Multifunctional socket lamp equipment
By vertically integrating the socket strip body and the lamp body, combining the circular contacts with the spring clips and the mechanical linkage structure, the problem of traditional socket lamps being too long is solved, achieving safe and stable integration of power and lighting, and improving user experience.
Patent Information
- Application Number
- CN202510946057.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-09-26
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The integrated design of traditional bedside socket and lighting equipment makes the socket too long, which restricts installation and is easy to damage, takes up space, and affects user experience and aesthetics.
The vertically integrated power strip body and lamp body are used, circular contacts are matched with inner concave spring pieces, and combined with the pressure rod-rocker arm-slide rod linkage mechanism, the power strip and lamp can be switched on and off separately, and live operation can be avoided through mechanical linkage.
Effectively utilize space to avoid installation restrictions and inconvenience caused by overly long sockets, ensure the stability of the equipment, and improve safety and aesthetics.
Smart Images

Figure CN120709785A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of lamp sockets, and in particular relates to a multifunctional socket lamp device. Background Art
[0002] In modern home living, the bedside area is a core space for daily activities such as rest, reading, and entertainment. The demand for convenient power supply and appropriate lighting is increasing. Traditional designs that separate independent lamps from sockets not only create a cluttered layout, but also lead to problems such as tangled wires and excessive wall space usage. Furthermore, users need to operate the socket and lamp separately during use, significantly reducing convenience. To address these issues and enhance the comfort and convenience of home life, the design concept of integrating lamps with bedside sockets is gradually gaining attention.
[0003] This integrated design aims to achieve the integration of lighting and power supply through innovative structural and functional integration, making the equipment layout in the bedside area more concise and orderly, and operation more convenient and efficient. However, existing integrated designs on the market still have many problems. For example, when installing socket lighting equipment at the bedside, due to the limited space at the bedside, if the lamp and socket are fully integrated, the overall length of the socket will be too long. Not only may there be space obstructions during installation, but during later use, the overly long socket may easily collide with other objects, causing damage. It also takes up too much space, affecting the user experience and detrimental to the aesthetics and neatness of the home environment.
[0004] In view of this, the present invention is proposed. Summary of the Invention
[0005] To solve the technical problem that when installing a socket lamp at the head of a bed, due to the limited space at the head of the bed, if the lamp and the socket are fully integrated, the overall length of the socket will be too long. Not only may there be space obstruction during installation, but also during later use, the overly long socket may easily collide with other objects, causing damage. It also takes up too much space, affecting the user experience, and is not conducive to the beauty and neatness of the home environment. The basic concept of the technical solution adopted by the present invention is: A multifunctional socket lamp device comprises a socket body.
[0006] A fixing bracket is vertically connected to the socket body, and the socket body and the lamp body are respectively installed on the fixing bracket. The connection between the socket body and the lamp body is provided with a circular contact. A conductive sheet is installed inside the socket body, and an arched spring sheet is installed at the end of the conductive sheet. The spring sheet has an inner concave surface, and the inner concave surface is adapted to the contact. The socket body is vertically mounted with a pressure rod, and the side wall of the pressure rod is mounted with a clamping rod, which is clamped on a clamping plate mounted on the side wall of the fixing frame to limit the position of the socket body and the lamp body; A rocker arm is rotatably mounted on the bottom of the pressure rod, and a sliding rod is rotatably mounted on the end of the rocker arm, and the sliding rod is in a horizontal sliding state. The sliding of the sliding rod pulls the elastic sheet to deform and separate from the contact.
[0007] As a preferred embodiment of the present invention, jacks are installed on both sides of the socket body, inner grooves are opened at the four corners of the socket body, mounting holes are opened inside the inner grooves, bolts pass through the mounting holes, and are used to connect the socket body to the wall.
