Intelligent data online monitoring device

By designing adjustable wiring ports and data wiring harness components in the online data monitoring equipment and dispersing the wiring harness interface, the problems of large identification time consumption, high risk of connection errors and large time consumption of unplugged wiring harness mobile devices caused by dense wiring harness interfaces in the prior art are solved, and a more efficient connection and faster unplugging process is achieved.

CN119944340APending Publication Date: 2025-05-06FUJIAN CHENGFA IND TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510182989.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

When connecting wire harnesses, existing online data monitoring equipment has problems such as dense wire harness interfaces, high risk of identification, and high time consumption when unplugging wire harness mobile devices.

Method used

An intelligent online data monitoring device is designed, using adjustable wiring ports and data wiring harness components, and an adjustable wiring port is launched through the control knob. The bundled joint and independent joints are used to distribute the wiring harness interfaces to improve identification efficiency and reduce the risk of connection errors. At the same time, the data box is quickly separated when the wiring harness is removed.

Benefits of technology

The density of wiring harness interfaces is realized, the recognition efficiency of wiring harness and interfaces is improved, the risk of error connection is reduced, and time consumption is significantly reduced when the wiring harness and mobile devices are removed.

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Abstract

The invention discloses an intelligent data on-line monitoring device, and belongs to the technical field of data monitoring, the intelligent data on-line monitoring device comprises a data box body, a display panel and a control panel, the display panel and the control panel are arranged on the front surface of the data box body, the side surface of the data box body is provided with a through slot, and the interior of the through slot is slidably connected with an adjustable wiring port. A control knob is arranged on the data box body, the control knob rotates clockwise to control the adjustable wiring port to be pushed out from the inside of the through slot, a data wire harness assembly is inserted into the adjustable wiring port, a rubber dustproof plug is arranged on the side surface of the data box body, and the rubber dustproof plug is clamped with the through slot after moving. According to the invention, the density of the wire harness interfaces of the data box body can be dispersed, the efficiency of identifying the wire harnesses and the interfaces correspondingly is improved, the risk of misconnection of the wire harnesses is reduced, and the time consumption for removing the wire harnesses and moving the data equipment is reduced when the wire harnesses are removed and the data equipment is moved.
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Description

Technical Field

[0001] The present invention relates to the technical field of data monitoring, and more particularly to an intelligent online data monitoring device. Background Art

[0002] Online data monitoring equipment refers to automated systems used to collect, transmit, and analyze various physical or chemical parameters in real time. These devices are widely used in a variety of fields, including industrial production, environmental protection, energy management, and public safety, to ensure operational safety, efficiency, and compliance. Monitoring devices are typically connected to the system using external cables, such as data cables.

[0003] At present, when data online monitoring equipment is put into a specific area for data connection, multiple connection harnesses need to be connected between the data online monitoring equipment and external devices. Since the harness interfaces are relatively dense, the increase in the number of connection harnesses will not only increase the time consumption for corresponding identification of the harnesses and interfaces, but also increase the risk of incorrect connection of the harnesses. At the same time, it will also increase the time consumption when releasing the harnesses and moving the data equipment.

[0004] Therefore, in view of this, the existing structure is studied and improved, and an intelligent data online monitoring device is provided to achieve a purpose with greater practical value. Summary of the Invention

[0005] 1. Technical problems to be solved

[0006] In response to the problems existing in the prior art, the purpose of the present invention is to provide an intelligent data online monitoring device, which can achieve the dispersion of the density of the wiring harness interface of the data box, improve the efficiency of the corresponding identification of the wiring harness and the interface, reduce the risk of incorrect connection of the wiring harness, and reduce the time consumption of releasing the wiring harness and moving the data device when releasing the wiring harness and moving the data device.

[0007] 2. Technical solution

[0008] To solve the above problems, the present invention adopts the following technical solutions.

[0009] An intelligent online data monitoring device includes a data box, a display panel and a control panel arranged on the front of the data box, a through slot hole opened on the side of the data box, an adjustable wiring port slidably connected to the interior of the through slot hole, and a control knob provided on the data box. The control knob is rotated clockwise to control the adjustable wiring port to be pushed out from the interior of the through slot hole, and a data harness assembly is plugged into the adjustable wiring port. A rubber dust plug is provided on the side of the data box, and the rubber dust plug engages with the through slot hole after movement;

[0010] The data wiring harness assembly consists of a cluster docking joint, several separate wiring harnesses and several independent docking joints. The cluster docking joint is snap-fitted to the adjustable wiring port. A buckle is provided on the side of the data box. When the cluster docking joint is close to the data box, its side is snap-fitted to the buckle. The number of separate wiring harnesses and independent docking joints is set equal, and the two are set in one-to-one correspondence. One end of several separate wiring harnesses is centrally fixed to the side of the cluster docking joint, and the independent docking joint is fixed to the other end of the separate wiring harness. The sides of several separate wiring harnesses are sleeved with several elastic clamping sleeves.

