Modular lamp
11349270 · 2022-05-31
Assignee
Inventors
Cpc classification
F21V29/763
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R33/94
ELECTRICITY
F21S2/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R35/00
ELECTRICITY
H01R31/06
ELECTRICITY
H01R13/52
ELECTRICITY
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R13/62
ELECTRICITY
H01R35/04
ELECTRICITY
F21V21/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R13/5202
ELECTRICITY
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
H01R13/52
ELECTRICITY
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R13/62
ELECTRICITY
H01R35/00
ELECTRICITY
F21V21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R33/94
ELECTRICITY
Abstract
The present invention discloses a modular lamp, including several modular units and lamp connectors, where the modular unit is a single lamp, and the lamp connector is configured to connect to the modular unit; and a male connector terminal on either side of each lamp connector is electrically plug-connected to a female connector terminal of one modular unit. In the present invention, female connector terminals connected to a power cable and a control cable are disposed on the modular unit, matched male connector terminals are disposed on the lamp connector, and the lamp connector is directly plug-connected to multiple modular units, so that the multiple modular units can be simultaneously physically and electrically connected to obtain the modular lamp. In this way, diversified lighting requirements can be met by adding different installation accessories to the modules. In addition, assembly operations can be completed by simply performing plugging and unplugging operations, without needing a professional to perform cable-connection and cable-routing between the modular units. Special scenario requirements such as good lighting effects and high ambient temperatures can be met by adjusting module power.
Claims
1. A modular lamp, comprising several modular units and lamp connectors, wherein each modular unit is a single lamp, and each lamp connector is configured to connect the modular units; each modular unit comprises a lamp housing, a power supply drive, a power cable, a control cable, female connector terminals, and an LED lamp bead plate; the power cable is connected to an external power supply; the power cable, the power supply drive, and the LED lamp bead plate are sequentially electrically connected to implement lighting; the power supply drive and the LED lamp bead plate are built in the lamp housing; a female receptacle for accommodating each female connector terminal is disposed on either side of the back of each modular unit, one female connector terminal is disposed in each female receptacle; the female connector terminals are configured to connect to different lamp connectors; each female connector terminal comprises a power cable terminal and a control cable terminal; the power cable terminal is connected to the power cable, and the control cable terminal is connected to the control cable; each lamp connector comprises a connector body, a power cable, a control cable, and male connector terminals; the male connector terminals match the female connector terminals of each modular unit; a male receptacle for accommodating each male connector terminal is disposed on either side of the connector body, one male connector terminal is disposed in each male receptacle; the male connector terminals are configured to enable the connector body to connect to two modular units simultaneously; each male connector terminal comprises a power cable terminal and a control cable terminal; two ends of the power cable are respectively connected to two power cable terminals, and two ends of the control cable are respectively connected to two control cable terminals; and the male connector terminals on either side of each lamp connector are electrically plug-connected to the female connector terminals of each modular unit.
2. The modular lamp according to claim 1, wherein each modular unit further comprises a power adjustment controller, the power adjustment controller is connected to the power supply drive by using the control cable, and is configured to adjust power of the LED lamp bead plate; the power adjustment controller is built in the lamp housing, and an adjustment potentiometer of the power adjustment controller leads to a side portion of the female connector terminal on one side, and is located in the female receptacle on the one side.
3. The modular lamp according to claim 2, wherein each modular unit further comprises a female terminal fastener, the female terminal fastener is fastened in the female receptacle, and both the female connector terminal and the adjustment potentiometer are fastened on the female terminal fastener.
4. The modular lamp according to claim 3, wherein a first positioning rod is further disposed in the female receptacle, a first positioning hole is disposed on the female terminal fastener, and the female terminal fastener is fastened in the female receptacle via the first positioning hole.
5. The modular lamp according to claim 1, wherein each modular unit further comprises a lens, and the lens is fastened above the LED lamp bead plate.
6. The modular lamp according to claim 1, wherein a fastening bolt hole is further disposed on a side portion of the female receptacle.
7. The modular lamp according to claim 6, wherein several guide holes are further disposed on the connector body, and fastening bolts for fastening to the modular units are disposed in the guide holes.
8. The modular lamp according to claim 1, wherein the connector body comprises a first body and a second body, one male connector terminal is disposed on each of the first body and the second body, and the first body and the second body are rotatably connected.
9. The modular lamp according to claim 8, wherein an inside portion of the second body has a cylindrical surface, and an inside portion of the first body has an arc surface adapted to fit the cylindrical surface to rotate; a sleeve groove with a cylindrical surface is further disposed on the inside portion of the second body, an arc-shaped sleeve portion is further disposed on the inside portion of the first body, and the sleeve portion is adapted to fit the sleeve groove to rotate; and an adjustable bolt hole for installing an adjustable bolt is disposed on the sleeve groove, a bolt sliding groove is disposed on the sleeve portion, and the first body and the second body are rotatably fit and are fastened together or released from each other by using the adjustable bolt.
