Flashlight
09874321 ยท 2018-01-23
Inventors
Cpc classification
F21L4/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21L4/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21L4/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0414
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21L4/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A flashlight includes a body sized to be held in the hand of a user. The flashlight includes a light source coupled to the body for emitting light when the light source is activated by a user. The light source is movable to emit light as directed by the user.
Claims
1. A flashlight comprising a first light generator including a first light source arranged to emit light along a longitudinal axis of the first light generator, a second light generator including a second light source arranged to emit light along a longitudinal axis of the second light generator, the second light generator coupled to the first light generator to pivot relative to the first light generator about a pivot axis arranged to extend perpendicular to and intersect the longitudinal axis of the first light generator and the longitudinal axis of the second light generator, and connection means for mounting the flashlight to a support base to form a lamp when the flashlight is coupled to a support base, the connection means including a support leg coupled to the first light generator for movement about the pivot axis independent of the second light generator and coupled to the second light generator for movement about the pivot axis independent of the first light generator.
2. The flashlight of claim 1, wherein the support leg is coupled to the first light generator and the second light generator for about 360 movement about the pivot axis.
3. The flashlight of claim 1, further comprising a support base formed to include a slot sized to receive the support leg and including a peg that extends through the slot sized to be received by a hook formed by the support leg.
4. The flashlight of claim 1, further comprising a support base configured to be coupled to the support leg and configured to charge a power source included in at least one of the first light generator and the second light generator, wherein the first light generator and the second light generator are each movable about the pivot axis relative to the support leg and the support base when the support leg is coupled to the support base.
5. A flashlight comprising a first light generator including a first light source arranged at a distal end of the first light generator to emit light along a longitudinal axis of the first light generator, and a second light generator including a second light source arranged at a distal end of the second light generator to emit light along a longitudinal axis of the second light generator, wherein the second light generator is coupled to the first light generator for about 360 movement about a pivot axis relative to the first light generator, the pivot axis is arranged to extend through the first light generator at a proximal end of the first light generator, and the pivot axis is arranged to extend through the second light generator at a proximal end of the second light generator.
6. The flashlight of claim 5, wherein the second light generator is coupled to the first light generator for 360 movement about the pivot axis relative to the first light generator.
7. The flashlight of claim 5, wherein the pivot axis is substantially perpendicular to the longitudinal axis of the first light generator and the longitudinal axis of the second light generator.
8. The flashlight of claim 5, further comprising an axle arranged to extend along the pivot axis, the axle coupled to at least one of the first light generator and the second light generator, and at least one of the first light generator and the second light generator are coupled to the axle to pivot about the axle.
9. The flashlight of claim 8, wherein at least one of the first light generator and the second light generator are interference fit with the axle.
10. The flashlight of claim 5, wherein the first light generator includes a third light source coupled to the proximal end of the first arm and arranged to emit light along the pivot axis in a first direction and the second light generator includes a fourth light source coupled to the proximal end of the second arm and arranged to emit light along the pivot axis in a second direction, opposite the first direction.
11. The flashlight of claim 5, further comprising a support leg coupled to the first light generator and to the second light generator for movement about the pivot axis independent of the first light generator and the second light generator.
12. The flashlight of claim 11, wherein the support leg is movable about the pivot axis from a stowed position in which the support leg is arranged to lie between the first light generator and the second light generator and a use position in which the support leg is arranged to extend out from between the first light generator and the second light generator.
13. The flashlight of claim 5, further comprising a support leg coupled to the first light generator and to the second light generator for movement about a pivot axis, wherein the support leg is coupled to the first light generator and the second light generator for 360 movement about the pivot axis relative to at least one of the first light generator and the second light generator.
14. A flashlight comprising a first light generator, a second light generator coupled to the first light generator for movement about a pivot axis that intersects the first light generator and the second light generator, and a support leg coupled to the first light generator for movement about the pivot axis independent of the second light generator and coupled to the second light generator for movement about the pivot axis independent of the first light generator.
15. The flashlight of claim 14, wherein the support leg is coupled to the first light generator and the second light generator for about 360 movement about the pivot axis relative to at least one of the first light generator and the second light generator.
