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公开(公告)号:WO2005062005A9
公开(公告)日:2008-08-07
申请号:PCT/US2004037991
申请日:2004-11-12
Applicant: HONEYWELL INT INC , COLE BARRETT E , HIGASHI ROBERT E
Inventor: COLE BARRETT E , HIGASHI ROBERT E
IPC: G01J1/42
CPC classification number: G01J1/429
Abstract: A light detector having a cathode wafer, a cavity wafer and an anode wafer. The cathode wafer may be bonded to one side of the cavity wafer and the anode wafer may be bonded to another side of the cavity wafer. The cathode wafer may have numerous cathodes, the anode wafer numerous anodes and the cavity wafer numerous cavities which may be aligned on a one-to-one basis to form a wafer structure of a plurality of detectors which may be diced into separable detector chips. When there is a voltage potential across a cathode and an anode, and a gas such as Ne or the like in the cavity, a reception of light such as ultra violet may result in an electronic discharge between the cathode and anode of the light detector.
Abstract translation: 具有阴极晶片,空腔晶片和阳极晶片的光检测器。 阴极晶片可以结合到空腔晶片的一侧,并且阳极晶片可以结合到空腔晶片的另一侧。 阴极晶片可以具有许多阴极,阳极晶片许多阳极和空腔晶片可以在一对一的基础上对准多个空腔,以形成多个检测器的晶片结构,其可以切成可分离的检测器芯片。 当在阴极和阳极之间存在电压电势,并且在空腔中存在诸如Ne等的气体时,诸如紫外线的光的接收可导致光检测器的阴极和阳极之间的电子放电。
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公开(公告)号:WO2008036710A3
公开(公告)日:2008-07-24
申请号:PCT/US2007078848
申请日:2007-09-19
Applicant: HONEYWELL INT INC , GU YUANDONG , COX JAMES A , COLE BARRETT E
Inventor: GU YUANDONG , COX JAMES A , COLE BARRETT E
IPC: G01N21/65
CPC classification number: G01N21/658
Abstract: A surface enhanced Raman scatter (SERS) analyte analyzer (10). An injector (15) may provide a spray of charged nanoparticles (19) suspended in droplets of an evaporable solution (27) into a chamber (14). When the solution (27) quickly evaporates, droplets of nanoparticles (19) are left without a supporting solution. These droplets or cloud of charged.nanoparticles (28) may then explode into a dispersion or aerosol (35). The charged nanoparticles (19) may attract molecules (36) of a sample (IS) for attachment to their surfaces. A laser light (21) may impinge the attached molecules (36) which may result in surface enhanced Raman scattered light received by a detector or a light spectrometer (17). Wavelength signatures may then be obtained from the spectrometer. The signatures may provide information about the molecules (36).
Abstract translation: 表面增强拉曼散射(SERS)分析物分析仪(10)。 注射器(15)可以将悬浮在蒸发溶液(27)的液滴中的带电荷的纳米颗粒(19)的喷雾提供到腔室(14)中。 当溶液(27)快速蒸发时,留下纳米颗粒(19)的液滴而没有支撑溶液。 这些液滴或云的带电粒子(28)然后可能会爆炸成分散体或气溶胶(35)。 带电的纳米颗粒(19)可以吸引样品(IS)的分子(36)以附着到它们的表面。 激光(21)可以撞击附着的分子(36),这可能导致由检测器或光谱仪(17)接收的表面增强的拉曼散射光。 然后可以从光谱仪获得波长特征。 签名可以提供关于分子的信息(36)。
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公开(公告)号:WO2005034249A3
公开(公告)日:2005-09-09
申请号:PCT/US2004032652
申请日:2004-10-01
Applicant: HONEYWELL INT INC , WOOD ROLAND A , COLE BARRETT E , HIOASHI ROBERT E
Inventor: WOOD ROLAND A , COLE BARRETT E , HIOASHI ROBERT E
IPC: G01J5/20 , H01L27/146 , H01L31/09
CPC classification number: H01L27/14649 , G01J5/20
Abstract: A thermal sensor structure having one level for an infrared detecting pixel including the sensor associated electronics. The electronics displace a small area thereby having little effect on the fill area of the pixel relative to a level having no pixel electronics. That level has thermally isolation for the substrate through the limited structural attachment to the substrate because of the access vias to the silicon. It has additional isolation because of a pit of removed silicon from the substrate below that one level. The thermal sensor may have an array with a large number of pixels having the one level for the pixels and electronics structure.
