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Operational Amplifiers Revisited for Low Field Magnetic Resonance Relaxation Time Measurement Electronics

机译:Revisitations的运算放大器被重新检测,用于低现场磁共振弛豫时间测量电子器件

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Advances in permanent magnet technology has seen more reports of sensor applications of low field magnetic resonance. Whilst most are either in the 10–20 MHz range or in the earth’s field, measurements at below 1 MHz are beginning to become more widespread. This range is below the need for careful radio frequency electronics design but above the audio domain and represents an interesting cross over. Many commercial spectrometers do not include the pulse power amplifier, duplexer and preamplifier as these depend on the frequency range used. In this work we demonstrate that, with the current specifications of the humble operational amplifier, the most simple form of an inverting design using only two resistors and decoupling, can effectively provide this ‘front end’ electronics. The low powers used mean crossed Ge diodes provide an excellent duplexer and it is suitable for battery powered applications.
机译:永久磁铁技术的进步已经看出了对低场磁共振的传感器应用的报道。虽然大多数是在10-20 MHz范围内或地球领域,但低于1 MHz的测量开始变得更加普遍。该范围低于对音频域之上的仔细射频电子设计的需求,并且代表了一个有趣的交叉。许多商业光谱仪不包括脉冲功率放大器,双工器和前置放大器,因为它们取决于所使用的频率范围。在这项工作中,我们证明,利用目前谦逊的运算放大器的规格,使用两个电阻和去耦的反相设计最简单的形式,可以有效地提供该“前端”电子设备。使用均值交叉GE二极管的低功率提供了优异的双工器,适用于电池供电的应用。

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