Magnetic suction connection modular lamp
Technical Field
The invention relates to a magnetic suction connection modular lamp, and belongs to the technical field of lighting lamps.
Background
With the development of the wireless charging technology, the wireless charging technology can be used in the field of illumination, and the illumination lamp can get rid of the constraint on the length of a power line through the wireless charging technology. The lamps and lanterns obtain the electric energy through wireless charging technology, and the on off state of switch control lamps and lanterns is inhaled through magnetism simultaneously, adds the interest of lamps and lanterns. The novel toy is characterized in that some new technical means at present are applied to the design of the traditional toy, some traditional toys are changed, the interest of the traditional toy in playing and using for children is improved, and the imagination and creativity of the children are stimulated. The lamp in the toy shape increases the life interest of the household life appliance, and the toy in the lamp shape also increases the diversity of the toy. The wireless charging modular lamp meets the current desire of people to get rid of the restriction of the length of the power line of the lamp, the use scene is more flexible, and the portability is improved.
Disclosure of Invention
The invention aims to solve the technical problems that the playing interest of children is improved and the daily lighting is considered by combining the traditional toy and the lighting lamp.
In order to solve the above problems, the technical scheme of the invention is to provide a magnetic attraction connection modular lamp, which comprises a pair of large isosceles triangle modules I, a medium isosceles triangle module II, two small isosceles triangle modules III, a square module and a parallelogram module; each module lamp comprises a lampshade and a lamp bottom; the LED lamp comprises a lampshade and is characterized in that a magnetic plate is arranged on the outer side face of the lampshade, and a magnetic switch, an LED lamp strip, a storage battery and a wireless charger are arranged on the bottom of the lamp.
Preferably, the modular light fitting adopts the shape of a traditional toy tangram.
Preferably, the two modules of the first large isosceles triangle module pair have the same shape.
Preferably, the two small isosceles triangle modules III have the same shape.
Preferably, the modularization lamps and lanterns correspond and are equipped with the wireless tray that charges, the wireless tray that charges is the square box of an open-ended square in top, the square box bottom is equipped with the wireless electroplax that charges.
Preferably, each modular lamp of the tangram shape is assembled and placed in the corresponding wireless charging tray.
Preferably, the magnetic plate is connected with the magnetic switch, the magnetic switch is connected with the LED lamp strip, the LED lamp strip is connected with the storage battery, and the storage battery is connected with the wireless charger; the wireless charging tray is internally provided with a wireless charging electric plate, and the wireless charging electric plate enables a wireless charger fixed on the bottom of the lamp to generate electric energy through an alternating magnetic field generated by the built-in coil.
Compared with the prior art, the invention has the following beneficial effects:
1. the modular lamp connected with the switch in a magnetic attraction manner is within a specified use range, so that the safety is guaranteed;
2. the toy has multiple shapes, is interesting and novel, cultivates imagination and creativity, and improves interest of children;
3. the use is convenient and fast, and the use scene is flexible;
4. wireless charging, easily accomodate.
Drawings
FIG. 1 is a schematic exterior view of a modular light fixture according to the present invention;
FIG. 2 is a schematic view of the interior of a modular lamp (an isosceles triangle lamp is taken as an example) according to the present invention;
FIG. 3 is a schematic view of the interior of the modular lamp (isosceles triangle lamp is taken as an example) according to the present invention;
FIG. 4 is an internal view of a wireless charging tray according to the present invention;
FIG. 5 is a schematic view of the modular lamp of the present invention placed on a wireless charging tray for charging;
fig. 6 is a schematic view of the modularized lamp (taking swan shape as an example) of the invention, magnetically connected with the modularized lamp and controlling the switch to be installed.
FIG. 7 is a schematic structural view of a modular lamp according to the present invention.