10. The modular lamp according to claim 9, wherein anti-slip stripes at a specific interval are disposed on the periphery of the bolt sliding groove on the sleeve portion.
11. The modular lamp according to claim 10, wherein several angle label stripes are further disposed on the sleeve portion, the angle label stripes are located on the outside of the anti-slip stripes, there is a constant angular distance between the angle label stripes, reference stripes are further disposed on the second body, and the reference stripes are disposed on side portions of the angle label stripes.
12. The modular lamp according to claim 8, wherein each lamp connector further comprises a waterproof stopper, the waterproof stopper is of an integrally molded structure, one end of the waterproof stopper is connected to an end portion of the first body, and the other end of the waterproof stopper is connected to an end portion of the second body.
13. The modular lamp according to claim 12, wherein each lamp connector further comprises stopper bolts, one end of the waterproof stopper is connected to the end portion of the first body by using one stopper bolt, the other end of the waterproof stopper is connected to the end portion of the second body by using another stopper bolt, and the waterproof stopper and the second body are rotatably connected by tightening or loosening the stopper bolt.
14. The modular lamp according to claim 1, wherein each lamp connector further comprises a male terminal fastener, the male terminal fastener is disposed in the male receptacle, and the male connector terminal is fastened on the male terminal fastener.
15. The modular lamp according to claim 14, wherein a second positioning rod is further disposed in the male receptacle, a second positioning hole for fitting the second positioning rod is disposed on the male terminal fastener, and the male terminal fastener is installed in the male receptacle via the second positioning hole.
Description
BRIEF DESCRIPTION OF DRAWINGS
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(22) In the figures: 10. Modular unit; 11. Lamp housing; 111. Female receptacle; 112. First positioning rod; 113. Fastening bolt hole; 12. Power supply drive; 13. Female connector terminal; 14. LED lamp bead plate; 15. Power control controller; 151. Adjustment potentiometer; 16. Lens; 17. Female terminal fastener; 171. First positioning hole; 20. Lamp connector; 21. Connector body; 211. First body; 2111. Sleeve portion; 2112. Bolt sliding groove; 2113. Anti-slip stripe; 2114. Angle label stripe; 212. Second body; 2121. Sleeve groove; 2122. Adjustable bolt hole. 2123. Reference stripe; 213. Second positioning rod; 214. Male receptacle; 22. Male connector terminal; 23. Male terminal fastener; 231. Second positioning hole; 24. Adjustable bolt; 25. Waterproof stopper; 26. Stopper bolt; 27. Fastening bolt; 30. External power cable; 40. External control cable; 50. Sealing cover.
DESCRIPTION OF EMBODIMENTS
(23) The following further describes the present invention with reference to the accompanying drawings and specific implementations. It should be noted that, the following described embodiments or technical features may be randomly combined to constitute new embodiments provided that they do not conflict with each other.
(24) The present invention discloses a modular lamp. Referring to
(25) Referring to
(26) Referring to
(27) A connection relationship between the modular unit 10 and the lamp connector 20 is as follows: Referring to
(28)
(29) Specifically, the modular unit 10 provided in the present invention further has a power adjustment function. Referring to
(30) Specifically, referring to
(31) Specifically, referring to
(32) Specifically, referring to
(33) Specifically, referring to
(34) Specifically, for the lamp connector 20, referring to
(35) More specifically, in this embodiment, an inside portion of the second body 212 has a cylindrical surface, and an inside portion of the first body 211 has an arc surface adapted to fit the cylindrical surface to rotate. In addition, a sleeve groove 2121 with a cylindrical surface is disposed on the inside portion of the second body 212, the sleeve groove 2121 is of a groove structure, an arc-shaped sleeve portion 2111 is disposed on the inside portion of the first body 211, the sleeve portion 2111 is of an outward protruding structure, and the sleeve portion 2111 and the sleeve groove 2121 are adapted to fit each other to rotate. Therefore, by using the structure, the first body 211 and the second body 212 can fit each other to rotate relatively. In addition, the sleeve groove 2121 is provided with an adjustable bolt hole 2122 for installing an adjustable bolt 24, the sleeve portion 2111 is provided with a bolt sliding groove 2112, and the first body 211 and the second body 212 are fastened or released from each other by using the adjustable bolt 24.
(36) A rotation function of the lamp connector 20 can be implemented by using the foregoing structure. An angle between different lamps can be flexibly adjusted by adjusting the lamp connector through rotation, to change a lighting range of the entire modular lamp, that is, expand the lighting range, or narrow the lighting range to enhance light concentration. Referring to
(37) Certainly, the foregoing rotation structure embodiment is merely one of rotatable connection manners. Alternatively, rotation can be implemented by co-disposing a central rotation shaft in the first body 211 and the second body 212, or rotation can be implemented by disposing a component such as a hinge between the first body 211 and the second body 212. Any structure commonly used in the mechanical field to equivalently replace the rotation structure in this embodiment falls within the protection scope of the present invention provided that the same technical effect is achieved.
