Claims
- 1. A piezoelectric jet lighter for cigarette, cigar and pipe, comprising:a casing having a liquefied gas storage; a nozzle housing provided on a ceiling of said casing; a jet nozzle received in said nozzle housing and communicating with said liquefied gas storage for producing a jet flame, wherein an ignition element is mounted on an opening of said nozzle housing at a position above said jet nozzle; a gas ejecting pipe having a gas releasable valve extended from said liquefied gas storage for controlling a flow of gas wherein a gas emitting conduit is extended from said gas releasable valve to said jet nozzle; a piezoelectric unit, which is disposed in said casing for generating piezoelectricity, comprising a movable operating part extended upwardly and an ignition tip extended to a position closed with said jet nozzle, wherein when said movable operating part is depressed downwardly, sparks are generated from said ignition tip to ignite said gas emitted from said jet nozzle and heat up said ignition element at the same time; an ignition button slidably mounted on said ceiling of said casing in a vertical movable manner wherein said ignition button is attached to a top end of the piezoelectric unit and arranged in such a manner that when said ignition button is depressed downwardly, said movable operating part of said piezoelectric unit is depressed to ignite said piezoelectric jet lighter; a lighter cap slidably mounted on said ceiling of said casing in such a radially movable manner for covering said opening of said nozzle housing in an air tight manner; and a visible flame arrangement, comprising: a pair of gas emitting nozzles appearing on said nozzle housing for producing visible flames respectively, wherein said two gas emitting nozzles are respectively provided on a ceiling of said nozzle housing and positioned at two sides of said jet nozzle, wherein each of said gas emitting nozzles is an elongated tube vertically extended through said nozzle housing to a position closed with said ignition element in such a manner that when said ignition element is heat up, said gas emitted from said respective gas emitting nozzle is ignited to produce said visible flame; and a connecting means comprising a gas passage conduit extended from said gas releasable valve, a pair of gas discharging conduits extended from said gas emitting nozzles respectively, and a gas dividing valve connected between said gas passage conduit and said gas discharging conduits for detouring said gas passing from said gas passage conduit to said gas discharging conduits and said gas emitting nozzle individually; wherein said releasable valve is a T-shaped valve joint having a gas inlet extended from said gas ejecting pipe and two gas outlets connected with said gas emitting conduit and said gas passage conduit respectively for selectively switching said gas discharged from said gas ejecting pipe to be detoured either through said gas emitting conduit for said jet nozzle to produce said jet flame or through said gas passage conduit for said gas emitting nozzles to produce said visible flames; wherein said gas dividing valve is a tee joint valve having a gas entrance connected to said gas passage conduit and two gas exits connected to said gas discharging conduits respectively such that said gas discharged from said gas passage conduit is evenly divided into two portions to said pair of gas emitting nozzles respectively, wherein each of said gas emitting nozzles functions individually since said gas transported to said gas emitting nozzles are supported by said gas discharging conduit separately.
- 2. The piezoelectric jet lighter, as recited in claim 1, further comprising a gas adjustable button rotatably connected to said gas ejecting pipe for selectively adjusting said flow of gas, wherein said gas adjustable button is rotatably mounted on a bottom of said casing and arranged to adjust said flow of gas discharging from said gas ejecting pipe.
- 3. The piezoelectric jet lighter, as recited in claim 1, wherein said gas releasable valve further comprises a sealing wall, having a gas passage, sealedly mounted at said gas ejecting pipe, and regulating means comprising a gas releasable pusher supported at said gas passage, a gas stopper, having a spherical shaped, mounted at an entrance of said gas outlet that communicates with said gas passage conduit, and a compression spring supported at said entrance of said respective gas outlet for applying an urging pressure against said gas stopper so as to block said gas flowing towards said gas passage conduit in such a manner that when said gas releasable valve is lifted up, said gas stopper blocks said gas flowing towards said gas passage conduit so that said gas is released through said gas passage and detoured to flow towards said gas emitting conduit through said respective gas outlet communicating therewith, and when said gas releasable valve is dropped down, a bottom side of said gas inlet is sealedly supported on said sealing wall to block said gas flowing towards said gas emitting conduit, at the same time, said gas releasable pusher pushing said gas stopper upwardly to release a blocking of said respective gas outlet so that said gas is detoured to flow towards said gas passage conduit through said gas outlet communicating therewith.
