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    • 2. 发明公开
    • 평면배열형 수광 소자를 이용한 광 측정 장치 및 방법
    • 使用平面阵列式光接收装置测量光的装置和方法
    • KR1020030093786A
    • 2003-12-11
    • KR1020020031637
    • 2002-06-05
    • 주식회사 한택정보통신연구진흥원
    • 주관종최재식양진세지광순김억연정기우김도훈김은하송경수이지연
    • G01J1/00
    • G01J1/4228G01J1/4257G01M11/088G01M11/33
    • PURPOSE: An apparatus and a method for measuring light by using a planar array type light receiving device are provided to precisely measure a shape and uniformity of light radiated from optical waveguide. CONSTITUTION: An optical measuring apparatus includes an optical switch(100), a waveguide array section(110), an x-axis moving device(120), a light receiving device(130), a z-axis moving device(140), a controller(150), a memory(160), a digital signal processor(170) and an LCD panel(180). The waveguide array section(110) includes a plurality of waveguide arrays, which are aligned in a row at a predetermined interval. The optical switch(100) selects one of the waveguide arrays in response to a control signal of the controller(150). The light receiving device(130) has a plurality of pixels aligned in a lattice pattern.
    • 目的:提供一种通过使用平面阵列型光接收装置测量光的装置和方法,以精确地测量从光波导辐射的光的形状和均匀性。 构成:光学测量装置包括光开关(100),波导阵列部分(110),x轴移动装置(120),光接收装置(130),z轴移动装置(140) 控制器(150),存储器(160),数字信号处理器(170)和LCD面板(180)。 波导阵列部分(110)包括多个波导阵列,它们以预定的间隔排成一行。 光开关(100)响应于控制器(150)的控制信号选择一个波导阵列。 光接收装置(130)具有以格子图案对准的多个像素。
    • 3. 发明授权
    • 파장 다중 분할 커플러 장치를 이용한 양방향 광모듈
    • 파장다중분할커플러장치를이용한양방향광모듈
    • KR100465650B1
    • 2005-01-13
    • KR1020020028732
    • 2002-05-23
    • 주식회사 한택
    • 주관종최재식양진세지광순김억연정기우김도훈김은하송경수이지연
    • G02B6/42
    • PURPOSE: A bidirectional optical module using a WDM(Wavelength Divisional Multiplexing) coupler is provided to manufacture an accurate substrate by using a semiconductor silicon process and a passive alignment method. CONSTITUTION: A bidirectional optical module using a WDM coupler includes a light receiving device(118), a light emitting device(120), a WDM coupler, and a substrate(110). The WDM coupler includes two lines(132a,132b) and a common line. The lines(132a,132b) are optically coupled to the light receiving device(118) and the light emitting device(120). The lines(132a,132b) are unified by the common line. The substrate(110) includes an optical device installation portion(112) and an optical line installation portion(114). The receiving device(118) and the light emitting device(120) are installed on the optical device installation portion(112). The lines(132a,132b) are installed on the optical line installation portion(114).
    • 目的:提供使用WDM(波分多路复用)耦合器的双向光学模块,以通过使用半导体硅工艺和被动对准方法来制造精确的衬底。 构成:使用WDM耦合器的双向光模块包括光接收装置(118),发光装置(120),WDM耦合器和衬底(110)。 WDM耦合器包括两条线路(132a,132b)和一条公共线路。 线(132a,132b)光学耦合到光接收装置(118)和发光装置(120)。 线(132a,132b)由公用线统一。 基板(110)包括光学装置安装部分(112)和光学线路安装部分(114)。 接收装置(118)和发光装置(120)安装在光学装置安装部分(112)上。 线路(132a,132b)安装在光线路安装部分(114)上。
    • 4. 发明授权
    • 광모듈 패키지
    • 광모듈패키지
    • KR100415754B1
    • 2004-01-24
    • KR1020020004426
    • 2002-01-25
    • 주식회사 한택
    • 주관종최재식양진세김상모지광순김억연정기우김은하김도훈송경수이지연
    • G02B6/00
    • PURPOSE: An optical module package is provided to previously prevent the thermal stress to the spiral optical fiber coupled to the optical device. CONSTITUTION: An optical module package includes an optical device(140), an optical fiber(120), a substrate(130), a thermal expansion correction member(190), a package sidewall. The optical fiber(120) having a predetermined period without having a coated layer from the end is optically connected to the optical device(140). The thermal expansion correction member(190) supports the substrate(130) at a specific portion. And, the package sidewall is provided with a first part for supporting the optical fiber(120) at the position being spaced apart from the substrate(130) and a second part for supporting the specific portion of the thermal expansion correction portion at the position being spaced apart from the specific portion at a direction opposite to the first part. In the optical module package, the thermal expansion correction member(190) has a thermal expansion coefficient being larger than that of the package side wall.
