IP Library › Granted Patent US 12,659,582
Granted Patent B2
US 12,659,582 · App. 18/765,464 · Granted Jun 16, 2026

High speed multi-focal camera

Inventors: Yi-Hsien Lin (Taipei City, TW); Chih-Hao Kao (Singapore, SG); Ghee Beng Ooi (Singapore, SG)
Assignee: Dell Products L.P.
H04N23/671H04N23/52H04N23/611H04N23/672H04N23/673
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Quick Facts
Patent No.
US 12,659,582
App. No.
18/765,464
Granted
Jun 16, 2026
Kind
B2
Abstract

A camera captures a visual image of an object in a rapid manner by determining a distance to the object with a time-of-flight sensor and looking up an actuator position for actuating the camera lens to a focus based upon the distance. The actuator position set by the look up table adjusts for temperature effects on focus based upon a temperature measurement associated with the lens. Visual image capture may be accomplished without image-based focus analysis, such as contrast and phase detection autofocus, by validating the distance captured with the time-of-flight sensor.

Claims (74)

1 . An information handling system comprising:

a processor operable to execute instructions to process information;

a memory interfaced with the processor and operable to store the instructions and information;

a time-of-flight sensor operable to detect distance to an object;

an image sensor operable to capture light as visual information;

an image signal processor interfaced with the image sensor and operable to define a visual image as an array of pixel values from the visual information;

a lens aligned with the image sensor to direct light at the image sensor;

an actuator coupled to the lens to adjust the lens position relative to the image sensor to focus the light at the image sensor; and

a non-transitory memory storing instructions that when executed cause:

detection by the time-of-flight sensor of a distance to the object;

validation of the distance to the object;

lookup in focal point table of an actuator position associated with focus by the lens on the object for the distance;

actuation of the actuator to the actuator position; and

capture of a visual image at the image sensor by the image signal processor;

wherein the validation comprises analysis of the distance of the time-of-flight sensor compared against expected time-of-flight distances of facial features.

2 . The information handling system of claim 1 further comprising:

a thermistor operable to measure a temperature associated with the lens; and

a temperature adjustment stored in the focal point table to adjust the actuator position based upon the temperature.

3 . The information handling system of claim 2 wherein the capture of the visual image is executed without image-based focus analysis.

4 . The information handling system of claim 1 wherein the validation comprises analysis of a size of the object indicated by the time-of-flight sensor compared against an amount of a field of view of the lens of the object.

5 . The information handling system of claim 1 wherein the instructions further:

select a first actuator position within a first predetermined portion of the lens depth of field;

capture first visual information;

select a second actuator position within a second predetermined portion of the lens depth of field;

capture second visual information; and

compare the first visual information and the second visual information to confirm lens focus.

6 . The information handling system of claim 5 wherein the first visual information and second visual information are compared by contrast detection autofocus.

7 . The information handling system of claim 5 wherein the first visual information and second visual information are compared by phase detection autofocus.

8 . The information handling system of claim 5 wherein:

the first actuator position is one table increment closer than the actuator position associated with focus for the distance; and

the second actuator position is the actuator position associated with focus for the distance.

9 . A method for capturing a visual image with a camera comprising:

detecting by a time-of-flight sensor of a distance to an object;

validating the distance to the object, the validating including at least analysis of a size of the object indicated by the time-of-flight sensor compared against an amount of a field of view of the lens of the object;

looking up in a focal point table of an actuator position associated with focus by a lens on the object for the distance;

actuating of the actuator to the actuator position; and

capturing a visual image at an image sensor by an image signal processor of light passing through the lens focused on the object.

10 . The method of claim 9 further comprising:

measuring a temperature associated with the lens; and

applying a temperature adjustment to the focal point table to determine the actuator position based upon the temperature.

11 . The method of claim 10 further comprising capturing the visual images without image-based focus analysis.

12 . The method of claim 10 further comprising:

selecting a first actuator position within a first predetermined portion of the lens depth of field;

capturing a first visual information;

selecting a second actuator position within a second predetermined portion of the lens depth of field;

capturing a second visual information; and

comparing the first visual information and the second visual information to confirm lens focus.

13 . The method of claim 12 wherein the first visual information and second visual information are compared by contrast detection autofocus.

14 . The method of claim 12 wherein the first visual information and the second visual information are compared by phase detection autofocus.

15 . The method of claim 12 wherein:

the first actuator position is one table increment closer than the actuator position associated with focus for the distance; and

the second actuator position is the actuator position associated with focus for the distance.

16 . A camera comprising:

a time-of-flight sensor operable to detect distance to an object;

an image sensor operable to capture light as visual information;

an image signal processor interfaced with the image sensor and operable to define a visual image as an array of pixel values from the visual information;

a lens aligned with the image sensor to direct light at the image sensor;

an actuator coupled to the lens to adjust the lens position relative to the image sensor to focus the light at the image sensor; and

a non-transitory memory storing instructions that when executed cause:

detection by the time-of-flight sensor of a distance to the object;

validation of the distance to the object;

lookup in focal point table of an actuator position associated with focus by the lens on the object for the distance;

actuation of the actuator to the actuator position; and

capture of a visual image at the image sensor by the image signal processor;

wherein the instructions further:

select a first actuator position within a first predetermined portion of the lens depth of field;

capture first visual information;

select a second actuator position within a second predetermined portion of the lens depth of field;

capture second visual information; and

compare the first visual information and the second visual information by phase detection autofocus to confirm lens focus.

17 . The camera of claim 16 further comprising:

a thermistor operable to measure a temperature associated with the lens; and

a temperature adjustment stored in the focal point table to adjust the actuator position based upon the temperature.

18 . The camera of claim 17 wherein the capture of the visual image is executed without image-based focus analysis.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2024
From: OOI, GHEE BENG; KAO, CHIH-HAO; LIN, YI-HSIEN
To: DELL PRODUCTS L.P.
Reel/Frame 067923/0772 →
Continuity (1)
Related Publication 20260012703A1 · Jan 8, 2026
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