- 4. The piezoelectric jet lighter, as recited in claim 3, wherein said gas releasable valve further comprises a sealing wall, having a gas passage, sealedly mounted at said gas ejecting pipe, and regulating means comprising a gas releasable pusher supported at said gas passage, a gas stopper, having a spherical shaped, mounted at an entrance of said gas outlet that communicates with said gas passage conduit, and a compression spring supported at said entrance of said respective gas outlet for applying an urging pressure against said gas stopper so as to block said gas flowing towards said gas passage conduit in such a manner that when said gas releasable valve is lifted up, said gas stopper blocks said gas flowing towards said gas passage conduit so that said gas is released through said gas passage and detoured to flow towards said gas emitting conduit through said respective gas outlet communicating therewith, and when said gas releasable valve is dropped down, a bottom side of said gas inlet is sealedly supported on said sealing wall to block said gas flowing towards said gas emitting conduit, at the same time, said gas releasable pusher pushing said gas stopper upwardly to release a blocking of said respective gas outlet so that said gas is detoured to flow towards said gas passage conduit through said gas outlet communicating therewith.
- 5. The piezoelectric jet lighter, as recited in claim 1, further comprising a gas detouring arrangement which comprises a passage seat supported in said casing while said gas passage conduit is rested on said passage seat, and a control latch extended from said gas lever to a position above said passage seat in such a manner that when said depressible end of said gas lever is depressed by said ignition button to drive said control latch downwardly, said control latch compresses said gas passage conduit with respect to said passage seat, so as to block said gas discharging through said gas passage conduit.
- 6. The piezoelectric jet lighter, as recited in claim 5, further comprising a valve positioning arrangement which comprises a switch latch extended from said lighter cap and arranged to be moved frontwardly when said lighter cap is radially slid rearwardly with respect to said casing, a resilient element having an affixing end portion securely mounted in said casing and a control end portion engaged with said switch latch, and a switch pusher mounted on said resilient element at a position towards said gas releasable valve, in such a manner that said switch pusher is arranged to bias a sidewall of said gas releasable valve to shut off said gas from releasing, to position underneath said gas releasable valve for detouring said gas to said jet nozzle when said gas passage conduit is compressed via said control latch, and to block said gas releasable valve at a bottom side thereof for detouring said gas to said gas emitting nozzles when said control latch is moved upwardly to releasing a blocking up of said gas passage conduit.
- 7. The piezoelectric jet lighter, as recited in claim 6, wherein said resilient element is a U-shaped elastic clip supported in said casing for applying an urging force against said switch pusher so as to push said switch pusher to bias said sidewall of said gas releasable valve, wherein when said ignition cap is in a closed position, said switch latch normally pulls said control end of said portion of said resilient element towards said affixing end thereof to retain said resilient element in a compressed manner.
- 8. The piezoelectric jet lighter, as recited in claim 7, further comprising a gas adjustable button rotatably connected to said gas ejecting pipe for selectively adjusting said flow of gas, wherein said gas adjustable button is rotatably mounted on a bottom of said casing and arranged to adjust said flow of gas discharging from said gas ejecting pipe.
- 9. A piezoelectric jet lighter for cigarette, cigar and pipe, comprising:a casing having a liquefied gas storage; a nozzle housing provided on a ceiling of said casing; a jet nozzle received in said nozzle housing and communicating with said liquefied gas storage for producing a jet flame, wherein an ignition element is mounted on an opening of said nozzle housing at a position above said jet nozzle; a gas ejecting pipe having a gas releasable valve extended from said liquefied gas storage for controlling a flow of gas wherein a gas emitting conduit is extended from said gas releasable valve to said jet nozzle; a piezoelectric unit, which is disposed in said casing for generating piezoelectricity, comprising a movable operating part extended upwardly and an ignition tip extended to a position closed with said jet nozzle, wherein when said movable operating part is depressed downwardly, sparks are generated from said ignition tip to ignite said gas emitted from said jet nozzle and heat up said ignition element at the same time; an ignition button slidably mounted on said ceiling of said casing in a vertical movable manner wherein said ignition button is attached to a top end of the piezoelectric unit and arranged in such a manner that when said ignition button is depressed downwardly, said movable operating part of said piezoelectric unit is depressed to ignite said piezoelectric jet lighter; a lighter cap slidably mounted on said ceiling of said casing in such a radially movable manner for covering said opening of said nozzle housing in an air tight manner; and a visible flame arrangement, comprising: a pair of gas emitting nozzles appearing on said nozzle housing for producing visible flames respectively, wherein said two gas emitting nozzles are respectively provided on a ceiling of said nozzle housing and positioned at two sides of said jet nozzle, wherein each of said gas emitting nozzles is an elongated tube vertically extended through said nozzle housing to a position closed with said ignition element in such a manner that when said ignition element is heat up, said gas emitted from said respective gas emitting nozzle is ignited to produce said visible flame; and a connecting means comprising a gas passage conduit extended from said gas releasable valve, a pair of gas discharging conduits extended from said gas emitting nozzles respectively, and a gas dividing valve connected between said gas passage conduit and said gas discharging conduits for detouring said gas passing from said gas passage conduit to said gas discharging conduits and said gas emitting nozzle individually.
