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    • 1. 发明授权
    • Light source unit incorporating light emitting device and optical device
    • 配有发光装置和光学装置的光源装置
    • US5412509A
    • 1995-05-02
    • US93927
    • 1993-07-20
    • Naotaro NakataKazutoshi Yamazaki
    • Naotaro NakataKazutoshi Yamazaki
    • H01S3/00G02B7/02H01S5/00H01S5/022H01S5/40
    • G02B7/021
    • A semiconductor laser is inserted into a first hole of a fixing member. An optical system including a cylindrical lens barrel and a lens attached inside the lens barrel is inserted into a second hole in order to direct a light beam emitted from the semiconductor laser to a predetermined position. The first and second holes are formed to be opposite to each other and are arranged on the same axis. The semiconductor laser and the optical system inserted into the first and second holes, respectively, so as to be partly exposed are fixed by laser welding at entrances of the first and second holes. The fixing member is provided with a third hole vertically penetrating the second hole. An adhesive is filled into the third hole. Further, an adhesive is applied onto laser welding points at the entrance of the first hole.
    • 将半导体激光器插入到固定构件的第一孔中。 将包括柱面透镜镜筒和安装在透镜镜筒内的透镜的光学系统插入到第二孔中,以将从半导体激光器发射的光束引导到预定位置。 第一和第二孔形成为彼此相对并且布置在同一轴线上。 通过在第一孔和第二孔的入口处的激光焊接固定分别插入第一孔和第二孔中以便部分暴露的半导体激光器和光学系统。 固定构件设有垂直贯穿第二孔的第三孔。 粘合剂填充到第三孔中。 此外,将粘合剂施加到第一孔的入口处的激光焊接点上。
    • 2. 发明授权
    • Mold type semiconductor laser
    • 模具型半导体激光器
    • US06970486B2
    • 2005-11-29
    • US09858508
    • 2001-05-17
    • Naotaro Nakata
    • Naotaro Nakata
    • G11B7/125G11B7/13G11B7/135H01L31/12H01S5/00H01S5/022H01S5/042H01S3/04
    • H01S5/02248H01S5/02244H01S5/0683
    • A sub-mount (7) provided with a laser chip (8) and a light receiving element (5) for monitoring is bonded to a die pad portion (2a) of a first lead (2). An electrode of the laser chip and an electrode of the light receiving element are electrically connected to second leads (3, 4) by wires such as metallic wires, not shown, respectively. A resin frame (6) is provided to cover sides and a rear surface side of the sub-mount except for an emission surface side of the laser chip and to integrally hold one end portion sides of the first and second leads. An antireflection unit (9) for preventing light from being reflected on the light receiving element is formed on a portion of the resin frame opposite to the rear end face of the laser chip. As a result, it is possible to obtain a mold type semiconductor laser capable of constantly detect accurate laser chip output and capable of forming an accurate optical output control circuit.
    • 设置有用于监测的激光芯片(8)和受光元件(5)的子安装座(7)被接合到第一引线(2)的管芯焊盘部分(2a)。 激光芯片的电极和受光元件的电极分别通过未示出的金属线等电线电连接到第二引线(3,4)。 树脂框架(6)设置成覆盖激光芯片的发射表面侧以外的副安装座的侧面和后表面侧,并且一体地保持第一和第二引线的一个端部侧面。 在树脂框架的与激光芯片的后端面相对的部分上形成有用于防止在受光元件上反射光的防反射单元(9)。 结果,可以获得能够不断地检测准确的激光芯片输出并且能够形成精确的光输出控制电路的模具型半导体激光器。
    • 3. 发明授权
    • Optical branching and coupling device
    • 光分支和耦合器件
    • US5339373A
    • 1994-08-16
    • US120420
    • 1993-09-14
    • Haruo TanakaNaotaro Nakata
    • Haruo TanakaNaotaro Nakata
    • G02B6/293G02B6/34G02B6/42H01L31/0232H01S5/00G02B6/00G02B6/36
    • G02B6/4215G02B6/29367
    • An optical branching and coupling device is provided in which the loss of light in receiving and in transmission is substantially reduced while at the same time the wavelength-branching characteristic is remarkably improved. The optical branching and coupling device connected to a first optical fiber for inputting a first ray of light and a second ray of light of which respective wavelengths are different from each other and for outputting the first ray and to a second optical fiber for outputting the second ray, and having therein a light-emitting element for emitting the first ray and a light-receiving element for receiving the first ray, the optical branching and coupling device including a first filter for receiving the two rays input from the first optical fiber and a ray of light emitted from the light-emitting element, and a second filter for receiving the rays from the first filter and sending them to the second optical fiber and to the light-receiving element, wherein the first filter is formed, on its front side, with a first filter film adapted to substantially transmit the first ray and to substantially reflect the second ray and, on its back side, with a mirror film adapted to transmit a portion of each of the rays and to reflect the rest thereof; and wherein the second filter is formed, on its front side, with a second filter film adapted to substantially transmit the first ray and to substantially reflect the second ray and, on its back side, with an antireflective film adapted to substantially transmit the first ray.
