Items where Author is "Jan, M.T."
Article
Ahmad, F. and Amjad, W.A. and Mehmood, F. and Jan, M.T. and Dennis, J.O. and Khir, M.H.B.M. (2021) Design, modelling and testing of CMOS-MEMS switch. Microsystem Technologies, 27 (7). pp. 2543-2552. ISSN 09467076
Jan, M.T. and Ahmad, F. and Hamid, N.H.B. and Khir, M.H.B.M. and Shoaib, M. and Ashraf, K. (2016) Experimental investigation of temperature and relative humidity effects on resonance frequency and quality factor of CMOS-MEMS paddle resonator. Microelectronics Reliability, 63. pp. 82-89. ISSN 00262714
Jan, M.T. and Ahmad, F. and Hamid, N.H.B. and Md Khir, M.H.B. and Ashraf, K. and Shoaib, M. (2016) Temperature dependent Young's modulus and quality factor of CMOS-MEMS resonator: Modelling and experimental approach. Microelectronics Reliability, 57. pp. 64-70. ISSN 00262714
Mirza, A. and Hamid, N.H. and Khir, M.H.M. and Dennis, J.O. and Ashraf, K. and Shoaib, M. and Jan, M.T. (2014) A CMOS-MEMS cantilever sensor for capnometric applications. IEICE Electronics Express, 11 (9). ISSN 13492543
Mirza, A. and Hamid, N.H. and Md Khir, M.H. and Ashraf, K. and Jan, M.T. and Riaz, K. (2012) Design, modeling and simulation of CMOS-MEMS piezoresistive cantilever based carbon dioxide gas sensor for capnometry. Advanced Materials Research, 403-40. pp. 3769-3774. ISSN 10226680
Conference or Workshop Item
Shoaib, M. and Hamid, N.H. and Jan, M.T. and Ali, N.B.Z. (2017) Effects of edge cracks on the dynamics of piezoelectric cantilever based MEMS sensor. In: UNSPECIFIED.
Jan, M.T. and Hamid, N.H.B. and Md Khir, M.H.B. and Shoaib, M. and Mirza, A. (2014) Influence of crack growths on the performances of cantilever based MEMS devices: Design and simulations. In: UNSPECIFIED.
Shoaib, M. and Hamid, N.H.B. and Ali, N.B.B.Z. and Jan, M.T. and Mirza, A. (2014) Study of nonlinear pull-in voltage effects in electrostatic cantilever-based MEMS sensors. In: UNSPECIFIED.
Mirza, A. and Hamid, N.H. and Khir, M.H.M. and Dennis, J.O. and Ashraf, K. and Jan, M.T. and Shoaib, M. (2013) Analytical modeling and simulation of a CMOS-MEMS cantilever based CO2 sensor for medical applications. In: UNSPECIFIED.