Multi-system sensor signal intelligent acquisition, analysis and display equipment
By employing a linkage structure of sealing cover, linkage bracket and adjustment components in the intelligent acquisition, analysis and display device of sensor signals, the problems of deformation and blockage of the connector during movement are solved, realizing reliable connection of the connector and data transmission, which facilitates observation on the display screen.
Patent Information
- Application Number
- CN202423001674.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-12-05
AI Technical Summary
During the movement of existing intelligent sensor signal acquisition, analysis and display equipment, the connectors may deform or become blocked by debris, affecting subsequent plug connection.
A multi-mode sensor signal intelligent acquisition, analysis and display device was designed. It adopts a linkage structure of sealing cover, linkage bracket, linkage guide rod and adjustment component. The sealing cover provides airtight protection for the connector, and the adjustment component can be used to detach the sealing cover from the connector when connection is required, so as to achieve reliable connection of the connector.
It effectively prevents deformation and blockage of the connector during movement, ensuring reliable connection and data transmission, and facilitating observation on the display screen.
Smart Images

Figure CN223809988U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to signal collection and analysis field, specifically is multi -mode sensor signal intelligent collection and analysis display equipment. BACKGROUND
[0002] Sensor signal intelligent collection refers to using advanced sensor technology and intelligent collection system, and the signal from different sensors is collected and handled in real time, accurately and efficiently, and multi -mode sensor signal intelligent collection and analysis display equipment is a kind of equipment integrated with multiple high-precision sensors and advanced data collection, analysis, display technology.It can receive signals from different types of sensors, and carry out intelligent collection, processing, analysis and display, and provide comprehensive, accurate data support for various industries, environmental monitoring, scientific research and other fields.
[0003] At present, in the prior art, sensor signal intelligent collection and analysis display equipment mainly solves the decoding of different mode and type sensor signals, subdivision and signal quality analysis function through its built-in FPGA, and screen display, and in order to connect sensors, various models of joints are installed on the side wall of the display equipment, and the unprotected joints of the display equipment may be deformed or blocked by sundries during movement, which affects the subsequent plug connection.
[0004] Therefore, aiming at the above problems, multi -mode sensor signal intelligent collection and analysis display equipment is proposed. INVENTION CONTENTS
[0005] In order to make up for the deficiency of prior art, solve the problem that the unprotected joint of the display equipment may be deformed or blocked by sundries during movement, which affects the subsequent plug connection, multi -mode sensor signal intelligent collection and analysis display equipment is proposed.
[0006] The utility model solves the technical scheme that the utility model discloses multi -mode sensor signal intelligent collection and analysis display equipment, including display shell, the one side outer wall center of display shell is connected with linkage support, and the both ends of linkage support are connected with first annular clamping plate, the both ends center of linkage support are connected with linkage guide rod perpendicularly, one end of two linkage guide rods is connected with limit round plate, the both sides of the outer wall of display shell are installed with joint bottom plate, the side wall of joint bottom plate is installed with connecting joint, the connecting joint is connected with the electrical element in the display shell, the outer periphery of two joint bottom plates is connected with the plugging cover, two plugging covers are connected with connecting plate near the end where linkage support is located, and adjusting assembly is arranged between the one end of two connecting plates.
[0007] Preferably, the adjusting assembly comprises two collars, the two collars are slidingly installed between the outer walls of the two linkage guide rods, and the outer walls of the two collars are vertically and fixedly connected with one end of the two connecting plates through the connecting plates.
[0008] Preferably, the collar is fixedly connected with a second annular clamping plate on the side wall close to the linkage support, and the second annular clamping plate can be engaged with the first annular clamping plate.
[0009] Preferably, a reset spring is slidingly sleeved between the outer walls of the linkage guide rods, and the reset spring is located between the adjacent side walls of the limiting disc and the sleeving ring.
[0010] Preferably, the bottom surface of the two sealing covers is vertically and fixedly connected with a linkage shaft rod close to the two end edges, and the shaft rod connecting plate is clamped in the clamping groove of the linkage shaft rod.
[0011] Preferably, a rotating shaft sliding groove is formed in the center of the bottom surface of the display shell.