[0008] As a preferred embodiment of the present invention, several pairs of blocks are installed on the fixing frame, the extension strip body and the lamp body are installed in the gap between the connected blocks, and protrusions are installed on the blocks at the top and bottom, and the protrusions facilitate the later movement of the fixing frame. The side walls of the fixing frame are installed with countersunk grooves, and locking bolts are screwed inside the countersunk grooves. The locking bolts are correspondingly connected to the extension strip body and the lamp body, and the ends of the locking bolts are received inside the countersunk grooves.
[0009] As a preferred embodiment of the present invention, a track is installed at the center of the socket body, the track is slidably connected to the fixing frame, and a notch is opened on the side wall of the track, the notch is used to facilitate the contact to slide along the track, and an installation cavity is installed inside the socket body, and the conductive sheet and the spring are placed in the installation cavity.
[0010] As a preferred embodiment of the present invention, the spring sheet is interconnected with the circuit inside the socket body, and the spring sheet and the conductive sheet form a U shape, the arched position of the spring sheet is in contact with the side wall of the contact, and a pull plate is installed on the spring sheet, a strip groove is opened inside the pull plate, the slide rod is slidably arranged in the strip groove, and the slide rod is made of insulating material.
[0011] As a preferred embodiment of the present invention, a pressure plate is installed on the top of the pressure rod, the cross-sectional area of the pressure plate is larger than the cross-sectional area of the pressure rod, a synchronization plate is installed on the pressure rod, and clamping rods are installed at both ends of the synchronization plate, and the clamping rod has a movable socket body.
[0012] As a preferred embodiment of the present invention, a connecting block is installed on the side wall of the fixing frame, a card plate is installed on the connecting block, the lower surface of the card plate is on the same plane as the socket body, and a card hole is opened on the card plate, and the card hole and the card rod are plugged into each other.
[0013] As a preferred embodiment of the present invention, a fixed block is installed at the end of the pressure rod, a slide is installed on the side wall of the fixed block, a limit rod is arranged inside the slide for movement, both ends of the limit rod are installed inside the socket body, a limit spring is sleeved on the limit rod, one end of the limit spring is clamped on the side wall of the slide, and the other end of the limit spring is clamped on the socket body.
[0014] As a preferred embodiment of the present invention, the side wall of the fixed block is rotatably connected to the rocker arm, and the rocker arm is in an inclined state. A support is installed at the bottom of the socket body, the support corresponds to the bottom of the fixed block, and the support is used to limit the maximum sliding stroke of the fixed block.
[0015] As a preferred embodiment of the present invention, a slider is installed at the center position of the sliding rod, a guide rod is provided inside the slider for movement, one end of the guide rod is connected to the socket body, and a guide plate for preventing falling off is installed at the other end of the guide rod. A guide spring is sleeved on the guide rod, one end of the guide spring is clamped on the side wall of the socket body, and the other end of the guide spring is clamped on the side wall of the slider.
[0016] Compared with the prior art, the present invention has the following beneficial effects: The present invention cleverly integrates the power strip body and the lamp body by vertically plugging the fixing frame on the socket body. Compared with the traditional flat or horizontal stacking integration method, this vertical layout can make full use of the space height and strictly control the horizontal extension length of the equipment, fundamentally avoiding the installation restrictions and inconvenience caused by excessive length; the circular contacts and the arched spring pieces with inner concave surfaces are adapted to each other, so that the power strip body and the lamp body can only be powered on individually, which can not only meet different power requirements but also avoid circuit conflicts and ensure power safety. The clamping structure of the clamping rod on the side wall of the pressure rod and the clamping plate on the side wall of the fixing frame can accurately limit the working position of the power strip body and the lamp body, ensuring that the equipment is stable during use and preventing shaking or displacement; when it is necessary to switch the functional module, the pressure rod is pressed down, and the sliding rod is driven to slide horizontally by the bottom rocker arm, so that the spring piece is deformed and separated from the contact, thereby realizing the power-off operation. The mechanical linkage structure avoids the risk of live switching and further improves the safety of use.
