IP Library › Granted Patent US 10,331,167
Granted Patent B2
US 10,331,167 · App. 15/678,671 · Granted Jun 25, 2019

Systems and methods for automated screen color temperature control

Inventors: Trevor Hunter (Toronto, CA); Matt Clements (Oshawa, CA); George Talusan (Toronto, CA); Paul McDougall (Toronto, CA); William Chaban (Toronto, CA); Zheng Xu (Thornhill, CA); Steve Li (Richmond Hill, CA); Jeffrey Ng Thow Hing (Toronto, CA)
Assignee: RAKUTEN KOBO, INC.
G06F1/1626A45C11/00A45C13/1069A45F5/00F21V3/00F21V23/003F21V33/0056G02F1/133308G06F1/1632G06F1/1698G06F1/203G06F1/3296G09G3/3413G09G5/02G09G5/10H01H13/83H01Q1/22H04M1/0279H04M1/04H04M1/185H05B33/0857H05B33/0863H05B33/0866H05B33/0872H05B37/0218H05B37/0281H05K5/0017H05K7/1417H05K7/18A45C2011/002A45C2011/003A45C2200/15A45F2200/0516F21W2111/10F21Y2115/10G06F3/041G06F3/0488G06F3/04847G06F2200/1633G06F2200/1634G09G2320/0626G09G2320/0666G09G2320/08G09G2354/00G09G2360/141G09G2360/144G09G2360/145G09G2360/16G09G2380/14H04M1/0214H04M1/0245
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,331,167
App. No.
15/678,671
Granted
Jun 25, 2019
Kind
B2
Abstract

An electronic reading device can include an adjustable RGBW front light and an ambient light sensor. Additionally, the electronic reading device can include circuitry configured to determine if a transition between phases has occurred, wherein the phases include a night phase, a sunrise transition phase, a daytime phase, and a sunset transition phase, automatically display a predetermined screen color temperature via the adjustable RGBW front light in response to the transition between phases, determine if a brightness level has changed, and automatically adjust a predetermined mixture of light to be displayed via the adjustable RGBW front light such that the screen color temperature does not change in response to the changing brightness level.

Claims (71)

1. An electronic reading device, comprising:

an adjustable RGBW front light;

an ambient light sensor; and

circuitry configured to

determine if a transition between phases has occurred, wherein the phases include a night phase, a sunrise transition phase, a daytime phase, and a sunset transition phase,

automatically display a predetermined screen color temperature via the adjustable RGBW front light in response to the transition between phases,

determine if a brightness level has changed, and

automatically adjust a predetermined mixture of light to be displayed via the adjustable RGBW front light such that the screen color temperature does not change in response to the changing brightness level.

2. The electronic reading device of claim 1 , wherein the night phase is from a bedtime to a predetermined sunrise, the bedtime being a default setting or manually selected by a user.

3. The electronic reading device of claim 2 , wherein the predetermined sunrise includes a manually selected time of day, a default setting, or an automatically adjusted setting corresponding to the time of sunrise changing throughout a year.

4. The electronic reading device of claim 2 , wherein the predetermined screen color temperature of the night phase is 1900K.

5. The electronic reading device of claim 1 , wherein the sunrise transition phase is from the predetermined sunrise to the start of the daytime phase such that the predetermined screen color temperature transitions from 1900K at the beginning of the sunrise transition phase to 6400K at the beginning of the daytime phase.

6. The electronic reading device of claim 1 , wherein the daytime phase is from a predetermined beginning of the daytime phase to a predetermined beginning of the sunset transition phase.

7. The electronic reading device of claim 1 , wherein the sunset transition phase is from a predetermined beginning of the sunset transition phase to the bedtime, wherein the bedtime is the beginning of the night phase, such that the predetermined screen color temperature transitions from 6400K at the beginning of the sunset transition phase to 1900K at the bedtime.

8. The electronic reading device of claim 1 , wherein the circuitry is further configured to

determine if a current phase is the sunrise transition phase,

automatically increase the screen color temperature at a first predetermined rate of change,

determine if the current phase is the sunset transition phase, and

automatically decrease the screen color temperature at a second predetermined rate of change.

9. The electronic reading device of claim 1 , wherein the circuitry is further configured to

receive the bedtime corresponding to the beginning of the night phase,

determine if the screen color temperature is manually adjusted during the sunset transition phase,

determine if the screen color temperature is manually increased within one hour of the selected bedtime,

delay the selected bedtime by one hour when the screen color temperature is manually increased within one hour of the selected bedtime,

determine if the screen color temperature is manually decreased during the sunset transition, and

continue the transition in the sunset transition from the manually adjusted screen color temperature.

