Internet of Things control equipment

By introducing insulated boxes, flame-retardant boxes, and automatic shut-off mechanisms into IoT control devices, the problem of fire damage to storage disks was solved, and the function of quickly locating storage disks was realized, improving the fire safety and location convenience of the equipment.

CN223515118UActive Publication Date: 2025-11-04CHANGZHOU YISTON TECH CO LTD
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Patent Information

Application Number
CN202421512562.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-11-04
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

In the event of a fire, IoT control devices are prone to damage to their storage disks due to short circuits, and these disks are difficult for staff to find quickly amidst debris.

Method used

An Internet of Things (IoT) control device was designed, comprising an insulated box and a flame-retardant box. It utilizes a sliding block, a knife switch, and an elastic element to automatically cut off the circuit and block the cable in the event of a fire. Combined with a vacuum zone and a backup power locator, it protects the storage disk and facilitates its location.

Benefits of technology

It effectively prevents fire from damaging storage disks, reduces the spread of fire, and helps staff quickly locate storage disks through backup power locators.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of control equipment, and provides internet of things control equipment, which comprises a control equipment body and a thermal insulation box, and further comprises two rails fixedly arranged at one end of the thermal insulation box, a plurality of sliding blocks are slidably mounted at the two ends, away from the center of the thermal insulation box, of the two rails; the two knife switches are fixedly mounted at the ends, close to the center of the thermal insulation box, of the multiple sliding blocks correspondingly, and limiting rods are slidably mounted on the inner walls of the multiple sliding blocks correspondingly; during use, open fire is prevented from entering the thermal insulation box through the rectangular pipe, fireproof protection on the storage disc is facilitated, customer information in the storage disc is protected, the flame-retardant box outside the thermal insulation box prevents the open fire from burning and reduces fire behavior, and the vacuum area between the thermal insulation box and the flame-retardant box facilitates reduction of temperature conduction media. And the storage disc in the thermal insulation box is prevented from being damaged by high temperature.
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Description

Technical Field

[0001] This utility model relates to the field of control equipment technology, and in particular to an Internet of Things (IoT) control device. Background Technology

[0002] Originating in the media field, the Internet of Things (IoT) represents the third revolution in the information technology industry. IoT refers to connecting any object to a network through information sensing devices and according to agreed-upon protocols. Objects exchange and communicate information through information transmission media to achieve intelligent identification, positioning, tracking, and monitoring functions. IoT control devices contain various electronic components that collect, process, and store information.

[0003] However, existing technologies have the following disadvantages when in use: IoT control devices have internal storage disks to store customer information, but the IoT control devices themselves are electrical equipment, which generates a certain amount of heat. Electrical equipment may face the risk of short circuits and fires, which can damage the storage disks inside the IoT control devices. In addition, after a fire, the scene is complicated, and the storage disks are often among debris, making it inconvenient for staff to find them. Therefore, there is an urgent need for an IoT control device to solve the above problems. Utility Model Content

[0004] The purpose of this invention is to solve the problem that in the existing technology, IoT control devices have corresponding storage disks inside to store customer information. However, the IoT control devices themselves are electrical equipment, which generates a certain amount of heat. Electrical equipment may face the situation of short circuit and fire, which will damage the storage disk inside the IoT control device. In addition, after a fire, the scene is complicated and the storage disk is among the debris, making it inconvenient for staff to find it.

[0005] To achieve the above objectives, this utility model adopts the following technical solution: an Internet of Things (IoT) control device, comprising: a control device body and an insulated box, wherein a storage tray is fixedly installed on the inner wall of the insulated box, and further comprising:

[0006] Two tracks are fixedly installed at one end of the insulation box, and multiple sliding blocks are slidably installed at both ends of the two tracks away from the center of the insulation box.