(38) Specifically, referring to
(39) Specifically, referring to
(40) In an embodiment, there are six angle label stripes 2114, and an angular distance between the angle label stripes 2114 is 10°. When the rotation angle of the connector is 0°, the reference stripe 2123 is aligned with the first angle label stripe 2114 counting from top to bottom. After the connector is rotated, if the reference stripe 2123 is aligned with the third angle label stripe 2114 in this case, the rotation angle is 10°*(3−1)=20°, and so on.
(41) Certainly, both the quantity of angle label stripes 2114 and a value of the angular distance can be changed, and any adjustment made based on an actual requirement falls within the protection scope of the present invention.
(42) Specifically, referring to
(43) More specifically, referring to
(44) Specifically, referring to
(45) More specifically, the lamp connector 20 further includes stopper bolts 26. One end of the waterproof stopper 25 is connected to the end portion of the first body 211 by using one stopper bolt 26; and the other end of the waterproof stopper 25 is connected to the end portion of the second body 212 by using another stopper bolt 26, and the waterproof stopper 25 and the second body 212 are rotatably connected by tightening or loosening the another stopper bolt 26. In other words, when the rotation angle of the lamp connector 20 is adjusted, the stopper bolt 26 at the second body 212 is loosened, to enable the waterproof stopper 25 to rotate relative to the second body 212. After the rotation angle is adjusted, the stopper bolt 26 is tightened again to fasten both ends of the waterproof stopper 25.
(46) Specifically, referring to
(47) When the lamp connector 20 is in use, first the rotation angle of the lamp connector 20 is adjusted; then the male connector terminals 22 on both ends of the lamp connector 20 are plug-connected to the female connector terminals 13 of the modular units 10; and finally the lamp connector 20 and the modular units 10 are fastened by using the fastening bolts 27 to implement connection between the modular units 10. Based on different use requirements, various modular lamps with different power can be constituted by selecting a corresponding quantity of modular units 10 and lamp connectors 20.
(48) In addition, each of two male connector terminals 22 of each lamp connector 20 is connected to one of the female connector terminals 13 of the modular unit 10 on either side. It can be understood that in the entire modular lamp, left female connector terminals of the leftmost modular unit 10 and right female connector terminals of the rightmost modular unit 10 are always not connected to the lamp connector 20, and are in a non-connected state. To ensure the overall waterproof performance of the module, a sealing cover 50 can be fastened on the two female connector terminals, so that the two non-connected female connector terminals are also sealed.
(49) Based on the detailed descriptions of the foregoing embodiments, it can be understood that in the present invention, direct plug-connection to a lamp is implemented through matching between male connector terminals and female connector terminals, so that both physical connection and electrical connection between multiple lamps can be implemented, and multiple light modules with different power are formed to meet diversified lighting requirements.
(50) The technical effects of the present invention include at least the following: (1) Assembly operations can be completed by simply performing plugging and unplugging operations, without needing a professional to perform cable-connection and cable-routing between the lamps. Therefore, the operations are simple and quick, an ordinary consumer can also fast complete the operations without needing any professional knowledge, and labor costs of hiring a professional for cable-connection are greatly reduced. In addition, cable-connection does not need to be completed for a modular lamp in advance anymore, and it is only necessary to send the lamp and the connector in the present invention to an installation site, to perform on-site assembly based on an actual situation. When a lighting requirement changes, the quantity of lamps can be increased or decreased to meet the requirement, thereby improving universality and use experience. (2) In addition, the lamp connector has the rotation function, so that an angle between the lamps can be adjusted flexibly, to expand a lighting range of the entire module, or to narrow the lighting range to enhance light concentration, thereby meeting more diversified lighting requirements. (3) Power of each modular unit can be adjusted by a user based on a use requirement, and therefore overall power of the modular lamp can be adjusted in a larger range. After a customer buys the modular lamp, if the customer has different requirements on ambient temperatures and lighting effects in different usage scenarios, requirements for good lighting effects and high ambient temperatures can be met through power adjustment. (4) The overall sealing performance and waterproof performance are good.
(51) As an extension, the modular lamp provided in the present invention features high universality, and can be quickly assembled with other accessories to obtain various types of LED lamps. For example, referring to
(52) The foregoing implementations are merely preferred implementations of the present invention, and are not intended to limit the protection scope of the present invention. Any non-substantive changes and replacements made by a person skilled in the art based on the present invention fall within the protection scope claimed by the present invention.