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SYSTEMS AND METHODS FOR DESIGN AND CONSTRUCTION OF NMR TRANSCEIVER CIRCUITS

机译:核磁共振收发器电路设计和构造的系统和方法

摘要

The Rabi frequency of oscillation of the nuclear magnetization vector of a sample in an NMR system may be controlled by modifying only the duty cycle of RF pulses delivered to the sample, without modifying the amplitude of the RF pulses, until the energy delivered at the Larmor frequency is adjusted to a desired amount. An impedance matching network between an NMR transceiver and an NMR coil may perform both power matching and noise matching simultaneously. During a transmission mode, the impedance matching network is connected to a transmitter portion of the transceiver, and the impedance of the coil is matched to the driver resistance. During a receiver mode, the impedance matching network is disconnected from the transmitter portion so that the impedance matching network remains connected only to the receiver portion, and signal-to-noise ratio in received NMR signals is maximized.
机译:可以通过仅更改传递到样品的RF脉冲的占空比,而不更改RF脉冲的幅度,直到在Larmor处传递的能量,来控制NMR系统中样品的核磁化矢量的振荡的拉比频率。频率调整到所需的数量。 NMR收发器和NMR线圈之间的阻抗匹配网络可以同时执行功率匹配和噪声匹配。在传输模式期间,阻抗匹配网络连接到收发器的发射器部分,线圈的阻抗与驱动器电阻匹配。在接收器模式期间,阻抗匹配网络与发送器部分断开连接,因此阻抗匹配网络仅保持连接到接收器部分,并且已接收NMR信号中的信噪比达到最大。

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