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    • 2. 发明授权
    • Optical fiber producing method
    • 光纤生产方法
    • US06928840B1
    • 2005-08-16
    • US10089719
    • 2000-10-11
    • Katsuya NagayamaYuichi OhgaKazuya KuwaharaIchiro Tsuchiya
    • Katsuya NagayamaYuichi OhgaKazuya KuwaharaIchiro Tsuchiya
    • C03B37/027C03B37/029G02B6/00C03B37/025C03B37/03
    • C03B37/02718C03B37/029C03B2205/56C03B2205/82C03B2205/83C03B2205/90
    • A drawing apparatus 1 comprises a drawing furnace 11, a protecting tube 21, and a resin curing unit 31. A buffer chamber 41 is disposed between the drawing furnace 11 and the protecting tube 21, and has a length L1 in the drawing direction of the optical fiber 3. The buffer chamber 41 is constituted by a first buffer cell 42 and a second buffer cell 45. In the space within the buffer chamber 41, an He gas, which is an atmosphere gas within the drawing furnace 11, and the air, which is an atmosphere gas within the protecting tube 21, exist in a mixed state. The optical fiber 3 drawn upon heating in the drawing furnace 11 is fed to the protecting tube 21, and a predetermined part of the optical fiber 3 is annealed at a predetermined cooling rate. Thereafter, a coating die 62 coats the optical fiber 3 with a UV resin solution 63, and the resin curing unit 31 cures the UV resin 63, whereby a coated optical fiber 4 is obtained.
    • 拉制装置1包括拉丝炉11,保护管21和树脂固化单元31。 缓冲室41设置在拉丝炉11和保护管21之间,并且在光纤3的拉伸方向上具有长度L 1。 缓冲室41由第一缓冲单元42和第二缓冲单元45构成。 在缓冲室41内的空间内,作为吸入炉11内的气氛气体的He气体和作为保护管21内的气氛气体的空气以混合状态存在。 在拉丝炉11中加热拉制的光纤3被送入保护管21,光纤3的规定部分以规定的冷却速度进行退火。 此后,涂布模具62用UV树脂溶液63涂覆光纤3,树脂固化单元31固化UV树脂63,从而获得涂覆的光纤4。
    • 4. 发明授权
    • Drawing method of optical fiber and drawing furnace
    • 光纤拉丝炉拉丝方法
    • US06907757B2
    • 2005-06-21
    • US10078269
    • 2002-02-20
    • Kazuya KuwaharaKatsuya NagayamaIchiro TsuchiyaMasashi Onishi
    • Kazuya KuwaharaKatsuya NagayamaIchiro TsuchiyaMasashi Onishi
    • G02B6/00C03B37/027C03B37/029C03B37/07C03B37/02
    • C03B37/029C03B2205/63Y02P40/57
    • The drawing method of the present invention uses a drawing furnace comprising a furnace muffle tube, a furnace body and a heater. According to the method, an optical fiber preform is inserted from the inlet of the furnace muffle tube, the optical fiber preform is melted by means of a heater, under a specified gas atmosphere, and is drawn toward the outlet of the furnace muffle tube by means of a specified drawing tension. The optical fiber preform and the drawing furnace used in this method both satisfy the condition of below-indicated formula (1): L/D≧8  (1) wherein L indicates the length of the furnace body in the drawing direction and D indicates the diameter of the optical fiber preform. Through this method, even for the case of drawing optical fibers having a large relative index difference between the central core and the cladding, optical fibers wherein residual amounts of lattice defects are sufficiently reduced and degradation of characteristics under a hydrogen atmosphere is sufficiently suppressed can be obtained efficiently and at low cost.
