CN220792572U - Quick detach subassembly and cloud platform - Google Patents
Quick detach subassembly and cloud platform Download PDFInfo
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- CN220792572U CN220792572U CN202322469944.0U CN202322469944U CN220792572U CN 220792572 U CN220792572 U CN 220792572U CN 202322469944 U CN202322469944 U CN 202322469944U CN 220792572 U CN220792572 U CN 220792572U
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- 230000000670 limiting effect Effects 0.000 claims description 29
- 238000009434 installation Methods 0.000 abstract description 5
- 238000013459 approach Methods 0.000 description 6
- 230000000694 effects Effects 0.000 description 5
- 238000000034 method Methods 0.000 description 5
- 230000009286 beneficial effect Effects 0.000 description 2
- 238000013016 damping Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 239000002184 metal Substances 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000002035 prolonged effect Effects 0.000 description 2
- 238000003756 stirring Methods 0.000 description 2
- 230000005489 elastic deformation Effects 0.000 description 1
- 238000002955 isolation Methods 0.000 description 1
- 230000000452 restraining effect Effects 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 230000003319 supportive effect Effects 0.000 description 1
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Abstract
The application provides a quick detach subassembly and cloud platform relates to electronic equipment technical field. The quick detach subassembly includes: the plug connector comprises a connecting part and a plug part which are connected with each other; the base is provided with a plug-in port for accommodating the plug-in part; the locking assembly comprises a spanner and a propping piece, the propping piece is arranged in the base, the spanner is rotationally connected with the base, one end of the spanner is connected with the propping piece, the other end of the spanner extends out of the base, and an opening communicated with the plug-in port is further formed in the base, so that the propping piece can pass through the opening to be clamped with the plug-in part; the wrench is moved to drive the abutting piece to be close to or far away from the plug-in part, so that the plug-in piece is locked or unlocked. The connection form can be simplified, and the time required for installation and disassembly can be reduced.
Description
Technical Field
The utility model relates to the technical field of electronic equipment, in particular to a quick-dismantling assembly and a cradle head.
Background
With the increasing variety of electronic devices, people can select different products according to their own needs. For example, when electronic devices such as projectors, and cameras are used, it is often necessary to adjust the height and distance to achieve a better use experience.
Such electronic devices are often used in a suspended or rack-like arrangement to address height and distance issues. In these arrangements, the electronic device is raised to a suitable height by a bracket or cantilever and the position of the bracket or wall is adjusted to maintain a suitable distance from the target. When the existing support or cantilever is connected with the electronic equipment, in order to ensure better experience, the electronic equipment is usually connected with the aid of a cradle head, and when the electronic equipment is connected, the connection mode is complex and tedious, so that the installation and the disassembly are all spent for a long time.
Disclosure of Invention
The technical problem to be solved by the embodiment of the utility model is to provide a quick-dismantling assembly, which can simplify the connection form and reduce the time required for installation and dismantling.
In a first aspect, an embodiment of the present utility model provides a quick-release assembly, where the quick-release assembly includes: the plug connector comprises a connecting part and a plug part which are connected with each other; the base is provided with a plug-in port for accommodating the plug-in part; the locking assembly comprises a spanner and a propping piece, the propping piece is arranged in the base, the spanner is rotationally connected with the base, one end of the spanner is connected with the propping piece, the other end of the spanner extends out of the base, and an opening communicated with the plug-in port is further formed in the base, so that the propping piece can pass through the opening to be clamped with the plug-in part; the wrench is moved to drive the abutting piece to be close to or far away from the plug-in part, so that the plug-in piece is locked or unlocked.
Further, the plug-in part is provided with a limit groove surrounding the plug-in part in the circumferential direction, and the supporting part is provided with a limit protrusion corresponding to the limit groove.
Further, a concave surface is arranged on the limiting protrusion, and the concave surface is concave inwards towards one side deviating from the inserting portion.
Further, the plug-in portion is provided with a cutting plane extending along the axial direction of the plug-in portion, and a limiting surface corresponding to the cutting plane is arranged in the plug-in port.
Further, a containing groove is formed in the base and communicated with the opening, and a rotating shaft is arranged in the containing groove, so that the wrench is connected with the base in a rotating mode through the rotating shaft.
