Intelligent building electrical energy consumption analyzer
By designing protective devices for building electrical energy consumption analyzers, the problem of easy damage to the central control screen was solved, thus improving the safety and convenience of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-03-10
AI Technical Summary
Construction or maintenance environments are complex, and the central control screen is unprotected, making it susceptible to collisions and scratches. If tools are dropped or personnel accidentally touch it, the screen may crack or be scratched, affecting the reading of energy consumption data and the operation of equipment, reducing work efficiency, and increasing maintenance costs and time.
An intelligent building electrical energy consumption analyzer was designed, equipped with protective devices including components such as a rotating ring, sliding sleeve, connecting rod, bracket, buckle plate and clamp, forming a protective barrier to resist collisions, scratches, dust and moisture, extend the service life of the central control screen, and automatically protect the central control screen when not in use.
It effectively protects the central control screen from damage, extends its service life, reduces maintenance costs and time, and improves the safety of equipment operation and the convenience of handling.
Smart Images

Figure CN223986138U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building electrical analysis technical field especially, relates to a kind of intelligent building electrical energy consumption analyzers. BACKGROUND
[0002] Building electrical energy consumption analyzer is a kind of professional equipment for accurately monitoring and analyzing building electrical energy consumption, it can real-time acquisition current, voltage, power and other key data of each electrical circuit in building, through advanced algorithm and data analysis technology, accurately calculate energy consumption value, and present energy consumption distribution, trend information such as change with intuitive and clear chart form, the analyzer has multiple communication interfaces, can be integrated with building intelligent management system conveniently, realize remote monitoring and management, it is simple and convenient to operate, can help management personnel to quickly find high energy consumption area and equipment, provide powerful data support for making energy-saving strategy, optimize energy management, effectively reduce building electrical energy consumption cost, improve energy utilization efficiency.
[0003] But building construction or operation and maintenance environment is complex, central control screen has no protection, is vulnerable to collision, scratch, such as tool drop, personnel mis-touch, possibly cause screen breakage, scratch, cause display fuzzy, touch failure, affect energy consumption data reading and equipment operation, reduce work efficiency, increase maintenance cost and time. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the problems of prior art, such as building construction or operation and maintenance environment is complex, central control screen has no protection, is vulnerable to collision, scratch, such as tool drop, personnel mis-touch, possibly cause screen breakage, scratch, cause display fuzzy, touch failure, affect energy consumption data reading and equipment operation, reduce work efficiency, increase maintenance cost and time, and proposes a kind of intelligent building electrical energy consumption analyzer.
[0005] In order to achieve the above object, the utility model discloses the following technical scheme: a kind of intelligent building electrical energy consumption analyzer, including analysis instrument and protection device, the side of the analysis instrument is fixedly connected with central control screen, the protection device is arranged on the surface of analysis instrument, the protection device includes circle, the circle is rotatably connected with analysis instrument, the upper surface of the circle is fixedly connected with sliding sleeve, the inner wall of the sliding sleeve is slidably connected with connecting rod, the upper surface of the connecting rod is fixedly connected with stem, the surface of the stem is fixedly connected with bracket, the surface of the bracket is slidably connected with buckle plate, the surface of the central control screen is fixedly connected with clamping sleeve, the buckle plate is compatible with clamping sleeve, by being provided with protection device, in the protection aspect, analysis instrument is idle, and effective protection barrier is formed for central control screen, resist collision, scratch, dust and water vapor, reduce damage risk, prolong service life, reduce maintenance cost and time loss, when carrying, buckle plate force can be inwards narrow contraction, adhere to hand holding habit, cooperate with pull stem, can let operator easily exert force, reduce carrying burden, guarantee the safety of instrument in the process of carrying.
[0006] Preferably, the buckle plate is arranged in an "L" shape, and the two buckle plates are symmetrically arranged.
[0007] Preferably, the buckle plate is arranged in an "L" shape, and the two buckle plates are symmetrically arranged.
