High-altitude suspension lighting device
By designing rotatable suspension components and power connection methods, the safety hazards and time wastage issues in the maintenance of high-altitude suspended lighting devices have been resolved, enabling safe and efficient lamp replacement and maintenance.
Patent Information
- Application Number
- CN202520248768.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-17
AI Technical Summary
The maintenance of high-altitude suspended lighting devices poses safety hazards and is time-consuming.
A high-altitude suspended lighting device was designed. The device is mounted on a top frame by rotating the suspension assembly. The conductive ends of the plug and socket are energized or de-energized during rotation. The lamps are removed or suspended by using a hanging rod or by rotating the rotating part, thus avoiding manual high-altitude operations.
It enables safe and efficient replacement or maintenance of lighting fixtures, reducing the risks and time costs of working at heights.
Smart Images

Figure CN223677737U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lighting field especially, it is high altitude suspension lighting device. BACKGROUND
[0002] Install the light illumination in the factory building roof, usually factory building is higher than single -story house, and factory building breathability is good, that is to have the smooth airflow, make factory building inside dust reduces, like this in the change of four seasons, air pressure and temperature also can change, and the light in high altitude suspension is easy to damage, artificial ladder maintenance has the security risk, also relatively waste time. CONTENT OF THE UTILITY MODEL
[0003] The utility model aims at providing a high altitude suspension lighting device, solve the problem that high altitude suspension lighting device maintenance has danger.
[0004] In order to achieve the above-mentioned purpose, the utility model adopts the technical scheme that:
[0005] The utility model provides a high altitude suspension lighting device, including top frame, suspension assembly, hanging rod and power supply component,
[0006] The suspension assembly rotation is arranged on the top frame, the suspension assembly is used for suspending the light, and the hanging rod is used for supporting or moving the suspension assembly.
[0007] The suspension assembly includes a rotating rod and a rotating part, the rotating rod is lapped on the top frame, and the rotating part is connected with the rotating rod.
[0008] The power supply component includes a plug and a socket, the socket is electrically connected with the power supply, the plug is arranged on the suspension assembly, the socket is arranged on the top frame, the conductive end of the socket is located on the power-on rotation path of the plug, and the plug is electrically connected with the light.
[0009] When the light needs to be removed or suspended, the hanging rod is used for supporting the rotating rod to rise or fall, and when the light needs to be powered on or powered off, the hanging rod is used for moving the rotating part to rotate.
[0010] Optionally, the top frame includes a horizontal rod, the first vertical rod and the second vertical rod are arranged on the horizontal rod in an insulating mode, the socket includes a live wire seat and a zero line seat, the live wire seat is arranged on the first vertical rod, and the zero line seat is arranged on the second vertical rod.
[0011] Further, the top frame includes a first vertical plate and a second vertical plate, the horizontal rod is connected with the first vertical plate and the second vertical plate at both ends respectively, the first vertical plate has a first supporting plate at the bottom, the second vertical plate has a second supporting plate at the bottom, and the rotating rod is lapped on the first supporting plate and the second supporting plate.
[0012] Further, the first supporting plate is provided with a first limiting slot, and the second supporting plate is provided with a second limiting slot, and the rotating rod is located in the first limiting slot and the second limiting slot.
[0013] Further, the first supporting plate is provided with a first guiding block and a second guiding block, the first limiting slot is located between the first guiding block and the second guiding block, the first guiding block is provided with a first inclined surface, the second guiding block is provided with a second inclined surface, the first inclined surface is mirror-imaged with the second inclined surface, and the width of the upper part between the first inclined surface and the second inclined surface is greater than the width of the lower part.
[0014] Further, the second supporting plate is provided with a third guiding block and a fourth guiding block, the second limiting slot is located between the third guiding block and the fourth guiding block, the third guiding block is provided with a third inclined surface, the fourth guiding block is provided with a fourth inclined surface, the third inclined surface is mirror-imaged with the fourth guiding block, and the width of the upper part between the third inclined surface and the fourth inclined surface is greater than the width of the lower part.
