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    • 2. 发明申请
    • Spectroscopic Imaging Microscopy
    • 光谱成像显微镜
    • US20090201499A1
    • 2009-08-13
    • US12239628
    • 2008-09-26
    • David J. MonkDavid R. Walt
    • David J. MonkDavid R. Walt
    • G01J3/04
    • G01J3/18G01J3/02G01J3/0208G01J3/0229G01J3/0237G01J3/0264G01J3/14G01J3/32G02B21/06G02B21/367
    • Disclosed herein are systems that include: (a) an objective lens system configured to collect light from a sample; (b) a first aperture positioned to allow a portion of the collected light received from the objective lens system to pass as input light; (c) a first lens positioned to transmit the input light received from the first aperture; (d) a dispersive element configured to spatially disperse the input light received from the first lens in a first plane; (e) a second lens positioned to transmit the spatially dispersed light; (f) a second aperture positioned to allow a portion of the spatially dispersed light received from the second lens to pass as detection light; and (g) a detector positioned to receive the detection light and configured to form at least one image of the sample.
    • 这里公开的系统包括:(a)被配置为收集来自样品的光的物镜系统; (b)第一孔,定位成允许从物镜系统接收的一部分收集的光作为输入光通过; (c)第一透镜,定位成透射从第一孔接收的输入光; (d)分散元件,被配置为在第一平面中将从第一透镜接收的输入光空间分散; (e)定位成透射空间分散的光的第二透镜; (f)第二孔,定位成允许从第二透镜接收的部分空间分散的光作为检测光通过; 和(g)定位成接收检测光并被配置成形成样品的至少一个图像的检测器。
    • 3. 发明授权
    • Flowmeter and method for the making thereof
    • 流量计及其制造方法
    • US07261003B2
    • 2007-08-28
    • US11324830
    • 2006-01-03
    • William G. McDonaldDavid J. Monk
    • William G. McDonaldDavid J. Monk
    • G01F1/44G01F1/37
    • G01F1/40A61M5/16886A61M16/08A61M16/0866A61M2016/0036A61M2205/0244A61M2205/3331G01F1/44Y10T29/49002
    • A flowmeter is provided that comprises a leadframe assembly (140) and a body (144) disposed at least partially around the leadframe assembly (140). The body (144) has a flow passage therethrough that comprises a first channel (178) having a first port (166), a second channel (180) having a second port (168), and a flow altering element (182) disposed within the second channel (180). First and second pressure sensors (174 and 176) are disposed within the body (144) and coupled to the leadframe assembly (140) for measuring a first pressure within the first channel (178) and a second pressure within the second channel (180), respectively. An integrated circuit (155), which is coupled to the leadframe assembly (140), to the first pressure sensor (174), and to the second pressure sensor (176), is configured to determine the rate of flow through the flow passage from the first pressure and the second pressure.
    • 提供了一种流量计,其包括引线框组件(140)和至少部分地围绕引线框架组件(140)设置的主体(144)。 主体(144)具有穿过其的流动通道,其包括具有第一端口(166)的第一通道(178),具有第二端口(168)的第二通道(180)和设置在内部的流动变化元件(182) 第二通道(180)。 第一和第二压力传感器(174和176)设置在主体(144)内并且联接到引线框架组件(140),用于测量第一通道(178)内的第一压力和第二通道(180)内的第二压力, , 分别。 被耦合到引线框组件(140)到第一压力传感器(174)和第二压力传感器(176)的集成电路(155)被配置成确定通过流动通道 第一压力和第二压力。
    • 4. 发明授权
    • Structure to reduce signal cross-talk through semiconductor substrate for system on chip applications
    • 通过半导体衬底降低信号串扰的结构,用于片上系统应用
    • US07052939B2
    • 2006-05-30
    • US10304493
    • 2002-11-26
    • Wen Ling M. HuangSushil BharatanCarl KyonoDavid J. MonkKun-Hin ToPamela J. Welch
    • Wen Ling M. HuangSushil BharatanCarl KyonoDavid J. MonkKun-Hin ToPamela J. Welch
    • H01L29/76
    • H01L27/0928H01L21/761H01L21/84H01L27/1203
    • A structure that reduces signal cross-talk through the semiconductor substrate for System-On-Chip (SOC) (2) applications, thereby facilitating the integration of digital circuit blocks (6) and analog circuit blocks (8) onto a single IC. Cross-circuit interaction through a substrate (4) is reduced by strategically positioning the various digital circuit blocks (6) and analog circuit blocks (8) in an isolated wells (10), (12), (16) and (20) over a resistive substrate (4). These well structures (10), (12), (16), and (20) are then surrounded with a patterned low resistivity layer (22) and optional trench region (24). The patterned low resistivity region (22) is formed below wells (10) and (12) and functions as a low resistance AC ground plane. This low resistivity region (22) collects noise signals that propagate between digital circuit blocks (6) and analog circuit blocks (8).
    • 通过用于片上系统(SOC)(2)应用的半导体衬底降低信号串扰的结构,从而有助于将数字电路块(6)和模拟电路块(8)集成到单个IC上。 通过将分离的井(10),(12),(16)和(20)中的各种数字电路块(6)和模拟电路块(8)策略性​​地定位在多个数字电路块(6)和(20)上,通过衬底(4)的交叉电路相互作用被减少。 电阻衬底(4)。 然后,这些阱结构(10),(12),(16)和(20)被图案化的低电阻率层(22)和任选的沟槽区域(24)包围。 图案化的低电阻率区域(22)形成在阱(10)和(12)下方,并且用作低电阻AC接地层。 该低电阻率区域(22)收集在数字电路块(6)和模拟电路块(8)之间传播的噪声信号。
    • 10. 发明授权
    • Dual sensor signal processing method for on-bottom cable seismic
    • 用于底层电缆地震的双传感器信号处理方法
    • US06539308B2
    • 2003-03-25
    • US09999115
    • 2001-11-01
    • David J. MonkJames A. Musser
    • David J. MonkJames A. Musser
    • G06F1900
    • G01V1/364G01V1/36G01V2210/56
    • A method for processing data from dual sensor receivers to produce a combined seismic trace. A first seismic trace is received from a geophone and second seismic trance from a hydrophone in a dual sensor receiver. This first and second seismic traces are transformed into a first and second seismic spectrum. The seismic spectrums are deghosted to obtain deghosted spectrums. The seismic spectra may be added to obtain a deghosted third spectrum. An inverse power is computed for each of the deghosted spectra. The inverse powers for each deghosted spectra are divided by sums of the deghosted spectra to obtain diversity filters. The first and third diversity filters are applied to the first seismic spectrum to obtain a scaled first seismic spectrum. The other scaled spectra are formed in a like manner. The diversity scaled seismic spectrum is inversely transformed to obtain the combined seismic trace.
    • 一种用于处理来自双传感器接收器的数据以产生组合的地震迹线的方法。 从地震检波器和双传感器接收机中的水听器接收第一地震迹线。 该第一和第二地震轨迹被转换成第一和第二地震谱。 地震谱被去角化,以获得消光的光谱。 可以添加地震频谱以获得消旋的第三光谱。 对于每个钝化光谱计算反向功率。 将每个去虚部的光谱的反向光焦度除以反虚光谱的和,以获得分集滤波器。 将第一和第三分集滤波器应用于第一地震频谱以获得缩放的第一地震频谱。 其他缩放的光谱以类似的方式形成。 多尺度地震谱进行逆变换,得到组合地震迹。