Further, the wrench comprises a rotating section, wherein the rotating section is positioned in the accommodating groove and is rotationally connected with the rotating shaft; the locking assembly further comprises an elastic piece, the elastic piece is arranged between the abutting piece and the base, the abutting piece is in sliding connection with the accommodating groove, and the rotating section abuts against one side, away from the elastic piece, of the abutting piece.
Further, the wrench also comprises a connecting section and an extending section, wherein the rotating section, the connecting section and the extending section are sequentially connected, the connecting section is arc-shaped, and the connecting section protrudes outwards towards one side away from the base; the base is also provided with an avoidance groove communicated with the accommodating groove, and the connecting section and the extending section are positioned at the avoidance groove.
Further, the wrench is hinged with the abutting piece, and the abutting piece is connected with the base in a sliding mode.
Further, the plug connector further comprises a fixing plate, and the fixing plate is arranged between the connecting portion and the plug connector.
In a second aspect, an embodiment of the present utility model further provides a cradle head, including: the cradle head body and the quick-dismantling assembly are arranged on the cradle head body; the quick-dismantling assembly is connected with the holder body through the base.
Compared with the prior art, the quick-release assembly has the beneficial effects that the plugging part of the plug connector in the quick-release assembly is accommodated in the plugging port on the base, and then the spanner in the locking assembly drives the abutting part to move in the base, because the opening through which the abutting part can pass is arranged in the plugging port, when the spanner is stirred, the abutting part connected with one end of the spanner can drive the abutting part to slide, and the abutting part can approach or be far away from the plugging part in the plugging port through the opening, so that the purpose of locking or unlocking the plugging part in the plugging port can be realized, the purposes of locking, limiting and unlocking the plugging part can be realized quickly, the locking and unlocking steps of the plug connector and the base can be effectively simplified, and the quick installation, locking and quick disassembly of the electronic equipment on the quick-release assembly can be realized, and the time is saved.
Drawings
The utility model will now be described in further detail with reference to the accompanying drawings and examples, in which:
FIG. 1 is a schematic diagram of a quick release assembly according to an embodiment of the present utility model;
FIG. 2 is a schematic structural view of a plug connector according to an embodiment of the present utility model;
FIG. 3 is a schematic view of a base according to an embodiment of the present utility model;
FIG. 4 is a schematic diagram of a wrench according to an embodiment of the present utility model;
FIG. 5 is a schematic view of a locking assembly according to an embodiment of the present utility model;
fig. 6 is a schematic cross-sectional view of a base and locking assembly according to an embodiment of the present utility model.
The accompanying drawings: 1000. a quick release assembly; 100. a plug-in component; 101. a plug-in part; 1011. a limit groove; 1012. cutting a plane; 102. a connection part; 200. a base; 201. an interface; 2011. a limiting surface; 202. an opening; 203. a receiving groove; 2031. a rotating shaft; 204. an avoidance groove; 300. a locking assembly; 301. a holding member; 3011. a limit protrusion; 30111. a concave surface; 302. a wrench; 3021. a rotating section; 3022. a connection section; 3023. an extension section; 303. an elastic member; 400. a fixing plate; 2000. and a cradle head.
Detailed Description
It should be noted that, in the case of no conflict, the embodiments and features in the embodiments may be combined with each other. Preferred embodiments of the present utility model will now be described in detail with reference to the accompanying drawings.
As shown in fig. 1-3, a quick release assembly 1000 is provided in an embodiment of the present utility model, where the quick release assembly 1000 includes: the plug connector 100, the base 200 and the locking assembly 300, wherein the plug connector 100 comprises a connecting part 102 and a plug part 101 which are connected with each other; the base 200 is provided with a plug port 201 for accommodating the plug part 101; the locking assembly 300 comprises a spanner 302 and an abutting piece 301, the abutting piece 301 is arranged in the base 200, the spanner 302 is rotationally connected with the base 200, one end of the spanner 302 is connected with the abutting piece 301, the other end of the spanner 302 extends out of the base 200, and the base 200 is further provided with an opening 202 communicated with the plug-in port 201, so that the abutting piece 301 can pass through the opening 202 to be clamped with the plug-in part 101; the wrench 302 is moved to drive the abutting piece 301 to approach or separate from the plugging portion 101, so as to lock or unlock the plug 100.
