Aircraft passenger reading light, aircraft comprising an aircraft passenger reading light, and method of operating an aircraft passenger reading light
An aircraft passenger reading light comprises a plurality of pairs of light sources. Each of the plurality of pairs of light sources includes: a first light source for emitting light having a first color, and a second light source for emitting light having a second color, wherein the second color differs from the first color. The aircraft passenger reading light further comprises, for each of the plurality of pairs of light sources: a first optical system for forming a first light output from the light emitted by the first light source, and a second optical system for forming a second light output from the light emitted by the second light source.
1 . An aircraft passenger reading light, comprising:
a plurality of pairs of light sources, wherein each of the plurality of pairs of light sources includes:
a first light source for emitting light having a first color, and
a second light source for emitting light having a second color, wherein the second color differs from the first color; and
wherein the aircraft passenger reading light comprises, for each of the plurality of pairs of light sources:
a first optical system for forming a first light output from the light emitted by the first light source; and
a second optical system for forming a second light output from the light emitted by the second light source;
wherein the first light source, the second light source, the first optical system, and the second optical system are arranged and configured to direct the first light output and the second light output to a pair-specific reading zone, such that the first light output and the second light output at least partially overlap for providing a mixed-color reading light output in the pair-specific reading zone,
wherein the plurality of pairs of light sources and the respective first optical system and the second optical system are arranged in an array arrangement,
wherein the array arrangement includes at least two columns of pairs of light sources and at least three rows of pairs of light sources thereby forming at least six reading zones, and
wherein the aircraft passenger reading light is a single light configured to provide light to a row of passenger seats including at least two seats.
2 . The aircraft passenger reading light according to claim 1 , wherein the first light source, the second light source, the first optical system, and the second optical system are arranged and configured such that, at a distance of 50 cm from the aircraft passenger reading light, the first light output and the second light output are offset from each other by less than 20 mm.
3 . The aircraft passenger reading light according to claim 1 ,
wherein each of the first and second optical systems includes a light transmissive optical element,
wherein each of the first and second optical systems includes at least one of a lens or a prism; or
wherein each of the first and second optical systems includes a light reflective optical element.
4 . The aircraft passenger reading light according to claim 1 ,
wherein at least one optical element of the first optical system and at least one optical element of the second optical system are formed integrally with each other, or
wherein the first optical system and the second optical system are formed separately from each other.
5 . The aircraft passenger reading light according to claim 1 ,
wherein the plurality of pairs of light sources comprise at least one group of pairs of light sources,
wherein respective pair-specific reading zones of the at least one group of pairs of light sources are laterally offset from each other, and
wherein the respective pair-specific reading zones of the at least one group of pairs of light sources are associated with different passenger seats of a particular passenger seat row location.
6 . The aircraft passenger reading light according to claim 5 ,
wherein the plurality of pairs of light sources comprise multiple groups of pairs of light sources,
wherein the respective pair-specific reading zones of different ones of the multiple groups of pairs of light sources are offset in a longitudinal direction of an aircraft in which the aircraft passenger reading light is installed from each other, and
wherein the respective pair-specific reading zones of different ones of the multiple groups of pairs of light sources are associated with different longitudinal passenger seat row locations.
7 . The aircraft passenger reading light according to claim 6 ,
wherein the multiple groups of pairs of light sources and the respective first and second optical systems are arranged in adjacent building blocks along the array arrangement.
8 . The aircraft passenger reading light according to claim 7 ,
wherein the plurality of pairs of light sources and the respective first and second optical systems are arranged in a rectangular array arrangement, and
wherein the multiple groups of pairs of light sources and the respective first and second optical systems are arranged in multiple rows of the array arrangement.
9 . The aircraft passenger reading light according to claim 1 , wherein, for each of the plurality of pairs of light sources, the first and second light outputs are angled with, substantially perpendicular to, a main light output direction of the first and second light sources.
10 . The aircraft passenger reading light according to claim 1 ,
wherein the first color is warm white, having a color temperature in a first range of between 2700 K and 3600 K and wherein the second color is cold white having a color temperature in a second range of between 4500 K and 6000 K; or
wherein the first color is white, wherein the second color is a different color than white, and wherein the second color is at least one of amber or pink.
11 . The aircraft passenger reading light according to claim 1 , wherein the aircraft passenger reading light further comprises:
a first power supply connector, a second power supply connector and a third power supply connector for coupling the aircraft passenger reading light to an aircraft on-board power supply; and
a multi-state switching arrangement having a plurality of switching states;
wherein each of the first light sources comprises a first electrical terminal and a second electrical terminal, respectively;
wherein the first electrical terminals of the plurality of first light sources are electrically coupled to the first power supply connector; and
wherein the second electrical terminals of the plurality of first light sources are coupled via the multi-state switching arrangement to the second power supply connector;
wherein each of the second light sources comprises a first electrical terminal and a second electrical terminal, respectively;
wherein the first electrical terminals of the plurality of second light sources are electrically coupled to the third power supply connector; and
wherein the second electrical terminals of the plurality of second light sources are coupled via the multi-state switching arrangement to the second power supply connector;
wherein each of the plurality of switching states couples the second electrical terminals of the first and second light sources of a single one of the plurality of groups of the plurality of pairs of light sources to the second power supply connector and de-couples the second electrical terminals of the first and second light sources of the other groups of the plurality of pairs of light sources from the second power supply connector.
12 . The aircraft passenger reading light according to claim 1 , comprising at least one dimmer for dimming the light intensity of the first light sources and/or for dimming the light intensity of the second light sources.
13 . An aircraft, comprising a passenger cabin with a plurality of passenger seat rows and a plurality of aircraft passenger reading lights in accordance with claim 1 , wherein the plurality of aircraft passenger reading lights are arranged above the plurality of passenger seat rows.
14 . A method of operating an aircraft passenger reading light according to claim 1 , wherein the method includes:
for at least a subset of the plurality of pairs of light sources, simultaneously operating the first light source and the second light source for generating mixed-color reading light outputs in the respective pair-specific reading zones.
15 . A method according to claim 14 , wherein the method includes:
for at least the subset of the plurality of pairs of light sources, setting a light intensity for at least one of the first light source and the second light source for controlling a color of the reading light output of the aircraft passenger reading light.