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A 9 MHz–2.4 GHz Fully Integrated Transceiver IC for a Microfluidic-CMOS Platform Dedicated to Miniaturized Dielectric Spectroscopy

机译:9 MHz–2.4 GHz完全集成的收发器IC,用于微流体CMOS平台,专用于微型介电谱

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This paper presents a fully integrated transceiver IC as part of a self-sustained, microfluidic-CMOS platform for miniaturized dielectric spectroscopy (DS) from MHz to GHz. Fabricated in AMS 2P/4M RF CMOS, the transmitter (TX) part of the IC generates a single-tone sinusoidal signal with frequency tunability in the range of to excite a three-dimensional (3D), parallel-plate, capacitive sensor with a floating electrode and microfluidic channel for sample delivery. With a material-under-test (MUT) loaded into the sensor, the receiver (RX) part of the IC employs broadband frequency response analysis (bFRA) methodology to measure the amplitude and phase of the RF excitation signal after transmission through the sensor. A one-time, 6-point sensor calibration algorithm then extracts both the real and imaginary parts of the MUT complex permittivity, , from IC measurements of the sensor transmission characteristics in the voltage domain. The “sensor IC” is fully capable of differentiating among de-ionized (DI) water, phosphate-buffered saline (PBS), and alcoholic beverages in tests conducted at four excitation frequencies of , 500 MHz, 1.5 GHz, and 2.4 GHz generated by the TX. Moreover, permittivity readings of PBS by the sensor interfaced with the IC at six excitation frequencies in the range of are in excellent agreement (- ms error of 1.7% (real) and 7.2% (imaginary)) with those from bulk-solution reference measurements by commercial benchtop equipment. The total power consumption of the IC is with 1.5 V (analog) and 3.3 V (digital) supplies.
机译:本文提出了一种完全集成的收发器IC,它是自持的微流体CMOS平台的一部分,用于从MHz到GHz的小型化介电谱(DS)。 IC的发射器(TX)部分采用AMS 2P / 4M RF CMOS制成,可产生单音正弦信号,其频率可调性范围为,以激发3维(3D)平行板电容式传感器。浮动电极和微流体通道用于样品输送。将待测材料(MUT)装入传感器后,IC的接收器(RX)部分采用宽带频率响应分析(bFRA)方法来测量通过传感器传输后的RF激励信号的幅度和相位。然后,一次6点传感器校准算法从电压域中传感器传输特性的IC测量中提取MUT复介电常数的实部和虚部。 “传感器IC”完全有能力区分去离子水(DI),磷酸盐缓冲盐水(PBS)和酒精饮料,这些测试在四个激发频率分别为500 MHz,1.5 GHz和2.4 GHz下进行, TX。此外,与IC相连的传感器在范围内的六个激发频率下PBS的介电常数读数与批量溶液参考测量的读数具有极佳的一致性(-ms误差为1.7%(实际)和7.2%(虚构))。通过商用台式设备。 IC的总功耗为1.5 V(模拟)和3.3 V(数字)电源。

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