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公开(公告)号:US20070079816A1
公开(公告)日:2007-04-12
申请号:US10543424
申请日:2003-06-20
申请人: Jeffery White , Mark Wherrett , Patrick Ryan
发明人: Jeffery White , Mark Wherrett , Patrick Ryan
摘要: A device and method for producing energy from a dilute VOC gas stream. The device includes a concentrator that concentrates a dilute VOC gas stream into a concentrated VOC fuel. The concentrated VOC fuel is supplied to the fuel intake of an engine. The device is operated by adsorbing the dilute VOC onto an adsorbing media within a concentrator. The concentrator increases the concentration of VOC per unit volume. The adsorbed VOC are then desorbed to form a concentrated VOC fuel stream. The concentrated VOC fuel stream may be either liquefied VOC or a more concentrated VOC gas stream. The concentrated VOC fuel stream is then directed to an engine to produce kinetic or electrical energy.
摘要翻译: 用于从稀释的VOC气流产生能量的装置和方法。 该装置包括浓缩器,其将稀释的VOC气流浓缩成浓缩的VOC燃料。 浓缩的VOC燃料被供应到发动机的燃料进口。 该装置通过将稀释的VOC吸附在浓缩器内的吸附介质上来操作。 浓缩器增加每单位体积VOC的浓度。 然后吸附的VOC被解吸以形成浓缩的VOC燃料流。 浓缩的VOC燃料流可以是液化VOC或更浓缩的VOC气流。 浓缩的VOC燃料流然后被引导到发动机以产生动能或电能。
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公开(公告)号:US06945456B2
公开(公告)日:2005-09-20
申请号:US10424081
申请日:2003-04-25
申请人: Paul D. Magee , David Barker , Patrick Ryan , Donald W. Harry , Richard E. Dunlap , Gerald T. Sedlock , Terry L. Schreffler , Terry E. Doll , Richard W. McCracken , Walter J. Szabat , Tim E. Kerstetter , Darling D. Thomas
发明人: Paul D. Magee , David Barker , Patrick Ryan , Donald W. Harry , Richard E. Dunlap , Gerald T. Sedlock , Terry L. Schreffler , Terry E. Doll , Richard W. McCracken , Walter J. Szabat , Tim E. Kerstetter , Darling D. Thomas
CPC分类号: G07F19/20 , G07F19/202 , G07F19/205
摘要: An automated banking machine (10) includes a lockable first fascia portion (20) which when unlocked enables access to a chest lock input device (104), inputs to which enable opening a chest door (18) of the machine. Opening the first fascia portion also enables access to an actuator (116) which enables moving a second fascia portion (22) for conducting service activities. A baffle structure (164) is positioned on the housing adjacent the second fascia portion to enable cooling air flow within the housing of the machine and to prevent the introduction of moisture into the housing. A controller (72) in the machine selectively illuminates light emitting devices (118, 126) for purposes of facilitating user operation of the machine. Servicing the machine is facilitated through use of a portable diagnostic article (98) which enables the controller to access diagnostic data stored in memory.
摘要翻译: 自动银行机器(10)包括可锁定的第一面板部分(20),当被解锁时,可以访问胸锁锁输入装置(104),输入能够打开机器的胸部门(18)。 打开第一面板部分还使得能够进入能够移动第二面板部分(22)以进行服务活动的致动器(116)。 挡板结构(164)被定位在与第二面板部分相邻的壳体上,以使得能够在机器的壳体内冷却空气流,并且防止湿气引入到壳体中。 机器中的控制器(72)为了便于用户操作机器而选择性地照亮发光装置(118,126)。 通过使用便携式诊断用品(98)来促进机器的维修,其使得控制器能够访问存储在存储器中的诊断数据。
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公开(公告)号:US20050158499A1
公开(公告)日:2005-07-21
申请号:US11079767
申请日:2005-03-14
申请人: Michael Ling , William Hurst , Lecon Woo , Algirdas Bindokas , Patrick Ryan , Scott Edwards , Henk Blom , Atul Khare
发明人: Michael Ling , William Hurst , Lecon Woo , Algirdas Bindokas , Patrick Ryan , Scott Edwards , Henk Blom , Atul Khare
IPC分类号: F16L11/04 , A61J1/10 , A61J1/14 , A61L29/12 , A61L31/00 , B29C35/08 , B29C65/04 , B32B1/08 , B32B25/08 , B32B27/08 , B32B27/32 , C08L23/08 , C08L23/12 , C08L23/14 , C08L51/00 , C08L53/02 , C08L75/04 , C08L77/00 , C08L101/00
CPC分类号: C08L23/12 , A61L29/126 , B29C65/04 , B29C66/1122 , B29C66/53262 , B29C66/71 , B29C66/7234 , B29C2035/0861 , B32B1/08 , B32B27/08 , B32B27/32 , C08L23/0815 , C08L23/0869 , C08L23/142 , C08L51/00 , C08L53/02 , C08L75/04 , C08L77/00 , C08L101/00 , C08L2314/06 , Y10T428/1352 , Y10T428/1386 , Y10T428/139 , Y10T428/1393 , Y10T428/31746 , Y10T428/31913 , Y10T428/31924 , Y10T428/31931 , C08L2666/24 , C08L2666/04 , B29C65/00 , B29K2079/08 , B29K2077/00 , B29K2075/02 , B29K2075/00 , B29K2067/00 , B29K2033/12 , B29K2033/08 , B29K2023/18 , B29K2023/14 , B29K2023/12 , B29K2023/086 , B29K2023/083 , B29K2023/08 , B29K2021/003 , B29K2009/00