[0012] Preferably, the intersection end of the two adjacent shaft rod connecting plates is hingedly connected with a linkage rotating shaft, and the linkage rotating shaft can be slidingly arranged in the rotating shaft sliding groove.
[0013] Preferably, the bottom surface of the two linkage rotating shafts is fixedly connected with a supporting bottom plate.
[0014] The display shell has the advantages that:
[0015] In the display shell, the sealing cover sleeved between the connecting joint bottom plate is used for sealing protection of the connecting joint, so that the deformation or blockage of the connecting joint during the overall transportation of the display shell is prevented, and the two sealing covers are linked through the cooperation of the adjusting assembly, the linkage rotating shaft and the supporting bottom plate, so that the sealing cover is separated from the connecting joint bottom plate and the connecting joint when the elastic force of the supporting bottom plate overcomes the elastic force of the reset spring, and the supporting bottom plate can support the display shell at a certain angle through the cooperation between the second annular clamping plate and the first annular clamping plate, so that the observation of the data on the display screen of the display shell is facilitated. BRIEF DESCRIPTION OF DRAWINGS
[0016] The drawings described herein are used to provide a further understanding of the present application, and constitute a part of the present application. The schematic embodiments of the present application and the descriptions thereof are used to explain the present application, and do not constitute an improper limitation on the present application. In the drawings:
[0017] Figure 1 is a perspective view of the present application;
[0018] Figure 2 is a perspective view of the display shell in the present application;
[0019] Figure 3is a perspective view of the plugging cover being flipped up in the utility model;
[0020] Figure 4 is a perspective view of the plugging cover, linkage rotating shaft and bearing bottom plate linkage in the utility model;
[0021] Figure 5 is a perspective view of the plugging cover and sleeve ring linkage in the utility model;
[0022] Legend:
[0023] 1, display housing; 11, linkage support; 12, first annular clamping plate; 13, linkage guide rod; 14, limiting round plate; 15, joint bottom plate; 16, connecting joint; 2, plugging cover; 21, connecting plate; 3, adjusting assembly; 31, sleeve ring; 32, second annular clamping plate; 33, reset spring; 22, linkage shaft rod; 23, shaft rod connecting plate; 17, rotating shaft sliding slot; 4, linkage rotating shaft; 5, bearing bottom plate. 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] The specific embodiments are given below.
[0026] Please refer to Figure 1 - Figure 5The utility model provides multi -mode sensor signal intelligence collection analysis display equipment, including display casing 1, the one side outer wall center place of display casing 1 is fixedly connected with linkage support 11, both ends of linkage support 11 all are fixedly connected with first annular clamping plate 12, the both ends center place of linkage support 11 all are fixedly connected with linkage guide rod 13, one end of two linkage guide rods 13 is fixedly connected with limit round plate 14, the both sides symmetry of display casing 1's outer wall is installed with joint bottom plate 15, the side wall of joint bottom plate 15 is installed with connecting joint 16, and connecting joint 16 is connected with the electrical element inside display casing 1, the outer periphery of two joint bottom plates 15 all are clamped with block cover 2, and two block covers 2 are fixedly connected with connecting plate 21 near the end of linkage support 11, and the both ends of two connecting plates 21 are provided with adjusting assembly 3, when the display casing 1 is not connected, block cover 2 is sleeved between joint bottom plate 15 and carries out airtight protection to connecting joint 16, prevents joint bottom plate 15 from being deformed or making thing block, when display casing 1 needs sensor to carry out data collection analysis, block cover 2 is removed from joint bottom plate 15, and after exposing connecting joint 16, it is connected with sensor data, wherein the cooperation of the both sides of display casing 1 block cover 2 between adjusting assembly 3 and linkage support 11, first annular clamping plate 12, linkage guide rod 13 and limit round plate 14 is linked with each other, and the both ends of two block covers 2 can carry out synchronous expansion and deflection movement.
