B (en) * 2023-02-21 2023-04-28 北京中联勘工程技术有限责任公司 Centering and leveling equipment for engineering measurement

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