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    • 2. 发明授权
    • Control module arrangement and compressed air maintenance unit
    • 控制模块布置和压缩空气维护单元
    • US07457716B2
    • 2008-11-25
    • US11104335
    • 2005-04-12
    • Gunter GebauerJens GarnerKlaus Kleinrad
    • Gunter GebauerJens GarnerKlaus Kleinrad
    • G01L25/00G06F11/30G21C17/00
    • F15B21/085F15B21/048G05B2219/25312
    • A control module arrangement for a compressed air maintenance unit constructed like a battery and a compressed air maintenance unit, which has several maintenance modules in a row one after the other, wherein the control module arrangement has a bus interface for communicating with the maintenance modules via an internal bus of the maintenance unit. The control module arrangement has a diagnostic device for communicating with an input/output device of the maintenance unit, wherein the input/output device has a connector for connecting at least one diagnostic sensor separate from the maintenance unit and/or at least one pneumatic compressed air influencing actuator separate from the maintenance unit, wherein the control module arrangement can control the one or more compressed air influencing actuators via the input/output device and/or can receive diagnostic messages from the one or more separate diagnostic sensors.
    • 一种用于压缩空气维护单元的控制模块装置,其构造为类似于电池和压缩空气维护单元,其具有一个接一个地具有多个维护模块,其中控制模块装置具有用于与维护模块通信的总线接口, 维修单元的内部总线。 所述控制模块装置具有用于与所述维护单元的输入/输出装置进行通信的诊断装置,其中,所述输入/输出装置具有用于连接至少一个与所述维护单元分离的诊断传感器的连接器和/或至少一个气动压缩 空气影响致动器与维护单元分开,其中控制模块装置可以经由输入/输出装置控制影响致动器的一个或多个压缩空气和/或可以从一个或多个单独的诊断传感器接收诊断消息。
    • 6. 发明申请
    • Soft Start Device for Pneumatic Systems and Method for the Operation of a Soft Start Device
    • 气动系统软启动装置及软启动装置的运行方法
    • US20110277843A1
    • 2011-11-17
    • US12866713
    • 2008-02-15
    • Peter ChristianiGunter GebauerBodo NeefMarkus KleskeUdo Walden
    • Peter ChristianiGunter GebauerBodo NeefMarkus KleskeUdo Walden
    • F15D1/00
    • F15B11/068F15B19/005F15B20/008F15B2211/30525F15B2211/329F15B2211/40507F15B2211/40515F15B2211/41572F15B2211/428F15B2211/455F15B2211/634F15B2211/6355Y10T137/0318Y10T137/8376Y10T137/86614Y10T137/86928Y10T137/87322Y10T137/87917
    • In a soft start device for pneumatic systems comprising a primary inlet (P1) where compressed air can be supplied at primary pressure, wherein the primary inlet (P1) is, via a valve circuit, connected to at least one secondary outlet (P2) which can be coupled to a load and where compressed air can be discharged at secondary pressure, the secondary pressure being lower than or equal to the primary pressure, wherein a main valve of the type 2/2 nc (normally closed) which can be bypassed by means of a bypass (17) is installed between the primary inlet (P1) and the secondary outlet (P2), a restrictor device (13) being installed in the bypass (17), wherein the main valve (WV5) and the restrictor device (13) together with further directional valves (WV1, WV3, WV4, WV5, WV6) of the valve circuit are interconnected such and the valve circuit can be switched into a standard switching position for venting such that the secondary outlet (P2) is vented, the valves (WV1, WV3, WV4, WV5, WV6) of the valve circuit are interconnected such that, in addition to the standard switching position for venting, several further switching positions for venting are possible, one of the further switching positions for venting being established if, in an operation which would normally initiate the standard switching position for venting, any one of the valves (WV1, WV3, WV4, WV5, WV6) malfunctions.
    • 在用于气动系统的软启动装置中,包括主要入口(P1),其中可以在一次压力下供应压缩空气,其中主入口(P1)经由阀电路连接到至少一个次级出口(P2),所述次级出口 可以耦合到负载,并且其中压缩空气可以在二次压力下排放,二次压力低于或等于初级压力,其中可以绕过的主要阀门类型2/2 nc(常闭) 在主入口(P1)和次级出口(P2)之间安装有旁通装置(17),在旁路(17)中安装有限流装置(13),其中主阀(WV5)和限流装置 (13)与阀回路的另外的换向阀(WV1,WV3,WV4,WV5,WV6)连接在一起,并且阀电路可以被切换到用于排气的标准开关位置,使得次级出口(P2)被排出 ,阀(WV1,WV3,WV4,WV5,WV6) 阀门电路互连,使得除了用于排气的标准切换位置之外,还可以进行几个用于排气的另外的切换位置,如果在通常将启动标准切换位置的操作中建立用于排气的另外的切换位置之一 任何一个阀门(WV1,WV3,WV4,WV5,WV6)都会发生故障。
    • 7. 发明申请
    • Control module arrangement and compressed air maintenance unit
    • 控制模块布置和压缩空气维护单元
    • US20050240807A1
    • 2005-10-27
    • US11104335
    • 2005-04-12
    • Gunter GebauerJens GarnerKlaus Kleinrad
    • Gunter GebauerJens GarnerKlaus Kleinrad
    • F15B19/00F15B21/04F15B21/08G06F11/00
    • F15B21/085F15B21/048G05B2219/25312
    • The invention relates to a control module arrangement (20) for a compressed air maintenance unit (14) constructed like a battery and a compressed air maintenance unit (14), which has several maintenance modules (23-25) in a row one after the other, such as, e.g., pressure regulators, filters, oilers, or the like, wherein the control module arrangement has a bus communications means for communicating with the maintenance modules (23-25) via an internal bus (37) of the maintenance unit. The control module arrangement has a diagnostic means (53) for communicating with an input/output device (40) of the maintenance unit (14), wherein the input/output device has a connection means (43) for connecting at least one diagnostic sensor (44-46) separate from the maintenance unit and/or at least one pneumatic compressed air influencing actuator (47) separate from the maintenance unit, wherein the control module arrangement can control the one or more compressed air influencing actuators via the input/output device and/or can receive diagnostic messages (48) from the one or more separate diagnostic sensors. The diagnostic means are constructed for generating diagnostic data (51) for a higher-order diagnostic device (18) for diagnosing at least one function of the compressed air maintenance unit with reference to diagnostic messages (48) of the one or more separate diagnostic sensors and/or the maintenance modules, so that the compressed air maintenance unit forms a diagnostic node.
    • 本发明涉及一种用于构造成电池的压缩空气维护单元(14)的控制模块装置(20)和压缩空气维护单元(14),其具有一列后续的维护模块(23-25) 其他的,例如压力调节器,过滤器,加油器等,其中控制模块装置具有总线通信装置,用于经由维护单元的内部总线(37)与维护模块(23-25)通信 。 控制模块装置具有用于与维护单元(14)的输入/输出装置(40)进行通信的诊断装置(53),其中输入/输出装置具有连接装置(43),用于将至少一个诊断传感器 (44-46)与维护单元和/或与维护单元分开的至少一个气动压缩空气影响致动器(47)分离,其中控制模块装置可以经由输入/输出来控制影响致动器的一个或多个压缩空气 设备和/或可以从一个或多个单独的诊断传感器接收诊断消息(48)。 诊断装置被构造用于生成用于诊断压缩空气维护单元的至少一个功能的高级诊断装置(18)的诊断数据(51),参考一个或多个单独的诊断传感器的诊断消息(48) 和/或维护模块,使得压缩空气维护单元形成诊断节点。