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    • 1. 发明申请
    • CURRENT MONITOR FOR SENSING THE CURRENT IN A CURRENT PATH AND CORRESPONDING CONTROL DEVICE
    • 用于感测电流路径和相应控制装置中的电流的电流监视器
    • WO2010115681A1
    • 2010-10-14
    • PCT/EP2010/053332
    • 2010-03-16
    • ALCATEL LUCENTLUZ, GerhardWIEGNER, DirkMACHINAL, Robin
    • LUZ, GerhardWIEGNER, DirkMACHINAL, Robin
    • G01R31/30G01R19/165
    • G01R19/0092G01R1/203G01R1/30H03F3/3432H03F2200/462
    • The invention relates to a current monitor (10) for sensing the current in a current path (12), said current monitor (10) comprising a resistive sensing element (24) in a section (26) of said current path (12) and a current mirror circuit (28) comprising a first semiconductor device (30) and a second semiconductor device (32), both semiconductor devices (30, 32) electrically interconnected with each other for copying the current in the second semiconductor device (32) to the first semiconductor device (30), wherein the first semiconductor device (30) is electrically connected to an electric reference potential and to a current input side of the section (26) via a resistive equivalence element (38) in a first current branch (34) and wherein the second semiconductor device (32) is electrically connected to the electric reference potential and to a current output side of the section (26) in a second current branch (36). The current monitor (10) further comprises a constant current source (44) for keeping the current in the second current branch (36) independent from the potential difference between the potential of the current output side of the section (26) and the reference potential. The invention further relates to a corresponding control device for being integrated in a modulator in large bandwidth applications.
    • 本发明涉及一种用于感测电流路径(12)中的电流的电流监视器(10),所述电流监视器(10)包括在所述电流通路(12)的部分(26)中的电阻感测元件(24) 包括第一半导体器件(30)和第二半导体器件(32)的电流镜电路(28),两个彼此电互连的半导体器件(30,32),用于将第二半导体器件(32)中的电流复制到 所述第一半导体器件(30),其中所述第一半导体器件(30)经由第一电流分支中的电阻等效元件(38)电连接到所述部分(26)的电参考电位和电流输入侧 34),并且其中所述第二半导体器件(32)在第二电流分支(36)中电连接到所述电参考电位并且连接到所述部分(26)的电流输出侧。 电流监视器(10)还包括用于将电流保持在第二电流分支(36)中的恒定电流源(44),独立于部分(26)的电流输出侧的电位与参考电位 。 本发明还涉及用于在大带宽应用中集成在调制器中的相应控制装置。
    • 3. 发明申请
    • RF POWER AMPLIFIER WITH SPECTRALLY GROUPED NANOSIZED SWITCHES
    • 射频功率放大器,带有分组的纳米开关
    • WO2011045193A1
    • 2011-04-21
    • PCT/EP2010/064717
    • 2010-10-04
    • ALCATEL LUCENTTEMPL, WolfgangWIEGNER, Dirk
    • TEMPL, WolfgangWIEGNER, Dirk
    • H03F3/191H03F13/00
    • H03F13/00H03F3/191H03F21/00
    • The invention describes a radio frequency (=RF) power amplifier (20), comprising - a coupling array (1) comprising a plurality of nano-sized coupling elements (2; 41; 51), wherein the coupling elements (2; 41; 51) are grouped into a number N of sub- arrays (SA- 1 ... SA N ), with each sub-array (SA- 1 ... SA N ) exhibiting • a specific resonance frequency (f 1 ...f N ) and • a specific attenuation of a mechanical self-oscillation of its coupling elements (2; 41; 51), wherein for the coupling elements (2; 41; 51) of each sub array (SA- 1 ... SA N ), there is a stimulating means for stimulating a mechanical self-oscillation, - and a signal processing unit (22) for controlling the stimulating means with stimulating pulses having a pulse form and timing calculated by the signal processing unit (22) based on an evaluation of the spectral components of an RF signal to be amplified, namely the amplitudes (C 1 ... C N ) and phases (Φ- 1 ... Φ N ) at the frequencies (f 1 ...f N ) corresponding to said specific resonance frequencies. The inventive RF power amplifier provides a high efficiency and a high linearity, in particular at high RF frequencies.
