Socket assembly and mirror cabinet
By designing the socket components of the rotating body and the coil spring cylinder in the mirror cabinet, and combining the induction module to automatically control the conductive pin, the problem of frequent operation of the mirror cabinet socket and wire wrapping is solved, and the automatic storage and safe power outage of the wire is achieved, which improves the user experience and product life.
Patent Information
- Application Number
- CN202211223031.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-08
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2042-10-08
AI Technical Summary
The existing mirror cabinet sockets need to be opened frequently when installed inside the mirror cabinet door, and the wires are easily wrapped and knotted, affecting the beauty and storage.
A socket assembly is designed, including a rotating body, a reel and a traction rope, which automatically stores the wires through the elastic deformation of the coil spring cylinder, and combines the induction module to automatically control the power-on and power-off of the conductive pins to avoid wires wrapping and frequent operations.
It realizes automatic storage of wires, avoids wire wrapping and frequent operation, improves convenience and safety of use, and enhances the aesthetics and life of the product.
Smart Images

Figure CN115663541B_ABST
Abstract
Description
Technical field:
[0001] The invention relates to a socket assembly and a mirror cabinet. Background technology:
[0002] As people's living standards improve, more and more electrical appliances are used when washing and dressing in front of the mirror. Therefore, mirror cabinets are generally equipped with sockets to facilitate people to power or charge hair dryers, electric toothbrushes, electric shavers, curling irons, beauty devices, etc. However, the existing technology still has the following disadvantages:
[0003] 1. Because of concerns that the socket may be easily splashed by water from the faucet and cause leakage, the socket is usually installed inside the mirror cabinet door. This requires opening the mirror door every time it is used, which is very inconvenient;
[0004] 2. Since the plug wires of hair dryers and other appliances are placed in the mirror cabinet, the wires are easily tangled and knotted, affecting the storage and appearance. Summary of the invention:
[0005] The purpose of the present invention is to provide a socket assembly and a mirror cabinet to solve the technical problem that in existing mirror cabinets equipped with sockets, the sockets are generally installed in the mirror cabinet door, which requires the mirror door to be opened every time it is used, which is very inconvenient. In addition, since the plugs and wires of hair dryers and other appliances are placed in the mirror cabinet, the wires are easily entangled and knotted, which affects the storage and aesthetics.
[0006] The present invention can be implemented by the following scheme:
[0007] A socket assembly comprising:
[0008] A housing, comprising a shell and a cover, wherein the cover and the shell form a closed cavity, and a wire groove is provided on the shell for the power lead of the electrical appliance to pass through;
[0009] A socket assembly is mounted in the enclosed cavity and includes a rotating body and a socket. The socket is disposed on one side of the rotating body. A first reel and a second reel are disposed on the rotating body adjacent to the socket. A rotating shaft extends from each end face of the rotating body. The rotating body is rotatably mounted inside the housing using the rotating shaft. A plug at the end of a power lead is plugged into the socket to form an electrical connection. The power lead is wound on the first reel.
[0010] a spring drum and a traction rope, both of which are installed in the closed cavity, one end of the traction rope is connected to the second reel and wound around the second reel, and the other end of the traction rope is connected to the spring drum;
[0011] When the power lead of the electrical appliance is pulled out, the power lead drives the first reel to rotate forward, and at the same time the traction rope is stretched and wound around the second reel, and the coil spring inside the coil spring barrel is deformed by tension; when the tension on the power lead of the electrical appliance disappears, the coil spring inside the coil spring barrel resets, and the coil spring barrel pulls the traction rope, causing the second reel to rotate in the opposite direction. At the same time, the first reel also rotates in the opposite direction, causing the first reel to wind the power lead of the electrical appliance again, so that most of the power lead is gradually retracted into the closed cavity.
[0012] The above-mentioned socket assembly also includes a conductive pin. One of the rotating shafts of the rotating body is hollow. A conductive pin is installed at the end of the hollow rotating shaft. The conductive pin is electrically connected to the socket. The socket is electrically connected to the conductor installed on the outside of the shell through the conductive pin. The conductor includes a box body. A wire hole is provided on the box body for passing the power input wire. A circular pin hole with a certain depth is provided at the center of the left end face of the box body. Three axially spaced annular grooves are provided on the inner wall around the pin hole. A conductive clip is installed in each of the three annular grooves. Three conductive blocks are protruded from the side of the conductive pin at intervals. The conductive pin is installed in the circular pin hole, and the conductive block is embedded in the annular groove and contacts the conductive clip to ensure that the conductive pin can be energized at any position. The conductive clips in the three annular grooves are electrically connected to the neutral wire, the ground wire, and the live wire respectively.
