ASIC Current-Reuse Amplifier With MEMS Delta-E Magnetic Field Sensors

被引:0
作者
Wiegand, Patrick [1 ]
Simmich, Sebastian [1 ]
Ilgaz, Fatih [2 ]
Faupel, Franz [2 ]
Spetzler, Benjamin [3 ]
Rieger, Robert [1 ]
机构
[1] Univ Kiel, Fac Engn, Chair Networked Elect Syst, Dept Elect & Informat Engn, D-24143 Kiel, Germany
[2] Univ Kiel, Fac Engn, Chair Multicomponent Mat, Dept Mat Sci, D-24143 Kiel, Germany
[3] Ilmenau Univ Technol, Dept Elect Engn & Informat Technol, Micro & Nanoelect Syst, D-98693 Ilmenau, Germany
来源
IEEE OPEN JOURNAL OF CIRCUITS AND SYSTEMS | 2024年 / 5卷
关键词
Micromechanical devices; Application specific integrated circuits; Semiconductor device measurement; Magnetic field measurement; Voltage measurement; Sensitivity; Sensor systems; Magnetic fields; Noise measurement; Resonators; Multichannel amplifier; CMOS; NEF; MEMS resonator; magnetic field sensor; magnetoelectric sensor; delta-E effect; biomedical; NOISE;
D O I
10.1109/OJCAS.2024.3472124
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
An application specific integrated circuit (ASIC) and a custom-made microelectromechanical system (MEMS) sensor are presented, designed to function together as a sensor system for measuring low amplitude low frequency magnetic fields. The MEMS system comprises several free-standing double-wing magnetoelectric resonators with a size of 900 mu m x 150 mu m to measure alternating magnetic fields in the sub-kilohertz regime. It utilizes piezolelectric (AlN) and magnetostrictive (FeCoSiB) layers to exploit the delta-E effect for magnetic field sensing. On the ASIC a three-channel current-reuse amplifier with lateral bipolar transistors in the input stage is implemented occupying a chip area of 0.0864 mm(2). Measurements demonstrate a voltage gain of 40 dB with a 3-dB bandwidth of 75 kHz and an input referred noise floor of 8 nV/ root Hz while consuming 199 mu W per channel. The sensor system is capable of detecting magnetic fields with a limit of detection (LOD) of 16 nT/ root Hz for single sensor elements. By operating three sensor elements in parallel, one on each amplifier channel, the LOD is further reduced to 10 nT/ root Hz. Owing to the high reproducibility of the sensor elements, this improvement in the LOD is close to the ideal value of root 3 . The results imply that the system can be scaled to large numbers of sensor elements without principle obstacles.
引用
收藏
页码:398 / 407
页数:10
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