COUPLING CIRCUIT FOR POWER LINE COMMUNICATIONS
    172.
    发明申请
    COUPLING CIRCUIT FOR POWER LINE COMMUNICATIONS 审中-公开
    用于电力线通信的耦合电路

    公开(公告)号:WO2012085059A1

    公开(公告)日:2012-06-28

    申请号:PCT/EP2011/073554

    申请日:2011-12-21

    CPC classification number: H03H7/004 H04B3/56 H04B2203/5491

    Abstract: A coupling interface couples a transceiver to one or more capacitive voltage dividers of a power transmission system. The coupling interface includes a first signal path including an adjustable inductance configured to form a resonance circuit with a capacitance associated with the one or more capacitive voltage dividers. The coupling interface may include a second signal path including an adjustable inductance configured to form a resonance circuit with the capacitance associated with the one or more capacitive voltage dividers.

    Abstract translation: 耦合接口将收发器耦合到电力传输系统的一个或多个电容性分压器。 耦合接口包括第一信号路径,其包括被配置为形成具有与一个或多个电容分压器相关联的电容的谐振电路的可调整电感。 耦合接口可以包括第二信号路径,其包括被配置成形成具有与一个或多个电容分压器相关联的电容的谐振电路的可调电感。

    RESONANT BIAXIAL ACCELEROMETER STRUCTURE OF THE MICROELECTROMECHANICAL TYPE
    174.
    发明申请
    RESONANT BIAXIAL ACCELEROMETER STRUCTURE OF THE MICROELECTROMECHANICAL TYPE 审中-公开
    微电子类型的谐波双相加速度计结构

    公开(公告)号:WO2012070021A1

    公开(公告)日:2012-05-31

    申请号:PCT/IB2011/055309

    申请日:2011-11-25

    CPC classification number: G01P15/097 G01P15/0888 G01P15/18 G01P2015/082

    Abstract: A microelectromechanical detection structure (1; 1') for a MEMS resonant biaxial accelerometer (16) is provided with: an inertial mass (2; 2'), anchored to a substrate (30) by means of elastic elements (8) in such a way as to be suspended above the substrate (30), the elastic elements (8) enabling inertial movements of detection of the inertial mass (2; 2') along a first axis of detection (x) and a second axis of detection (y) that belong to a plane (xy) of main extension of said inertial mass (2; 2'), in response to respective linear external accelerations (a x , a y ); and at least one first resonant element (10a) and one second resonant element (10b), which have a respective longitudinal extension, respectively along the first axis of detection (x) and the second axis of detection (y), and are mechanically coupled to the inertial mass (2; 2') through a respective one of the elastic elements (8) in such a way as to undergo a respective axial stress (N 1 , N 2 ) when the inertial mass moves respectively along the first axis of detection (x) and the second axis of detection (y).

    Abstract translation: 用于MEMS共振双轴加速度计(16)的微机电检测结构(1; 1')设置有:惯性块(2; 2'),其通过弹性元件(8)锚固到基底(30) 一种悬挂在基板(30)上方的方式,弹性元件(8)使惯性质量(2; 2')沿着第一检测轴(x)和第二检测轴线 y),其响应于相应的线性外部加速度(ax,ay)属于所述惯性质量(2; 2')的主延伸的平面(xy); 以及至少一个第一谐振元件(10a)和一个第二谐振元件(10b),它们分别具有沿着第一检测轴(x)和第二检测轴(y)的相应的纵向延伸,并且机械耦合 通过所述弹性元件(8)中的相应弹性元件(8)的惯性质量块(2; 2')以当所述惯性质量分别沿着所述第一检测轴线移动时经受相应的轴向应力(N1,N2) x)和第二检测轴(y)。

    CLAMPING CIRCUIT TO A REFERENCE VOLTAGE, IN PARTICULAR TO GROUND, SUITABLE TO BE USED IN A TRANSMISSION CHANNEL FOR ULTRASOUND APPLICATIONS
    177.
    发明申请
    CLAMPING CIRCUIT TO A REFERENCE VOLTAGE, IN PARTICULAR TO GROUND, SUITABLE TO BE USED IN A TRANSMISSION CHANNEL FOR ULTRASOUND APPLICATIONS 审中-公开
    钳位电路适用于超声波应用的传输通道中适用于地面的参考电压

    公开(公告)号:WO2011079881A1

    公开(公告)日:2011-07-07

    申请号:PCT/EP2010/005930

    申请日:2010-09-29

    CPC classification number: H03K17/6872 B06B1/0215 H03K17/06 H03K17/74

    Abstract: A clamping circuit (10) to a voltage reference (GND) is described, of the type comprising at least one clamping core (11) connected to an output terminal (HVout) and having a central node (XC) connected to the voltage reference (GND) and in turn including at least one first and one second clamp transistor (MC1; MC2), connected to the central node (XC) and having respective control terminals (XG1, XG2), the clamping core (11) being also connected at the input to a low voltage input driver block (13). Advantageously according to the invention, the clamping core (11) further comprises at least one first switching off transistor (MS1) connected to the output terminal (HVout) and to the first clamp transistor (MC1), as well as a second switching off transistor (MS2) connected to the output terminal (HVout) and to the second clamp transistor (MC2), these first and second clamp transistors (MC1, MC2) being high voltage MOS transistors of complementary type and these first and second switching off transistors (MS1, MS2) being high voltage MOS transistors of complementary type and connected to the first and second clamp transistors (MC1, MC2) by having the respective equivalent or body diodes in anti-series so as to close themselves when the clamping circuit (10) is active and to sustain positive and negative high voltages when the clamping circuit (10) is not active.

