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    • 1. 发明授权
    • ASI network for explosion-hazard areas
    • ASI网络用于爆炸危险区域
    • US08242901B2
    • 2012-08-14
    • US12071551
    • 2008-02-22
    • Klaus IndefreyMaximilian KorffAndreas SchiffBernhard Wiesgickl
    • Klaus IndefreyMaximilian KorffAndreas SchiffBernhard Wiesgickl
    • G08B1/00
    • H02H9/008
    • At least one embodiment of the invention relates to a fieldbus system, in particular for use in an explosion-hazard area. The fieldbus system, in at least one embodiment, has a plurality of bus line sections with bus lines; an isolating element, by which in each case two of the plurality of bus line sections are coupled to one another and which galvanically isolates the bus lines of the two bus line sections from one another such that this prevents any direct current flowing between the bus lines of the two bus line sections and communication signals are transmitted between the two bus line sections; and a supply source for each of the bus line sections, in order to provide an electrical power supply for field devices which can be connected to the respective bus line section.
    • 本发明的至少一个实施例涉及现场总线系统,特别是用于爆炸危险区域。 在至少一个实施例中,现场总线系统具有多个具有总线线路的总线部分; 隔离元件,其中在每种情况下,多个总线部分中的两个彼此耦合,并且将两个总线部分的总线线彼此电隔离,从而防止任何直流电流在总线之间流动 的两条总线线路段和通信信号在两条总线线段之间传输; 以及用于每个总线部分的供电源,以便为可以连接到各个总线部分的现场设备提供电力供应。
    • 2. 发明申请
    • ASI network for explosion-hazard areas
    • ASI网络用于爆炸危险区域
    • US20080224850A1
    • 2008-09-18
    • US12071551
    • 2008-02-22
    • Klaus IndefreyMaximilian KorffAndreas SchiffBernhard Wiesgickl
    • Klaus IndefreyMaximilian KorffAndreas SchiffBernhard Wiesgickl
    • H04Q1/30H02H9/00
    • H02H9/008
    • At least one embodiment of the invention relates to a fieldbus system, in particular for use in an explosion-hazard area. The fieldbus system, in at least one embodiment, has a plurality of bus line sections with bus lines; an isolating element, by which in each case two of the plurality of bus line sections are coupled to one another and which galvanically isolates the bus lines of the two bus line sections from one another such that this prevents any direct current flowing between the bus lines of the two bus line sections and communication signals are transmitted between the two bus line sections; and a supply source for each of the bus line sections, in order to provide an electrical power supply for field devices which can be connected to the respective bus line section.
    • 本发明的至少一个实施例涉及现场总线系统,特别是用于爆炸危险区域。 在至少一个实施例中,现场总线系统具有多个具有总线线路的总线部分; 隔离元件,其中在每种情况下,多个总线部分中的两个彼此耦合,并且将两个总线部分的总线线彼此电隔离,从而防止任何直流电流在总线之间流动 的两条总线线路段和通信信号在两条总线线段之间传输; 以及用于每个总线部分的供电源,以便为可以连接到各个总线部分的现场设备提供电力供应。
    • 4. 发明授权
    • Process for increasing the interference suppression
    • 增加干扰抑制的过程
    • US5574587A
    • 1996-11-12
    • US283854
    • 1994-08-01
    • Dieter Kr okelAndreas Schiff
    • Dieter Kr okelAndreas Schiff
    • H03K17/94H04B10/00
    • H03K17/941H03K2217/94114
    • A process and a device for increasing interference suppression, especially in optical proximity switches, with an optical transmitter emitting an optical pulse train (1), an optical receiver emitting a measuring signal (2) and a control and evaluation unit controlling the optical transmitter and evaluating measuring signal (2), in which the measuring signal (2) of the optical receiver includes a superposition of a constantly emitted interference background (4) and a measuring pulse (6) emitted when receiving an optical pulse (5), and in which the measuring signal (2) of the optical receiver is evaluated by the control and evaluation unit in a signal interval (8) during a measuring pulse (6) and in at least one background interval (9) outside measuring pulse (6). The increase of the interference suppression is assured in that the evaluation is interrupted by gaps (11, 12) before and after the signal intervals (8) or background intervals (9).
    • 一种用于通过发射光脉冲串(1)的光发射机,发射测量信号的光接收机(2)和控制和评估单元来控制光发射机的方法和装置,特别是在光接近开关中增加干扰抑制 评估测量信号(2),其中光接收机的测量信号(2)包括不断发射的干扰背景(4)和接收光脉冲(5)时发射的测量脉冲(6)的叠加,并且 在测量脉冲(6)期间的信号间隔(8)和测量脉冲(6)外的至少一个背景间隔(9)中,由控制和评估单元评估光接收器的测量信号(2)。 确保了在信号间隔(8)或背景间隔(9)之前和之后的间隙(11,12)中断评估的干扰抑制的增加。