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    • 1. 发明申请
    • INTEGRATED SOLID STATE MICROWAVE POWER GENERATION MODULES
    • 集成的固态微波发电模块
    • US20160198530A1
    • 2016-07-07
    • US14912124
    • 2013-08-29
    • Pierre Marie PIELDavid P. LESTERLionel MONGIN
    • Pierre Marie PielDavid P. LesterLionel Mongin
    • H05B6/66H05B6/68
    • An embodiment of a microwave power generation module includes an amplifier arrangement, an impedance matching element, and a resonant element. The amplifier arrangement includes a transistor with a transistor input and a transistor output. The impedance matching element is formed from a planar conductive structure. The planar conductive structure has a proximal end and a distal end, and the proximal end is electrically coupled to the transistor output. The resonant element has a proximal end electrically coupled to the distal end of the planar conductive structure, and the resonant element is configured to radiate electromagnetic energy having a microwave frequency in a range of 800 megahertz (MHz) to 300 gigahertz (GHz). A combination of the impedance matching element and the resonant element is configured to perform an impedance transformation between an impedance of the transistor and an impedance of an air cavity.
    • 微波发电模块的一个实施例包括放大器装置,阻抗匹配元件和谐振元件。 放大器装置包括具有晶体管输入和晶体管输出的晶体管。 阻抗匹配元件由平面导电结构形成。 平面导电结构具有近端和远端,并且近端电耦合到晶体管输出。 谐振元件具有电耦合到平面导电结构的远端的近端,并且谐振元件被配置为辐射具有在800兆赫(MHz)至300千兆赫(GHz)范围内的微波频率的电磁能。 阻抗匹配元件和谐振元件的组合被配置为在晶体管的阻抗和空气腔的阻抗之间执行阻抗变换。
    • 2. 发明授权
    • BTSC encoder and integrated circuit
    • BTSC编码器和集成电路
    • US07403624B2
    • 2008-07-22
    • US10744619
    • 2003-12-23
    • Luciano ZosoAllan P. ChinDavid P. Lester
    • Luciano ZosoAllan P. ChinDavid P. Lester
    • H04R5/00
    • H04H20/88
    • A BTSC encoder includes dual channel ADC, sync separator, audio processor, filtering device, and a composite audio signal generating device. The filtering device includes a first filter for providing a filtered L+R signal, and a second filter for providing at least one of: i) a filtered and combined pilot and modulated L−R signal and ii) separately filtered pilot and modulated L−R signals. The composite audio signal generating device is responsive to the filtered L+R signal, and at least one of i) the filtered and combined pilot and modulated L−R signal and ii) the separately filtered pilot and modulated L−R signals for generating and outputting a composite analog audio signal. In all embodiments, the modulated L−R signal is filtered via an anti-splatter filter.
    • BTSC编码器包括双通道ADC,同步分离器,音频处理器,滤波装置和复合音频信号发生装置。 滤波装置包括用于提供经滤波的L + R信号的第一滤波器和用于提供以下各项中的至少一个的第二滤波器:i)经滤波和组合的导频和调制L-R信号,和ii)分别滤波的导频和调制L-R信号。 复合音频信号产生装置响应于经滤波的L + R信号,以及i)滤波和组合的导频和调制LR信号中的至少一个,以及ii)分别滤波的导频和调制LR信号,用于产生和输出复合模拟 音频信号。 在所有实施例中,调制的L-R信号经由防飞溅滤波器被滤波。
    • 6. 发明授权
    • NICAM processing method
    • NICAM处理方法
    • US07653448B2
    • 2010-01-26
    • US11240314
    • 2005-09-30
    • Luciano ZosoAllan P. ChinDavid P. Lester
    • Luciano ZosoAllan P. ChinDavid P. Lester
    • G06F17/00G06F12/06H04H20/47H04H20/88
    • H04N5/605
    • A NICAM processing method includes receiving and temporarily storing a current frame of A-channel and B-channel input data into a first memory at a first clock rate. Companded A-channel and B-channel data of a previous frame are read from a second memory at a second clock rate and in a manner for interleaving the previous frame companded A-channel and B-channel data into the NICAM standard required interleaved format, wherein the companded A-channel and B-channel data of the previous frame was temporarily stored during a previous frame into the second memory in a format other than an interleaved format according to NICAM standard requirements. The A-channel and B-channel input data of the current frame is companded and stored into the second memory and in the format other than the interleaved format, wherein the companding and storing are performed at a third clock rate during an interval within the current frame that occurs subsequent to both the storing into the first memory and the reading from the second memory.
    • NICAM处理方法包括以第一时钟速率接收和临时存储当前帧的A信道和B信道输入数据到第一存储器中。 以第二时钟速率从第二存储器读取先前帧的压缩A信道和B信道数据,并且以将先前帧压缩的A信道和B信道数据交织到NICAM标准所需交织格式的方式, 其中根据NICAM标准要求,前一帧的压缩的A信道和B信道数据在前一帧中以不同于交织格式的格式临时存储到第二存储器中。 当前帧的A信道和B信道输入数据被压缩并存储到第二存储器中并且以除交织格式之外的格式存储,其中在当前时间间隔内以第三时钟速率执行压扩和存储 在存储到第一存储器中以及从第二存储器读取之后发生的帧。