[0007] Two knife gates are respectively fixedly installed at one end of the plurality of sliding blocks near the center of the insulation box, and limit rods are slidably installed on the inner walls of the plurality of sliding blocks;

[0008] Two sets of first elastic elements are respectively fixedly installed at one end of the plurality of sliding blocks away from the center of the insulation box, and limit frames are slidably installed at both ends of the two tracks near the sliding blocks;

[0009] Two sets of second elastic elements are respectively fixedly installed at both ends of the two limiting frames near the sliding block, and trigger lines are fixedly connected to the ends of the two limiting frames away from the second elastic elements.

[0010] Preferably, one end of the control device body is provided with an inspection door, a flame-retardant box is fixedly installed at the bottom of the control device body, a rectangular tube is fixedly installed at one end of the flame-retardant box near the center of the control device body, the heat insulation box is fixedly installed on the inner wall of the flame-retardant box, and a transmission cable is provided inside the rectangular tube.

[0011] The technical effect of adopting the above-mentioned further solution is as follows: When a fire occurs in the environment where the control equipment body is located, the open flame will burn the maintenance door and also burn the trigger line near the maintenance door. At this time, the trigger line will no longer pull and restrict the two limit frames. The second elastic element will make the two limit frames move in opposite directions. The opposite ends of the two limit frames will not be in contact with the sliding block. After the sliding block is unrestricted, the taut first elastic element will quickly make multiple sliding blocks move relative to each other on the two tracks. When multiple sliding blocks move relative to each other, they will drive the switch fixed on the sliding block to move towards the transmission cable inside the rectangular tube and cut the transmission cable and the trigger line. After multiple sliding blocks collide, the wider switch will block the rectangular tube, preventing the open flame from entering the heat insulation box through the rectangular tube. This is beneficial for fire protection of the storage tray and protecting the customer information inside the storage tray. The flame-retardant box outside the heat insulation box prevents the open flame from burning and reduces the fire. The limit rod helps to prevent the first elastic element from bending.

[0012] Preferably, the end of the rectangular tube away from the maintenance door is fixedly sleeved on one end of the insulation box, the transmission cable is electrically connected to the control equipment body, the end of the transmission cable away from the maintenance door is electrically connected to the storage disk, the opposite ends of the two switches are in sliding contact, the opposite ends of the two limit frames are respectively located at the opposite ends of multiple sliding blocks, and a vacuum area is provided between the flame-retardant box and the insulation box.

[0013] The technical effect of adopting the above-mentioned further solution is that the vacuum area between the insulated box and the flame-retardant box facilitates the reduction of the heat conduction medium, which helps to prevent high temperature damage to the storage trays inside the insulated box.

[0014] Preferably, the ends of the two sets of first elastic members away from the sliding block are slidably installed on the inner wall of the insulation box, and the ends of the two sets of second elastic members near the sliding block are respectively fixedly installed on opposite ends of the two tracks.

[0015] The technical effect of adopting the above-mentioned further solution is that the first elastic element is fixed to the inner wall of the insulation box, which facilitates the enhancement of the stability of the first elastic element; one end of the second elastic element is fixed to the track and the other end is fixed to the limiting frame, which facilitates the enhancement of the stability of the second elastic element and prevents the second elastic element from bending.

[0016] Preferably, the end of the trigger line away from the limiting frame is movably sleeved on one end of the rectangular tube and one end of the insulation box, and a control frame is fixedly installed on the end of the limiting frame away from the track.

[0017] The technical effect of adopting the above-mentioned further solution is that the control frame moves with the limit frame, which facilitates enhanced stability during triggering.

[0018] Preferably, a control plate is slidably mounted on the end of the control frame away from the limiting frame, and the control plate is fixedly mounted on the inner wall of the insulation box.

[0019] The technical advantage of adopting the above-mentioned further solution is that the control board is fixed to the inner wall of the insulation box, which facilitates the enhancement of the stability of the control board.

[0020] Preferably, a backup power supply is fixedly installed at one end of the insulation box near the control board, and the backup power supply is electrically connected to the control board.

[0021] The technical effect of adopting the above-mentioned further solution is that the control board controls whether the current of the backup power supply is connected to the positioner.

[0022] Preferably, a positioner is fixedly installed at one end of the insulation box near the control board, and the positioner is electrically connected to the control board.

