Light emitting diode (LED) flashlight

Information

  • Patent Grant
  • 6666565
  • Patent Number
    6,666,565
  • Date Filed
    Friday, November 8, 2002
    22 years ago
  • Date Issued
    Tuesday, December 23, 2003
    21 years ago
Abstract
A light emitting diode (LED) flashlight that utilizes reflection techniques to maximize light provided by the one or more LED light sources. A reflection housing is connected to the flashlight housing and includes a light housing that is suspended within the reflection housing and positions the LED light source toward the flashlight handle. Reflective surfaces within the reflection housing receive the light emanating from the LED light source and reflect and re-direct the light out the transparent end opposite the flashlight handle.
Description




BACKGROUND OF THE INVENTION




1. Field of the Invention




The present invention relates to flashlights, and more particularly to flashlights using Light Emitting Diodes (LEDs) as the light source.




2. Description of the Prior Art




U.S. Pat. No. 6,231,207 to Kennedy et al., discloses a light emitting diode flashlight lamp. This reference discloses the use of an LED as a direct source of light for a flashlight assembly. As shown, the LED is contained in an end cap housing that is threaded onto an end of a translucent cylinder. In this manner, the end cap, and corresponding LED can be positioned to shine light away from the cylindrical tube (i.e., in flashlight mode) or can be positioned to shine light into the cylindrical tube (i.e., in lamp mode). In the standard flashlight mode, the '207 patent has simply replace the incandescent light source with a LED. Even with the bright white light LEDs currently available, the LED light source fails to provide a sufficiently disperse light for use as a conventionally flashlight.




U.S. Pat. Nos. 6,070,987, 6,213,623, 6,293,684, 5,622,423, 5,697,695 and 5,036,442 all disclose various different types of light wands or traffic control devices that are flashlight-like in shape and utilize one or more LEDs as a light source for the wand. In each instance the one or more LEDs are used in order to light the wand and a translucent material is used as the cylindrical rod in which the LEDs are disposed.




SUMMARY OF THE INVENTION




It is an object of the present invention to provide a flashlight that utilizes one or more LEDs as the light source.




It is another object of the invention to provide an LED flashlight that utilizes reflection techniques to maximize the LED light.




These and other objects are achieved in accordance with an embodiment of the invention wherein the flashlight has a power source, a switch electrically connected to the power source, an LED light source electrically connected to the switch and being positioned to direct light toward the handle, and a reflection housing connected to the handle and positioned to receive the light directed toward the handle and reflect it away from the handle.




In accordance with another embodiment, the flashlight has a power source, a switch electrically connected to the power source, an LED light source electrically connected to the switch, and a reflection housing connected to the handle and having a transparent end opposite said handle and a central support axially disposed therein. The central support has reflective surfaces positioned in front of the LED light source such that the light emanating from the LED light source is intercepted by said reflective surfaces and internally reflected within said reflection housing before released through said transparent end.




According to yet another embodiment, the flashlight includes a plurality of LED light sources circumferentially disposed around the outer edge of the reflection housing facing toward the handle. The reflective surfaces within the reflection housing receive the light emanating from the plurality of LEDs and reflects the same out of the reflection housing.











Other objects and features of the present invention will become apparent from the following detailed description considered in conjunction with the accompanying drawings. It is to be understood, however, that the drawings are designed solely for purposes of illustration and not as a definition of the limits of the invention, for which reference should be made to the appended claims. It should be further understood that the drawings are not necessarily drawn to scale and that, unless otherwise indicated, they are merely intended to conceptually illustrate the structures and procedures described herein.




BRIEF DESCRIPTION OF THE DRAWINGS




In the drawings wherein like reference numeral denote similar components throughout the views:





FIG. 1

is a schematic representation of the LED flashlight according to an embodiment of the invention





FIG. 2

is a schematic representation of the LED flashlight according to another embodiment of the invention;





FIG. 3

is a schematic representation of the LED flashlight according another embodiment of the invention;





FIG. 4

is a schematic representation of an adjustment mechanism according to an embodiment of the invention;





FIG. 5

is a plan view of the transparent end of the LED flashlight according to an embodiment of the invention;





FIG. 6

is a partial cross-sectional view of the LED flashlight according to another embodiment of the invention; and





FIG. 7

is a cross-sectional view of the LED flashlight according to another embodiment of the invention.











DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS





FIG. 1

shows the LED flashlight


10


according to a first embodiment of the invention. Flashlight


10


includes a handle


12


which generally contains a battery


14


, a switch


16


and a button or lever


18


connected to the switch for selectively providing power from the battery to the light source. A reflective housing


24


is connected to the handle and includes a front transparent window or end


30


. Reflective housing


24


also contains the light housing


20


having one or more LED lights sources


22


mounted therein.




