LED bulb
11353184 ยท 2022-06-07
Assignee
Inventors
- Yang Li (Zhejiang, CN)
- Huanliang Wang (Zhejiang, CN)
- Xuan Zhao (Zhejiang, CN)
- Jibo Wang (Zhejiang, CN)
- Bin YU (Zhejiang, CN)
Cpc classification
F21V23/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/238
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/232
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S10/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2113/13
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01H36/00
ELECTRICITY
H01H1/12
ELECTRICITY
H01H19/36
ELECTRICITY
F21V19/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S10/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01H3/50
ELECTRICITY
F21V19/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An LED bulb includes an LED photoelectric module having at least two branches of LED beads with different color temperatures connected in parallel, a control switch connected with one of the branches of LED beads, and an adjustment ring. A total voltage of one branch of LED beads is less than that of each of the other branches of LED beads. The control switch has a ball, the adjustment ring has a magnet, and when the adjustment ring rotates, the magnet draws the ball to roll to switch on or off the control switch. When the control switch is on, the branch of LED beads connected with the control switch is lighted up, and when the control switch is off, the branch of LED beads connected with the control switch is not lighted up.
Claims
1. An LED bulb, comprising a bulb body, and an LED photoelectric module installed on top of the bulb body, the LED photoelectric module having at least two branches of LED beads and the at least two branches of LED beads having different color temperatures and being connected in parallel with each other, wherein the LED bulb further comprises a control switch and an adjustment ring, the control switch is arranged inside the bulb body and near an inner wall of the bulb body and is connected in series with a connection circuit of one branch of the at least two branches of LED beads with different color temperatures, a total voltage of one branch of the at least two branches of LED beads with different color temperatures is less than a total voltage of each of the other of the at least two branches of LED beads with different color temperatures, the adjustment ring is installed around the bulb body, the control switch comprises a hollow metallic guide tube, a first electrode, a second electrode and a ball, the adjustment ring has a magnet, and the adjustment ring rotates around the bulb body, whereby the magnet draws the ball to roll to switch on or switch off the control switch, wherein in a case that the control switch is switched on, one branch of the at least two branches of LED beads with different color temperatures that is connected in series with the control switch is lighted up and the other of the at least two branches of LED beads with different color temperatures is not lighted up; and in a case that the control switch is switched off, one branch of the at least two branches of LED beads with different color temperatures that is connected in series with the control switch is not lighted up and the other of the at least two branches of LED beads with different color temperatures is lighted up.
2. The LED bulb according to claim 1, wherein: one end of the first electrode is connected with the hollow metallic guide tube, and another end of the first electrode is inserted in an aluminum substrate in the LED photoelectric module and connected in series with one end of the connection circuit of one branch of the at least two branches of LED beads with different color temperatures in the LED photoelectric module or connected with a driving circuit in the LED photoelectric module; one end of the second electrode is wrapped by an insulating layer and extends into the hollow metallic guide tube, the second electrode is completely insulated from the hollow metallic guide tube by the insulating layer, a tip of one end of the second electrode is exposed from the insulating layer, another end of the second electrode is inserted in the aluminum substrate in the LED photoelectric module and is connected with the driving circuit in the LED photoelectric module or connected in series with one end of a connection circuit of one branch of the at least two branches of LED beads with different color temperatures; and the ball is arranged in the hollow metallic guide tube, the magnet draws the ball to roll to switch off the control switch when the ball is not in contact with the second electrode, and the magnet draws the ball to roll to switch on the control switch when the ball is in contact with the tip of one end of the second electrode.
3. The LED bulb according to claim 2, wherein an outer surface of the hollow metallic guide tube is wrapped by an insulating film.
4. The LED bulb according to claim 2, wherein the control switch is installed on a rear side of the aluminum substrate in the LED photoelectric module.
5. The LED bulb according to claim 3, wherein the adjusting ring comprises a ring body and the magnet, the ring body is arranged on an outer surface of a top portion of the bulb body, and the magnet is installed on an inner wall of the ring body.
6. The LED bulb according to claim 5, wherein: the ring body is provided with a first protruded portion and a second protruded portion, the magnet is installed in an inner cavity of the first protruded portion, and a limiting structure is provided between the second protruded portion and the bulb body; the limiting structure comprises a spring post arranged in an inner cavity of the second protruded portion in a radial direction, a spring sleeved on an outer surface of the spring post, a limiting steel ball against an inner axial end of the spring, and two arcuate grooves arranged on an outer circumferential wall of the bulb body; and in a case that the ball is drawn by the magnet to roll to be in contact with an axial end of the hollow metallic guide tube connected with the first electrode, the limiting steel ball is embedded in one of the two arcuate grooves, and in a case that the ball is drawn by the magnet to roll to be in contact with the tip of one end of the second electrode, the limiting steel ball is embedded in the other of the two arcuate grooves.
7. The LED bulb according to claim 6, wherein a rotation range of the adjustment ring is an arcuate distance between the two arcuate grooves.
