会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Checking Of Repairs For Electronic Vehicle Systems
    • 电子车辆系统维修检查
    • US20090132110A1
    • 2009-05-21
    • US11791941
    • 2005-08-23
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • G01M17/00
    • G01R31/007
    • The solution is arrived at with a computer-based diagnostic tester which can exchange information with the control devices installed in the motor vehicle using a diagnostic program via a diagnostic interface and via data lines. The motor vehicle-mounted control devices have program routines for self-diagnostics of the control devices and are capable of storing identified faults in the form of fault codes in reserved memory areas. The diagnostic program which is implemented in the diagnostic tester reads the fault codes out from the reserved memory areas, interprets the fault codes and displays them on a display together with the interpretations. In order to check to what extent repairs which have been performed have been successfully concluded, status polling is carried out using the diagnostic program implemented in the diagnostic tester. During this status polling, the status information of all the fault codes known in the system is interrogated and evaluated. In the process, all the fault codes whose fault setting conditions have either been tested positively or whose test requirements were not present in order to be able to carry out a test are displayed. A method for improved checking of repairs is also presented with the diagnostic tester.
    • 该解决方案通过基于计算机的诊断测试仪得到,其可以通过诊断接口和数据线使用诊断程序与安装在机动车辆中的控制装置交换信息。 机动车载控制装置具有用于控制装置的自诊断的程序例程,并且能够以预定存储区域中的故障代码的形式存储所识别的故障。 在诊断测试仪中实现的诊断程序从保留的存储区读取故障代码,解释故障代码,并将其显示在显示屏上与解释一起显示。 为了检查哪些已经执行的维修已经成功完成,使用在诊断测试器中实现的诊断程序进行状态轮询。 在此状态轮询期间,对系统中已知的所有故障代码的状态信息进行询问和评估。 在此过程中,显示​​故障设置条件已被正确测试的所有故障代码或其测试要求不存在以便能够执行测试。 诊断测试仪还提供了一种改进维修检查的方法。
    • 2. 发明申请
    • Checking of Repairs for Electronic Vehicle Systems
    • 电子车辆系统维修检查
    • US20080221751A1
    • 2008-09-11
    • US11792002
    • 2005-08-23
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • G01M17/007
    • G01R31/007G07C5/008G07C5/085
    • The invention relates to a computer-based diagnostic tester which can exchange information with the control devices installed in the motor vehicle using a diagnostic program via a diagnostic interface and via data lines. A method for improved checking of repairs is also presented with the diagnostic tester. The motor vehicle-mounted control devices have program routines for self-diagnostics of the control devices and are capable of storing identified faults in the form of fault codes in reserved memory areas. The diagnostic program which is implemented in the diagnostic tester reads the fault codes out from the reserved memory areas, interprets the fault codes and displays them on a display together with the interpretations. In order to check to what extent repairs which have been performed have been successfully concluded, status polling is carried out using the diagnostic program implemented in the diagnostic tester. During this status polling, the status information of all the fault codes known in the system is interrogated and evaluated. In the process, all the fault codes whose fault setting conditions have either been tested positively or whose test requirements were not present in order to be able to carry out a test are displayed. The fault codes which are to be displayed are firstly stored here in one or more primary first fault memories, read out and then copied into a secondary, second fault memory. This permits the use of the total reset of the primary fault memories which is prescribed in the USA for diagnostic systems without information which is relevant to the checking of repairs in the second fault memory being lost.