    • 提供了一种光分支和耦合装置,其中接收和传输中的光的损耗大大降低,同时波长分支特性显着提高。 连接到用于输入第一光线的第一光纤的光分支和耦合装置和各波长彼此不同并用于输出第一光线的第二光线和用于输出第二光线的第二光纤 并且其中具有用于发射第一光线的发光元件和用于接收第一光线的光接收元件,所述光分支和耦合装置包括用于接收从第一光纤输入的两条光线的第一滤光器和 从发光元件发出的光线;以及第二滤光器,用于接收来自第一滤光器的光线并将它们发送到第二光纤和光接收元件,其中形成第一滤光器,在其正面 具有适于基本上透射第一光线并且基本上反射第二光线的第一滤光膜,并且在其背面上具有适于透射端口的镜膜 在每个射线上,并反射其余部分; 并且其中所述第二过滤器在其前侧具有适于基本上透射所述第一射线并基本上反射所述第二射线的第二过滤膜,并且在其背侧上形成适于基本上透射所述第一射线的抗反射膜 。
    • 4. 发明授权
    • Laser beam receiving unit
    • 激光束接收单元
    • US06548803B1
    • 2003-04-15
    • US09684955
    • 2000-10-05
    • Naotaro NakataHironori Endo
    • Naotaro NakataHironori Endo
    • H01J314
    • B41J2/01G01J1/02
    • A light receiving unit comprises a condenser lens (11) which converges laser beam and a light receiving unit (12) which receives the incident beam converged by the condenser lens. The light receiving element is formed, such that the light receiving portion thereof has an area of 2 mm2 or less and disposed at the side of the condenser lens than the point P where the beam is converged by the condenser lens and at the position more apart from the condenser lens than the position F of the focal distance of the condenser lens. As a consequence, a light receiving unit which detects the laser beam can be obtained, the light receiving unit enabling it possible to always receive the laser beam regardless of a little eccentricity of a laser source while the speed of response is raised.
    • 光接收单元包括会聚激光束的聚光透镜(11)和接收由聚光透镜会聚的入射光束的光接收单元(12)。 光接收元件形成为使得其光接收部分具有2mm2或更小的面积,并且设置在聚光透镜的侧面,而不是聚焦透镜的光束会聚在点P处,并且位于更分开的位置 来自聚光透镜的聚焦透镜的焦距位置F. 结果,可以获得检测激光束的光接收单元,光接收单元能够始终接收激光束,而不管激光源的偏心程度如何,同时响应速度提高。
    • 7. 发明授权
    • Optical pickup and hologram device
    • 光学拾取和全息设备
    • US06335809B1
    • 2002-01-01
    • US09647851
    • 2000-10-03
    • Naotaro Nakata
    • Naotaro Nakata
    • G02B532
    • G11B7/1353G02B5/32G11B7/094G11B7/131
    • An optical pickup includes a hologram unit. The hologram unit includes a hologram pattern formed circular by dividing into two and then joining together first and second patterns formed in the entire circular region. The first pattern is designed to minimize a sub-beam spot on a light-receiving device based on an optical path length and wavelength when a +1-order sub-beam is taken as a light source. The second pattern is designed to minimize the sub-beam spot on the light-receiving device based on an optical path length and wavelength when a −1-order sub-beam is taken as a light source.
    • 光拾取器包括全息图单元。 全息图单元包括通过分成两部分形成圆形的全息图图形,然后将形成在整个圆形区域中的第一和第二图案接合在一起。 第一图案被设计成当+ 1阶子束被用作光源时,基于光路长度和波长来最小化光接收装置上的子光束点。 第二图案被设计为当以-1级子光束作为光源时,基于光路长度和波长使光接收装置上的子光束点最小化。
    • 8. 发明授权
    • Semiconductor laser and optical system having a collimator lens
    • 具有准直透镜的半导体激光器和光学系统
    • US06320689B1
    • 2001-11-20
    • US09369513
    • 1999-08-06
    • Naotaro NakataAkihisa Yoshida
    • Naotaro NakataAkihisa Yoshida
    • G02B2608
    • G02B26/124G02B27/30
    • An optical system includes a semiconductor laser. The semiconductor laser is accommodated within a case. The case is formed with a window to pass through laser light emitted from the semiconductor laser. The laser light passed through the window comes to a collimator lens. Between semiconductor laser and the collimator lens is provided a light shield member having a pinhole to pass through the laser light having passed the window. Laser light made in a parallel luminous flux is outputted from the collimator lens. This laser light is deflected toward a main scanning direction by a deflector and further collected on a scanning surface by a light collector.
    • 光学系统包括半导体激光器。 半导体激光器容纳在壳体内。 壳体形成有通过从半导体激光器发射的激光的窗口。 通过窗口的激光进入准直透镜。 在半导体激光器和准直透镜之间设置有具有针孔以穿过已经通过窗口的激光的遮光部件。 从准直透镜输出以平行光束形成的激光。 该激光通过偏转器朝向主扫描方向偏转,并通过集光器在扫描面上进一步收集。