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    • 31. 发明申请
    • Method and system for displaying appointments
    • 显示约会的方法和系统
    • US20060007785A1
    • 2006-01-12
    • US10887180
    • 2004-07-08
    • Juan FernandezJose Korneluk
    • Juan FernandezJose Korneluk
    • G04B47/00G04B45/00
    • G04G11/00G06Q10/109
    • The invention concerns a method (200) and system (100) for displaying appointments. The method includes the steps of—in an electronic device (110)—displaying (212) an analog clock face (300) that is divisible into a plurality of time regions (318) in which the plurality of time regions includes at least a portion of an ante meridiem section (320) and a post meridiem section (322), associating (216) a time region with an appointment and marking (222) the time region, including at least a portion of one of the ante meridiem section and the post meridiem section, to indicate visually that the appointment is associated with the time region. The method can further include the step of assigning (220) an icon (324) to the marked time region to indicate the type of appointment associated with the time region.
    • 本发明涉及一种用于显示约会的方法(200)和系统(100)。 该方法包括以下步骤:在电子设备(110)中显示(212)可分为多个时间区域(318)的模拟时钟面(300),其中多个时间区域包括至少一部分 (320)和子午线部分(322),将时间区域与时间区域的约定和标记(222)相关联(216),包括至少部分前进子午线部分和 post meridiem部分,以视觉上指示约会与时区相关联。 该方法还可以包括将图标(220)分配(220)到标记的时间区域以指示与该时间区域相关联的约会的类型的步骤。
    • 36. 发明授权
    • Wheeled exerciser
    • US06585627B2
    • 2003-07-01
    • US09766832
    • 2001-01-23
    • Juan Fernandez
    • Juan Fernandez
    • A63B7100
    • A63B21/0004A63B21/023A63B21/0455A63B22/20
    • A wheeled exerciser includes a pair of main traction wheels, a pair of auxiliary wheels, a housing with a receiving compartment, a main wheel axle, a mounting piece which can be attached securely onto the housing, a set of coil springs which can be attached with one of the ends of each coil spring onto a mounting piece and with the other end of each coil spring attached to each of the main traction wheels in such a manner that the springs are winded when the wheels turn, and a pair of handles which can be attached to the outer surface of the housing. In use, the user holds the handles with both hands, presses the wheels of the exerciser against the floor, and pushes the exerciser forward from a starting point. In the course of pushing the exerciser forward, the main traction wheels turn and wind up the springs. When the exerciser reaches the desired position, the user moves the exerciser backward with the help of the restoring force on the springs. FIG. 1 shows the exerciser wheel in use.
    • 38. 发明授权
    • Overlaid MR structure with magnetostatic stabilized soft adjacent layer
    • US06449135B1
    • 2002-09-10
    • US09180560
    • 1998-11-06
    • Juren DingSong Sheng XueJuan Fernandez-deCastroJames DolejsiPatrick Joseph Ryan
    • Juren DingSong Sheng XueJuan Fernandez-deCastroJames DolejsiPatrick Joseph Ryan
    • G11B539
    • B82Y25/00G01R33/093G11B5/3903G11B5/3932Y10T29/49044
    • The present invention is a magnetoresistive (MR) sensor (100) that combines the advantages of abutted junction structure and regular overlaid structure. The abutted junction design is used with the soft adjacent layer (SAL) (108) and the overlaid structure is used with the MR element (120). The method of making the MR sensor (100) comprises depositing SAL (108) on top of the gap layer (106) and depositing spacer material (110) on top of the SAL (108). A mask (130) is placed over the central region of the spacer material (110) and SAL (108). The spacer material (110) and SAL (108) are removed in the areas not covered by the mask (130). An underlayer material (112) is deposited in the areas where the SAL (108) and spacer material (110) were removed. A hard-biasing material (114) is deposited on top of the underlayer (112). The mask (130) is removed and the MR element (120) is deposited on top of the spacer material (110) in the active region of the sensor (132) and on top of the hard-biasing material (114) in the passive regions of the sensor (134, 136). A cap layer (122) is deposited on top of the MR element (120) in the active (132) and passive regions (134, 136) of the MR sensor (100). Contacts (124) are placed on top of the cap layer (122) in the passive regions of the sensor (134, 136). In another embodiment of the method, additional material is added to separate the hard-biasing material (114), thus improving the signal to noise ratio. A low resistivity material (116) is added after the first hard-biasing material (114) and a second hard-biasing material (118) is deposited on top of the low-resistivity material (116). The additional materials are deposited before the mask (130) is removed. Once the mask (130) is removed, the MR senor (100) is built in accordance with the first embodiment.