    • 本发明的拉拔方法使用包括炉马弗管,炉体和加热器的拉丝炉。 根据该方法,从炉马弗管的入口插入光纤预制棒,在特定的气体气氛下,通过加热器将光纤预制棒熔化,并通过炉管马弗管的出口向炉马弗管的出口拉出 指定图纸张力的手段。 本方法中使用的光纤预制棒和拉丝炉均满足下述式(1)的条件:<?in-line-formula description =“In-line formula”end =“lead”?> L / D > = 8(1)<?in-line-formula description =“In-line Formulas”end =“tail”?>其中L表示炉体在拉伸方向上的长度,D表示光纤的直径 预制件。 通过这种方法,即使在中心纤芯和包层之间绘制相对折射率差大的光纤的情况下,也可充分地抑制晶格缺陷残留量的充分降低,氢气氛下的特性劣化得到充分抑制的光纤, 有效地以低成本获得。
    • 5. 发明授权
    • Method of controlling an upper portion of an optical fiber draw furnace
    • 控制光纤拉丝炉上部的方法
    • US06810692B2
    • 2004-11-02
    • US10445814
    • 2003-05-28
    • Toshiki TaruKatsuya NagayamaKazuya KuwaharaIchiro Tsuchiya
    • Toshiki TaruKatsuya NagayamaKazuya KuwaharaIchiro Tsuchiya
    • C03B37027
    • C03B37/029C03B2205/63C03B2205/74C03B2205/80C03B2205/90C03B2205/92C03B2205/98
    • A furnace for drawing an optical fiber provided with a muffle tube (10) and inner tubes (5,5′) connected to the upper end of the core tube, wherein a preform (1) supported by a dummy rod (2) at the upper part thereof is disposed inside the muffle tube (10) and inner tubes (5,5′) so as to be movable downward together with dummy rod (2), the preform (1) is heated and melted by a heater (11) from the outside of the muffle tube (10) and an optical fiber (1a) is pulled out from the lower end of the preform (1); the furnace is further provided with one or a plurality of sets of separating plates (4, 17) adapted to partition a space in the inner tubes (5,5′) above the preform (1) into a plurality of portions in the advance direction of the preform and disposed in the space, and with gas blowing inlets (8) disposed in the parts of wall surfaces of the inner tubes (5,5′) which are below the separating plates (4, 17) and adapted to blow an inert gas into the inner tubes (5,5′) and the muffle tube (10), thereby preventing variations in diameter of the optical fiber (1a).
    • 一种用于拉制设置有马弗管(10)的光纤和连接到芯管的上端的内管(5,5')的炉,其中,在所述芯管的上端由所述虚拟棒(2)支撑的预成型件(1) 其上部设置在马弗管(10)和内管(5,5')的内部,以便与虚拟棒(2)一起向下移动,预成型件(1)由加热器(11)加热和熔化, 从马弗管(10)的外部和光纤(1a)从预成型件(1)的下端拉出; 炉还设置有一组或多组分离板(4,17),其适于将预成型件(1)上方的内管(5,5')中的空间分隔成前进方向的多个部分 并且设置在所述空间中,并且具有设置在所述分隔板(4,17)下方的内管(5,5')的壁表面的部分中的气体吹入口(8),并且适于吹塑 惰性气体进入内管(5,5')和马弗管(10),从而防止光纤(1a)的直径变化。
    • 6. 发明授权
    • Optical fiber drawing furnace having adjustable partitions
    • 光纤拉丝炉具有可调隔板
    • US06668592B1
    • 2003-12-30
    • US09622827
    • 2000-08-24
    • Toshiki TaruKatsuya NagayamaKazuya KuwaharaIchiro Tsuchiya
    • Toshiki TaruKatsuya NagayamaKazuya KuwaharaIchiro Tsuchiya
    • C03B37029
    • C03B37/029C03B2205/63C03B2205/74C03B2205/80C03B2205/90C03B2205/92C03B2205/98
    • A furnace for drawing an optical fiber provided with a muffle tube (10) and inner tubes (5,5′) connected to the upper end of the core tube, wherein a preform (1) supported by a dummy rod (2) at the upper part thereof is disposed inside the muffle tube (10) and inner tubes (5,5′) so as to be movable downward together with dummy rod (2), the preform (1) is heated and melted by a heater (11) from the outside of the muffle tube (10) and an optical fiber (1a) is pulled out from the lower end of the preform (1); the furnace is further provided with one or a plurality of sets of separating plates (4, 17) adapted to partition a space in the inner tubes (5, 5′) above the preform (1) into a plurality of portions in the advance direction of the preform and disposed in the space, and with gas blowing inlets (8) disposed in the parts of wall surfaces of the inner tubes (5, 5′) which are below the separating plates (4,17) and adapted to blow an inert gas into the inner tubes (5,5′) and the muffle tube (10), thereby preventing variations in diameter of the optical fiber (1a).