The plug part 101 of the plug 100 is accommodated in the plug port 201 on the base 200, then the spanner 302 in the locking assembly 300 drives the abutting part 301 to displace in the base 200, because the opening 202 through which the abutting part 301 can pass is arranged in the plug port 201, when the spanner 302 is stirred, the abutting part 301 connected with one end of the spanner 302 is driven by the spanner 302 to slide, and the abutting part 301 is close to or far away from the plug part 101 in the plug port 201 through the opening 202, so that the plug part 101 in the plug port 201 is locked or unlocked, the purposes of locking, limiting and unlocking the plug part 101 can be achieved quickly, locking and unlocking steps of the plug 100 and the base 200 are effectively simplified, quick installation, locking and quick disassembly of electronic equipment on the quick disassembly assembly 1000 are realized, and time is saved.
In the actual use process, when the connected electronic equipment needs to be locked, the spanner 302 is shifted to enable one end of the spanner 302 to abut against the abutting piece 301, the abutting piece 301 moves in the base 200 and approaches to the plug-in portion 101, and finally the abutting piece 301 clamps the plug-in portion 101, so that the plug-in portion 101 is locked, the plug-in portion 101 cannot shake or loosen in the plug-in interface 201, and the plug-in connector 100 is kept stable on the base 200. When unlocking is required, the toggle wrench 302 moves in the opposite direction of the locking direction, so that the end, connected with the abutting piece 301, of the toggle wrench 302 drives the abutting piece 301 to move, that is, the abutting piece 301 slides in the base 200 and is far away from the plug-in portion 101, and finally the plug-in portion 101 is unlocked, so that unlocking of the plug-in connector 100 is completed. The purpose of locking and unlocking the plug connector 100 can be achieved quickly only by pulling the wrench 302, the connection process of the plug connector 100 and the base 200 is simplified, and the electronic equipment can be locked and unlocked with the base 200 quickly and conveniently through the plug connector 100, so that the time for mounting and dismounting is effectively saved.
It should be noted that, the electronic device is connected to the connector 100 through the connection portion 102 of the connector 100, and the connector 100 is quickly locked or unlocked with the base 200 through the connector portion 101, so as to quickly lock or unlock the electronic device with the base 200.
Referring to fig. 2 and 3, the socket 101 is provided with a limiting groove 1011 circumferentially surrounding the socket 101, and the abutment 301 is provided with a limiting protrusion 3011 corresponding to the limiting groove 1011.
The plug-in part 101 is provided with a limit groove 1011 surrounding along the circumferential direction of the plug-in part 101, the abutting piece 301 is provided with a limit protrusion 3011 corresponding to the limit groove 1011, when the plug-in part 101 is accommodated in the plug-in groove, the spanner 302 in the locking mechanism drives the abutting piece 301 to lock and limit the plug-in part 101, and the limit protrusion 3011 on the abutting piece 301 is matched with the limit groove 1011 on the plug-in part 101, so that better locking and limiting are provided for the plug-in part 101. On the other hand, the cooperation of the limit groove 1011 and the limit projection 3011 is more accurate and precise, and the influence of the abutting piece 301 on other positions of the plug-in portion 101 can be reduced.
Referring to fig. 5, the limiting projection 3011 is provided with a concave surface 30111, and the concave surface 30111 is concave toward a side facing away from the plugging portion 101.
The concave surface 30111 is arranged on the limiting projection 3011, the concave direction of the concave surface 30111 is the direction of one side of the limiting projection 3011 deviating from the plug-in part 101, so that the concave surface 30111 of the limiting projection 3011 can be matched with the cylindrical plug-in part 101, a certain protection effect can be achieved on a workpiece when the supporting piece 301 is locked with the plug-in part 101, the loss influence on the plug-in part 101 and the supporting piece 301 is reduced, the damage to the locking effect is avoided, the service life of the quick-release assembly 1000 can be prolonged, and the cost is saved.
Referring to fig. 2 and 3, the plug portion 101 has a cutting plane 1012 extending along an axial direction of the plug portion 101, and a limiting surface 2011 corresponding to the cutting plane 1012 is provided in the plug port 201.
