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    • 1. 发明申请
    • Mobile Application for Defining, Sharing and Rewarding Compliance with a Blood Glucose Level Monitoring Regimen
    • 定义,分享和奖励符合血糖水平监测方案的移动应用程序
    • US20140337041A1
    • 2014-11-13
    • US13853882
    • 2013-03-29
    • Joseph MaddenJames Garcia
    • Joseph MaddenJames Garcia
    • G06F19/00
    • G16H10/60G06F19/3456
    • The invention provides a mobile application, system, interface and method for monitoring, encouraging and rewarding user compliance with a blood glucose level monitoring regimen. It combines a server-client based application enabling scheduling of tasks, input of data, reminders, notifications, permission based sharing of data, synchronous messaging, rewards based on compliance, and community support cross-language and cross-platform. The client application is a mobile web application (such as an iphone application) installed on a network connected mobile or desktop device. The client application may also be a web site that is stored on a server and accessed through a network such as the internet. The server and mobile applications exchange data with one another through the network using standard networking and wireless protocols. The application defines and exchanges information according to permission based rules which can be monitored and modified remotely by a parent or guardian.
    • 本发明提供了用于监测,鼓励和奖励用户符合血糖水平监测方案的移动应用,系统,界面和方法。 它结合了基于服务器客户端的应用程序,支持任务调度,数据输入,提醒,通知,基于权限的数据共享,同步消息传递,基于合规性的奖励以及社区支持跨语言和跨平台。 客户端应用程序是安装在连接移动或桌面设备的网络上的移动Web应用程序(如iphone应用程序)。 客户端应用程序也可以是存储在服务器上并通过诸如因特网的网络访问的网站。 服务器和移动应用程序通过使用标准网络和无线协议的网络互相交换数据。 应用程序根据基于权限的规则定义和交换信息,这些规则可以由父母或监护人远程监控和修改。
    • 2. 发明申请
    • Apparatus for dispensing precise volumes of fluid
    • 用于分配精确体积的流体的装置
    • US20070032910A1
    • 2007-02-08
    • US11580326
    • 2006-10-13
    • James Garcia
    • James Garcia
    • G05D11/00
    • B24B57/02B01F3/0803B01F15/00253B01F15/0441G05D11/132
    • A dispensing measuring system for dispensing a measure of fluid for use with a system to treat semiconductor workpieces is disclosed. The dispensing measuring system includes at least one feedline having a receiving tank having a volumetric capacity for receiving a measure of fluid. A sensor senses when the receiving tank has received the measure of fluid. A mix tank is attached to the at least one feedline for receiving the measure of fluid from the receiving tank to create a batch of fluid. A controller is electrically connected to the at least one feedline to control the flow of fluid through the at least one feedline. The controller is electrically connected to the mix tank. A connecting line is attached to the mix tank.
    • 公开了一种用于分配与用于处理半导体工件的系统一起使用的流体测量的分配测量系统。 所述分配测量系统包括至少一个馈线,所述馈线具有接收罐,所述接收罐具有用于接收流体测量的容积。 传感器感测接收罐何时已经接收到流体的测量。 混合罐附接到至少一个进料管线,用于接收来自接收罐的流体测量以产生一批流体。 控制器电连接到至少一个馈线以控制通过至少一个馈线的流体流。 控制器电连接到混合罐。 连接线连接到混合罐。
    • 4. 发明申请
    • Systems, device, and methods for efficient vegetation maintenance at multiple infrastructure sites
    • 在多个基础设施站点进行有效植被维护的系统,设备和方法
    • US20050279069A1
    • 2005-12-22
    • US11154299
    • 2005-06-16
    • Robert NovembriJames GarciaEdward Krufka
    • Robert NovembriJames GarciaEdward Krufka
    • A01B79/00A01D46/00
    • A01B79/005
    • A network-based system for coordinating over a data communications network a plurality of vegetation maintenance events at a plurality of sites is provided. The network-based system includes a computing system in communication with the data communications network for receiving site-specific vegetation indicators for different sites, generating a forecast of vegetation conditions for at least one of the sites based upon the site-specific vegetation indicators, and generating a schedule for performing future vegetation maintenance events within a predefined time period based on the forecast of needed vegetation maintenance. The network-based system further includes one or more data communications devices in communication with the data communications network. A communications device in communication with the data communications network provides site-specific vegetation indicators to the computing system, and/or receives a post-event vegetation maintenance report from the computing system.
