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A frequency-shift based CMOS magnetic biosensor with spatially uniform sensor transducer gain

机译:基于频移的CMOS磁性生物传感器,具有空间均匀的传感器换能器增益

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摘要

This paper presents a scalable and ultrasensitive magnetic biosensing scheme based on on-chip LC resonance frequency-shifting. The sensor transducer gain is demonstrated as being location-dependent on the sensing surface and proportional to the local polarization magnetic field strength |B|^2 generated by the sensing inductor. To improve the gain uniformity, a bowl-shape stacked coil together with floating shimming metal is proposed for the inductor design. As an implementation example, a 16-cell sensor array is designed in a 45nm CMOS process. The spatially uniform sensor gain of the array is verified by testing micron-size magnetic particles randomly placed on the sensing surface. The Correlated-Double-Counting (CDC) noise cancellation scheme is also implemented in the presented design, which achieves a noise suppression of 10.6dB with no power overhead. Overall, the presented sensor demonstrates a dynamic range of at least 85.4dB.
机译:本文提出了一种基于片上LC共振移频的可扩展且超灵敏的磁性生物传感方案。传感器换能器增益被证明是位置依赖于感测表面,并且与感测电感器产生的局部极化磁场强度| B | ^ 2成比例。为了提高增益均匀性,提出了一种碗形堆叠线圈以及浮动匀场金属用于电感器设计。作为一个实现示例,以45nm CMOS工艺设计了16个单元的传感器阵列。通过测试随机放置在传感表面上的微米级磁性颗粒,可以验证阵列在空间上均匀的传感器增益。在本设计中还实现了相关双计数(CDC)噪声消除方案,该方案实现了10.6dB的噪声抑制,而没有功耗。总的来说,所提出的传感器具有至少85.4dB的动态范围。

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