LED illumination apparatus
09879848 ยท 2018-01-30
Assignee
Inventors
Cpc classification
F21V31/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/321
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V29/71
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An LED illumination apparatus includes a first lighting module, a second lighting module, a lamp cup, a heat pipe, and a plurality of heat dissipation fins. The first and second lighting modules are connected with each other and emit light in opposite directions, in addition being received by the lamp cup. The lamp cup includes two reflecting surfaces arranged in symmetrical mirror fashion. The light emitting from the first and second lighting modules are directed to respective reflecting surfaces and reflected toward a same direction by the reflecting surfaces. The heat pipe is disposed in between the first and second lighting modules. The heat dissipation fins are fitted over the heat pipe. The heat generated by lighting modules would transmit to the heat pipe and be guided to the heat dissipation fins in order to accelerate cooling.
Claims
1. A light-emitting diode (LED) illumination apparatus, comprising: a first light emitting module including a first base, a first circuit board, and four first LEDs, the four first LEDs being disposed on the first circuit board, faced toward the first reflecting surface and arranged in a diamond-like pattern, the first circuit board being disposed on a first surface of the first base; a second light emitting module including a second base, a second circuit board, and at least one second LED, the second LED being disposed on the second circuit board and faced toward the second reflecting surface, the second circuit board being disposed on a first surface of the second base, wherein a second surface of the first base opposite to the first surface of the first base is mated with a second surface of the second base opposite to the first surface of the second base; a lamp cup including a first reflecting surface and a second reflecting surface, the first and second reflecting surfaces being disposed in a symmetrical mirror fashion, the first and second lighting modules being received by the lamp cup; a heat pipe penetratingly disposed in between the first and second bases, the heat pipe protruding towards the rear of the lamp cup and then extending surroundingly around the heat pipe; and a plurality of heat-dissipating fins, with one end of each of the heat-dissipating fins fitted over the heat pipe, the heat-dissipating fins being arranged surroundingly along the outer side surface of the lamp cup; wherein the intersection between two diagonals of the diamond-like pattern and a middle point of the first LED disposed at the front end of the diamond-like pattern match the focal point location of the first reflecting surface.
2. The LED illumination apparatus of claim 1, wherein the heat pipe includes a straight portion, a bent portion, and a loop portion, and wherein the straight portion is disposed in between the first and second bases, the bent portion is connected to the straight portion, and the loop portion is connected to the bent portion.
3. The LED illumination apparatus of claim 2, wherein the loop portion extends hemispherically.
4. The LED illumination apparatus of claim 3 wherein the straight portion is disposed along a central axis of the loop portion.
5. The LED illumination apparatus of claim 1, further comprising a front cover, a glass cover, and a rear cover, wherein the glass cover covers an opening defined by the lamp cup, the front cover is disposed in front of the lamp cup, and the rear cover is disposed at the rear of the lamp cup.
6. The LED illumination apparatus of claim 5, further comprising a water-proofing rubber ring, wherein the rubber ring is disposed on the outer circumferential surface of the opening of the lamp cup and in between the lamp cup and glass cover.
7. A light-emitting diode (LED) illumination apparatus, comprising: a first light emitting module including a first base, a first circuit board, and at least one first LED, the first LED being disposed on the first circuit board, the first circuit board being disposed on a first surface of the first base; a second light emitting module including a second base, a second circuit board, and at least one second LED, the second LED being disposed on the second circuit board, the second circuit board being disposed on a first surface of the second base, wherein a second surface of the first base opposite to the first surface of the first base is mated with a second surface of the second base opposite to the first surface of the second base; a lamp cup including a first reflecting surface and a second reflecting surface, the first and second reflecting surfaces being disposed in a symmetrical mirror fashion, the first and second lighting modules being received by the lamp cup; a heat pipe penetratingly disposed in between the first and second bases, the heat pipe protruding towards the rear of the lamp cup and then extending surroundingly around the heat pipe; and a plurality of heat-dissipating fins, with one end of each of the heat-dissipating fins fitted over the heat pipe, the heat-dissipating fins being arranged surroundingly along the outer side surface of the lamp cup; wherein the heat pipe includes a straight portion, a bent portion, and a loop portion, and wherein the straight portion is disposed in between the first and second bases, the bent portion is connected to the straight portion, and the loop portion is connected to the bent portion.
