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    • 1. 发明授权
    • Data-processing system for measurement devices
    • 数据处理系统用于测量设备
    • US08001442B2
    • 2011-08-16
    • US11635048
    • 2006-12-07
    • Keisuke Munetaka
    • Keisuke Munetaka
    • G11C29/00
    • G06F11/28G01N2030/8804
    • The present invention provides a data-processing system for measurement devices, which performs a step-by-step sequence of data-processing tasks. In a conventional data-processing system, a failure in one data-processing task also causes the subsequent tasks to be unsuccessful. In such a case, the conventional data-processing system indicates the result of each unsuccessful task or the final result of the analysis by displaying only a blank or a specific character (e.g. the digit “0”). From such simple information, users cannot immediately identify the cause of the error. In contrast, in the data-processing system according to the present invention, if a data-processing task has been incorrectly performed for some reason, an error detector detects the error, and an error investigator identifies the cause of the error. Then, an error message displayer prepares an error message indicating the reason why the data-processing task concerned was unsuccessful and then displays the error message as the result of each of the aforementioned task and the subsequent tasks. The user can immediately learn the cause of the error by checking the error message of any of the unsuccessful tasks. Thus, the problem can be identified and solved in a shorter period of time.
    • 本发明提供一种用于测量设备的数据处理系统,其执行数据处理任务的逐步序列。 在传统的数据处理系统中,一个数据处理任务中的故障也导致后续任务不成功。 在这种情况下,常规的数据处理系统通过仅显示空白或特定字符(例如数字“0”)来指示每个不成功的任务的结果或分析的最终结果。 从这样简单的信息,用户不能立即识别错误的原因。 相反,在根据本发明的数据处理系统中,如果由于某种原因数据处理任务被错误地执行,则错误检测器检测到错误,并且错误调查器识别错误的原因。 然后,错误消息显示器准备指示关于所涉及的数据处理任务不成功的原因的错误消息,然后作为上述任务和后续任务的结果显示错误消息。 用户可以通过检查任何不成功的任务的错误消息立即了解错误的原因。 因此,可以在更短的时间内识别和解决问题。
    • 3. 发明授权
    • Analyzing system
    • 分析系统
    • US6029495A
    • 2000-02-29
    • US80930
    • 1998-05-19
    • Keisuke Munetaka
    • Keisuke Munetaka
    • G01D18/00G01N30/02G01N30/88G01N35/00G01N15/06
    • G01N30/88G01N35/00712G01N2030/8804G01N2030/8881
    • In an inventive analyzing system (e.g. liquid chromatograph), an analyzing schedule includes data on whether or not to carry out a self-check for each sample, and data on what process to follow the self-check according to the check result, in addition to data on the analyzing order and analyzing condition of a series of analyses on a plurality of samples. In carrying out the analysis according to the schedule, a self-check is carried out after an analysis of a sample for which the self-check is scheduled. In the self-check, a data collecting unit 17 collects data on the degree of degradation of expendable parts and on the wavelength error of a spectrophotometric detector 14, etc., and a checking unit 18 detects abnormality by comparing the data to preset tolerable values. For example, in the case where the process specified to follow the detection of abnormality is "stop analysis on detecting abnormality", a control unit 15 stops each part of the system so that the rest of the analyses are deferred.