16. The flashlight of claim 14, wherein the second light generator is coupled to the first light generator for about 360 movement about a pivot axis relative to the first light generator.
17. The flashlight of claim 14, wherein the pivot axis extends through the first light generator at a proximal end of the first light generator, the pivot axis extends through a proximal end of the second light generator, the first light generator includes a first light source arranged at a distal end of the first light generator, and the second light generator includes a second light source arranged at a distal end of the second light generator.
18. The flashlight of claim 17, wherein a longitudinal axis of the first light generator extends through the proximal end of the first light generator and the distal end of the first light generator, a longitudinal axis of the second light generator extends through the proximal end of the second light generator and the distal end of the second light generator, the first light source is arranged to emit light along the longitudinal axis of the first light generator, and the second light source is arranged to emit light along the longitudinal axis of the second light generator.
19. The flashlight of claim 18, wherein the second light generator is coupled to the first light generator for 360 movement about the pivot axis, the support leg coupled to the first light generator for 360 movement about the pivot axis relative to the first light generator, and coupled to the second light generator for 360 movement about the pivot axis relative to the second light generator.
20. A flashlight comprising an arm sized to be gripped in the hand of a user, and a light generator coupled to the arm for movement about a pivot axis that intersects the arm and the light generator over 360 of rotation, wherein the pivot axis extends through the arm at a proximal end of the arm, the pivot axis extends through a proximal end of the light generator, and the light generator includes a first light source arranged at a distal end of the light generator.
21. The flashlight of claim 20, further comprising a support leg coupled to the arm for movement about the pivot axis relative to the arm independent of the light source.
22. The flashlight of claim 21, wherein the support leg is coupled to the arm and the light generator for about 360 movement about the pivot axis relative to at least one of the arm and the light generator.
23. The flashlight of claim 20, wherein a longitudinal axis of the light generator extends through the proximal end of the light generator and the distal end of the light generator; and the first light source is arranged to emit light along the longitudinal axis of the light generator.
24. The flashlight of claim 23, wherein a longitudinal axis of the arm extends from the proximal end of the arm to a distal end of the arm spaced from the proximal end of the arm, the distal end of the arm is spaced about the same distance from the pivot axis as the distal end of the light generator, and the pivot axis is perpendicular to both the longitudinal axis of the arm and the longitudinal axis of the light generator.
25. The flashlight of claim 24, further comprising a support leg coupled to the arm for movement about the pivot axis relative to the arm independent of the light source and the support leg is coupled to the arm for 360 movement about the pivot axis relative to the arm independent of the light generator.
26. The flashlight of claim 20, wherein the light generator includes a second powered device arranged at the proximal end of the light generator.
27. The flashlight of claim 26, wherein the second powered device is a second light source arranged to emit light perpendicular to the longitudinal axis of the light generator.
28. The flashlight of claim 20, wherein the arm and the first light have distal ends spaced an equal distance from the pivot axis.
29. The flashlight of claim 28, wherein the arm includes a powered device arranged at the distal end of the arm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The detailed description particularly refers to the accompanying figures in which:
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DETAILED DESCRIPTION
(18) An illustrative flashlight 10 includes a body 12, an axle 14, and an interchangeable support leg 16 as shown in
(19) Body 12 of the illustrative embodiment includes a first light generator 12A and a second light generator 12B as shown in
(20) Arms 20A, 20B include a hub section 32A, 32B, an extension section 34A, 34B, and a battery door 36A, 36B. Hub sections 32A, 32B support axial light sources 22A, 22B and each hub section 32A, 32B receives an end 14A, 14B of axle 14 so that arms 20A, 20B can pivot independently about pivot axis 18 defined by axle 14. Extension sections 34A, 34B extend from hub sections 32A, 32B perpendicular to pivot axis 18 and support movable light sources 24A, 24B. Battery doors 36A, 36B are removably coupled to extension sections 34A, 34B and allow access to power systems 26A, 26B that are housed in arms 20A, 20B.
