CN213087756U - Sliding device of intelligent storage and management safety cabinet - Google Patents

Sliding device of intelligent storage and management safety cabinet Download PDF

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Publication number
CN213087756U
CN213087756U CN202021037324.XU CN202021037324U CN213087756U CN 213087756 U CN213087756 U CN 213087756U CN 202021037324 U CN202021037324 U CN 202021037324U CN 213087756 U CN213087756 U CN 213087756U
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China
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moving block
intelligent storage
supporting plate
elastic member
sliding device
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CN202021037324.XU
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Chinese (zh)
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何华东
马光辉
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Ningbo Shengda Intelligent Technology Co ltd
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Ningbo Shengda Intelligent Technology Co ltd
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Abstract

The present application relates to the field of safety equipment, and more particularly to a sliding device of an intelligent storage and management safety cabinet, which comprises a supporting plate, wherein the supporting plate is used for placing the object and is also provided with at least one groove; at least one rolling body rotatably installed on the support plate and located at a front side of the groove, wherein the object can move back and forth by rolling of the rolling body when the object is placed on the rolling body; and a stop mechanism mounted within the recess, wherein the stop mechanism is configured to controllably move up and down a predetermined distance to block movement of the object. The utility model discloses can realize convenient to use, install convenient and have the advantage of theftproof function through effectively utilizing its self structural configuration.

