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    • 3. 发明授权
    • Infrared transmitting barium fluoride sintered body
    • 红外透射钡氟化物烧结体
    • US5502015A
    • 1996-03-26
    • US389420
    • 1995-02-16
    • Kenichiro ShibataAkihito FujiiToshihiro Sakamoto
    • Kenichiro ShibataAkihito FujiiToshihiro Sakamoto
    • C04B35/553
    • C04B35/553
    • The present invention provides an infrared ray transmitting material, even large-sized one being manufacturable at a low price, consisting of a polycrystal not liable to cleavage, which makes only a slight absorption of infrared rays all over the region of 8-11 .mu.m wave lengths, thus being highly transmissive. The material is a polycrystalline barium fluoride sintered body excellent in transmission to infrared region of 8-11 .mu.m wave lengths, one that is most excellent in the infrared transmission being produced by a method comprising the hot press sintering and the HIP treatment in combination, one that gives somewhat inferior transmission but which is low-priced by a method comprising the CIP molding and the normal pressure sintering in combination, and one that regarded as intermediate between the aforementioned two by a method comprising the CIP molding, normal-pressure sintering and the HIP treatment in combination, in all cases entirely without addition of any binder or sintering aid.
    • 本发明提供一种红外线透射材料,即使是大尺寸的也可以以低价格制造,由不易裂开的多晶体组成,仅在8-11μm的区域内仅有轻微的红外线吸收 波长,因此是高度透射的。 该材料是通过包含热压烧结和HIP处理的方法制造的红外线透过率最高的8-11μm波长的透射率优异的多晶氟化钡烧结体, 通过包括CIP成型和常压烧结的方法组合的方法,通过包括CIP成型,常压烧结和 在所有情况下,组合的HIP处理完全不添加任何粘合剂或烧结助剂。
    • 4. 发明授权
    • Method of producing an infrared transmitting barium fluoride sintered
body
    • 制造红外透射钡氟化钡烧结体的方法
    • US5658504A
    • 1997-08-19
    • US443894
    • 1995-05-17
    • Kenichiro ShibataAkihito FujiiToshihiro Sakamoto
    • Kenichiro ShibataAkihito FujiiToshihiro Sakamoto
    • C04B35/553B29D11/00
    • C04B35/553
    • The present invention provides a method of producing an infrared ray transmitting material, a large-sized one which can be manufactured at a low price, consisting of a polycrystal not liable to cleavage, which makes only a slight absorption of infrared rays all over the region of 8-11 .mu.m wave lengths, thus being highly transmissive. The material is a polycrystalline barium fluoride sintered body excellent in transmission to infrared region of 8-11 .mu.m wave lengths, one that is most excellent in the infrared transmission and being produced by a method of hot press sintering and an HIP treatment in combination, one that gives somewhat inferior transmission but which is low-priced produced by a method of CIP molding and normal pressure sintering in combination, and one that is regarded as an intermediate between the aforementioned two by a method comprising the CIP molding, normal-pressure sintering and the HIP treatment in combination, in all cases entirely without the addition of any binder or sintering aid.
    • 本发明提供一种红外线透射材料的制造方法,该红外线透射材料是能够以低价格制造的大尺寸的红外线透射材料的方法,其由不易分裂的多晶体构成,其仅在该区域上仅仅吸收红外线 8-11μm波长,因此具有高度的透光性。 该材料是透光率高达8-11μm波长的红外区域的透光性优异的多晶钡氟化物烧结体,其特征在于红外线透过率最优异,并且通过热压烧结和HIP处理的组合制造, 通过CIP成型和常压烧结的方法组合产生低价格的低通量,通过包括CIP成型,常压烧结的方法被认为是上述两者之间的中间体 和HIP处理组合,在所有情况下完全不添加任何粘合剂或烧结助剂。
    • 6. 发明授权
    • Hermetically sealing package for optical semiconductor and optical semiconductor module
    • 光学半导体和光学半导体模块的密封封装
    • US06674143B2
    • 2004-01-06
    • US10093734
    • 2002-03-11
    • Nobuyoshi TatohKenichiro Shibata
    • Nobuyoshi TatohKenichiro Shibata
    • H01L310203
    • H01L31/0203G02B6/4207G02B6/4216H01L33/483
    • A hermetically sealing package for an optical semiconductor equipped with a light transmitting window whose light transmitting surface is inclined at least six degrees from the vertical line of the package bottom plate and which is joined to a cylindrical component on the package side wall by the use of a solder brazing material, in which the window material is made of a light-transmitting ceramic (such as alumina or spinel) plate in a substantially regular hexagonal or disk form in which a metallized portion is formed around the periphery, leaving a circular light transmitting portion in the center of the plate; and an optical semiconductor module that makes use of the package. The hermetically sealing package and the optical semiconductor module are easy and inexpensive to manufacture, have high reliability, and do not deform the plane of polarization.
    • 一种用于光学半导体的密封封装,其配备有透光窗,其透光表面与封装底板的垂直线倾斜至少六度,并且通过使用 焊料钎焊材料,其中窗材料由基本上规则的六边形或圆盘形状的透光陶瓷(例如氧化铝或尖晶石)板制成,其中在周围形成金属化部分,留下圆形透光 板的中心部分; 以及利用该封装件的光学半导体模块。 密封封装和光学半导体模块制造容易且便宜,具有高可靠性,并且不会使极化面变形。
    • 7. 发明授权
    • Optical component, zinc sulfide sintered compact, and fabricating method
thereof
    • 光学部件,硫化锌烧结体及其制造方法
    • US6111689A
    • 2000-08-29
    • US289718
    • 1999-04-12
    • Kenichiro Shibata
    • Kenichiro Shibata
    • G01J1/02C04B35/547G02B1/02G02B5/22G02B13/14B29D11/00G02B1/00
    • C04B35/547G02B1/02G02B13/14
    • Zinc sulfide and an optical component are provided that significantly reduces transmission for visible light and infrared rays of not more than 3 .mu.m in wavelength, having high transmittance for infrared rays in the wavelength range of 8-12 .mu.m, and that shields visible light. The optical component is constituted by a polycrystalline zinc sulfide sintered compact formed by hot compression molding fine zinc sulfide powder of high impurity at the temperature of 900-1000.degree. C. and the pressure of 150-800 kg/cm.sup.2. The light transmittance at the region where the thickness is 2 mm is 0% to 3% at the wavelength range of visible light, 0% to 20% at the wavelength range of 2.5-3 .mu.m, 30% to 75% at the wavelength range of 8-12 .mu.m, and 50% to 90% at the same wavelength range with the formation of antireflection coating film.
    • 提供硫化锌和光学部件,其显着降低波长不大于3μm的可见光和红外线的透射率,对于在8-12μm的波长范围内的红外线具有高透射率,并且屏蔽可见光 。 光学部件由通过在900-1000℃的温度下压制高杂质的微细硫化锌粉末和150-800kg / cm 2的压力而形成的多晶硫化锌烧结体构成。 在可见光的波长范围内,厚度为2mm的区域的透光率为0〜3%,波长为2.5〜3μm,0〜20%,波长为30〜75% 范围为8-12μm,在相同波长范围内为50%至90%,形成抗反射涂膜。