This invention relates to lighting and particularly to a portable light suitable for attachment to a helmet, an article of apparel, or other object, and capable of adjustment in order to project light in any desired direction within a range.
Recent efforts by lighting manufacturers have led to the development of various portable lighting devices designed for attachment to a helmet or other article of apparel, such as a vest having multiple external straps known as a “MOLLE” vest, MOLLE being an acronym for MOdular Lightweight Load-carrying Equipment. Examples are described in U.S. Pat. Nos. 6,953,259, 7,549,763, and 7,581,847 and in United States patent publication 2007/0159810. Many such lighting devices are composed of a mounting base that can be securely attached to a helmet, a vest, or the like, and a self-contained light and power source combination that can be attached to the mounting base, adjusted while attached to the mounting base to project light in a desired direction, and removed from the mounting base by a deliberate manipulation for hand-held use, for replacement by another light source, or for mounting on a different mounting base.
The adjustable light in accordance with the invention also comprises a mounting base and a self-contained light and power source module, which can be referred to as a light module. It has the same general objectives as those of the lighting devices mentioned above, but affords improved directional adjustment along with one or more of a number of other desirable features such as ease of attachment and detachment of the light module from the mounting base, secure attachment of the light module to the mounting base, ease of adjustment, stable retention of the light module in any selected position of adjustment, versatility, robustness, lightness in weight, structural simplicity, and the capability of the mounting base to be adapted easily for attachment to any of a wide variety of articles of clothing, headgear or other supports, without changing the basic structure used for removable attachment and adjustment of the light module.
The adjustable light according to the invention comprises a light module and a mounting base. The light module comprises a housing, a light emitter such as a light-emitting diode (LED), an electric power source such as a lithium button cell, and a switch for selectably connecting the power source to the light emitter. The mounting base has a back side attachable to a supporting article, and a front side on which the light module is removably mountable.
In a preferred embodiment, the front face of the mounting base is formed with a pair of slots, each having an elongated arcuate edge extending along its length. The arcuate edges of the two slots are concentric, and the slots are undercut along their arcuate edges so that each slot has an internal retaining surface extending along its elongated arcuate edge and facing toward the back side of the mounting base.
The light module has first and second hooks protruding therefrom, extending respectively into the slots of the mounting base, and engaging the respective internal retaining surfaces of said slots to prevent separation of the light module from the mounting base while permitting rotation of the light module relative to the base about an axis of rotation extending through a center point defined by the concentric arcuate edges.
Each of the slots has a hook entry clearance at one of its ends to permit entry of the hooks into the slots by movement of the light module in the direction of the axis of rotation followed by rotation of the light module. The arcuate edges of the slots extend from the clearances in the same circumferential direction, so that the hooks can be engaged with the retaining surfaces by rotation of the light module in that same circumferential direction.
The mounting base includes a series of protrusions within at least one of the slots. The protrusions are spaced from one another to define a series of depressions, each capable of receiving a part of one of the hooks. The protrusions resist movement of the hook along the length of the slot, but each protrusion is resiliently movable as a whole so that the hooks can move from one depression to a next depression when a rotational force is applied to the light module.
In a preferred embodiment, the front face of the mounting base has first and second opposite edges. One of the slots extends to the first edge, and the hook entry clearance for that slot is formed by an end opening thereof at the first edge. Similarly the other slot extends to the second edge, and its hook entry clearance is formed by an end opening thereof at the second edge.
Preferably, the mounting base includes a sheet of spring metal contained in a polymeric resin housing, the slots are formed in the polymeric resin housing, and the series of protrusions is formed on the sheet of spring metal. The sheet of spring metal can be supported within the mounting base with a space behind its series of protrusions on a side thereof facing toward the back side of the mounting base so that the protrusions are resiliently movable into that space. The sheet of spring metal is preferably formed with a set of fingers protruding from a common connecting part. In that case, each of the protrusions is formed on a different one of the fingers, and the sheet of spring metal is supported within the mounting base with a space behind the set of fingers on a side thereof facing toward the back side of the mounting base, so that the fingers are resiliently movable into said space.
In a preferred embodiment, the mounting base comprises first and second unitary polymeric resin parts fastened to each other so that the front side of the mounting base is a front side of the first part and the back side of the mounting base is a back side of the second part. The sheet of spring metal on which the protrusions are formed is sandwiched between the first and second parts, and preferably supported within the mounting base with a space behind the series of protrusions on a side of the protrusions facing toward the second part, whereby the protrusions are resiliently movable into the space.
In a preferred embodiment, the sheet of spring metal is formed with a set of fingers protruding from a common connecting part, and each of the protrusions is formed on a different one of the fingers. The sheet of spring metal is supported within the mounting base with a space behind the set of fingers on a side of the fingers facing toward the second part, whereby the fingers are resiliently movable into the space.
The protrusion nearest the entry clearance of at least one of the slots is preferably higher than the other protrusions, or otherwise configured to offer greater resistance than each of the other protrusions within that slot to rotation of the light module about its axis of rotation.
In a preferred embodiment, one of the light module and mounting base has a protrusion, and the other of the light module and mounting base has a depression. The protrusion extends into the depression, and the protrusion and depression cooperate with each other to limit rotation of the light module relative to the base to rotation about the axis of rotation when the hooks are engaged with the internal retaining surfaces of the slots.
