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    • 2. 发明授权
    • Film area computer
    • 电影区电脑
    • US4685074A
    • 1987-08-04
    • US670647
    • 1984-11-13
    • Joe T. MaySteven D. Hale
    • Joe T. MaySteven D. Hale
    • G01B11/28
    • G01B11/285
    • An instrument for use with a film containing a printed circuit layout. The instrument measures the area which is transparent to electromagnetic radiation of a characteristic wavelength so that the open area of the film and the average open area can be calculated and displayed. A source oriented in a direction perpendicular to the transport path emits radiation of the characteristic wavelength across a width of the film. A plurality of detecting devices responsive to the characteristic wavelength are arranged in a linear array in optical coordination with the source. Each detecting device detects radiation transmitted through an incremental area of the film and produces an output signal representative thereof. A detector circuit connected to receive the output signals repeatedly and sequentially provides digital area signals proportional to the amount of clear area within a respective incremental area of film. A microcomputer receives the area signals and computes the total clear area. A digital display provides a visual indication of the total clear area.
    • 一种用于包含印刷电路布局的胶片的仪器。 仪器测量对特征波长的电磁辐射透明的区域,以便计算和显示胶片的开放面积和平均开放面积。 在垂直于传输路径的方向上定向的源在膜的宽度上发射特征波长的辐射。 响应于特征波长的多个检测装置以与源相配合的线性阵列排列。 每个检测装置检测透过胶片的增量区域的辐射并产生代表胶片的输出信号。 连接以重复地接收输出信号并且顺序地提供与膜的相应增量区域内的清除区域的量成比例的数字区域信号的检测器电路。 微机接收区域信号并计算总清除面积。 数字显示屏提供总清晰区域的视觉指示。
    • 5. 发明授权
    • Distributed UV sensor system and method
    • 分布式紫外线传感器系统及方法
    • US07057183B2
    • 2006-06-06
    • US10834877
    • 2004-04-30
    • Joe T. MayDavid C. SnyderJames M. RaymontMatthew J. McConnellEdward A. CasaciaKyle L. Bostian
    • Joe T. MayDavid C. SnyderJames M. RaymontMatthew J. McConnellEdward A. CasaciaKyle L. Bostian
    • G01J1/42
    • G01J1/4228G01J1/0271G01J1/429
    • A radiometer that incorporates multiple UV bandwidth sensors, defined in nanometers, and includes connectors for inserting a cable that is used to connect to another sensor, or to a data collection module (DCM) in a multidrop, or daisy-chain arrangement. Each sensor can be positioned at any point on a three-dimensional work piece, and will receive UV energy at the aperture having an optical component. The collected energy is directed to a detector in the sensor. A processor in the body of the sensor then computes the amount of UV radiation based on signals from the detector. This information is transferred to and stored in a data collection module to which the sensor string is connected. Data stored in the DCM can then be transferred to a computer for display purposes. The sensors and DCM can be tethered to the computer for real-time measurement readings when adjusting the UV lamps.
    • 包含多个以纳米为单位的紫外线带宽传感器的辐射计,包括用于插入用于连接到另一个传感器的电缆的连接器,或以多点或菊花链布置的数据采集模块(DCM)。 每个传感器可以定位在三维工件上的任何点上,并且将在具有光学部件的孔处接收UV能量。 收集的能量被引导到传感器中的检测器。 然后传感器主体中的处理器根据来自检测器的信号计算出紫外线辐射量。 该信息被传送到并存储在传感器串连接到的数据收集模块中。 存储在DCM中的数据可以传输到计算机进行显示。 当调节UV灯时,传感器和DCM可以连接到计算机上进行实时测量读数。
    • 6. 发明授权
    • Direct readout apparatus for measuring light transmitted through liquids
    • 用于测量透过液体的光的直接读出装置
    • US4312593A
    • 1982-01-26
    • US106252
    • 1979-12-21
    • William B. BakerJoe T. May
    • William B. BakerJoe T. May
    • G01N21/25G01N21/27G01J3/50
    • G01N21/251G01N21/27
    • An apparatus that measures light transmitted through a fluid sample and provides a direct readout of such a measurement by electronically converting light transmitted to an electrical signal that is displayed on a readout device; the apparatus contains a power source, a light source, a photodetector, a sample holder for samples that forms a cell; the improvements used in the apparatus are as follows:(a) a color interference filter positioned between the sample and the photodetector which filters out unwanted bands of color,(b) a converter which electronically converts a current signal from the photodetector to a voltage signal,(c) a logarithmic response circuit that changes the voltage signal to a logarithmic signal proportional to the logarithm of the voltage signal; and(d) a digital voltmeter that converts the logarithm signal to a signal that is displayed on a readout device.