[0017] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In the attached figure: Figure 1 A three-dimensional diagram of a multifunctional socket lighting device; Figure 2 A side view of a multifunctional socket lighting device; Figure 3It is a part of a multifunctional socket lighting device Figure 1 ; Figure 4 It is a part of a multifunctional socket lighting device Figure 2 ; Figure 5 The interior of the installation cavity of a multifunctional socket lamp device Figure 1 ; Figure 6 The interior of the installation cavity of a multifunctional socket lamp device Figure 2 ; Figure 7 A multifunctional socket lighting device Figure 6 Enlarged view of point A in the middle; Figure 8 It is a part of a multifunctional socket lighting device Figure 3 ; Figure 9 A structure for connecting a pressure rod and a sliding rod of a multifunctional socket lamp device Figure 1 ; Figure 10 A structure for connecting a pressure rod and a sliding rod of a multifunctional socket lamp device Figure 2 .
[0019] In the figure: 1. socket body; 11. socket; 111. inner groove; 112. mounting hole; 12. fixing bracket; 121. block; 122. socket strip body; 123. lamp body; 124. protrusion; 125. contact; 126. track; 127. notch; 128. countersunk groove; 13. conductive sheet; 131. spring; 132. inner concave surface; 133. pull plate; 134. strip groove; 135. mounting cavity; 2. Press rod; 21. Press plate; 211. Synchronous plate; 212. Clamping rod; 22. Connecting block; 221. Clamping plate; 222. Clamping hole; 23. Fixing block; 231. Slide plate; 232. Limiting rod; 233. Limiting spring; 3. Slide rod; 31. Rocker arm; 311. Support; 32. Slider; 321. Guide rod; 322. Guide spring; 323. Guide plate. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. The following embodiments are used to illustrate the present invention.
[0021] Example 1: like Figures 1 to 10 As shown, a multifunctional socket lighting device includes a socket body 1.
[0022] A fixing bracket 12 is vertically plugged into the socket body 1, and a socket strip body 122 and a lamp body 123 are respectively installed on the fixing bracket 12. A circular contact 125 is provided at the connection between the socket strip body 122 and the lamp body 123. A conductive sheet 13 is installed inside the socket body 1, and an arched spring piece 131 is installed at the end of the conductive sheet 13. An inner concave surface 132 is provided on the spring piece 131, and the inner concave surface 132 is adapted to the contact 125. The inner concave surface 132 cooperates with the arc surface of the contact 125 to form an elastic conductive contact pair, and the self-centering function is achieved through the curved surface constraint. The installation deviation can be automatically corrected during the plugging and unplugging process of the fixing bracket to ensure reliable connection of the conductive circuit. At the same time, the contact impedance is reduced by increasing the contact surface pressure, thereby improving the stability under large current load.
[0023] The socket body 1 is vertically installed with a pressure rod 2, and the side wall of the pressure rod 2 is installed with a clamping rod 212. The clamping rod 212 is clamped on the clamping plate 221 installed on the side wall of the fixing frame 12, and is used to limit the working positions of the strip body 122 and the lamp body 123; the clamping rod 212 and the clamping plate 221 constitute a quick positioning locking mechanism to meet the multi-position adjustable requirements of the functional module on the socket body 1.
[0024] A rocker arm 31 is rotatably mounted at the bottom of the pressure rod 2, and a slide bar 3 is rotatably mounted at the end of the rocker arm 31. The slide bar 3 slides horizontally, causing the slide bar 3 to slide and pull the spring 131, causing it to deform and separate from the contact 125. The pressure rod, rocker arm, and slide bar form a four-bar linkage mechanism. This utilizes the travel amplification principle to convert the vertical displacement of the pressure rod into horizontal displacement of the slide bar, achieving a pre-reset disconnection action for the spring 131, preventing arcing caused by load switching and complying with electrical safety regulations.
