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公开(公告)号:JPH11171575A
公开(公告)日:1999-06-29
申请号:JP17197298
申请日:1998-06-19
Applicant: LUCENT TECHNOLOGIES INC
Inventor: CHANG KAI HUEI , KALISH DAVID , MILLER THOMAS J , PEARSALL MICHAEL L
IPC: G02B6/00 , C03B37/012 , C03B37/014 , C03C25/10 , C03C25/12 , G02B6/02 , G02B6/036
Abstract: PROBLEM TO BE SOLVED: To provide an optical fiber having low optical transmission loss in the wavelength region of 1,200 to 1,600 nm and particularly at 1,385 nm, in the correlation of optical transmission loss with wavelengths of transmitted light and also to provide the production of the optical fiber. SOLUTION: This production comprises: forming a core rod 20 by a vapor- phase axial deposition method so as to have a (deposited clad)/core ratio (D/d ratio) of
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公开(公告)号:DE69800981T2
公开(公告)日:2002-04-04
申请号:DE69800981
申请日:1998-06-09
Applicant: LUCENT TECHNOLOGIES INC
Inventor: CHANG KAI HUEI , MILLER THOMAS JOHN , KALISH DAVID , PEARSALL MICHAEL L
IPC: G02B6/00 , C03B37/012 , C03B37/014 , C03C25/10 , C03C25/12 , G02B6/02 , G02B6/036 , G02B6/16
Abstract: A singlemode optical fiber Ä700Ü having very low loss at 1385 nm, and a practical method for making same are disclosed. A core rod Ä20Ü is fabricated using vapor axial deposition to have a deposited cladding/core ratio (D/d) that is less than 7.5. The core rod is dehydrated in a chlorine- or fluorine-containing atmosphere at about 1200 DEG C to reduce the amount of OH present to less than 0.8 parts per billion by weight, and then consolidated in a helium atmosphere at about 1500 DEG C to convert the porous soot body into a glass. The consolidated core rod is elongated using an oxygen-hydrogen torch that creates a layer of OH ions on the surface of the rod that are largely removed by plasma etching. Finally, the core rod is installed in a glass tube Ä40Ü having a suitably low OH content. Thereafter, the tube is collapsed onto the rod to create a preform Ä60Ü. Conventional methods are employed for drawing an optical fiber from the preform and applying one or more protective coatings Ä75, 76Ü. The disclosed method is suitable for commercial production of low-OH fiber. Significantly, the fiber's loss at 1385 nm is reduced to a level that is less than its loss at 1310 nm, thereby rendering the entire wavelength region 1200 - 1600 nm suitable for optical transmission. In particular, wave-division-multiplex systems are now available to transmit optical signals over distances greater than 10 km in the wavelength region between 1360 nm and 1430 nm.
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公开(公告)号:DE69800981D1
公开(公告)日:2001-08-02
申请号:DE69800981
申请日:1998-06-09
Applicant: LUCENT TECHNOLOGIES INC
Inventor: CHANG KAI HUEI , MILLER THOMAS JOHN , KALISH DAVID , PEARSALL MICHAEL L
IPC: G02B6/00 , C03B37/012 , C03B37/014 , C03C25/10 , C03C25/12 , G02B6/02 , G02B6/036 , G02B6/16
Abstract: A singlemode optical fiber Ä700Ü having very low loss at 1385 nm, and a practical method for making same are disclosed. A core rod Ä20Ü is fabricated using vapor axial deposition to have a deposited cladding/core ratio (D/d) that is less than 7.5. The core rod is dehydrated in a chlorine- or fluorine-containing atmosphere at about 1200 DEG C to reduce the amount of OH present to less than 0.8 parts per billion by weight, and then consolidated in a helium atmosphere at about 1500 DEG C to convert the porous soot body into a glass. The consolidated core rod is elongated using an oxygen-hydrogen torch that creates a layer of OH ions on the surface of the rod that are largely removed by plasma etching. Finally, the core rod is installed in a glass tube Ä40Ü having a suitably low OH content. Thereafter, the tube is collapsed onto the rod to create a preform Ä60Ü. Conventional methods are employed for drawing an optical fiber from the preform and applying one or more protective coatings Ä75, 76Ü. The disclosed method is suitable for commercial production of low-OH fiber. Significantly, the fiber's loss at 1385 nm is reduced to a level that is less than its loss at 1310 nm, thereby rendering the entire wavelength region 1200 - 1600 nm suitable for optical transmission. In particular, wave-division-multiplex systems are now available to transmit optical signals over distances greater than 10 km in the wavelength region between 1360 nm and 1430 nm.