(21) Arms 20A, 20B each also include a pad 35A, 35B coupled to extension sections 34A, 34B of arms 20A, 20B. Pads 35A, 35B are situated at the distal ends 30A, 30B of arms 20A, 20B and extend between the arms 20A, 20B. Pads 35A, 35B contact one another when the distal ends 30A, 30B of arms 20A, 20B are aligned to provide space between the arms 20A, 20B so that support leg 16 is not pinched between the arms 20A, 20B when flashlight 10 is gripped by a user.
(22) Hub sections 32A, 32B each form a cavity 38A, 38B that extend along pivot axis 18. Cavities 38A, 38B are round and are defined by bearing surfaces 40A, 40B that include grooves 42A, 42B. Bearing surfaces 40A, 40B contact an outer surface 15 of axle 14 so that the hub sections 32A, 32B are in rotative bearing engagement with axle 14. Grooves 42A, 42B formed in bearing surfaces 40A, 40B receive protrusions 17A, 17B that extend out from the outer surface 15 of axle 14 so that hub sections 32A, 32B are locked on to axle 14 when flashlight 10 is assembled. In operation, hub sections 32A, 32B may be separated from axle 14 so that each light generator 12A, 12B may be used by two users. In the illustrative embodiment, the ends 14A, 14B of axle 14 are lightly interference fit with the bearing surfaces 40A, 40B of hub sections 32A, 32B so that axle 14 provides a frictional arm-support means configured to support the arms 20A, 20B in a position selected by a user when a user pivots one or both of arms 20A, 20B about axle 14.
(23) In some alternative embodiments, the ends of axle 14 and hub sections 32A, 32B may be formed to include corresponding teeth to support the arms 20A, 20B when positioned by a user relative to axle 14. In other embodiments, magnets (not shown) may be mounted in each of hub sections 32A, 32B in order to couple light generators 12A, 12B when brought together. In some such embodiments, axle 14 may be metallic or magnetic to couple each light generator 12A, 12B to axle 14 when flashlight 10 is assembled. In other embodiments, one or more complementary mechanical tabs and tab receivers (not shown) may be included in first light generator 12A, second light generator 12B, and axle 14 to couple each light generator 12A, 12B to axle 14 when flashlight 10 is assembled. In still other embodiments, another locking mechanism such as a set screw may support the arms 20A, 20B when positioned by a user relative to axle 14.
(24) Axial light sources 22A, 22B are configured to emit light along pivot axis 18 as shown in
(25) Movable light sources 24A, 24B are configured to emit light in a direction perpendicular to pivot axis 18 as shown in
(26) Power systems 26A, 26B included in light generators 12A, 12B are configured to allow a user to activate axial light sources 22A, 22B and movable light sources 24A, 24B in any combination. Power systems 26A, 26B each include a power source 44A, 44B and a rotary switch 46A, 46B as shown diagrammatically in
(27) In some embodiments in which power sources 44A, 44B are rechargeable batteries, power systems 26A, 26B may also include charge coils 45A, 45B as shown in phantom in
(28) Rotary switches 46A, 46B of the illustrative embodiment each move through four configurations 50, 51, 52, 53 to disconnect and connect power source 44A, 44B with one or both of axial light source 22A, 22B and one or both of movable light source 24A, 24B. Each rotary switch 46A, 46B changes configuration as suggested by arrow 55 in response to a user pressing on the corresponding axial light source 22A, 22B. In a first configuration 50, rotary switch 46A, 46B couples power source 44A, 44B to open so that neither axial light source 22A, 22B nor movable light source 24A, 24B is powered. In a second configuration 51, rotary switch 46A, 46B couples power source 44A, 44B to axial light source 22A, 22B but not movable light source 24A, 24B so that only axial light source 22A, 22B is powered. In a third configuration 52, rotary switch 46A, 46B couples power source 44A, 44B to movable light source 24A, 24B but not axial light source 22A, 22B so that only movable light source 24A, 24B is powered. In a fourth configuration 53, rotary switch 46A, 46B couples power source 44A, 44B to both movable light source 24A, 24B and axial light source 22A, 22B so that both axial light source 22A, 22B and movable light source 24A, 24B are powered. Thus, any combination of one or more light sources 22A, 22B, 24A, 24B included in body 12 can be powered as desired by a user.