[0023] The technical effect of adopting the above-mentioned further solution is that after the locator is powered on, it transmits location information to the outside, which is received by the external receiver, making it convenient for staff to find the storage disk.

[0024] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0025] 1. In this utility model, during use, open flames are prevented from entering the interior of the insulated box through the rectangular tube, which is beneficial for fire protection of the storage tray and for protecting the customer information inside the storage tray. The flame-retardant box outside the insulated box prevents open flames from burning and reduces the fire intensity. In the vacuum area between the insulated box and the flame-retardant box, the medium for temperature conduction is reduced, which is beneficial for preventing high temperature damage to the storage tray inside the insulated box.

[0026] 2. In this utility model, when the limit frame moves, it drives the control frame to move inside the control board, thereby making the control board conductive. This allows the backup power supply current to be transmitted through the control board to the locator, enabling the locator to work and send the storage disk position to an external receiver, which is convenient for staff to find. Attached Figure Description

[0027] Figure 1 A three-dimensional structural diagram of an Internet of Things (IoT) control device provided by this utility model;

[0028] Figure 2 A cross-sectional perspective view of a three-dimensional structure of an Internet of Things (IoT) control device provided by this utility model;

[0029] Figure 3 A partial three-dimensional structural diagram of an Internet of Things (IoT) control device provided by this utility model;

[0030] Figure 4 This is a three-dimensional structural diagram of an Internet of Things (IoT) control device provided by this utility model.

[0031] Legend: 1. Control equipment body; 2. Inspection door; 3. Flame retardant box; 4. Transmission cable; 5. Rectangular tube; 6. Insulation box; 601. Track; 602. Limiting rod; 603. First elastic element; 604. Sliding block; 605. Knife switch; 606. Limiting frame; 607. Second elastic element; 608. Control frame; 609. Control board; 610. Positioner; 7. Storage disk; 8. Vacuum area; 9. Trigger line; 10. Backup power supply. Detailed Implementation

[0032] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0033] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0034] Example 1, such as Figure 1 - Figure 4 As shown, this utility model provides an Internet of Things (IoT) control device, including: a control device body 1 and an insulated box 6, wherein a storage disk 7 is fixedly installed on the inner wall of the insulated box 6, and further comprising:

[0035] Two tracks 601 are fixedly installed at one end of the insulation box 6, and multiple sliding blocks 604 are slidably installed at both ends of the two tracks 601 away from the center of the insulation box 6.

[0036] Two knife gates 605 are fixedly installed at one end of multiple sliding blocks 604 near the center of the insulation box 6, and limit rods 602 are slidably installed on the inner wall of each of the multiple sliding blocks 604;

[0037] Two sets of first elastic elements 603 are respectively fixedly installed at one end of multiple sliding blocks 604 away from the center of the insulation box 6, and limit frames 606 are slidably installed at both ends of the two tracks 601 near the sliding blocks 604.

[0038] Two sets of second elastic elements 607 are fixedly installed at both ends of the two limit frames 606 near the sliding block 604, and trigger lines 9 are fixedly connected to the ends of the two limit frames 606 away from the second elastic elements 607.

[0039] In this embodiment, during use, when a fire occurs in the environment where the control device body 1 is located, and the open flame burns the inspection door 2, it will also burn the trigger line 9 near the inspection door 2. At this time, the trigger line 9 will no longer pull and restrict the two limit brackets 606. The second elastic member 607 will move the two limit brackets 606 in opposite directions. The opposite ends of the two limit brackets 606 will not be in contact with the sliding block 604. After the sliding block 604 is no longer restricted, the taut first elastic member 603 will quickly move the multiple sliding blocks 604 relative to each other on the two tracks 601. When the multiple sliding blocks 604 move relative to each other, they will drive the lever 605 fixed on the sliding block 604 to move in the direction of torque. The transmission cable 4 inside the rectangular tube 5 moves in a certain direction and cuts off the transmission cable 4 and the trigger line 9. After multiple sliding blocks 604 abut against each other, the wider gate 605 blocks the rectangular tube 5, preventing open flames from entering the interior of the insulation box 6 through the rectangular tube 5. This is beneficial for fire protection of the storage tray 7 and for protecting the customer information inside the storage tray 7. The flame-retardant box 3 outside the insulation box 6 prevents open flames from burning and reduces the fire intensity. The vacuum area 8 between the insulation box 6 and the flame-retardant box 3 helps to reduce the medium for temperature conduction, which helps to prevent high temperature damage to the storage tray 7 inside the insulation box 6. The limit rod 602 helps to prevent the first elastic element 603 from bending.