[0011] Furthermore, a sealing cover is snap-fitted to the top of the data box, and a partition plate is fixedly provided on the inner top of the data box, forming a storage space between the sealing cover and the partition plate;

[0012] The data harness assembly is arranged inside the storage space.

[0013] Furthermore, a sliding rod is provided on the back of the data box, a connecting shaft is fixedly provided on one end of the control knob, a threaded rod is fixed on the end of the connecting shaft away from the control knob, and the connecting shaft is rotatably connected to the outer wall of the data box;

[0014] Two slide bars are fixedly installed on the side of the adjustable wiring port. The slide bar and the threaded rod are all inside the data box. One slide bar is slidably connected to the slide bar, and the other slide bar is threadedly connected to the threaded rod.

[0015] Furthermore, a limit joint is fixedly installed at one end of the sliding rod, and the depth of the through slot hole is half of the thickness of the adjustable wiring port.

[0016] Furthermore, a clamping strip is fixedly mounted on the top of the side of the cluster joint. When the clamping strip is pushed forward and contacts the outer wall of the data box, the clamping strip is clamped inside the buckle.

[0017] Furthermore, the buckle is hinged to the side wall of the data box body, the buckle is an L-shaped structure, and when the buckle rotates, its inner side is in contact with the card strip, and a pull rod is fixed to the outer side of the buckle;

[0018] A torque spring is installed at one end of the rotating shaft of the buckle.

[0019] Furthermore, the number of the separated wiring harnesses and independent docking joints is not less than five, and the number of the elastic ferrules is not less than eight.

[0020] Furthermore, a connecting piece is hinged on the side of the data box, one end of the connecting piece is fixed with a rubber rope, and the other end of the rubber rope is fixed to a rubber dust plug.

[0021] 3. Beneficial effects

[0022] Compared with the prior art, the advantages of the present invention are:

[0023] In this solution, when the data box is in use, the adjustable wiring port is pushed out by the control knob, and the data harness assembly is used to connect to the adjustable wiring port. When connecting, the card strip is used to identify the up and down directions of the connection. After the connection, an independent docking connector is used to dock other devices, thereby dispersing the density of the harness interface of the data box, improving the efficiency of corresponding identification of the harness and the interface, and reducing the risk of incorrect connection of the harness. When releasing the harness and moving the data device, the data box can be quickly separated by separating the data harness assembly from the adjustable wiring port, thereby reducing the time consumption of releasing the harness and moving the data device. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;

[0025] Figure 2 It is a structural diagram of the data box of the present invention;

[0026] Figure 3 For the present invention Figure 2 The structural diagram of the enlarged part A in the middle;

[0027] Figure 4 It is a schematic diagram of the three-dimensional structure of the control part of the adjustable wiring port of the present invention;

[0028] Figure 5 It is a schematic planar structural diagram of the control portion of the adjustable wiring port of the present invention;

[0029] Figure 6 It is a structural schematic diagram of the data harness assembly in the present invention.

[0030] Description of the numbers in the figure:

[0031] 1. Data box; 101. Display panel; 102. Control panel; 103. Through slot;

[0032] 104, buckle; 1041, pull bar; 1042, torque spring;

[0033] 105, sealing cover; 106, partition plate; 107, slide bar; 1071, limit joint;

[0034] 108, connector; 1081, rubber rope;

[0035] 2. Adjustable wiring port; 201. Slide bar;

[0036] 3. Control knob; 301. Connecting shaft; 302. Threaded rod;

[0037] 4. Data harness assembly;

[0038] 401, cluster butt joint; 4011, card strip;

[0039] 402, separate wiring harness; 403, independent docking connector; 404, elastic ferrule;

[0040] 5. Rubber dust plug. DETAILED DESCRIPTION

[0041] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0042] Example 1:

[0043] See also Figure 1 - Figure 6 , an intelligent data online monitoring device, including a data box 1, a display panel 101 and a control panel 102 arranged on the front of the data box 1, a through slot 103 is opened on the side of the data box 1, and an adjustable wiring port 2 is slidably connected to the inside of the through slot 103, and a control knob 3 is provided on the data box 1. The control knob 3 is rotated clockwise to control the adjustable wiring port 2 to be pushed out from the inside of the through slot 103, and a data harness assembly 4 is plugged into the adjustable wiring port 2. A rubber dust plug 5 is provided on the side of the data box 1, and the rubber dust plug 5 is engaged with the through slot 103 after movement.

