IP Library › Granted Patent US 8,608,338
Granted Patent B2
US 8,608,338 · App. 13/094,958 · Granted Dec 17, 2013

Light source unit

Inventors: Yuto Suzuki (Osaka, JP); Tomohisa Tajiri (Osaka, JP)
Assignee: Funai Electric Co., Ltd.
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Quick Facts
Patent No.
US 8,608,338
App. No.
13/094,958
Granted
Dec 17, 2013
Kind
B2
Abstract

A light source unit includes an LED mount bar and a set of LEDs. The LED mount bar has an inside channel that is located at a center portion of the LED mount bar, and outside channels that are located at outside portions of the LED mount bar, respectively. The set of LEDs is disposed in the inside channel and the outside channels. The set of LEDs is ranked into a plurality of chromaticity regions within a predetermined chromaticity range in a chromaticity coordinate system and ranked into a plurality of luminous flux ranges according to a luminous flux value of the LEDs, respectively. The inside channel including a plurality of first LEDs from a subset of the set of LEDs. The subset of LEDs is ranked in a predetermined chromaticity region of the chromaticity regions and ranked in a predetermined luminous flux range of the luminous flux ranges.

Claims (31)

1. A light source unit comprising:

an LED mount bar having first and second inside channels that are located at a center portion of the LED mount bar such that the first and second inside channels are arranged adjacent to each other on opposite sides of a longitudinal center point of an entire length of the LED mount bar, and first and second outside channels that are located at outside portions of the LED mount bar, respectively, with the outside portions being disposed longitudinal outside of the LED mount bar relative to the center portion, respectively; and

a set of LEDs disposed in the first and second inside channels and the first and second outside channels, the set of LEDs being ranked into a plurality of chromaticity regions within a predetermined chromaticity range in a chromaticity coordinate system and ranked into a plurality of luminous flux ranges according to a luminous flux value of the LEDs, respectively, each of the first and second inside channels including a plurality of first LEDs from a subset of the set of LEDs, the subset of LEDs being ranked in a predetermined chromaticity region of the chromaticity regions and ranked in a predetermined luminous flux range of the luminous flux ranges,

the chromaticity regions including first and second chromaticity regions, the first chromaticity region being positioned at a center region within the chromaticity range in the chromaticity coordinate system, the second chromaticity region being positioned on a periphery of the first chromaticity region within the chromaticity range in the chromaticity coordinate system such that the second chromaticity region entirely surrounds the first chromaticity region within the chromaticity range in the chromaticity coordinate system,

the luminous flux ranges including first and second luminous flux ranges, the first luminous flux range having a larger luminous flux value than the second luminous flux range,

the first LEDs being from the subset of LEDs that is ranked in the first chromaticity region and ranked in the first luminous flux range,

each of the first and second outside channels including a plurality of second LEDs from the set of LEDs,

the second LEDs being only and arbitrarily from outside of the subset of LEDs, the outside of the subset of LEDs including LEDs ranked in the first and second chromaticity regions.

2. The light source unit according to claim 1 , wherein

the outside of the subset of LEDs includes LEDs ranked in the second chromaticity region and ranked in the second luminous flux range.

3. The light source unit according to claim 2 , wherein

the first inside channel is located at the center portion of the LED mount bar between the longitudinal center point of the LED mount bar and the first outside channel,

the second inside channel is located at the center portion of the LED mount bar between the longitudinal center point of the LED mount bar and the second outside channel.

4. The light source unit according to claim 1 , wherein

the first inside channel is located at the center portion of the LED mount bar between the longitudinal center point of the LED mount bar and the first outside channel,

the second inside channel is located at the center portion of the LED mount bar between the longitudinal center point of the LED mount bar and the second outside channel.

5. A method for making a light source unit, the method comprising:

providing first and second inside channels and first and second outside channels on an LED mount bar, the first and second inside channels being located at a center portion of the LED mount bar such that the first and second inside channels are arranged adjacent to each other on opposite sides of a longitudinal center point of an entire length of the LED mount bar, the first and second outside channels being located at outside portions of the LED mount bar, respectively, with the outside portions being disposed longitudinal outside of the LED mount bar relative to the center portion, respectively;

providing a set of LEDs, the set of LEDs being ranked into a plurality of chromaticity regions within a predetermined chromaticity range in a chromaticity coordinate system and ranked into a plurality of luminous flux ranges according to a luminous flux value of the LEDs, respectively;

selecting a plurality of first LEDs from a subset of the set of LEDs, the subset of LEDs being ranked in a predetermined chromaticity region of the chromaticity regions and ranked in a predetermined luminous flux range of the luminous flux ranges;

mounting the first LEDs on each of the first and second inside channels of the LED mount bar;

selecting a plurality of second LEDs from the set of LEDs; and

mounting the second LEDs on each of the first and second outside channels of the LED mount bar,

the chromaticity regions including first and second chromaticity regions, the first chromaticity region being positioned at a center region within the chromaticity range in the chromaticity coordinate system, the second chromaticity region being positioned on a periphery of the first chromaticity region within the chromaticity range in the chromaticity coordinate system such that the second chromaticity region entirely surrounds the first chromaticity region within the chromaticity range in the chromaticity coordinate system,

the luminous flux ranges including first and second luminous flux ranges, the first luminous flux range having a larger luminous flux value than the second luminous flux range,

the first LEDs being from the subset of LEDs that is ranked in the first chromaticity region and ranked in the first luminous flux rang,

the selecting of the second LEDs from the set of LEDs includes selecting the second LEDs only and arbitrarily from outside of the subset of LEDs, the outside of the subset of LEDs including LEDs ranked in the first and second chromaticity regions.

6. The light source unit according to claim 1 , wherein

the first LEDs include LEDs only from the subset of LEDs.

7. The method according to claim 5 , wherein

the selecting of the first LEDs from the subset of the set of LEDs includes selecting the first LEDs only from the subset of LEDs.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2011
From: SUZUKI, YUTO; TAJIRI, TOMOHISA
To: FUNAI ELECTRIC CO., LTD.
Reel/Frame 026185/0949 →
Priority Claims (2)
JP 2010-106464 · May 6, 2010 · national
JP 2011-056120 · Mar 15, 2011 · national
Continuity (1)
Related Publication 20110273873A1 · Nov 10, 2011