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    • 32. 发明申请
    • HYDRAULIC VALVE FOR USE IN A CONTROL MODULE OF AN AUTOMATIC TRANSMISSION
    • 液压阀用于自动变速箱的控制模块
    • US20120085436A1
    • 2012-04-12
    • US13377628
    • 2010-06-22
    • Michael E. JonesDennis R. Que
    • Michael E. JonesDennis R. Que
    • F16K31/00
    • F16K31/0613F15B2013/004F16H61/0251F16H2061/0253F16K11/07Y10T137/7758
    • A hydraulic valve assembly (10) adapted to be mounted to a transmission control module (15) and having a valve body (12), a valve bore (16), and at least one pressure supply port (26) as well as at least one pressure control port (28) that establish fluid communication between a source of pressurized fluid and a component to be controlled by the valve assembly. A valve member (18) is supported in the valve bore (16) and is selectively movable between predetermined positions to direct the pressurized fluid between the pressure supply port (26) and the pressure control port (28). In addition, the hydraulic valve assembly (10) includes a biasing mechanism (80, 180, 280, 380) that is responsive to the flow of hydraulic fluid through the valve body to generate a biasing force acting on the valve body (12) in a direction toward the pressure supply port (26).
    • 一种液压阀组件(10),其适于安装到变速器控制模块(15)上并且具有阀体(12),阀孔(16)和至少一个压力供给口(26)以及至少 一个压力控制端口(28),其建立加压流体源和要由阀组件控制的部件之间的流体连通。 阀构件(18)被支撑在阀孔(16)中,并且可选择性地在预定位置之间移动以将加压流体引导到压力供给口(26)和压力控制口(28)之间。 此外,液压阀组件(10)包括偏压机构(80,180,280,380),该偏置机构响应于通过阀体的液压流体的流动,以产生作用在阀体(12)上的偏压力 朝向压力供给口(26)的方向。
    • 33. 发明授权
    • System and method for measuring media thickness with a transfer subsystem in a printer
    • 用打印机中传输子系统测量介质厚度的系统和方法
    • US08126362B2
    • 2012-02-28
    • US12212218
    • 2008-09-17
    • Michael E. JonesSara M. Haislip
    • Michael E. JonesSara M. Haislip
    • G03G15/08
    • B41J11/0035B41J2/0057
    • A printer and method have been developed that enable a controller in a printer to compute a thickness of an image substrate. The printer includes an intermediate imaging member, a transfer roller located proximate to the intermediate imaging member, a displaceable linkage coupled to the transfer roller to move the transfer roller from a first position to a position in which the transfer roller forms a transfer nip with the intermediate imaging member and to return the transfer roller to the start position, and a controller coupled to the displaceable linkage, the controller being configured to measure movement of the transfer roller from the first position to the position where the transfer nip is formed, and to compute a media thickness from a measured movement of the transfer roller from the first position to the position where the transfer nip is formed with the intermediate imaging member without an image substrate being in the transfer nip and a measured movement of the transfer roller from the first position to the position where the transfer nip is formed with an image substrate in the transfer nip between the transfer roller and the intermediate imaging member.
    • 已经开发了一种能够使打印机中的控制器计算图像基板的厚度的打印机和方法。 打印机包括中间成像构件,位于中间成像构件附近的转印辊,耦合到转印辊的可移动连杆,以将转印辊从第一位置移动到转印辊与转印辊形成转印辊隙的位置 中间成像构件并将转印辊返回到起始位置,以及耦合到可移动联动装置的控制器,该控制器被配置成测量转印辊从第一位置到形成转印间隙的位置的运动,并且 从传送辊的测量的运动从第一位置到形成转印辊隙的位置与中间成像构件计算介质厚度,而图像基板不在转印辊隙中,并且转印辊从第一位置测量的运动 位置到转印辊隙形成位置的转印辊隙中的图像基板 补偿转印辊和中间成像构件。
    • 35. 发明申请
    • System And Method For Measuring Media Thickness With A Transfer Subsystem In A Printer
    • 用于在打印机中传输子系统测量介质厚度的系统和方法
    • US20100067948A1
    • 2010-03-18
    • US12212218
    • 2008-09-17
    • Michael E. JonesSara M. Haislip
    • Michael E. JonesSara M. Haislip
    • G03G15/16
    • B41J11/0035B41J2/0057
    • A printer and method have been developed that enable a controller in a printer to compute a thickness of an image substrate. The printer includes an intermediate imaging member, a transfer roller located proximate to the intermediate imaging member, a displaceable linkage coupled to the transfer roller to move the transfer roller from a first position to a position in which the transfer roller forms a transfer nip with the intermediate imaging member and to return the transfer roller to the start position, and a controller coupled to the displaceable linkage, the controller being configured to measure movement of the transfer roller from the first position to the position where the transfer nip is formed, and to compute a media thickness from a measured movement of the transfer roller from the first position to the position where the transfer nip is formed with the intermediate imaging member without an image substrate being in the transfer nip and a measured movement of the transfer roller from the first position to the position where the transfer nip is formed with an image substrate in the transfer nip between the transfer roller and the intermediate imaging member.