Description

Sliding device of intelligent storage and management safety cabinet
Technical Field
The application relates to the field of safety equipment, in particular to a sliding device of an intelligent storage and management safety cabinet.
Background
At present, in order to improve the safety coefficient of the safety box, most of the safety boxes adopt various anti-theft technologies and structures. For example, the possibility that the safe is damaged by external force and is stolen is reduced by constructing a solid cabinet body and a cabinet door; and the condition that the safe is illegally unlocked is reduced by improving the complexity of the lock cylinder. However, most current safes usually have at least one support plate for placing objects, but the support plate only has a support function. When the user placed the backup pad with the heavy object on, because the effect of gravity, the heavy object can directly be pressed in the backup pad, and then leads to the user to need to spend great strength, could impel the safe deposit box with the heavy object. In addition, after such external safety measures of the safe are broken, the heavy object cannot be prevented from being taken away, so that the safety is not high. In view of the above, it is necessary to design a sliding device of an intelligent storage and management safety cabinet, which is convenient to use and install and has an anti-theft function.
Therefore, a need exists for a sliding device for an intelligent safe deposit box that is easy to use, easy to install, and has an anti-theft function.
SUMMERY OF THE UTILITY MODEL
The main object of the present application is to provide a sliding apparatus for an intelligent safe deposit and management cabinet, wherein the sliding apparatus for an intelligent safe deposit and management cabinet can effectively utilize its own structural configuration to realize the advantages of convenient use and anti-theft function.
Another object of the present application is to provide a sliding device of an intelligent storage and protection cabinet, wherein the sliding device of the intelligent storage and protection cabinet comprises at least one rolling body, and the rolling body can enable the object to slide on the rolling body through self rotation.
It is another object of the present application to provide a sliding apparatus of an intelligent storage and protection cabinet, wherein the sliding apparatus of the intelligent storage and protection cabinet includes a position-limiting mechanism installed in the groove, wherein the position-limiting mechanism is configured to controllably move up and down a predetermined distance to block the movement of the object.
Another object of the present application is to provide a sliding device for an intelligent safe deposit and management cabinet, wherein the sliding device for an intelligent safe deposit and management cabinet has a simple structure, is easy to operate, does not involve complicated manufacturing processes and expensive materials, has high economical efficiency, and is easy to popularize and use.
In order to achieve at least one of the above objects, the present application provides a sliding apparatus for an intelligent safe deposit cabinet, for placing an object in the intelligent safe deposit cabinet, wherein the sliding apparatus for the intelligent safe deposit cabinet comprises:
a support plate, wherein the support plate is used for placing the object and is also provided with at least one groove;
at least one rolling body rotatably installed on the support plate and located at a front side of the groove, wherein the object can roll by the rolling body to move forward and backward when the object is placed on the rolling body; and
a spacing mechanism mounted within the recess, wherein the spacing mechanism is configured to controllably move up and down a predetermined distance to block movement of the object;
when the object is contacted with the limiting mechanism, the limiting mechanism is pressed by the object so that the limiting mechanism retracts downwards for a preset distance to allow the object to pass through, and when the object passes through the limiting mechanism, the limiting mechanism extends upwards for a preset distance to block the movement of the object.
In one or more embodiments of the present application, the limiting mechanism includes a moving block and a first elastic member, wherein the moving block has a connecting surface, the connecting surface is connected to one end of the first elastic member, and the other end of the first elastic member abuts against a bottom wall forming the groove, so that the limiting mechanism is stably fixed.
In one or more embodiments of the present application, the moving block includes two guiding surfaces, the guiding surfaces directly contact with a bottom of the object and are pressed by the bottom of the object, so that the first elastic member connected to the moving block is deformed, and the moving block moves downward by a predetermined distance to change a height of the moving block, so that the moving block no longer blocks a moving path of the object, wherein when the height of the moving block is flush with a surface of the supporting plate, the moving block no longer blocks the object to move.
In one or more embodiments of the present application, the guide surface of the moving block is a sloped surface.
In one or more embodiments of the present application, the moving block further includes a locking groove, and the locking groove is located on a side surface of the moving block.
In one or more embodiments of the present application, the sliding device of the intelligent storage and management safety cabinet further includes a stopper having a retractable protrusion facing the slot, and a touch member, wherein the stopper and the touch member are vertically disposed at a side of the supporting plate, wherein the touch member is electrically connected to the stopper to control the protrusion to be retracted by touching, and wherein when the protrusion extends out of a predetermined distance, the protrusion is engaged with the slot to limit the movement of the moving block.
In one or more embodiments of the present application, the sliding apparatus of the intelligent safe deposit box further comprises an induction lamp, the induction lamp is vertically arranged on the side wall of the supporting plate, and the induction lamp is electrically connected with the touch component.
