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    • 2. 发明授权
    • Multi-detector dewar
    • 多检测器杜瓦瓶
    • US4833898A
    • 1989-05-30
    • US68300
    • 1987-07-01
    • John S. ChudyM. John KniffinD. Yvonne McNeil
    • John S. ChudyM. John KniffinD. Yvonne McNeil
    • F17C3/08F25D19/00G01J5/06G01J5/28
    • F25D19/006F17C3/085G01J5/061F17C2223/0161F17C2223/033F17C2270/0194F17C2270/0509G01J2005/286
    • Consolidation of active and passive detectors (26, 28, 34) on a single coldfinger (20) in a dewar (10) is made possible by interposing between the detectors (26, 28, 34) an electromagnetic interference shield (64, 68) which acts as a waveguide filter blocking any interfering frequencies. The waveguide is formed by a pair of spaced interleaved shields (64, 68) one of which (64) is associated with the dewar envelope and is externally grounded, and the other of which is associated with the coldfinger (20). Photons which penetrate through the waveguide (64, 68) are deflected to the outside of the dewar (10) by a flanged narcissus shield (40) surrounding the passive detector (34). Alignment of the detectors (26, 28, 34) and assembly of the dewar (101) is greatly facilitated by constructing the envelope in several generally cylindrical sections (14, 16, 18), the lowermost one of which (14) is shorter than the coldfinger (20); and by fusing the coldfinger (20) and lowermost envelope section (14 ) to a metal mounting base (12) prior to the final assembly of the dewar (10).
    • 通过在检测器(26,28,34)之间插入电磁干扰屏蔽(64,68),能够将主动和被动检测器(26,28,34)合并在杜瓦瓶(10)中的单个冷指针(20)上, 其作为阻挡任何干扰频率的波导滤波器。 波导由一对间隔开的交错屏蔽(64,68)形成,其中一个屏蔽(64)与杜瓦封套相关联,并且外部接地,另一个与冷指针(20)相关联。 穿过波导(64,68)的光子被围绕无源探测器(34)的带凸缘的水仙屏蔽(40)偏转到杜瓦瓶(10)的外部。 探测器(26,28,34)和杜瓦瓶(101)的组装的对准通过在几个大致圆柱形的部分(14,16,18)中构造外壳而极大地促进,其中最下面的一个(14)短于 冷指甲(20); 以及在所述杜瓦瓶(10)的最终组装之前将所述冷指针(20)和所述最低包络部分(14)熔合到金属安装基座(12)。
    • 5. 发明授权
    • Infrared ray detector
    • 红外线探测器
    • US4880979A
    • 1989-11-14
    • US158735
    • 1988-02-23
    • Yasuaki Yoshida
    • Yasuaki Yoshida
    • H01L31/02G01J5/06G01J5/28H01L31/024
    • H01L31/024G01J2005/286G01J5/061H01L2224/48091
    • An infrared ray detector includes, an infrared ray detection element farbicated in a water which is produced by growing a semiconductor responsive to infrared ray on a high resistance substrate, a metal submount provided with two lead terminals insulated from each other, to which submount the infrared ray detection element is mechanically fixed, an adiabatic vacuum vessel for containing and cooling the infrared ray detection element, to which vessel the metal submount is mechanically fixed, the infrared ray detection element and the metal submount. The metal submount and the adiabatic vacuum vessel are respectively adhered to each other by solder.
    • 一种红外线检测器,具有通过在高电阻基板上响应于红外线生长的半导体而生成的水中的红外线检测元件,设置有彼此绝缘的两个引线端子的金属基座,其中,将红外线检测元件 射线检测元件是机械固定的,用于容纳和冷却红外线检测元件的绝热真空容器,金属基座机械地固定到该容器上,红外线检测元件和金属基座。 金属基座和绝热真空容器分别通过焊料彼此粘合。