2007 |
9 | EE | Nader Safavian,
G. Reza Chaji,
S. J. Ashtiani,
Arokia Nathan,
John A. Rowlands:
A novel current scaling active pixel sensor with correlated double sampling readout circuit for real time medical x-ray imaging.
ISCAS 2007: 93-96 |
2006 |
8 | EE | G. Reza Chaji,
Arokia Nathan:
High-precision, fast current source for large-area current-programmed a-Si flat panels.
ISCAS 2006 |
2004 |
7 | EE | Karim S. Karim,
P. Servati,
Arokia Nathan:
High voltage amorphous silicon TFT for use in large area applications.
Microelectronics Journal 35(3): 311-315 (2004) |
2002 |
6 | EE | Arokia Nathan,
Byung-kyu Park,
Qinghua Ma,
Andrei Sazonov,
John A. Rowlands:
Amorphous silicon technology for large area digital X-ray and optical imaging.
Microelectronics Reliability 42(4-5): 735-746 (2002) |
2001 |
5 | EE | Karim S. Karim,
P. Servati,
N. Mohan,
Arokia Nathan,
John A. Rowlands:
VHDL-AMS modeling and simulation of a passive pixel sensor in a-Si: H technology for medical imaging.
ISCAS (5) 2001: 479-482 |
1999 |
4 | EE | Hoan H. Pham,
Arokia Nathan:
An integral equation of the second kind for computation of capacitance.
IEEE Trans. on CAD of Integrated Circuits and Systems 18(10): 1435-1441 (1999) |
1995 |
3 | EE | Asim Salim,
Tajinder Manku,
Arokia Nathan:
Modeling of magnetic field sensitivity of bipolar magnetotransistors using HSPICE.
IEEE Trans. on CAD of Integrated Circuits and Systems 14(4): 464-469 (1995) |
1991 |
2 | EE | Walter Allegretto,
Arokia Nathan,
Henry Baltes:
Numerical analysis of magnetic-field-sensitive bipolar devices.
IEEE Trans. on CAD of Integrated Circuits and Systems 10(4): 501-511 (1991) |
1990 |
1 | EE | Arokia Nathan,
Henry Baltes,
Walter Allegretto:
Review of physical models for numerical simulation of semiconductor microsensors.
IEEE Trans. on CAD of Integrated Circuits and Systems 9(11): 1198-1208 (1990) |