In this embodiment, light housing


20


is supported on a central support


26


extending from the handle portion


12


into the reflective housing


24


and light source


22


is disposed such that light emanating there from is directed toward the handle. The inside reflective surfaces


28


of reflective housing


24


are positioned to internally receive and reflect the light from light source


22


in a direction opposite the handle


12


and out the transparent end


30


of the reflective housing. The exposed portions of light housing


20


and central support


26


can also include reflective surfaces to enhance the internal reflection. Those of skill in the art will recognize that the angles and positions of the reflective surfaces


28


may be changed, altered or otherwise manipulated to obtain the desired lighting effect from flashlight


10


. Examples of such alterations in reflective surfaces


28


are shown in dotted lines.




The central support


26


can be fixedly mounted within handle


12


and reflective housing


24


, but may also be adjustably mounted within the handle. This adjustment will be described later with reference to FIG.


4


.





FIG. 2

shows flashlight


10


according to a second embodiment of the invention. In this embodiment, the light housing


20


is positioned such that the light source


22


is directed away from the handle


12


and central support


26


includes a reflective surface


27


disposed in front of the light source


22


. Reflective surface


27


is positioned to intercept the light emanating from light source


22


and reflect it back toward the reflective surfaces


28


within reflective housing


24


. Once intercepted, the light is internally reflected within reflective housing


24


before it is released through the transparent end


30


.





FIG. 3

shows another embodiment of LED flashlight


10


where the reflective surface


27


is positioned in front of light source


20


to intercept the light and reflect it back toward the reflective surfaces


28


in reflective housing


24


. In this embodiment, the central support has been removed and reflective surface


27


is suspended in front of light source


20


using any suitable known support. An example of such support can be very thin or fine wires


42


that do not obstruct the internal light reflection.




In accordance with various embodiments, the transparent end


30


includes an aperture


40


that may be variable in size.

FIG. 5

shows an example of the transparent end


30


showing how the variation in the internal reflective surfaces


28


can result in a change of the aperture size. The size of aperture


40


can be fixed or adjustable by the user in order to maximize the light. Those of skill in the art recognize that the position and disposition of the reflective surfaces


28


within reflective housing


24


are a matter of design choice and depend on the application (e.g., preferred distance of operation) for which the LED flashlight is intended.





FIG. 4

shows an adjustment system according to an embodiment of the invention. As explained with reference to the embodiments of

FIGS. 1 and 2

, the position of central support


26


within reflective housing


24


can be axially moved to adjust the reflection properties of the flashlight. An adjustment knob or dial


32


is connected to a gear


34


having teeth


36


that are meshed with corresponding teeth


38


on the central support


26


. Thus, rotation of the knob


32


will cause central support


26


to be axially displaced along axis


44


.





FIG. 6

shows another embodiment where a plurality of LED light sources


22


are circumferentially disposed the inside of reflection housing


24


adjacent the transparent end


30


, and at least one forward firing or directed LED light source


60


. In this embodiment, the light emanating from LEDs


22


is directed into the reflection housing


24


such that reflective surfaces


28


operate to reflect the light out the transparent end


30


. In addition to the rearward directed LEDs


22


, at least one forward firing or directed LED


60


is added to supplement the light generation within the light housing


24


and provide a more vibrant light output from the flashlight. As with the previous embodiments, transparent end


30


can include an aperture


40


of variable size to change the lighting effect of the flashlight.




In accordance with other embodiments, transparent end


30


can include a lens


42


that can be a magnifying lens, a diffuser type lens or a combination of both.





FIG. 7

shows yet another embodiment of the invention where the light source


22


is removed from within the reflection housing


24


and disposed adjacent the perimeter of housing


24


within an appropriate aperture


50


such that the light emanating from light source


22


is substantially directed into reflection housing


24


. Although only one light source


22


is shown, the addition of multiple light sources


22


disposed around the outside perimeter of reflection housing


24


with multiple respective apertures


50


is clearly within the spirit of the present invention. In addition to the rearward directed light sources


22


, at least one forward directed LED


60


is added to the reflection housing


24


. The forward firing LED


60


supplements the light generated within housing


24


and operates to provide a more vibrant and brighter light output from reflection housing


24


.




In this embodiment, the reflective surfaces


28


within reflection housing


24


can be angled A in any desired configuration to maximize the light output from end


30


. Although reflective surface


28


is shown at one angle A, those of skill in the art will recognize that various angles, including multiple angles can be used to accommodate one or more lights sources positioned outside the reflection housing


24


as shown.




While there have been shown, described and pointed out fundamental novel features of the invention as applied to preferred embodiments thereof, it will be understood that various omissions, substitutions and changes in the form and details of the methods described and devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit of the invention. For example, it is expressly intended that all combinations of those elements and/or method steps which perform substantially the same function in substantially the same way to achieve substantially the same results are within the scope of the invention. Moreover, it should be recognized that structures and/or elements and/or method steps shown and/or described in connection with any disclosed form or embodiment of the invention may be incorporated in any other disclosed, described or suggested form or embodiment as a general matter of design choice. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.