[0027] As Figure 2 And Figure 5As shown, the adjusting assembly 3 comprises two collars 31, which are respectively slidingly installed between the outer walls of the two linkage guide rods 13, and are respectively perpendicularly fixed to one end of the two connecting plates 21 through the connecting plates. The collar 31 is fixed with a second annular clamping plate 32 on the side wall close to the linkage support 11, which can be mutually engaged with the first annular clamping plate 12. The linkage guide rod 13 is slidingly sleeved with a reset spring 33 between the outer walls, which is located between the limiting round plate 14 and the adjacent side wall of the sleeved collar. Since the collar 31 and the linkage guide rod 13 are connected in a sleeved manner, and the two collars 31 are connected with the connecting plates 21 at one end of the two blocking covers 2 through the connecting rods, the blocking cover 2 and the collar 31 can be relatively rotated. When the collar 31 sleeved on the outer wall of the linkage guide rod 13 is mutually engaged with the linkage guide rod 13 through the second annular clamping plate 32, the collar 31 and the linkage support 11 are in a relatively static state, and the relative angle between the blocking cover 2 and the display housing 1 cannot be changed at this time. When the two collars 31 are symmetrically pulled out to overcome the elastic force of the reset spring 33, the two blocking covers 2 are synchronously moved out to be separated from the joint bottom plate 15 and the connecting joint 16. At this time, the second annular clamping plate 32 and the first annular clamping plate 12 are also separated from each other, and the relative angle between the blocking cover 2 and the display housing 1 can be changed at this time. When the joint bottom plate 15 and the connecting joint 16 are exposed, the sensor connecting line can be connected with the connecting joint 16, and the electrical elements in the display housing 1 can be matched to convert the data on the display of the display.
[0028] As Figure 3 , Figure 4 and Figure 5As shown, the bottom surface of the two blocking covers 2 is vertically fixed with linkage shaft rods 22 near the two end edges, the shaft rod connecting plates 23 are clamped in the clamping slots of the linkage shaft rods 22, the bottom surface center of the display shell 1 is provided with a rotating shaft sliding slot 17, the intersection end of the two adjacent shaft rod connecting plates 23 is hingedly connected with linkage rotating shafts 4, the linkage rotating shafts 4 can slide in the rotating shaft sliding slot 17, the bottom surface supports of the two linkage rotating shafts 4 are fixed with supporting bottom plates 5, the two blocking covers 2 are linked through the mutual clamping of the shaft rod connecting plates 23 hingedly connected with the outer wall of the linkage rotating shafts 4 and the clamping slots of the outer wall of the linkage shaft rods 22, the supporting bottom plates 5 are installed between the bottom surfaces of the two linkage rotating shafts 4, and the rotating shaft sliding slot 17 is provided so that the bottom surface of the display shell 1 does not hinder the structure of the linkage rotating shafts 4, when it is needed to control the outward movement of the two blocking covers 2, the supporting bottom plates 5 are controlled to move away from the position where the linkage supports 11 are located, at this time, the two blocking covers 2 are away from each other under the supporting action of the shaft rod connecting plates 23, the second annular clamping plates 32 and the first annular clamping plates 12 are also separated from each other, until the blocking covers 2 are completely separated from the joint bottom plates 15 and the connecting joints 16, the supporting bottom plates 5 are controlled to rotate to form a certain angle with the display shell 1, the outward pulling force on the supporting bottom plates 5 is released, at this time, the second annular clamping plates 32 and the first annular clamping plates 12 are engaged with each other at different positions under the elastic force of the return springs 33, at this time, the relative angle between the supporting bottom plates 5 and the display shell 1 is fixed, and the display shell 1 can be supported as a whole, and the display shell 1 is placed at a certain angle, which is convenient for observing the display screen.