Abstract translation: 具有用于包括传感器相关电子器件的红外检测像素的一个电平的热传感器结构。 电子设备取代了小面积,因此相对于没有像素电子器件的水平面对像素的填充面积几乎没有影响。 由于通向硅的通路,该层通过有限的结构附着到衬底而对衬底具有热隔离。 它具有额外的隔离功能,因为从一层以下的衬底上去除了硅的坑。 热传感器可以具有具有用于像素和电子结构的具有一个电平的大量像素的阵列。
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公开(公告)号:EP2686667A4
公开(公告)日:2014-09-17
申请号:EP12757950
申请日:2012-03-14
Applicant: HONEYWELL INT INC
Inventor: COLE BARRETT E , COX JAMES ALLEN , AU KWONG , LARSEN CHRISTOPHER
CPC classification number: G01J5/046 , G01J5/0014 , G01J5/0018 , G01J5/026 , G01J5/0806 , G01J5/0812 , G01J5/0862 , G01J5/0875 , G01J5/20 , G01J2005/0077
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公开(公告)号:EP3295135A1
公开(公告)日:2018-03-21
申请号:EP16793156
申请日:2016-04-27
Applicant: HONEYWELL INT INC
Inventor: ZABEL BRIAN , CARTY CHAD , COLE BARRETT E
CPC classification number: G01J1/429 , G01J1/0228 , G01J1/4228 , G01J1/44 , G01J5/0018 , G01J2001/444 , G01J2001/4446
Abstract: Utilizing a quench time to deionize an ultraviolet (UV) sensor tube are described herein. One method includes monitoring firing events within a UV sensor tube, where a particular firing event initiates arming the UV sensor tube, initiating a quench time to deionize the UV sensor tube, where the quench time includes, disarming the UV sensor tube to prevent a firing event.
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16.
公开(公告)号:WO2008127445A3
公开(公告)日:2009-03-19
申请号:PCT/US2007086081
申请日:2007-11-30
Applicant: HONEYWELL INT INC , COX JAMES A , COLE BARRETT E , THORLAND RODNEY H , CABUZ EUGENE I
Inventor: COX JAMES A , COLE BARRETT E , THORLAND RODNEY H , CABUZ EUGENE I
CPC classification number: G01N21/39 , G01J3/42 , G01N21/03 , G01N21/0303 , G01N21/031 , G01N2021/0378 , G01N2021/1704 , G01N2021/399
Abstract: A sensitive fluid sensor (730) for detecting fluids and particularly trace fluids. The sensor (730) may be adjustable for detecting fluids of various absorption lines. To effect such adjustment, a tunable laser (712) is used. A cavity having moveable mirror (s) (726) for tuning may be provided. The laser (712) may be an edge emitting diode, a VCSEL or other tunable source. The detection apparatus of the sensor incorporates a sample cell (711) through which a laser light (714) may go through. The sample cell (711) includes a tunable ring cavity block. There may be a photo detector (715) or detectors proximate to the ring cavity. The lasers (712) and detectors (715) may be connected to electronics and/or a processor (724).
Abstract translation: 用于检测流体,特别是痕量流体的敏感流体传感器(730)。 传感器(730)可以是可调节的,用于检测各种吸收线的流体。 为了进行这种调整,使用可调激光器(712)。 可以提供具有用于调谐的可移动反射镜(726)的空腔。 激光器(712)可以是边缘发光二极管,VCSEL或其它可调谐源。 传感器的检测装置包括一个可以激光(714)穿过的样品池(711)。 样品池(711)包括可调谐环腔模块。 可能存在靠近环形腔的光电检测器(715)或检测器。 激光器(712)和检测器(715)可以连接到电子设备和/或处理器(724)。
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公开(公告)号:WO2007064355A9
公开(公告)日:2007-09-13
申请号:PCT/US2006021302
申请日:2006-06-02
Applicant: HONEYWELL INT INC , GU YUANDONG , COLE BARRETT E
Inventor: GU YUANDONG , COLE BARRETT E
CPC classification number: G01N33/551 , B82Y15/00 , B82Y30/00 , B82Y40/00 , C01B32/168 , C01B2202/02 , G01N33/66 , G01N2610/00
Abstract: The present invention provides a sensor, such as a biosensor, comprising at least one self-assembled monolayer (SAM) comprising analyte-sensitive groups, such as glucose-sensitive groups, attached to the surface of the outer wall of a carbon nanotube (CNT), such as a single-walled carbon nanotube (SWNT), by terminal groups, which bind to a thin layer of a metal or metal oxide, which has been deposited on the surface of the outer wall of the nanotube.