[0013] Three conductive heads are provided on the end face of the above-mentioned rotating shaft, and the axial lengths of the three conductive heads are increased in a step-by-step manner. The three conductive heads are electrically connected to the sockets respectively, and one end of the three conductive blocks extends into the internal cavity of the conductive pin. The three conductive heads are inserted into the internal cavity of the conductive pin, and the three conductive heads are electrically connected to the three conductive blocks protruding from the side of the conductive pin at intervals.
[0014] A limit block is set on the inner wall of the internal cavity of the above-mentioned conductive pin, and the end of the hollow rotating shaft is inserted into the internal cavity of the conductive pin. When the end of the hollow rotating shaft touches the limit block, the three conductive heads are electrically connected to the three conductive blocks protruding from the side of the conductive pin.
[0015] The above-mentioned conductor also includes a controller, which is located in the box body and is used to control the power off or power on of the conductive pin and the conductor.
[0016] The controller inside the above-mentioned conductor is also electrically connected to the sensing module located outside the conductor. The sensing module detects whether the electrical appliance is placed on the support frame. When the sensing module detects that the electrical appliance is detached from the support frame, the sensing module sends a signal to the controller, and the controller controls the conductive pins and the conductor to be energized; when the sensing module detects that the electrical appliance is placed on the support frame, the controller controls the conductive pins and the conductor to be de-energized.
[0017] The above-mentioned sensing module is an infrared sensing module or a gravity sensing module.
[0018] The above-mentioned shell consists of a left wall, a right wall, a rear wall, a bottom plate, and a middle wall. The left wall is provided with a first bearing hole and a third bearing hole for installing bearings, the right wall is provided with a second bearing hole for installing bearings, and the middle wall is provided with a fourth bearing hole for installing bearings. The first bearing hole and the second bearing hole are on the same axis, and the third bearing hole and the fourth bearing hole are on the same axis; the rotating shafts on both side end faces of the rotating body are respectively supported on the bearings of the first bearing hole and the second bearing hole.
[0019] The above-mentioned spring box consists of a first box body, a coil spring, a pin shaft, and a box cover. The arc surface of the first box body is provided with a wire hole for the traction rope to pass through. The pin shaft is installed at the center position of the first box body. The middle end of the coil spring is fixed on the pin shaft, one end of the traction rope is fixed to the outermost end of the coil spring, and the other end of the traction rope is fixed and wound on the second winding drum. The two ends of the pin shaft are respectively supported on the bearings of the third bearing hole and the fourth bearing hole.
[0020] A mirror cabinet includes a cabinet body, a mirror and a socket assembly. The mirror is installed in front of the cabinet body, a storage cavity is provided on the cabinet body below the mirror, and the socket assembly is installed inside the cabinet body. The characteristic is that the socket assembly is the socket assembly described above.
[0021] Compared with the prior art, the present invention has the following advantages:
[0022] 1. The conductive port, conductive pin and conductor on the socket assembly are connected by the power supply of the shaft, which effectively prevents the socket assembly from rotating when collecting or releasing the wires and causing the internal wires to be entangled and knotted, and improves the product life. The socket assembly does not need to be installed in the mirror cabinet door, so the mirror door needs to be opened every time it is used, which is very convenient.
[0023] 2. The wire reel can be automatically wound by the force of the winding spring, without the need for a motor, and has a simple structure. The wire trough allows the wires to be wound on the reel in an orderly manner, which is more beautiful.
[0024] 3. The socket assembly is set under the mirror cabinet, which does not affect storage and does not require opening the mirror cabinet door every time it is used, which is more convenient.
[0025] 4. The sensing module detects whether the appliance is placed on the support frame. If the sensing module detects that the appliance is detached from the support frame, it sends a signal to the controller, which energizes the conductive pins and the conductor. If the sensing module detects that the appliance is placed on the support frame, the controller de-energizes the conductive pins and the conductor. This eliminates the need to plug in and unplug the appliance each time it is used, providing a convenient experience. Automatic power-off also prevents fires caused by users forgetting to turn off the hair dryer, providing added safety.
