CN215664604U - Evidence obtaining mechanism and certificate storage cabinet - Google Patents

Evidence obtaining mechanism and certificate storage cabinet Download PDF

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Publication number
CN215664604U
CN215664604U CN202122135665.1U CN202122135665U CN215664604U CN 215664604 U CN215664604 U CN 215664604U CN 202122135665 U CN202122135665 U CN 202122135665U CN 215664604 U CN215664604 U CN 215664604U
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card
groove
certificate
guiding
wall
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CN202122135665.1U
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王榜金
龙泉
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International Security Technology Ltd IST
IST International Security Technology Shenzhen Ltd
Shenzhen Huazhenglian Industrial Co Ltd
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International Security Technology Ltd IST
IST International Security Technology Shenzhen Ltd
Shenzhen Huazhenglian Industrial Co Ltd
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Abstract

The utility model relates to the technical field of storage equipment, and particularly provides a evidence obtaining mechanism which is arranged in a storage cabinet and comprises an installation frame and a guide frame connected with the installation frame, wherein a card obtaining groove is formed in the installation frame, a guide inclined surface is arranged on the guide frame, the guide inclined surface is obliquely arranged along the direction from the notch of the card obtaining groove to the back of the bottom wall of the card obtaining groove, a card entering channel is arranged along the guide inclined surface, and a certificate can be transferred into the card obtaining groove along the card entering channel. The utility model realizes that a user can take out more certificates in batches at one time along the notch of the card taking groove, effectively ensures that the taken out certificates are stacked orderly, and improves the convenience of batch evidence taking.

