2008 |
26 | EE | Tom J. Kazmierski,
Dafeng Zhou,
Bashir M. Al-Hashimi:
Efficient circuit-level modelling of ballistic CNT using piecewise non-linear approximation of mobile charge density.
DATE 2008: 146-151 |
25 | EE | Leran Wang,
Tom J. Kazmierski,
Bashir M. Al-Hashimi,
Stephen P. Beeby,
Russel N. Torah:
Integrated approach to energy harvester mixed technology modelling and performance optimisation.
DATE 2008: 704-709 |
24 | EE | Dafeng Zhou,
Tom J. Kazmierski,
Bashir M. Al-Hashimi:
VHDL-AMS Implementation of a Numerical Ballistic CNT Model for Logic Circuit Simulation.
FDL 2008: 94-98 |
2007 |
23 | EE | Leran Wang,
Chenxu Zhao,
Tom J. Kazmierski:
An Extension to VHDL-AMS for AMS Systems with Partial Differential Equations.
FDL 2007: 12-17 |
2006 |
22 | EE | Hessa Al-Junaid,
Tom J. Kazmierski:
HDL models of ferromagnetic core hysteresis using timeless discretisation of the magnetic slope.
DATE 2006: 644-645 |
21 | EE | Hessa Al-Junaid,
Tom J. Kazmierski,
Leran Wang:
SystemC-A Modeling of an Automotive Seating Vibration Isolation System.
FDL 2006: 107-113 |
20 | EE | Hessa Al-Junaid,
Tom J. Kazmierski,
Peter R. Wilson,
Jerzy Baranowski:
Timeless Discretization of Magnetization Slope in the Modeling of Ferromagnetic Hysteresis.
IEEE Trans. on CAD of Integrated Circuits and Systems 25(12): 2757-2764 (2006) |
2005 |
19 | | Leran Wang,
Tom J. Kazmierski:
VHDL-AMS modeling of an automotive vibration isolation seating system.
Circuits, Signals, and Systems 2005: 160-164 |
18 | EE | Xianqiang Ren,
Tom J. Kazmierski:
Linearly graded behavioural analogue performance models.
FDL 2005: 147-153 |
17 | EE | M. Burford,
Tom J. Kazmierski:
A VHDL-AMS based Time-Domain Skin Depth Model.
FDL 2005: 197-209 |
2004 |
16 | EE | Peter R. Wilson,
J. Neil Ross,
Andrew D. Brown,
Tom J. Kazmierski,
Jerzy Baranowski:
Efficient Mixed-Domain Behavioural Modeling of Ferromagnetic Hysteresis Implemented in VHDL-AMS.
DATE 2004: 742-743 |
15 | EE | Peter R. Wilson,
Tom J. Kazmierski:
A novel approach to mixed-domain behavioral modeling of ferromagnetic hysteresis in VHDL-AMS.
FDL 2004: 76-80 |
14 | | Tom J. Kazmierski,
Fazrena A. Hamid:
Behavioral modelling of RF filters in VHDL-AMS for automated architectural and parametric optimization.
ISCAS (1) 2004: 81-84 |
13 | | Hessa Al-Junaid,
Tom J. Kazmierski:
SEAMS - a SystemC environment with analog and mixed-signal extensions.
ISCAS (5) 2004: 281-284 |
2003 |
12 | EE | Tom J. Kazmierski,
Xing Q. Yang:
A Secure Web-Based Framework for Electronic System Level Design.
DATE 2003: 11140-11143 |
11 | EE | Fazrena A. Hamid,
Tom J. Kazmierski:
FIST - a VHDL-AMS based architectural synthesis strategy for integrated high-frequency analogue filters.
FDL 2003: 163-175 |
10 | EE | C. Isaia,
Tom J. Kazmierski:
SystemC - a powerful system-level modelling platform for digital and mixed-signal hardware/software co-design.
FDL 2003: 45-54 |
9 | EE | Tom J. Kazmierski,
Hessa Al-Junaid:
Synchronization of analogue and digital solvers in mixed-signal simulation on a SystemC platform.
FDL 2003: 65-72 |
2002 |
8 | EE | Tom J. Kazmierski,
Neil Clayton:
A Two-Tier Distributed Electronic Design Framework.
DATE 2002: 227-231 |
7 | EE | Fazrena A. Hamid,
Tom J. Kazmierski:
Synthesis and optimization of analog VLSI filters from VHDL-AMS parse trees.
ISCAS (1) 2002: 749-752 |
6 | EE | J. A. Lopez,
G. Domenech,
R. Ruiz,
Tom J. Kazmierski:
Automated high level synthesis of hardware building blocks present in ART-based neural networks, from VHDL-AMS descriptions.
ISCAS (4) 2002: 77-80 |
1998 |
5 | EE | Tom J. Kazmierski:
A Formal Description of VHDL-AMS Analogue Systems.
DATE 1998: 916-920 |
4 | EE | Tom J. Kazmierski:
Fuzzy-logic digital-analogue interfaces for accurate mixed-signal simulation.
DATE 1998: 941-944 |
3 | EE | David Parsons,
Tom J. Kazmierski:
Run Time Reusability in Object-Oriented Schematic Capture.
ECOOP Workshops 1998: 561-562 |
1992 |
2 | EE | Andrew D. Brown,
Mark Zwolinski,
Ken G. Nichols,
Tom J. Kazmierski:
Confidence in mixed-mode circuit simulation.
Computer-Aided Design 24(2): 115-118 (1992) |
1991 |
1 | | Tom J. Kazmierski,
Andrew D. Brown,
Ken G. Nichols,
Mark Zwolinski:
A General Purpose Network Solving System.
VLSI 1991: 147-156 |