[0044] The data box 1 includes a CPU and a power supply device for the data processing center. The control panel 102 is used in conjunction with the display panel 101 to operate and observe the data monitored by the data box 1. When the data box 1 is not in use, the adjustable wiring port 2 is hidden inside the through slot 103, and the through slot 103 is blocked with a rubber dust plug 5 to achieve dustproof protection.

[0045] When the data box 1 needs to be used, remove the rubber dust plug 5, use the control knob 3 to turn clockwise to unscrew the adjustable wiring port 2, and then connect the data harness assembly 4 to the adjustable wiring port 2 to disperse the dense wiring ports into the corresponding wiring harness, avoiding the problem of incorrect wiring harness connection caused by dense wiring harness interfaces.

[0046] The data wiring harness assembly 4 consists of a clustered docking joint 401, several separated wiring harnesses 402 and several independent docking joints 403. The clustered docking joint 401 is snap-connected to the adjustable wiring port 2. A buckle 104 is provided on the side of the data box 1. When the clustered docking joint 401 is close to the data box 1, its side is snap-connected to the buckle 104. The number of separated wiring harnesses 402 and independent docking joints 403 is set equal, and the two are set in one-to-one correspondence. One end of several separated wiring harnesses 402 is centrally fixed to the side of the clustered docking joint 401, and the independent docking joint 403 is fixed to the other end of the separated wiring harness 402. The sides of several separated wiring harnesses 402 are sleeved with several elastic clamping sleeves 404.

[0047] When the cluster docking connector 401 is inserted into the adjustable wiring port 2, the cluster docking connector 401 is positioned using the buckle 104 to ensure the stability of the connection between the cluster docking connector 401 and the adjustable wiring port 2. In this way, the cluster docking connector 401 exports the signal of the data box 1 and separates it from different separation harnesses 402 to the corresponding independent docking connector 403, and then the independent docking connector 403 is connected to the corresponding device or electronic component. By using the data harness assembly 4, the effective distance between the data box 1 and the corresponding device or electronic component can be extended. During connection, each independent docking connector 403 can be used independently, and each independent docking connector 403 can be effectively identified.

[0048] At the same time, when releasing the wire harness, the data box 1 can be quickly separated by directly separating the cluster joint 401 from the adjustable wiring port 2, thereby reducing the time consumption when releasing the wire harness.

[0049] Example 2:

[0050] Based on the above embodiment 1, further description is given.

[0051] See Figure 1 、 Figure 2 、 Figure 3 Specifically, a sealing cover 105 is snap-fitted to the top of the data box 1 , and a partition plate 106 is fixedly provided on the inner top of the data box 1 , forming a storage space between the sealing cover 105 and the partition plate 106 .

[0052] The data harness assembly 4 is placed inside the storage space.

[0053] The partition plate 106 and the sealing cover 105 form a storage space, which can accommodate devices or structures such as the data harness assembly 4, thereby facilitating the overall movement of the data box 1, improving the practicality of the data box 1, and increasing the rationality of the internal space division of the data box 1.

[0054] See Figure 4 、 Figure 5Specifically, a sliding rod 107 is provided on the back of the data box 1, a connecting shaft 301 is fixedly provided at one end of the control knob 3, a threaded rod 302 is fixed at the end of the connecting shaft 301 away from the control knob 3, and the connecting shaft 301 is rotatably connected to the outer wall of the data box 1.

[0055] Two slide bars 201 are fixedly installed on the side of the adjustable wiring port 2. The slide bar 107, the threaded rod 302 and the two slide bars 201 are all inside the data box 1. One slide bar 201 is slidably connected to the slide bar 107, and the other slide bar 201 is threadedly connected to the threaded rod 302.

[0056] The slide bar 107 limits the moving direction of the adjustable wiring port 2. When the control knob 3 is rotated clockwise, the connecting shaft 301 and the threaded rod 302 rotate clockwise synchronously. At this time, the adjustable wiring port 2 can be controlled to be pushed out of the data box 1 along the inner wall of the through slot 103, so that the adjustable wiring port 2 can be pushed out of the data box 1, which is convenient for wiring harness identification and connection.

[0057] At the same time, when the adjustable wiring port 2 is not connected to the wiring harness, the control knob 3 is rotated counterclockwise to control the adjustable wiring port 2 to be pushed into the data box 1, thereby hiding the position of the adjustable wiring port 2 and preventing collision damage.

