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Development of 3GHz Analog Fiber Optic Link for Ultra-fast Signal Transmission

机译:用于超快速信号传输的3GHz模拟光纤链路的开发

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A broad bandwidth analog fiber optic link is developed for ultra-fast signal transmission under the circumstance with complicated electromagnetic fields. The electrical ultra-fast signal is converted to optical ones by electro-optic conversion method which operates via amplitude modulation mechanism. With several kilometers distance transmission, the optical signal is recovered by photo-electric conversion method correspondingly. The measurement results of the link indicate that its bandwidth is (0.0003-3)GHz, in-band flatness ±1dB, linear dynamic range 40dB, output peak-to-peak noise within 5mV, both of input and output standing-wave-ratios less than 2. It''s applied in high power microwave experiments. The experimental results show that the 3GHz analog fiber optic link which employs electro-optic and photo-electric conversion techniques is suitable for ultra-fast pulse signals transmission. It greatly improves the bandwidth margin of the diagnosis system.
机译:开发了宽带模拟光纤链路,用于在电磁场复杂的情况下实现超快信号传输。电超快信号通过电光转换方法转换为光学信号,该方法通过振幅调制机制进行操作。在几公里的距离传输下,光信号通过光电转换方法相应地恢复。链路的测量结果表明,其带宽为(0.0003-3)GHz,带内平坦度为±1dB,线性动态范围为40dB,输出峰峰值噪声在5mV以内,输入和输出驻波比均小于2。适用于高功率微波实验。实验结果表明,采用电光和光电转换技术的3GHz模拟光纤链路适用于超快速脉冲信号传输。大大提高了诊断系统的带宽裕度。

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