In one or more embodiments of the present invention, the sliding device further includes a bottom plate and a second elastic member, one end of the elastic member is connected to the bottom of the supporting plate, and the other end of the second elastic member is connected to the top of the bottom plate, wherein the supporting plate is pressed by the object, so that the second elastic member connected to the supporting plate is deformed, and the supporting plate is moved downward by a predetermined distance, so that the supporting plate abuts against the bottom plate.
In one or more embodiments of the present application, the sliding apparatus of the intelligent storage and protection cabinet further comprises an alarm assembly, the alarm assembly comprising a sensing assembly and an alarm element, the sensing assembly being mounted on the base plate, wherein the alarm element is vertically disposed on the same side of the sensing lamp.
In one or more embodiments of the present disclosure, the alarm device further includes a touch switch installed on the same side of the alarm element, wherein the touch switch is electrically connected to the alarm element, and the touch switch is further electrically connected to the sensing device, wherein the touch switch can control the alarm element to be turned on or off.
Drawings
These and/or other aspects and advantages of the present application will become more apparent and more readily appreciated from the following detailed description of the embodiments of the present application, taken in conjunction with the accompanying drawings of which:
fig. 1 illustrates a first structural schematic diagram of a sliding device of an intelligent storage and protection cabinet.
Fig. 2 illustrates a partial structural schematic diagram of a sliding device of an intelligent storage and protection cabinet.
Fig. 3 illustrates a second structural schematic diagram of a sliding device of the intelligent safe deposit cabinet.
Fig. 4, 5 and 6 illustrate the use principle of the sliding device of the intelligent storage and protection cabinet.
Detailed Description
The terms and words used in the following specification and claims are not limited to the literal meanings, but are used only by the inventors to enable a clear and consistent understanding of the application. Accordingly, it will be apparent to those skilled in the art that the following descriptions of the various embodiments of the present application are provided for illustration only and not for the purpose of limiting the application as defined by the appended claims and their equivalents.
It is understood that the terms "a" and "an" should be interpreted as meaning that a number of one element or element is one in one embodiment, while a number of other elements is one in another embodiment, and the terms "a" and "an" should not be interpreted as limiting the number.
While ordinal numbers such as "first," "second," etc., will be used to describe various components, those components are not limited herein. The term is used only to distinguish one element from another. For example, a first component could be termed a second component, and, similarly, a second component could be termed a first component, without departing from the teachings of the present inventive concept. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
The terminology used herein is for the purpose of describing various embodiments only and is not intended to be limiting. As used herein, the singular forms are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and/or "comprising," when used in this specification, specify the presence of stated features, numbers, steps, operations, components, elements, or combinations thereof, but do not preclude the presence or addition of one or more other features, numbers, steps, operations, components, elements, or groups thereof.
Summary of the application
At present, in order to improve the safety coefficient of the safety box, most of the safety boxes adopt various anti-theft technologies and structures. For example, the possibility that the safe is damaged by external force and is stolen is reduced by constructing a solid cabinet body and a cabinet door; and the condition that the safe is illegally unlocked is reduced by improving the complexity of the lock cylinder. However, most current safes usually have at least one support plate for placing objects, but the support plate only has a support function. When the user placed the backup pad with the heavy object on, because the effect of gravity, the heavy object can directly be pressed in the backup pad, and then leads to the user to need to spend great strength, could impel the safe deposit box with the heavy object. In addition, after such external safety measures of the safe are broken, the heavy object cannot be prevented from being taken away, so that the safety is not high. In view of the above, it is necessary to design a sliding device of an intelligent storage and management safety cabinet, which is convenient to use and install and has an anti-theft function.
Based on this, a sliding device of an intelligent storage and management safety cabinet with convenient use, convenient installation and anti-theft function is needed.
Based on the technical problem, the application provides a sliding device of an intelligent storage and management safety cabinet, wherein the sliding device of the intelligent storage and management safety cabinet is simple in structure, does not relate to complex manufacturing process and expensive materials, and has high economical efficiency.
Sliding device of schematic intelligent storage and management safety cabinet
Fig. 1 to 6 illustrate a sliding device of an intelligent storage and protection cabinet for placing objects in the intelligent storage and protection cabinet.
Specifically, the sliding device of the intelligent storage and management security cabinet comprises a supporting plate 10, the supporting plate 10 is installed inside the intelligent storage and management security cabinet 200 to divide the inside of the intelligent storage and management security cabinet 200 into at least two accommodating spaces 201, wherein the accommodating spaces 201 have an opening 2011 and a cavity 2012, the cavity 2012 is communicated with the opening 2011, the cavity 2012 is used for accommodating the object 300, and the supporting plate 10 is used for placing the object 300.