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公开(公告)号:AU723038B2
公开(公告)日:2000-08-17
申请号:AU7196598
申请日:1998-06-18
Applicant: LUCENT TECHNOLOGIES INC
Inventor: CHANG KAI HUEI , KALISH DAVID , MILLER THOMAS JOHN , PEARSALL MICHAEL L
IPC: G02B6/00 , C03B37/012 , C03B37/014 , C03C25/10 , C03C25/12 , G02B6/02 , G02B6/036 , C03B37/027 , G02B6/18
Abstract: A singlemode optical fiber Ä700Ü having very low loss at 1385 nm, and a practical method for making same are disclosed. A core rod Ä20Ü is fabricated using vapor axial deposition to have a deposited cladding/core ratio (D/d) that is less than 7.5. The core rod is dehydrated in a chlorine- or fluorine-containing atmosphere at about 1200 DEG C to reduce the amount of OH present to less than 0.8 parts per billion by weight, and then consolidated in a helium atmosphere at about 1500 DEG C to convert the porous soot body into a glass. The consolidated core rod is elongated using an oxygen-hydrogen torch that creates a layer of OH ions on the surface of the rod that are largely removed by plasma etching. Finally, the core rod is installed in a glass tube Ä40Ü having a suitably low OH content. Thereafter, the tube is collapsed onto the rod to create a preform Ä60Ü. Conventional methods are employed for drawing an optical fiber from the preform and applying one or more protective coatings Ä75, 76Ü. The disclosed method is suitable for commercial production of low-OH fiber. Significantly, the fiber's loss at 1385 nm is reduced to a level that is less than its loss at 1310 nm, thereby rendering the entire wavelength region 1200 - 1600 nm suitable for optical transmission. In particular, wave-division-multiplex systems are now available to transmit optical signals over distances greater than 10 km in the wavelength region between 1360 nm and 1430 nm.
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公开(公告)号:CA2240220C
公开(公告)日:2003-04-29
申请号:CA2240220
申请日:1998-06-10
Applicant: LUCENT TECHNOLOGIES INC
Inventor: CHANG KAI HUEI , MILLER THOMAS JOHN , KALISH DAVID , PEARSALL MICHAEL L
IPC: G02B6/00 , C03B37/012 , C03B37/014 , C03C25/10 , C03C25/12 , G02B6/02 , G02B6/036 , G02B6/16 , H04J14/02 , C03B23/047 , C03B23/057
Abstract: A singlemode optical fiber [700] having very low loss at 1385 nm, and a practical method for making same are disclosed. A core rod [20] is fabricate d using vapor axial deposition to have a deposited cladding/core ratio (D/d) that is less than 7.5. The core rod is dehydrated in a chlorine- or fluorine-containing atmosp here at about 1200.degree.C to reduce the amount of OH present to less than 0.8 part s per billion by weight, and then consolidated in a helium atmosphere at about 1500.degree.C to convert the porous soot body into a glass. The consolidated core rod is elongated using an oxygen-hydrogen torch that creates a layer of OH ions on the surface of the rod that are largely removed by plasma etching. Finally, the core rod is installed in a glass tube [40] having a suitably low OH content. Thereafter, the tube is collapse d onto the rod to create a preform [60]. Conventional methods are employed for drawing an optical fiber from the preform and applying one or more protective coatings [75, 76]. The disclosed method is suitable for commercial production of low-OH fiber. Significantly, the fiber's loss at 1385 nm is reduced to a level that is les s than its loss at 1310 nm, thereby rendering the entire wavelength region 1200 - 1600 nm su itable for optical transmission. In particular, wave-division-multiplexsystems are nowavailable to transmit optical signals over distances greater than 10 km in the wavelength region between 1360 nm and 1430 nm.
