IP Library Patent Application 14457105
Patent Application
App. No. 14/457,105

THERMOMETER HAVING A DIGITAL INFRARED SENSOR

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Quick Facts
Patent No.
US None
App. No.
14/457,105
Abstract

A microprocessor is operably coupled to a digital infrared sensor from which temperature is determined from the digital infrared sensor.

Claims (62)

1 . A non-touch thermometer to measure temperature, the non-touch thermometer comprising:

a microprocessor;

a battery operably coupled to the microprocessor;

a single button operably coupled to the microprocessor;

a camera operably coupled to the microprocessor and providing at least two images to the microprocessor;

a digital infrared sensor operably coupled to the microprocessor with no analog-to-digital converter operably coupled between the digital infrared sensor and the microprocessor, the digital infrared sensor having only digital readout ports, the digital infrared sensor having no analog sensor readout ports; and

a display device operably coupled to the microprocessor,

wherein the microprocessor is operable to receive from the digital readout ports a digital signal that is representative of an infrared signal detected by the digital infrared sensor and the microprocessor is operable to determine the temperature from the digital signal that is representative of the infrared signal.

2 . The non-touch thermometer of claim 1 , wherein the display device further comprises:

a green traffic light operable to indicate that the temperature is good;

an amber traffic light operable to indicate that the temperature is low; and

a red traffic light operable to indicate that the temperature is high.

3 . The non-touch thermometer of claim 1 further comprising:

the microprocessor including a pixel-examination-module configured to examine pixel values of the at least two images, a temporal-variation module to determine temporal variation of the pixel values between the at least two image, a signal processing module configured to amplify the temporal variation resulting in amplified temporal variation, and a visualizer to visualize a pattern of flow of blood in the amplified temporal variation in the at least two images.

4 . The non-touch thermometer of claim 3 , wherein the signal processing module is further configured to amplify variations of the pixel values between the at least two images.

5 . The non-touch thermometer of claim 3 , wherein the signal processing is temporal processing.

6 . The non-touch thermometer of claim 5 , wherein the temporal processing is a bandpass filter.

7 . The non-touch thermometer of claim 6 , wherein the bandpass filter is configured to analyze frequencies over time.

8 . The non-touch thermometer of claim 3 , wherein applying signal processing includes spatial processing.

9 . The non-touch thermometer of claim 8 , wherein the spatial processing removes noise.

10 . The non-touch thermometer of claim 1 , further comprising:

a first circuit board including:

the microprocessor; and

a second circuit board including:

the digital infrared sensor.

11 . The non-touch thermometer of claim 10 , further comprising:

the first circuit board including:

a first digital interface operably coupled to the microprocessor;

the second circuit board including:

a second digital interface, the second interface being operably coupled to the first interface; and

the digital infrared sensor operably coupled to the second interface, the digital infrared sensor having ports that provides only digital readout.

12 . The non-touch thermometer of claim 10 , further comprising:

the first circuit board including:

the battery operably coupled to the microprocessor;

the display device operably coupled to the microprocessor; and

the single button operably coupled to the microprocessor.

13 . The non-touch thermometer of claim 1 , further comprising:

no analog-to-digital converter operably coupled between the digital infrared sensor and the microprocessor.

14 . The non-touch thermometer of claim 1 , further comprising:

the digital infrared sensor having no analog sensor readout ports.

15 . A device comprising:

a first circuit board including:

a microprocessor;

a battery operably coupled to the microprocessor;

a display device operably coupled to the microprocessor;

a single button operably coupled to the microprocessor; and

a first digital interface operably coupled to the microprocessor;

a second circuit board including

a second digital interface, the second interface being operably coupled to the first interface; and

a digital infrared sensor operably coupled to the second interface, the digital infrared sensor having ports that provide only digital readout,

wherein the microprocessor is operable to receive from the ports that provide only digital readout a digital signal that is representative of an infrared signal generated by the digital infrared sensor and the microprocessor is operable to determine a temperature from the digital signal that is representative of the infrared signal.

16 . The device of claim 15 further comprising:

no analog-to-digital converter operably coupled between the digital infrared sensor and the microprocessor.

17 . The device of claim 15 further comprising:

the digital infrared sensor having no analog sensor readout ports.

18 . The device of claim 15 further comprising:

a camera operably coupled to the microprocessor and providing at least two images to the microprocessor; and

the microprocessor including a cropper that is operable to receive the at least two images and operable to crop the images to exclude a border area of the images, generating at least two cropped images, the microprocessor also including a temporal-variation-amplifier of at least two cropped images that is operable to generate a temporal variation, the microprocessor also including a vital-sign generator that is operably coupled to the temporal-variation-amplifier that is operable to generate at least one vital sign from the temporal variation and the microprocessor also operably coupled to the vital-sign generator that is operable to display the at least one vital sign.

19 . The device of claim 18 further comprising:

a storage device that is operably coupled to the vital-sign generator and that is operable to store the at least one vital sign in a volatile memory.

20 . The device of claim 18 further comprising:

a storage device that is operably coupled to the vital-sign generator and that is operable to transmit the at least one vital sign to another apparatus.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2018
From: ARC DEVICES (NI) LIMITED
To: ARC DEVICES LTD.
Reel/Frame 047800/0992 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2016
From: GROSS, IRWIN; KHACHATURIAN, MARK; CRAWLEY, MARTIN; SMITH, MICHAEL; BARRETT, JOHN; CRONIN, MICHAEL; TURNBULL, DEREK; GERST, STEVEN
To: ARC DEVICES (NI) LIMITED
Reel/Frame 037827/0267 →