Claims
  • 1. A flashlight having a power source and a light emitting end, the flashlight comprising:at least one rearward LED light source electrically connected to the power source and being positioned to direct light away from the light emitting end; at least one forward LED light source electrically connected to the power source and being positions to direct light toward the light emitting end; and a reflection housing connected to the handle and positioned to receive the light directed away from the light emitting end and reflect it out the light emitting end.
  • 2. The flashlight according to claim 1, further comprising a central support for supporting said at least one rearward LED light source within said reflection housing.
  • 3. The flashlight according to claim 2, further comprising adjustment means for adjusting the position of said central support and thereby said at least one rearward LED light source within said reflection housing.
  • 4. The flashlight according to claim 3, wherein said adjustment means comprises an adjustment knob rotatably connected to said handle, a gear mechanism connected to said adjustment knob and said central support, wherein rotation of said adjustment knob axially moves said central support.
  • 5. The flashlight according to claim 1, wherein said reflection housing further comprises a end disposed opposite the handle, said end having a transparent end for releasing the light reflected within said housing.
  • 6. The flashlight according to claim 1, wherein the light emitting end includes a light emitting aperture.
  • 7. The flashlight according to claim 6, wherein the light emitting aperture is adjustable in size and shape.
  • 8. The flashlight according to claim 1, wherein the light emitting end includes a magnifier.
  • 9. The flashlight according to claim 1, wherein the light emitting end includes a diffuser.
  • 10. A flashlight having a power source and a light emitting end, the flashlight comprising:a rearward directed LED light source electrically connected to the power source; a forward directed LED light source electrically connected to the power source; and a reflection housing connected to the handle and a central support axially disposed therein, wherein the light emitting end is part of the reflection housing and is positioned opposite said handle, and said central support includes reflective surfaces positioned in front of the rearward directed LED light source such that the light emanating from said LED light source is internally reflected within said reflection housing before released through the light emitting end.
  • 11. The flashlight according to claim 10, further comprising adjustment means for adjusting the position of said central support and thereby said reflective surfaces within said reflection housing.
  • 12. The flashlight according to claim 11, wherein said adjustment means comprises an adjustment knob rotatably connected to said handle, a gear mechanism connected to said adjustment knob and said central support, wherein rotation of said adjustment knob axially moves said central support.
  • 13. The flashlight according to claim 10, wherein said forward directed LED light source comprises more than one LED.
  • 14. The flashlight according to claim 10, wherein said rearward directed LED light source comprises more than one LED.
  • 15. The flashlight according to claim 10, wherein the light emitting end includes a magnifier.
  • 16. The flashlight according to claim 10, wherein the light emitting end includes a diffuser.
  • 17. A flashlight having a power source, the flashlight comprising:at least one rearward directed LED light source connected to the power source; at least one forward directed LED light source connected to the power source; and a reflection housing connected to the handle and having a transparent light emitting end opposite said handle, wherein said at least one rearward directed LED light source is disposed within said reflection housing and positioned to direct light away from said light emitting end, and said at least one forward directed LED light source is positioned to emanate light in the direction of said transparent light emitting end, wherein said reflection housing receives the light directed away from said light emitting end and reflects it through said light emitting end.
  • 18. The flashlight according to claim 17, wherein said light emitting end further comprises an aperture having adjustable size and shape.
  • 19. The flashlight according to claim 17, wherein the light emitting end includes a magnifier.
  • 20. The flashlight according to claim 17, wherein the light emitting end includes a diffuser.
  • 21. A flashlight having a power source and a light emitting end, the flashlight comprising:a reflection housing connected to the handle; at least one rearward directed LED light source electrically connected to the power source and positioned outside said reflection housing; at least one forward directed LED light source electrically connected to the power source; and at least one aperture in said reflection housing for receiving said at least one rearward firing LED light source such that said light source emits light into said reflection housing.
  • 22. The flashlight according to claim 21, wherein the light emitting end includes a magnifier.
  • 23. The flashlight according to claim 21, wherein the light emitting end includes a diffuser.
  • 24. A flashlight having a power source, the flashlight comprising:a plurality of rearward directed LED light sources connected to the power source; a t least one forward directed LED light source connected to the power source; and a reflection housing connected to the handle and having a transparent light emitting end, and a plurality of light source apertures, wherein said plurality of rearward directed LED light sources are circumferentially disposed outside said reflection housing and positioned within said plurality of apertures to direct light into said reflection housing, said reflection housing having reflective surfaces positioned to capture the light emitting from said rearward directed LED light sources and reflect it through said transparent light emitting end.
  • 25. The flashlight according to claim 24, wherein the light emitting end includes a magnifier.
  • 26. The flashlight according to claim 24, wherein the light emitting end includes a diffuser.
RELATED APPLICATION INFORMATION

This application is a Continuation in Part of U.S. patent application Ser. No. 10/112,023 filed Mar. 29, 2002, pending.

US Referenced Citations (4)
Number Name Date Kind
4587601 Collins May 1986 A
5667293 Own Sep 1997 A
5929788 Vukosic Jul 1999 A
6231207 Kennedy et al. May 2001 B1
Continuation in Parts (1)
Number Date Country
Parent 10/112023 Mar 2002 US
Child 10/291308 US