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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Association and Dissociation of Optimal Noise and Input Impedance for Low-Noise Amplifiers
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Association and Dissociation of Optimal Noise and Input Impedance for Low-Noise Amplifiers

机译:低噪声放大器的最佳噪声和输入阻抗的关联和分解

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For magnetic resonance imaging (MRI) receive coil arrays, an ideal low-noise amplifier (LNA) is noise matched while exhibiting a high-input reflection coefficient of unity or slightly higher. For this purpose, we present a design approach allowing to manipulate the optimal noise impedance and input impedance. The method is based on noise and S-parameters, hence technology independent. As an example, the method is used to design an LNA for MRI receive coil arrays operating at 32.1 MHz. The design demonstrates the highest coil decoupling published so far of 54 dB. The measured noise figure of 0.44 dB is also better than other published designs. The measured gain is 22 dB with a 1-dB compression point of −14.5 dBm. The power consumption is 81 mW. We expect this method to enable better MRI receive coil array designs resulting in lower examination time and cost due to higher quality images.
机译:对于磁共振成像(MRI)接收线圈阵列,理想的低噪声放大器(LNA)是噪声匹配的,同时具有一个等于或稍高的高输入反射系数。为此,我们提出了一种设计方法,可以操纵最佳噪声阻抗和输入阻抗。该方法基于噪声和S参数,因此与技术无关。作为示例,该方法用于设计用于32.1 MHz的MRI接收线圈阵列的LNA。该设计展示了迄今为止公布的最高的54 dB线圈去耦性能。测得的噪声系数为0.44 dB,也优于其他已发布的设计。测得的增益为22 dB,其1dB压缩点为-14.5 dBm。功耗为81 mW。我们期望这种方法能够实现更好的MRI接收线圈阵列设计,从而由于图像质量更高而缩短了检查时间并降低了成本。

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