Title :
A New Method of Temperature Drift Compensation for Highly Sensitive Magnetoresistive Biochips
Author :
Han, S. ; Xu, L. ; Wang, S.X. ; Xie, J. ; Sun, S.
Author_Institution :
Stanford Univ., Stanford
Abstract :
New bio-detection methods based on giant magnetoresistance (GMR) or tunneling magnetoresis-tance (TMR) sensors and magnetic nanoparticles are attracting much attention due to their high sensitivity and low cost. In literature, signal to noise ratio (SNR) is often used to estimate detection limit. However, because the actual bio-signal is obtained by differentiating signals before and after biological reactions, large temperature coefficient (>1000PPM/degC) of these devices can result into significant temperature drifts during the biological reaction, which may limit the resolution of the system. This will further degrade when considering the integration of biosensors and integrated circuit (IC) since analog components are also exposed to chemical solutions and contribute to drift. In this paper, a drift free detection scheme called "Double Modulation-Dual Bias" (DMDB) method is proposed as a solution to this issue.
Keywords :
biosensors; compensation; giant magnetoresistance; magnetic particles; magnetic sensors; magnetoresistive devices; tunnelling magnetoresistance; analog components; bio-detection methods; bio-signal; biological reactions; biosensors; chemical solutions; double modulation-dual bias method; drift free detection scheme; giant magnetoresistance; highly sensitive magnetoresistive biochips; integrated circuit; magnetic nanoparticles; signal to noise ratio; temperature drift compensation; tunneling magnetoresistance sensors; Analog integrated circuits; Biosensors; Costs; Giant magnetoresistance; Magnetic sensors; Magnetic tunneling; Nanoparticles; Signal to noise ratio; Temperature sensors; Tunneling magnetoresistance;
Conference_Titel :
Magnetics Conference, 2006. INTERMAG 2006. IEEE International
Conference_Location :
San Diego, CA
Print_ISBN :
1-4244-1479-2
DOI :
10.1109/INTMAG.2006.375607