2008 |
30 | EE | Ivo Lattenberg,
Kamil Vrba:
Filters Eliminating Input Impedance of Input Current Terminal for High-Speed Analog Signal Processing.
ICN 2008: 567-571 |
29 | EE | Norbert Herencsar,
Kamil Vrba:
Tunable Current-Mode Multifunction Filter Using Universal Current Conveyors.
ICONS 2008: 1-6 |
28 | EE | Martin Minarcik,
Kamil Vrba:
Tunable Universal OTA-C Frequency Filter Design Using Signal-Flow Graphs.
ICONS 2008: 114-117 |
27 | EE | Jaroslav Koton,
Kamil Vrba:
Electronically Tunable Frequency Filters Based on Transformation Cells.
ICONS 2008: 260-264 |
26 | EE | Jan Jerabek,
Kamil Vrba:
Novel Universal Filter Using Only Two Current Active Elements.
ICONS 2008: 285-289 |
25 | EE | David Kubanek,
Kamil Vrba:
Second-Order State-Variable Filter with Current Operational Amplifiers.
ICONS 2008: 57-61 |
24 | EE | Martin Minarcik,
Kamil Vrba:
Single-Input Six-Output Voltage-Mode Filter Using Universal Voltage Conveyors.
IEICE Transactions 91-A(8): 2035-2037 (2008) |
2007 |
23 | EE | Michal Kohoutek,
Kamil Vrba:
Image Processing Method Based on Subpixel Analysis for Accurate Measurement of Dimensions.
ICN 2007: 70 |
22 | EE | Ivo Lattenberg,
Kamil Vrba:
Low Input-Impedance Current-Mirror for High-Speed Data Communication.
ICN 2007: 72 |
21 | EE | Martin Minarcik,
Kamil Vrba:
Continuous-Time Multifunctional Filters with Wide Bandwidth Using Universal Voltage Conveyors.
ICN 2007: 73 |
20 | EE | Jan Jerabek,
Kamil Vrba:
RF Pure Current-Mode Filters using Current Mirrors and Inverters.
PWC 2007: 545-556 |
19 | EE | Norbert Herencsar,
Kamil Vrba:
Multifunction RF Filters Using OTA.
PWC 2007: 557-568 |
18 | EE | Jaroslav Koton,
Kamil Vrba:
New Multifunctional Frequency Filter Working in Current-mode.
PWC 2007: 569-577 |
17 | EE | David Kubanek,
Kamil Vrba:
Second-Order Multifunction Filters with Current Operational Amplifiers.
PWC 2007: 578-584 |
16 | EE | Martin Minarcik,
Kamil Vrba:
Continuous - Time Active Filter Design Using Signal - Flow Graphs.
PWC 2007: 585-594 |
2006 |
15 | EE | Ivo Lattenberg,
Kamil Vrba:
Filters with Current Amplifiers for High-speed Communication.
ICN/ICONS/MCL 2006: 150 |
14 | EE | David Kubanek,
Kamil Vrba,
Radek Sponar:
Low-Pass Filter with UCC Suitable for Data Systems.
ICN/ICONS/MCL 2006: 153 |
13 | EE | Martin Minarcik,
Kamil Vrba:
Low-output and high-input impedance frequency filters using universal voltage conveyor for High-Speed Data Communication Systems.
ICN/ICONS/MCL 2006: 155 |
12 | EE | Jaroslav Koton,
Kamil Vrba,
Pavel Hanak:
Frequency Filter with Current Conveyors for Signal Processing of Data-Buses Working in the Current-mode.
ICN/ICONS/MCL 2006: 156 |
11 | EE | Radek Sponar,
Kamil Vrba,
David Kubanek:
Universal Current Conveyor and Universal Voltage Conveyor Measurements and Modelling.
ICN/ICONS/MCL 2006: 173 |
10 | EE | Pavel Hanak,
Kamil Vrba,
Jaroslav Koton:
Method of Magnetic Field Generation for Use in Dermal Magnetotherapy.
ICN/ICONS/MCL 2006: 193 |
2005 |
9 | EE | Ivo Lattenberg,
Kamil Vrba,
David Kubanek:
Signal Processing for High-Speed Data Communication Using Pure Current Mode Filters.
ICN (2) 2005: 410-416 |
8 | EE | Kamil Vrba,
Radek Sponar,
David Kubanek:
Current-Mode VHF High-Quality Analog Filters Suitable for Spectral Network Analysis.
ICN (2) 2005: 417-424 |
2002 |
7 | EE | Ivo Lattenberg,
Kamil Vrba,
Tomás Dostal,
I. Koudar:
Synthetic circuit elements of higher order with current conveyors.
APCCAS (1) 2002: 21-24 |
6 | EE | V. Novotny,
Kamil Vrba:
Novel voltage- and current-mode filter design.
APCCAS (1) 2002: 229-232 |
5 | EE | J. Cajka,
M. Olsak,
Kamil Vrba,
Ivo Lattenberg,
L. Koudar:
Novel immitance inverters.
APCCAS (1) 2002: 351-354 |
4 | EE | Z. Nagy,
Kamil Vrba:
Noise-resistant feature extraction using 2D techniques.
APCCAS (1) 2002: 397-400 |
3 | EE | Tomás Dostal,
Kamil Vrba,
Ivo Lattenberg:
Conveyor-based Cauer filters.
APCCAS (2) 2002: 415-418 |
2001 |
2 | | Ivo Lattenberg,
Kamil Vrba,
Dalibor Biolek:
Bipolar current differencing buffered amplifiers and its application.
SIP 2001: 376-379 |
1 | | J. Cajka,
Kamil Vrba,
Dalibor Biolek:
New procedure of active filter and structure design.
SIP 2001: 390-393 |