IP Library Granted Patent US 11,430,407
Granted Patent B2
US 11,430,407 · App. 16/860,198 · Granted Aug 30, 2022

Under display sensors, systems and methods

Inventors: Cheng Chieh Huang (Jhongshan District, TW); Wei Chien Wang (New Taipei, TW); Yu Hao Kao (New Taipei, TW)
Assignee: Vishay Semiconductor GmbH
G09G5/10G09G3/006G09G2320/064G09G2330/12G09G2360/141
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Quick Facts
Patent No.
US 11,430,407
App. No.
16/860,198
Granted
Aug 30, 2022
Kind
B2
Abstract

Techniques, devices, and systems disclosed herein include detecting a vertical synchronization (VSYNC) signal cycle, determining a high frequency trigger pulse based on detecting an illumination component's pulse width modulation (PWM) signal, the high frequency trigger pulse corresponding to the illumination component's deactivation times, receiving a delay time period and activating a first sensor, at a first time, within the VSYNC signal cycle, the first time determined based on the high frequency trigger pulse and the delay time period. The first sensor may sense a first sensor reading and may be deactivated after being activated. A display setting may be adjusted based at least on the first sensor reading and the illumination component may be activated after the first sensor is deactivated.

Claims (44)

1. A method for operating a display device, the method comprising:

detecting a vertical synchronization (VSYNC) signal cycle;

determining a high frequency trigger pulse by detecting a pulse width modulation (PWM) signal of an illumination component, the high frequency trigger pulse corresponding to a deactivation time of the illumination component;

determining a delay time period for a first sensor, wherein the first sensor is positioned under a lower surface of a surface layer of the display device such that an illumination component is positioned between the surface layer and the first sensor;

activating the first sensor at a first time within the VSYNC signal cycle, the first time determined based on the high frequency trigger pulse and the delay time period;

modifying an operation of the display device based on activating the first sensor at the first time;

detecting an updated VSYNC signal cycle;

determining that the updated VSYNC signal cycle is at least one of greater than a high frequency threshold (HFTH) and less than a low frequency threshold (LFTH);

determining an updated high frequency trigger pulse and an updated delay time period;

activating the first sensor at a second time within the updated VSYNC signal cycle, the second time determined based on the updated high frequency trigger pulse and the updated delay time period; and

modifying an operation of the display device based on activating the first sensor at the second time.

2. The method of claim 1 , further comprising:

sensing a first sensor reading by the first sensor;

deactivating the first sensor in response to sensing the first sensor reading;

modifying the display setting by adjusting a display setting based at least on the first sensor reading; and

activating the illumination component after deactivating the first sensor.

3. The method of claim 2 , further comprising:

activating a second sensor after activating the first sensor;

sensing a second sensor reading by the second sensor; and

adjusting the display setting based on the second sensor reading.

4. The method of claim 1 , wherein the delay time period is based on a first sensor location.

5. The method of claim 1 , wherein detecting the VSYNC cycle comprises detecting one of a rising edge or a falling edge of the VSYNC cycle.

6. The method of claim 1 , wherein the first sensor is one of a proximity sensor and an ambient light sensor.

7. The method of claim 1 , further comprising activating the first sensor at a second time within an internal synchronization signal cycle.

8. A device comprising:

a surface layer having an upper surface and a lower surface and formed to receive ambient wavelengths;

an illumination component positioned under the lower surface of the surface layer and configured to activate and deactivate;

a first sensor positioned under the lower surface of the surface layer such that the illumination component is positioned between the surface layer and the first sensor, the first sensor configured to:

activate at a first time within a vertical synchronization (VSYNC) signal cycle, the first time being determined based on a high frequency trigger pulse corresponding to deactivation of the illumination component and a delay time period for the first sensor,

activate at a second time within an updated VSYNC signal cycle, the updated VSYNC signal being at least one of greater than a high frequency threshold (HFTH) and less than a low frequency threshold (LFTH), the second time being determined based on an updated high frequency trigger pulse corresponding to deactivation of the illumination component and an updated delay time period for the first sensor; and

sense an ambient wavelength emitted through the surface layer while the first sensor is activated; and

a processor configured to modify an operation of the illumination component based on the ambient wavelength sensed by the first sensor.

9. The device of claim 8 , wherein the first sensor is further configured to:

sense a first sensor reading; and

deactivate in response to sensing the first sensor reading.

10. The device of claim 9 , wherein the processor is further configured to:

adjust a display setting based at least on the first sensor reading; and

activate the illumination component after deactivating the first sensor.

11. The device of claim 8 , wherein the delay time period is applied based on VSYNC cycle edge.

12. The device of claim 8 , wherein the delay time period is determined based on a location of the illumination component.

13. The device of claim 8 , further comprising a second sensor, the second sensor facing the surface layer and configured to:

activate when the illumination component is deactivated; and

sense a reflected proximity signal.

14. The device of claim 13 , wherein the processor is further configured to modify the operation of the illumination component based on the reflected proximity signal sensed by the second sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2020
From: HUANG, CHENG CHIEH; WANG, WEI CHIEN; KAO, YU HAO
To: VISHAY SEMICONDUCTOR GMBH
Reel/Frame 052513/0023 →
Continuity (2)
Provisional Application 62906039 · Sep 25, 2019
Related Publication 20210090523A1 · Mar 25, 2021