    • 目的:提供光学模块封装以预先防止耦合到光学装置的螺旋光纤的热应力。 构成:光模块封装包括光学器件(140),光纤(120),衬底(130),热膨胀校正构件(190),封装侧壁。 具有预定周期而没有从末端起具有涂层的光纤(120)光学连接到光学装置(140)。 热膨胀修正部件190在特定部位支撑基板130。 并且,封装侧壁在与基板(130)隔开的位置设置有用于支撑光纤(120)的第一部分和用于支撑热膨胀校正部分的特定部分的第二部分, 在与第一部分相反的方向上与特定部分间隔开。 在光模块封装中,热膨胀修正部件(190)的热膨胀系数大于封装件侧壁的热膨胀系数。
    • 6. 发明公开
    • 파장 다중 분할 커플러 장치를 이용한 양방향 광모듈
    • 使用WDM耦合器的双向光模块
    • KR1020030090431A
    • 2003-11-28
    • KR1020020028732
    • 2002-05-23
    • 주식회사 한택
    • 주관종최재식양진세지광순김억연정기우김도훈김은하송경수이지연
    • G02B6/42
    • PURPOSE: A bidirectional optical module using a WDM(Wavelength Divisional Multiplexing) coupler is provided to manufacture an accurate substrate by using a semiconductor silicon process and a passive alignment method. CONSTITUTION: A bidirectional optical module using a WDM coupler includes a light receiving device(118), a light emitting device(120), a WDM coupler, and a substrate(110). The WDM coupler includes two lines(132a,132b) and a common line. The lines(132a,132b) are optically coupled to the light receiving device(118) and the light emitting device(120). The lines(132a,132b) are unified by the common line. The substrate(110) includes an optical device installation portion(112) and an optical line installation portion(114). The receiving device(118) and the light emitting device(120) are installed on the optical device installation portion(112). The lines(132a,132b) are installed on the optical line installation portion(114).
    • 目的:提供使用WDM(波分复用)​​耦合器的双向光模块,通过使用半导体硅工艺和无源对准方法制造精确的衬底。 构成:使用WDM耦合器的双向光学模块包括光接收装置(118),发光装置(120),WDM耦合器和基板(110)。 WDM耦合器包括两条线(132a,132b)和一条公共线。 线(132a,132b)光耦合到光接收装置(118)和发光装置(120)。 线(132a,132b)由公共线统一。 基板(110)包括光学装置安装部(112)和光线路安装部(114)。 接收装置(118)和发光装置(120)安装在光学装置安装部分(112)上。 线路(132a,132b)安装在光线路安装部分(114)上。
    • 7. 发明公开
    • 실리콘 블록을 이용한 어레이 광 콜리메이터
    • 使用硅块的阵列光学收缩机
    • KR1020030064285A
    • 2003-07-31
    • KR1020030002482
    • 2003-01-14
    • 주식회사 한택
    • 양진세주관종최재식김상모지광순김억연정기우김은하김도훈송경수이지연
    • G02B6/32
    • PURPOSE: An array optical collimator by using a silicon block is provided to manufacture a precise substrate by using a semiconductor silicon process as a previously set standard process and to form in low costs and simply by utilizing the passive alignment method using the same. CONSTITUTION: An array optical collimator(100) by using a silicon block includes a lens(120), an optical fiber(130), a lens array block, an optical fiber array block and a base substrate(110). In the array optical collimator(100), the lens array block aligns the plurality of lenses in the form of array and made of a lens array substrate(116) and a lens array cover(118). The optical fiber array block aligns the plurality of optical fibers in the form of array and made of the optical fiber array substrate(112) and the optical fiber array cover(114). And, the base substrate(110) performs the optical connection for the passive alignment between the lens array block and the optical fiber array block.
    • 目的:提供使用硅块的阵列光学准直器,通过使用半导体硅工艺作为先前设定的标准工艺来制造精确的衬底,并且以低成本形成,并且简单地通过利用其使用的被动对准方法。 构成:通过使用硅块的阵列光学准直器(100)包括透镜(120),光纤(130),透镜阵列块,光纤阵列块和基底(110)。 在阵列光学准直器(100)中,透镜阵列块以阵列的形式对准多个透镜,并由透镜阵列基板(116)和透镜阵列盖(118)制成。 光纤阵列块将阵列形式的多根光纤对齐,由光纤阵列基板(112)和光纤阵列盖(114)制成。 并且,基底基板(110)对透镜阵列块和光纤阵列块之间的无源对准进行光连接。
    • 8. 发明公开
    • 광소자가 집적된 광섬유 블럭
    • 光学阵列与光学设备集成
    • KR1020030038023A
    • 2003-05-16
    • KR1020010069428
    • 2001-11-08
    • 주식회사 한택
    • 주관종최재식양진세김상모지광순김억연정기우김은하김도훈송경수이지연
    • G02B6/42
    • G02B6/2852G02B6/3636G02B6/4202G02B6/4219G02B6/4249
    • PURPOSE: An optical array block integrated with optical devices is provided to simplify a fabrication process by integrating and miniaturizing detection modules detecting the intensity of optical signals. CONSTITUTION: A plurality of V-shaped grooves are formed on an upper surface of a block substrate(100). A plurality of optical fibers(101) are installed on the V-shaped grooves of the block substrate(100). A block cap(200) is installed on an upper portion of the optical fibers(101). A groove is formed on the block substrate(100) corresponding to a region in which the block cap(200) is removed. A medium panel(110) is covered on the block substrate(100) between adhesive prevention grooves(105). An optical device substrate(120) is located on a center portion of the medium panel(110). An electric wire(118) and a bonding pad(117) are formed on an upper face of the medium panel(110).