[0015] Further, the suspension assembly further comprises an insulated first inserting rod and a second inserting rod, the first inserting rod and the second inserting rod are arranged on the rotating rod, the plug comprises a first electrically-conductive column and a second electrically-conductive column, the first electrically-conductive column is arranged on the first inserting rod, and the second electrically-conductive column is arranged on the second inserting rod.
[0016] Further, the first inserting rod is provided with a first positioning column at the top, the first electrically-conductive column is provided with a first positioning hole at the bottom, the first positioning hole is sleeved on the first positioning column, the second inserting rod is provided with a second positioning column at the top, and the second electrically-conductive column is provided with a second positioning hole at the bottom, the second positioning hole is sleeved on the second positioning column.
[0017] Further, the first electrically-conductive column is provided with a first electrically-conductive sheet, the second electrically-conductive column is provided with a second electrically-conductive sheet, the live wire seat is provided with a first interface, the zero wire seat is provided with a second interface, the first interface matches the shape of the first electrically-conductive sheet, the second interface matches the shape of the second electrically-conductive sheet, the first interface is arranged in a manner of blocking the rotation of the first electrically-conductive sheet, and the second interface is arranged in a manner of blocking the rotation of the second electrically-conductive sheet.
[0018] Optionally, the hanging rod is provided with a first hook, the first hook is located at the side end of the hanging rod, the opening of the first hook faces upward, the outer periphery of the first hook is further provided with a second hook, the opening of the second hook faces downward, the first hook is used for supporting the upward movement or the downward movement of the rotating rod, and the second hook is used for rotating the rotating part.
[0019] Compared with the prior art, the high-altitude suspension lighting device has the following advantages:
[0020] The high-altitude suspension lighting device has the following advantages: BRIEF DESCRIPTION OF DRAWINGS
[0021] Some specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. The same reference signs in the drawings represent the same or similar components or parts. Those skilled in the art should understand that the drawings are not necessarily drawn to scale. In the drawings:
[0022] Figure 1 is a perspective view of a high-altitude suspension lighting device according to an embodiment of the present application;
[0023] Figure 2 is Figure 1 is a perspective view of a top frame;
[0024] Figure 3 is Figure 1 is a perspective view of a suspension assembly;
[0025] Figure 4 is a perspective view of a plug;
[0026] Figure 5 is a detailed view of a hanging rod.
[0027] In the drawings, the reference signs are explained as follows:
[0028] 1, top frame; 2, hanging assembly; 3, hanging rod; 4, power supply assembly; 5, lamp; 6, power supply; 10, cross rod; 11, first vertical plate; 12, second vertical plate; 13, first supporting plate; 14, second supporting plate; 15, first limiting groove; 16, second limiting groove; 21, rotating rod; 22, rotating part; 23, first inserting rod; 24, second inserting rod; 25, first limiting shaft; 26, second limiting shaft; 31, first hook; 32, second hook; 33, first hanging opening; 34, second hanging opening; 41, plug; 42, socket; 101, first vertical rod; 102, second vertical rod; 103, first channel; 104, second channel; 131, first guide block; 132, second guide block; 133, first inclined surface; 134, second inclined surface; 141, third guide block; 142, fourth guide block; 143, third inclined surface; 144, fourth inclined surface; 221, first frame body; 222, second frame body; 231, first positioning column; 241, second positioning column; 411, first power connection column; 412, second power connection column; 413, first positioning hole; 414, second positioning hole; 415, first conductive sheet; 416, second conductive sheet; 421, live wire seat; 422, neutral wire seat; 423, first interface; 424, second interface. DETAILED DESCRIPTION
[0029] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0030] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0031] In addition, the technical features involved in the different embodiments of the present application described below can be combined with each other as long as there is no conflict between them.
