This invention relates generally to head-mounted lights and, in particular, to a head-mounted LED light with an integrated iris to adjust light spot size at a working distance.
Head-mounted lights are commonly used by medical and dental professionals to improve visualization in conjunction with various patient procedures. Such lights have improved dramatically over the years, replacing incandescent halogen or xenon lights sources with brighter, more efficient light-emitting diodes (LEDs).
However, there are certain procedures wherein it would be advantageous to adjust spot size while maintaining brightness, uniformity and other beam characteristics. For example, several ENT (ear, nose, and throat) procedures require smaller beams to effectively see inside patient cavities and orifices.
This invention improves upon the existing art by providing a head-mountable light with an adjustable spot size. The apparatus includes a housing with a front opening, a rear portion, and an interior. A power cord extends through the rear portion of the housing and connects to a light-emitting diode (LED) positioned within the interior of the housing. Light from the LED travels through a plurality of beam-forming optical elements coupled to the front opening of the housing to form a spot of light from the LED having a spot size at a working distance from the headlamp. An adjustable iris is situated between the LED and the beam forming optical elements. A manually operated control, accessible on the exterior of the housing, enables a user to adjust the iris and vary the size of the aperture and the spot size of the light at the working distance.
In the preferred embodiment, the manually operated control comprises a rotatable ring on the exterior of the housing, and the plurality of beam-forming optical elements includes a beam-dispersing element and a beam-focusing element. The beam-dispersing element may be a singlet lens, and the beam-focusing element may comprise a doublet lens. The light from the LED strikes the beam-dispersing element directly without an intervening condensing optical element (i.e., condensing lens).
The housing may comprise a two-part housing assembly, including a separate housing component containing the adjustable iris, or a three-part housing assembly, including a first separate housing component containing the adjustable iris and a second separate housing component that contains the plurality of beam-forming optical elements.
The adjustable may be controlled to vary the spot size from 0.5 to 10 cm at a working distance in the range of 12 to 24 inches. The LED is a warm white, neutral white, cool white LED, or a combination thereof. The head-mountable light preferably further includes a mechanical connector adapted to couple the housing to a pair of eyeglass frames, headband or other head-mounting structure.
A power cable 110, penetrating a rear portion of main housing 104, makes electrical connection to light-emitting diode (LED) 112 mounted on printed circuit board (PCB) 113. The invention is not limited in terms of the LED source used, which may comprise a warm, neutral or cool white LED color temperatures: i.e., “warm” at about 3000-3700K; “neutral” in the range of 4000-4700K; and “cool” in the range of 5700-6500K. The output of LED 112 defines an optical axis 114. The light from LED 112 passes through beam-shaping optics to focus the light to a uniform spot over a range of working distances.
While different lenses or lens combinations may be used, in the preferred embodiment, light from LED 112 passes through a singlet diverging lens 116, followed by a larger diameter doublet focusing lens 118. A similar optical arrangement is disclosed and described in my U.S. Pat. No. 8,047,684, the entire content of which is incorporated herein by reference.
Unique to the invention, an adjustable iris 120 is supported within aperture housing 104. An outer ring disposed on the outer barrel of aperture housing 104 adjusts the size of the aperture and the spot of light produced by the LED when the ring is turned. While different working distances may be accommodated, at an exemplary working distance of 16 inches, the spot size may be adjustable from about 0.5 cm up to about 10 cm. As with lenses 116, 118, adjustable opening in the iris is positioned along optical axis 114.
Note that light from LED passes through adjustable iris 120 and strikes the rear surface of lens 116 directly, without any intervening optical elements. In particular, a condenser lens is not required between the LED and singlet lens 116 in this design.
The LED light with user-adjustable iris just described is coupled to a mechanism that facilitates head mounting, preferably with one or more degrees of freedom. For example, as shown, main housing 102 may be connected to mounting tab 124 through threaded fastener 126. Tab 124 may, in turn, be coupled to another structure that facilitates head mounting, including eyeglass frames or a headband, neither of which are shown but may be seen at www.surgitel.com or other websites.
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