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    • 41. 发明授权
    • Apparatus and method for optimized facsimile transmission
    • 用于优化传真传输的设备和方法
    • US07733522B2
    • 2010-06-08
    • US11243632
    • 2005-10-04
    • Steve IronsMark F. WrightDavid GuilbaultEric Lynn
    • Steve IronsMark F. WrightDavid GuilbaultEric Lynn
    • G06K15/00G06F3/12
    • H04N1/00005H04N1/00002H04N1/0001H04N1/00013H04N1/00015H04N1/00047H04N1/0005H04N1/00061H04N1/00074H04N1/00087H04N1/00092
    • The present invention is configured to provide optimization of printed output transmitted by a facsimile machine. By generating and comparing a baseline quality score with a companion quality score, optimization decisions can enhance the quality of facsimile transmissions. Optimization is also enhanced by recognizing the type of facsimile machine used and the optimal configuration settings for the facsimile. The settings for multiple facsimile machines are stored in a database, along with optimal settings for each facsimile machine. To further enhance the results of a facsimile transmission, a database of printers may also be consulted. By utilizing the best possible output from a printer, combined with the optimal settings for a fax machine, the optimal results for can be obtained. Additionally, the use of bar-coded identification for facsimile transmission provides a method of automating the optimization, thereby increasing efficiency by reporting the results of the optimization.
    • 本发明被配置为提供由传真机发送的打印输出的优化。 通过生成和比较基准质量得分和伴随质量得分,优化决策可以提高传真传输的质量。 通过识别所使用的传真机的类型和传真机的最佳配置设置,也可以提高优化。 多台传真机的设置存储在数据库中,以及每台传真机的最佳设置。 为了进一步增强传真传输的结果,还可以查询打印机的数据库。 通过利用打印机的最佳输出,结合传真机的最佳设置,可以获得最佳的结果。 另外,使用条形码识别传真传输提供了一种使优化自动化的方法,从而通过报告优化结果来提高效率。
    • 42. 发明授权
    • Apparatus and method for operability and live-dead-live testing
    • 用于可操作性和死活活动测试的装置和方法
    • US07385519B2
    • 2008-06-10
    • US11165702
    • 2005-06-23
    • Warren Alfred Weems, II
    • Warren Alfred Weems, II
    • G08B21/00H01H31/02
    • G01R35/00G01R19/155
    • An operability testing apparatus used in conjunction with an electrical testing apparatus to perform live-dead-live tests consists of: a power source; a voltage source coupled to the power source with the voltage source being configured to provide an AC voltage output and/or a DC voltage output; and one or more visual indicators. The visual indicator(s) are configured to indicate operability for electrical testing equipment such as voltmeters and the like. The probes or leads of electrical testing equipment are inserted into apertures in the apparatus. The apparatus provides an output, allowing a determination to be made as to the operability of the electrical testing equipment. Then, the test leads or probes are applied to the subject electrical circuit or equipment to ensure that the subject electrical circuit or equipment is de-energized. Then, the probes or leads are inserted into the apparatus once again as a final test to ensure that the electrical testing equipment has remained operable and is functioning correctly.
    • 与电气测试装置结合使用以进行活死区测试的可操作性测试装置包括:电源; 耦合到所述电源的电压源,所述电压源被配置为提供AC电压输出和/或DC电压输出; 和一个或多个视觉指示器。 视觉指示器被配置为指示诸如电压表等的电气测试设备的可操作性。 电气测试设备的探针或引线插入设备的孔中。 该设备提供输出,允许确定电气测试设备的可操作性。 然后,将测试导线或探针施加到主体电路或设备,以确保主体电路或设备断电。 然后,将探头或引线再次插入设备中作为最终测试,以确保电气测试设备保持可操作并且正常工作。
    • 49. 发明授权
    • System and method for improved data accessibility
    • 改进数据可访问性的系统和方法
    • US09292538B2
    • 2016-03-22
    • US13842089
    • 2013-03-15
    • Stephane G. LegayScott L. Mitchell
    • Stephane G. LegayScott L. Mitchell
    • G06F17/30H04N21/231
    • G06F17/30194G11B27/309H04N21/231H04N21/2743H04N21/8456
    • A system is configured to allow for near simultaneous data capture, encoding, and uploading of the resultant data file containing the captured data. By operating in a substantially parallel fashion, the separate processes of capturing, encoding, and uploading one or more data files created from a data source can be completed much more quickly and efficiently, thereby making the resultant data file available to the content consumer in an overall shorter period of time than presently possible using conventional sequential data file creation techniques. The method also includes the reorganization of standard data files as part of the process to more quickly and efficiently create the data file for distribution and ultimate consumption by the content consumer user.
    • 系统被配置为允许对包含捕获数据的结果数据文件进行近似同时的数据捕获,编码和上传。 通过以基本平行的方式操作,捕获,编码和上载从数据源创建的一个或多个数据文件的单独处理可以更快速和有效地完成,从而使得结果数据文件可在内容消费者中使用 使用传统的顺序数据文件创建技术,总体上比目前可能的更短的时间段。 该方法还包括作为过程的一部分的标准数据文件的重组,以更快速和有效地创建数据文件以供内容消费者用户分发和最终消费。
    • 50. 发明授权
    • System and method for sound augmentation of acoustic musical instruments
    • 声乐器扩声系统及方法
    • US09111517B2
    • 2015-08-18
    • US14178148
    • 2014-02-11
    • Ofer Webman
    • Ofer Webman
    • G10H1/02G10H3/22G10H3/18
    • G10H3/22G10H3/18G10H2220/311
    • A sound capture device is affixed to an acoustic instrument to capture the natural sound output of the instrument. The captured sound signal is routed to an electronic sound augmentation system that is configured to augment the captured sound with spatial sound effects such as reverb, echo, delay, etc. The processed and augmented sound is then reproduced via a vibrating driver that has been affixed to the body of the acoustic instrument. This creates a situation where the body of the musical instrument, responding to a series of vibrations produced by the vibrating driver, acts as a speaker component, reproducing a rich augmented sound output that comprises the sum of the sound produced by the original sound production capabilities of the acoustical instrument plus the added augmented or enhanced sound effects.
    • 声学捕获装置固定在声学仪器上以捕获仪器的自然声音输出。 捕获的声音信号被路由到电子声音增强系统,其被配置为利用诸如混响,回声,延迟等的空间声音效果来增加所捕获的声音。然后经过已经固定的振动驱动器再现经处理和增强的声音 到声学仪器的身体。 这产生了一种情况,其中乐器的主体响应于由振动驱动器产生的一系列振动,用作扬声器部件,再现丰富的增强声音输出,其包括由原始声音产生能力产生的声音的总和 的声学仪器加上增加或增强的声音效果。