[0026] 5. Other advantages of the present invention are described in detail in the embodiment section of the specification. Description of the drawings:
[0027] Figure 1 It is a three-dimensional diagram from one angle of embodiment 1 of the present invention;
[0028] Figure 2 This is a three-dimensional diagram of the first embodiment of the present invention with the cover removed;
[0029] Figure 3 It is an exploded view of a state of the first embodiment of the present invention;
[0030] Figure 4 is an exploded view of another state of the first embodiment of the present invention;
[0031] Figure 5 is an exploded view of the socket assembly according to the first embodiment of the present invention;
[0032] Figure 6 This is a diagram of the electrical connection structure between the conductive head on the end face of the rotating shaft and the conductive pin in the first embodiment of the present invention;
[0033] Figure 7 is a cross-sectional view of the structure of the conductor of Example 1 of the present invention;
[0034] Figure 8 is an exploded view of the coil spring box according to the first embodiment of the present invention;
[0035] Figure 9 is a perspective view of a support frame according to a first embodiment of the present invention;
[0036] Figure 10 This is a block diagram of an electrical appliance according to a first embodiment of the present invention;
[0037] Figure 11 yes Figure 10 Corresponding specific circuit diagram;
[0038] Figure 12 is a control flow chart of embodiment 1 of the present invention;
[0039] Figure 13 It is a three-dimensional diagram of a state of the second embodiment of the present invention;
[0040] Figure 14 It is a three-dimensional diagram of another state of the second embodiment of the present invention. Specific implementation method:
[0041] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0042] Example 1:
[0043] like Figures 1 to 9 As shown, the present invention provides a socket assembly, comprising:
[0044] A housing 4 including a shell 42 and a cover 41. The cover 41 and the shell 42 form a closed cavity 40. The shell 42 is provided with a wire groove 411 for passing the power lead 31 of the electrical appliance 3. The wire groove 411 is long and strip-shaped to facilitate winding the power lead 31 on the first reel 52.
[0045] A socket assembly is mounted in the enclosed cavity 40 and includes a rotating body 5 and a socket 51. The socket 51 is disposed on one side of the rotating body 5. A first reel 52 and a second reel 53 are respectively disposed on the rotating body 5 adjacent to the socket 51. A rotating shaft 54 extends from each end face of the rotating body 5. The rotating body 5 is rotatably mounted inside the housing 42 using the rotating shaft 54. The plug 32 at the end of the power lead 31 is plugged into the socket 51 to form an electrical connection. The power lead 31 is wound on the first reel 52.
[0046] A spring drum 6 and a traction rope 61 are installed in the closed cavity 40. One end of the traction rope 61 is connected to the second reel 53 and wound around the second reel 53. The other end of the traction rope 61 is connected to the spring drum 6.
[0047] When the power lead 31 of the electrical appliance 3 is pulled out, the power lead 31 drives the first reel 52 to rotate forward. At the same time, the traction rope 61 is stretched and wound around the second reel 53, and the coil spring 63 inside the coil spring barrel 6 is deformed by tension. When the tension on the power lead 31 of the electrical appliance 3 disappears, the coil spring 63 inside the coil spring barrel 6 returns to its original position. The coil spring barrel 6 pulls the traction rope 61, causing the second reel 53 to rotate in the opposite direction. At the same time, the first reel 52 also rotates in the opposite direction, causing the first reel 52 to rewind the power lead 31, gradually retracting most of the power lead 31 into the closed cavity 40. The surface of the first reel 52 is provided with a threaded winding groove 521. The power lead 31 of the electrical appliance 3 is wound and embedded in the threaded winding groove 521. The rotating body 5 on the right side of the first reel 52 has a plane cut on the top, and the socket 51 is provided on this plane.
