Converter for gradienter
By designing the converter's energy-absorbing structure and protective housing, the problem of level instrument battery aging was solved, achieving stable energy absorption and storage, and improving the reliability of field exploration.
Patent Information
- Application Number
- CN202423189684.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-23
AI Technical Summary
When existing levels are not used for a long time, the electrical energy stored in the internal battery can easily become dummy electricity, leading to battery aging and affecting the field detection effect. Existing converters cannot effectively absorb the stored electricity.
A converter for a level instrument was designed, comprising a converter body, a conversion structure, and a receiving structure. Through components such as an energy-absorbing structure, a socket, a slide, and a spring, the converter absorbs and stores electrical energy from the level instrument. The converter is protected by a protective housing.
It effectively prevents battery aging, ensures a stable power supply for the level instrument during field surveys, and improves the service life and reliability of the equipment.
Smart Images

Figure CN223680777U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of converter technology, specifically a converter for a level. Background Technology
[0002] A converter is a device or software primarily used to convert data, signals, or files from one format to another. Converters can be applied to various data types, including video, audio, and images, allowing users to use this data on different devices or platforms. Converter functions include, but are not limited to, format conversion, encoding conversion, and decoding.
[0003] However, after existing levels have been used for a long time, the electrical energy stored in the internal battery of the level is easily turned into virtual electricity, which causes the battery to age and its performance to decline, thus affecting field exploration. However, the converter used in existing levels cannot absorb and store the electrical energy of the internal battery of the level.
[0004] Therefore, in order to solve the above problems, a converter for a level is proposed. Utility Model Content
[0005] The purpose of this utility model is to provide a converter for a level, in order to solve the problem mentioned in the background art that, after the existing level has been working, the electrical energy stored in the internal battery is easily turned into virtual electricity due to long-term disuse, which causes battery aging and degrades battery performance, thus affecting field exploration. However, the converter for the existing level cannot absorb and store the electrical energy of the internal battery of the level.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a converter for a level, comprising: a converter body, a conversion structure, and a receiving structure. The inner side of the outer shell of the converter body is hollowed out to form a first groove. The lower end of the first groove is bolted to a first spring groove. A first spring is bolted to the inside of the first spring groove. The upper end of the first spring groove is connected to a base via a second spring groove. A power-absorbing structure is inserted inside the base. One side of the power-absorbing structure is inserted into a socket. One side of the outer shell of the converter body is bolted to a rotating structure in the conversion structure. A first receiving line is externally connected to the rotating structure. The front end of the outer shell of the converter body is bolted to a wire in the receiving structure. One side of the wire is bolted to the converter.
[0007] Preferably, the shell in the converter body is hollow inside the first recess, the first recess is hollow inside the first sliding groove on both sides, the first sliding groove is movably connected to the base on both sides, the bottom of the first recess is bolted to the first spring groove, the first spring groove is bolted to the first spring inside, the first spring is bolted to the second spring groove on one side, the second spring groove is bolted to the lower end of the base on one side, the inside of the base is inserted into the electric suction structure, and the electric suction structure is inserted into the socket on one side.
[0008] Preferably, the shell is hollow into the second sliding groove on both sides, the second sliding groove is hollow into the first threaded groove at a distance on one side, the shell is threaded into the second threaded groove on one side, the second threaded groove is rotatably connected to the insertion rod inside, the second sliding groove is movably connected to the first sliding block inside, the first sliding block is bolted to the first cover plate on the upper end, and the first cover plate is hollow into the first socket on one side.
[0009] Preferably, the second recess in the conversion structure is inserted into the first receiving line inside, and the first receiving line is bolted to the rotating structure on one side.
[0010] Preferably, the shell is hollow into the third sliding groove on one side, the third sliding groove is movably connected to the second sliding block inside, the second sliding block is bolted to the second cover plate on the lower end, and the second cover plate is hollow into the second socket on one side.
[0011] Preferably, the shell is hollow into the third spring groove inside on one side, the third spring groove is bolted to the buckle inside, and the rear end of the shell is bolted to the first receiving port.
[0012] Preferably, the electric wire in the receiving structure is bolted to the converter on one side, the converter is bolted to the protective shell outside, the protective shell is bolted to the second receiving port on one side, and the second receiving port is inserted into the second receiving line inside.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] 1. The utility model discloses a shell, a first recess, a first sliding groove, a first spring groove, a first spring, a second spring groove, a base, an electric suction structure, a socket, a second sliding groove, a first threaded groove, a second threaded groove, an insertion rod, a first sliding block, a first cover plate and a first socket are arranged, the first sliding groove can limit the both ends of the base, the first spring groove can place the first spring and make the first spring abut against the lower end of the base, the base can place the electric suction structure, the electric suction structure can electrically absorb the electric energy of the electric suction structure, the socket can be connected with the electric suction structure, the second sliding groove can movably connect the first sliding block, the first sliding block can make the first cover plate cover the upper end of the first recess, and the first socket in the first cover plate on one side can be connected with the first threaded groove and bolted.