[0032] For example, Figure 1 And Figure 2 And Figure 3As shown, a high-altitude suspension lighting device includes a top frame 1, a suspension assembly 2, a hanging rod 3 and a power supply assembly 4, the suspension assembly 2 is rotationally arranged on the top frame 1, the suspension assembly 2 is used for suspending a lamp 5, and the hanging rod 3 is used for supporting or rotating the suspension assembly 2.
[0033] The suspension assembly 2 includes a rotating rod 21 and a rotating part 22, the lamp 5 is suspended on the rotating rod 21 through a chain, the rotating rod 21 is lapped on the top frame 1 and can rotate on the top frame 1, the rotating part 22 is connected with the rotating rod 21 and can rotate around the rotating rod 21, and the rotating part 22 is rotated to rotate the rotating part 22 and the rotating rod 21 together.
[0034] The power supply assembly 4 includes a plug 41 and a socket 42, the socket 42 is electrically connected with a power supply 6, the socket 42 is connected with the power supply 6 through a wire, the socket 42 is arranged on the top frame 1, the plug 41 is arranged on the suspension assembly 2, so that the plug 41 can rotate with the suspension assembly 2, a conductive end of the socket 42 is located in a rotating path of an electric connection end of the plug 41, so that the electric connection end of the plug 41 and the conductive end of the socket 42 can realize power-on or power-off, the plug 41 is electrically connected with the lamp 5, and the lamp 5 can be powered on after the plug 41 is powered on.
[0035] When the lamp 5 needs to be removed or suspended, the hanging rod 3 is used for supporting the rotating rod 21 to rise or fall, and the lamp 5 rises or falls with the rotating rod 21, when the lamp needs to be powered on or powered off, the hanging rod 3 is used for rotating the rotating part 22, the rotating part 22 is rotated to drive the plug 41 to rotate, so that the electric connection end of the plug 41 and the conductive end of the socket 42 can realize power-on or power-off.
[0036] The top frame 1 includes a horizontal rod 10, the horizontal rod 10 is insulatively provided with a first vertical rod 101 and a second vertical rod 102, the first vertical rod 101 and the second vertical rod 102 are arranged side by side, the socket 42 includes a live wire socket 421 and a zero line socket 422, the live wire socket 421 is arranged on the first vertical rod 101, and the zero line socket 422 is arranged on the second vertical rod 102, so that the insulative first vertical rod 101 and the second vertical rod 102 can prevent electric shock accidents.
[0037] The first vertical rod 101 is provided with a first channel 103, and the second vertical rod 102 is provided with a second channel 104, and the first channel 103 and the second channel 104 are respectively used for penetrating the wire.
[0038] The top frame 1 further comprises a first vertical plate 11 and a second vertical plate 12, the cross bar 10 is connected to the first vertical plate 11 and the second vertical plate 12 at two ends respectively, the first vertical bar 101 and the second vertical bar 102 are located between the first vertical plate 11 and the second vertical plate 12, the first vertical plate 11 is provided with a first supporting plate 13 at the bottom, the second vertical plate 12 is provided with a second supporting plate 14 at the bottom, the first supporting plate 13 is located at the side of the first vertical plate 11, the second supporting plate 14 is located at the side of the second vertical plate 12, and the rotating bar 21 is used for being overlapped on the first supporting plate 13 and the second supporting plate 14, so that the first vertical bar 101 and the second vertical bar 102 are not directly above the rotating bar 21.
[0039] The first supporting plate 13 is provided with a first limiting groove 15, the second supporting plate 14 is provided with a second limiting groove 16, and the rotating bar 21 is used for being placed into the first limiting groove 15 and the second limiting groove 16, so that the rotating bar 21 is not easy to fall off from the first supporting plate 13 and the second supporting plate 14.
[0040] The first supporting plate 13 is provided with a first guiding block 131 and a second guiding block 132, and the first limiting groove 15 is located between the first guiding block 131 and the second guiding block 132, so that when the hanging bar 3 lifts up the rotating bar 21, the rotating bar 21 is easy to fall between the first guiding block 131 and the second guiding block 132, and further, the rotating bar 21 is easy to fall into the first limiting groove 15.