    • 本发明描述了一种射频(= RF)功率放大器(20),包括:包括多个纳米级耦合元件(2; 41; 51)的耦合阵列(1),其中耦合元件(2; 41; 51) 每个子阵列(SA-1 ... SAN)表现出特定的共振频率(f1 ... fN)的数量为N的子阵列(SA-1 ... SAN),并且 °其耦合元件(2; 41; 51)的机械自振荡的特定衰减,其中对于每个子阵列(SA-1 ... SAN)的耦合元件(2; 41; 51),存在 用于刺激机械自振荡的刺激装置,以及信号处理单元(22),用于基于所述光谱的评估来刺激具有由所述信号处理单元(22)计算的脉冲形式和定时的脉冲的所述刺激装置 要被放大的RF信号的分量,即对应于所述特定共振的频率(f1 ... fN)的幅度(C1 ... CN)和相位(F-1 ... FN) ce频率。 本发明的RF功率放大器提供高效率和高线性度,特别是在高RF频率下。
    • 5. 发明申请
    • RADIO CONTROLLED AMMUNITION
    • 无线电控制弹药
    • WO2012156116A1
    • 2012-11-22
    • PCT/EP2012/054551
    • 2012-03-15
    • ALCATEL LUCENTTEMPL, WolfgangWIEGNER, Dirk
    • TEMPL, WolfgangWIEGNER, Dirk
    • F41A17/08F42B5/08F41A17/06F41A19/62
    • F41A17/063F41A17/08F41A19/62F42B5/08
    • Radio controlled catridge ammunition (20; 30) for a weapon (26), wherein the ammunition comprises control circuitry (21) adapted to enable and/or disable a mechanism for the ignition of the propellant charge (32) of the ammunition (20; 30) in response to a wireless radio control signal. Thereby the control circuitry (21) extracts, from the wireless radio control signal received at the ammunition's geographical location, information indicative of said geographical location, and compares the extracted information with information indicative of a geographical area where the ammunition (20; 30) is allowed to be fired off the weapon (26). Hence, the ignition mechanism is controlled based on the result of the comparison.
    • 用于武器(26)的无线电控制弹药(20; 30),其中所述弹药包括控制电路(21),其适于启用和/或禁用用于点燃所述弹药(20;)的推进剂装药(32)的机构。 30)响应于无线无线电控制信号。 因此,控制电路(21)从弹药地理位置接收到的无线电控制信号中提取指示所述地理位置的信息,并将提取的信息与指示弹药(20,30)所在的地理区域的信息进行比较 允许从武器射出(26)。 因此,基于比较的结果来控制点火机构。
    • 6. 发明申请
    • POWER AMPLIFICATION FOR FRAGMENTED TRANSCEIVER SYSTEMS
    • 用于FRAGMENTED收发器系统的功率放大
    • WO2010097324A1
    • 2010-09-02
    • PCT/EP2010/052034
    • 2010-02-18
    • ALCATEL LUCENTPASCHT, AndreasWIEGNER, Dirk
    • PASCHT, AndreasWIEGNER, Dirk
    • H03F1/56H03F3/60H03H7/38H01P1/213H01L23/66H04B1/38H03F3/24
    • H03F3/60H01P5/02H01P5/16H03F1/565H03F3/245H03F2200/111H03F2200/222H03F2200/255H03F2200/387H03F2200/423H03F2200/451
    • A matching architecture for use in an amplifier arrangement (1) to amplify fragmented frequency slots comprises a number of RF signal input matching strip lines ( 1 IN(f 1 ) and 1 IN(f 2 )) branching from a common RF signal input line ( 1 i ) and connected in common to an RF input terminal lug (TRL IN ) of a RF power transistor (TR). A first and second RF signal input matching strip line ( 1 IN(f 1 ) and 1 IN(f 2 )) are each configured for impedance matching to a respective wavelength (λf1, λf2) of a number of different wavelengths (λf1, λf2) of the RF signal and are respectively coupled to at least one blocking means (C 11 , C 12 , C 21 , C 22 ), each with a length of λ/4 according to a wavelength (λf2, λf1) of the RF signal not travelling through the respective RF signal input matching strip line (1 OUT(f-ι) and 1 OUT (f2)). At the output side the amplifier arrangement (1 ) further comprises a number of RF signal output matching strip lines ( 1 OUT(f 1 ) and 1 OUT(f 2 )) being in common connected to an RF output terminal lug (TRL OUT ) of the RF power transistor (TR) and further respectively coupled to at least one blocking means (C 13 ,C 14 ;C 23 ,C 24 ) each with a length of λ/4 according to a wavelength (λf2, λf1) of the RF signal not travelling through the respective output matching strip line ( 1 OUT(f 1 ) and 1 OUT(f 2 )).
    • 用于放大分段频率时隙的放大器装置(1)中的匹配架构包括从公共RF信号输入线(1)分支的多个RF信号输入匹配带线(1IN(f1)和1IN(f2)) i)并且共同连接到RF功率晶体管(TR)的RF输入端子接线片(TRLIN)。 第一和第二RF信号输入匹配条线(1IN(f1)和1IN(f2))分别被配置用于与多个不同波长(λ1, 并且分别根据RF信号的波长(Δf2,Δf1)耦合到至少一个具有长度为λ/ 4的阻挡装置(C11,C12,C21,C22) 不通过相应的RF信号输入匹配条线(1 OUT(f-1)和1 OUT(f2))。 在输出侧,放大器装置(1)还包括共同连接到RF的RF输出端子接线片(TRLOUT)的多个RF信号输出匹配条线(1 OUT(f1)和1 OUT(f2)) 功率晶体管(TR),并且还分别耦合到至少一个具有长度为λ/ 4的阻挡装置(C13,C14; C23,C24),所述阻挡装置根据不行进的RF信号的波长(ω2f,φf1) 相应的输出匹配条线(1 OUT(f1)和1 OUT(f2))。