1. Field of the Disclosure
The present disclosure relates to flashlights having handles or gripping surfaces with a clip or clamp integrated therein.
2. Background
There is a significant need among users of flashlights to have some sort of “hands-free” capability, so that the user can have both hands available to work on a task while the flashlight illuminates a work space. Some currently available flashlights, however, require additional bulky mechanisms that need to be affixed to the flashlight, and take up a lot of space, to provide this utility. In addition, other currently available flashlights that can illuminate a space and allow for hands-free operation by a user are not portable, and can not be easily manipulated or carried around by the user. There are no flashlights available that can provide both capabilities at the same time.
Accordingly, there is a need for a flashlight that can provide hands-free operation for a user, while simultaneously being easily manipulated or portable.
The present disclosure overcomes these and other disadvantages of the flashlights of the prior art by providing a novel illumination device, such as a flashlight, that integrates a clamp or clip into a handle or gripping portion of the device. This allows the flashlight to be used in either hands-free or portable modes.
Thus, in one embodiment, the present disclosure provides an illumination device. The illumination device comprises a head comprising a light source, a support member, wherein the head is connected to the support member, a clip having one end connected to the support member, and an opposite end having a gripping portion, and a battery compartment within the head.
In another embodiment, the present disclosure provides an illumination device, comprising a head comprising a light-emitting portion and a battery compartment and a handle rotatably connected to the head. The handle comprises a clip integrally formed therein.
In any of the embodiments of the present disclosure, the head may have a cylindrical shape with a diameter that tapers from one end to the other. The head may also have a removable rim, so that a user can open up the head to replace batteries therein. The rim can be connected to the head at an end opposite the end of the head that is connected to the clip or handle.
The terms “top”, “bottom”, “front”, “back”, and “side” are merely used for ease of description, and do not impart any specific orientation on the devices of the present disclosure.
Referring to
The present disclosure therefore provides a flashlight 10, that a user can use in hands-free operation by attaching it to a fixed object, which still remains portable for the user. Main arm 72 and clip arm 74 define a clip that is integrated into the handle 70, so that handle 70 can double as a grip for the user for portable use, and can also be used to affix flashlight 10 to a stationary object. This is a significant improvement over the flashlights of the prior art, which use cumbersome methods to affix the flashlight to a stationary object, and which are not portable.
For ease of describing flashlight 10, the words “front,” “back,” “top,” and “bottom” will be used from the point of view of a user pointing head 20 at an object, with clip arm 74 on top of main arm 72. These directional terms are used only for describing flashlight 10, and are not meant to limit the interpretation of the features discussed below.
Referring specifically to
In the shown embodiment, device 80 is a torsion spring. The present disclosure, however, contemplates any devices 80 that can create tension between main arm 72 and clip arm 74, such as tension springs, extension springs, compression springs, integral plastic springs, wire or coil springs, and flat springs. These devices can be positioned around the axis of rotation of clip arm 74, or in another location.
Main arm 72 and clip arm 74 have grip surfaces 73 and 75, respectively. Grip surfaces 73 and 75 can have generally flat profiles, or can also be slightly convex. This allows for easy gripping and manipulation by a user, between either a thumb and forefinger, or with a full hand. Grip surfaces 73 and 75 may also have plastic overmolds thereon (not shown). The interior surfaces of gripping portion 76 may have overmolds as well.
Thus, a user can grasp handle 70, and squeeze a front end of clip arm 74 toward main arm 72, which opens gripping portion 76. Gripping portion 76 can then be affixed to an object, to allow for hands-free operation of flashlight 10. Alternatively, the user can grasp or hold handle 70, and use flashlight 10 in a portable manner. This dual capability of handle 70 provides a convenience not found in the prior art. Currently available flashlights having clamps that can be affixed to objects are not designed for portable use. Currently available flashlights that are portable, however, do not have the ability to be affixed to an object.
Head 20 has body 22 and tapered end 24. Body 22 has a substantially cylindrical profile, and tapered end 24 narrows in the direction of handle 70. Body 22 also has rim 26, lens 27, and reflector 28 connected thereto. A gasket 29 can ensure a tight fit between rim 26 and body 22. When assembled, head 20 has a battery compartment 50 and light source or bulb 25 therein, discussed in greater detail below. These components are concerned with the optics of flashlight 10, and ensure that a proper beam is directed out of head 20. Bulb 25 can be a light-emitting diode (LED).
Body 22 is advantageous in that it is a uniform, one-piece solid body, with the exception of the aperture for button 90 and pivot wheel 30 discussed below. To replace batteries or the light source, a user simply has to remove and replace rim 26 and lens 28, in the manner discussed in greater detail below. The one-piece construction of body 22 also means that is sturdier, more durable, and easier to manufacture than other lights which have multi-component heads or bodies. Some lights, for example, have battery compartments that come out of a side of the head on a tray or similar mechanism. In addition to being harder to manufacture, these devices are more prone to breaking. The tapered cylindrical shape of body 22 also provides an ergonomic design.
Head 20 can also have a button 90 connected to an exterior surface thereof. As shown in
Body 22 has a pivot wheel 30 connected thereto. Pivot wheel 30 can be a separate component that is connected or fastened to body 22, or can be integrally formed as one component with body 22. Flashlight 10 further has mount 40, to which pivot wheel 30 is operably connected. Mount 40 can have a pivot portion 42, and a rotary portion 44. Pivot portion 42 can have a first loop 45 and a second loop 46. A pivot pin 47 can pass through the open portions of first loop 45 and second loop 46, and also through a hole 35 within pivot wheel 30, thus connecting pivot wheel (and by extension head 20) to mount 40. In this manner, head 20 can rotate about the longitudinal axis of pivot pin 47, in a direction away from, and back toward, rotary portion 44 of mount 40.
In one embodiment, pivot wheel 30 can rotate about pivot portion 42 in the manner described above, and the user can place head 20 in any position along the arc of rotation. A friction fit between pivot wheel 30, first loop 45, and second loop 46 ensures that head 20 stays in the desired position. In another embodiment, pivot wheel 30 can have a plurality of bumps or depressions disposed thereon, which would mate with corresponding structures on pivot wheel 30. In this manner, there can be one or more stops along the arc of rotation of head 20.
Rotary portion 44 of mount 40 can be separately formed from, and connected to, pivot portion 42. Alternatively, the two can be integrally formed as one component. Rotary portion 44 can be rotatably connected to main arm 72 of handle 70, and can rotate about a longitudinal axis of handle 70. As shown in
Any of the above described components can be made of materials such as acrylonitrile butadiene styrene (ABS), nylon, or other plastics, or can be made of cast or stamped metal.
While the present disclosure has been described with reference to one or more exemplary embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the present disclosure. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the disclosure without departing from the scope thereof. Therefore, it is intended that the present disclosure not be limited to the particular embodiment(s) disclosed as the best mode contemplated for carrying out this disclosure, but that the disclosure will include all embodiments falling within the scope of the claims.
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