Abstract translation: 本发明提供了一种传感器,例如生物传感器,其包括至少一个自组装单层(SAM),其包含分析物敏感基团,例如葡萄糖敏感基团,其连接到碳纳米管(CNT)的外壁表面 ),例如单壁碳纳米管(SWNT),其结合到已经沉积在纳米管的外壁的表面上的金属或金属氧化物的薄层上。
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公开(公告)号:WO2007073477A3
公开(公告)日:2007-08-23
申请号:PCT/US2006048224
申请日:2006-12-18
Applicant: HONEYWELL INT INC , GU YUANDONG , COLE BARRETT E
Inventor: GU YUANDONG , COLE BARRETT E
IPC: F24F11/00
CPC classification number: F24F11/30 , F24F2120/10
Abstract: An occupancy based ventilation system for indoor air quality that uses a counter to count the number of persons in a specific indoor room or other area, wherein the number of persons determines the degree of ventilation from the room's ventilation system. The counter would keep track of both the number of persons and the length of time each is present in the room. A feedback control algorithm between the counting device and the ventilation management controls provides for automatic control of the amount of ventilation needed to insure a comfortable and efficient environment.
Abstract translation: 一种用于室内空气质量的占用通风系统,其使用柜台来计数特定室内或其他区域中的人数,其中人数确定了房间通风系统的通风程度。 柜台将跟踪人员的数量和房间中存在的时间长短。 计数装置和通风管理控制之间的反馈控制算法可自动控制确保舒适有效环境所需的通风量。
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公开(公告)号:WO2007064355A3
公开(公告)日:2007-08-02
申请号:PCT/US2006021302
申请日:2006-06-02
Applicant: HONEYWELL INT INC , GU YUANDONG , COLE BARRETT E
Inventor: GU YUANDONG , COLE BARRETT E
CPC classification number: G01N33/551 , B82Y15/00 , B82Y30/00 , B82Y40/00 , C01B32/168 , C01B2202/02 , G01N33/66 , G01N2610/00
Abstract: The present invention provides a sensor, such as a biosensor, comprising at least one self-assembled monolayer (SAM) comprising analyte-sensitive groups, such as glucose-sensitive groups, attached to the surface of the outer wall of a carbon nanotube (CNT), such as a single-walled carbon nanotube (SWNT), by terminal groups, which bind to a thin layer of a metal or metal oxide, which has been deposited on the surface of the outer wall of the nanotube.
Abstract translation: 本发明提供了传感器,例如生物传感器,其包含至少一个自组装单层(SAM),其包含附着于碳纳米管外壁表面的CNT(葡萄糖敏感基团)分析物敏感基团 ),例如单壁碳纳米管(SWNT),通过末端基团结合到沉积在纳米管外壁表面上的金属或金属氧化物薄层上。
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公开(公告)号:WO2005068981A3
公开(公告)日:2005-10-06
申请号:PCT/US2004042579
申请日:2004-12-08
Applicant: HONEYWELL INT INC , BONNE ULRICH , COLE BARRETT E , RHODES MICHAEL L
Inventor: BONNE ULRICH , COLE BARRETT E , RHODES MICHAEL L
CPC classification number: B82Y10/00 , H02N11/006
Abstract: A micro plasma sensor system having a glow discharge gap. A fluid (17) to be sensed is brought into the vicinity of the discharge (18) at the gap. Emission light from the discharge is coupled to an optical spectrum analyzer (22, 23, 26, 47) for determining properties of the fluid. Window cleanliness and electrode electrical isolation may be maintened by the discharge. The optical analyzer may have individual bandpass filters (22) for two or more optical channels to optical detectors, a Fabry-Perot filter (26) in front of a set of optical detectors (41), or a grating or prism (48) which disperses emission light at various angles according to wavelength to an array of light detectors (49). The optical detectors (23, 41, 49) may output electrical signals to be processed.
Abstract translation: 具有辉光放电间隙的微型等离子体传感器系统。 要被感测的流体(17)在间隙处进入排出口(18)附近。 来自放电的发射光耦合到用于确定流体性质的光谱分析仪(22,23,26,47)。 窗口清洁度和电极电气隔离可能会被放电维护。 光学分析仪可以具有用于光学检测器的两个或更多个光学通道的单独的带通滤波器(22),在一组光学检测器(41)前面的法布里 - 珀罗滤波器(26)或光栅或棱镜(48) 将根据波长的各种角度的发射光分散到光检测器阵列(49)。 光检测器(23,41,49)可以输出待处理的电信号。
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