IP Library Patent Application 10497093
Patent Application
App. No. 10/497,093

Method and apparatus for fabricating optical fiber preform using double torch in mcvd

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Quick Facts
Patent No.
US None
App. No.
10/497,093
Abstract

Disclosed is a method for fabricating an optical fiber preform using a double torch in MCVD, which includes a first process of heating a quartz tube ( 10 ) at a temperature lower than a sintering temperature by using a first torch ( 21 ) with putting reaction gas, oxygen gas and dehydration gas into the tube so that soot particles are generated and deposited, and heating the tube to a predetermined temperature by using a second torch ( 22 ) spaced apart from the first torch after the first torch ( 21 ) passes so that moisture in the soot particles is removed; and a second process of conducting dehydration for removing moisture in the soot particles by use of the first torch ( 21 ) again, and heating the tube above a sintering temperature by using the second torch ( 22 ) so that the soot particles free from moisture are vitrified.

Claims (21)

1 . A method for fabricating an optical fiber preform in MCVD (Modified Chemical Vapor Deposition) comprising:

a first process of heating a quartz tube ( 10 ) at a temperature lower than a sintering temperature by using a first torch ( 21 ) with putting reaction gas, oxygen gas and dehydration gas into the tube so that soot particles are generated and deposited, and heating the tube to a predetermined temperature by using a second torch ( 22 ) spaced apart from the first torch after passing the first torch ( 21 ) so that moisture in the soot particles is removed; and

a second process of conducting dehydration for removing moisture in the soot particles by use of the first torch ( 21 ) again, and heating the tube above a sintering temperature by using the second torch ( 22 ) so that the soot particles free from moisture are vitrified.

2 . A method for fabricating an optical fiber preform in MCVD according to claim 1 ,

wherein the temperature for generation and deposition of the soot particles is below 1700° C., the temperature for removal of the moisture is below 1200° C., and the sintering temperature for vitrification is above 1700° C.

3 . A method for fabricating an optical fiber preform in MCVD according to claim 1 or 2 ,

wherein the first torch ( 21 ) and the second torch ( 22 ) are spaced apart from each other as much as 100 mm or more.

4 . A method for fabricating an optical fiber preform in MCVD according to claim 3 ,

wherein the first and second torches ( 21 )( 22 ) move at different speeds below 500 mm/min.

5 . An apparatus for fabricating an optical fiber preform in MCVD for depositing and sintering soot particles in a quartz tube, comprising:

a gas supply unit for supplying reaction gas, oxygen gas and dehydration gas into the quartz tube;

a first torch positioned at a relatively front portion of an advancing direction so as to heat a surface of the quartz tube; and

a second torch spaced apart from the first torch as much as a predetermined distance and positioned at a relatively rear portion of the advancing direction along the quartz tube,

wherein the first and second torches give heat at different set temperatures,

whereby the first and second torches heat the quartz tube so that both deposition reaction and dehydration reaction or both dehydration reaction and sintering reaction are accomplished at once.

6 . An apparatus for fabricating an optical fiber preform in MCVD according to claim 5 , further comprising means for moving the first and second torches at the same speed.

7 . An apparatus for fabricating an optical fiber preform in MCVD according to claim 5 , further comprising means for moving the first and second torches at different speeds.

8 . An apparatus for fabricating an optical fiber preform in MCVD according to claim 6 or 7 ,

wherein the first and second torches move at a speed less than 500 mm/min.

9 . An apparatus for fabricating an optical fiber preform in MCVD according to claim 5 ,

wherein the first and second torches are spaced apart from each other as much as 100 mm or more.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2008
From: LS CORP.
To: LS CABLE LTD.
Reel/Frame 021658/0903 →
CHANGE OF NAME Recorded Oct 9, 2008
From: LG CABLE LTD.; LS CABLE LTD.
To: LS CORP.
Reel/Frame 021651/0652 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2004
From: LEE, CHAN-JOO; SON, SOON-II; PARK, JI-SANG
To: LG CABLE LTD.
Reel/Frame 015814/0495 →