[0048] The above-mentioned socket assembly 5 also includes a conductive pin 9. One of the rotating shafts 54 of the rotating body is hollow. The conductive pin 9 is installed at the end of the hollow rotating shaft 54. The conductive pin 9 is electrically connected to the socket 51. The socket 51 is electrically connected to the conductor 7 installed on the outside of the shell 4 through the conductive pin 9. The conductor 7 includes a box body 71. A wire hole 75 is provided on the top of the box body 71 for passing the power input wire. A circular pin hole 72 with a certain depth is provided at the center of the left end face of the box body 71. Three axially spaced annular grooves 73 are provided on the inner wall around the pin hole 72. A conductive clip 77 is respectively installed in the three annular grooves 72. Three conductive blocks 91 protrude from the side of the conductive pin 9 at intervals. The conductive pin 9 is installed in the circular pin hole 72. The conductive block 91 is embedded in the annular groove 73 and contacts with the conductive clip 77 to ensure that the conductive pin 7 can be energized at any position. The conductive clips 77 in the three annular grooves 73 are electrically connected to the neutral wire N, the ground wire E, and the live wire L respectively.
[0049] Three conductive heads 541 are provided on the end face of the rotating shaft 54. The axial lengths of the three conductive heads 541 are increased in a step-by-step manner. The three conductive heads 541 are electrically connected to the socket 51 respectively. One end of the three conductive blocks 91 extends to the internal cavity 90 of the conductive pin 9. The three conductive heads 541 are inserted into the internal cavity 90 of the conductive pin 9. The three conductive heads 541 are electrically connected to the three conductive blocks 91 protruding from the side of the conductive pin at intervals.
[0050] A limit block 92 is set on the inner wall of the internal cavity 90 of the above-mentioned conductive pin 9, and the end of the hollow rotating shaft 54 is inserted into the internal cavity 90 of the conductive pin 9. When the end of the hollow rotating shaft 54 touches the limit block 92, the three conductive heads 541 are respectively electrically connected to the three conductive blocks protruding from the side of the conductive pin, and then the conductive pin 9 is fixedly connected to the hollow rotating shaft 54 using screws 93. The three conductive heads 541 are respectively electrically connected to the socket 51 using three wires 542.
[0051] The above-mentioned conductor 7 also includes a controller 76. The controller 76 is placed in the box body 71. The controller 76 is used to control the power off or power on of the conductive pin 9 and the conductor 7.
[0052] The controller 76 inside the conductor 7 is also electrically connected to the sensing module 74 located outside the conductor 7. The sensing module 74 detects whether the electrical appliance 3 (e.g., a hair dryer, electric toothbrush, or electric shaver) is placed on the support frame 8. When the sensing module 74 detects that the electrical appliance 3 is detached from the support frame 8, the sensing module 74 sends a signal to the controller 76, which controls the conductive pin 9 and the conductor 7 to be energized. When the sensing module 74 detects that the electrical appliance 3 is placed on the support frame 8, the controller 76 controls the conductive pin 9 and the conductor 7 to be de-energized. The support frame 8 has a storage slot 82 formed therein, and the electrical appliance 3 is placed in the storage slot 82. The support frame 8 also has a mounting hole 81 installed at the rear. The support frame 8 is fixed to the bathroom mirror cabinet or wall by screws passing through the mounting hole 81.
[0053] The aforementioned sensing module 74 is an infrared sensing module or a gravity sensing module.
[0054] The above-mentioned shell 42 includes a left wall 421, a right wall 422, a rear wall 423, a bottom plate 424, and a middle wall 425. The left wall 421 is provided with a first bearing hole 4211 and a third bearing hole 4212 for installing the bearing 43, the right wall 422 is provided with a second bearing hole 4221 for installing the bearing 43, and the middle wall 425 is provided with a fourth bearing hole 4251 for installing the bearing 43. The first bearing hole 4211 and the second bearing hole 4221 are on the same axis, and the third bearing hole 4212 and the fourth bearing hole 4251 are on the same axis; the rotating shafts 54 on the end faces of both sides of the rotating body 5 are respectively supported on the bearings 43 of the first bearing hole 4211 and the second bearing hole 4221.
[0055] The above-mentioned spring box 6 consists of a first box body 64, a coil spring 63, a pin 62, and a box cover 65. The arc surface of the first box body 64 is provided with a wire hole 641 for the traction rope 61 to pass through. The pin 62 is installed at the center position of the first box body 64. The middle end of the coil spring 63 is fixed on the pin 62, one end of the traction rope 61 is fixed to the outermost end of the coil spring 63, and the other end of the traction rope 61 is fixed and wound on the second winding drum 53. The two ends of the pin 62 are respectively supported on the bearings 43 of the third bearing hole 4212 and the fourth bearing hole 4251.