    • 提供了一种用于在数据通信网络上协调多个位置处的多个植被维护事件的基于网络的系统。 基于网络的系统包括与数据通信网络通信的计算系统,用于接收针对不同站点的站点特定植被指示符,基于特定场地植被指示符,生成至少一个站点的植被条件的预测,以及 根据所需的植被维护的预测,在预定义的时间段内产生进行未来植被维持事件的时间表。 基于网络的系统还包括与数据通信网络通信的一个或多个数据通信设备。 与数据通信网络通信的通信设备向计算系统提供站点特定植被指示器,和/或从计算系统接收事件后植被维护报告。
    • 5. 发明授权
    • Methods for measuring contaminant mobile ions in dielectric materials
    • 介电材料中杂质移动离子的测量方法
    • US06420893B1
    • 2002-07-16
    • US09904004
    • 2001-07-12
    • James GarciaMichael McBride
    • James GarciaMichael McBride
    • G01R3126
    • H01L22/14
    • In accordance with the present invention, a method is provided for measuring contaminant mobile ions in a dielectric portion of a semiconductor. The method is comprised of elevating a temperature of the dielectric portion of the semiconductor and exposing the dielectric portion of the semiconductor to a mobilizing fluid having contaminant releasing atoms that assist in mobilizing the contaminant mobile ions within the dielectric portion of the semiconductor. After elevating the temperature of the dielectric portion and exposing the dielectric portion to mobilizing fluid, the contaminant mobile ions within the dielectric portion of the semiconductor are measured according to the present invention.
    • 根据本发明,提供了一种用于测量半导体介质部分中的污染物移动离子的方法。 该方法包括提高半导体的电介质部分的温度并将半导体的电介质部分暴露于具有污染物释放原子的移动流体,该原子有助于在半导体的电介质部分内移动污染物移动离子。 在升高电介质部分的温度并使电介质部分暴露于移动流体之后,根据本发明测量半导体电介质部分内的污染物移动离子。
    • 7. 发明申请
    • MENISCUS PROXIMITY SYSTEM FOR CLEANING SEMICONDUCTOR SUBSTRATE SURFACES
    • 用于清洁半导体基板表面的MENISCUS接近系统
    • US20070107756A1
    • 2007-05-17
    • US11619599
    • 2007-01-03
    • Carl WoodsJames GarciaJohn de Larios
    • Carl WoodsJames GarciaJohn de Larios
    • B08B3/00B08B3/12
    • H01L21/67051C25D5/22C25D17/001H01L21/02041H01L21/02052H01L21/67028H01L21/67034H01L21/67046Y10S134/902
    • A system and apparatus for cleaning a substrate is provided. The system includes a first head configured as a bar shape that extends approximately a diameter of the substrate. The first head is configured for placement on a first side of the substrate. A second head is also provided, and is configured as a bar shape that extends approximately the diameter of the wafer, and the second head is configured for placement on a second side of the substrate, such that the second side is opposite the first side. In this example, each of the first head and the second head have conduits formed therein along the diameter of the substrate for delivering and removing fluids so that a meniscus is capable of being contained between each of the first head and a substrate surface of the first side of the substrate and the second head and a substrate surface of the second side of the substrate.
