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    • 3. 发明公开
    • Photometer for use with a microscope
    • 用于显微镜的光电测定仪
    • EP0183416A3
    • 1988-06-08
    • EP85308145
    • 1985-11-08
    • C. Reichert Optische Werke AG
    • Schindl, Klaus
    • G02B21/00G01J01/00
    • G02B21/0096
    • A photometer for use with a microscope having an object plane an image plane and an optical axis between said planes. The photometer includes an optical dividing means adapted to be disposed in the optical axis between the microscope object and image planes, and a reflective element having a reflecting surface. A pin hole occluder is adapted to be arranged on the opposite side of the optical dividing means to the reflective element. An optical imaging device provides an image of the pin hole occluder on the reflecting surface. A semi-reflective element is provided for reflecting light from the light source to the optical dividing means. A detector is arranged in an optical axis including the semi-reflective element, the pin hole occluder, the optical dividing means, the optical imaging device and reflective element. The object and image planes of the microscope and the reflecting surface of the reflective element are conjugate planes, so that further information additional to the pin hole occluder can be imaged into the microscope image plane.
    • 一种用于显微镜的光度计,该显微镜具有物体平面和所述平面之间的像面和光轴。 光度计包括适于设置在显微镜物体和像面之间的光轴上的光学分割装置和具有反射表面的反射元件。 针孔闭塞器适于布置在与光学分离装置相对的反射元件的相对侧上。 光学成像装置在反射面上提供针孔闭塞器的图像。 提供了用于将来自光源的光反射到光分割装置的半反射元件。 检测器布置在包括半反射元件,针孔闭塞器,光分离装置,光学成像装置和反射元件的光轴上。 显微镜的物体和像面和反射元件的反射表面是共轭平面,使得可以将针孔闭塞器附加的进一步信息成像到显微镜图像平面中。
    • 5. 发明申请
    • SYNCHRONOUS DETECTION SYSTEM FOR MULTICHANNEL INFRARED SPECTROSCOPY
    • 多通道红外光谱同步检测系统
    • WO1997031245A1
    • 1997-08-28
    • PCT/US1997002637
    • 1997-02-21
    • DIASENSE, INC.WACZYNSKI, AugustynHENDRICKSON, Mark, L.HARTWICK, David, J.
    • DIASENSE, INC.
    • G01J01/00
    • G01J5/28G01J1/0266G01J1/04G01J1/044G01J1/44G01J3/0232G01J3/0289G01J5/30G01J2001/4242
    • Disclosed is a radiation detector which includes at least one photoconductive detector (6) and a modulator (2), which modulates in an on-off manner radiation passing to the photoconductive detector (6) from a radiation source (4). A bias source (8) is connected to one terminal of the photoconductive detector (6). A first amplifier (17) is connected to the other terminal of the photoconductive detector (6), and a second amplifier (34) receives an output of the first amplifier (17). A first phase detector (36) detects the phase of modulation of the radiation source (4) by the modulator (2) and generates a reference signal relating thereto. A switch (34) in the second amplifier (24) changes, in response to the reference signal generated by the first phase detector (36), the second amplifier between an inverting state and a non-inverting state as the modulator (2) changes the phase of modulation of the radiation.
    • 公开了一种辐射检测器,其包括至少一个光电导检测器(6)和调制器(2),其调制从辐射源(4)通过光导检测器(6)的通断方式的辐射。 偏置源(8)连接到光电导检测器(6)的一个端子。 第一放大器(17)连接到光电导检测器(6)的另一个端子,第二放大器(34)接收第一放大器(17)的输出端。 第一相位检测器(36)通过调制器(2)检测辐射源(4)的调制相位并产生与之相关的参考信号。 响应于由第一相位检测器(36)产生的参考信号,第二放大器(24)中的开关(34)响应于调制器(2)改变的反相状态和非反相状态而改变第二放大器 辐射的调制阶段。
    • 6. 发明申请
    • REMOTE GAS ANALYZER FOR MOTOR VEHICLE EXHAUST EMISSIONS SURVEILLANCE
    • 电动汽车排放气体分析仪远程气体分析仪
    • WO1990005901A1
    • 1990-05-31
    • PCT/US1989005290
    • 1989-11-22
    • WEST LODGE RESEARCH
    • WEST LODGE RESEARCHSWANSON, Caleb, V., Jr.
    • G01J01/00
    • G01N21/3504G01N2021/0314G01N2021/178G01N2021/1793G01N2021/3513
    • A remote gas analyzer for motor vehicle exhaust emission surveillance in which a planar array (22) of gas analyzer beams (10) intersects substantially an entire cross sectional segment of an exhaust gas plume (12) in order to determine the volume concentration of gas pollutants in the exhaust. In a further variation using more readily available equipment to detect the less prevalent pollutants, the planar array determines the change in amount per unit volume of a first pollutant emitted by a motor vehicle passing the array. The first pollutant having a relatively high and more easily detectable concentration. A second, multispectral gas analyzer beam intersects the exhaust to determine the change in concentration of the less prevalent pollutants with respect to ambient, and also determines the change in concentration of the first pollutants. The ratio of the change in the first pollutant's weight per unit volume to its change in concentration as determined by the second analyzer is used to determine the change in the amount per unit volume of the remaining pollutants.
    • 一种用于机动车尾气排放监视的远程气体分析器,其中气体分析器梁(10)的平面阵列(22)基本上与废气羽流(12)的整个横截面段相交,以便确定气体污染物的体积浓度 在排气中。 在使用更容易获得的设备来检测较不普遍的污染物的另一变型中,平面阵列决定了通过阵列的机动车辆发射的第一污染物的每单位体积的量的变化。 第一污染物具有较高且更易于检测的浓度。 第二个多光谱气体分析仪束与排气相交,以确定较不普遍的污染物相对于环境的浓度变化,并且还确定第一污染物的浓度变化。 使用由第二分析仪确定的第一污染物质量每单位体积重量与其浓度变化的比率来确定剩余污染物每单位体积量的变化。
    • 7. 发明申请
    • INFRARED RADIATION FILAMENT AND METHOD OF MANUFACTURE
    • 红外辐射光纤和制造方法
    • WO1997006417A1
    • 1997-02-20
    • PCT/US1996012604
    • 1996-08-02
    • JOHNSON, Edward, A.
    • G01J01/00
    • G01J3/108H05B2203/003
    • The principal component of an improved IR radiation source described is a radiation filament (3) having a textured surface produced by seeded ion bombardment of a metal foil (10) which is cut to a serpentine shape and mounted in a windowed housing (1). Specific ion bombardment texturing techniques tune the surface to maximize emissions in the desired wavelength range and limit emissions outside that narrow range, particularly at longer wavelengths. A combination of filament surface texture, thickness, material, shape and power circuit feedback control produce wavelength controlled and efficient radiation at much lower power requirements than devices of the prior art.
    • 所描述的改进的IR辐射源的主要成分是辐射丝(3),其具有通过金属箔(10)的接种离子轰击产生的纹理表面,所述金属箔被切割成蛇形并且安装在窗户壳体(1)中。 特定的离子轰击纹理技术调谐表面以使期望波长范围内的发射最大化并限制在窄范围之外的发射,特别是在较长波长处。 长丝表面纹理,厚度,材料,形状和功率电路反馈控制的组合产生比现有技术的器件低得多的功率要求的波长控制和有效的辐射。