The plug part 101 is provided with a cutting plane 1012 extending along the axial direction of the plug part 101, a limiting surface 2011 corresponding to the cutting piece is arranged in the plug port 201, and the cutting plane 1012 on the plug part 101 is matched with the limiting surface 2011 in the plug port 201, so that the plug part 101 cannot rotate at will in the plug port 201, and the limiting and positioning effects on the plug connector 100 are further improved. In the actual use process, when the plug part 101 is accommodated in the plug port 201, the cutting plane 1012 and the limiting surface 2011 are correspondingly placed, so that the cylindrical plug part 101 cannot rotate in the plug port 201 due to the correspondence of the cutting plane 1012 and the limiting surface 2011, the limiting effect on the plug connector 100 is effectively improved, and the plug connector 100 is kept stable in the plug port 201.
Referring to fig. 6, a receiving groove 203 is formed on the base 200, the receiving groove 203 is communicated with the opening 202, and a rotating shaft 2031 is disposed in the receiving groove 203, so that the wrench 302 is rotatably connected with the base 200 through the rotating shaft 2031.
The accommodating groove 203 is arranged on the base 200, one end of the wrench 302 is arranged in the accommodating groove 203 and is rotationally connected with the accommodating groove 203, and the opening 202 is provided with the supporting piece 301, so that the accommodating groove 203 is communicated with the opening 202, one end of the wrench 302 arranged in the accommodating groove 203 is connected with the supporting piece 301 at the opening 202, and therefore the supporting piece 301 can be driven to slide in the base 200 when the wrench 302 is stirred, and the effect that the supporting piece 301 is driven to approach or separate from the plug-in part 101 through the movement of the wrench 302 is achieved, and the plug-in piece 100 is locked or unlocked.
Specifically, by connecting the wrench 302 with the base 200 using the rotation shaft 2031, a stable connection can be achieved, ensuring that the wrench 302 does not loosen or fall off when rotated; the supporting piece 301 is controlled by the spanner 302 connected with the rotating shaft 2031, so that the locking condition of the supporting piece 301 can be controlled more accurately, and the accuracy of locking force is ensured.
Referring to fig. 4 and 5, the wrench 302 includes a rotating section 3021, where the rotating section 3021 is located in the accommodating groove 203 and is rotatably connected to the rotating shaft 2031; the locking assembly 300 further includes an elastic member 303, the elastic member 303 is disposed between the abutting member 301 and the base 200, the abutting member 301 is slidably connected with the accommodating groove 203, and the rotating section 3021 abuts against a side of the abutting member 301 facing away from the elastic member 303.
It should be noted that, in this embodiment, the rotating section 3021 is designed as a cam, and the cam has a protruding portion, so that when the wrench 302 is pulled, the cam can provide pressure for the supporting member 301 in the rotating process, so as to lock the supporting member 301 to the plugging portion 101, and similarly, when the unlocking is required, the cam does not press the supporting member 301 to be close to the plugging portion 101 along with the rotation of the rotating section 3021, so as to unlock the plugging portion 101.
The rotating section 3021 is rotatably connected with the housing through the rotating shaft 2031, and the rotating section 3021 abuts against the abutting piece 301, so that the elastic piece 303 is disposed between the abutting piece 301 and the base 200, and when the wrench 302 rotates to unlock the plug connector 100, the abutting piece 301 can be restored to the original position through the elastic piece 303. In the actual use process, when the toggle wrench 302 locks the plug-in portion 101, the rotating section 3021 abuts against the abutting piece 301, so that pressure is applied to the abutting piece 301, when the abutting piece 301 is forced to slide in the base 200 to approach the plug-in portion 101, the limiting protrusion 3011 on the abutting piece 301 limits the limiting groove 1011 of the plug-in portion 101, and at this time, the elastic piece 303 between the side of the abutting piece 301 facing away from the rotating section 3021 and the housing is compressed to generate elastic deformation; when the socket 100 is unlocked, after the wrench 302 is shifted, the rotating section 3021 rotates in the accommodating groove 203, so that the abutting part 301 is far away from the socket 101, and the abutting part 301 is driven by the elastic part 303 to slide in the opposite direction of the locking direction in the base 200, so that the socket 101 is unlocked, and the abutting part 301 is restored to the unlocking position. The elastic piece 303 can be very convenient to control the propping piece 301, when the unlocking is needed, only the spanner 302 is required to be stirred, the elastic force of the elastic piece 303 drives the propping piece 301 to restore to the unlocking position, and the propping piece 301 is not required to be additionally adjusted, so that the operation of the plug-in connector 100 in unlocking is more convenient and quick, and the purpose of convenient operation is achieved.