    Abstract translation: 描述了到电压基准(GND)的钳位电路(10),其类型包括连接到输出端子(HVout)的至少一个夹紧芯部(11),并且具有连接到电压基准的中心节点(XC) GND),并且还包括连接到中心节点(XC)并且具有各自的控制端子(XG1,XG2)的至少一个第一和第二钳位晶体管(MC1; MC2),夹紧芯部(11)也连接在 输入到低电压输入驱动器块(13)。 有利地,根据本发明,夹紧芯(11)还包括连接到输出端(HVout)和第一钳位晶体管(MC1)的至少一个第一截止晶体管(MS1)以及第二截止晶体管 (MC2)连接到输出端子(HVout)和第二钳位晶体管(MC2)的这些第一和第二钳位晶体管(MC1,MC2)是互补型高压MOS晶体管,这些第一和第二截止晶体管 ,MS2)是互补型的高电压MOS晶体管,通过使相应的等效或体二极管反串联以便在钳位电路(10)为 当钳位电路(10)未被激活时,它有效并维持正和负的高电压。

    DRIVING METHOD FOR OBTAINING A GAIN LINEAR VARIATION OF A TRANSCONDUCTANCE AMPLIFIER AND CORRESPONDING DRIVING CIRCUIT
    178.
    发明申请
    DRIVING METHOD FOR OBTAINING A GAIN LINEAR VARIATION OF A TRANSCONDUCTANCE AMPLIFIER AND CORRESPONDING DRIVING CIRCUIT 审中-公开
    用于获得交叉放大器和相应驱动电路的增益线性变化的驱动方法

    公开(公告)号:WO2011063873A1

    公开(公告)日:2011-06-03

    申请号:PCT/EP2010/005928

    申请日:2010-09-29

    Abstract: The invention relates to a driving method for obtaining a linear gain variation of a transconductance amplifier, of the type comprising at least one differential transistor cell, with adjustment of a driving voltage value (Vtgc1) of a degenerative driving transistor (MD1) of said transconductance amplifier, comprising the steps of : generating an output current signal of a differential cell (11) being a copy of said differential transistor cell of said transconductance amplifier, said output current signal having a linear relationship with a transconductance value of said copy differential cell (11) as said driving voltage (Vtgc1) varies; generating a reference current signal having a linear relationship with a differential input voltage; comparing said output current signal and said reference current signal for adjusting said driving voltage value (Vtgc1) and modifying said transconductance value of said copy differential cell (11) up to a balance of said current signals.

    Abstract translation: 本发明涉及一种用于获得包括至少一个差分晶体管单元的类型的跨导放大器的线性增益变化的驱动方法,其中调节所述跨导的退化驱动晶体管(MD1)的驱动电压值(Vtgc1) 放大器,包括以下步骤:产生作为所述跨导放大器的所述差分晶体管单元的副本的差分单元(11)的输出电流信号,所述输出电流信号与所述复制差分单元的跨导值具有线性关系( 11),因为所述驱动电压(Vtgc1)变化; 产生与差分输入电压具有线性关系的参考电流信号; 比较所述输出电流信号和所述参考电流信号,用于调节所述驱动电压值(Vtgc1),并修改所述复制差分单元(11)的所述跨导值直到所述电流信号的平衡。

    RING OSCILLATOR, TIME-DIGITAL CONVERTER CIRCUIT AND RELATING METHOD OF TIME-DIGITAL MEASURE
    180.
    发明申请
    RING OSCILLATOR, TIME-DIGITAL CONVERTER CIRCUIT AND RELATING METHOD OF TIME-DIGITAL MEASURE 审中-公开
    环形振荡器,时间 - 数字转换器电路和时间数字测量的相关方法

    公开(公告)号:WO2011047861A1

    公开(公告)日:2011-04-28

    申请号:PCT/EP2010/006435

    申请日:2010-10-21

    CPC classification number: H03K3/0315 H03K23/542

    Abstract: Ring oscillator comprising a plurality of elementary units (5) connected in cascade and linked in order to make a chain with the respective output terminals (OUT) connected to the input terminals (IN) of the successive elementary units (5) of the chain, the elementary units (5) being crossed by a cyclic signal (CLK) during a time period (Δt) of activation, each of said elementary units (5) comprising an auxiliary recovery terminal (15) for temporarily resetting each elementary unit (5) during each loop of said cyclic signal (CLK), said auxiliary recovery terminal (15) being connected to an output terminal (OUT) of a successive elementary unit (5) of the chain.

    Abstract translation: 环形振荡器包括级联连接并连接的多个基本单元(5),以便形成与链的连续基本单元(5)的输入端(IN)连接的相应输出端(OUT)的链, 基本单元(5)在激活的时间段(Δt)期间被循环信号(CLK)越过,每个所述基本单元(5)包括用于临时复位每个基本单元(5)的辅助恢复终端(15) )在所述循环信号(CLK)的每个循环期间,所述辅助恢复终端(15)连接到链的连续基本单元(5)的输出端(OUT)。

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