- 10. The piezoelectric jet lighter, as recited in claim 9, wherein said gas releasable valve further comprises a sealing wall, having a gas passage, sealedly mounted at said gas ejecting pipe, and regulating means comprising a gas releasable pusher supported at said gas passage, a gas stopper, having a spherical shaped, mounted at an entrance of said gas outlet that communicates with said gas passage conduit, and a compression spring supported at said entrance of said respective gas outlet for applying an urging pressure against said gas stopper so as to block said gas flowing towards said gas passage conduit in such a manner that when said gas releasable valve is lifted up, said gas stopper blocks said gas flowing towards said gas passage conduit so that said gas is released through said gas passage and detoured to flow towards said gas emitting conduit through said respective gas outlet communicating therewith, and when said gas releasable valve is dropped down, a bottom side of said gas inlet is sealedly supported on said sealing wall to block said gas flowing towards said gas emitting conduit, at the same time, said gas releasable pusher pushing said gas stopper upwardly to release a blocking of said respective gas outlet so that said gas is detoured to flow towards said gas passage conduit through said gas outlet communicating therewith.
- 11. The piezoelectric jet lighter, as recited in claim 9, further comprising a gas detouring arrangement which comprises a passage seat supported in said casing while said gas passage conduit is rested on said passage seat, and a control latch extended from said gas lever to a position above said passage seat in such a manner that when said depressible end of said gas lever is depressed by said ignition button to drive said control latch downwardly, said control latch compresses said gas passage conduit with respect to said passage seat, so as to block said gas discharging through said gas passage conduit.
- 12. The piezoelectric jet lighter, as recited in claim 10, further comprising a gas detouring arrangement which comprises a passage seat supported in said casing while said gas passage conduit is rested on said passage seat, and a control latch extended from said gas lever to a position above said passage seat in such a manner that when said depressible end of said gas lever is depressed by said ignition button to drive said control latch downwardly, said control latch compresses said gas passage conduit with respect to said passage seat, so as to block said gas discharging through said gas passage conduit.
- 13. The piezoelectric jet lighter, as recited in claim 11, further comprising a valve positioning arrangement which comprises a switch latch extended from said lighter cap and arranged to be moved frontwardly when said lighter cap is radially slid rearwardly with respect to said casing, a resilient element having an affixing end portion securely mounted in said casing and a control end portion engaged with said switch latch, and a switch pusher mounted on said resilient element at a position towards said gas releasable valve, in such a manner that said switch pusher is arranged to bias a sidewall of said gas releasable valve to shut off said gas from releasing, to position underneath said gas releasable valve for detouring said gas to said jet nozzle when said gas passage conduit is compressed via said control latch, and to block said gas releasable valve at a bottom side thereof for detouring said gas to said gas emitting nozzles when said control latch is moved upwardly to releasing a blocking up of said gas passage conduit.
- 14. The piezoelectric jet lighter, as recited in claim 12, further comprising a valve positioning arrangement which comprises a switch latch extended from said lighter cap and arranged to be moved frontwardly when said lighter cap is radially slid rearwardly with respect to said casing, a resilient element having an affixing end portion securely mounted in said casing and a control end portion engaged with said switch latch, and a switch pusher mounted on said resilient element at a position towards said gas releasable valve, in such a manner that said switch pusher is arranged to bias a sidewall of said gas releasable valve to shut off said gas from releasing, to position underneath said gas releasable valve for detouring said gas to said jet nozzle when said gas passage conduit is compressed via said control latch, and to block said gas releasable valve at a bottom side thereof for detouring said gas to said gas emitting nozzles when said control latch is moved upwardly to releasing a blocking up of said gas passage conduit.