[0040] Example 2, as Figure 1 - Figure 4As shown, a maintenance door 2 is provided at one end of the control device body 1. A flame-retardant box 3 is fixedly installed at the bottom of the control device body 1. A rectangular tube 5 is fixedly installed at one end of the flame-retardant box 3 near the center of the control device body 1. A heat insulation box 6 is fixedly installed on the inner wall of the flame-retardant box 3. A transmission cable 4 is installed inside the rectangular tube 5. The end of the rectangular tube 5 away from the maintenance door 2 is fixedly sleeved on one end of the heat insulation box 6. The transmission cable 4 is electrically connected to the control device body 1. The end of the transmission cable 4 away from the maintenance door 2 is electrically connected to the storage tray 7. The opposite ends of the two switches 605 slide in contact. The opposite ends of the two limit brackets 606 are respectively located at the opposite ends of multiple sliding blocks 604. A vacuum area 8 is provided between the flame-retardant box 3 and the heat insulation box 6. The ends of the two sets of first elastic elements 603 away from the sliding blocks 604 slide in contact. The two sets of second elastic elements 607 are fixedly installed on the inner wall of the insulation box 6. The ends of the two sets of second elastic elements 607 near the sliding block 604 are respectively fixedly installed on the opposite ends of the two tracks 601. The end of the trigger line 9 away from the limit frame 606 is movably sleeved on one end of the rectangular tube 5 and one end of the insulation box 6. One of the limit frames 606 is fixedly installed with a control frame 608 away from the track 601. The end of the control frame 608 away from the limit frame 606 is slidably installed with a control plate 609. The control plate 609 is fixedly installed on the inner wall of the insulation box 6. The end of the insulation box 6 near the control plate 609 is fixedly installed with a backup power supply 10. The backup power supply 10 is electrically connected to the control plate 609. The end of the insulation box 6 near the control plate 609 is fixedly installed with a positioner 610. The positioner 610 is electrically connected to the control plate 609.

[0041] In this embodiment, when the limit frame 606 moves, it drives the control frame 608 to move within the control board 609, thereby making the control board 609 conductive. This allows the current from the backup power supply 10 to be transmitted through the control board 609 to the locator 610, enabling the locator 610 to work and send the location of the storage disk 7 to an external receiver, which is beneficial for staff to find.

[0042] Working principle: During use, when a fire occurs in the environment where the control device body 1 is located, the open flame will burn the inspection door 2, which will also burn the trigger line 9 near the inspection door 2. At this time, the trigger line 9 will no longer pull and restrict the two limit brackets 606. The second elastic element 607 will make the two limit brackets 606 move in opposite directions. The opposite ends of the two limit brackets 606 will no longer be in contact with the sliding block 604. After the sliding block 604 is unrestricted, the taut first elastic element 603 will quickly make multiple sliding blocks 604 move relative to each other on the two tracks 601. When multiple sliding blocks 604 move relative to each other, they will drive the switch 605 fixed on the sliding block 604 to move towards the transmission cable 4 in the rectangular tube 5, cutting off the transmission cable 4 and the trigger line 9. After multiple sliding blocks 604 come into contact, the wider switch 605 will block the rectangular tube 5, preventing the open flame from passing through. The rectangular tube 5 leads into the interior of the insulated box 6, which helps to protect the storage tray 7 from fire and safeguard the customer information inside. The flame-retardant box 3 outside the insulated box 6 prevents open flames from burning and reduces the intensity of the fire. The vacuum area 8 between the insulated box 6 and the flame-retardant box 3 helps to reduce the medium for heat conduction, which helps to prevent high temperature damage to the storage tray 7 inside the insulated box 6. The limiting rod 602 helps to prevent the first elastic element 603 from bending. When in use, the movement of the limiting frame 606 drives the control frame 608 to move within the control plate 609, thereby putting the control plate 609 into a conductive state. This allows the current from the backup power supply 10 to be transmitted through the control plate 609 to the locator 610, enabling the locator 610 to work and send the position of the storage tray 7 to an external receiver, which is convenient for staff to find. The model of the locator 610 is E-06D.