    • 已经开发了一种能够使打印机中的控制器计算图像基板的厚度的打印机和方法。 打印机包括中间成像构件,位于中间成像构件附近的转印辊,耦合到转印辊的可移动连杆,以将转印辊从第一位置移动到转印辊与转印辊形成转印辊隙的位置 中间成像构件并将转印辊返回到起始位置,以及耦合到可移动联动装置的控制器,该控制器被配置成测量转印辊从第一位置到形成转印间隙的位置的运动,并且 从传送辊的测量的运动从第一位置到形成转印辊隙的位置与中间成像构件计算介质厚度,而图像基板不在转印辊隙中,并且转印辊从第一位置测量的运动 位置到转印辊隙形成位置的转印辊隙中的图像基板 补偿转印辊和中间成像构件。
    • 36. 发明授权
    • Low leak poppet solenoid
    • 低泄漏提升阀电磁阀
    • US07458395B2
    • 2008-12-02
    • US10862778
    • 2004-06-07
    • William D. HaynesMichael E. Jones
    • William D. HaynesMichael E. Jones
    • F16K31/04
    • F16K31/0627F16K31/0606Y10T137/86622Y10T137/86919
    • A dual poppet low leak variable bleed solenoid valve, including a solenoid portion with an adjustable end cap disposed through the solenoid. Exhaust ports are disposed about the end cap. A hydraulic portion has a valve housing that is connectable to the solenoid portion. The hydraulic portion has a control volume formed within, and a supply port is connected through the valve housing. A valve shaft is slidably disposed through the solenoid portion and extends longitudinally into the hydraulic portion. A first end of the valve shaft terminates in the solenoid portion forming a primary valve, and a second end of the valve shaft terminates in the hydraulic portion forming a secondary valve. The valve shaft further has a hollow channel disposed through the valve shaft to allow the passage of a fluid medium between the first end and second end of the valve shaft.
    • 双提升阀低泄漏可变泄放电磁阀,包括具有通过螺线管设置的可调节端盖的螺线管部分。 排气口围绕端盖设置。 液压部分具有可连接到螺线管部分的阀壳体。 液压部分具有形成在其内的控制容积,并且供给口通过阀壳体连接。 阀轴可滑动地设置穿过螺线管部分并纵向延伸到液压部分中。 阀轴的第一端终止在形成主阀的螺线管部分中,阀轴的第二端终止在形成二次阀的液压部分中。 阀轴还具有穿过阀轴设置的中空通道,以允许流体介质在阀轴的第一端和第二端之间通过。
    • 39. 发明授权
    • Method of and apparatus for packaging a beverage in a container
    • 将饮料包装在容器中的方法和装置
    • US5329963A
    • 1994-07-19
    • US957727
    • 1992-10-07
    • Michael E. JonesAndrew J. Kenward
    • Michael E. JonesAndrew J. Kenward
    • B65B3/18B65B31/04B67C3/10B67C3/22B67C3/26B67C3/06
    • B67C3/10B67C2003/2651
    • A can (1) has a primary chamber and a secondary chamber in communication through a restricted orifice and its exterior maintained at atmospheric pressure. The can (1) is filled with beer through a filling block (24) from a bowl (8). Prior to filling the can (1) is pressurized through the block (24) with nitrogen gas to greater than atmospheric pressure and subsequently evacuated to atmospheric pressure. Such pressurization and evacuation is repeated sequentially to dilute the atmospheric oxygen content within the primary and secondary chambers. A gas exchange conduit (40) extends between the bowl headspace (12) and the can (1). Conduit (40) has a gas control valve (55) closeable by movement of lever (60). A beer flow valve (37/46) controls flow of beer (9) from the bowl. During nitrogen pressurization of the can (1) the lever (60) is adjusted to maintain valves (55) and (37/46) closed and insure that high pressure gas in the can (1) cannot flow through conduit (40) into the bowl (8).
    • 罐(1)具有主室和通过限制孔连通的二级室,其外部保持在大气压。 罐(1)通过来自碗(8)的填充块(24)填充啤酒。 在填充之前,将罐(1)通过块(24)用氮气加压至大于大气压并随后抽空至大气压。 依次重复这种加压和抽空以稀释初级和次级室内的大气氧含量。 气体交换导管(40)在碗顶部空间(12)和罐(1)之间延伸。 管道(40)具有通过杆(60)的移动可以闭合的气体调节阀(55)。 啤酒流量阀(37/46)控制啤酒(9)从碗中的流动。 在罐(1)的氮气加压期间,调节​​杠杆(60)以保持阀(55)和(37/46)关闭,并确保罐(1)中的高压气体不能通过导管(40)流入 碗(8)。
    • 40. 发明授权
    • Digital vector generator for a graphic display system
    • 用于图形显示系统的数字矢量发生器
    • US4808988A
    • 1989-02-28
    • US600106
    • 1984-04-13
    • Gregory M. BurkeMichael E. Jones
    • Gregory M. BurkeMichael E. Jones
    • G09G1/04G09G5/36G09G5/39G09G1/00
    • G09G1/04G09G5/363
    • A graphics display system digital vector generator system includes three position vector generators generating position information for each of three different pixel location dimensions and three visual characteristic vector generators operating synchronously with the position vector generators to generate dynamic intensity information for three different dimensions of visual characteristics. Optical processing of visual characteristic vectors includes normalization to generate Phong shading intensity vectors, pattern shape generation, and mixing of hue and intensity information with selectable resolution to obtain a desired visual characteristic pixel data representation.
    • 图形显示系统数字矢量发生器系统包括三个位置矢量发生器,其产生用于三个不同像素位置维度中的每一个的位置信息,以及与位置矢量发生器同步操作的三个视觉特征矢量发生器,以产生视觉特征的三个不同维度的动态强度信息。 视觉特征矢量的光学处理包括归一化以产生Phong阴影强度矢量,图案形状生成,以及可选择分辨率的色调和强度信息的混合,以获得期望的视觉特征像素数据表示。