Description

Evidence obtaining mechanism and certificate storage cabinet
Technical Field
The utility model belongs to the technical field of storage equipment, and particularly relates to a evidence obtaining mechanism and a certificate storage cabinet.
Background
With the development of science and technology, intelligent storage cabinets are widely applied to daily life and work of people. For example: an article storage cabinet. It can be understood that, taking a storage cabinet for storing certificates as an example, people can store and take the certificates through an operation panel of the storage cabinet.
The common working mode of the storage cabinet is as follows: transfer mechanism of cabinet conveys identification device with the certificate one by one, and the information confirmation that the cabinet was discerned according to identification device needs the certificate information that spreads, and transfer mechanism conveys the certificate to the mouth of collecting evidence, and the user need take off the certificate of mouth of collecting evidence department one by one, if need collect evidence in batches, lead to the user to need to implement repeatedly many times and get the card operation for the inefficiency of collecting evidence in batches. Therefore how to design a section can satisfy the demand of once only getting evidence in batches, can guarantee again that the certificate of taking out stacks neatly orderly, is the technical problem that this patent will solve.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a evidence obtaining mechanism and a certificate storage cabinet, and aims to solve the technical problem that the certificate management cabinet in the prior art is difficult to realize one-time batch taking of a large number of certificates or abnormal conditions in a material taking bin caused by the fact that the certificates turn over/open pages in the material taking bin during batch evidence obtaining.
In order to achieve the purpose, the utility model adopts the technical scheme that: the utility model provides a mechanism and certificate cabinet of collecting evidence specifically includes:
the utility model provides a mechanism of collecting evidence, sets up in the cabinet, mechanism of collecting evidence include the mounting bracket and with the leading truck that the mounting bracket is connected, wherein, be provided with in the mounting bracket and get the draw-in groove, the leading truck is provided with leads the inclined plane, it follows to lead the inclined plane get the notch of draw-in groove to deviating from get the direction slope setting of draw-in groove diapire, follow it is provided with into the card passageway to lead the inclined plane, and the certificate can be followed it transfers extremely to get in the draw-in groove to go into the card passageway.
Optionally, the guiding inclined plane comprises a first guiding inclined plane and a second guiding inclined plane, the first guiding inclined plane and the second guiding inclined plane are arranged in parallel, wherein the first guiding inclined plane is connected with the notch of the card taking groove, and the first guiding inclined plane and the second guiding inclined plane are arranged in an inclined mode along the direction deviating from the direction of the bottom wall of the card taking groove from the notch of the card taking groove.
Optionally, a wall surface of the mounting frame connected to the first guide inclined surface is defined as a first wall surface, and a bottom wall of the card taking groove is inclined along the first wall surface in a direction away from the first guide inclined surface;
and or, define the mounting bracket is connected the wall on first lead inclined plane is first wall, with the wall that first wall is relative is the second wall, the second wall is provided with the intercommunication get the mouth of stepping down of draw-in groove, let a mouthful edge get the extending direction setting of draw-in groove.
Optionally, the mounting bracket further comprises an avoiding opening, wherein the avoiding opening is located on the bottom wall of the clamping groove and communicated with the avoiding opening.
Optionally, a plurality of first light passing ports are arranged on the guide frame, and each first light passing port is arranged corresponding to one end of the guide frame departing from the mounting frame.
Optionally, a plurality of second light passing ports are arranged on the mounting frame, and each second light passing port is used for providing an avoidance space for a detection light source generation end so as to identify a certificate placement state in the card taking slot.
Optionally, a pressing part is correspondingly arranged at an end part, away from the card taking groove, of the guide inclined surface, a material passing gap is formed between the pressing part and the guide inclined surface, and the material passing gap is communicated with the card entering channel, so that a certificate enters the card entering channel along the material passing gap and is transferred to the card taking groove.
Optionally, the pressing part includes a positioning plate and a holding piece, and the positioning plate and the holding piece are arranged at an angle.
Optionally, the certificate storage cabinet further comprises the certificate taking mechanism.
Optionally, the evidence obtaining mechanism is provided with a fixing part through which the evidence obtaining mechanism is fixed to the evidence obtaining mechanism.
