IP Library › Granted Patent US 9,551,486
Granted Patent B2
US 9,551,486 · App. 13/083,036 · Granted Jan 24, 2017

Automated torch

Inventor: Kaz Jackow (Kailua Kona, HI)
F23D11/42
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Quick Facts
Patent No.
US 9,551,486
App. No.
13/083,036
Granted
Jan 24, 2017
Kind
B2
Abstract

An automated torch for generating and sustaining a flame is provided that includes a head, the head including a burning chamber, the burning chamber being open to the atmosphere and weather elements to expose the flame to the atmosphere and weather elements, a pole, a valve, a programmable computer module, the module configured to convert a low voltage to a high voltage, the module further configured to actuate a valve, the module still further configured to control the rotation of the valve to vary the amount of fuel introduced into the burning chamber to modify the aesthetics of the flame, a sleeve nut, the sleeve nut configured to be adjustable to control the amount of air introduced in the burning chamber to modify the aesthetics of the flame, at least one fuel supply tube, a diffuser assembly and an igniter. The igniter positioned within the burning chamber and the igniter including an anode and a cathode. The anode and the cathode are positioned such that the anode is proximate the cathode to create a sufficient gap such that when the high voltage is applied to said igniter a spark is induced across the gap. The anode and the cathode of the igniter are configured to detect the presence of a flame within the burning chamber. The igniter is configured to be electrically connected to the programmable computer module, the programmable computer module programmed to interpret a signal from the igniter to determine whether the high voltage should be induced across the gap to create the spark or a flame is present in the burning chamber.

Claims (42)

1. An automated torch comprising:

a head, said head including a burning chamber, said burning chamber being open to the atmosphere and weather elements to expose a flame to the atmosphere and weather elements;

a pole;

a valve;

a programmable computer module, said module configured to convert a low voltage to a high voltage, said module further configured to actuate said valve, said module still further configured to control said valve to vary the amount of fuel introduced into said burning chamber to modify the aesthetics of the flame;

a sleeve nut, said sleeve nut configured to be adjustable to control the amount of air introduced into said burning chamber to modify the aesthetics of the flame;

at least one fuel supply tube;

a diffuser assembly;

an igniter said igniter positioned within said burning chamber, said igniter including an anode and a cathode;

wherein said anode and said cathode are positioned such that said anode is proximate said cathode to create a sufficient gap such that when the high voltage is applied to said igniter a spark is induced across said gap;

wherein said anode and said cathode of said igniter are configured to detect the presence of a flame within said burning chamber; and

wherein said igniter is configured to be electrically connected to said programmable computer module, said programmable computer module programmed to interpret a signal from said igniter to determine whether the high voltage should be induced across said gap to create the spark or whether a flame is present in said burning chamber.

2. The automated torch as described in claim 1 , wherein said computer module is positioned within the interior of said head.

3. The automated torch as described in claim 1 , wherein said computer module is positioned within the interior of said pole.

4. The automated torch as described in claim 1 , further including a second fuel supply tube.

5. The automated torch as described in claim 4 , wherein said valve is positioned between said at least one fuel supply tube and said second fuel supply tube.

6. The automated torch as described in claim 1 , wherein said valve is electrically connected to said computer module.

7. The automated torch as described in claim 1 , wherein said at least one fuel supply tube extends a length of the interior of said pole.

8. The automated torch as described in claim 1 , wherein said diffuser assembly includes a stem and a cap and said diffuser assembly is positioned within said burning chamber.

9. The automated torch as described in claim 1 , wherein said igniter is electrically connected to said computer module by a high voltage cable.

10. The automated torch as described in claim 1 , wherein said anode and said cathode are configured to encircle said diffuser assembly within said burning chamber to provide for an opportunity to create a spark anywhere along said gap between said anode and said cathode and detect the presence of a flame within said burning chamber.

11. The automated torch as described in claim 1 , further including electrical wiring.

12. An automated torch for generating and sustaining a flame comprising:

a head, said head including a burning chamber said burning chamber being open to the atmosphere and weather elements to expose the flame to the atmosphere and weather elements;

a pole, said pole configured to support said head;

a first fuel supply tube, said first fuel supply tube extending a length of said pole;

a second fuel supply tube;

a valve, said valve positioned between said first fuel supply tube and said second fuel supply tube to control the flow of gas through said second fuel supply tube;

a programmable computer module said module configured to convert a low voltage to a high voltage, said module further configured to actuate a valve, said module still further configured to control said valve to vary the amount of fuel introduced into said burning chamber to modify the aesthetics of the flame;

a sleeve nut, said sleeve nut configured to be adjustable to control the amount of air introduced into said burning chamber to modify the aesthetics of the flame;

a diffuser assembly, said diffuser assembly including a stem and a cap;

an igniter, said igniter being positioned in said burning chamber said igniter including an anode and a cathode;

a high voltage cable, said high voltage cable extending from said module to said igniter;

electrical wiring;

wherein said anode and said cathode are positioned such that said anode is proximate said cathode to create a sufficient gap such that when the high voltage is applied to said igniter a spark is induced across said gap;

wherein said anode and said cathode of said igniter are configured to detect the presence of a flame within said burning chamber; and

wherein said programmable computer module is programmed to interpret a signal from said igniter through said high voltage cable to determine whether the high voltage should be induced across said gap to create the spark or a flame is present in said burning chamber.

13. The automated torch as described in claim 12 , wherein said computer module is positioned within the interior of said head.

14. The automated torch as described in claim 12 , wherein said computer module is positioned within the interior of said pole.

15. The automated torch as described in claim 12 , wherein said valve is electrically connected to said computer module.

16. The automated torch as described in claim 12 , wherein said diffuser assembly is positioned within said burning chamber.

17. The automated torch as described in claim 12 , wherein said anode and said cathode are configured to encircle said diffuser assembly within said burning chamber to provide for an opportunity to create a spark anywhere along said gap between said anode and said cathode and detect the presence of a flame within said burning chamber.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2025
From: GLOBE EXPO LLC
To: DCOS HOLDINGS LTD.
Reel/Frame 072528/0525 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2025
From: JACKOW, KAZ, MR.
To: GLOBE EXPO L.L.C.
Reel/Frame 071766/0361 →
Continuity (1)
Related Publication 20120258412A1 · Oct 11, 2012