8. The LED bulb according to claim 7, wherein the ring body is circular or semicircular.
9. The LED bulb according to claim 1, wherein: the bulb body has a flared shape, and the LED photoelectric module is installed on a wide end of the bulb body; the LED photoelectric module comprises an aluminum substrate, at least two branches of LED beads installed on a front surface of the aluminum substrate, and driving components separately installed on the front surface and a rear surface of the aluminum substrate, wherein the at least two branches of LED beads have different color temperatures and are connected in parallel with each other; the LED bulb further comprises a bulb housing and a bulb cap, the bulb housing is arranged above the LED photoelectric module and covering the LED photoelectric module, an opening end of the bulb housing is connected with the wide end of the bulb body, and the bulb cap is screwed to a narrow end of the bulb body.
10. The LED bulb according to claim 3, wherein the control switch is installed on a rear side of the aluminum substrate in the LED photoelectric module.
11. The LED bulb according to claim 2, wherein a positioning post is vertically arranged in the bulb body and a positioning hole fitting with the positioning post is provided on the aluminum substrate in the LED photoelectric module.
12. The LED bulb according to claim 3, wherein a positioning post is vertically arranged in the bulb body and a positioning hole fitting with the positioning post is provided on the aluminum substrate in the LED photoelectric module.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(12) The present disclosure is further described below in conjunction with drawings and detailed description of the embodiments.
First Embodiment
(13) An LED bulb is provided according to the embodiment, as shown in
(14) In the present embodiment, the control switch 5 includes a hollow metallic guide tube 52, a first electrode 53, a second electrode 54 and a ball 51. One end of the first electrode 53 is connected with an axial end of the hollow metallic guide tube 52, and another end of the first electrode 53 is inserted in the aluminum substrate 31 in the LED photoelectric module 3 and connected in series with one end of the connection circuit of the cold color temperature LED beads 32 in the LED photoelectric module 3. One end of the second electrode 54 is wrapped by an insulating layer 55 and extends into the hollow metallic guide tube 52 from another axial end of the hollow metallic guide tube 52. The second electrode 54 is completely insulated from the hollow metallic guide tube 52 by the insulating layer 55. A tip of one end of the second electrode 54 is exposed from the insulating layer 55. Another end of the second electrode 54 is inserted in the aluminum substrate 31 in the LED photoelectric module 3 and connected with a constant current chip U1 in a driving circuit in the LED photoelectric module 3. The ball 51 is arranged in the hollow metallic guide tube 52. The magnet 61 draws the ball 51 to roll such that the control switch 5 is switched off in a case that the ball 51 is not in contact with the second electrode 54. The magnet 61 draws the ball 51 to roll such that the control switch 5 is switched on in a case that the ball 51 is in contact with the tip of one end of the second electrode 54. An outer surface of the hollow metallic guide tube 52 is wrapped by an insulating film (not shown in the Figures), such that the hollow metallic guide tube 52 is insulated from the outside. The magnet 61 draws the ball 51 such that the ball 51 rolls in the hollow metallic guide tube 52 with the rotation of the adjustment ring 6. In a case that the ball 51 rolls to a position close to the first electrode 53, though the ball 51 is in contact with the hollow metallic guide tube 52 and the first electrode 53 is connected with the hollow metallic guide tube 52, the second electrode 54 is insulated from the hollow metallic guide tube 52. Therefore, the connection circuit of the cold color temperature LED beads 32 is not conductive. That is, the cold color temperature LED beads 32 are not lighted up, and the warm color temperature LED beads 33 are lighted up, which is referred to as switched-off state of the control switch 5. In a case that the ball 51 rolls to a position close to the second electrode 54 and is in contact with the tip of one end of the second electrode 54, the second electrode 54, the ball 51, the hollow metallic guide tube 52 and the first electrode 53 are conductively connected, such that the connection circuit of the cold color temperature LED beads 32 is conductive. Because a total voltage of the cold color temperature LED beads 32 is less than that of the warm color temperature LED beads 33, the cold color temperature LED beads 32 are lighted up and the warm color temperature LED beads 33 are not lighted up, when a current flow through the cold color temperature LED bead 32, which is referred to as switched-on state of the control switch.
(15) In the present embodiment, the adjustment ring 6 includes a ring body 62 and the magnet 61, where the ring body 62 is arranged on an outer surface of a top portion of the bulb body 2, the magnet 61 is installed on an inner wall of the ring body 62, and a rotation range of the adjustment ring 6 is a length range of the control switch 5.
(16) In the present embodiment, the ring body 62 is circular.
(17) In the present embodiment, a positioning post 71 is vertically arranged in the bulb body 2 and a positioning hole 72 fitting with the positioning post 71 is provided on the aluminum substrate 31 in the LED photoelectric module 3. The positioning post 71 mates with the positioning hole 72, such that the LED photoelectric module 3 can be installed in the bulb body 2 conveniently and it is ensured that the control switch 5 is near the magnet 61, that is, a quick installation of the LED photoelectric module 3 is achieved with the control switch 5 being located between the positioning post 71 and the magnet 61 guaranteed.
(18) In the present embodiment, two branches of LED beads with different color temperatures, cold color temperature beads and warm color temperature beads, are installed. For example, a color temperature of the cold color temperature LED beads is 6500K and a color temperature of the warm color temperature LED beads is 2700K.
(19) In the present embodiment, as shown in
Second Embodiment
(20) An LED bulb is provided according to the embodiment, where an overall structure of the LED bulb is the same as that of the LED bulb according to the first embodiment except that as shown in
(21) In the above two embodiments, a circuit connection of the control switch 5 is as shown in