IP Library › Granted Patent US 10,354,617
Granted Patent B2
US 10,354,617 · App. 15/839,660 · Granted Jul 16, 2019

Luminescence shock avoidance in display devices

Inventor: Kai Achim Pantfoerder (Cupertino, CA)
Assignee: Apple Inc.
G09G5/10G06F3/0416G09G3/20G09G3/2003G09G2320/0606G09G2320/0626G09G2320/0633G09G2320/0653G09G2330/021G09G2360/144
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Quick Facts
Patent No.
US 10,354,617
App. No.
15/839,660
Granted
Jul 16, 2019
Kind
B2
Abstract

A luminescence shock avoidance algorithm selectively limits the brightness level of a display device when the display device is activated in a dark environment to prevent the temporary vision impairment that can occur when a display device is activated in a dark environment. The algorithm receives the state of the display (e.g. on or in standby mode), and can optionally receive an ambient lighting value from an ambient light sensor and a user-selectable manual brightness adjustment setting to determine whether luminescence shock avoidance should even be triggered, and if it is triggered, how much should the brightness level of the display be limited.

Claims (35)

1. An electronic device, comprising:

a display;

an ambient light sensor that detects an ambient light level while the display is off, wherein the display is at a zero brightness level while the display is off; and

control circuitry that increases a brightness of the display from the zero brightness level based on the detected ambient light level when the display is turned on.

2. The electronic device defined in claim 1 , wherein the control circuitry increases the brightness of the display from the zero brightness level to a first brightness level when the detected ambient light level is below a threshold.

3. The electronic device defined in claim 2 , wherein the control circuitry increases the brightness of the display from the zero brightness level to a second brightness level when the detected ambient light level is above the threshold, and wherein the second brightness level is greater than the first brightness level.

4. The electronic device defined in claim 3 , wherein the control circuitry increases the brightness of the display based on a brightness adjustment function, and wherein the second brightness level is equal to a first normal brightness level determined by the brightness adjustment function for the detected ambient light level that is above the threshold.

5. The electronic device defined in claim 4 , wherein the brightness adjustment function is selected by a user of the electronic device.

6. The electronic device defined in claim 4 , wherein the second brightness level is less than a second normal brightness level determined by the brightness adjustment function for the detected ambient light level that is below the threshold and wherein the control circuitry increases the brightness of the display from the second brightness level to the second normal brightness level after a predetermined period of time.

7. A method of operating an electronic device having a display, the method comprising:

with an ambient light sensor, producing ambient light data while the display is powered-down; and

with control circuitry, activating the display by adjusting a brightness level of the display from a zero brightness level while the display is powered-down to a non-zero brightness level while the display is activated based on the ambient light data.

8. The method defined in claim 7 , wherein the ambient light data is based on a detected ambient light level, activating the display further comprising:

increasing the brightness level of the display from the zero brightness level to the non-zero brightness level when the detected ambient light level is below a threshold.

9. The method defined in claim 8 , wherein the non-zero brightness level is a first non-zero brightness level, activating the display further comprising:

increasing the brightness of the display from the zero brightness level to a second non-zero brightness level when the detected ambient light level is above the threshold, wherein the second non-zero brightness level is greater than the first non-zero brightness level.

10. The method defined in claim 9 , activating the display further comprising:

increasing the brightness of the display based on a brightness adjustment function, wherein the second non-zero brightness level is equal to a first normal brightness level determined by the brightness adjustment function for the detected ambient light level that is above the threshold.

11. The method defined in claim 10 , wherein the brightness adjustment function is selected by a user of the electronic device.

12. The method defined in claim 10 , wherein the second non-zero brightness level is less than a second normal brightness level determined by the brightness adjustment function for the detected ambient light level that is below the threshold.

13. The method defined in claim 12 , further comprising:

increasing the brightness of the display from the second non-zero brightness level to the second normal brightness level after a predetermined period of time.

14. An electronic device, comprising:

a display;

a sensor that produces sensor data while the display is turned off; and

control circuitry that measures an ambient light level based on the sensor data and turns the display on based on the ambient light level.

15. The electronic device defined in claim 14 , wherein the sensor is an ambient light sensor and wherein the sensor data is ambient light sensor data.

16. The electronic device defined in claim 15 , wherein when the measured ambient light level is above a threshold, the control circuitry turns the display on to a brightness level that is determined based on a user-selectable brightness setting and a brightness function.

17. The electronic device defined in claim 16 , wherein the brightness level is a first brightness level, and wherein when the measured ambient light level is below the threshold, the control circuitry turns the display on to a second brightness level that is determined based on a reduced brightness function but not the user-selectable brightness setting.

18. The electronic device defined in claim 16 , wherein the brightness level is a first brightness level, and wherein when the measured ambient light level is below a threshold, the control circuitry turns the display on to a second brightness level that is determined based on a reduced brightness function and the user-selectable brightness setting.

19. The electronic device defined in claim 16 , wherein the brightness function is determined based on the user-selectable brightness setting.

20. An electronic device, comprising:

a display;

an ambient light sensor that detects an ambient light level; and

control circuitry that increases a brightness of the display from a zero brightness level based on a comparison between the detected ambient light level and a threshold.

Continuity (8)
Continuation 15258937 · Sep 7, 2016
Continuation 14793627 · Jul 7, 2015
Continuation 14279746 · May 16, 2014
Continuation 13777072 · Feb 26, 2013
Continuation 13304176 · Nov 23, 2011
Continuation 11800293 · May 4, 2007
Provisional Application 60878755 · Jan 5, 2007
Related Publication 20180102109A1 · Apr 12, 2018
Cited By (1)
US 12,405,689