Camera strobe having multi-led packages
Abstract
First and second multi-LED packages are installed on a carrier. Each package includes its own emitting diodes that are series coupled to each other and that are encased within a single, internally reflective package having two external terminals. Each package has a light output face from which light, produced by all of the emitting diodes contained therein is emitted in response to a forward current passing through the two terminals. Each package also has phosphor mediums each positioned to be stimulated by primary light of a respective one of its contained emitting diodes, and in response emit secondary wavelength-converted light that emerges from the light output face and is combined with some of the primary light to yield white light. Other embodiments are also described and claimed.
Claims
exact text as granted — not AI-modified1 . An illumination device comprising:
a first multi-LED package that includes a plurality of first emitting diodes that are series coupled to each other and that are encased within a single package having first and second external terminals, wherein the first multi-LED package further comprises a plurality of first phosphor mediums positioned to be stimulated by primary light of the first emitting diodes, and in response emit secondary wavelength-converted light; a second multi-LED package that includes a plurality of second emitting diodes that are series coupled to each other and that are encased within a single package having first and second external terminals, wherein the second multi-LED package further comprises a plurality of second phosphor mediums positioned to be stimulated by primary light of the second emitting diodes, and in response emit secondary wavelength-converted light; and a carrier on which the first and second multi-LED packages are mounted and having conductors that are electrically coupled to the first and second external terminals of each of the first and second multi-LED packages.
2 . The device of claim 1 wherein the plurality of first emitting diodes, that are series coupled to each other, form a high voltage LED having a turn on voltage greater than 20 Volts dc across the two terminals.
3 . The device of claim 1 wherein the plurality of first emitting diodes comprise at least nine emitting diodes that are series coupled.
4 . The device of claim 3 wherein each of the first phosphor mediums has a smaller surface area than a respective one of the first emitting diodes such that the first phosphor medium does not overlap an adjacent emitting diode.
5 . The device of claim 3 wherein the plurality of first phosphor mediums include at least three phosphor mediums having three different colors, respectively,
and wherein the plurality of second phosphor mediums include at least three phosphor mediums having said three different colors.
6 . The device of claim 5 wherein individual size and overall arrangement of the first and second phosphor mediums are such that as a whole light output faces of the first and second packages which exposes all of the first and second phosphor mediums appear to be the same color when the illumination device is turned off, as viewed by a person twenty centimeters away from the illumination device.
7 . The device of claim 5 wherein the three different colors are yellow, green and orange.
8 . The device of claim 5 further comprising a Fresnel lens structure that covers all of the first and second phosphor mediums.
9 . The device of claim 3 wherein individual size and overall arrangement of the first and second phosphor mediums are such that as a whole light output faces of the first and second packages which expose the first and second phosphor mediums appear to be the same color when the illumination device is turned off, as viewed by a person twenty centimeters away from the illumination device.
10 . The device of claim 9 wherein the plurality of first emitting diodes, that are series coupled to each other, form a high voltage LED having a turn on voltage greater than 20 Volts dc across the first and second external terminals of the first multi-LED package.
11 . The device of claim 9 wherein each of the plurality of first emitting diodes is a separate semiconductor die or chip having a first p contact that is coupled to a p-type region and a second p contact that is coupled to an n-type region.
12 . The device of claim 1 wherein the plurality of second emitting diodes, that are series coupled to each other, form a high voltage LED having a turn on voltage greater than 20 Volts dc across the first and second external terminals of the second multi-LED package.
13 . The device of claim 1 wherein each of the plurality of first emitting diodes is a separate semiconductor die or chip having a first p contact that is coupled to a p-type region and a second p contact that is coupled to an n-type region.
14 . A portable electronic camera device, comprising:
a portable electronic device housing having integrated therein a digital camera and an illumination device, wherein the digital camera includes exposure control circuitry to control operation of the illumination device as a photography strobe through a current ratio control circuit, and wherein the illumination device includes
a first multi-LED package that includes a plurality of first emitting diodes that are encased within a single package having first and second terminals, wherein the package has a light output face from which light, produced by the first emitting diodes in response to a first current passing through the first and second terminals, is to emerge,
a second multi-LED package that includes a plurality of second emitting that are encased within a single package having first and second terminals, wherein the package has a light output face from which light, produced by the second emitting diodes in response to a second current passing through the first and second terminals, is to emerge, and
a carrier on which the first and second multi-LED packages are mounted and having wires that electrically couple the first and second terminals of each of the first and second multi-LED packages to the current ratio control circuit,
wherein a current ratio of the first and second currents is adjustable by the current ratio control circuit.
15 . The camera device of claim 14 wherein the first multi-LED package further comprises
a plurality of first phosphor mediums positioned to be stimulated by primary light of the first emitting diodes, and in response emit secondary wavelength-converted light that emerges from the light output face of the first multi-LED package,
wherein the second multi-LED package further comprises a plurality of second phosphor mediums positioned to be stimulated by primary light of the second emitting diodes, and in response emit secondary wavelength-converted light that emerges from the light output face of the second multi-LED package,
and wherein individual size and overall arrangement of the first and second phosphor mediums are such that as a whole the first and second phosphor mediums lack color variation, when the illumination device is turned off and is being viewed by a person twenty centimeters away from the illumination device.
16 . The camera device of claim 15 wherein the current ratios are adjustable, so that a combined illumination from the first multi-LED package is white, while a combined illumination from the second multi-LED package is a warmer white.
17 . The camera device of claim 15 wherein the illumination device further comprises a Fresnel lens structure that covers the first and second multi-LED packages.
18 . The camera device of claim 15 wherein the plurality of first phosphor mediums include at least three phosphor mediums having three different colors, respectively,
and wherein the plurality of second phosphor mediums include at least three phosphor mediums having said three different colors.
19 .- 20 . (canceled)Join the waitlist — get patent alerts
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