    • 39. 发明授权
    • Electrospray employing corona-assisted cone-jet mode
    • 电喷雾采用电晕辅助锥形喷射模式
    • US5873523A
    • 1999-02-23
    • US808127
    • 1997-02-28
    • Alessandro GomezJuan Fernandez de la MoraKeqi Tang
    • Alessandro GomezJuan Fernandez de la MoraKeqi Tang
    • A61M15/02B05B5/025B05B5/03
    • A61M15/02B05B5/0255B05B5/03Y10S977/904Y10S977/925
    • An electrospray apparatus incorporating the invention includes a capillary with an exit for ejecting a fluid, and an electrode positioned downstream from the exit. A gas source is used to establish a region of gas, at least immediately about the exit. A voltage supply creates a potential difference between the capillary exit and the electrode, the potential difference being sufficient to both establish a cone jet mode of operation at the exit of the capillary, to ionize the region of gas about the exit and create a current flow between the exit and the electrode. The current flow exhibits an increased value upon the gas becoming ionized, thus enabling detection of the establishment of a corona. This action creates a corona-assisted cone jet mode of electrospray operation which enables the fluid to disperse into highly uniform sized particles. The preferred gas is carbon dioxide.
    • 结合本发明的电喷射装置包括具有用于喷射流体的出口的毛细管和位于出口下游的电极。 气源用于建立气体区域,至少在出口附近。 电压源产生毛细管出口和电极之间的电位差,电势差足以在毛细管出口处建立锥形喷射模式,以使出口周围的气体区域离子化并产生电流 在出口和电极之间。 电流在气体变得电离时表现出增加的值,从而能够检测电晕的建立。 该动作产生电晕辅助锥喷射模式的电喷操作,使得流体能够分散成高度均匀的粒子。 优选的气体是二氧化碳。
    • 40. 发明授权
    • Use ion guides with electrodes of small dimensions to concentrate small charged species in a gas at relatively high pressure
    • 使用具有小尺寸电极的离子导轨将较小的带电物质集中在较高压力的气体中
    • US08362421B2
    • 2013-01-29
    • US12672168
    • 2008-04-02
    • Juan Fernandez De La Mora
    • Juan Fernandez De La Mora
    • H01J49/42
    • H01J49/42H01J49/062
    • The present invention is based on the observation that radio frequency (RF) electric fields in multi-pole lenses with small rod diameters in the range of 1 mm enables strongly concentrating ions suspended in a gas at pressures much higher than previously used for ion manipulation, including atmospheric pressure. Other lens configurations are described, including one based on the funnels of U.S. Pat. No. 6,107,628, and another on the coiled wire system of Hutchins et al. (1999). The finding provides a method to increase the concentration of ions transmitted to mass spectrometers and other analyzers, both from volatile or involatile species in solution, hence increasing their analytical sensitivity. It also enables improved charging efficiencies of neutral volatile species existing in the gas phase.
    • 本发明是基于以下观察结果:小杆直径在1mm范围内的多极透镜中的射频(RF)电场使得能够以比先前用于离子操作更高的压力将悬浮在气体中的强烈浓缩离子, 包括大气压力。 描述了其他透镜配置,包括基于美国专利的漏斗 No.6,107,628,另一个在Hutchins等人的卷绕线系统上。 (1999)。 该发现提供了一种方法,以增加传输到质谱仪和其他分析仪中的离子浓度,无论是溶液中挥发性还是不挥发物质,从而提高其分析灵敏度。 它还可以改善气相中存在的中性挥发物质的充电效率。