8. The LED illumination apparatus of claim 7, wherein the loop portion extends hemispherically.
9. The LED illumination apparatus of claim 8, wherein the straight portion is disposed along a central axis of the loop portion.
10. The LED illumination apparatus of claim 7, further comprising a front cover, a glass cover, and a rear cover, wherein the glass cover covers an opening defined by the lamp cup, the front cover is disposed in front of the lamp cup, and the rear cover is disposed at the rear of the lamp cup.
11. The LED illumination apparatus of claim 10, further comprising a water-proofing rubber ring, wherein the rubber ring is disposed on the outer circumferential surface of the opening of the lamp cup and in between the lamp cup and glass cover.
12. The LED illumination apparatus of claim 7, wherein the first LED of the first lighting module faces toward the first reflecting surface, and the second LED of the second lighting module faces toward the second reflecting surface.
13. The LED illumination apparatus of claim 12, wherein the number of the first LEDs is four and the four first LEDs are arranged in a diamond-like pattern.
14. The LED illumination apparatus of claim 13, wherein the first LED disposed at the front end of the diamond-like pattern is located at the focal point of the first reflecting surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
DETAILED DESCRIPTION
(5) Please refer to
(6) The first lighting module 10 includes a first base 11, a first circuit board 12, and a plurality of first light emitting diodes (LEDs) 13. For the instant embodiment, four first LEDs 13 are used for explanatory purposes. In other embodiments, one or more first LED 13 may be disposed depending on the required illumination. The four first LEDs 13 are disposed on the first circuit board 12, which is secured to the first base 11. As shown in
(7) In addition, for the instant embodiment as shown in
(8) The second lighting module 20 includes a second base 21, a second circuit board 22, and a plurality of second LEDs 23. For the instant embodiment, four second LEDs 23 are used for explanatory purposes. In other embodiments, one or more second LED 23 may be disposed depending on the required illumination. The four second LEDs 23 are disposed on the second circuit board 22, which is secured to the second base 21. As shown in
(9) Identically, for the instant embodiment as shown in
(10) As illustrated in
(11) Please refer to
(12) The first and second reflecting surfaces 31 and 32 can each has its own curvature. For the instant embodiment, they have the same curvatures and form a symmetrical mirror after the assembling process is done. As shown in
(13) As shown in
(14) Furthermore, to make the reflected light source more concentrated and illuminates farther distance away, the first LED 13 disposed at the front end of the diamond-like pattern can be arranged at the focal point of the first reflecting surface 31. Likewise, the second LED 23 disposed at the front end of the diamond-like pattern can be arranged at the focal point of the second reflecting surface 32. In addition, for easy assembling and minimizing change in reflected light source intensity due to assembling errors, the intersection between two diagonals of the diamond-like pattern and the middle point of the LED disposed at the front end of the diamond-like pattern may match the focal point location of the reflecting surface.
(15) Please refer to
(16) Next, please refer to
(17) As shown in
(18) One end of each of the heat dissipating fins 50 is fitted over the heat pipe 40, with the fins 50 arranged surroundingly along the outer side surface of the lamp cup 30. As can be seen from
(19) As shown in
(20) Please refer to
(21) Based on the above structures, heat generation can be greatly reduced by the use of LEDs as the light sources. The up-and-down arrangement of the LEDs allows more LEDs to be used in order to achieve required illumination intensity. By manipulating the way that LEDs are arranged and its positions, light beams emitted by the LEDs can be effectively reflected outwardly as much as possible. Meanwhile, by adjusting the shape of curvature of the reflecting surfaces, the reflected light sources can be more concentrated and provides nearly spherical light field. In addition, by penetratingly dispose the heat pipe 40 in between the first and second bases 11 and 21, heat originated from the first and second bases 11 and 21 can be effectively directed to the heat-dissipating fins 50 via the heat pipe 40. Multiple heat-dissipating fins 50 can effectively disperse heat to ambient air for enhancing heat-dissipation effect.
(22) While the instant disclosure has been described by way of example and in terms of the preferred embodiments, it is to be understood that the instant disclosure needs not be limited to the disclosed embodiments. For anyone skilled in the art, various modifications and improvements within the spirit of the instant disclosure are covered under the scope of the instant disclosure. The covered scope of the instant disclosure is based on the appended claims.