[0015] 2. The utility model discloses a second recess, rotation structure, first receiving line, third sliding slot, second sliding block, second apron, second socket, third spring groove, buckle, first receiving port, electric wire, converter, protective housing, second receiving port, second receiving line are provided with, through the first recess can be positioned to the first receiving line, through the rotation structure can rotate the first receiving line, through the third sliding slot can make second sliding block cover second apron with drive, through the second socket can insert the buckle so that the buckle can be positioned to second apron, through the third spring groove can place the buckle so that the buckle can be up and down elastic, through the converter can convert and transmit to electric energy, through the protective housing can protect the converter, through the second receiving port can be connected with second receiving line. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is structure solid section schematic view of the utility model;
[0017] Figure 2 It is structure solid section schematic view of the utility model;
[0018] Figure 3 It is structure solid section schematic view of the utility model;
[0019] Figure 4 It is structure solid section schematic view of the utility model;
[0020] Figure 5 It is structure solid schematic view of the utility model;
[0021] Figure 6 It is structure solid bottom view schematic view of the utility model;
[0022] Figure 7 It is structure solid section schematic view of the utility model.
[0023] In the figure: 1, converter body; 101, shell; 102, first recess; 103, first sliding groove; 104, first spring groove; 105, first spring; 106, second spring groove; 107, base; 108, electricity absorption structure; 109, socket; 110, second sliding groove; 111, first threaded groove; 112, second threaded groove; 113, insertion rod; 114, first sliding block; 115, first cover plate; 116, first socket; 2, conversion structure; 201, second recess; 202, rotating structure; 203, first receiving line; 204, third sliding groove; 205, second sliding block; 206, second cover plate; 207, second socket; 208, third spring groove; 209, buckle; 210, first receiving port; 3, receiving structure; 301, electric wire; 302, converter; 303, protective shell; 304, second receiving port; 305, second receiving line. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0025] Please refer to Figures 1-7 The utility model provides an embodiment:
[0026] A converter for level gauge, comprising: converter body 1, conversion structure 2 and receiving structure 3, the hollow first recess 102 is formed in the inside one side of the shell 101 in the converter body 1, the first spring groove 104 is connected to the lower end inside the first recess 102 by bolt, the first spring 105 is connected to the inside of the first spring groove 104 by bolt, the base 107 is connected to the upper end of the first spring groove 104 by second spring groove 106, the electricity absorption structure 108 is inserted into the inside of the base 107, the electricity absorption structure 108 is inserted into the socket 109 on one side, the rotating structure 202 in the conversion structure 2 is connected to the one side of the shell 101 in the converter body 1 by bolt, the first receiving line 203 is connected to the outside of the rotating structure 202, the electric wire 301 in the receiving structure 3 is connected to the front end of the shell 101 in the converter body 1 by bolt, and the converter 302 is connected to the one side of the electric wire 301 by bolt.
[0027] Further, the first recess 102 is hollowed in the inside of the shell 101 in the converter body 1, the first sliding groove 103 is hollowed in the inside of the two sides of the first recess 102, the two sides of the first sliding groove 103 are movably connected with the two sides of the base 107, the first spring groove 104 is connected with the bottom of the first recess 102 by bolts, the first spring 105 is connected with the inside of the first spring groove 104 by bolts, the first spring 105 is connected with the second spring groove 106 by bolts on one side, the second spring groove 106 is connected with the lower end of the base 107 by bolts on one side, the suction electricity structure 108 is inserted into the inside of the base 107, the plug of the suction electricity structure 108 is inserted into the socket 109, the first sliding groove 103 is used for limiting the two ends of the base 107, the first spring groove 104 is used for placing the first spring 105 to make the first spring 105 abut against the lower end of the base 107, the base 107 is used for placing the suction electricity structure 108, the suction electricity structure 108 is used for sucking electricity of the level meter, and the socket 109 is used for being connected with the suction electricity structure 108.
[0028] Further, the second sliding groove 110 is hollowed in the upper two sides of the shell 101, the first threaded groove 111 is hollowed in the side of the second sliding groove 110 at an interval, the second threaded groove 112 is threaded in the side of the shell 101, the plug rod 113 is rotatably connected with the inside of the second threaded groove 112, the first sliding block 114 is movably connected with the inside of the second sliding groove 110, the first cover plate 115 is connected with the upper end of the first sliding block 114 by bolts, the first cover plate 115 is hollowed to form the first socket 116 on one side, the second sliding groove 110 is used for movably connecting the first sliding block 114, the first sliding block 114 is used for enabling the first cover plate 115 to cover the upper end of the first recess 102, and the first socket 116 hollowed on one side of the first cover plate 115 is used for being matched with the first threaded groove 111 and being connected by bolts.
[0029] Further, the first receiving line 203 is inserted and connected into the inside of the second recess 201 in the conversion structure 2, the first receiving line 203 is connected with the rotating structure 202 by bolts on one side, the first recess 201 is used for limiting the first receiving line 203, and the rotating structure 202 is used for rotating the first receiving line 203.