The utility model provides a evidence obtaining mechanism and a certificate storage cabinet, which are provided with an installation frame and a guide frame connected with the installation frame, wherein a card obtaining groove is arranged in the installation frame, the guide frame is provided with a guide inclined plane, the guide inclined plane is obliquely arranged along the direction from the bottom wall of the card obtaining groove to the back of the notch of the card obtaining groove, and a card entering channel is arranged along the guide inclined plane, so that a certificate is transferred to the card obtaining groove along the card entering channel. Through the setting, realized that the user takes out more certificate along getting card groove disposable in batches to based on leading the inclined plane structure, make the user guarantee when getting the evidence in batches that the certificate can not overturn in getting the feed bin/open a page or leaf, avoid getting and appear blockking up or other unusual problems in the feed bin.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the embodiments or the prior art descriptions will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without inventive exercise.
FIG. 1 is a schematic diagram of the overall structure of a forensics mechanism provided in an embodiment of the utility model;
FIG. 2 is a first schematic structural view of a forensics mechanism provided in accordance with an embodiment of the utility model;
fig. 3 is a second structural schematic diagram of the evidence obtaining mechanism provided in the embodiment of the present invention.
FIG. 4 is a schematic diagram of the overall structure of the certificate storage cabinet provided by the embodiment of the utility model;
FIG. 5 is a schematic view of a portion of a credential storage case provided by an embodiment of the utility model;
fig. 6 is an enlarged view at a in fig. 5.
Wherein, in the figures, the respective reference numerals:
Figure BDA0003248151800000031
Figure BDA0003248151800000041
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in further detail with reference to fig. 1 to 6 and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
It will be understood that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or it can be indirectly fixed to or disposed on the other element through a third member. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or be indirectly connected to the other element through a third component.
It will be understood that the terms "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like, as used herein, refer to an orientation or positional relationship indicated in the drawings that is solely for the purpose of facilitating the description and simplifying the description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and is therefore not to be construed as limiting the utility model.
In addition, the meaning of "and/or" appearing throughout is to include three juxtapositions, exemplified by "A and/or B," including either the A or B arrangement, or both A and B satisfied arrangement. In addition, technical solutions between various embodiments may be combined with each other, but must be realized by a person skilled in the art, and when the technical solutions are contradictory or cannot be realized, such a combination should not be considered to exist, and is not within the protection scope of the present invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
Referring to fig. 1 and fig. 2, an embodiment of the utility model provides a forensic mechanism 100, where the forensic mechanism 100 is disposed in a storage cabinet to facilitate forensic analysis by a user.
Specifically, the forensic mechanism 100 includes: the certificate taking device comprises an installation frame 10 and a guide frame 20 connected with the installation frame 10, wherein a card taking groove 101 is formed in the installation frame 10, a guide inclined surface 201 is arranged on the guide frame 20, the guide inclined surface 201 is obliquely arranged along the direction of the bottom wall of the card taking groove 101 in the direction away from the notch of the card taking groove 101, a card entering channel 202 is arranged along the guide inclined surface 201, and certificates can be transferred to the card taking groove 101 along the card entering channel 202. Preferably, the mounting rack 10 is provided with a certain height, which can satisfy the requirement of batch storage of more certificates at one time. Further, a guide frame 20 is provided at one end of the mounting frame 10, so that the certificate can be conveniently moved into the mounting frame 10 along the guide frame 20. So set up, realized that the user can deposit more certificate in batches, avoided the certificate to appear the problem of upset/opening page or leaf when putting into getting in the draw-in groove 101 simultaneously.
Preferably, a guiding inclined plane 201 is arranged along the guiding frame 20, and the guiding inclined plane 201 is arranged along the notch of the card taking groove 101 in an inclined manner in a direction away from the bottom wall of the card taking groove 101; preferably, the ground surface on which the storage cabinet is installed is taken as a reference surface, as shown in fig. 1 and 2, and the X axis is taken as a reference of the plane of the reference surface, optionally, the inclined guide surface 201 has an angle of 5 ° to 45 ° with the reference surface, as shown in fig. 2. When the angle beta is too large, the certificate is easy to be blocked in the guide frame 20 when being transferred along the guide frame 20; when the angle beta is too small, when the certificate is transferred along the guide frame 20, the certificate is easily piled in the card taking groove 101, so that the certificate is turned or opened. In addition, go into card passageway 202 and set up in leading inclined plane 201, go into in card passageway 202 extending direction is close to mounting bracket 10, can adopt the manipulator to transfer the certificate to the entrance of going into card passageway 202 automatically in this patent, or also can adopt artifical manual mode to put into the entrance of card passageway 202 with the certificate, and then the certificate is transferred to mounting bracket 10 along going into card passageway 202.