    • 目的:提供与光学器件集成的光学阵列块,通过集成和小型化检测模块的光学信号强度来简化制造过程。 构成:在块基板(100)的上表面上形成有多个V形槽。 多个光纤(101)安装在块状基板(100)的V形槽上。 块盖(200)安装在光纤(101)的上部。 在块状基板(100)上形成有对应于去除块盖(200)的区域的槽。 中间面板(110)在阻挡基板(100)之间被覆盖在防粘接凹槽(105)之间。 光学器件基板(120)位于介质板(110)的中心部分。 在介质板(110)的上表面上形成电线(118)和焊盘(117)。
    • 9. 发明授权
    • 정렬에 용이한 직선 피복층을 가진 편광유지 광섬유
    • 정렬에용이한직선선피복층을가진편광유지광섬유
    • KR100427999B1
    • 2004-04-28
    • KR1020020012989
    • 2002-03-11
    • 주식회사 한택
    • 주관종최재식양진세김상모지광순김억연정기우김은하김도훈송경수이지연
    • G02B6/024G02B6/02
    • PURPOSE: A polarization maintaining optical fiber having a linear coating layer easy to arrange is provided to reduce the damage in coupling light by forming a flat zone on the most external coating layer of an optical fiber to facilitate arrangement of polarization axis. CONSTITUTION: A core layer(10) is provided on the center of a polarization maintaining optical fiber. A cladding layer(20) wraps the core layer(10). Two coating layers(30,140) wrap the cladding layer(20). A part of an external closed curve is provided with a flat zone on a cross section of the most external coating layer of the coating layers(30,140). The coating layer(30) is an inner coating layer and the coating layer(140) is an external coating layer. The external closed curve is cylindrical.
    • 目的:提供一种具有易于排列的线性涂层的偏振保持光纤,以通过在光纤的最外部涂层上形成平坦区域以便于偏振轴的排列来减少耦合光的损伤。 构成:在保偏光纤的中心设置芯层(10)。 包层(20)包裹芯层(10)。 两个涂层(30,140)包覆覆层(20)。 外部闭合曲线的一部分在涂层(30,140)的最外部涂层的横截面上设有平坦区域。 涂层(30)是内涂层,涂层(140)是外涂层。 外部闭合曲线是圆柱形的。
    • 10. 发明公开
    • 인터넷을 이용한 코디 서비스 시스템 및 그 방법
    • 使用互联网协调服务的系统和方法
    • KR1020010093913A
    • 2001-10-31
    • KR1020000017233
    • 2000-04-03
    • 주식회사 한택
    • 박선자박소현김은하
    • G06Q50/00
    • PURPOSE: A system and method of a coordination service using Internet is provided to enable a user to receive a coordination consulting service at a desired time without charge. CONSTITUTION: A cyber model generating part(101) generates a temporary cyber model and a standard cyber model. A customer information database part(102) stores customer information. A body analyzing part(103) analyzes and combines the customer information and divides body type according to the customer information. A body division database part(104) stores results of the body analyzing part. An individual model displaying part(105) displays the standard cyber model on a monitor. A coordination simulating part(107) coordinates a clothing selected by the customer with the standard cyber model, and stores the results in the body analyzing part. A coordination analyzing part(108) analyzes items of the cyber models according to the stored information by an expert coordination algorithm. A coordination index evaluating part(109) evaluates coordination grades according to the results of the coordination analyzing part. A counseling result displaying part(110) displays results of the coordination index evaluating part.
    • 目的:提供使用互联网的协调服务的系统和方法,以使用户能够在所需时间不收费地接收协调咨询服务。 构成:网络模型生成部分(101)产生一个临时的网络模型和一个标准的网络模型。 客户信息数据库部分(102)存储客户信息。 身体分析部(103)根据客户信息分析并组合客户信息并分割身体类型。 身体分割数据库部(104)存储身体分析部的结果。 单个模型显示部分(105)在监视器上显示标准网络模型。 协调模拟部分(107)使用标准网络模型来协调客户所选择的服装,并将结果存储在身体分析部分中。 协调分析部分(108)通过专家协调算法根据存储的信息分析网络模型的项目。 协调指标评估部分(109)根据协调分析部分的结果评估协调等级。 咨询结果显示部(110)显示协调指标评价部的结果。