[0008] Preferably, the surface of the connecting rod is fixedly connected with a protrusion, and the sliding sleeve is provided with a sliding hole close to the protrusion.
[0009] Preferably, the protrusion is slidably connected with the sliding sleeve, and the surface of the sliding sleeve is fixedly connected with a guide rod.
[0010] Preferably, the surface of the protruding block is provided with a circular hole, and the guide rod is in sliding connection with the circular hole of the surface of the protruding block, so that the connecting rod can move along a predetermined straight track, and deviation, shaking or jamming of the connecting rod can be prevented, and the sleeve setting and separation of the buckle plate and the sleeve can be accurately realized, and the stability and reliability of the central control screen protection structure can be ensured.
[0011] Preferably, the surface of the guide rod is sleeved with a reset spring, and the two ends of the reset spring are fixedly connected with the protruding block and the guide rod respectively, so that when the analytical instrument is not used, the connecting rod is pulled out after the rod body is pulled, at this time, the reset spring is stretched or compressed to store elastic potential energy, when the buckle plate is in front of the sleeve, the reset spring is released to release the elastic potential energy, and the connecting rod is quickly reset by extruding the protruding block, and then the buckle plate and the sleeve are sleeved, and automatic protection of the central control screen is realized.
[0012] Compared with the prior art, the utility model has the advantages and positive effects that:
[0013] In the utility model, when the analytical instrument is not used, the buckle plate is close to the central control screen by rotating the rod body, and the rod body is pulled, the connecting rod is pulled out by the rod body, when the buckle plate is in front of the sleeve, the rod body is released, the reset spring is extruded to drive the connecting rod to reset quickly, and the connecting rod pulls the buckle plate and the sleeve to protect the central control screen, when the equipment needs to be used, the buckle plate and the sleeve are separated, the buckle plate is held, the buckle plate is contracted and narrowed under stress, holding is convenient, and then the rod body is pulled, analytical instruments are conveniently pulled and carried.
[0014] By setting the utility model, when the analytical instrument is idle, an effective protection barrier is formed for the central control screen, collision, scratching, dust and water vapor are resisted, damage risk is reduced, service life is prolonged, maintenance cost and time loss are reduced, when carrying, the buckle plate can be contracted and narrowed under stress, the holding habit of hands is adhered to, the rod body is pulled, the operating personnel can easily exert force, the carrying burden is reduced, and the safety of the instrument in the carrying process is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 A three-dimensional structure schematic diagram of an intelligent building electrical energy consumption analyzer is provided for the utility model;
[0016] Figure 2 A protection device use state structure schematic diagram of an intelligent building electrical energy consumption analyzer is provided for the utility model;
[0017] Figure 3 A protection device structure schematic diagram of an intelligent building electrical energy consumption analyzer is provided for the utility model;
[0018] Figure 4The utility model provides an intelligent building electrical energy consumption analyzer Figure 3 The enlarged structure schematic view of A of the utility model
[0019] Figure 5 The utility model provides an intelligent building electrical energy consumption analyzer Figure 3 The enlarged structure schematic view of B of the utility model.
[0020] Legend: 1, analytical instrument; 2, central control screen; 3, protective device; 31, rod body; 32, bracket; 33, buckle plate; 34, rotating ring; 35, pressure spring; 36, sliding sleeve; 37, connecting rod; 38, guide rod; 39, return spring; 310, lug; 311, clamping sleeve. Specific implementation
[0021] Please refer to Figures 1-5 The utility model provides a technical scheme: an intelligent building electrical energy consumption analyzer, including analytical instrument 1 and protective device 3, one side of analytical instrument 1 is fixedly connected with central control screen 2, and protective device 3 is arranged on the surface of analytical instrument 1.