As an alternative embodiment of the present invention, the guiding frame 20 includes a guiding inclined plane 201, which is correspondingly provided with a card entering channel 202, and after the certificate is placed at the entrance of the card entering channel 202, the certificate can slide into the card taking groove 101 through the card entering channel 202, so as to prevent the certificate from colliding with the inner wall of the card taking groove 101 and turning over, so as to stack a plurality of certificates smoothly.
As another alternative embodiment of the present invention, the guide frame 20 includes a first guiding inclined surface 2011 and a second guiding inclined surface 2012, and the first guiding inclined surface 2011 and the second guiding inclined surface 2012 are arranged in parallel, where the first guiding inclined surface 2011 is connected to the notch of the card-taking slot 101, the second guiding inclined surface 2012 is higher than the first guiding inclined surface 2011, and the first guiding inclined surface 2011 and the second guiding inclined surface 2012 are arranged along the notch of the card-taking slot 101 in an inclined manner in a direction away from the bottom wall of the card-taking slot 101. In addition, the first guiding inclined surface 2011 and the second guiding inclined surface 2012 are respectively and correspondingly provided with two parallel card entering channels 202, so that certificates can enter the card taking slot 101 along the two card entering channels 202 with different heights.
Preferably, the second guiding inclined surface 2012 is higher than the first guiding inclined surface 2011, a user transfers a certificate into the card taking groove 101 along the card entering channel 202 of the first guiding inclined surface 2011 in a manual or mechanical arm automatic putting mode, and meanwhile, in order to obtain the certificate transfer condition in the card entering channel 202 of the first guiding inclined surface 2011 in real time, a first detection device 20111 is arranged at the bottom of the first guiding inclined surface 2011, and the first detection device 20111 can detect whether a certificate is blocked in the card entering channel 202 or not, and when the certificate is blocked, an alarm must be given to avoid scratching the certificate; or whether the notch of the card taking groove 101 can not be continuously placed with the certificate due to full bin is detected, and when the full bin is detected, the notch is switched to move the certificate along the second guide inclined plane 2012. Preferably, a user sends a certificate to the card taking groove 101 along the card entering channel 202 of the second guiding inclined surface 2012 by means of manual putting or automatic putting by a manipulator, the certificate can be continuously transferred because the second guiding inclined surface 2012 is higher than the first guiding inclined surface 2011, in order to obtain the transfer condition of the certificate in the card entering channel 202 of the second guiding inclined surface 2012, the bottom of the second guiding inclined surface 2012 is provided with a second detection device 20121, the second detection device 20121 can detect whether the certificate is blocked in the card entering channel 202, and when the certificate is blocked, an alarm must be given to avoid scratching the certificate.
Referring to fig. 3, further, a third detecting device 2013 is disposed on an outer side portion of the top of the mounting rack 10, the third detecting device 2013 detects whether the card slot 101 is fully taken, and if the card slot 101 is fully taken, the card slot 202 along the second guiding slope 2012 stops being placed with the certificate.
Of course, the guide frame 20 is not limited to two guide slopes 201, and may also include a plurality of guide slopes 201 arranged in parallel, each guide slope 201 being inclined from the notch of the card slot 101 to a direction away from the bottom wall of the card slot 101. The card storage device has the advantages that the card storage device can store more certificates when meeting the condition of different heights, and when a large batch of certificates can be taken out at one time during the process of taking the certificates, the cards are enabled to be stacked in the card taking groove 101 in order, and the cards are taken out in order.
Referring to fig. 1 to fig. 3, in an alternative embodiment of the present disclosure, the mounting frame 10 is defined as a first wall 102 connected to the first guiding inclined surface 2011, and the bottom wall of the card slot 101 is inclined along the first wall 102 in a direction away from the first guiding inclined surface 2011. In this embodiment, the bottom wall of the card-taking slot 101 is inclined, so that the certificates stored in the card-taking slot 101 are stacked in an inclined state to form a plane facing the first guiding inclined plane 2011; that is, the certificate slid down from the first guide slope 2011 is transferred to the bottom wall of the inclined card-taking slot 101 or the inclined plane formed by stacking a plurality of certificates, and then the certificate can be guided, so that the collision angle with the bottom wall of the card-taking slot 101 or the inclined plane formed by stacking a plurality of certificates is reduced, and the probability of the certificate turning is reduced. In order to realize that the certificate can be smoothly transferred to the card taking groove 101 along the card entering channel 202 positioned in the guide inclined surface 201, an included angle beta between the guide inclined surface 201 and the reference surface needs to be ensured to be larger than an included angle between the bottom wall of the card taking groove 101 and the reference surface. In this embodiment, the included angles β between the first guiding inclined surface 2011 and the second guiding inclined surface 2012 and the reference surface are greater than the included angles between the bottom wall of the card slot 101 and the reference surface.