Specifically, the elastic member 303 includes many kinds, for example: springs, which are a common type of resilient member 303, are typically made of metal and are used to provide compressive, supportive or restoring forces. Also for example: spring plates, which are usually made of metal or plastic, have good elasticity and rebound properties, and are commonly used for vibration damping, vibration isolation and damping applications.
It should be noted that, in this embodiment, the elastic member 303 is disposed between the base 200 and the supporting member 301, and in addition, the elastic member 303 needs to be disposed corresponding to the rotation center of the rotation section 3021, so that it is ensured that when the plugging portion 101 is locked, the rotation section 3021 is not rotationally biased by the elastic force of the elastic member 303, so as to ensure the stability of the locked state.
Referring to fig. 4 and 5, the wrench 302 further includes a connection section 3022 and an extension section 3023, the rotation section 3021, the connection section 3022 and the extension section 3023 are sequentially connected, the connection section 3022 is arc-shaped, and the connection section 3022 protrudes outwards towards the side away from the base 200; the base 200 is further provided with an avoidance groove 204 communicated with the accommodating groove 203, and the connecting section 3022 and the extending section 3023 are located at the avoidance groove 204.
The turning section 3021, the connecting section 3022 and the extension section 3023 are connected in sequence, thereby constituting the entire wrench 302. The connecting section 3022 is arc, and the arc makes outwards deviate from base 200 one side evagination, and the purpose is that make connecting section 3022 and extension section 3023 can adapt to dodge groove 204 that sets up along the base 200 outer lane, dodge groove 204 and hold connecting section 3022 and extension section 3023, and holding groove 203 holds and rotates section 3021, so whole spanner 302 can be as far as in the base 200 when the unblock state, has strengthened the holistic occupation space of quick detach subassembly 1000, has made things convenient for accomodating and carrying quick detach subassembly 1000.
On the other hand, when the wrench 302 is in the unlocking state, the wrench 302 can be accommodated in the base 200 as much as possible, so that the influence of the outside on the wrench 302 can be reduced, the impact and scratch on the wrench 302 can be reduced, and the service life of the wrench 302 can be prolonged. At the same time, the possibility of erroneous operation can be reduced.
It should be noted that, the extending direction of the extending section 3023 is set in a straight line, so the end of the extending section 3023, which is far away from the connecting section 3022, cannot be completely accommodated in the avoidance groove 204, so that the operation of the wrench 302 can be facilitated, when the plugging portion 101 needs to be locked, an operator can move the wrench 302 by hand by stirring the tail end of the extending section 3023, and the wrench 302 is stirred in the avoidance groove 204 without an additional tool, so that the effect of conveniently stirring the wrench 302 is achieved.
In another embodiment of the present utility model, the wrench 302 is hinged to the supporting member 301, and the supporting member 301 is slidably connected to the base 200.
The wrench 302 is hinged to the supporting member 301, that is, pulling the wrench 302 can drive the supporting member 301 to slide in the base 200, so that the supporting member 301 approaches to or away from the plug portion 101. The wrench 302 and the abutment 301 may be hinged by means of a restraining post and a groove, or by means of a hinge.
Referring to fig. 1 and 2, the connector 100 further includes a fixing plate 400, and the fixing plate 400 is disposed between the connection portion 102 and the connector portion 101.
The connecting portion 102 of the connector 100 can be connected with an electronic device, so that the fixing plate 400 is arranged between the connecting portion 102 and the connector portion 101, the fixing plate 400 can play a supporting role on the electronic device connected to the connecting portion 102, and on the other hand, the fixing plate 400 can play a positioning role on the electronic device, so that the situation that the electronic device is connected with the connecting portion 102 too deeply to influence the matching of the connector portion 101 and the connector 201 and the limiting effect on the connector 100 is influenced.