    • 提供了一种清洁基板的系统和装置。 该系统包括构造为棒状的第一头部,其大致延伸到基底的直径。 第一头被配置为放置在基底的第一侧上。 还提供了第二头,并且被配置为大致延伸晶片的直径的棒状,并且第二头构造成用于放置在衬底的第二侧上,使得第二侧与第一侧相对。 在该示例中,第一头部和第二头部中的每一个具有沿着基底的直径形成在其中的导管,用于输送和移除流体,使得弯液面能够容纳在第一头部和第一头部的基底表面之间 基板和第二头部的一侧以及基板的第二侧的基板表面。
    • 9. 发明申请
    • Meniscus, vacuum, IPA vapor, drying manifold
    • 半月板,真空,IPA蒸气,干燥歧管
    • US20070023070A1
    • 2007-02-01
    • US11542700
    • 2006-10-03
    • Carl WoodsJames GarciaJohn de Larios
    • Carl WoodsJames GarciaJohn de Larios
    • B08B5/04B08B3/00
    • H01L21/67051C25D5/22C25D17/001H01L21/02041H01L21/02052H01L21/67028H01L21/67034H01L21/67046Y10S134/902
    • A head is provided which includes a first surface of the head capable of being in close proximity to the wafer surface, and includes a first conduit region on the head where the first conduit region is defined for delivery of a first fluid to wafer of the surface and the first conduit region is defined in a center portion of the head. The head further includes a second conduit region on the head which surrounds the first conduit region, and includes a third conduit region on the head which is defined for delivery of a second fluid to the wafer surface. The third conduit region semi-encloses the first conduit region and the second conduit region. The second conduit region enables a removal of the first fluid and the second fluid. The delivery of the first fluid and the second fluid combined with the removal by the third conduit region of the head defines a controllable meniscus.
    • 提供了一种头部,其包括能够靠近晶片表面的头部的第一表面,并且包括头部上的第一导管区域,其中限定第一导管区域以将第一流体输送到表面的晶片 并且第一管道区域被限定在头部的中心部分中。 头部还包括在头部上的围绕第一管道区域的第二管道区域,并且包括头部上的第三管道区域,其被限定用于将第二流体输送到晶片表面。 第三管道区域半封闭第一管道区域和第二管道区域。 第二管道区域能够移除第一流体和第二流体。 第一流体和第二流体的输送与头部的第三导管区域的移除相结合,限定了可控弯液面。
    • 10. 发明申请
    • Self-draining edge wheel system and method
    • 自排水轮系统及方法
    • US20060000494A1
    • 2006-01-05
    • US10882934
    • 2004-06-30
    • James GarciaFritz Redeker
    • James GarciaFritz Redeker
    • B08B3/02
    • H01L21/67051B08B3/02B08B11/02B08B2203/0229H01L21/67023H01L21/67028H01L21/67034H01L21/6704H01L21/68707
    • Provided is a system and method to prevent the transfer of accumulated fluid to wafers during cleaning operations. Specifically, when a wafer is secured by a plurality of self-draining edge wheels, any fluid contacting the self-draining edge wheels is channeled away from the wafer towards a bottom surface of each of the self-draining edge wheels. The channeling occurs by manufacturing the bottom portions of the self-draining edge wheels to have different configurations. The different configurations enhance fluid channeling away from the wafer. To further prevent fluid from wetting a bottom surface of the self-draining edge wheels, an edge wheel dryer can be positioned proximately adjacent to at least one self-draining edge wheel to suction fluid away from the bottom surface by using a vacuum channel of the edge wheel dryer.
    • 提供了一种在清洁操作期间防止积聚的流体转移到晶片的系统和方法。 具体地说,当晶片被多个自排水边缘轮固定时,接触自排水边缘轮的任何流体被引导离开晶片朝向每个自排水边缘轮的底表面。 通过制造自排水边缘轮的底部以具有不同的构造而发生沟槽。 不同的配置增强了远离晶片的流体通道。 为了进一步防止流体润湿自排水边缘轮的底部表面,边缘轮干燥器可以被定位成邻近至少一个自排水边缘轮,以通过使用真空通道从底部表面抽吸流体 边缘烘干机。