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A 2.2μW 15b incremental delta-sigma ADC with output-driven input segmentation Conference paper
Wang B., Law M.K., Mohamad S., Bermak A.. A 2.2μW 15b incremental delta-sigma ADC with output-driven input segmentation[C], 2016, 7-8.
Authors:  Wang B.;  Law M.K.;  Mohamad S.;  Bermak A.
Favorite | TC[WOS]:1 TC[Scopus]:2 | Submit date:2019/02/14
Dual-feedback Σs Modulator  Incremental Delta-sigma Adc  Integrator Multiplexing  Low Power Adc  
Erratum to: Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition) (Autophagy, 12, 1, 1-222, 10.1080/15548627.2015.1100356 Other
2016-01-01
Authors:  Klionsky, Daniel J.;  Abdelmohsen, Kotb;  Abe, Akihisa;  Abedin, Md Joynal;  Abeliovich, Hagai; et al.
Favorite | TC[WOS]:407 TC[Scopus]:24 | Submit date:2022/07/20
BJT Process Spread Compensation Utilizing Base Recombination Current in Standard CMOS Journal article
Wang B., Law M.K., Bermak A., Tang F.. BJT Process Spread Compensation Utilizing Base Recombination Current in Standard CMOS[J]. IEEE Electron Device Letters, 2015, 36(11), 1111-1113.
Authors:  Wang B.;  Law M.K.;  Bermak A.;  Tang F.
Favorite | TC[WOS]:3 TC[Scopus]:4 | Submit date:2019/02/14
Bipolar Junction Transistor (Bjt) Process Spread  Spread Compensation  Trimless Cmos Voltage Reference  
Design and fabrication of a two-axis micro-motion machine for precision alignment Conference paper
Law M.K., Chiang K.C., Xu Q.. Design and fabrication of a two-axis micro-motion machine for precision alignment[C], 2015, 958-963.
Authors:  Law M.K.;  Chiang K.C.;  Xu Q.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2018/12/23
Decoupling  Fea Simulation  Flexure Hinge  Precision Alignment  Xz Micropositioning Stage  
A precision CMOS voltage reference exploiting silicon bandgap narrowing effect Journal article
Wang B., Law M.K., Bermak A.. A precision CMOS voltage reference exploiting silicon bandgap narrowing effect[J]. IEEE Transactions on Electron Devices, 2015, 62(7), 2128-2135.
Authors:  Wang B.;  Law M.K.;  Bermak A.
Favorite | TC[WOS]:22 TC[Scopus]:27 | Submit date:2019/02/14
Bandgap Narrowing (Bgn)  Bipolar Junction Transistor (Bjt) Curvature Reduction  Bjt Noise  Cmos Bandgap Voltage Reference (Bgr)  Curvature Correction  Process Spread  Temperature Coefficient (Tc)  
A low-cost capacitive relative humidity sensor for food moisture monitoring application Conference paper
Wang B., Law M.K., Bermak A.. A low-cost capacitive relative humidity sensor for food moisture monitoring application[C], 2012, 95-99.
Authors:  Wang B.;  Law M.K.;  Bermak A.
Favorite | TC[WOS]:6 TC[Scopus]:7 | Submit date:2019/02/14
A sub-1V BJT-based CMOS temperature sensor from 55°C to 125°C Conference paper
Wang B., Law M.K., Tang F., Bermak A.. A sub-1V BJT-based CMOS temperature sensor from 55°C to 125°C[C], 2012, 3114-3117.
Authors:  Wang B.;  Law M.K.;  Tang F.;  Bermak A.
Favorite | TC[WOS]:0 TC[Scopus]:1 | Submit date:2019/02/14
Confession session: Learning from others mistakes Conference paper
Abshire P., Bermak A., Berner R., Cauwenberghs G., Chen S., Christen J.B., Constandinou T., Culurciello E., Dandin M., Datta T., Delbruck T., Dudek P., Eftekhar A., Etienne-Cummings R., Indiveri G., Law M.K., Linares-Barranco B., Tapson J., Tang W., Zhai Y.. Confession session: Learning from others mistakes[C], 2011, 1149-1162.
Authors:  Abshire P.;  Bermak A.;  Berner R.;  Cauwenberghs G.;  Chen S.; et al.
Favorite | TC[WOS]:3 TC[Scopus]:3 | Submit date:2019/02/14
Spike latency coding in biologically inspired microelectronic nose Conference paper
Chen H.T., Ng K.T., Bermak A., Law M.K., Martinez D.. Spike latency coding in biologically inspired microelectronic nose[C], 2011, 160-168.
Authors:  Chen H.T.;  Ng K.T.;  Bermak A.;  Law M.K.;  Martinez D.
Favorite | TC[WOS]:44 TC[Scopus]:57 | Submit date:2019/02/14
Electronic nose  gas sensors  neuromorphic engineering  olfactory system  spiking neurons  
A low-power energy-harvesting logarithmic CMOS image sensor with reconfigurable resolution using two-level quantization scheme Journal article
Law M.K., Bermak A., Shi C.. A low-power energy-harvesting logarithmic CMOS image sensor with reconfigurable resolution using two-level quantization scheme[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2011, 58(2), 80-84.
Authors:  Law M.K.;  Bermak A.;  Shi C.
Favorite | TC[WOS]:36 TC[Scopus]:40 | Submit date:2019/02/14
Energy Harvesting  Low-power Cmos Image Sensor  Reconfigurable Resolution  Two-level Quantization