摘要: The present invention provides a flowable material container closure assembly having a port tube and a membrane tube. The port tube (I) has a first layer and a second layer, (A) the first layer is a polymer blend of: (1) from about 25% to about 50% by weight of the first layer a first polyolefin selected from the group consisting of polypropylene and polypropylene copolymers, (2) from about 0 to about 50% by weight of the first layer a second polyolefin selected from the group consisting of ethylene copolymers, ultra-low density polyethylene, polybutene, and butene ethylene copolymers; (3) from about 0% to about 40% by weight of the first layer a radio frequency susceptible polymer selected from the group consisting of polyamides, ethylene acrylic acid copolymers, ethylene methacrylic acid copolymers, polyimides, polyurethanes, polyesters, polyureas, ethylene vinyl acetate copolymers with a vinyl acetate comonomer content from 12%-50% by weight of the copolymer, ethylene methyl acrylate copolymers with methyl acrylate comonomer content from 12%-40% by weight of the copolymer, ethylene vinyl alcohol with vinyl alcohol comonomer content from 12%-70% by mole percent of the copolymer; (4) from about 0% to about 40% of a first thermoplastic elastomer; and (B) the second layer is disposed coaxially within the first layer and is a second thermoplastic elastomer; and the (II) membrane tube is disposed coaxially within the port tube, the membrane tube has an outer layer, a core layer and an inner layer, the outer layer (A) is a polymer blend of: (1) from about 0% to about 60% by weight of the outer layer of a third polyolefin and (2) from about 40% to about 100% by weight of the outer layer of a second component of a third thermoplastic elastomer, the core layer (B) is attached to the outer layer, the core layer is a polymer blend of: (1) from about 35% to about 100% by weight of the core layer of a fourth thermoplastic elastomer and (2) from about 0% to about 65% by weight of the core layer of a fourth polyolefin; and (C) the inner layer is attached to the core layer on a side opposite of the outer layer, the inner layer is a polymer blend of: (1) from about 25% to about 55% by weight of the inner layer a fifth polyolefin, (2) from about 0 to about 50% by weight of the inner layer a sixth polyolefin selected from the group consisting of ethylene copolymers, ultra-low density polyethylene, polybutene, polybutadiene and butene ethylene copolymers; (3) from about 0% to about 60% by weight of the inner layer a radio frequency susceptible polymer selected from the group consisting of polyamides, ethylene acrylic acid copolymers, ethylene methacrylic acid copolymers, polyimides, polyurethanes, polyesters, polyureas, ethylene vinyl acetate copolymers with a vinyl acetate comonomer content from 12%-50% by weight of the copolymer, ethylene methyl acrylate copolymers with methyl acrylate comonomer content from 12%-40% by weight of the copolymer, ethylene vinyl alcohol with vinyl alcohol comonomer content from 12%-70% by mole percent of the copolymer; (4) from about 0% to about 40% by weight of the inner layer of a fifth thermoplastic elastomer.
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公开(公告)号:US20050117594A1
公开(公告)日:2005-06-02
申请号:US10726200
申请日:2003-12-01
申请人: Patrick Ryan
发明人: Patrick Ryan
IPC分类号: G06F20060101 , H04L12/56 , H04L12/66 , H04L29/06
CPC分类号: H04L12/66 , H04L29/06027 , H04L65/103 , H04L65/104 , H04L65/605 , H04L65/80
摘要: A first gateway is provided for establishing a communicating path for a user placing a call on a communication line. The first gateway has a plurality of modes of operation, including a data mode and a voice mode, wherein the first gateway is configured differently for each of the modes of operation. In one aspect, a communication method comprises the steps of configuring the first gateway to the data mode of operation; receiving a call from the user over the communication line; enabling the first gateway to detect human voice and/or silence on the communication line; maintaining the first gateway configured according to the configuring step in the data mode of operation if the first gateway does not detect human voice or silence on the communication line; and reconfiguring the first gateway to the voice mode if the first gateway detects human voice or silence on the communication line.