[0058] Specifically, a limit joint 1071 is fixedly installed at one end of the sliding rod 107 , and the depth of the through slot 103 is half of the thickness of the adjustable wiring port 2 .

[0059] The limit joint 1071 and the side wall of the through slot 103 are used to limit the movement range of the adjustable wiring port 2, thereby preventing the adjustable wiring port 2 from completely falling into the data box 1 and also preventing the adjustable wiring port 2 from falling out of the data box 1.

[0060] See Figure 1 、 Figure 2 、 Figure 6 Specifically, a clamping strip 4011 is fixedly installed on the top of the side of the cluster docking joint 401. When the clamping strip 4011 is pushed forward and contacts the outer wall of the data box 1, the clamping strip 4011 is clamped into the inside of the buckle 104.

[0061] The clamping strip 4011 can be used to distinguish the upper and lower directions of the cluster butt joint 401 , thereby preventing the cluster butt joint 401 from being incorrectly connected to the adjustable wiring port 2 .

[0062] At the same time, the clamping connection between the clamping strip 4011 and the buckle 104 can prevent the clustered butt joint 401 from falling off when the clustered butt joint 401 is docked with the adjustable wiring port 2 .

[0063] Specifically, the buckle 104 is hinged to the side wall of the data box 1 . The buckle 104 is an L-shaped structure. When the buckle 104 rotates, its inner side fits against the clip 4011 , and a pull bar 1041 is fixed to the outer side of the buckle 104 .

[0064] The pull bar 1041 is used to facilitate operation of the buckle 104 .

[0065] A torque spring 1042 is installed at one end of the rotating shaft of the buckle 104 .

[0066] When the cluster docking joint 401 is not docked with the adjustable wiring port 2, under the action of the torque spring 1042, the buckle 104 is in a fastened state, that is, the initial state of the buckle 104. When the cluster docking joint 401 needs to be docked with the adjustable wiring port 2, the pull rod 1041 is used to pull open the buckle 104, and the clamping strip 4011 is pushed in. Then the pull rod 1041 is released, and the torque spring 1042 is cooperated to lock the clamping strip 4011 and the cluster docking joint 401.

[0067] When the cluster joint 401 is separated from the adjustable wiring port 2, the pull rod 1041 is pulled again to pull out the clamping strip 4011, and then the pull rod 1041 is released. Under the action of the torque spring 1042, the buckle 104 returns to its initial fastened state, which is convenient for subsequent repeated use.

[0068] See Figure 1 、 Figure 6 Specifically, the number of separated wiring harnesses 402 and independent docking joints 403 is not less than five, and the number of elastic ferrules 404 is not less than eight.

[0069] Control the number of separation harnesses 402 and independent docking joints 403 to ensure that the data box 1 can be connected to a sufficient number of devices. At the same time, control the number of elastic clamps 404. By adjusting the position of the elastic clamps 404, except for the separation harnesses 402 at the independent docking joints 403 to maintain a certain independent space, the separation harnesses 402 at other positions all use elastic clamps 404 to bundle them, which is convenient for the centralized management of the separation harnesses 402 and avoids the problem of scattered harnesses.

[0070] See Figure 1 、 Figure 2 Specifically, a connector 108 is hinged on the side of the data box 1 , one end of the connector 108 is fixed with a rubber rope 1081 , and the other end of the rubber rope 1081 is fixed to the rubber dust plug 5 .

[0071] The rubber dust plug 5 is bound by the connecting piece 108 and the rubber rope 1081 , so as to avoid the rubber dust plug 5 from being lost when the rubber dust plug 5 is separated from the through slot 103 .

[0072] Working principle:

[0073] When the data box 1 is not in use, the rubber dust plug 5 blocks the through slot 103 to provide dust protection.

[0074] When the data box 1 is in use, the rubber dust plug 5 is removed and the control knob 3 is rotated clockwise. The connecting shaft 301 and the threaded rod 302 are rotated clockwise synchronously. At this time, the adjustable wiring port 2 can be controlled to be pushed out of the data box 1 along the inner wall of the through slot 103.

[0075] Then, use the pull rod 1041 to pull open the buckle 104, insert the cluster docking joint 401 of the data harness assembly 4 into the adjustable wiring port 2, and at the same time push the clamping strip 4011 into the inside of the buckle 104, and then release the pull rod 1041, and cooperate with the torque spring 1042 to lock the clamping strip 4011 and the cluster docking joint 401. At this time, the cluster docking joint 401 exports the signal of the data box 1 and separates it from different separation harnesses 402 to the corresponding independent docking joints 403, and then the independent docking joint 403 is connected to the corresponding device or electronic component to complete the dispersion of the harness interface of the data box 1.