[0022] In the embodiment: protective device 3 includes rotating ring 34, rotating ring 34 is rotationally connected with analytical instrument 1, the upper surface of rotating ring 34 is fixedly connected with sliding sleeve 36, the inner wall of sliding sleeve 36 is slidably connected with connecting rod 37, the upper surface of connecting rod 37 is fixedly connected with rod body 31, the surface of rod body 31 is fixedly connected with bracket 32, the surface of bracket 32 is slidably connected with buckle plate 33, the surface of central control screen 2 is fixedly connected with clamping sleeve 311, and buckle plate 33 is matched with clamping sleeve 311, by setting protective device 3, when analytical instrument 1 is idle, effective protective barrier is formed for central control screen 2, collision, scratching, dust and water vapor are resisted, damage risk is reduced, service life is prolonged, maintenance cost and time loss are reduced, when carrying, buckle plate 33 can be inwards contracted and narrowed under stress, fits the hand holding habit, cooperates with the pull rod body 31, can let the operator easily exert force, reduces the carrying burden, guarantees the safety of instrument in the carrying process.
[0023] Specifically, buckle plate 33 is arranged in " L " shape, and buckle plate 33 is two, and the two buckle plates 33 are symmetrically arranged, by setting buckle plate 33, when analytical instrument 1 is not used, by a series of operations, buckle plate 33 can be set with clamping sleeve 311, and protective barrier is formed in front of central control screen 2, effectively blocks the collision, scratching, dust and water vapor of outside and the infringement to central control screen 2, reduces the risk of accidental damage of central control screen 2, thereby the normal display and operating function of central control screen 2 are protected, and the service life of analytical instrument 1 is prolonged.
[0024] Specifically, one side of the buckle plate 33 is fixedly connected with a pressure spring 35, and the side, away from the buckle plate 33, of the pressure spring 35 is fixedly connected with the bracket 32. By arranging the pressure spring 35, when the analysis instrument 1 is not in use, the rod body 31 is pulled to make the connecting rod 37 slide out, at this time, the reset spring 39 is in a stretched or compressed state of storing elastic potential energy. When the buckle plate 33 is in front of the sleeve 311 and the rod body 31 is loosened, the reset spring 39 is released from the restraint and starts to release the elastic potential energy, and the connecting rod 37 is quickly reset by extruding the protrusion 310, and then the buckle plate 33 is sleeved with the sleeve 311, so as to realize the automatic protection of the central control screen 2 and ensure that the protection structure can return to the set position in time.
[0025] Specifically, the surface of the connecting rod 37 is fixedly connected with the protrusion 310, and the side, close to the protrusion 310, of the sliding sleeve 36 is provided with a sliding hole. By arranging the protrusion 310, when the rod body 31 is loosened, the reset spring 39 is released from the restraint and starts to release the elastic force, the extrusion force generated by the reset spring 39 acts on the protrusion 310, the protrusion 310 transmits the force to the connecting rod 37, so as to quickly reset the connecting rod 37, realize the sleeving action of the buckle plate 33 and the sleeve 311, and complete the protection of the central control screen 2.
[0026] Specifically, the protrusion 310 is slidingly connected with the sliding sleeve 36, and the surface of the sliding sleeve 36 is fixedly connected with the guide rod 38.
[0027] Specifically, the surface of the protrusion 310 is provided with a circular hole, and the guide rod 38 is slidingly connected with the circular hole in the surface of the protrusion 310.
[0028] In the embodiment, by arranging the guide rod 38, it can be ensured that the connecting rod 37 moves along the predetermined straight line track, and the deviation, shaking or jamming of the connecting rod 37 is prevented, so that the buckle plate 33 and the sleeve 311 can accurately realize the sleeving and separating actions, and the stability and reliability of the protection structure of the central control screen 2 are ensured.
[0029] Specifically, the surface of the guide rod 38 is sleeved with the reset spring 39, and the two ends of the reset spring 39 are fixedly connected with the protrusion 310 and the guide rod 38 respectively.