[0041] The first guiding block 131 is provided with a first inclined surface 133, the second guiding block 132 is provided with a second inclined surface 134, the first inclined surface 133 and the second inclined surface 134 are mirror image arranged, the first limiting groove 15 is located at the bottom between the first inclined surface 133 and the second inclined surface 134, and the width of the upper part between the first inclined surface 133 and the second inclined surface 134 is greater than that of the lower part, that is, the distance between the first inclined surface 133 and the second inclined surface 134 extends upward in an expanding state, and an opening is formed between the first inclined surface 133 and the second inclined surface 134, when the hanging bar 3 lifts up the rotating bar 21, if the rotating bar 21 falls on the first inclined surface 133 or the second inclined surface 134, the rotating bar 21 will roll down from the first inclined surface 133 or the second inclined surface 134, and the rotating bar 21 will still roll into the first limiting groove 15.
[0042] The second supporting plate 14 is provided with a third guiding block 141 and a fourth guiding block 142, and the second limiting groove 16 is located between the third guiding block 141 and the fourth guiding block 142, so that when the hanging bar 3 lifts up the rotating bar 21, the rotating bar 21 is easy to fall between the third guiding block 141 and the fourth guiding block 142, and further, the rotating bar 21 is easy to fall into the second limiting groove 16.
[0043] The third guide block 141 has a third inclined surface 143, the fourth guide block 142 has a fourth inclined surface 144, the third inclined surface 143 is mirror arranged with the fourth guide block 142, and the width of the upper part between the third inclined surface 143 and the fourth inclined surface 144 is greater than the width of the lower part, the distance between the third inclined surface 143 and the fourth inclined surface 144 extends upward in an expanding state, and an opening is formed between the third inclined surface 143 and the fourth inclined surface 144. When the hanging rod 3 lifts the rotating rod 21 upward, if the rotating rod 21 falls onto the third inclined surface 143 or the fourth inclined surface 144, the rotating rod 21 will roll off the third inclined surface 143 or the fourth inclined surface 144, and the rotating rod 21 will still roll into the second limiting groove 16.
[0044] The rotating rod 21 is further provided with a first limiting shaft 25 and a second limiting shaft 26. When the rotating rod 21 is in the first limiting groove 15 and the second limiting groove 16, the first limiting shaft 25 is close to the first supporting plate 13, and the second limiting shaft 26 is close to the second limiting groove 16. In this way, the moving distance of the rotating rod 21 in the first limiting groove 15 and the second limiting groove 16 is limited, and the rotating rod 21 always stays in the first limiting groove 15 and the second limiting groove 16, and the rotating rod 21 will not fall out of the first limiting groove 15 and the second limiting groove 16.
[0045] As shown in Figure 3 and Figure 4 , the hanging assembly 2 further comprises an insulated first plug rod 23 and a second plug rod 24, the first plug rod 23 and the second plug rod 24 are arranged on the rotating rod 21, the plug 41 comprises a first power column 411 and a second power column 412, the first power column 411 is arranged on the first plug rod 23, and the second power column 412 is arranged on the second plug rod 24. The first plug rod 23 and the second plug rod 24 rotate with the rotating rod 21, the first power column 411 rotates with the first plug rod 23, the second power column 412 rotates with the second plug rod 24, the live wire seat 421 is on the rotating path of the first power column 411, and the first power column 411 and the live wire seat 421 can realize power-on or power-off. The neutral wire seat 422 is on the rotating path of the second power column 412, and the second power column 412 and the neutral wire seat 422 can realize power-on or power-off.
[0046] The first plug rod 23 has a first positioning column 231 at the top, the first power column 411 has a first positioning hole 413 at the bottom, the first positioning hole 413 is sleeved on the first positioning column 231, the second plug rod 24 has a second positioning column 241 at the top, the second power column 412 has a second positioning hole 414 at the bottom, and the second positioning hole 414 is sleeved on the second positioning column 241. The first power column 411 and the first positioning column 231 are connected by screws, and the second power column 412 and the second positioning column 241 are also connected by screws.