[0025] like Figures 1 to 10 As shown in the figure, in this embodiment, socket body 1 is equipped with jacks 11 on both sides. Inner grooves 111 are provided at the four corners of socket body 1. Mounting holes 112 are provided within inner grooves 111. Bolts pass through mounting holes 112 and are used to connect socket body 1 to the wall. The hidden mounting hole design balances wall aesthetics with installation stability, supporting reliable fixing in various scenarios.
[0026] like Figures 1 to 10 As shown, further, several pairs of blocks 121 are installed on the fixing frame 12, and the power strip body 122 and the lamp body 123 are installed in the gaps between the connected blocks 121. The blocks 121 at the top and bottom are installed with protrusions 124. The protrusions 124 facilitate the later movement of the fixing frame 12. The side walls of the fixing frame 12 are installed with countersunk grooves 128. The countersunk grooves 128 are screwed with locking bolts. The locking bolts are connected to the power strip body 122 and the lamp body 123 respectively, and the ends of the locking bolts are received in the countersunk grooves 128. The block partitions and hidden locking structure ensure stable module installation, and the protrusion design improves the convenience of manual adjustment.
[0027] Example 2: The difference between the above embodiment and this embodiment is that: Figures 1 to 10 As shown, a track 126 is mounted in the center of the socket body 1. Track 126 is slidably connected to the fixing frame 12. A notch 127 is provided on the sidewall of track 126 to facilitate the sliding of the contact 125 along the track 126. A mounting cavity 135 is mounted inside the socket body 1, and the conductive sheet 13 and the spring 131 are positioned within the mounting cavity 135. Track 126 utilizes a dovetail groove guide structure, which, combined with the limiting action of notch 127, restricts the sliding freedom of the fixing frame 12 to a single vertical direction, preventing radial shaking associated with traditional plug-in / plugging methods. This ensures that the contact 125 moves along a preset trajectory, improving the reliability of function switching.
[0028] like Figures 1 to 10 As shown, in a specific embodiment, the spring clip 131 is interconnected with the circuitry within the socket body 1, and the spring clip 131 and the conductive sheet 13 form a U-shape. The arched portion of the spring clip 131 aligns with the side wall of the contact 125. A pull plate 133 is mounted on the spring clip 131, and a strip groove 134 is defined within the pull plate 133. The slide rod 3 slides in the strip groove 134, and the slide rod 3 is made of insulating material. The mounting cavity 135 forms an independent electrically isolated space, and the conductive components are encapsulated in flame-retardant material to meet the IP2X protection level for electric shock protection, effectively preventing the risk of short circuits caused by external foreign matter intrusion. The optimized cavity structure also reduces electromagnetic radiation interference.
[0029] like Figures 1 to 10 As shown, further, a pressure plate 21 is installed on the top of the pressure rod 2. The cross-sectional area of the pressure plate 21 is larger than the cross-sectional area of the pressure rod 2. A synchronization plate 211 is installed on the pressure rod 2. Clamping rods 212 are installed at both ends of the synchronization plate 211. The clamping rod 212 moves the socket body 1. A connecting block 22 is installed on the side wall of the fixing frame 12. A clamping plate 221 is installed on the connecting block 22. The lower surface of the clamping plate 221 is in the same plane as the socket body 1, and a clamping hole 222 is opened on the clamping plate 221. The clamping hole 222 and the clamping rod 212 are plugged into each other. The U-shaped spring structure uses the elastic deformation of the material to provide constant contact pressure, and the pull plate 133 and the strip groove 134 constitute a slide groove limiting mechanism to guide the translational movement of the slide rod 3, ensure that the deformation path of the spring 131 is controllable, and avoid metal fatigue fracture caused by stress concentration.
