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    • 12. 发明申请
    • Indirect-heat thermal processing of particulate material
    • 颗粒材料的间接热加工
    • US20070256316A1
    • 2007-11-08
    • US11418055
    • 2006-05-05
    • Neville JordisonNiels RozendaalPeter Huang
    • Neville JordisonNiels RozendaalPeter Huang
    • F26B19/00F26B17/12
    • F26B17/122F26B17/16
    • A method and apparatus for indirect-heat thermal processing of material, such as a dryer or evaporator for treatment of particulate material, is provided. In one embodiment, a dryer for drying particulate material comprises a plurality of heat transfer plates arranged in spaced relationship for the flow of the material to be dried therebetween. Each heat transfer plate is provided with an inlet and an outlet for the flow of the heating fluid through the plates. A purge fluid delivery system provides a flow of purge fluid, such as air, gas or steam between the plates in a direction across the direction of flow of the material to be dried. The purge fluid delivery system provides a flow path for the purge fluid which is isolated from the flow of the heating fluid through the plates. A method for the indirect-heat processing of particulate material is also provided.
    • 提供了一种用于物料的间接热处理的方法和装置,例如用于处理颗粒材料的干燥器或蒸发器。 在一个实施例中,用于干燥颗粒材料的干燥器包括以间隔开的方式布置的多个传热板,用于要在其间干燥的材料的流动。 每个传热板设置有用于通过板的加热流体流动的入口和出口。 吹扫流体输送系统在跨过要干燥的材料的流动方向的方向在板之间提供吹扫流体的流动,例如空气,气体或蒸汽。 吹扫流体输送系统提供用于吹扫流体的流动路径,其与通过板的加热流体的流动隔离。 还提供了一种用于间接热处理颗粒材料的方法。
    • 17. 发明授权
    • Pedal apparatus
    • 踏板装置
    • US06122989A
    • 2000-09-26
    • US988248
    • 1997-12-10
    • Thomas BarnesLeonard Murray BrownJiao J. (Peter) Huang
    • Thomas BarnesLeonard Murray BrownJiao J. (Peter) Huang
    • G05G1/46G05G1/14F16B21/18
    • G05G1/46Y10T403/7111Y10T74/20528
    • A pedal apparatus provides quick and secure assembly of a pedal lever and an interconnecting mechanism. The pedal apparatus includes the pedal lever (18) and a fixed end (32) of a cylindrical member (30) is attached to the pedal lever. An interconnecting mechanism (40) is disposed between the device to be actuated by the operators efforts on the pedal lever and has a first end attached the cylindrical member. A snap lock (50) is provided having a body portion (52) disposed adjacent to a free end of the cylindrical member. The snap lock also includes at least one retaining leg (54) projecting outward from the body portion toward the pedal lever. The retaining leg has a predetermined length and width to allow installation of the first end of the interconnecting mechanism onto the cylindrical member and retention thereafter of the first end of the interconnecting means between a tip of the retaining leg and the pedal lever.
    • 踏板装置提供踏板杆和互连机构的快速且安全的组装。 踏板装置包括踏板杆(18),并且圆柱形构件(30)的固定端(32)附接到踏板杆。 互连机构(40)设置在由操作者在踏板杆上的努力致动的装置之间,并且具有连接圆柱形构件的第一端。 提供了一种卡扣锁(50),其具有邻近圆柱形构件的自由端设置的主体部分(52)。 卡扣锁还包括至少一个从主体部向外朝向踏板杆突出的保持腿54。 保持腿具有预定的长度和宽度,以允许互连机构的第一端安装在圆柱形构件上,并且之后将互连装置的第一端保持在保持腿的尖端和踏板杆之间。
    • 20. 发明申请
    • Adjusting Capacitance of Capacitors without Affecting Die Area
    • 调整电容器电容,不影响模具面积
    • US20120315711A1
    • 2012-12-13
    • US13592765
    • 2012-08-23
    • Peter HuangMing-Chun Chen
    • Peter HuangMing-Chun Chen
    • H01L21/66
    • H01G4/33H01L22/14H01L22/20H01L27/0207H01L27/118H01L28/86
    • According to one exemplary embodiment, a method for adjusting geometry of a capacitor includes fabricating a first composite capacitor residing in a first standard cell with a first set of process parameters. The method further includes using a second standard cell having substantially same dimensions as the first standard cell. The method further includes using a capacitance value from the first composite capacitor to adjust a geometry of a second composite capacitor residing in the second standard cell, wherein the second composite capacitor is fabricated with a second set of process parameters. The geometry of the second composite capacitor can be adjusted to cause the second composite capacitor to have a capacitance value substantially equal to the capacitance value from the first composite capacitor.
    • 根据一个示例性实施例,一种用于调整电容器几何形状的方法包括制造驻留在具有第一组工艺参数的第一标准单元中的第一复合电容器。 该方法还包括使用具有与第一标准单元基本相同的尺寸的第二标准单元。 该方法还包括使用来自第一复合电容器的电容值来调整驻留在第二标准单元中的第二复合电容器的几何形状,其中第二复合电容器由第二组工艺参数制成。 可以调整第二复合电容器的几何形状,使得第二复合电容器的电容值基本上等于来自第一复合电容器的电容值。