[0056] like Figure 10 、 Figure 11 and Figure 12 As shown, the sensing module 74 detects whether the electrical appliance 3 is placed on the support frame 8. The sensing module 74 sends a signal to the microprocessor MCU. After receiving the signal, the microprocessor MCU outputs a start signal to the base of the transistor Q1. The transistor Q1 is turned on, and the relay JK is energized and turned on. The relay switch is closed to connect the AC inputs L and N, thereby energizing the conductive pin 9 and the conductor 7. Figure 9The conductive interface is the conductive interface between the conductive pin 9 and the conductor 7, and the socket 51 is supplied with power. The resistor R1, transistor Q1 and diode D1 serve as the driving circuit of the relay JK.
[0057] like Figure 12 As shown, when the sensing module 74 detects that the electrical appliance 3 leaves the storage slot 82 on the support frame 8, the controller 76 issues a power supply instruction. After receiving the signal, the microprocessor MCU in the controller 76 outputs a start signal to the base of the transistor Q1, the transistor Q1 is turned on, the relay JK is energized and turned on, the relay switch is closed to connect the AC inputs L and N, thereby energizing the conductive pin 9 and the conductor 7, and the socket 51 is powered; when the sensing module 74 detects that the electrical appliance 3 is placed back into the storage slot 82 on the support frame 8, the controller 76 issues a power-off instruction. After receiving the signal, the microprocessor MCU in the controller 76 outputs a disconnection signal to the base of the transistor Q1, the transistor Q1 is cut off, the relay JK is powered off, the relay switch is disconnected to disconnect the AC inputs L and N, and the socket 51 is powered off and no power is provided.
[0058] Example 2:
[0059] like Figure 13 and Figure 14 As shown, a mirror cabinet includes a cabinet body 1, a mirror 2 and a socket assembly 100. The mirror 2 is installed in front of the cabinet body 1, and a storage cavity 11 is provided on the cabinet body below the mirror 2. The socket assembly 100 is installed inside the cabinet body 1. It is characterized in that the socket assembly is a socket assembly described in Example 1.
[0060] The present invention uses more and more electrical appliances 3 when washing and dressing in front of a mirror 2, so current mirror cabinets 1 are generally equipped with sockets to facilitate people to power on or charge hair dryers, electric toothbrushes, electric shavers, curling irons, beauty devices, etc. Users do not need to plug in or unplug the plug every time they use it, giving people a convenient experience. Automatic power off can also prevent fires caused by users forgetting to turn off the hair dryer, playing a safer role; the conductive port and conductive pin on the socket, and the conductor are powered by the shaft, which effectively prevents the socket from turning when the wire is wound or released, causing internal wire entanglement, and improves the product life. The effect of automatic winding can be achieved by the force of the winding spring, without the need for a motor to drive, and the structure is simple; the wire trough allows the wires to be wound on the reel in an orderly manner, which is more beautiful. The socket body is set under the mirror cabinet, which does not affect storage and does not require the mirror cabinet door to be opened every time it is used, which is more convenient.
[0061] The above embodiments are preferred implementations of the present invention, but the implementations of the present invention are not limited thereto. Any other changes, modifications, substitutions, combinations, and simplifications that do not deviate from the spirit and principles of the present invention are equivalent replacement methods and are included in the scope of protection of the present invention.