The hooks of the light module are preferably diametrically opposed to each other on opposite sides of the axis of rotation, and the hook entry clearances are also opposed to each other on opposite sides of the axis of rotation. Thus, the light module can be engaged with the mounting base with the first hook extending into one of the slots and the second hook extending into the other slot, and alternatively with the first hook extending into said other slot and the second hook extending into said one of the slots.
For increased adjustability of the direction of light emitted by the light emitter, the light emitter can be mechanically connected to the housing of the light module by a malleable goose-neck coupling.
In a version of the adjustable light suitable for attachment to a helmet or similar supporting object, a clamping hook extends from the back side of the mounting base and has a clamping end opposed to and spaced from the back side of the mounting base. A screw extending through the mounting base is threaded into a part of the hook for pulling the clamping end toward the back side of the mounting base. The mounting base can thus be attached to an object by clamping a portion of the object between the back side of the mounting base and the clamping end of the clamping hook.
In preferred version of the adjustable light designed for attachment to an object by means of a clamping hook, the mounting base has a central depression, and the light module has a protrusion extending into the central depression. The protrusion and depression cooperate with each other to limit rotation of the light module relative to the base to rotation about an axis of rotation when the hooks are engaged with the retaining surfaces. The screw has a screw head located within the central depression and a shank extending through the mounting base along the axis of rotation and threaded into a part of the hook for puling the clamping end of the hook toward the back side of the mounting base. The head of the clamping screw is accessible for adjustment of the clamping screw when the light module is removed from the mounting base.
Other advantageous features that can be incorporated into the mounting base relate to details of the structure of the mounting base and the protrusions that resist movement of the hooks along the slots.
The second part of the mounting base can be formed with a ring protruding toward the front face of the mounting base. The ring engages a part of the sheet of spring metal and maintains spaces behind both series of protrusions on a side thereof facing toward the second part so that the protrusions of each series are resiliently movable into one of these spaces.
An inner ring protruding from the second part toward the front face of the mounting base and concentric with the space-maintaining ring can fit a circular hole in the sheet of spring metal and prevent radial movement of the sheet relative to the axis of rotation of the light module.
As an alternative to the clamping hook, a pair of opposed, elongated, parallel, elements can extend from the back side of the mounting base. These elements have mutually facing, parallel, V-shaped slots for receiving conforming V-shaped edges of a mounting rail. A clamping screw connects one of the parallel elements to the other and is adapted to urge one of the parallel elements toward the other to clamp the mounting base on the mounting rail.
In another alternative, a flap hinged to the back side of the mounting base is provided to engage a length of flexible webbing on the exterior of an article of apparel in order to mount the adjustable light on the article of apparel.
Details of the adjustable light according to the invention, as well as its many objects and advantages, will be apparent from the following detailed description when read in conjunction with the drawings.
The adjustable light of the invention comprises as its basic elements a mounting base and a self-contained light module which can be quickly and easily attached to, and removed from, the mounting base, and which can be easily turned on and off and easily adjusted to any desired elevational angle in order to project light in a desired direction. The adjustable light has utility in a wide variety of applications, and especially applications in which the light is worn on an article of headgear or other article of apparel.
The mounting base 20, shown in
As shown in
As shown in
As seen in
The hooks are preferably positioned diametrically on opposite sides of the circle defined by battery cover protrusions 56 so that they can enter the end openings 64 and 66 of the slots simultaneously, and so that the light module can be engaged with the mounting base in either of two ways: with hook 60 extending into slot 38, and hook 62 extending into slot 36 as shown in
Details of the structure of the mounting base are shown in exploded view in
As shown in
Protrusion 34A, which is the protrusion of series 34 on plate 30 closest to the entrance opening of slot 38 extends forward slightly farther than the other protrusions of series 34 to impose greater resistance on the rotation of the light module. This greater resistance enables the user to distinguish it by feel from the other protrusions as the light module is rotated, and thereby enables the user to sense when the light module is about to be disengaged from the mounting base. For the same reason, the corresponding protrusion (not shown in
The plate 30 is composed of spring metal, and each of its protrusions is formed on a finger so that the protrusions are independently movable by flexion of the fingers. The flexibility of the fingers, and the fact that they are spaced from the wall 44 of the back part of the mounting base as shown in
In an embodiment of the invention shown in
The front part 99 of the mounting base can be substantially identical to the front part of the mounting base in the first embodiment. Formed on the back part 100, however, is a pair of elongated, parallel protrusions 101 and 102, that can fit into slots 93 and 94 in the back panel 92 of the clip. The tab 107 of the clip can be snapped underneath an L-shaped protrusion 103, formed as a unitary part of back part 100, and a curved edge 104 of back panel, opposite from bent parts 97 and 97, fits underneath protrusions 105 formed as unitary parts of part 100 of the mounting base.
The metal clip 91 can be easily and securely attached to the back part 100 of the mounting base, and used to connect the mounting base to a strap or belt. The inwardly bent hook 98 formed on the front panel 95 of the clip receives an edge of the strap or belt and prevents accidental loss of the mounting base. The light module used with the mounting base 90 can be the same as light module 46 in
In third embodiment, shown in
The slotted part of the mounting base, the sheet of spring metal, and of course, the light module, can be utilized without modification in any of the three embodiments specifically described as well as in various other embodiments. It is only necessary to adopt a mounting base configuration suitable for attachment to the particular surface or article on which the adjustable light is to be mounted. Various other modifications can be made to the mounting base as well as to the light module. For example, the arcuate slots of the mounting base need not have end openings as in