IP Library Granted Patent US 10,475,363
Granted Patent B2
US 10,475,363 · App. 14/500,458 · Granted Nov 12, 2019

Displays with adaptive spectral characteristics

Inventors: Cheng Chen (San Jose, CA); Deniz Teoman (San Mateo, CA); Jiaying Wu (San Jose, CA); John Z. Zhong (Cuptertino, CA); Jun Jiang (Campbell, CA)
Assignee: Apple Inc.
G09G3/2003G09G3/3406G09G3/3413G09G2310/08G09G2320/064G09G2320/0633G09G2320/0666G09G2320/08G09G2360/144
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Quick Facts
Patent No.
US 10,475,363
App. No.
14/500,458
Granted
Nov 12, 2019
Kind
B2
Abstract

An electronic device may include a display having an array of display pixels and having display control circuitry that controls the operation of the display. The display control circuitry may adaptively adjust the spectral characteristics of display light emitted from the display to achieve a desired effect on the human circadian system. For example, the display control circuitry may adjust the spectral characteristics of blue light emitted from the display based on the time of day such that a user's exposure to the display light may result in a circadian response similar to that which would be experienced in natural light. The spectral characteristics of blue light emitted from the display may be adjusted by adjusting the relative maximum power levels provided to blue pixels in the display or by shifting the peak wavelength associated with blue light emitted from the display.

Claims (29)

1. A method for displaying images on an array of display pixels in a display having a white point, wherein the array of display pixels includes blue display pixels, the method comprising:

with display control circuitry, gathering time of day information from a time source; and

adjusting spectral characteristics of display light emitted from the display based on the time of day information while maintaining the white point of the display on a black body curve, wherein adjusting the spectral characteristics of the display light comprises adjusting an overall intensity of blue light emitted from the display based on the time of day information, and wherein adjusting the overall intensity of blue light emitted from the display comprises adjusting maximum power levels delivered to the blue display pixels without shifting a peak wavelength of the blue light.

2. The method defined in claim 1 further comprising:

determining a daylight level based on the time of day information; and

adjusting the spectral characteristics of blue light emitted from the display based on the daylight level.

3. The method defined in claim 2 wherein adjusting the spectral characteristics of the blue light emitted from the display comprises attenuating the blue light emitted from the display based on the time of day information.

4. The method defined in claim 1 wherein adjusting the spectral characteristics of the display light based on the time of day information comprises:

determining whether the time of day information is associated with daylight hours or nighttime hours; and

in response to determining that the time of day information is associated with nighttime hours, setting a maximum luminance for blue light at a level that is lower than that used during daylight hours.

5. A method for displaying images on an array of display pixels in a display having a white point, wherein the array of display pixels includes blue display pixels, the method comprising:

with location detection circuitry, gathering geographic location information;

with a light sensor, gathering ambient lighting information; and

adjusting spectral characteristics of display light emitted from the display based on the geographic location information and the ambient lighting information while maintaining the white point of the display on a black body curve, wherein adjusting the spectral characteristics of the display light comprises adjusting an overall intensity of blue light emitted from the display based on the geographic location information and the ambient light information, and wherein adjusting the overall intensity of blue light emitted from the display comprises adjusting maximum power levels delivered to the blue display pixels without shifting a peak wavelength of the blue light emitted from the display.

6. The method defined in claim 5 further comprising:

determining a daylight level based on the geographic location information and the ambient lighting information; and

adjusting the spectral characteristics of the blue light emitted from the display based on the daylight level.

7. The method defined in claim 6 wherein adjusting the spectral characteristics of the blue light emitted from the display comprises attenuating the blue light emitted from the display based on the daylight level.

8. The method defined in claim 7 wherein the display pixels include blue display pixels and wherein adjusting the spectral characteristics of the display light comprises adjusting maximum power levels delivered to the blue display pixels based on the daylight level.

9. A method for displaying images on an array of display pixels in a display having a white point, wherein the array of display pixels comprises blue display pixels, the method comprising:

with control circuitry, determining a daylight level; and

adjusting spectral characteristics of blue light emitted from the display based on the daylight level while maintaining the white point of the display on a black body curve, wherein adjusting the spectral characteristics of the blue light emitted from the display comprises adjusting an overall intensity of the blue light based on the daylight level, and wherein adjusting the overall intensity of the blue light comprises adjusting maximum power levels delivered to the blue pixels without shifting a peak wavelength of the blue light emitted from the display.

10. The method defined in claim 9 wherein determining the daylight level comprises:

gathering ambient lighting information from a light sensor; and

determining the daylight level based on the ambient lighting information.

11. The method defined in claim 9 wherein determining the daylight level comprises:

gathering time of day information from a time source;

gathering geographic location information from location detection circuitry; and

determining the daylight level based on the time of day information and the geographic location information.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2014
From: CHEN, CHENG; TEOMAN, DENIZ; WU, JIAYING; ZHONG, JOHN Z.; JIANG, JUN
To: APPLE INC.
Reel/Frame 033843/0227 →
Continuity (2)
Provisional Application 62006781 · Jun 2, 2014
Related Publication 20150348468A1 · Dec 3, 2015
Cited By (3)
US 12,480,625 US 12,504,661 US 12,626,644