It is worth mentioning that when the existing intelligent storage and management security cabinet 200 stores or takes out the object 300, the user needs to manually push the object 300 into the intelligent storage and management security cabinet 200 or pull the object 300 out of the intelligent storage and management security cabinet 200. When the weight of the object 300 is too large, the user may have difficulty in pushing and pulling the object 300, which is very inconvenient to use. And the utility model discloses a rolling friction pushes away puts or pulls out article 300, and then effectively reduces the user and places article 300 in the intelligence deposits and manages the danger cabinet 200 or take out the degree of difficulty that takes out in the intelligence deposits and manages the danger cabinet 200 to improve the convenience of using.
Specifically, the sliding device of the intelligent storage and management safety cabinet further comprises at least one rolling body 20, wherein the rolling body 20 is rotatably mounted on the support plate 10, when an object 300 passes through the opening 2011 and enters the cavity 2012, the rolling body 20 directly contacts the object 300, and the object 300 is subjected to a thrust force, so that the rolling body 20 is subjected to a friction force on the bottom surface of the object 300 to generate self-rotation, so that the object 300 moves to the bottom of the cavity 2012 along the rolling body 20. It should be noted that most of the existing safes only have a support plate 10 to support the object 300, and when the object 300 needs to be stored or taken, the bottom of the object 300 directly contacts the support plate 10, and the object 300 slides on the support plate 10 by being subjected to external force. When the object 300 and the supporting plate 10 are in sliding friction and the contact surface between the object 300 and the supporting plate 10 is too large, the friction force between the object 300 and the supporting plate 10 is very large when the gravity of the object 300 is too large, which may make it difficult for a user to push or pull the object 300. And the utility model discloses a rolling of rolling element 20 takes or places article 300, and the rolling element 20 with the friction between the article 300 is rolling friction, and the rolling element 20 with the contact surface between the article 300 is very little, so when article 300 gravity increases, the user can be very convenient through the rolling of rolling element 20 will article 300 take out intelligence storage and management safety cabinet 200 or place intelligence storage and management safety cabinet 200.
Further, the supporting plate 10 has at least one groove 101, the groove 101 is located at the front side of the rolling element 20, and the groove 101 is close to the opening 2011
Specifically, the sliding device of the intelligent storage and management security cabinet further comprises a limiting mechanism 30, the limiting mechanism 30 is installed in the groove 101, wherein the limiting mechanism 30 comprises a moving block 31 and a first elastic member 32, the moving block 31 has a connecting surface 311, and the connecting surface 311 is connected to one end of the first elastic member 32. Further, the other end of the first elastic member 32 abuts against the bottom wall forming the groove 101, wherein the first elastic member 32 may further be implemented as a spring. It should be understood by those skilled in the art that the connection means of the connection surface 311 and the first elastic element 32 includes, but is not limited to, glue, clamping, etc. Further, the other end of the first elastic member 32 is optionally fixed to the bottom of the groove 101 by methods including but not limited to gluing, etc. to avoid abnormal movement of the first elastic member 32 and damage or malfunction of the self-locking structure due to dislocation of the first elastic member 32 during use.
Further, the moving block 31 includes two guide surfaces 312, and the guide surfaces 312 directly contact the bottom of the object 300 and are pressed by the bottom of the object 300, so that the first elastic member 32 connected to the moving block 31 is deformed. Meanwhile, the moving block 31 is moved by a predetermined distance such that the moving block 31 no longer blocks the object 300. In other words, the moving block 31 is pressed by the bottom of the object 300, so that the moving block 31 moves downward by a predetermined distance, wherein when the height of the moving block 31 is flush with the surface of the supporting plate 10, the moving block 31 no longer blocks the moving path of the object 300. Further, to have a better guiding effect, the guiding surface 312 of the moving block 31 is a slope.
Further, the moving block 31 further has a locking groove 313, and the locking groove 313 is located on a side surface of the moving block 31.
Specifically, the sliding device of the intelligent storage and management safety cabinet further comprises a stopper 40, a touch component 50 and a sensing lamp 60, wherein the stopper 40 is installed on the side wall forming the groove 101, the stopper 40 is provided with a telescopic protrusion 41, and the protrusion 41 is opposite to the clamping groove 313. Further, the touch assembly 50 is installed on the sidewall forming the cavity 2012, wherein the sensing lamp 60 is installed on the sidewall forming the cavity 2012, and the sensing lamp 60 and the touch assembly 50 are installed on the same side. It should be noted that the touch component 50 includes a touch pad and a first controller, the first controller is electrically connected to the touch pad, the inductive lamp 60 and the position limiter 40, respectively, wherein when the object 300 passes through the opening 2011 and the bottom of the object 300 contacts with the moving block 31, the moving block 31 is pressed by the object 300 to move downwards, so that the moving block 31 no longer blocks the moving stiffness of the object 300. While the bottom of the object 300 is in direct contact with the rolling bodies 20 so that the object 300 slides on the rolling bodies 20. Further, when the articles 300 roll along the rolling bodies 20 to the inside of the cavity 2012 for a predetermined distance, the bottom of the articles 300 passes through the moving block 31, and at this time, the moving block 31 is no longer pressed by the articles 300, so that the first elastic member 32 pushes the moving block 31 to move upward for a predetermined distance. Meanwhile, the induction lamp 60 induces the object 300, so that the first controller controls the protrusion 41 of the stopper 40 to move outward by a predetermined distance, so that the protrusion is engaged with the engaging groove 313, and the moving block 31 is prevented from moving downward due to a force, thereby preventing the object 300 from being easily taken out. It should be noted that when the user needs to take out the object 300, the user may manually touch the touch pad, so that the first controller controls the protrusion 41 of the stopper 40 to move inward by a predetermined distance, and further the protrusion 41 is disengaged from the catch 313, so that the protrusion 41 no longer limits the movement of the moving block 31.
