Next Patent: Output voltage stabilizer for switching mode power supply
Next Patent: Output voltage stabilizer for switching mode power supply
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[0002] 1. Field of the Invention
[0003] This invention relates to an LED lamp that needs a means for radiating heat to be generated in operation.
[0004] 2. Description of the Related Art
[0005] For example, automobiles are equipped with various lamps such as head lamp, tail lamp, winker lamp and stop lamp. These lamps use a lamp of several watts to tens of watts according to use, and an electric light bulb (hereinafter referred to as bulb) is conventionally used for them. The conventional various lamps are attached in a socket to facilitate the attaching and releasing, and its light section where the lamp is attached has a reflector to converge light in a desired direction.
[0006] Since automobile bulbs are change parts, they have a structure to be fitted to a socket. Further, in order to shorten the time required in attaching step of manufacturing, they are not screw type but insert type. For example, bulb base section has a convex insert portion to the socket and two electrodes are disposed along both sides of insert portion. The socket attached to the reflector is provided with built-in contact electrodes to contact the electrodes and bulb support opening to which the insert portion is fitted. Thus, the attaching or releasing of bulb can be performed simply by inserting or pulling (for example, Japanese patent application laid-open No. 2001-110210, pages 2-3 and
[0007] Some vehicles use an LED stop lamp that has a plurality of red LED lamps with high output, instead of light bulb. The LED lamp has small and lightweight light emitting elements and therefore the socket is unnecessary and the front panel of transparent red is further unnecessary. Thus, the entire lamp can be minimized and simplified in structure. Also, it has long lifetime Accordingly, it is an optimum lamp for automobiles.
[0008] In recent years, a blue LED with high output is developed other than conventional red LED. Also, a white LED is developed based on the blue LED and some applications thereof begin instead of the conventional bulb. The white LED has a lower power consumption and longer lifetime than bulb. If the price lowers in the future, the white LED will be rapidly popularized.
[0009] Commercially available lighting apparatuses (flashlight, key holder etc.) using LED are generally structured such that LED leads are directly soldered to pattern or terminal of printed circuit board and therefore its LED lamp cannot be changed. Furthermore, the soldering is difficult to incorporate in the manufacturing line of automobile lamp and the manufacturing process is complicated thereby. So, it is desired that the LED lamp has such a structure that can be inserted to socket without soldering, like bulb. If so, the LED lamp can be handled as change parts, like bulb.
[0010] However, the conventional LED lamp of high output type (high brightness type) with consumption power of several watts to ten or more watts generates substantial amount of heat due to increased current. Especially in tail lamp and winker lamp of automobile, the LED, socket and its peripherals may be overheated because such a lamp is subject to radiation of external light and is frequently placed in a space with bad ventilation and, as a result, heat cannot be sufficiently radiated. Therefore, the temperature of light emitting element will rise and the brightness will lower.
[0011] It is an object of the invention to provide an LED lamp that can offer a high radiation property even when using a high output light emitting element.
[0012] It is another object of the invention to provide an LED lamp that can be easily assembled.
[0013] According to the invention, an LED lamp comprises;
[0014] an LED with a pair of terminals;
[0015] a holder to which the LED is attached, the holder being of insulating material; and
[0016] a radiation unit that comprises two metallic radiation plates that are attached to the holder while surrounding the holder and being insulated from each other, each of the radiation plates including a contact portion that contacts the pair of terminals of the LED being attached to the holder and a power receiving terminals for power supplied to the LED.
[0017] In the above structure, where the radiation unit is composed of two radiation plates attached on both sides of the holder, the contact portion contacts the terminal of LED attached to the holder and heat generated from LED in operation is conducted to each radiation plate, thereby the radiation is performed. Thus, the overheating of LED can be prevented. Furthermore, the manufacturing process can be simplified because the LED lamp of the invention has such a structure that can facilitate the assembling.
[0018] It is preferable that each of the radiation plates is formed approximately C-shaped and has a fitted portion on its one end and the contact portion on its other end, and the holder has a pair of grooves on its both sides, one of the pair of grooves receiving the fitted portion and the other receiving the contact portion. Thereby, the radiation plate can be easily fixed to the holder.
[0019] It is preferable that the contact portion is processed to have a springy force. Thereby, the electrical connection with the pair of terminals of LED can be secured and therefore the loose connection due to disturbance such as vibration or thermal expansion can be prevented.
[0020] It is preferable that each of the radiation plates has an aperture in the side surface, and the holder has a protrusion to be engaged to the aperture in attaching the radiation plate to the holder. Thereby, the fixation of radiation plates to the holder can be secured.
[0021] It is preferable that the holder has an attachment section for attaching the holder to other member on its one end at which the LED is attached. Thereby, the positioning and attaching to the other member can be conducted simultaneously.
[0022] The preferred embodiments according to the invention will be explained below referring to the drawings, wherein:
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031] LED lamp
[0032] LED
[0033] The holder
[0034] The radiation plates
[0035] The contact portions
[0036] With the above structure, the radiation plates
[0037]
[0038] When the radiation unit
[0039] When the LED
[0040]
[0041] In assembling the LED lamp
[0042] Then, to the terminals
[0043] In the first embodiment described above, with the radiation unit
[0044] Furthermore, the LED lamp
[0045] Although in the first embodiment the terminals
[0046] Alternatively, the other radiation member may be additionally attached to or laid in contact with the radiation plates
[0047] Further, in FIGS.
[0048]
[0049] The combination lamp
[0050]
[0051] In the second embodiment, as earlier described in the first embodiment, the LED lamp
[0052]
[0053] LED
[0054] The transparent epoxy resin
[0055] The reflection surface
[0056] With LED
[0057] Although, in the above explanation, the led lamp of the invention is applied to vehicle lamp, it is not limited to that use and can be applied to all led lamps that may generate some heat.
[0058] Although the invention has been described with respect to the specific embodiments for complete and clear disclosure, the appended claims are not to be thus limited but are to be construed as embodying all modifications and alternative constructions that may occur to one skilled in the art which fairly fall within the basic teaching herein set forth.