[0029] Working principle: when the display shell 1 is in the non-connected state, the blocking cover 2 is sleeved between the joint bottom plate 15 to seal and protect the connecting joint 16, when the display shell 1 needs to collect data by the sensor, the blocking cover 2 is moved out from the joint bottom plate 15 and is connected with the sensor data after exposing the connecting joint 16, wherein the two blocking covers 2 on both sides of the display shell 1 are interconnected through the cooperation between the adjusting assembly 3 and the linkage support 11, the first annular clamping plate 12, the linkage guide rod 13 and the limiting round plate 14, the two sleeves 31 are connected with the connecting plates 21 at one end of the two blocking covers 2 through the connecting rods, which enables the relative rotation between the blocking cover 2 and the sleeve 31, when the sleeve 31 sleeved on the outer wall of the linkage guide rod 13 is engaged with the linkage guide rod 13 through the second annular clamping plate 32, the sleeve 31 and the linkage support 11 are in the relative static state, at this time, the relative angle between the blocking cover 2 and the display shell 1 cannot be changed, the two blocking covers 2 are interconnected through the mutual engagement between the shaft rod connecting plate 23 hinged on the outer wall of the linkage shaft 4 and the outer wall clamping groove of the linkage shaft 22, the supporting bottom plate 5 is installed between the bottom surfaces of the two linkage shafts 4, and the opening of the shaft sliding groove 17 enables the bottom surface of the display shell 1 not to be hindered by the linkage shaft 4, when it is needed to control the outward movement of the two blocking covers 2, the supporting bottom plate 5 is controlled to move away from the position of the linkage support 11, at this time, the two blocking covers 2 move away from each other under the supporting action of the shaft rod connecting plate 23, the second annular clamping plate 32 and the first annular clamping plate 12 are also separated from each other, until the blocking cover 2 is completely separated from the joint bottom plate 15 and the connecting joint 16, the supporting bottom plate 5 is controlled to rotate to form a certain angle, the outward pulling force on the supporting bottom plate 5 is released, at this time, the second annular clamping plate 32 and the first annular clamping plate 12 are engaged with each other at different positions under the elastic force of the reset spring 33, at this time, the relative angle between the supporting bottom plate 5 and the display shell 1 is fixed, and the supporting bottom plate 5 can support the display shell 1 as a whole.
[0030] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.
Claims
1. A multi-mode sensor signal intelligent acquisition, analysis and display device, comprising a display housing (1), characterized in that: The side outer wall of the display shell (1) is fixed with a linkage support (11) at the center, both ends of the linkage support (11) are fixed with a first annular clamping plate (12), both ends of the linkage support (11) are fixed with a linkage guide rod (13) vertically, one end of the linkage guide rod (13) is fixed with a limiting circular plate (14), the outer wall of the display shell (1) is symmetrically provided with a joint bottom plate (15) on both sides, the side wall of the joint bottom plate (15) is provided with a connecting joint (16), the connecting joint (16) is connected with the electrical elements in the display shell (1), the outer periphery of the joint bottom plate (15) is provided with a blocking cover (2), the blocking cover (2) is fixed with a connecting plate (21) near the end where the linkage support (11) is located, and the adjusting assembly (3) is arranged between one end of the two connecting plates (21).
2. The multi-mode sensor signal intelligent acquisition, analysis, and display device of claim 1, wherein: The adjusting assembly (3) comprises two sleeves (31), the sleeves (31) are slidably installed between the outer walls of the two linkage guide rods (13), and the outer walls of the sleeves (31) are fixed with the two connecting plates (21) at one end by the connecting plates.
3. The multi-mode sensor signal intelligent acquisition, analysis, and display device of claim 2, wherein: The sleeve (31) is fixed with a second annular clamping plate (32) on the side wall near the linkage support (11), and the second annular clamping plate (32) can be engaged with the first annular clamping plate (12).
4. The multi-mode sensor signal intelligent acquisition, analysis, display device of claim 3, wherein: The linkage guide rod (13) is slidably sleeved with a reset spring (33) between the outer walls, and the reset spring (33) is located between the limiting circular plate (14) and the adjacent side wall of the sleeve.
5. The multi-mode sensor signal intelligent acquisition, analysis, display device of claim 1, wherein: The bottom surface of the two blocking covers (2) is fixed with a linkage shaft rod (22) vertically near the edge of the two ends, and the shaft rod connecting plate (23) is clamped in the clamping groove of the linkage shaft rod (22).
6. The multi-mode sensor signal intelligent acquisition, analysis, and display device of claim 5, wherein: The bottom surface of the display shell (1) is provided with a rotating shaft sliding groove (17) at the center.
7. The multi-mode sensor signal intelligent acquisition, analysis, and display device of claim 6, wherein: Both ends of the shaft rod connecting plate (23) are hingedly connected with a linkage rotating shaft (4), and the linkage rotating shaft (4) can slide in the rotating shaft sliding groove (17).
8. The multi-mode sensor signal intelligent acquisition, analysis, and display device of claim 7, wherein: The bottom surface of the linkage rotating shaft (4) is fixed with a supporting bottom plate (5).