Specifically, the sliding apparatus further includes a base plate 70 and a second elastic member 80, one end of the second elastic member 80 is connected to the bottom of the support plate 10, and the other end of the second elastic member 80 is connected to the top of the base plate 70. Further, the supporting plate 10 is pressed by the object 300, so that the second elastic member 80 connected to the supporting plate 10 is deformed, and the supporting plate 10 is moved downward by a predetermined distance, so that the supporting plate 10 abuts against the bottom plate 70.
Specifically, the sliding device of the intelligent storage and management security cabinet further comprises an alarm assembly 90, the alarm assembly 90 comprises a sensing assembly 91, a touch switch 92 and an alarm element 93, the sensing assembly 91 is mounted on the bottom plate 70, wherein the alarm element 93 is mounted on the side wall forming the cavity 2012, and the alarm element 93 is located on the same side as the sensing lamp 60, wherein the touch switch 92 is mounted on the side wall forming the cavity 2012, and the touch switch 92 is located on the same side as the sensing lamp 60. It should be understood by those skilled in the art that the sensing assembly 91 includes a sensor and a second controller, the second controller is electrically connected to the sensor, the second controller is also electrically connected to the touch switch 92, the touch switch 92 is electrically connected to the alarm element 93, wherein the touch switch 92 can control the on/off of the second controller and the alarm element 93. Further, when the object 300 is placed on the supporting plate 10, the supporting plate 10 is pressed by the object 300, so that the first elastic member 32 is deformed to move the supporting plate 10 downward by a predetermined distance, thereby directly contacting the supporting plate 10 with the inductor. It is worth mentioning that the second controller will drive the alarm element 93 to alarm when the bottom of the supporting plate 10 no longer contacts the sensor.
Fig. 4 and 6 are schematic diagrams illustrating the use process of the sliding device of the intelligent safe deposit cabinet.
When the user needs to store the object 300, the user manually swings the object 300 first, and makes the object 300 pass through the opening 2011 and place the object 300 on the support plate 10, wherein when the object 300 contacts the support plate 10, the support plate 10 is pressed by the object 300, so that the first elastic member 32 is deformed, the support plate 10 moves downward by a predetermined distance, and the support plate 10 is directly contacted with the sensor. Then, the object 300 is manually pushed so that the bottom of the object 300 is in direct contact with the moving block 31. When the guide surface 312 of the moving block 31 directly contacts the bottom of the object 300, the guide surface 312 is pressed by the bottom of the object 300, and the first elastic member 32 connected to the moving block 31 is deformed. Meanwhile, the moving block 31 moves downward by a predetermined distance so that the moving block 31 no longer blocks the moving stiffness of the object 300. At this time, the bottom of the object 300 is in direct contact with the rolling body 20 so that the object 300 slides on the rolling body 20. Then, the pushing of the object 300 is manually continued, wherein when the object 300 passes through the moving block 31 along the rolling of the rolling elements 20, the moving block 31 is no longer subjected to the pressure of the object 300, so that the first elastic member 32 pushes the moving block 31 to move upward by a predetermined distance. Meanwhile, the sensing lamp 60 senses the object 300, so that the first controller controls the protrusion 41 of the stopper 40 to move outward by a predetermined distance, so that the protrusion 41 is engaged with the engaging groove 313.
When the user needs to take out the object 300, the user needs to manually touch the touch pad so that the first controller controls the protrusion 41 of the stopper 40 to be disengaged from the catching groove 313 of the moving block 31. The user then manually touches the touch switch 92 again to disconnect the resulting second control from the warning element 93. While a user manually applies a pulling force to the article 300 to remove the article 300 from the cavity 2012.
In summary, the sliding device of the intelligent storage and management safety cabinet based on the embodiment of the application is clarified, and the sliding device of the intelligent storage and management safety cabinet provides the advantages of convenience in use, convenience in installation, anti-theft function and the like.
It is worth mentioning that, in the embodiment of the present application, the sliding device of the intelligent safe deposit box has a simple structure, does not involve a complicated manufacturing process and expensive materials, and has high economical efficiency. Simultaneously, to the manufacture factory, the slider of intelligence deposit management safety cabinet that this application provided easily produces, and low cost, more is favorable to controlling manufacturing cost, further is favorable to product popularization and use.
It will be understood by those skilled in the art that the embodiments of the present invention as described above and shown in the drawings are given by way of example only and are not limiting of the present invention. The objects of the present invention have been fully and effectively accomplished. The functional and structural principles of the present invention have been shown and described in the embodiments, and any variations or modifications may be made without departing from the principles of the present invention.