[0030] In the embodiment, by arranging the reset spring 39, when the analysis instrument 1 is not in use, the rod body 31 is pulled to make the connecting rod 37 slide out, at this time, the reset spring 39 is stretched or compressed to store the elastic potential energy. When the buckle plate 33 is in front of the sleeve 311 and the rod body 31 is loosened, the reset spring 39 is released from the restraint and starts to release the elastic potential energy, and the connecting rod 37 is quickly reset by extruding the protrusion 310, and then the buckle plate 33 is sleeved with the sleeve 311, so as to realize the automatic protection of the central control screen 2.
[0031] Working principle: When the analyzer 1 is not in use, rotating the rod 31 moves the buckle 33 closer to the central control screen 2, and pulling the rod 31 causes the connecting rod 37 to slide out. When the buckle 33 is directly in front of the sleeve 311, releasing the rod 31 causes the return spring 39 to lose its restraint and compress the protrusion 310, causing the connecting rod 37 to quickly return to its original position. At the same time, the connecting rod 37 pulls the buckle 33 to engage with the sleeve 311 to protect the central control screen 2. When the equipment needs to be used, pulling the buckle 33 separates it from the sleeve 311 and holding the buckle 33 causes it to be subjected to force. The inward narrowing design facilitates gripping, and the lifting rod 31 allows for easy lifting and transport of the analytical instrument 1. This design provides effective protection for the central control screen 2 when the analytical instrument 1 is not in use, resisting collisions, scratches, dust, and moisture, reducing the risk of damage, extending its service life, and minimizing maintenance costs and time. During transport, the buckle 33 narrows inward under pressure, conforming to hand grip habits, and in conjunction with the lifting rod 31, allows operators to easily apply force, reducing the burden of transport and ensuring the safety of the instrument during transport.
Claims
1. A smart building electrical energy consumption analyzer, comprising an analyzer instrument (1) and a protective device (3), characterized in that: One side of the analysis instrument (1) is fixedly connected with a central control screen (2), the protection device (3) is arranged on the surface of the analysis instrument (1), the protection device (3) comprises a rotating ring (34), the rotating ring (34) is rotatably connected with the analysis instrument (1), the upper surface of the rotating ring (34) is fixedly connected with a sliding sleeve (36), the inner wall of the sliding sleeve (36) is slidably connected with a connecting rod (37), the upper surface of the connecting rod (37) is fixedly connected with a rod body (31), the surface of the rod body (31) is fixedly connected with a bracket (32), the surface of the bracket (32) is slidably connected with a buckle plate (33), the surface of the central control screen (2) is fixedly connected with a clamping sleeve (311), the buckle plate (33) is matched with the clamping sleeve (311).
2. The intelligent building electrical energy consumption analyzer according to claim 1, characterized in that: The buckle plate (33) is arranged in an "L" shape, and two buckle plates (33) are symmetrically arranged.
3. The intelligent building electrical energy consumption analyzer according to claim 2, characterized in that: One side of the buckle plate (33) is fixedly connected with a pressure spring (35), and the side, away from the buckle plate (33), of the pressure spring (35) is fixedly connected with the bracket (32).
4. The intelligent building electrical energy consumption analyzer according to claim 1, characterized in that: The surface of the connecting rod (37) is fixedly connected with a protruding block (310), and the side, close to the protruding block (310), of the sliding sleeve (36) is provided with a sliding hole.
5. The intelligent building electrical energy consumption analyzer according to claim 4, characterized in that: The protruding block (310) is slidably connected with the sliding sleeve (36), and the surface of the sliding sleeve (36) is fixedly connected with a guide rod (38).
6. The intelligent building electrical energy consumption analyzer according to claim 5, characterized in that: The surface of the protruding block (310) is provided with a circular hole, and the guide rod (38) is slidably connected with the circular hole in the surface of the protruding block (310).
7. The intelligent building electrical energy consumption analyzer according to claim 6, characterized in that: The surface of the guide rod (38) is sleeved with a reset spring (39), and the two ends of the reset spring (39) are fixedly connected with the protruding block (310) and the guide rod (38) respectively.