摘要翻译: 提供第一网关,用于建立用于在通信线路上发起呼叫的用户的通信路径。 第一网关具有多种操作模式,包括数据模式和语音模式,其中第一网关对于每个操作模式被不同地配置。 一方面,通信方法包括以下步骤:将第一网关配置为数据操作模式; 通过通信线路接收来自用户的呼叫; 使第一网关能够检测通信线路上的人声和/或静音; 如果第一网关在通信线路上没有检测到人声或静音,则保持根据数据操作模式中的配置步骤配置的第一网关; 以及如果所述第一网关在所述通信线路上检测到人声或静音,则将所述第一网关重新配置为语音模式。
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公开(公告)号:US20050029341A1
公开(公告)日:2005-02-10
申请号:US10939290
申请日:2004-09-09
申请人: Paul Magee , David Barker , Patrick Ryan , Donald Harry , Richard Dunlap , Gerald Sedlock , Terry Schreffler , Terry Doll , Richard McCracken , Walter Szabat , Tim Kerstetter , Darling Thomas
发明人: Paul Magee , David Barker , Patrick Ryan , Donald Harry , Richard Dunlap , Gerald Sedlock , Terry Schreffler , Terry Doll , Richard McCracken , Walter Szabat , Tim Kerstetter , Darling Thomas
CPC分类号: G07F19/20 , G07F19/202 , G07F19/205
摘要: An automated banking machine includes a display device in an upper housing portion and a currency dispenser in a (lower) chest housing portion. A cooling system within the machine housing is operative to cool air in the housing. The cooling system includes temperature sensors, an air duct, a blower, and an air cooling device. The duct extends between the separated chest portion and the upper portion. The chest portion houses the blower, which is operative to move air through the duct. A controller can operate the air cooling device to maintain the air temperature in both the upper portion and the chest portion within a predetermined temperature range.
摘要翻译: 自动银行机包括在上壳体部分中的显示装置和(下)胸部壳体部分中的货币分配器。 机壳内的冷却系统用于冷却壳体中的空气。 冷却系统包括温度传感器,风道,鼓风机和空气冷却装置。 管道在分离的胸部和上部之间延伸。 胸部容纳鼓风机,该鼓风机用于将空气移动通过管道。 控制器可以操作空气冷却装置,以将上部和第二部分的空气温度保持在预定的温度范围内。
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公开(公告)号:USD481517S1
公开(公告)日:2003-10-28
申请号:US29172996
申请日:2002-12-19
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公开(公告)号:USD481516S1
公开(公告)日:2003-10-28
申请号:US29172995
申请日:2002-12-19
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公开(公告)号:US09555360B2
公开(公告)日:2017-01-31
申请号:US13094532
申请日:2011-04-26
申请人: Patrick Ryan , Jeffery White , Mark Wherrett
发明人: Patrick Ryan , Jeffery White , Mark Wherrett
CPC分类号: B01D53/02 , B01D53/06 , B01D53/12 , B01D53/72 , B01D2257/708 , B01D2258/0208 , C01B3/34 , C01B2203/0244 , C01B2203/0844 , C01B2203/1211 , C01B2203/1258 , C01B2203/142 , C01B2203/82 , C01B2203/84 , Y02E60/324
摘要: A device and method for producing a reformate fuel from a hydrocarbon gas source. The invention enables the conversion of a dilute hydrocarbon gas into a more easily consumable reformate fuel. Gases having low concentrations of hydrocarbons are concentrated using a concentrator into a gaseous or liquid concentrated VOC fuel. The concentrated VOC fuel is then converted into a reformate using a reformer. The reformate is more easily consumed by an energy conversion device such as a combustion engine, fuel cell, sterling engine or similar device that converts chemical energy into kinetic or electrical energy. The reformer enables complex hydrocarbon fuels that are not normally suitable for use in an energy conversion device to be converted into a reformate. The reformate may be directly supplied into the energy conversion device.