[0047] A first conductive piece 415 is provided on the first terminal post 411, a second conductive piece 416 is provided on the second terminal post 412, a first interface 423 is provided on the live wire socket 421, and a second interface 424 is provided on the neutral wire socket 422. The first interface 423 matches the shape of the first conductive piece 415. When the first conductive piece 415 rotates with the first terminal post 411, the first conductive piece 415 can be locked in the first interface 423, and the first interface 423 is set in a way that prevents the first conductive piece 415 from continuing to rotate.
[0048] The second interface 424 matches the shape of the second conductive piece 416. When the second conductive piece 416 rotates with the second terminal post 412, the second conductive piece 416 can be engaged in the second interface 424. The second interface 424 is configured to prevent the second conductive piece 416 from continuing to rotate.
[0049] The first conductive sheet 415 and the second conductive sheet 416 rotate synchronously. When the first conductive sheet 415 is engaged in the first interface 423 and the second conductive sheet 416 is engaged in the second interface 424, the lamp 5 is powered on. When the first conductive sheet 415 is separated from the first interface 423 and the second conductive sheet 416 is separated from the second interface 424, the lamp 5 is powered off.
[0050] In this example, the rotating part 22 includes a first frame 221 and a second frame 222, so that when the second hook 32 moves the first frame 221 or the second frame 222, the first frame 221 or the second frame 222 is not easily dislodged from the second hook opening 34.
[0051] like Figure 5 As shown, a first hook 31 is provided on the hanging rod 3. The first hook 31 is located on the upper side of the hanging rod 3. The first opening 33 of the first hook 31 faces upward. The first hook 31 is used to support the rotating rod 21 to rise or fall. The rotating rod 21 is locked in the first opening 33. A second hook 32 is also provided on the outer periphery of the first hook 31. The second hook opening 34 of the second hook 32 faces downward. The second hook 32 is used to rotate the rotating part 22. The rotating part 22 is locked in the second hook opening 34.
[0052] The hanging rod 3 can be set to multiple rods of different lengths or multiple rods of the same length. Multiple hanging rods 3 can be spliced together to increase the length. Depending on the height at which the light fixture is to be hung, hanging rods 3 of different lengths can be selected and spliced together.
[0053] The above embodiments are only for illustrating the technical concept and features of this utility model. Their purpose is to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be used to limit the protection scope of this utility model. All equivalent changes or modifications made in accordance with the spirit and essence of this utility model should be included within the protection scope of this utility model.
Claims
1. A high-altitude suspension lighting device, comprising a top frame (1), a suspension assembly (2), a hanging rod (3) and a power supply assembly (4), characterized in that, the suspension assembly (2) is rotatably arranged on the top frame (1), the suspension assembly (2) is used for suspending a lamp, and the hanging rod (3) is used for supporting or pushing the suspension assembly (2); the suspension assembly (2) comprises a rotating rod (21) and a rotating part (22), the rotating rod (21) is overlapped on the top frame (1), and the rotating part (22) is connected with the rotating rod (21); the power supply assembly (4) comprises a plug (41) and a socket (42), the socket (42) is electrically connected with a power supply, the plug (41) is arranged on the suspension assembly (2), the socket (42) is arranged on the top frame (1), a conductive end of the socket (42) is located on a rotating path of an electrical connection end of the plug (41), and the plug (41) is electrically connected with a lamp. When the lamp needs to be removed or suspended, the hanging rod (3) is used for supporting the rotating rod (21) to rise or fall, and when the lamp needs to be powered on or off, the hanging rod (3) is used for pushing the rotating part (22) to rotate.