[0030] Example 3: The difference between the above embodiment and this embodiment is that: Figures 1 to 10As shown, a fixed block 23 is mounted at the end of the pressure rod 2, and a slide 231 is mounted on the side wall of the fixed block 23. A limit rod 232 is movably provided inside the slide 231 and extends therethrough. Both ends of the limit rod 232 are mounted inside the socket body 1. A limit spring 233 is sleeved on the limit rod 232. One end of the limit spring 233 is engaged with the side wall of the slide 231, and the other end of the limit spring 233 is engaged with the socket body 1. The limit rod 232 and the limit spring 233 form an elastic damping reset system that ensures the locking of the locking rod 212 and the locking plate 221 after the pressure rod 2 is released.
[0031] like Figures 1 to 10 As shown, in this embodiment, the sidewall of the fixed block 23 is pivotally connected to the rocker arm 31, and the rocker arm 31 is tilted. A support 311 is mounted on the bottom of the socket body 1. The support 311 corresponds to the bottom of the fixed block 23 and is used to limit the maximum sliding travel of the fixed block 23. The optimized tilt angle of the rocker arm 31 maximizes force transmission efficiency. The support 311 acts as a mechanical stop, limiting the travel limit of the fixed block 23, preventing damage to internal components caused by excessive pressure, and improving the life of the mechanism.
[0032] like Figures 1 to 10 As shown, a slider 32 is mounted at the center of the slide bar 3. A guide rod 321 is movably provided inside the slider 32. One end of the guide rod 321 is connected to the socket body 1, and the other end of the guide rod 321 is provided with a guide plate 323 for preventing disengagement. A guide spring 322 is sleeved on the guide rod 321. One end of the guide spring 322 is clamped to the side wall of the socket body 1, and the other end of the guide spring 322 is clamped to the side wall of the slider 32. The guide rod 321 and the slider 32 form a linear motion guide pair. The preloaded action of the guide spring 322 ensures the reset accuracy of the spring 131, achieving zero-delay conduction of the circuit after the functional module is switched, and improving the user's operating experience.
[0033] When in use, the multifunctional socket lamp device of the present invention has the fixing bracket 12 vertically inserted into the socket body 1. The fixing bracket 12 is limited in position by the engagement of the sidewall latching rod 212 of the pressure rod 2 with the sidewall latching plate 221 of the fixing bracket 12. A block 121 on the fixing bracket 12 separates and secures the power strip body 122 and the lamp body 123. Top and bottom protrusions 124 facilitate manual movement of the fixing bracket 12. Locking bolts in countersunk grooves 128 secure the power strip body 122 and the lamp body 123 to the fixing bracket 12. This design, through the coordination of multiple components, not only ensures the stability of the installation of the fixing frame 12 and prevents it from loosening and shifting during use, but also allows users to quickly adjust or disassemble the fixing frame 12. At the same time, the separated layout of the block 121 improves the integration of the equipment, which is compact and practical. The block 121 forms a physical isolation partition to avoid electromagnetic coupling interference between different functional modules; the ergonomic curved surface design of the protrusion 124 is adapted to finger gripping and combined with the hidden bolt fixation of the countersunk groove 128, modular rapid reorganization is achieved.
[0034] The conductive sheet 13 and spring clip 131 inside the socket body 1 form a U-shaped structure. Spring clip 131 has an inner concave surface 132 that mates with contact 125. The raised portion of spring clip 131 can only mate with one contact 125, meaning that only one of the socket body 122 and the lamp body 123 can be powered. To use the socket strip function, the mounting bracket 12 is moved so that the contact 125 of the socket body 122 aligns with the raised portion of spring clip 131. Spring clip 131 connects to the internal circuitry of the socket body 1. Contact 125 and spring clip 131 connect and conduct the circuit, energizing the socket body 122 while de-energizing the lamp body 123. Conversely, to use the lamp function, the mounting bracket 12 is moved so that the contact 125 of the lamp body 123 aligns with spring clip 131. This energizes the lamp body 123 and de-energizes the socket body 122. The sockets 11 on either side of the socket body 1 can be used independently, unaffected by the power status of the strip body 122 or the lamp body 123. The design of the inner concave surface 132 of the spring clip 131 and the contact 125 increases the contact area and tightness between the two, improving conductive stability, reducing contact resistance, and lowering the risk of heat generation. Furthermore, the structure of the inner concave surface 132 provides a certain positioning and guidance for the contact 125, allowing the contact 125 to more accurately mate with the spring clip 131 when the mounting bracket 12 is installed, ensuring reliable circuit connectivity.
