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F. J. Lidgey
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2020 – today
- 2020
- [j12]Rajasekhar Nagulapalli, Khaled Hayatleh, Steve Barker, Amr A. Tammam, F. John Lidgey, Nabil Yassine:
A High-Sensitivity and Low-Power Circuit for the Measurement of Abnormal Blood Cell Levels. J. Circuits Syst. Comput. 29(4): 2050061:1-2050061:14 (2020)
2010 – 2019
- 2019
- [j11]Rajasekhar Nagulapalli, Khaled Hayatleh, Steve Barker, Pantelis Georgiou, F. J. Lidgey:
A High Value, Linear and Tunable CMOS Pseudo-Resistor for Biomedical Applications. J. Circuits Syst. Comput. 28(6): 1950096:1-1950096:11 (2019) - [j10]Khaled Hayatleh, Saddam Zourob, Rajasekhar Nagulapalli, Steve Barker, Nabil Yassine, Pantelis Georgiou, F. J. Lidgey:
A High-Performance Skin Impedance Measurement Circuit for Biomedical Applications. J. Circuits Syst. Comput. 28(7): 1950110:1-1950110:15 (2019) - [j9]Rajasekhar Nagulapalli, Khaled Hayatleh, Steve Barker, Amr A. Tammam, Pantelis Georgiou, F. J. Lidgey:
A 0.55 V Bandgap Reference with a 59 ppm/°C Temperature Coefficient. J. Circuits Syst. Comput. 28(7): 1950120:1-1950120:12 (2019) - 2018
- [j8]Rajasekhar Nagulapalli, Khaled Hayatleh, Steve Barker, Sumathi Raparthy, Nabil Yassine, John Lidgey:
A 0.6 V MOS-Only Voltage Reference for Biomedical Applications with 40 ppm/∘C Temperature Drift. J. Circuits Syst. Comput. 27(8): 1850128:1-1850128:13 (2018) - 2014
- [j7]Nikolaos Terzopoulos, Khaled Hayatleh, Cristiana Sebu, F. J. Lidgey, Mohamed Ben-Esmael, Amr A. Tammam, Steve Barker:
Analysis and Design of a High Precision-High output impedance Tissue Current Driver for Medical Applications. J. Circuits Syst. Comput. 23(8) (2014) - 2013
- [j6]Mohamed Ben-Esmael, F. J. Lidgey, Khaled Hayatleh, Bryan L. Hart:
Gain-Bandwidth Trade-Off in the CMOS Cascode amplifier. J. Circuits Syst. Comput. 22(3) (2013) - 2012
- [c17]F. J. Lidgey, Mohamed Ben-Esmael, Khaled Hayatleh, Bryan L. Hart:
Cascode amplifier: A cautionary tale. CSNDSP 2012: 1-4 - [c16]Panavy Pookaiyaudom, Apisak Worapishet, F. J. Lidgey, Khaled Hayatleh, Christofer Toumazou:
Measurement of cell and bacterial activity using array-based ISFET Chemical Current-Conveyor in weak-inversion. ISCAS 2012: 2059-2062 - 2011
- [j5]T. Barry, G. Fuller, Khaled Hayatleh, F. John Lidgey:
Self-Calibrating Infrared Thermometer for Low-Temperature Measurement. IEEE Trans. Instrum. Meas. 60(6): 2047-2052 (2011) - 2010
- [j4]Ruiheng Wu, F. John Lidgey, Khaled Hayatleh, Bryan L. Hart:
Differential amplifier with improved gain-accuracy and linearity. Int. J. Circuit Theory Appl. 38(8): 829-844 (2010)
2000 – 2009
- 2008
- [c15]Panavy Pookaiyaudom, Chris Toumazou, F. J. Lidgey:
The chemical current-conveyor: a new microchip biosensor. ISCAS 2008: 3166-3169 - 2006
- [c14]Nikolaos Charalampidis, Khaled Hayatleh, Bryan L. Hart, F. John Lidgey:
A wide bandwidth voltage-follower with low distortion and high slew rate. ICECS 2006: 256-259 - 2005
- [c13]Nikolaos Terzopoulos, Khaled Hayatleh, Bryan L. Hart, F. J. Lidgey:
The collector-base resistance of a BJT. ECCTD 2005: 209-212 - 2004
- [c12]Amr A. Tammam, Khaled Hayatleh, Bryan L. Hart, F. John Lidgey:
A hierarchy of input stages for current feedback operational amplifiers. ISCAS (1) 2004: 821-824 - [c11]Amr A. Tammam, Khaled Hayatleh, Bryan L. Hart, F. John Lidgey:
High performance current-feedback op-amps. ISCAS (1) 2004: 825-828 - 2002
- [j3]J. Lee, Khaled Hayatleh, F. J. Lidgey, J. Drew:
Linear Bi-CMOS Transconductance for Gm-C Filter Applications. J. Circuits Syst. Comput. 11(3): 219-230 (2002) - [c10]J. Lee, Khaled Hayatleh, F. J. Lidgey, J. Drew:
Tuneable linear transconductance cell for Gm-C filter applications. ISCAS (4) 2002: 253-256 - [c9]Amr A. Tammam, Khaled Hayatleh, F. J. Lidgey:
Novel high performance current-feedback op-amp. ISCAS (1) 2002: 705-708 - [c8]J. Lee, Khaled Hayatleh, F. J. Lidgey:
Modified Gilbert transconductance multiplier. ISCAS (1) 2002: 733-736
1990 – 1999
- 1999
- [c7]Khaled Hayatleh, W. J. Su, F. J. Lidgey:
Improved current-feedback op-amp with good DC and CMRR performance. ISCAS (2) 1999: 263-266 - 1996
- [j2]Khaled Hayatleh, F. J. Lidgey, S. Porta:
Comparing Dual Current-Conveyor Configurations. J. Circuits Syst. Comput. 6(5): 475-484 (1996) - 1994
- [c6]Khaled Hayatleh, S. Porta, F. J. Lidgey:
High Frequency Performance of Current-Mode Precision Full Wave Rectifiers. ISCAS 1994: 401-404 - [c5]W. J. Su, F. J. Lidgey, S. Porta, Q. S. Zhu:
Analysis of IC Op-Amp Power-Supply Current Sensing. ISCAS 1994: 541-544 - 1993
- [j1]Qingshen Zhu, William R. B. Lionheart, F. John Lidgey, Chris N. McLeod, Kevin Paulson, Michael Pidcock:
An adaptive current tomograph using voltage sources. IEEE Trans. Biomed. Eng. 40(2): 163-168 (1993) - [c4]Chris Toumazou, John Lidgey:
Current-feedback Versus Voltage Feedback Amplifiers: History, Insight and Relationships. ISCAS 1993: 1046-1049 - [c3]F. J. Lidgey, Khaled Hayatleh, Chris Toumazou:
New Current-mode Precision Rectifiers. ISCAS 1993: 1322-1325 - [c2]Q. S. Zhu, F. J. Lidgey, W. J. Su:
High CMRR, Second Generation Current-mode Instrumentation Amplifiers. ISCAS 1993: 1326-1328 - [c1]W. J. Su, Q. S. Zhu, F. J. Lidgey:
Novel applications of row-semi-indefinite networks. ISCAS 1993: 2275-2278
Coauthor Index
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