    • 本发明涉及一种基于计算机的诊断测试器,其可以通过诊断接口和数据线使用诊断程序与安装在机动车辆中的控制装置交换信息。 诊断测试仪还提供了一种改进维修检查的方法。 机动车载控制装置具有用于控制装置的自诊断的程序例程,并且能够以预定存储区域中的故障代码的形式存储所识别的故障。 在诊断测试仪中实现的诊断程序从保留的存储区读取故障代码,解释故障代码,并将其显示在显示屏上与解释一起显示。 为了检查哪些已经执行的维修已经成功完成,使用在诊断测试器中实现的诊断程序进行状态轮询。 在此状态轮询期间,对系统中已知的所有故障代码的状态信息进行询问和评估。 在此过程中,显示​​故障设置条件已被正确测试的所有故障代码或其测试要求不存在以便能够执行测试。 要显示的故障代码首先存储在一个或多个主要第一故障存储器中,读出,然后复制到次要的第二故障存储器中。 这允许使用在美国规定的用于诊断系统的主要故障存储器的总复位,而没有与在第二故障存储器中的维修的检查相关的信息丢失。
    • 3. 发明授权
    • Checking of repairs for electronic vehicle systems
    • 检查电子车辆系统的维修
    • US08090495B2
    • 2012-01-03
    • US11792002
    • 2005-08-23
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • G01M17/007
    • G01R31/007G07C5/008G07C5/085
    • The invention relates to a computer-based diagnostic tester which can exchange information with the control devices installed in the motor vehicle using a diagnostic program via a diagnostic interface and via data lines. A method for improved checking of repairs is also presented with the diagnostic tester. The motor vehicle-mounted control devices have program routines for self-diagnostics of the control devices and are capable of storing identified faults in the form of fault codes in reserved memory areas. The diagnostic program which is implemented in the diagnostic tester reads the fault codes out from the reserved memory areas, interprets the fault codes and displays them on a display together with the interpretations. In order to check to what extent repairs which have been performed have been successfully concluded, status polling is carried out using the diagnostic program implemented in the diagnostic tester. During this status polling, the status information of all the fault codes known in the system is interrogated and evaluated. In the process, all the fault codes whose fault setting conditions have either been tested positively or whose test requirements were not present in order to be able to carry out a test are displayed. The fault codes which are to be displayed are firstly stored here in one or more primary first fault memories, read out and then copied into a secondary, second fault memory. This permits the use of the total reset of the primary fault memories which is prescribed in the USA for diagnostic systems without information which is relevant to the checking of repairs in the second fault memory being lost.
    • 本发明涉及一种基于计算机的诊断测试器,其可以通过诊断接口和数据线使用诊断程序与安装在机动车辆中的控制装置交换信息。 诊断测试仪还提供了一种改进维修检查的方法。 机动车载控制装置具有用于控制装置的自诊断的程序例程,并且能够以预定存储区域中的故障代码的形式存储所识别的故障。 在诊断测试仪中实现的诊断程序从保留的存储区读取故障代码,解释故障代码,并将其显示在显示屏上与解释一起显示。 为了检查哪些已经执行的维修已经成功完成,使用在诊断测试器中实现的诊断程序进行状态轮询。 在此状态轮询期间,对系统中已知的所有故障代码的状态信息进行询问和评估。 在此过程中,显示​​故障设置条件已被正确测试的所有故障代码或其测试要求不存在以便能够执行测试。 要显示的故障代码首先存储在一个或多个主要第一故障存储器中,读出,然后复制到次要的第二故障存储器中。 这允许使用在美国规定的用于诊断系统的主要故障存储器的总复位,而没有与在第二故障存储器中的维修的检查相关的信息丢失。
    • 4. 发明授权
    • Checking of repairs for electronic vehicle systems
    • 检查电子车辆系统的维修
    • US07856299B2
    • 2010-12-21
    • US11791941
    • 2005-08-23
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • Bernhard FinkPeter IrkesMarkus ScholzKlaus Weiss
    • G01M17/00
    • G01R31/007
    • The solution is arrived at with a computer-based diagnostic tester which can exchange information with the control devices installed in the motor vehicle using a diagnostic program via a diagnostic interface and via data lines. The motor vehicle-mounted control devices have program routines for self-diagnostics of the control devices and are capable of storing identified faults in the form of fault codes in reserved memory areas. The diagnostic program which is implemented in the diagnostic tester reads the fault codes out from the reserved memory areas, interprets the fault codes and displays them on a display together with the interpretations. In order to check to what extent repairs which have been performed have been successfully concluded, status polling is carried out using the diagnostic program implemented in the diagnostic tester. During this status polling, the status information of all the fault codes known in the system is interrogated and evaluated. In the process, all the fault codes whose fault setting conditions have either been tested positively or whose test requirements were not present in order to be able to carry out a test are displayed. A method for improved checking of repairs is also presented with the diagnostic tester.
