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    • 68. 发明专利
    • OPTICAL RADIATOR
    • JPS61167905A
    • 1986-07-29
    • JP889785
    • 1985-01-21
    • MORI TAKASHI
    • MORI TAKASHI
    • F21V8/00A01G7/04F21S10/00G02B6/00
    • PURPOSE:To realize simple, inexpensive constitution by composing an optical means of a columnar member, forming a reflecting surface which slants to an axial line as one end surface, and providing a cavity at the long-axis side. CONSTITUTION:An optical radiator consists of a cylindrical body 10 made of a transparent body and the optical means 30 which moves in the cylindrical body 10, and one end surface 35 of the optical means 30 is slanted and formed as a reflecting surface. Light L entered into the cylindrical body 10 through a photoconductor cable is reflected by the reflecting surface 35 to generate reflected light L0, which is emitted out of the cylindrical body 10. The cavity 36 is provided at the long-axis side and the optical means 30 has its short-axis side invariably down and emits light downward from the cylindrical body 10, so a light radiating direction control means composed of a permanent magnet means is not necessary. Consequently, an optical radiator of simple, inexpensive constitution which diffuses light effectively is obtained.
    • 70. 发明专利
    • OPTICAL INFORMATION MULTIPLEXING DEVICE
    • JPS60138511A
    • 1985-07-23
    • JP24895083
    • 1983-12-27
    • MORI TAKASHI
    • MORI TAKASHI
    • G02B6/00G02F1/01G02F1/313
    • PURPOSE:To divide a light information signal which is sent through a single photoconductor to numbers of photoconductors without reducing its light energy by imposing modulation upon respective optical modulators with the same light information. CONSTITUTION:Light propagated through photoconductors 41-4n is outputted to photoconductors 51-5n normally through optical modulators 31-3n. When light information signals from photoconductors 21-2n are supplied to the optical modulators 31-3n, the optical transmitting function of the respective modulators 31-3n is turned off and the light from the photoconductors 41-4n is not transmitted to the photoconductors 51-5n any more. Thus, the optical modulators 31-3n with the light information signals sent through the photoconductors 21- 2n and the light with high energy propagated through the photoconductors 51-5n is modulated and transmitted to the photoconductors 51-5n, so the light information signal transmitted through a photoconductor 1 is demultiplexed to the respective photoconductors 51-5n without reducing its light energy.