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    • 7. 发明申请
    • Recording material supply device and image forming apparatus
    • 记录材料供给装置和成像装置
    • US20050146587A1
    • 2005-07-07
    • US11024833
    • 2004-12-30
    • Hiroyuki Asakura
    • Hiroyuki Asakura
    • G03B27/46B41J11/48B41J15/04B65H16/00B65H20/00B65H29/58B41J2/01
    • B41J15/04B41J11/485
    • A photographic printer removably holds a magazine for containing a roll of photographic paper is provided. The photographic paper is advanced and supplied to a transporting path. A large-width loading support is loaded with a large-width magazine removably. A small-width loading support is loaded with plural small-width magazines removably. The small-width magazines have a smaller width than the large-width magazine, and are arranged in a path crosswise direction that extends along a width of the transporting path. As viewed from the large width loading support, the small-width loading supports are arranged in a vertical direction that is perpendicular to the path crosswise direction. Furthermore, a cutter cuts the photographic paper to form a photographic paper sheet.
    • 提供了可拆卸地保持用于容纳一卷相纸的盒的照相打印机。 照相纸被提前并提供给传送路径。 大宽度装载支架可拆卸地装载有大宽度的弹匣。 一个小宽度的装载支架可装卸多个小宽度的杂志。 小宽度的杂志具有比大宽度的盒子更小的宽度,并且沿着沿着传送路径的宽度延伸的横向方向布置。 从大宽度装载支架观察,小宽度装载支架沿垂直于路径横向的垂直方向排列。 此外,切割器切割相纸以形成相纸。
    • 8. 发明授权
    • Optical waveguide, optical module, and method for producing same module
    • 光波导,光模块及其制造方法
    • US06904220B2
    • 2005-06-07
    • US10455452
    • 2003-06-06
    • Mikihiro ShimadaHiroyuki Asakura
    • Mikihiro ShimadaHiroyuki Asakura
    • G02B6/12G02B6/125G02B6/30G02B6/42G02B6/10
    • G02B6/125G02B6/12002G02B6/30G02B6/4246
    • An optical module of the present invention includes a first substrate 1, a second substrate 2, a PD 3, a LD 4, and an optical fiber 5. The first substrate 1 has a first optical waveguide core 1c formed therein. The second substrate 2 has a second optical waveguide core 2c formed therein. The first optical waveguide core 1c and the second optical waveguide core 2c form an optical connecting portion where the first substrate 1 and the second substrate 2 are bonded to each other. The LD 4 is capable of transmitting an optical signal via the second optical waveguide core 2c and the optical fiber 5. The PD 3 is capable of receiving an optical signal which enters the second optical waveguide core 2c from the optical fiber 5, and propagates through the first optical waveguide core 1c via the optical connecting portion formed between the first optical waveguide core 1c and the second optical waveguide core 2c.
    • 本发明的光学模块包括第一基板1,第二基板2,PD 3,LD 4和光纤5。 第一基板1具有形成在其中的第一光波导芯1c。 第二基板2具有形成在其中的第二光波导芯体2c。 第一光波导芯1c和第二光波导芯2 c形成第一基板1和第二基板2彼此接合的光学连接部。 LD 4能够经由第二光波导芯2c和光纤5发送光信号。 PD 3能够从光纤5接收进入第二光波导芯2c的光信号,并且经由第一光波导芯1c和第二光波导芯1c之间形成的光连接部传播通过第一光波导芯1c 第二光波导芯2 c。
    • 9. 发明授权
    • Optical waveguide, optical module, and method for producing the same module
    • 光波导,光模块,以及相同模块的制造方法
    • US06886996B2
    • 2005-05-03
    • US10874202
    • 2004-06-24
    • Mikihiro ShimadaHiroyuki Asakura
    • Mikihiro ShimadaHiroyuki Asakura
    • G02B6/12G02B6/125G02B6/30G02B6/42G02B6/36G02B6/00
    • G02B6/125G02B6/12002G02B6/30G02B6/4246
    • An optical module of the present invention includes a first substrate 1, a second substrate 2, a PD 3, a LD 4, and an optical fiber 5. The first substrate 1 has a first optical waveguide core 1c formed therein. The second substrate 2 has a second optical waveguide core 2c formed therein. The first optical waveguide core 1c and the second optical waveguide core 2c form an optical connecting portion where the first substrate 1 and the second substrate 2 are bonded to each other. The LD 4 is capable of transmitting an optical signal via the second optical waveguide core 2c and the optical fiber 5. The PD 3 is capable of receiving an optical signal which enters the second optical waveguide core 2c from the optical fiber 5, and propagates through the first optical waveguide core 1c via the optical connecting portion formed between the first optical waveguide core 1c and the second optical waveguide core 2c.
    • 本发明的光学模块包括第一基板1,第二基板2,PD 3,LD 4和光纤5。 第一基板1具有形成在其中的第一光波导芯1c。 第二基板2具有形成在其中的第二光波导芯体2c。 第一光波导芯1c和第二光波导芯2 c形成第一基板1和第二基板2彼此接合的光学连接部。 LD 4能够经由第二光波导芯2c和光纤5发送光信号。 PD 3能够从光纤5接收进入第二光波导芯2c的光信号,并且经由第一光波导芯1c和第二光波导芯1c之间形成的光连接部传播通过第一光波导芯1c 第二光波导芯2 c。
    • 10. 发明授权
    • Wavelength tunable filter apparatus
    • 波长可调谐滤波器
    • US06597480B1
    • 2003-07-22
    • US09537767
    • 2000-03-30
    • Masanori IidaHiroyuki Asakura
    • Masanori IidaHiroyuki Asakura
    • H04J1402
    • H04B10/67H04B10/675H04J14/02H04J14/0298
    • The apparatus has: a wavelength tunable filter 1; a photoelectric conversion part 2 which converts transmitted light received from the wavelength tunable filter 1 into a received light intensity signal; a received light intensity detecting part 3 which detects the intensity of the received light intensity signal; a signal component detecting part 8 which detects a signal component from the received light intensity signal; a signal intensity detecting part 9 which detects the intensity of the signal component; an intensity variation detecting part 4 which detects an intensity variation in the received light intensity signal which is detected and an intensity variation in the signal component; and a peak position detecting part 5 and a wavelength scanning part 6 which scan and a wavelength to be selected by the wavelength tunable filter 1 based on the two detected variations.
    • 该装置具有:波长可调滤波器1; 将从波长可调滤波器1接收的透射光转换为接收的光强度信号的光电转换部2; 接收光强度检测部分3,其检测接收的光强度信号的强度; 信号分量检测部分8,其从接收的光强度信号中检测信号分量; 信号强度检测部9,其检测信号分量的强度; 强度变化检测部分4,其检测被检测的接收光强度信号的强度变化和信号分量的强度变化; 以及基于两个检测到的变化的波长可调滤波器1进行扫描和波长选择的峰值位置检测部分5和波长扫描部分6。