- 15. The piezoelectric jet lighter, as recited in claim 13, wherein said resilient element is a U-shaped elastic clip supported in said casing for applying an urging force against said switch pusher so as to push said switch pusher to bias said sidewall of said gas releasable valve, wherein when said ignition cap is in a closed position, said switch latch normally pulls said control end of said portion of said resilient element towards said affixing end thereof to retain said resilient element in a compressed manner.
- 16. The piezoelectric jet lighter, as recited in claim 14, wherein said resilient element is a U-shaped elastic clip supported in said casing for applying an urging force against said switch pusher so as to push said switch pusher to bias said sidewall of said gas releasable valve, wherein when said ignition cap is in a closed position, said switch latch normally pulls said control end of said portion of said resilient element towards said affixing end thereof to retain said resilient element in a compressed manner.
- 17. The piezoelectric lighter, as recited in claim 16, further comprising a gas adjustable button rotatably connected to said gas ejecting pipe for selectively adjusting said flow of gas, wherein said gas adjustable button is rotatably mounted on a bottom of said casing and arranged to adjust said flow of gas discharging from said gas ejecting pipe.
- 18. A process of igniting a piezoelectric jet lighter, comprising the steps of:(a) opening a lighter cap wherein a gas releasable is positioned at a normal lowest position for shutting off a gas releasing from a liquefied gas storage in a casing; (b) applying a downward force on an ignition button to lift up a gas releasable valve via a gas lever at a highest position for releasing gas through said gas releasable valve; (c) applying a pushing force against a switch pusher to a position underneath said gas releasable valve; (d) releasing said downward force on said ignition button, such that said gas releasable valve is dropped downwardly until said gas releasable valve is blocked by said switch pusher at a mid-position between said highest and lowest positions, in such a manner that said gas is capable of being detoured from said gas releasable valve either to a jet nozzle through a gas emitting conduit for producing a jet flame or a gas emitting nozzle through said gas passage conduit for producing a visible flame at said highest position and at said mid-position respectively; and (e) closing said lighter cap to move said switch pusher away from said gas releasable valve such that said gas releasable valve is allowed to further drop downwardly to said lowest position to shut off the gas discharged from said liquefied gas storage.
- 19. The process, as recited in claim 18, wherein said piezoelectric lighter further comprises a passage seat supported in said casing while said gas passage conduit is rested on said passage seat and a control latch extended from said gas lever to a position above said passage seat in such a manner that, in the step (b), when said depressible end of said gas lever is depressed by said ignition button to drive said control latch downwardly, said control latch compresses said gas passage conduit with respect to said passage seat, so as to block said gas discharging through said gas passage conduit.
- 20. The process, as recited in claim 19, wherein said piezoelectric jet lighter further comprises a switch latch extended from said lighter cap and arranged to be moved frontwardly when said lighter cap is radially slid rearwardly with respect to said casing and a resilient element having an affixing end portion securely mounted in said casing and a control end portion engaged with said switch latch, wherein said resilient element is adapted to apply said pushing force against said switch pusher towards said gas releasable valve.
- 21. The process as recited in claim 20, in step (d), wherein said control latch is moved upwardly to release a blocking up of said gas passage conduit so that said gas is detoured to said gas passage conduit for said gas emitting nozzle to produce said visible flame.
- 22. The process, as recited in claim 21, wherein said resilient element is a U-shaped elastic clip supported in said casing for applying said pushing force against said switch pusher so as to push said switch pusher to bias said sidewall of said gas releasable valve, wherein when said ignition cap is in a closed position in step (e), said switch latch normally pulls said control end of said portion of said resilient element towards said affixing end thereof to retain said resilient element in a compressed manner.
CROSS-REFERENCE OF RELATED APPLICATION
This is a Continuation-In-Part application of a non-provisional application, application Ser. No. 09/927,078, filed Aug. 10, 2001, now abandoned.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5584681 |
Suzuki |
Dec 1996 |
A |
Foreign Referenced Citations (4)
Number |
Date |
Country |
2259755 |
Mar 1993 |
GB |
2260602 |
Apr 1993 |
GB |
06-281140 |
Oct 1994 |
JP |
6-300257 |
Oct 1994 |
JP |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09/927078 |
Aug 2001 |
US |
Child |
10/233392 |
|
US |