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公开(公告)号:BR9816133A
公开(公告)日:2001-11-27
申请号:BR9816133
申请日:1998-06-19
Applicant: LUCENT TECHNOLOGIES INC
Inventor: CHANG KAI HUEI , KALISH DAVID , MILLER THOMAS JOHN , PEARSALL MICHAEL L
IPC: G02B6/00 , C03B37/012 , C03B37/014 , C03C25/10 , C03C25/12 , G02B6/02 , G02B6/036 , G02B6/10
Abstract: A singlemode optical fiber Ä700Ü having very low loss at 1385 nm, and a practical method for making same are disclosed. A core rod Ä20Ü is fabricated using vapor axial deposition to have a deposited cladding/core ratio (D/d) that is less than 7.5. The core rod is dehydrated in a chlorine- or fluorine-containing atmosphere at about 1200 DEG C to reduce the amount of OH present to less than 0.8 parts per billion by weight, and then consolidated in a helium atmosphere at about 1500 DEG C to convert the porous soot body into a glass. The consolidated core rod is elongated using an oxygen-hydrogen torch that creates a layer of OH ions on the surface of the rod that are largely removed by plasma etching. Finally, the core rod is installed in a glass tube Ä40Ü having a suitably low OH content. Thereafter, the tube is collapsed onto the rod to create a preform Ä60Ü. Conventional methods are employed for drawing an optical fiber from the preform and applying one or more protective coatings Ä75, 76Ü. The disclosed method is suitable for commercial production of low-OH fiber. Significantly, the fiber's loss at 1385 nm is reduced to a level that is less than its loss at 1310 nm, thereby rendering the entire wavelength region 1200 - 1600 nm suitable for optical transmission. In particular, wave-division-multiplex systems are now available to transmit optical signals over distances greater than 10 km in the wavelength region between 1360 nm and 1430 nm.
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公开(公告)号:CA2240220A1
公开(公告)日:1998-12-20
申请号:CA2240220
申请日:1998-06-10
Applicant: LUCENT TECHNOLOGIES INC
Inventor: KALISH DAVID , CHANG KAI HUEI , MILLER THOMAS JOHN , PEARSALL MICHAEL L
IPC: G02B6/00 , C03B37/012 , C03B37/014 , C03C25/10 , C03C25/12 , G02B6/02 , G02B6/036 , G02B6/16 , H04J14/02 , C03B23/047 , C03B23/057
Abstract: A singlemode optical fiber [700] having very low loss at 1385 nm, and a practical method for making same are disclosed. A core rod [20] is fabricate d using vapor axial deposition to have a deposited cladding/core ratio (D/d) that is less than 7.5. The core rod is dehydrated in a chlorine- or fluorine-containing atmosp here at about 1200.degree.C to reduce the amount of OH present to less than 0.8 part s per billion by weight, and then consolidated in a helium atmosphere at about 1500.degree.C to convert the porous soot body into a glass. The consolidated core rod is elongated using an oxygen-hydrogen torch that creates a layer of OH ions on the surface of the rod that are largely removed by plasma etching. Finally, the core rod is installed in a glass tube [40] having a suitably low OH content. Thereafter, the tube is collapse d onto the rod to create a preform [60]. Conventional methods are employed for drawing an optical fiber from the preform and applying one or more protective coatings [75, 76]. The disclosed method is suitable for commercial production of low-OH fiber. Significantly, the fiber's loss at 1385 nm is reduced to a level that is les s than its loss at 1310 nm, thereby rendering the entire wavelength region 1200 - 1600 nm su itable for optical transmission. In particular, wave-division-multiplexsystems are nowavailable to transmit optical signals over distances greater than 10 km in the wavelength region between 1360 nm and 1430 nm.
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