(29) Support leg 16 is a monolithic plastic component formed to include a hub 56 and a strut 58 as shown, for example, in
(30) Support leg 16 pivots between a stowed position, shown in
(31) Flashlight 10 is also self-supportive by rotating either light generator 12A, 12B so that a light generator 12A, 12B is parallel to a flat surface and positioning the other of light generator 12A, 12B to emit light in a user selected direction. First light generator 12A or second light generator 12B arranged parallel with a flat surface can independently support the other light generator 12A, 12B or can increase stability of support from support leg 16 when support leg 16 is positioned to support body 12 of flashlight 10.
(32) Support leg 16 may also be used so that flashlight 10 is self-supporting when used outdoors or with a supporting protrusion (not shown). Rounded point 60 of strut 58 can be driven into the ground or an object so that body 12 of flashlight 10 may be supported in place by support leg 16. Hook 62 of strut 58 can be hooked to a supporting protrusion such as a cable, a tree branch, or a nail in a wall so that body 12 of flashlight 10 may be supported relative to the supporting protrusion.
(33) A tapped orifice 70 is coupled to the arm 20A of the first light generator 12A at the proximal end 28A of the arm 20A as shown in
(34) In operation, movable light source 24A of first light generator 12A and movable light source 24B of second light generator 12B can emit light streams in different directions. Second light generator 12B moves between an aligned position and a number of misaligned positions relative to first light generator 12A. When second light generator 12B is aligned with first light generator 12A as shown in
(35) In illustrative embodiments, a user can grip first light generator 12A while pivoting second light generator 12B between the aligned position and one of the misaligned positions. Thus, flashlight 10 can be user-supported while the light generators 12A, 12B are adjusted relative to one another. Also, flashlight 10 can be user-supported by one light generator 12A, 12B while emitting light streams in more than one general direction so that a user can illuminate a greater area or two separate areas in two different directions.
(36) Axial light sources 22A, 22B can also emit light in opposing directions along pivot axis 18 so that flashlight 10 can emit light streams in up to four different directions. Axial light source 22A of first light generator 12A is arranged to emit light in a first direction 18A along pivot axis 18 and axial light source 22B of second light generator 12B is arranged to emit light in a second direction 18B, opposite the first direction 18A. Thus, flashlight 10 may emit light in up to four general directions when second light generator 12B is in one of the misaligned positions relative to first light generator 12A and all light sources 22A, 22B, 24A, 24B are powered.
(37) In illustrative embodiments, a user can activate and direct movable light sources 24A, 24B to illuminate a subject or subjects spaced from himself and can activate at least one of axial light sources 22A, 24B to illuminate himself. Users such as policemen, firefighters, and other emergency personnel may activate axial light sources 22A, 22B to illuminate themselves while illuminating a subject with movable light sources 24A, 24B so that the user is identifiable by others nearby. Similarly, a user can illuminate himself using one movable light source 24A, 24B while illuminating a subject with the other of movable light source 24A, 24B by misaligning the second light generator 12B relative to the first light generator 12A.
(38) An alternative support leg 116 is a monolithic plastic component as shown in
(39) An alternative flashlight 10, substantially similar to flashlight 10, is shown in
(40) Flashlight 10 is configured for use on its own or with a support base 212, shown in
(41) Support base 212 illustratively includes a pedestal 214, a column 216 and a charging system 218 as shown in
(42) Column 216 is formed to include a slot 222 sized to receive support leg 216 of flashlight 10 and a notch 224 configured to receive distal ends 30A, 30B of light generators 12A, 12B as shown in
(43) Charging system 218 is configured to charge the power sources 44A, 44B of first and second light generators 12A, 12B. Charging system 218 illustratively includes a power coil 230 and a power cable 232 as shown in
(44) First and second light generators 12A, 12B are coupled to axle 14 for movement about pivot axis 18 and each moves from a number of use positions to a charge position. In the use positions, distal end 30A, 30B of first and/or second light generators 12A, 12B are spaced apart from column 222 and are arranged to emit light from movable light sources 24A, 24B in a predetermined direction. In the charge position, distal end 30A, 30B of first and/or second light generators 12A, 12B are located adjacent to column 222 and are received in notch 224 of column 216 as shown in