[0030] Further, the third sliding groove 204 is hollowed in the side of the shell 101, the second sliding block 205 is movably connected with the inside of the third sliding groove 204, the second cover plate 206 is connected with the lower end of the second sliding block 205 by bolts, the second cover plate 206 is hollowed to form the second socket 207 on one side, the third sliding groove 204 is used for enabling the second sliding block 205 to drive the second cover plate 206 to cover, and the second socket 207 is used for inserting the buckle 209 to enable the buckle 209 to limit the second cover plate 206.
[0031] Further, the third spring slot 208 is hollowed in one side of the shell 101, the screw is used to connect the buckle 209 in the third spring slot 208, the first receiving port 210 is connected by screw in the rear end of the shell 101, the third spring slot 208 is used to place the buckle 209, so that the buckle 209 can be up and down.
[0032] Further, the wire 301 in the receiving structure 3 is connected with the converter 302 by screw on one side, the converter 302 is connected with the protective shell 303 by screw on the outside, the protective shell 303 is connected with the second receiving port 304 by screw on one side, the second receiving line 305 is inserted into the second receiving port 304, the converter 302 is used to convert and transmit electric energy, the protective shell 303 is used to protect the converter 302, and the second receiving port 304 is used to connect with the second receiving line 305.
[0033] Working principle: when using, first, namely.
[0034] The above is only the preferred embodiment of the present application, and does not limit the present application in any form; any ordinary technical personnel in the industry can implement the present application according to the above description and the drawings; however, any equivalent changes, modifications and evolution of the above disclosed technical content without departing from the technical scheme of the present application are equivalent embodiments of the present application; at the same time, any equivalent changes, modifications and evolution of the above embodiments according to the essential technology of the present application are still within the protection scope of the technical scheme of the present application.
Claims
1. A transducer for a level, comprising: The converter body (1), the conversion structure (2) and the receiving structure (3) are characterized in that: the shell (101) in the converter body (1) is hollowed into a first recess (102) on the inside, the lower end of the first recess (102) is connected with a first spring groove (104) by bolts, the first spring groove (104) is connected with a first spring (105) inside by bolts, the upper end of the first spring groove (104) is connected with a base (107) by a second spring groove (106), the base (107) is inserted into an electricity absorption structure (108) inside, one side of the electricity absorption structure (108) is inserted into a socket (109), one side of the shell (101) in the converter body (1) is connected with a rotating structure (202) in the conversion structure (2) by bolts, the rotating structure (202) is connected with a first receiving line (203) outside, the front end of the shell (101) in the converter body (1) is connected with an electric wire (301) in the receiving structure (3) by bolts, one side of the electric wire (301) is connected with a converter (302) by bolts.
2. A transducer for a level according to claim 1, characterised in that: The shell (101) in the converter body (1) is hollowed into a first recess (102) inside, the first recess (102) is hollowed into a first sliding groove (103) on both sides inside, the base (107) is movably connected on both sides of the first sliding groove (103) inside, the first recess (102) is connected with a first spring groove (104) at the bottom by bolts, the first spring groove (104) is connected with a first spring (105) inside by bolts, one side of the first spring (105) is connected with a second spring groove (106) by bolts, one side of the second spring groove (106) is connected with the lower end of the base (107) by bolts, the electricity absorption structure (108) is inserted into and connected inside the base (107), the plug of the electricity absorption structure (108) is inserted into and connected in the socket (109).
3. A transducer for a level according to claim 2, characterised in that: The upper end of the shell (101) is hollowed into a second sliding groove (110) on both sides, the first threaded groove (111) is hollowed into one side of the second sliding groove (110) at a distance, the shell (101) is threaded and hollowed into a second threaded groove (112) on one side, the plug rod (113) is rotatably connected inside the second threaded groove (112), the first sliding block (114) is movably connected inside the second sliding groove (110), the first cover plate (115) is connected with the first sliding block (114) by bolts at the upper end, the first cover plate (115) is hollowed into a first socket (116) on one side.
4. A transducer for a level according to claim 1, characterised in that: The first receiving line (203) is inserted into and connected inside the second recess (201) in the conversion structure (2), one side of the first receiving line (203) is connected with the rotating structure (202) by bolts.
5. A transducer for a level according to claim 1, characterised in that: The shell (101) is hollowed into a third sliding groove (204) on one side, the second sliding block (205) is movably connected inside the third sliding groove (204), the second cover plate (206) is connected with the second sliding block (205) by bolts at the lower end, the second cover plate (206) is hollowed into a second socket (207) on one side.
6. A transducer for a level according to claim 1, characterised in that: The third spring groove (208) is hollow in one side of the shell (101), and a buckle (209) is connected inside the third spring groove (208); a first receiving port (210) is connected to the rear end of the shell (101) by a bolt.
7. A transducer for a level according to claim 1, characterised in that: A converter (302) is connected to one side of the electric wire (301) in the receiving structure (3); a protective shell (303) is connected to the outside of the converter (302) by a bolt; a second receiving port (304) is connected to one side of the protective shell (303) by a bolt; and a second receiving wire (305) is inserted into the second receiving port (304).