IP Library › Granted Patent US 11,195,400
Granted Patent B2
US 11,195,400 · App. 16/795,772 · Granted Dec 7, 2021

Smoke detector and method for detecting smoke

Inventors: Ying Gao (Beijing, CN); Chaoping Liu (Beijing, CN); Kewei Bi (Beijing, CN); Cong Wang (Beijing, CN)
Assignee: Jade Bird Fire Co., Ltd.
G08B17/107G01N21/53G08B17/113G08B25/01
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Quick Facts
Patent No.
US 11,195,400
App. No.
16/795,772
Granted
Dec 7, 2021
Kind
B2
Abstract

A smoke detector comprising a body, having a detection chamber therein; a first transmitting tube and a second transmitting tube, arranged in the body and configured to be capable of transmitting a first ray of light and a second ray of light into the detection chamber, respectively; a receiving tube, where the first ray of light and the second ray of light can be incident after refraction and/or scattering, and which generates outputs according to the intensity of incident light; and a control device, coupled with the receiving tube to receive a first output generated by the first ray of light on the receiving tube and a second output generated by the second ray of light on the receiving tube, and configured to determine whether there is a fire based on a difference or ratio between the first output and the second output, or the combination thereof.

Claims (53)

1. A smoke detector, comprising:

a body, having a detection chamber therein;

a first transmitting tube and a second transmitting tube, arranged in the body and configured to be capable of transmitting a first ray of light and a second ray of light into the detection chamber respectively, wherein the first transmitting tube is an infrared transmitting tube, and wherein the second transmitting tube has a different light wavelength from that of the first transmitting tube;

a receiving tube, where the first ray of light and the second ray of light can be incident after refraction and/or scattering, wherein the receiving tube generates a first output generated by the first ray of light on the receiving tube, and wherein the receiving tube generates a second output generated by the second ray of light on the receiving tube; and

a control device, coupled with the receiving tube to receive the first output and the second output, and configured to determine whether there is a fire based on a difference, ratio or combination between the first output and the second output,

wherein the control device is configured to further determine whether there is a fire by:

determining that there is a fire if the first output exceeds a first threshold value;

determining that there is no fire if the first output does not exceed a second threshold value;

determining that there is a fire if the second output exceeds a third threshold value if the first output exceeds the second threshold value; and

determining that there is a fire if the second output does not exceed the third threshold value but the first output and the second output conform to a fire mode in a training set.

2. The smoke detector according to claim 1 , further comprising an alarm device, coupled with the control device and triggered to alarm when the control device determines there is a fire.

3. The smoke detector according to claim 1 , wherein the first transmitting tube encapsulates a first group of light sources having a plurality of wavelengths, the second transmitting tube encapsulates a second group of light sources having a plurality of wavelengths, and the control device is configured to determine whether there is a fire based on a plurality of first outputs generated on the receiving tube by light having a plurality of wavelengths from the first group of light sources, and a plurality of second outputs generated on the receiving tube by light having a plurality of wavelengths from the second group of light sources.

4. The smoke detector according to claim 1 , wherein the second transmitting tube is a blue-ray transmitting tube.

5. The smoke detector according to claim 4 , wherein the control device is configured to control the first transmitting tube and the second transmitting tube and determine whether there is a fire by:

lighting the first transmitting tube, emitting the first ray of light, and collecting the first output generated by the receiving tube based on the first ray of light; and

lighting the second transmitting tube, emitting the second ray of light, and collecting the second output generated by the receiving tube based on the second ray of light.

6. The smoke detector according to claim 5 ,

wherein the first transmitting tube is lighted for 70-90 us, and the second transmitting tube is lighted for 70-90 us.

7. The smoke detector according to claim 1 , wherein an included angle between the first transmitting tube and the receiving tube in a horizontal plane is 121°-147°, and an included angle between the second transmitting tube and the receiving tube in the horizontal plane is 60°-91°.

8. The smoke detector according to claim 3 , wherein the first transmitting tube encapsulates three LEDs different in wavelength, and the second transmitting tube encapsulates three LEDs different in wavelength.

9. The smoke detector according to claim 6 , wherein the first transmitting tube is lighted for 80 us, and the second transmitting tube is lighted for 80 us.

10. A method for detecting smoke, comprising:

lighting a first transmitting tube comprising an infrared transmitting tube, emitting a first ray of light, and allowing the first ray of light to be incident onto a receiving tube after being refracted and/or scattered by smoke, to generate a first output;

lighting a second transmitting tube having a different light wavelength from that of the first transmitting tube, emitting a second ray of light, and allowing the second ray of light to be incident onto the receiving tube after being refracted and/or scattered by smoke, to generate a second output;

determining whether there is a fire based on a difference, ratio or combination between the first output and the second output; and

further determining whether there is a fire by:

determining that there is a fire if the first output exceeds a first threshold value;

determining that there is no fire if the first output does not exceed a second threshold value;

determining that there is a fire if the second output exceeds a third threshold value if the first output exceeds the second threshold value; and

determining that there is a fire if the second output does not exceed the third threshold value but the first output and the second output conform to a fire mode in a training set.