[0076] When the data box 1 is finished being used, the lever 1041 is pulled again to pull out the clamping strip 4011 , and then the lever 1041 is released to complete the quick separation of the adjustable wiring port 2 and the data harness assembly 4 .

[0077] The above description is merely a preferred embodiment of the present invention; however, the scope of protection of the present invention is not limited thereto. Any person skilled in the art who, within the technical scope disclosed by the present invention, makes equivalent substitutions or modifications based on the technical solutions and improved concepts of the present invention shall be covered by the scope of protection of the present invention.

Claims

1. An intelligent data online monitoring device, comprising a data box (1), a display panel (101) and a control panel (102) arranged on the front of the data box (1), characterized in that: The side of the data box (1) is provided with a through slot hole (103), the inside of the through slot hole (103) is slidably connected with an adjustable wiring port (2), and the data box (1) is provided with a control knob (3), the control knob (3) is turned clockwise to control the adjustable wiring port (2) to be pushed out from the inside of the through slot hole (103), and the adjustable wiring port (2) is plugged with a data harness assembly (4), and the side of the data box (1) is provided with a rubber dust plug (5), and the rubber dust plug (5) is engaged with the through slot hole (103) after being moved; The data harness assembly (4) is composed of a clustering joint (401), a plurality of separation harnesses (402) and a plurality of independent joints (403); the clustering joint (401) is snap-connected with the adjustable wiring port (2); a buckle (104) is arranged on the side of the data box (1); when the clustering joint (401) is close to the data box (1), its side is snap-connected with the buckle (104); the number of separation harnesses (402) and independent joints (403) is equal and they are arranged in a one-to-one correspondence; one end of the plurality of separation harnesses (402) is fixed to the side of the clustering joint (401); the independent joints (403) are fixed to the other end of the separation harness (402); and the side of the plurality of separation harnesses (402) is sleeved with a plurality of elastic sleeves (404).

2. The intelligent online data monitoring device according to claim 1 is characterized in that: The top of the data box (1) is snap-fitted with a sealing cover (105), and the inner top of the data box (1) is fixedly provided with a partition plate (106), and a storage space is formed between the sealing cover (105) and the partition plate (106); The data harness assembly (4) is arranged inside the storage space.

3. The intelligent online data monitoring device according to claim 1 is characterized in that: A sliding rod (107) is arranged on the back of the data box (1); a connecting shaft (301) is fixedly arranged at one end of the control knob (3); a threaded rod (302) is fixedly arranged at one end of the connecting shaft (301) away from the control knob (3); and the connecting shaft (301) is rotatably connected to the outer wall of the data box (1); Two slide bars (201) are fixedly mounted on the side of the adjustable wiring port (2); the slide bar (107), the threaded rod (302), and the two slide bars (201) are all located inside the data box (1); one of the slide bars (201) is slidably connected to the slide bar (107), and the other slide bar (201) is threadedly connected to the threaded rod (302).

4. The intelligent online data monitoring device according to claim 3 is characterized in that: A limit joint (1071) is fixedly mounted on one end of the slide rod (107), and the depth of the through slot hole (103) is half of the thickness of the adjustable wiring port (2).

5. The intelligent online data monitoring device according to claim 1 is characterized in that: A clamping strip (4011) is fixedly mounted on the top of the side of the cluster joint (401), and when the clamping strip (4011) is pushed forward and contacts the outer wall of the data box (1), the clamping strip (4011) is clamped into the inside of the buckle (104).

6. The intelligent online data monitoring device according to claim 5, characterized in that: The buckle (104) is hinged to the side wall of the data box (1), the buckle (104) is an L-shaped structure, and when the buckle (104) rotates, the inner side thereof fits with the clamping strip (4011), and a pull rod (1041) is fixed to the outer side of the buckle (104); A torque spring (1042) is installed at one end of the rotating shaft of the buckle (104).

7. The intelligent online data monitoring device according to claim 1 is characterized in that: The number of the separated wire harnesses (402) and the independent docking joints (403) provided is not less than five, and the number of the elastic ferrules (404) provided is not less than eight.

8. The intelligent online data monitoring device according to claim 1 is characterized in that: A connecting piece (108) is hinged on the side of the data box (1), a rubber rope (1081) is fixed to one end of the connecting piece (108), and the other end of the rubber rope (1081) is fixed to a rubber dust plug (5).