10. The electronic reading device of claim 1 , wherein the circuitry is further configured to

determine if the screen color temperature is manually increased during the sunrise transition,

determine if the screen color temperature is manually decreased during the sunrise transition,

delay start of daytime phase by one hour when the screen color temperature is manually decreased during the sunrise transition, and

continue the transition in the sunrise phase from the manually adjusted screen color temperature.

11. The electronic reading device of claim 1 , wherein the circuitry is further configured to

determine if the screen color temperature is manually adjusted during the daytime phase,

display the manually adjusted screen color temperature until the end of the daytime phase, and

cause the starting point of the sunset transition phase to be the manually adjusted screen color temperature.

12. The electronic reading device of claim 1 , wherein the circuitry is further configured to

determine if the screen color temperature is manually adjusted during the night phase,

display the manually adjusted screen color temperature until the end of the night phase, and

cause the starting point of the sunrise transition phase to be the manually adjusted screen color temperature.

13. The electronic reading device of claim 1 , wherein the circuitry is further configured to

determine if the screen color temperature is manually adjusted to less than 1900K,

display the manually adjusted screen color temperature until the beginning of the next sunrise transition, and

cause the starting point of the next sunrise transition to be the manually adjusted screen color temperature.

14. A method, comprising:

determining, via processing circuitry, if a transition between phases has occurred, wherein the phases include a night phase, a sunrise transition phase, a daytime phase, and a sunset transition phase;

automatically displaying, via processing circuitry, a predetermined screen color temperature via an adjustable RGBW front light in response to the transition between phases;

determining, via processing circuitry, if a brightness level has changed based on brightness information received via an ambient light sensor; and

automatically adjusting a predetermined mixture of light to be displayed via the adjustable RGBW front light such that the screen color temperature does not change in response to the changing brightness level.

15. The method of claim 14 , wherein the night phase is from a bedtime to a predetermined sunrise, the bedtime being a default setting or manually selected by a user, and

wherein the predetermined sunrise includes a manually selected time of day, a default setting, or an automatically adjusted setting corresponding to the time of sunrise changing throughout a year.

16. The method of claim 15 , wherein the predetermined screen color temperature of the night phase is 1900K.

17. The method of claim 14 , wherein the sunrise transition phase is from the predetermined sunrise to the start of the daytime phase such that the predetermined screen color temperature transitions from 1900K at the beginning of the sunrise transition phase to 6400K at the beginning of the daytime phase,

wherein the daytime phase is from a predetermined beginning of the daytime phase to a predetermined beginning of the sunset transition phase, and

wherein the sunset transition phase is from a predetermined beginning of the sunset transition phase to the bedtime, wherein the bedtime is the beginning of the night phase, such that the predetermined screen color temperature transitions from 6400K at the beginning of the sunset transition phase to 1900K at the bedtime.

18. The method of claim 14 , further comprising:

determining if a current phase is the sunrise transition phase;

automatically increasing the screen color temperature at a first predetermined rate of change;

determining if the current phase is the sunset transition phase; and

automatically decreasing the screen color temperature at a second predetermined rate of change.

19. The method of claim 14 , further comprising:

receiving the bedtime corresponding to the beginning of the night phase;

determining if the screen color temperature is manually adjusted during the sunset transition phase;

determining if the screen color temperature is manually increased within one hour of the selected bedtime;

delaying the selected bedtime by one hour when the screen color temperature is manually increased within one hour of the selected bedtime;

determining if the screen color temperature is manually decreased during the sunset transition; and

continuing the transition in the sunset transition from the manually adjusted screen color temperature.

20. The method of claim 14 , further comprising:

determining if the screen color temperature is manually increased during the sunrise transition;

determining if the screen color temperature is manually decreased during the sunrise transition;

delaying start of daytime phase by one hour when the screen color temperature is manually decreased during the sunrise transition; and

continuing the transition in the sunrise phase from the manually adjusted screen color temperature.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2017
From: HUNTER, TREVOR; CLEMENTS, MATT; TALUSAN, GEORGE; MCDOUGALL, PAUL; CHABAN, WILLIAM; XU, ZHENG; LI, STEVE; NG THOW HING, JEFFREY
To: RAKUTEN KOBO, INC.
Reel/Frame 043654/0234 →
Continuity (2)
Provisional Application 62375745 · Aug 16, 2016
Related Publication 20180054874A1 · Feb 22, 2018
Cited By (3)
US 12,490,355 US 12,543,255 US 12,684,674