4.7 Article

Advances and key technologies in magnetoresistive sensors with high thermal stabilities and low field detectivities

期刊

APL MATERIALS
卷 10, 期 5, 页码 -

出版社

AIP Publishing
DOI: 10.1063/5.0087311

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资金

  1. National Research Foundation (NRF) - MSIT [NRF-2018R11025511]
  2. R&D program of MOTIE [20011264]
  3. Korea Evaluation Institute of Industrial Technology (KEIT) [20011264] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Advancements in micro- and nanotechnology have facilitated the rapid adoption of spintronic sensors with high sensitivity and ultra-low field detectivity. These sensors are well-suited for smart sensing applications in various fields and possess characteristics that make them highly competitive, including customization and miniaturization capabilities, ease of integration, and cost-effectiveness for mass production.
Advances in micro- and nanotechnology have led to rapid employment of spintronic sensors in both recording and non-recording applications. These state-of-the-art magnetoresistive spintronic sensors exhibit high sensitivities and ultra-low field detectivities that meet requirements of smart sensing applications in the fields of internet of things, mobile devices, space technology, aeronautics, magnetic flux leakage, domotics, the environment, and healthcare. Moreover, their ability to be customized and miniaturized, ease of integration, and cost-effective nature make these sensors uniquely competitive with regard to mass production. In this study, we discuss magnetoresistive field sensors based on the planar-Hall effect, which are very promising for their high sensitivity and sensing ultra-low magnetic fields. We provide a detailed historical overview and discuss recent dramatic developments in several application fields. In addition, we discuss sensor material property requirements, design architectures, noise-reduction techniques, and sensing capabilities, along with the high repeatabilities and good flexibility characteristics of such devices. All of these high-performance characteristics apply across a wide temperature range and make the sensor robust when used in various novel applications. The sensor also appears promising because it is cost-effective and can be used in micro-sensing applications. Recently, a noteworthy study that combined integrated planar-Hall magnetoresistive sensors with microfluidic channels revealed their potential for highly localized magnetic field sensing. This characteristic makes them suitable for point-of-care-technologies that require resolutions of a few pT at room temperature. (C) 2022 Author(s).

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