And, or, the mounting bracket 10 is defined to connect the first guiding inclined surface 2011 wall surface as a first wall surface 102, the wall surface opposite to the first wall surface 102 is a second wall surface 103, the second wall surface 103 is provided with a yielding port 104 communicated with the card taking groove 101, and the yielding port 104 is arranged along the extending direction of the card taking groove 101. So set up, be convenient for the user directly take out a plurality of certificates through letting position mouth 104. Or the certificate is automatically grabbed by the abdicating port 104 by adopting a manipulator, so that the convenience of batch evidence obtaining of the user is improved. It should be noted that the mounting rack 10 is further provided with an avoiding opening 105 communicated with the card taking groove 101, and preferably, the avoiding opening 105 is arranged on the bottom wall of the card taking groove 101 and is communicated with the abdicating opening 104, so that a user can take out a plurality of certificates from the card taking groove 101 after passing through the avoiding opening 105 and the abdicating opening 104.
Further, a plurality of first light passing ports 203 are further arranged on the guide frame 20, and each first light passing port 203 is arranged corresponding to one end of the guide frame 20 departing from the mounting frame 10. Specifically, because first inclined plane 2011 bottom is led and is provided with first detection device 20111, in order to guarantee that first detection device 20111 can detect the condition that certificate moved in the first inclined plane 2011 of leading, consequently need set up first light passing port 203 at the one end that first inclined plane 2011 deviates from mounting bracket 10, provide the space of keeping away for the light source emission end of first detection device 20111 to in order to obtain the operating condition that certificate moved in the first inclined plane 2011 of leading. In addition, a second detection device 20121 is arranged at the bottom of the second guiding inclined surface 2012, and in order to ensure that the second detection device 20121 can detect the condition that the certificates in the second guiding inclined surface 2012 are transferred, a first light passing port 203 needs to be arranged at one end of the second guiding inclined surface 2012, which is away from the mounting frame 10, so as to provide a space for avoiding the light source emitting end of the second detection device 20121, and thus, the working state of transferring the certificates in the second guiding inclined surface 2012 can be obtained.
Further, a plurality of second light passing ports 204 are disposed on the mounting frame 10. Specifically, because the third detection device 2013 is arranged at the outer side of the top of the mounting frame 10, in order to ensure that the third detection device 2013 can detect the situation that the certificate of the card slot 101 in the mounting frame 20 is placed, the second light passing port 204 is arranged at the outer side of the top of the mounting frame 10, and a space is provided for the light source emitting end of the third detection device 2013 to provide a avoiding space, so that the working state that the certificate in the card slot 101 is placed is obtained. In addition, a second light passing port 204 is disposed at a position, close to the first guiding inclined surface 2011, of the first wall surface 102 of the mounting rack 10, and is used for providing a space for avoiding a detection device in the card taking groove 101, which is close to the first guiding inclined surface 2011, so as to obtain a state of storing the evidence in the card taking groove 101 at the position.
Further, the bottom wall of the mounting rack 10 is provided with a second light passing port 204 for providing a space for avoiding for a detection device for detecting whether the card taking slot 101 is empty or not, so as to timely know whether the card can be stored in the card taking slot 101 or not.
As an optional embodiment of the present patent, a pressing component 205 is correspondingly disposed at an end of the inclined guide surface 201 away from the card-taking slot 101, a material passing gap is formed between the pressing component 205 and the inclined guide surface 201, and the material passing gap is communicated with the card-entering channel 202, so that the certificate enters the card-entering channel 202 along the material passing gap, and is then transferred into the card-taking slot 101. Specifically, the end portions of the first guide inclined surface 2011 and the second guide inclined surface 2012 far away from the card taking groove 101 are correspondingly provided with the pressing component 205, and when a certificate enters the inlet of the card entering channel 202 of the first guide inclined surface 2011 and/or the second guide inclined surface 2012, the certificate is pressed by the pressing component 205, so that the certificate is prevented from being taken out when the manipulator exits from the certificate taking mechanism 100.