2. The overhead lighting device according to claim 1, wherein The top frame (1) comprises a cross rod (10), the cross rod (10) is provided with a first vertical rod (101) and a second vertical rod (102) in an insulating manner, the socket (42) comprises a live wire seat (421) and a zero line seat (422), the live wire seat (421) is arranged on the first vertical rod (101), and the zero line seat (422) is arranged on the second vertical rod (102).
3. The overhead lighting device of claim 2, wherein, The top frame (1) further comprises a first vertical plate (11) and a second vertical plate (12), two ends of the cross rod (10) are connected with the first vertical plate (11) and the second vertical plate (12) respectively, the first vertical plate (11) has a first supporting plate (13) at a bottom portion, the second vertical plate (12) has a second supporting plate (14) at a bottom portion, and the rotating rod (21) is used for overlapping on the first supporting plate (13) and the second supporting plate (14).
4. The overhead lighting device of claim 3, wherein, The first supporting plate (13) is provided with a first limiting groove (15), the second supporting plate (14) is provided with a second limiting groove (16), and the rotating rod (21) is used for being placed into the first limiting groove (15) and the second limiting groove (16).
5. The overhead lighting device of claim 4, wherein, The first supporting plate (13) is provided with a first guide block (131) and a second guide block (132), the first limiting groove (15) is located between the first guide block (131) and the second guide block (132), the first guide block (131) has a first inclined surface (133), the second guide block (132) has a second inclined surface (134), the first inclined surface (133) and the second inclined surface (134) are arranged in a mirror image, and the width of the first inclined surface (133) and the second inclined surface (134) at an upper portion is greater than that at a lower portion.
6. The overhead lighting device of claim 4, wherein, The second supporting plate (14) is provided with a third guide block (141) and a fourth guide block (142), the second limiting groove (16) is located between the third guide block (141) and the fourth guide block (142), the third guide block (141) has a third inclined surface (143), the fourth guide block (142) has a fourth inclined surface (144), the third inclined surface (143) is mirror-imaged with the fourth guide block (142), and the width of the upper part between the third inclined surface (143) and the fourth inclined surface (144) is greater than the width of the lower part.
7. The overhead lighting device of claim 2, wherein, The suspension assembly (2) further comprises an insulated first inserting rod (23) and a second inserting rod (24), the first inserting rod (23) and the second inserting rod (24) are arranged on the rotating rod (21), the plug (41) comprises a first power connection column (411) and a second power connection column (412), the first power connection column (411) is arranged on the first inserting rod (23), and the second power connection column (412) is arranged on the second inserting rod (24).
8. The overhead lighting device of claim 7, wherein, The first inserting rod (23) is provided with a first positioning column (231) at the top, the first power connection column (411) is provided with a first positioning hole (413) at the bottom, the first positioning hole (413) is sleeved on the first positioning column (231), the second inserting rod (24) is provided with a second positioning column (241) at the top, and the second power connection column (412) is provided with a second positioning hole (414) at the bottom, the second positioning hole (414) is sleeved on the second positioning column (241).
9. The overhead lighting device of claim 8, wherein, The first power connection column (411) is provided with a first conductive sheet (415), the second power connection column (412) is provided with a second conductive sheet (416), the live wire seat (421) is provided with a first interface (423), the zero line seat (422) is provided with a second interface (424), the first interface (423) matches the shape of the first conductive sheet (415), the second interface (424) matches the shape of the second conductive sheet (416), the first interface (423) is arranged in a manner of blocking the first conductive sheet (415) from continuing to rotate, and the second interface (424) is arranged in a manner of blocking the second conductive sheet (416) from continuing to rotate.
10. The overhead lighting device of claim 1, wherein, The hanging rod (3) is provided with a first hook (31), the first hook (31) is located at the upper side end of the hanging rod (3), the first hook direction of the first hook (31) is upward, the outer periphery of the first hook (31) is further provided with a second hook (32), the second hook direction of the second hook (32) is downward, the first hook (31) is used for supporting the rotating rod (21) to ascend or descend, and the second hook (32) is used for driving the rotating part (22) to rotate.