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    • 11. 发明申请
    • Embedded Digitization System
    • 嵌入式数字化系统
    • US20070136425A1
    • 2007-06-14
    • US11675295
    • 2007-02-15
    • Anthony Sabatino
    • Anthony Sabatino
    • G06F15/16
    • G08G1/20F41G3/04G01C21/16G01C23/00G06F8/20G08G5/00
    • An embedded digitization system enables a military platform to receive, transmit, and process a variety of types of information for a variety of purposes. An apparatus and method provides a means to ensure information interoperability between the invention and external sources. The invention provides a development environment that enables a developer to automatically and interactively develop the middleware services and functions that contain the aspects for interoperability with external sources. The invention ensures interoperability through reuse of functions and services known to satisfy requirements for interoperability. When functions and services that satisfy requirements for interoperability are not available, the invention provides a means to develop new functions and services that satisfy requirements for interoperability. The new functions and services are then added to those functions and services known to satisfy requirements for interoperability, and are also made available for use in future applications.
    • 嵌入式数字化系统使得军事平台能够为各种目的接收,传输和处理各种类型的信息。 一种装置和方法提供了确保本发明与外部源之间的信息互操作性的手段。 本发明提供了一种开发环境,使开发者能够自动和交互地开发中间件服务和功能,其中包含与外部来源的互操作性的方面。 本发明通过重用已知满足互操作性要求的功能和服务来确保互操作性。 当满足互操作性要求的功能和服务不可用时,本发明提供了开发满足互操作性要求的新功能和服务的手段。 然后将新的功能和服务添加到已知满足互操作性要求的功能和服务中,并且还可用于将来的应用程序。
    • 12. 发明申请
    • Embedded digitization system
    • 嵌入式数字化系统
    • US20050017877A1
    • 2005-01-27
    • US10892835
    • 2004-07-15
    • Anthony Sabatino
    • Anthony Sabatino
    • G01C23/00F41G3/04H04L12/56H04L12/28
    • G08G1/20F41G3/04G01C21/16G01C23/00G06F8/20G08G5/00
    • An embedded digitization system enables a military platform to receive, transmit and process a variety of types of information for a variety of purposes. An apparatus and method provides a means to ensure information interoperability between the invention and external sources. The invention provides a development environment that enables a developer to automatically and interactively develop the middleware services and functions that contain the aspects for interoperability with external sources. The invention ensures interoperability through reuse of functions and services known to satisfy requirements for interoperability. When functions and services that satisfy requirements for interoperability are not available, the invention provides a means to develop new functions and services that satisfy requirements for interoperability. The new functions and services are then added to those functions and services known to satisfy requirements for interoperability, and are also made available for use in future applications.
    • 嵌入式数字化系统使军事平台能够为各种目的接收,传输和处理各种类型的信息。 一种装置和方法提供了确保本发明与外部源之间的信息互操作性的手段。 本发明提供了一种开发环境,使开发者能够自动和交互地开发中间件服务和功能,其中包含与外部来源的互操作性的方面。 本发明通过重用已知满足互操作性要求的功能和服务来确保互操作性。 当满足互操作性要求的功能和服务不可用时,本发明提供了开发满足互操作性要求的新功能和服务的手段。 然后将新的功能和服务添加到已知满足互操作性要求的功能和服务中,并且还可用于将来的应用程序。
    • 13. 发明授权
    • Water activatable, lead-acid storage battery and method for
manufacturing same
    • 水活化铅酸蓄电池及其制造方法
    • US4098961A
    • 1978-07-04
    • US767771
    • 1977-02-11
    • Anthony Sabatino
    • Anthony Sabatino
    • H01M4/22H01M10/06H01M10/08
    • H01M10/06H01M4/22Y02E60/126Y10T29/49108
    • A method of manufacturing a lead-acid storage battery capable of being stored after completing the battery processing and thereafter activated by the addition of water including coordinating the formation and processing of the battery elements with a deep discharge to provide residual sulfuric acid electrolyte within the battery elements with a desired specific gravity level and thereafter reducing the amount of the electrolyte in the battery to thereby retain a specified level of residual sulfuric acid electrolyte within the elements of the thus-processed battery. The battery is suitably sealed and may thereafter be stored; and, when desired for service, activation is accomplished by addition of water and suitably charging. The sulfate in the battery elements resulting from the deep discharge and the residual sulfuric acid electrolyte retained within the elements combine, upon the addition of water and recharge, to yield the required specific gravity of the electrolyte. In a preferred embodiment, the battery is conditioned with a treating agent affording certain metallic sulfates to enhance the useful battery storage life and the ability of the battery to accept the required charge after water addition.
    • 14. 发明授权
    • Method for forming a dry charge-type battery itself
    • 用于形成干电荷型电池本身的方法
    • US3967980A
    • 1976-07-06
    • US486659
    • 1974-07-08
    • Anthony Sabatino
    • Anthony Sabatino
    • H01M4/23H01M4/22H01M10/12H01M10/04
    • H01M10/128H01M4/22Y02P70/54Y10T29/4911
    • A method of manufacturing a lead-acid storage battery, capable of being stored after completing the battery processing and thereafter activated by the addition of electrolyte, includes forming the battery elements and treating the battery elements such that sufficient acid, in one form or another, will be retained in the elements to provide a battery operating electrolyte with a specific gravity in the range of from about 1.260 to 1.290, preferably about 1.265, upon activation with standard activation electrolyte, and charging if necessary. Completion of the processing involves draining the battery, reducing the amount of retained acid to a specified amount below the amount the battery elements are capable of retaining when saturated and suitably sealing.
    • 一种制造铅酸蓄电池的方法,其能够在完成电池处理之后被存储,然后通过添加电解质而被激活,包括形成电池元件并处理电池元件,使得以一种形式或其它形式的足够的酸, 将被保留在元件中,以在用标准活化电解质活化时提供比重在约1.260至1.290,优选约1.265的范围内的电池操作电解质,并且如果需要进行充电。 处理的完成包括排出电池,将保留的酸的量减少到低于在饱和和适当密封时电池元件能够保持的量的指定量。