    • 一种用于拉制设置有马弗管(10)的光纤和连接到芯管的上端的内管(5,5')的炉,其中,在所述芯管的上端由所述虚拟棒(2)支撑的预成型件(1) 其上部设置在马弗管(10)和内管(5,5')的内部,以便与虚拟棒(2)一起向下移动,预成型件(1)由加热器(11)加热和熔化, 从马弗管(10)的外部和光纤(1a)从预成型件(1)的下端拉出; 该炉还设置有一组或多组分离板(4,17),其适于将预成型件(1)上方的内管(5,5')中的空间分隔成前进方向的多个部分 并且设置在所述空间中,并且具有设置在所述分离板(4,17)下方的内管(5,5')的壁表面的部分中的气体吹入口(8),并且适于吹塑 惰性气体进入内管(5,5')和马弗管(10),从而防止光纤(1a)的直径变化。
    • 7. 发明授权
    • Optical fiber, method of making the same, and optical transmission system including the same
    • 光纤,其制造方法以及包括该光纤的光传输系统
    • US06567597B2
    • 2003-05-20
    • US09899020
    • 2001-07-06
    • Eisuke SasaokaMasashi OnishiKatsuya NagayamaKaoru OkunoKazuya Kuwahara
    • Eisuke SasaokaMasashi OnishiKatsuya NagayamaKaoru OkunoKazuya Kuwahara
    • G02B602
    • G02B6/03644C03B37/0253C03B37/027C03B37/02745C03B37/032C03B2203/19C03B2203/36C03B2205/06G02B6/02247G02B6/02285G02B6/278
    • The present invention provides an optical fiber and the like comprising a structure making it possible to realize optical communications with a higher speed and a larger capacity as compared with conventional optical transmission systems. The optical fiber according to the present invention is an optical fiber in which at least one first portion having a positive chromatic dispersion at a predetermined wavelength within a wavelength band in use and at least one second portion having a negative chromatic dispersion at the predetermined wavelength are arranged adjacent each other along the longitudinal direction thereof. In particular, the optical fiber comprises a polarization coupling structure for inducing coupling between polarization modes of propagating light. This polarization coupling structure randomly causes coupling between polarization modes of the propagating light, whereby polarization mode dispersion decreases at the predetermined wavelength. As a consequence, transmission characteristics are effectively restrained from deteriorating due to polarization mode dispersion. Specifically, the polarization coupling structure is a twist applied to the optical fiber.
    • 本发明提供一种光纤等,其包括与常规光传输系统相比可以实现具有更高速度和更大容量的光通信的结构。 根据本发明的光纤是一种光纤,其中在使用中的波长带内的预定波长具有正色散的至少一个第一部分和在预定波长处具有负色散的至少一个第二部分是 沿着其纵向彼此相邻布置。 特别地,光纤包括用于在传播光的偏振模式之间引起耦合的偏振耦合结构。 该偏振耦合结构随机引起传播光的偏振模式之间的耦合,从而偏振模色散在预定波长处降低。 结果,由于偏振模式色散,传输特性被有效地抑制为劣化。 具体地,偏振耦合结构是施加到光纤上的扭转。
    • 10. 发明授权
    • Manufacturing method of an optical fiber
    • 光纤的制造方法
    • US06502428B1
    • 2003-01-07
    • US09698280
    • 2000-10-30
    • Masashi OnishiKazuya KuwaharaKatsuya Nagayama
    • Masashi OnishiKazuya KuwaharaKatsuya Nagayama
    • C03B3707
    • G02B6/03666C03B37/0253C03B2203/18C03B2203/36C03B2205/40C03B2205/72G02B6/02271G02B6/0283G02B6/03627
    • A manufacturing method of an optical fiber, which enables to precisely manufacture the optical fiber having a desired chromatic dispersion, comprising: (1) preparing an optical fiber preform having a longitudinally uniform refractive index, (2) measuring the chromatic dispersion of a predetermined length of the optical fiber obtained at the beginning of the drawing, (3) according to the results of such measurement, estimating the chromatic dispersion characteristic of the optical fiber obtained by drawing the optical fiber preform, and commencing the drawing of the optical fiber preform. To achieve the target chromatic dispersion diameter of the optical fiber is determined according to the chromatic dispersion that is measured with respect to a predetermined length of an optical fiber obtained at the beginning of the drawing of an optical fiber preform. Then, the remainder of the optical fiber preform is drawn to produce an optical fiber having the desired chromatic dispersion.
    • 一种光纤制造方法,其能够精确地制造具有期望的色散的光纤,包括:(1)制备具有纵向均匀折射率的光纤预制棒,(2)测量预定长度的色散 ,(3)根据这种测量结果,估计通过拉制光纤预制棒而获得的光纤的色散特性,并开始拉伸光纤预制棒。 根据在光纤预制件的绘制开始时获得的光纤的预定长度测量的色散来确定实现光纤的目标色散直径。 然后,拉出光纤预制件的其余部分,以产生具有所需色散的光纤。