The embodiment of the utility model also discloses a cradle head 2000, wherein the cradle head 2000 comprises: the cradle head 2000 body and the quick release assembly 1000 in the above embodiments; the quick release assembly 1000 is connected with the cradle head 2000 body through the base 200.
In the present embodiment, the plug portion 101 of the plug connector 100 is provided with threads for connection with an electronic device. The side of the base 200 away from the connector 100 is provided with a threaded hole for connecting with other external devices, such as a tripod.
The cradle head 2000 includes the same structure and advantages as the quick release assembly 1000 of the previous embodiments. The structure and the beneficial effects of the quick release assembly 1000 have been described in detail in the foregoing embodiments, and are not described herein.
It should be understood that the foregoing embodiments are merely illustrative of the technical solutions of the present utility model, and not limiting thereof, and that modifications and equivalents of some of the technical features described in the foregoing embodiments may be made by those skilled in the art; all such modifications and substitutions are intended to be included within the scope of this disclosure as defined in the following claims.
Claims (10)
1. A quick release assembly comprising:
the connector comprises a connecting part and a plug part which are connected with each other;
the base is provided with a plug-in port for accommodating the plug-in part;
the locking assembly comprises a spanner and a propping piece, the propping piece is arranged in the base, the spanner is rotationally connected with the base, one end of the spanner is connected with the propping piece, the other end of the spanner extends out of the base, and an opening communicated with the plug-in port is further formed in the base, so that the propping piece can be clamped with the plug-in portion through the opening;
the wrench is moved to drive the abutting piece to be close to or far away from the plug-in part, so that the plug-in piece is locked or unlocked.
2. The quick release assembly of claim 1, wherein: the plug-in part is provided with a limiting groove circumferentially encircling the plug-in part, and the supporting part is provided with a limiting protrusion corresponding to the limiting groove.
3. The quick release assembly of claim 2, wherein: the limiting protrusion is provided with a concave surface, and one side, deviating from the plug-in connection part, of the concave surface is concave inwards.
4. The quick release assembly of claim 1, wherein: the plug-in part is provided with a cutting plane extending along the axial direction of the plug-in part, and a limiting surface corresponding to the cutting plane is arranged in the plug-in port.
5. The quick release assembly of claim 2, wherein: the wrench is characterized in that a containing groove is formed in the base and communicated with the opening, and a rotating shaft is arranged in the containing groove, so that the wrench is connected with the base in a rotating mode through the rotating shaft.
6. The quick release assembly of claim 5, wherein: the wrench comprises a rotating section, wherein the rotating section is positioned in the accommodating groove and is rotationally connected with the rotating shaft; the locking assembly further comprises an elastic piece, the elastic piece is arranged between the abutting piece and the base, the abutting piece is in sliding connection with the accommodating groove, and the rotating section abuts against one side, away from the elastic piece, of the abutting piece.
7. The quick release assembly of claim 6, wherein: the wrench also comprises a connecting section and an extending section, wherein the rotating section, the connecting section and the extending section are sequentially connected, the connecting section is arc-shaped, and the connecting section protrudes outwards towards one side deviating from the base; the base is also provided with an avoidance groove communicated with the accommodating groove, and the connecting section and the extending section are positioned at the avoidance groove.
8. The quick release assembly of any one of claims 1-5, wherein: the wrench is hinged with the supporting piece, and the supporting piece is connected with the base in a sliding mode.
9. The quick release assembly of any one of claims 1-5, wherein: the plug connector also comprises a fixing plate, and the fixing plate is arranged between the connecting part and the plug connector.
10. A cradle head, comprising: a pan-tilt body and quick release assembly according to any one of claims 1-9; the quick-dismantling assembly is connected with the holder body through the base.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322469944.0U CN220792572U (en) | 2023-09-11 | 2023-09-11 | Quick detach subassembly and cloud platform |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322469944.0U CN220792572U (en) | 2023-09-11 | 2023-09-11 | Quick detach subassembly and cloud platform |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN220792572U true CN220792572U (en) | 2024-04-16 |
Family
ID=90630985
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202322469944.0U Active CN220792572U (en) | 2023-09-11 | 2023-09-11 | Quick detach subassembly and cloud platform |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN220792572U (en) |
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2023
- 2023-09-11 CN CN202322469944.0U patent/CN220792572U/en active Active
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