Claims
1. A socket assembly, characterized in that: It includes: A housing, comprising a shell and a cover, wherein the cover and the shell form a closed cavity, and a wire groove is provided on the shell for the power lead of the electrical appliance to pass through; A socket assembly is mounted in the enclosed cavity and includes a rotating body and a socket. The socket is disposed on one side of the rotating body. A first reel and a second reel are disposed on the rotating body adjacent to the socket. A rotating shaft extends from each end face of the rotating body. The rotating body is rotatably mounted inside the housing using the rotating shaft. A plug at the end of a power lead is plugged into the socket to form an electrical connection. The power lead is wound on the first reel. a spring drum and a traction rope, both of which are installed in the closed cavity, one end of the traction rope is connected to the second reel and wound around the second reel, and the other end of the traction rope is connected to the spring drum; When the power lead of the electrical appliance is pulled out, the power lead drives the first reel to rotate forward, and at the same time the traction rope is stretched and wound around the second reel, and the coil spring inside the coil spring barrel is deformed by tension; when the tension on the power lead of the electrical appliance disappears, the coil spring inside the coil spring barrel resets, and the coil spring barrel pulls the traction rope, causing the second reel to rotate in the opposite direction. At the same time, the first reel also rotates in the opposite direction, causing the first reel to wind the power lead again, so that most of the power lead is gradually retracted into the closed cavity; The above-mentioned socket assembly also includes a conductive pin. One of the rotating shafts of the rotating body is hollow. A conductive pin is installed at the end of the hollow rotating shaft. The conductive pin is electrically connected to the socket. The socket is electrically connected to the conductor installed on the outside of the shell through the conductive pin. The conductor includes a box body. A wire hole is provided on the box body for passing the power input wire. A circular pin hole with a certain depth is provided at the center of the left end face of the box body. Three axially spaced annular grooves are provided on the inner wall around the pin hole. A conductive clip is installed in each of the three annular grooves. Three conductive blocks are protruded from the side of the conductive pin at intervals. The conductive pin is installed in the circular pin hole, and the conductive block is embedded in the annular groove and contacts the conductive clip to ensure that the conductive pin can be energized at any position. The conductive clips in the three annular grooves are electrically connected to the neutral wire, the ground wire, and the live wire respectively.
2. The socket assembly according to claim 1, wherein: Three conductive heads are set on the end face of the rotating shaft. The axial lengths of the three conductive heads are increased in steps. The three conductive heads are electrically connected to the sockets respectively. One end of the three conductive blocks extends to the internal cavity of the conductive pin. The three conductive heads are inserted into the internal cavity of the conductive pin. The three conductive heads are electrically connected to the three conductive blocks protruding from the side of the conductive pin at intervals.
3. The socket assembly according to claim 2, wherein: A limit block is set on the inner wall of the internal cavity of the conductive pin, and the end of the hollow rotating shaft is inserted into the internal cavity of the conductive pin. When the end of the hollow rotating shaft touches the limit block, the three conductive heads are electrically connected to the three conductive blocks protruding from the side of the conductive pin.
4. A socket assembly according to claim 1, 2 or 3, characterized in that: The conductor also includes a controller, which is placed in the box body and is used to control the power off or power on of the conductive pin and the conductor.
5. A socket assembly according to claim 1, 2 or 3, characterized in that: The controller inside the conductor is also electrically connected to the sensing module located outside the conductor. The sensing module detects whether the electrical appliance is placed on the support frame. When the sensing module detects that the electrical appliance is detached from the support frame, the sensing module sends a signal to the controller, and the controller controls the conductive pins and the conductor to be energized; when the sensing module detects that the electrical appliance is placed on the support frame, the controller controls the conductive pins and the conductor to be de-energized.
6. A socket assembly according to claim 1, 2 or 3, characterized in that: The sensing module is an infrared sensing module or a gravity sensing module.
7. The socket assembly according to claim 5, characterized in that: The shell consists of a left wall, a right wall, a rear wall, a bottom plate, and a middle wall. The left wall is provided with a first bearing hole and a third bearing hole for installing bearings, the right wall is provided with a second bearing hole for installing bearings, and the middle wall is provided with a fourth bearing hole for installing bearings. The first bearing hole and the second bearing hole are on the same axis, and the third bearing hole and the fourth bearing hole are on the same axis; the rotating shafts on both side end faces of the rotating body are respectively supported on the bearings of the first bearing hole and the second bearing hole.
8. The socket assembly according to claim 7, characterized in that: The coil spring box consists of a first box body, a coil spring, a pin shaft, and a box cover. The arc surface of the first box body is provided with a wire hole for the traction rope to pass through. The pin shaft is installed at the center position of the first box body. The middle end of the coil spring is fixed on the pin shaft, one end of the traction rope is fixed to the outermost end of the coil spring, and the other end of the traction rope is fixed and wound on the second winding drum. The two ends of the pin shaft are respectively supported on the bearings of the third bearing hole and the fourth bearing hole.
9. A mirror cabinet, comprising a cabinet body, a mirror, and a socket assembly, wherein the mirror is installed in front of the cabinet body, a storage cavity is provided on the cabinet body below the mirror, and the socket assembly is installed inside the cabinet body, characterized in that: The socket assembly is a socket assembly according to any one of claims 1 to 8.
Citation Information
Patent Citations
Safety socket
CN209183879U
Reel type multi socket
KR200272246Y1