Reference numerals: 1. wireless charging tray 2, large isosceles triangle module I3, medium isosceles triangle module II 4, small isosceles triangle module III 5, square module 6, parallelogram module 7, wireless charging electroplax 8, lampshade 9, lamp bottom 10, magnetic plate 11, wireless charger 12, LED strip 13, storage battery 14, magnetic switch 15, screw bolt
Detailed Description
In order to make the invention more comprehensible, preferred embodiments are described in detail below with reference to the accompanying drawings:
as shown in fig. 1-7, the invention provides a magnetic suction connection modular lamp, which adopts a tangram shape and comprises a pair of large isosceles triangle modules I2, a middle isosceles triangle module II 3, two small isosceles triangle modules III 4, a square module 5 and a parallelogram module 6; each modular light comprises a lampshade 8 and a light bottom 9; the outer side surface of the lampshade 8 is provided with a magnetic plate 10, and the bottom 9 of the lamp is provided with a magnetic switch 14, an LED lamp strip 12, a storage battery 13 and a wireless charger 11. The two modules of the pair of large isosceles triangle modules I2 have the same shape. The two small isosceles triangle modules III 4 have the same appearance. The modularization lamps and lanterns correspond and are provided with wireless tray 1 that charges, and wireless tray 1 that charges is a top open-ended square box, and the square box bottom is provided with wireless charging electric plate 7. Each modularized lamp in the seven-piece puzzle shape can be assembled and placed in the corresponding wireless charging tray 1. The magnetic plate 10 is connected with the magnetic switch 14, the magnetic switch 14 is connected with the LED lamp strip 12, the LED lamp strip 12 is connected with the storage battery 13, and the storage battery 13 is connected with the wireless charger 11; the wireless charging tray is internally provided with a wireless charging electric plate 7, and the wireless charging electric plate 7 enables a wireless charger 11 fixed on the bottom 9 of the lamp to generate electric energy through an alternating magnetic field generated by a built-in coil.
Firstly, electrifying a wireless charging tray 1, and then placing modular lamps 2-6 on the wireless charging tray 1 for wireless charging; after charging for a period of time, the modular lamps 2-6 are taken down, and any two or more modular lamps 2-6 can be connected through the side magnetic attraction, and then lighting is performed immediately after connection. After the modeling of the modular lamp is determined, the modular lamp can be used by standing on a desktop.
A magnetically attached modular luminaire installation and use:
firstly, taking a large isosceles triangle module I2 as an example, as shown in fig. 2 and 3, adhering a magnetic plate 10 to the side surface of a lampshade 8; an LED lamp strip 12 and a wireless charger 11 are pasted on the bottom 9 of the lamp; a circular opening is formed in the lamp bottom 9, and the magnetic switch 14 and the storage battery 13 are mounted on the lamp bottom 9 by M3 screws 15, respectively. The key point of the step is that the lampshade 8 is required to be made of a material with good light transmission performance; and the bottom part 9 of the lamp has a certain thickness. The assembled device is shown in fig. 2.
In the second step, as shown in fig. 4, an electric plate 7 for wireless charging is stuck in the interlayer inside the wireless charging tray 1. The assembled device is shown in fig. 4.
Thirdly, as shown in fig. 5, the modular lamps 2-6 are placed on the wireless charging tray 1 for wireless charging. The assembled device is shown in fig. 5.
Fourthly, as shown in fig. 6, taking the swan model as an example, the modular lamps 2-6 are magnetically attracted and connected one by one on the side surface and instantly illuminated, and the model can be placed on a table top for use. The assembled device is shown in fig. 6.
After the assembly of the two large isosceles triangle modular lamps 2 and the wireless charging tray 1 is completed, the wireless charging tray 1 is powered on, and then the two large isosceles triangle modular lamps 2 are placed on the wireless charging tray 1 for wireless charging; wait to charge a period of time after, take off two large-scale isosceles triangle modularization lamps and lanterns 2 and inhale the connection with both sides magnetism, if both successfully inhale the magnetism and connect and brighten immediately, just can accomplish this large-scale isosceles triangle modularization lamps and lanterns 2 magnetism and inhale the connection to control switch and accessible wireless charging tray 1 carry out the test that wireless charges.
The testing of other lamps such as the medium isosceles triangle modular lamp 3, the small isosceles triangle modular lamp 4, the square modular lamp 5 and the parallelogram modular lamp 6 is the same as the testing of the large isosceles triangle modular lamp 2.
While the invention has been described with respect to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention. Those skilled in the art can make various changes, modifications and equivalent arrangements, which are equivalent to the embodiments of the present invention, without departing from the spirit and scope of the present invention, and which may be made by utilizing the techniques disclosed above; meanwhile, any changes, modifications and variations of the above-described embodiments, which are equivalent to those of the technical spirit of the present invention, are within the scope of the technical solution of the present invention.