摘要翻译: 一种用于从烃类气体源生产重整燃料的装置和方法。 本发明使稀烃类气体转化为更容易消耗的重整油燃料。 使用浓缩器将具有低浓度烃的气体浓缩成气态或液体浓缩的VOC燃料。 然后使用重整器将浓缩的VOC燃料转化为重整产物。 重整产品更容易被诸如内燃机,燃料电池,纯碱发动机或将化学能转化为动能或电能的类似装置之类的能量转换装置消耗。 重整器使得通常不适合用于能量转换装置的复合烃燃料转化为重整产物。 重整产品可以直接供应到能量转换装置中。
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公开(公告)号:US20140094771A1
公开(公告)日:2014-04-03
申请号:US14035835
申请日:2013-09-24
申请人: Po-Ying Li , Shengtao Li , Jonathan K. Lee , Patrick Ryan , Alice Lai , Sean Caffey , Mark S. Humayun
发明人: Po-Ying Li , Shengtao Li , Jonathan K. Lee , Patrick Ryan , Alice Lai , Sean Caffey , Mark S. Humayun
IPC分类号: A61M5/172
CPC分类号: A61M5/172 , A61M5/14244 , A61M5/14248 , A61M5/14276 , A61M5/14526 , A61M5/14586 , A61M5/14593 , A61M5/148 , A61M5/155 , A61M5/16804 , A61M5/16809 , A61M5/16854 , A61M5/3146 , A61M31/002 , A61M2005/14204 , A61M2005/14252 , A61M2005/14513 , A61M2205/0222 , A61M2205/0238 , A61M2205/3331 , A61M2205/3334 , A61M2205/3341 , A61M2205/3368 , A61M2205/50 , A61M2205/8206 , A61M2205/8231 , A61M2205/8293 , A61M2210/0612 , A61M2210/0693 , G06F19/00 , G06F19/3468
摘要: Embodiments of the present invention utilize a closed-loop feedback control system to ensure accurate drug delivery. This control system may, for example, utilize a flow sensor to measure the volume of delivery and an intelligent control algorithm to anticipate and compensate for overdoses and underdoses. Feedback control systems in accordance herewith can be applied to any piston- or plunger-driven pump system utilizing sensors that measure flow directly or indirectly. In some embodiments, adjustments are made based on the flow “tail” that occurs in a piston- or plunger-type pump as relaxation of the plunger material continues to push fluid out of the drug reservoir; this residual flow eventually ceases after the plunger returns to its natural state.
摘要翻译: 本发明的实施例利用闭环反馈控制系统来确保准确的药物递送。 该控制系统可以例如利用流量传感器来测量输送量,以及智能控制算法来预测和补偿过量和过量。 根据本文的反馈控制系统可以应用于使用直接或间接测量流量的传感器的任何活塞或柱塞驱动的泵系统。 在一些实施例中,基于在活塞或柱塞式泵中发生的流动“尾”进行调整,因为柱塞材料的松弛继续将流体推出药物储存器; 在柱塞恢复到其自然状态之后,该剩余流最终停止。
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公开(公告)号:US20110200898A1
公开(公告)日:2011-08-18
申请号:US13094574
申请日:2011-04-26
申请人: Patrick Ryan , Jeffery White , Mark Wherrett
发明人: Patrick Ryan , Jeffery White , Mark Wherrett
IPC分类号: H01M8/06
CPC分类号: B01D53/02 , B01D53/06 , B01D53/12 , B01D53/72 , B01D2257/708 , B01D2258/0208 , C01B3/34 , C01B2203/0244 , C01B2203/0844 , C01B2203/1211 , C01B2203/1258 , C01B2203/142 , C01B2203/82 , C01B2203/84 , Y02E60/324
摘要: A device and method for producing a reformate fuel from a hydrocarbon gas source. The invention enables the conversion of a dilute hydrocarbon gas into a more easily consumable reformate fuel. Gases having low concentrations of hydrocarbons are concentrated using a concentrator into a gaseous or liquid concentrated VOC fuel. The concentrated VOC fuel is then converted into a reformate using a reformer. The reformate is more easily consumed by an energy conversion device such as a combustion engine, fuel cell, sterling engine or similar device that converts chemical energy into kinetic or electrical energy. The reformer enables complex hydrocarbon fuels that are not normally suitable for use in an energy conversion device to be converted into a reformate. The reformate may be directly supplied into the energy conversion device.
摘要翻译: 一种用于从烃类气体源生产重整燃料的装置和方法。 本发明使稀烃类气体转化为更容易消耗的重整油燃料。 使用浓缩器将具有低浓度烃的气体浓缩成气态或液体浓缩的VOC燃料。 然后使用重整器将浓缩的VOC燃料转化为重整产物。 重整产品更容易被诸如内燃机,燃料电池,纯碱发动机或将化学能转化为动能或电能的类似装置之类的能量转换装置消耗。 重整器使得通常不适合用于能量转换装置的复合烃燃料转化为重整产物。 重整产品可以直接供应到能量转换装置中。
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