    • 一种测量透过流体样品的光并通过电子转换传输到显示在读出装置上的电信号的光来直接读出这种测量的装置; 该装置包括电源,光源,光电检测器,用于形成电池的样品的样品保持器; 设备中使用的改进如下:(a)位于样品和光电检测器之间的颜色干涉滤光器,其滤除不需要的色带,(b)转换器,其将来自光电检测器的电流信号电转换成电压信号 ,(c)将电压信号改变成与电压信号的对数成比例的对数信号的对数响应电路; 和(d)数字电压表,其将对数信号转换为显示在读出装置上的信号。
    • 8. 发明授权
    • Measurement of the thickness of thin films
    • 测量薄膜厚度
    • US4841156A
    • 1989-06-20
    • US49833
    • 1987-05-15
    • Joe T. MayEdward A. Casacia
    • Joe T. MayEdward A. Casacia
    • G01B11/06G01J1/16G01N21/64
    • G01N21/64G01B11/0658G01N21/8422G01J2001/1636
    • An ultraviolet source (14) directs selected ultraviolet radiation onto a thin film (10) to excite it. The thin film fluoresces, either naturally or as a result of adding fluorescing material. The amount of light fluoresced is proportional to the film thickness. An optical filter (16) selectively transmits fluoresced wavelengths, excluding exciting wavelengths. A photodetector (18) converts the light to an electrical signal which is processed by signal processing circuits (20) and displayed on a readout (26). The output is compensated for variations in the intensity of the exciting ultraviolet radiation by generating a second electrical signal (13', 18') proportional to the intensity of the exciting radiation and dividing the first electrical signal by a function of said second electrical signal. The compensated output is then calibrated to assure precision and accurate measurements.Various materials may be selectively measured, individually in the presence of others by choosing appropriate excitation and emission wavelengths. The amount of fluoresced light is linear with respect to the amount of material present as long as the layer is quite thin. As the layer thickness increases, the amount of light to thickness relationship becomes non-linear.
    • 紫外线源(14)将选择的紫外线辐射引导到薄膜(10)上以激发它。 该薄膜天然或由于添加荧光材料而发荧光。 荧光量与膜厚成正比。 滤光器(16)选择性地发射荧光波长,不包括激发波长。 光电检测器(18)将光转换成由信号处理电路(20)处理并显示在读出器(26)上的电信号。 通过产生与激励辐射的强度成比例的第二电信号(13',18')并通过所述第二电信号的函数来划分第一电信号,来补偿激发紫外线辐射强度的变化。 然后对补偿输出进行校准,以确保精确和准确的测量。 可以通过选择合适的激发和发射波长在其他物质的存在下单独地选择性地测量各种材料。 荧光量相对于存在的材料量是线性的,只要该层相当薄。 随着层厚度的增加,光的厚度关系变得非线性。
    • 9. 发明授权
    • Distributed UV sensor system and method
    • 分布式紫外线传感器系统及方法
    • US07183558B2
    • 2007-02-27
    • US11354973
    • 2006-02-16
    • Joe T. MayDavid C. SnyderJames M. RaymontMatthew J. McConnellEdward A. CasaciaKyle L. Bostian
    • Joe T. MayDavid C. SnyderJames M. RaymontMatthew J. McConnellEdward A. CasaciaKyle L. Bostian
    • G01J1/42
    • G01J1/4228G01J1/0271G01J1/429
    • A radiometer that incorporates multiple UV bandwidth sensors, defined in nanometers, and includes connectors for inserting a cable that is used to connect to another sensor, or to a data collection module (DCM) in a multidrop, or daisy-chain arrangement. Each sensor can be positioned at any point on a three-dimensional work piece, and will receive UV energy at the aperture having an optical component. The collected energy is directed to a detector in the sensor. A processor in the body of the sensor then computes the amount of UV radiation based on signals from the detector. This information is transferred to and stored in a data collection module to which the sensor string is connected. Data stored in the DCM can then be transferred to a computer for display purposes. The sensors and DCM can be tethered to the computer for real-time measurement readings when adjusting the UV lamps.
    • 包含多个以纳米为单位的紫外线带宽传感器的辐射计,包括用于插入用于连接到另一个传感器的电缆的连接器,或以多点或菊花链布置的数据采集模块(DCM)。 每个传感器可以定位在三维工件上的任何点上,并且将在具有光学部件的孔处接收UV能量。 收集的能量被引导到传感器中的检测器。 然后传感器主体中的处理器根据来自检测器的信号计算出紫外线辐射量。 该信息被传送到并存储在传感器串连接到的数据收集模块中。 存储在DCM中的数据可以传输到计算机进行显示。 当调节UV灯时,传感器和DCM可以连接到计算机上进行实时测量读数。