Further, the pressing part 205 includes a positioning plate 2051 and a holding piece 2052, and the positioning plate 2051 and the holding piece 2052 are disposed at an angle. Preferably, the angle between the positioning plate 2051 and the abutting piece 2052 is less than 45 °. The abutting piece 2052 is disposed in an inclined plane from the positioning plate 2051 toward the first guiding inclined plane 2011 and the second guiding inclined plane 2012, and an extension plane of the abutting piece 2052 intersects with the first guiding inclined plane 2011 and the second guiding inclined plane 2012 respectively, so that the abutting piece 2052 is away from one end of the positioning plate 2051.
Referring to fig. 4, the present invention further includes a certificate storage 300, which includes the above-mentioned evidence obtaining mechanism 100, and the certificate storage 300 with the batch evidence obtaining mechanism 100 is adopted, so that the certificate access efficiency is greatly improved.
Referring to fig. 5 and fig. 6, further, a fixing portion 400 is disposed outside the evidence obtaining mechanism 100, and is connected to the certificate storage cabinet 300 through the fixing portion 400. Preferably, the fixing portion 400 includes a clip member 500 having a mounting position, and the clip member 500 is fixed to the certificate storage cabinet 300, preferably by using a bolt clip method, and other fixing methods may also be used, which are not described herein.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. The utility model provides a mechanism of collecting evidence, sets up in the cabinet, its characterized in that, mechanism of collecting evidence include the mounting bracket and with the leading truck that the mounting bracket is connected, wherein, be provided with in the mounting bracket and get the draw-in groove, the leading truck is provided with leads the inclined plane, it follows to lead the inclined plane get the notch of draw-in groove to deviating from get the direction slope setting of draw-in groove diapire, follow it is provided with into the card passageway to lead the inclined plane, and the certificate can be followed it transfers extremely to get in the draw-in groove to go into the card passageway.
2. The evidence obtaining mechanism of claim 1, wherein the guiding slope comprises a first guiding slope and a second guiding slope, the first guiding slope and the second guiding slope are arranged in parallel, wherein the first guiding slope is connected with the notch of the card slot, and the first guiding slope and the second guiding slope are arranged along the notch of the card slot in an inclined manner in a direction away from the bottom wall of the card slot.
3. The evidence obtaining mechanism of claim 2, wherein the wall of the mounting bracket connected to the first guiding inclined surface is defined as a first wall, and the bottom wall of the card slot is inclined along the first wall in a direction away from the first guiding inclined surface;
and or, define the mounting bracket is connected the wall on first lead inclined plane is first wall, with the wall that first wall is relative is the second wall, the second wall is provided with the intercommunication get the mouth of stepping down of draw-in groove, let a mouthful edge get the extending direction setting of draw-in groove.
4. The mechanism of collecting evidence of claim 3, characterized in that, the mounting bracket still includes dodges the mouth, dodge the mouth be located get the diapire of draw-in groove, and with dodge mouthful intercommunication setting.
5. The evidence obtaining mechanism of claim 4, wherein the guiding frame is provided with a plurality of first light passing ports, and each first light passing port is arranged corresponding to one end of the guiding frame, which is away from the mounting frame.
6. The evidence obtaining mechanism of claim 5, wherein the mounting frame is provided with a plurality of second light passing ports, and each second light passing port is used for providing an avoiding space for a detection light source generating end so as to identify the placement state of the certificate in the card obtaining groove.
7. The evidence obtaining mechanism according to any one of claims 1 to 6, wherein a pressing part is correspondingly arranged at an end of the guiding inclined surface far away from the card obtaining groove, a material passing gap is formed between the pressing part and the guiding inclined surface, and the material passing gap is communicated with the card entering channel, so that a certificate enters the card entering channel along the material passing gap and is transferred into the card obtaining groove.
8. The forensics mechanism of claim 7, wherein the hold-down member includes a positioning plate and a holding piece, the positioning plate being disposed at an angle to the holding piece.
9. A credential storage cabinet comprising a forensics mechanism as claimed in any one of claims 1 to 8.
10. The credential storage cabinet of claim 9, wherein the forensic mechanism is provided with a securing portion by which the forensic mechanism is secured to the forensic mechanism.
CN202122135665.1U 2021-09-06 2021-09-06 Evidence obtaining mechanism and certificate storage cabinet Active CN215664604U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122135665.1U CN215664604U (en) 2021-09-06 2021-09-06 Evidence obtaining mechanism and certificate storage cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122135665.1U CN215664604U (en) 2021-09-06 2021-09-06 Evidence obtaining mechanism and certificate storage cabinet

Publications (1)

Publication Number Publication Date
CN215664604U true CN215664604U (en) 2022-01-28

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Application Number Title Priority Date Filing Date
CN202122135665.1U Active CN215664604U (en) 2021-09-06 2021-09-06 Evidence obtaining mechanism and certificate storage cabinet

Country Status (1)

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CN (1) CN215664604U (en)

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