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    • 6. 发明授权
    • Micro-electromechanical semiconductor component
    • 微机电半导体元件
    • US09403677B2
    • 2016-08-02
    • US14631064
    • 2015-02-25
    • Elmos Semiconductor AG
    • Michael Doelle
    • B81B7/02B81C1/00G01L9/00B81B3/00H01L29/49H01L29/84
    • B81C1/00158B81B3/0018B81B3/0021B81B3/007B81B3/0072B81B3/0081B81B2201/0235B81B2201/0264B81B2203/0127B81C1/00626B81C99/0035B81C2201/019G01L9/0047H01L29/4916H01L29/84
    • The micro-electromechanical semiconductor component is provided with a semiconductor substrate (4, 5), a reversibly deformable bending element (8a) made of semiconductor material, and at least one transistor that is sensitive to mechanical stresses, said transistor being designed as an integrated component in the bending element (8a). The transistor is arranged in an implanted active region pan (78a) that is made of a semiconductor material of a first conducting type and is introduced in the bending element (8a). Two mutually spaced, implanted drain and source regions (79, 80) made of a semiconductor material of a second conducting type are designed in the active region pan (78a), a channel region extending between said two regions. Implanted feed lines made of a semiconductor material of the second conducting type lead to the drain and source regions (79, 80). The upper face of the active region pan (78a) is covered by a gate oxide (81a). In the area of the channel region, a gate electrode (81) made of polysilicon is located on the gate oxide (81a), a feed line likewise made of polysilicon leading to said gate electrode.
    • 微机电半导体部件设置有半导体基板(4,5),由半导体材料制成的可逆变形的弯曲元件(8a)和至少一个对机械应力敏感的晶体管,所述晶体管被设计为集成 弯曲元件(8a)中的部件。 晶体管布置在由第一导电类型的半导体材料制成并被引入到弯曲元件(8a)中的注入有源区域盘(78a)中。 在有源区域盘(78a)中设置两个相互间隔的由第二导电类型的半导体材料制成的漏极和源极区域(79,80),在所述两个区域之间延伸的沟道区域。 由第二导电类型的半导体材料制成的注入馈电线导向漏极和源极区域(79,80)。 有源区域盘(78a)的上表面被栅极氧化物(81a)覆盖。 在沟道区域中,由多晶硅制成的栅极(81)位于栅极氧化物(81a)上,同样由通向所述栅电极的多晶硅制成的馈电线。
    • 8. 发明授权
    • Method for operating a bus system
    • 操作总线系统的方法
    • US08850245B2
    • 2014-09-30
    • US13219748
    • 2011-08-29
    • Radoslaw WatrobaRainer KralyChristian Schmitz
    • Radoslaw WatrobaRainer KralyChristian Schmitz
    • G06F1/26H04L12/40
    • H04L12/40039H04L2012/40215
    • A method for the switching of participants of a bus system from a first state with reduced energy consumption to a second state with increased energy consumption relative to the first state, wherein, for communication between the participants of the bus system, data frames are transmitted which comprise, inter alia, a message identification field (e.g. CAN message) and a useful-data field (e.g. CAN payload), wherein, according to said method, each participant, for switching from the first state to the second state, reacts on data frames with respectively predetermined data contents in the message identification field as well as in the useful-data field. Further, in the bus system, for selective switching of a participant from the first state to the second state, those data frames will be transmitted on whose message-identification-field contents and useful data-field-contents the selectively addressable participant reacts.
    • 一种用于将总线系统的参与者从具有降低的能量消耗的第一状态切换到具有相对于第一状态的能量消耗增加的第二状态的方法,其中,对于总线系统的参与者之间的通信,发送数据帧, 包括消息识别字段(例如CAN消息)和有用数据字段(例如CAN有效载荷),其中根据所述方法,用于从第一状态切换到第二状态的每个参与者对数据做出反应 在消息识别字段以及有用数据字段中分别具有预定数据内容的帧。 此外,在总线系统中,为了将参与者从第一状态到第二状态的选择性切换,这些数据帧将被发送到其选择性可寻址的参与者反应的消息识别字段内容和有用数据字段内容。
    • 9. 发明申请
    • RECEIVER COMPENSATION
    • 接收者补偿
    • US20140233685A1
    • 2014-08-21
    • US14178365
    • 2014-02-12
    • ELMOS SEMICONDUCTOR AG
    • Bernd BURCHARDJuergen LARM
    • H04B15/00
    • G01S7/497
    • A receiver compensation system and method to operate the receiver compensation system are disclosed. The compensation sensor system includes at least one receiver and at least one control loop. The method to operate the receiver compensation system is characterized in that the receiver is adjusted in its sensitivity by a control signal such that in the case of changes of an input received by the receiver, a control signal of the control loop resets an associated receiver output signal, except for a control error. Further, at least one other signal of the control loop represents or contains a measurement of the change of the input received by the receiver.
    • 公开了一种操作接收机补偿系统的接收机补偿系统和方法。 补偿传感器系统包括至少一个接收器和至少一个控制回路。 操作接收机补偿系统的方法的特征在于,通过控制信号对接收机的灵敏度进行调节,使得在接收机接收的输入发生变化的情况下,控制环路的控制信号复位相关的接收机输出 信号,除了控制错误。 此外,控制回路的至少一个其他信号表示或包含由接收器接收的输入的变化的测量。