    • 在本发明的分析系统(例如液相色谱仪)中,分析计划包括关于是否对每个样品进行自我检查的数据,以及根据检查结果的关于进行自检的过程的数据,另外 关于多个样本的一系列分析的分析顺序和分析条件的数据。 在按照进度进行分析的情况下,在进行自检的样本的分析后进行自我检查。 在自检中,数据收集单元17收集关于消耗部分的劣化程度和分光光度检测器14的波长误差等的数据,并且检查单元18通过将数据与预设的可容许值进行比较来检测异常 。 例如,在指定为跟踪异常检测的处理为“检测异常的停止分析”的情况下,控制部15停止系统的各部分,使得其余的分析被推迟。
    • 4. 发明申请
    • ANALYZING SYSTEM
    • 分析系统
    • US20150073725A1
    • 2015-03-12
    • US14020039
    • 2013-09-06
    • Keisuke MunetakaToshinobu Yanagisawa
    • Keisuke MunetakaToshinobu Yanagisawa
    • G01N35/00G01N30/00
    • G01N35/0092B01D15/08G01N30/00G01N30/24G01N30/84G01N30/8658G01N35/00871G01N2035/0094
    • In an analyzing system including a commanding unit for sending a command and an executing unit for executing a processing upon receiving the command, a processing instruction may not be executed at the right time due to a heavy traffic of information and other factors. In order to solve this problem, in a preparative separation system 1 according to the present invention, a PC 20 provides the execution time for starting/finishing the fractionation processing to a controller 18. Therefore, even in the case where the time of the PC 20 and that of the controller 18 are not synchronized, the controller 18 can accurately set the execution time for starting/finishing the fractionation in a preparative separation unit 16. A piping 17 may be placed so that the traveling time of sample components is sufficiently larger than the delay time of signals due to the signal transfer lag and other reasons. This can absorb the delay time, allowing the units to cooperate with each other at a correct timing.
    • 在包括用于发送命令的命令单元和用于在接收到命令时执行处理的执行单元的分析系统中,由于信息的繁忙和其他因素,处理指令可能不会在适当的时间执行。 为了解决这个问题,在根据本发明的制备分离系统1中,PC20向控制器18提供开始/完成分馏处理的执行时间。因此,即使在PC的时间 20和控制器18的控制器18不同步,控制器18可以准确地设定制备分离单元16中的分馏的开始/结束的执行时间。管道17可以被放置成使得样品组分的行进时间足够大 比信号的延迟时间由于信号传递滞后等原因。 这可以吸收延迟时间,允许单位在正确的时机相互配合。
    • 5. 发明申请
    • Data-processing system for measurement devices
    • 数据处理系统用于测量设备
    • US20070150785A1
    • 2007-06-28
    • US11635048
    • 2006-12-07
    • Keisuke Munetaka
    • Keisuke Munetaka
    • H04L1/00H03M13/00G08C25/00G06F11/00G06F11/30
    • G06F11/28G01N2030/8804
    • The present invention provides a data-processing system for measurement devices, which performs a step-by-step sequence of data-processing tasks. In a conventional data-processing system, a failure in one data-processing task also causes the subsequent tasks to be unsuccessful. In such a case, the conventional data-processing system indicates the result of each unsuccessful task or the final result of the analysis by displaying only a blank or a specific character (e.g. the digit “0”). From such simple information, users cannot immediately identify the cause of the error. In contrast, in the data-processing system according to the present invention, if a data-processing task has been incorrectly performed for some reason, an error detector detects the error, and an error investigator identifies the cause of the error. Then, an error message displayer prepares an error message indicating the reason why the data-processing task concerned was unsuccessful and then displays the error message as the result of each of the aforementioned task and the subsequent tasks. The user can immediately learn the cause of the error by checking the error message of any of the unsuccessful tasks. Thus, the problem can be identified and solved in a shorter period of time.
    • 本发明提供一种用于测量设备的数据处理系统,其执行数据处理任务的逐步序列。 在传统的数据处理系统中,一个数据处理任务中的故障也导致后续任务不成功。 在这种情况下,常规的数据处理系统通过仅显示空白或特定字符(例如数字“0”)来指示每个不成功的任务的结果或分析的最终结果。 从这样简单的信息,用户不能立即识别错误的原因。 相反,在根据本发明的数据处理系统中,如果由于某种原因数据处理任务被错误地执行,则错误检测器检测到错误,并且错误调查器识别错误的原因。 然后,错误消息显示器准备指示关于所涉及的数据处理任务不成功的原因的错误消息,然后作为上述任务和后续任务的结果显示错误消息。 用户可以通过检查任何不成功的任务的错误消息立即了解错误的原因。 因此,可以在更短的时间内识别和解决问题。