[0035] When it is necessary to switch the circuit connection status of the lamp body 123 and the socket body 122, the pressure plate 21 at the top of the pressure rod 2 is pressed downward. The pressure rod 2 drives the synchronization plate 211 and the clamping rods 212 at both ends to move downward. The clamping rod 212 disengages from the clamping hole 222 of the clamping plate 221, releasing the limit on the fixed frame 12. At the same time, the rocker arm 31 connected to the bottom of the pressure rod 2 rotates as the pressure rod 2 moves downward, pushing the end slide bar 3 to slide horizontally. The slide bar 3 slides in the strip groove 134 of the pull plate 133 of the spring 131 and pulls the spring 131 to deform, so that the arch of the spring 131 is separated from the contact 125 of the currently energized module, cutting off the circuit. This mechanically linked power-off unlocking method ensures that the circuit is cut off first during the switching operation, avoiding the risk of electric shock or short circuit caused by live operation, ensuring user safety, and the operation process is smooth and coherent, without the need for complex tools, and lowering the threshold for use.
[0036] At this point, manually grasp the protrusion 124 and slide the mounting bracket 12 upward or downward along the center track 126 of the socket body 1, aligning the contacts 125 of the module to be powered (the lamp body 123 or the power strip body 122) with the raised portion of the spring 131. Once the position is confirmed to be correct, release the pressure plate 21. The pressure rod 2 returns to its original position under the action of the limit spring 233 on the fixing block 23, and the locking rod 212 reinserts into the locking hole 222 of the locking plate 221, securing the mounting bracket 12. Simultaneously, the rocker arm 31 and slide bar 3 return to their original position under the action of the guide spring 322, allowing the spring 131 to recover its shape and re-engage with the corresponding contact 125, completing the circuit and switching between the lamp or power strip. The guide rail 126 and spring return mechanism not only ensure the precise and stable movement of the mounting bracket 12, preventing misalignment, but also automatically locks the mounting bracket 12 after the switch is complete, ensuring a stable circuit connection.
Claims
1. A multifunctional socket lighting device, comprising a socket body (1), characterized in that: A fixing frame (12) is vertically plugged into the socket body (1), and a socket strip body (122) and a lamp body (123) are respectively mounted on the fixing frame (12), and circular contacts (125) are provided at the connection points of the socket strip body (122) and the lamp body (123), and a conductive sheet (13) is mounted inside the socket body (1), and an arched spring sheet (131) is mounted at the end of the conductive sheet (13), and an inner concave surface (132) is provided on the spring sheet (131), and the inner concave surface (132) and the contact (125) are adapted to each other; The socket body (1) is vertically mounted with a pressure rod (2), a side wall of the pressure rod (2) is mounted with a clamping rod (212), and the clamping rod (212) is clamped on a clamping plate (221) mounted on a side wall of the fixing frame (12) to limit the working positions of the socket body (122) and the lamp body (123); A rocker arm (31) is rotatably mounted on the bottom of the pressure rod (2), and a slide rod (3) is rotatably mounted on the end of the rocker arm (31). The slide rod (3) is in a horizontal sliding state, and the slide rod (3) slides and pulls the spring piece (131) to deform and separate from the contact (125).
2. A multifunctional socket lamp device according to claim 1, characterized in that: Sockets (11) are installed on both sides of the socket body (1), inner grooves (111) are provided at four corners of the socket body (1), mounting holes (112) are provided inside the inner grooves (111), bolts are passed through the mounting holes (112), and the mounting holes (112) are used to connect the socket body (1) to the wall.