[0043] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. An Internet of Things (IoT) control device, comprising a control device body (1) and an insulated box (6), wherein a storage tray (7) is fixedly installed on the inner wall of the insulated box (6), characterized in that, Also includes: Two tracks (601) are fixedly installed at one end of the insulation box (6), and multiple sliding blocks (604) are slidably installed at both ends of the two tracks (601) away from the center of the insulation box (6); Two knife gates (605) are respectively fixedly installed at one end of the plurality of sliding blocks (604) near the center of the insulation box (6), and limit rods (602) are slidably installed on the inner walls of the plurality of sliding blocks (604); Two sets of first elastic elements (603) are respectively fixedly installed at one end of the plurality of sliding blocks (604) away from the center of the insulation box (6), and limit frames (606) are slidably installed at both ends of the two tracks (601) near the sliding blocks (604); Two sets of second elastic elements (607) are respectively fixedly installed at both ends of the two limiting frames (606) near the sliding block (604), and trigger wires (9) are fixedly connected to the ends of the two limiting frames (606) away from the second elastic elements (607).

2. The Internet of Things (IoT) control device according to claim 1, characterized in that: One end of the control device body (1) is provided with an inspection door (2), and a flame-retardant box (3) is fixedly installed at the bottom of the control device body (1). A rectangular tube (5) is fixedly installed at one end of the flame-retardant box (3) near the center of the control device body (1). The heat insulation box (6) is fixedly installed on the inner wall of the flame-retardant box (3), and a transmission cable (4) is provided inside the rectangular tube (5).

3. The Internet of Things (IoT) control device according to claim 2, characterized in that: The rectangular tube (5) is fixedly sleeved at one end of the insulation box (6) away from the inspection door (2). The transmission cable (4) is electrically connected to the control equipment body (1). The transmission cable (4) is electrically connected to the storage tray (7) away from the inspection door (2). The opposite ends of the two switches (605) are in sliding contact. The opposite ends of the two limit frames (606) are respectively located at the opposite ends of multiple sliding blocks (604). A vacuum area (8) is provided between the flame-retardant box (3) and the insulation box (6).

4. The Internet of Things control device according to claim 3, characterized in that: The ends of the two sets of first elastic members (603) away from the sliding block (604) are slidably installed on the inner wall of the insulation box (6), and the ends of the two sets of second elastic members (607) near the sliding block (604) are respectively fixedly installed on opposite ends of the two tracks (601).

5. The Internet of Things (IoT) control device according to claim 4, characterized in that: The trigger line (9) is movably sleeved at one end of the rectangular tube (5) and one end of the insulation box (6) at the end away from the limit frame (606), and a control frame (608) is fixedly installed at one end of the limit frame (606) away from the track (601).

6. The Internet of Things control device according to claim 5, characterized in that: A control plate (609) is slidably mounted on one end of the control frame (608) away from the limit frame (606), and the control plate (609) is fixedly mounted on the inner wall of the insulation box (6).

7. The Internet of Things (IoT) control device according to claim 6, characterized in that: A backup power supply (10) is fixedly installed at one end of the insulation box (6) near the control board (609), and the backup power supply (10) is electrically connected to the control board (609).

8. An Internet of Things (IoT) control device according to claim 7, characterized in that: A locator (610) is fixedly installed at one end of the insulation box (6) near the control board (609), and the locator (610) is electrically connected to the control board (609).