11. The smoke detection method according to claim 10 , further comprising:

triggering an alarm when determining that there is a fire.

12. The smoke detection method according to claim 10 , wherein the first transmitting tube encapsulates a first group of light sources having a plurality of wavelengths, the second transmitting tube encapsulates a second group of light sources having a plurality of wavelengths, and the step of determining whether there is a fire comprises: determining whether there is a fire based on a plurality of first outputs generated on the receiving tube by light having a plurality of wavelengths from the first group of light sources, and a plurality of second outputs generated on the receiving tube by light having a plurality of wavelengths from the second group of light sources.

13. The smoke detection method according to claim 10 ,

wherein the first transmitting tube is lighted for 70-90 us, and the second transmitting tube is lighted for 70-90 us.

14. The smoke detection method according to claim 12 , wherein the first transmitting tube encapsulates three LEDs different in wavelength, and the second transmitting tube encapsulates three LEDs different in wavelength.

15. The smoke detection method according to claim 13 , wherein the first transmitting tube is lighted for 80 us, and the second transmitting tube is lighted for 80 us.

16. The smoke detection method according to claim 10 , wherein the method is executed by the smoke detector comprising:

a body, having a detection chamber therein;

the first transmitting tube and the second transmitting tube, arranged in the body and configured to be capable of transmitting the first ray of light and the second ray of light into the detection chamber respectively;

the receiving tube, where the first ray of light and the second ray of light can be incident after refraction and/or scattering, wherein the receiving tube generates a first output generated by the first ray of light on the receiving tube, and wherein the receiving tube generates a second output generated by the second ray of light on the receiving tube; and

a control device, coupled with the receiving tube to receive the first output and the second output, and configured to determine whether there is a fire based on the difference, ratio or combination between the first output and the second output.

17. The smoke detection method according to claim 16 , wherein the method is executed by the smoke detector further comprising an alarm device that is coupled with the control device and triggered to alarm when the control device determines there is a fire.

18. The smoke detector according to claim 10 , wherein the first transmitting tube is an infrared transmitting tube, and the second transmitting tube is a blue-ray transmitting tube.

19. The smoke detector according to claim 10 , wherein an included angle between the first transmitting tube and the receiving tube in a horizontal plane is 121°-147°, and an included angle between the second transmitting tube and the receiving tube in the horizontal plane is 60°-91°.

20. An apparatus for detecting smoke, comprising:

means for lighting a first transmitting tube having a first light wavelength, emitting a first ray of light, and allowing the first ray of light to be incident onto a receiving tube after being refracted and/or scattered by smoke, to generate a first output;

means for lighting a second transmitting tube having a different light wavelength from that of the first transmitting tube, emitting a second ray of light, and allowing the second ray of light to be incident onto the receiving tube after being refracted and/or scattered by smoke, to generate a second output; and

means for i) determining whether there is a fire based on a difference, ratio or combination between the first output and the second output and ii) further determining whether there is a fire by:

determining that there is a fire if the first output exceeds a first threshold value;

determining that there is no fire if the first output does not exceed a second threshold value; and

determining that there is a fire if the second output exceeds a third threshold value if the first output exceeds the second threshold value; and

determining that there is a fire if the second output does not exceed the third threshold value but the first output and the second output conform to a fire mode in a training set.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2025
From: JADE BIRD FIRE CO., LTD.
To: HEBEI JADE BIRD ELECTRONICS CO., LTD.
Reel/Frame 073302/0524 →
CORRECTIVE ASSIGNMENT TO CORRECT THE TO CORRECT THE NAME OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 67434 FRAME: 105. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 12, 2024
From: JADE BIRD FIRE CO
To: JADE BIRD FIRE CO; BEIJING JADE BIRD UNIVERSAL FIRE PROTECTION SYSTEM SOFTWARE SERVICES CO., LTD.
Reel/Frame 068739/0823 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2024
From: JADE BIRD FIRE CO
To: JADE BIRD FIRE CO; BEIJING JADE BIRD HUANYU FIRE FIGHTING SYSTEM SOFTWARE SERVICE CO
Reel/Frame 067434/0105 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2020
From: GAO, YING; LIU, CHAOPING; WANG, CONG
To: JADE BIRD FIRE CO., LTD.
Reel/Frame 053290/0475 →
EMPLOYEE AGREEMENT Recorded Jul 23, 2020
From: KEWEI, BI
To: JADE BIRD FIRE CO., LTD.
Reel/Frame 054117/0723 →
Priority Claims (2)
CN 201910126962.4 · Feb 20, 2019 · national
CN 201920216711.0 · Feb 20, 2019 · national
Continuity (1)
Related Publication 20200265697A1 · Aug 20, 2020
Cited By (2)
US 12,223,815 US 12,614,437