3. The multifunctional socket lamp device according to claim 1, characterized in that: A plurality of pairs of blocks (121) are installed on the fixing frame (12), and the socket strip body (122) and the lamp body (123) are installed in the gaps between the connected blocks (121). The blocks (121) at the top and bottom are installed with protrusions (124), and the protrusions (124) facilitate the later movement of the fixing frame (12). The side wall of the fixing frame (12) is installed with a countersunk groove (128), and a locking bolt is screwed into the inside of the countersunk groove (128), and the locking bolt is correspondingly connected to the socket strip body (122) and the lamp body (123), and the end of the locking bolt is received in the inside of the countersunk groove (128).
4. The multifunctional socket lamp device according to claim 1, characterized in that: A track (126) is installed at the center of the socket body (1), the track (126) is slidably connected to the fixing frame (12), and a notch (127) is provided on the side wall of the track (126), the notch (127) is used to facilitate the contact (125) to slide along the track (126), and an installation cavity (135) is installed inside the socket body (1), and the conductive sheet (13) and the spring (131) are placed in the installation cavity (135).
5. The multifunctional socket lamp device according to claim 1, characterized in that: The spring piece (131) is interconnected with the circuit inside the socket body (1), and the spring piece (131) and the conductive piece (13) form a U shape. The arched position of the spring piece (131) is in contact with the side wall of the contact (125), and a pull plate (133) is installed on the spring piece (131). A strip groove (134) is provided inside the pull plate (133). The slide rod (3) is slidably arranged in the strip groove (134), and the slide rod (3) is made of insulating material.
6. The multifunctional socket lamp device according to claim 1, characterized in that: A pressing plate (21) is installed on the top of the pressing rod (2), the cross-sectional area of the pressing plate (21) is larger than the cross-sectional area of the pressing rod (2), a synchronizing plate (211) is installed on the pressing rod (2), and clamping rods (212) are installed at both ends of the synchronizing plate (211), and the clamping rods (212) are movable socket bodies (1).
7. The multifunctional socket lamp device according to claim 1, characterized in that: A connecting block (22) is mounted on the side wall of the fixing frame (12), a clamping plate (221) is mounted on the connecting block (22), a lower surface of the clamping plate (221) and the socket body (1) are on the same plane, and a clamping hole (222) is provided on the clamping plate (221), and the clamping hole (222) and the clamping rod (212) are plugged into each other.
8. The multifunctional socket lamp device according to claim 1, characterized in that: A fixed block (23) is installed at the end of the pressure rod (2), and a slide plate (231) is installed on the side wall of the fixed block (23). A limit rod (232) is provided inside the slide plate (231) so as to be movable and pass through. Both ends of the limit rod (232) are installed inside the socket body (1). A limit spring (233) is sleeved on the limit rod (232), and one end of the limit spring (233) is clamped on the side wall of the slide plate (231), and the other end of the limit spring (233) is clamped on the socket body (1).
9. The multifunctional socket lamp device according to claim 8, characterized in that: The side wall of the fixed block (23) is rotatably connected to the rocker arm (31), and the rocker arm (31) is in an inclined state. A support (311) is installed at the bottom of the socket body (1), and the support (311) corresponds to the bottom of the fixed block (23). The support (311) is used to limit the maximum sliding stroke of the fixed block (23).
10. The multifunctional socket lamp device according to claim 1, characterized in that: A slider (32) is installed at the center of the slide rod (3), and a guide rod (321) is provided inside the slider (32) for movement and penetration. One end of the guide rod (321) is connected to the socket body (1), and the other end of the guide rod (321) is provided with a guide plate (323) for preventing slipping. A guide spring (322) is sleeved on the guide rod (321), and one end of the guide spring (322) is clamped on the side wall of the socket body (1), and the other end of the guide spring (322) is clamped on the side wall of the slider (32).