Claims (10)

1. A sliding device of an intelligent storage and management safety cabinet is used for placing objects in the intelligent storage and management safety cabinet, and is characterized in that the sliding device of the intelligent storage and management safety cabinet comprises:
a support plate, wherein the support plate is used for placing the object and is also provided with at least one groove;
at least one rolling body rotatably installed on the support plate and located at a front side of the groove, wherein the object can roll by the rolling body to move forward and backward when the object is placed on the rolling body; and
a spacing mechanism mounted within the recess, wherein the spacing mechanism is configured to controllably move up and down a predetermined distance to block movement of the object;
when the object is contacted with the limiting mechanism, the limiting mechanism is pressed by the object so that the limiting mechanism retracts downwards for a preset distance to allow the object to pass through, and when the object passes through the limiting mechanism, the limiting mechanism extends upwards for a preset distance to block the movement of the object.
2. The sliding device of an intelligent storage and management security cabinet according to claim 1, wherein the limiting mechanism comprises a moving block and a first elastic member, wherein the moving block has a connecting surface, the connecting surface is connected with one end of the first elastic member, and the other end of the first elastic member abuts against the bottom wall forming the groove, so that the limiting mechanism is stably fixed.
3. The sliding device of an intelligent storage and management safety cabinet according to claim 2, wherein the moving block comprises two guide surfaces, the guide surfaces are in direct contact with the bottom of the object and are pressed by the bottom of the object, so that the first elastic member connected with the moving block is deformed, and the moving block moves downwards for a predetermined distance to change the height of the moving block, so that the moving block no longer blocks the moving stiffness of the object, wherein when the height of the moving block is flush with the surface of the supporting plate, the moving block no longer blocks the object to move.
4. The sliding device of a smart storage safe of claim 3, wherein the guiding surface of the moving block is a slope.
5. The sliding device of a smart depository container of claim 4, wherein the moving block further has a catch located on a side of the moving block.
6. The sliding motion device of a smart storage safe of claim 5, wherein the sliding motion device of a smart storage safe further comprises a stopper having a retractable protrusion facing the slot, and a touch component, wherein the stopper and the touch component are vertically disposed at a side of the supporting plate, wherein the touch component is electrically connected to the stopper to control the protrusion to be retracted by touching, wherein when the protrusion is extended by a predetermined distance, the protrusion is engaged with the slot to limit the movement of the moving block.
7. The sliding apparatus of an intelligent storage and keeping cabinet according to claim 6, wherein the sliding apparatus of an intelligent storage and keeping cabinet further comprises an induction lamp, the induction lamp is vertically arranged at the side wall of the supporting plate, and the induction lamp is electrically connected with the touch assembly.
8. The sliding apparatus of an intelligent storage and keeping safety cabinet according to claim 6, wherein the sliding apparatus further comprises a bottom plate and a second elastic member, one end of the second elastic member is connected to the bottom of the supporting plate, and the other end of the second elastic member is connected to the top of the bottom plate, wherein the supporting plate is pressed by the object, so that the second elastic member connected to the supporting plate is deformed, and the supporting plate is moved downward by a predetermined distance, so that the supporting plate is abutted against the bottom plate.
9. The intelligent storage and keeping cabinet slide of claim 8, wherein the intelligent storage and keeping cabinet slide further comprises an alarm assembly, the alarm assembly comprising a sensing assembly and an alarm element, the sensing assembly being mounted on the base plate, wherein the alarm element is vertically disposed on the same side of the sensing light.
10. The sliding apparatus of a smart storage and keeping safety cabinet of claim 9, wherein the alarm assembly further comprises a touch switch installed on the same side of the alarm element, wherein the touch switch is electrically connected to the alarm element and the touch switch is further electrically connected to the sensing assembly, wherein the touch switch controls the connection and disconnection between the alarm element and the sensing assembly.
CN202021037324.XU 2020-06-08 2020-06-08 Sliding device of intelligent storage and management safety cabinet Active CN213087756U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021037324.XU CN213087756U (en) 2020-06-08 2020-06-08 Sliding device of intelligent storage and management safety cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021037324.XU CN213087756U (en) 2020-06-08 2020-06-08 Sliding device of intelligent storage and management safety cabinet

Publications (1)

Publication Number Publication Date
CN213087756U true CN213087756U (en) 2021-04-30

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Country Status (1)

Country Link
CN (1) CN213087756U (en)

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