    • 该解决方案通过基于计算机的诊断测试仪得到,其可以通过诊断接口和数据线使用诊断程序与安装在机动车辆中的控制装置交换信息。 机动车载控制装置具有用于控制装置的自诊断的程序例程,并且能够以预定存储区域中的故障代码的形式存储所识别的故障。 在诊断测试仪中实施的诊断程序从保留的存储区读取故障代码,解释故障代码并将其显示在显示屏上,并与解释一起显示。 为了检查哪些已经执行的维修已经成功完成,使用在诊断测试器中实现的诊断程序进行状态轮询。 在此状态轮询期间,对系统中已知的所有故障代码的状态信息进行询问和评估。 在此过程中,显示​​故障设置条件已被正确测试的所有故障代码或其测试要求不存在以便能够执行测试。 诊断测试仪还提供了一种改进维修检查的方法。
    • 7. 发明申请
    • System and Method for Motor Vehicle Diagnosis and Vehicle Reception
    • 机动车辆诊断和车辆接收系统与方法
    • US20090177352A1
    • 2009-07-09
    • US12280964
    • 2007-02-08
    • Gerald GrauManuel RiegerMarkus ScholzRalf TraubKlaus Weiss
    • Gerald GrauManuel RiegerMarkus ScholzRalf TraubKlaus Weiss
    • G01M17/00
    • G07C5/008G07C5/085
    • A vehicle diagnosis system for ascertaining, storing and transmitting diagnosis data from control units in a motor vehicle to a computer outside of the motor vehicle has components which are inside of the vehicle and components which are outside of the vehicle. The onboard components are capable of autonomously requesting diagnosis data from control units, buffer-storing the diagnosis data and of transmitting the diagnosis data to offboard components. The offboard components can be used to configure the onboard components, to visually display the transmitted data and to forward said data to subsequent systems. Access is effected using a communication module, which is preferably implemented in a diagnosis control unit with a dedicated gateway and which is not the control unit for the central locking. A gateway for diagnosis applications is present in the vehicle in the case of vehicles with a diagnosis CAN bus or with another diagnosis bus.
    • 用于从机动车辆中的控制单元确定,存储和发送诊断数据的车辆诊断系统具有在车辆内部和车辆外部的部件的部件。 车载组件能够自主地请求来自控制单元的诊断数据,缓冲存储诊断数据和将诊断数据发送到外部组件。 外部组件可用于配置板载组件,以可视地显示传输的数据并将所述数据转发到后续系统。 使用通信模块进行访问,通信模块优选地在具有专用网关的诊断控制单元中实现,并且不是用于中央锁定的控制单元。 在具有诊断CAN总线或另一诊断总线的车辆的情况下,车辆中存在用于诊断应用的网关。
    • 8. 发明申请
    • Enablement of Quasi Time Dependency in Organizational Hierarchies
    • 实现组织层次中的准时间依赖
    • US20130117230A1
    • 2013-05-09
    • US13310068
    • 2011-12-02
    • Le OuyangThomas PikeHuiming ZhangKlaus WeissHoubing Liu
    • Le OuyangThomas PikeHuiming ZhangKlaus WeissHoubing Liu
    • G06F7/00G06F17/30
    • G06F17/30442G06F17/30309
    • Changes to a hierarchical organizational structure may be stored in different versions of a data structure depicting the hierarchical organizational structure. Each of these versions may include a validity period field representing a time period that the hierarchical organizational structure depicted in the version accurately reflects the organizational structure of the organization. Each of the versions may also be designated as active or inactive. In some instances, each of the versions may be designated as inactive except for a version that reflects the organizational structure of the organization at a particular time, which may change over time. Historical copies of versions may be stored and subsequently recalled to identify an organizational structure that was in effect at a particular time in the past. The recalled version may then be used to limit the results of a query to a selected node of the historical organizational structure.
    • 层次化组织结构的更改可能存储在描述层次结构组织结构的数据结构的不同版本中。 这些版本中的每一个可以包括表示在版本中描绘的分级组织结构准确地反映组织的组织结构的时间段的有效期字段。 每个版本也可以被指定为活动或非活动。 在某些情况下,除了反映组织在特定时间的组织结构的版本之外,每个版本都可以被指定为非活动版本,这可能随时间而改变。 版本的历史副本可能被存储并随后被召回以确定过去特定时间生效的组织结构。 然后可以使用召回的版本将查询的结果限制到历史组织结构的所选节点。