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Krzysztof Górecki
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2020 – today
- 2024
- [c42]Krzysztof Górecki, Przemyslaw Ptak:
Modeling Dynamic Properties of an Alkaline Electrolyzer. ACIT 2024: 40-44 - [c41]Krzysztof Górecki, Przemyslaw Ptak:
Analysis of an Influence of the Colour of the Emitted Light on Dynamic Properties of Power LEDs. MIXDES 2024: 207-210 - [c40]Wojciech Kowalke, Pawel Krawczyk, Krzysztof Górecki:
Predicting the Workload of the Repair Department in a Company Producing Electronic Modules. MIXDES 2024: 211-215 - 2023
- [c39]Krzysztof Górecki, Kacper Bogun:
Modelling Properties of Batteries using the SPICE Software. ACIT 2023: 631-634 - [c38]Przemyslaw Ptak, Krzysztof Górecki, Grzegorz Stankiewicz:
Investigations on Properties of a Laboratory System for Wireless Power Transfer. MIXDES 2023: 183-187 - [c37]Kalina Detka, Krzysztof Górecki:
Comparison of Methods for Thermal Parameters Measurements of an Air Transformer. MIXDES 2023: 191-195 - [c36]Krzysztof Górecki, Przemyslaw Kuryllo:
Investigations on an Influence of Selected Factors on Thermal Phenomena in Planar Transformers. MIXDES 2023: 207-211 - 2022
- [c35]Krzysztof Górecki, Pawel Górecki:
Influence of the IGBT Module Thermal Model Form on the Accuracy of Electrothermal Computations. MIXDES 2022: 136-141 - [c34]Krzysztof Górecki, Krzysztof Posobkiewicz:
Influence of the Measurement Method and the Cooling System on the Obtained Values of the Junction Temperature of Power MOSFETs. MIXDES 2022: 142-147 - 2021
- [j21]Krzysztof Górecki, Kalina Detka:
Improved Method for Measuring Power Losses in the Inductor Core. IEEE Trans. Instrum. Meas. 70: 1-10 (2021) - [c33]Krzysztof Górecki, Krzysztof Posobkiewicz:
Comparison of the Usefulness of Selected Thermo-sensitive Parameters of Power MOSFETs. MIXDES 2021: 159-164 - [c32]Krzysztof Górecki, Przemyslaw Ptak, Lukasz Bruski:
Spatial Radiation Patterns of Selected Solid State Light Sources. MIXDES 2021: 222-227 - 2020
- [j20]Krzysztof Górecki, Malgorzata Godlewska:
Modelling characteristics of the impulse transformer in a wide frequency range. Int. J. Circuit Theory Appl. 48(5): 750-761 (2020) - [j19]Krzysztof Górecki, Przemyslaw Ptak:
New Method of Measurements Transient Thermal Impedance and Radial Power of Power LEDs. IEEE Trans. Instrum. Meas. 69(1): 212-220 (2020) - [c31]Mykola Dyvak, Krzysztof Górecki, Janusz Zarebski, Natalia Porplytsya, Jacek Dabrowski, Ewa Krac:
Mathematical Model of Dynamics of Generated Electric Power by Photovoltaic Installation Taking into Account a Seasonality Factor. ACIT 2020: 117-121 - [c30]Natalia Porplytsya, Mykola Dyvak, Janusz Zarebski, Krzysztof Górecki, Yurii Maslyiak:
Modeling of Photovoltaic Installation Performance Taking into Account Seasonal Phenomena of Different Climate Zones. CSIT 2020: 433-446 - [c29]Krzysztof Górecki, Przemyslaw Ptak, Marcin Janicki:
Comparison of Set-ups Dedicated to Measure Thermal Parameters of Power LEDs. MIXDES 2020: 127-132 - [c28]Krzysztof Górecki, Pawel Górecki:
Investigations Properties of Selected Methods of Measurements of Thermal Parameters of the IGBT. MIXDES 2020: 133-138 - [c27]Przemyslaw Ptak, Krzysztof Górecki, Jakub Heleniak:
An Influence of the Operation Mode of a LED Lamp of the HUE Type on Its Electrical and Optical Parameters. MIXDES 2020: 204-209
2010 – 2019
- 2019
- [j18]Krzysztof Górecki, Kalina Detka:
Application of Average Electrothermal Models in the SPICE-Aided Analysis of Boost Converters. IEEE Trans. Ind. Electron. 66(4): 2746-2755 (2019) - [j17]Krzysztof Górecki, Pawel Górecki, Janusz Zarebski:
Measurements of Parameters of the Thermal Model of the IGBT Module. IEEE Trans. Instrum. Meas. 68(12): 4864-4875 (2019) - [c26]Mykola Dyvak, Krzysztof Górecki, Janusz Zarebski, Natalia Porplytsya, Jacek Dqbrowski, Ewa Krac:
Mathematical Model of Weather Conditions Influence on Properties of Photovoltaic Installation and Method of its Identification. ACIT 2019: 35-39 - [c25]Krzysztof Górecki, Przemyslaw Ptak:
Investigations of lnfluence of Properties of PCB on Thermal and Optical Parameters of the LED Module. MIXDES 2019: 273-277 - [c24]Pawel Górecki, Krzysztof Górecki:
Modelling a Half-bridge de-de Converter Including the IGBT Module with Thermal Phenomena Taken into Account. MIXDES 2019: 278-282 - [c23]Marcin Janicki, Lukasz Starzak, Tomasz Torzewicz, Krzysztof Górecki, Przemyslaw Ptak:
Thermal Characterisation of Colour Power LEDs. MIXDES 2019: 283-286 - 2018
- [j16]Krzysztof Górecki, Przemyslaw Ptak:
Modeling power supplies of LED lamps. Int. J. Circuit Theory Appl. 46(3): 629-636 (2018) - [j15]Krzysztof Górecki, Pawel Górecki, Janusz Zarebski:
Electrical model of the alkaline electrolyser dedicated for SPICE. Int. J. Circuit Theory Appl. 46(5): 1044-1054 (2018) - [j14]Krzysztof Górecki, Przemyslaw Ptak:
New dynamic electro-thermo-optical model of power LEDs. Microelectron. Reliab. 91: 1-7 (2018) - [c22]Krzysztof Górecki, Przemyslaw Ptak, Marcin Janicki, Tomasz Torzewicz:
Influence of Cooling Conditions of Power LEDs on Their Electrical, Thermal and Optical Parameters. MIXDES 2018: 237-242 - [c21]Jacek Dabrowski, Ewa Krac, Krzysztof Górecki:
New Model of Solar Cells for SPICE. MIXDES 2018: 338-342 - 2017
- [j13]Pawel Górecki, Krzysztof Górecki, Janusz Zarebski:
Modelling the temperature influence on dc characteristics of the IGBT. Microelectron. Reliab. 79: 96-103 (2017) - [j12]Krzysztof Górecki, Przemyslaw Ptak:
Modelling LED lamps in SPICE with thermal phenomena taken into account. Microelectron. Reliab. 79: 440-447 (2017) - [c20]Krzysztof Górecki, Krzysztof Gorski:
Compact thermal model of planar transformers. MIXDES 2017: 345-350 - [c19]Krzysztof Górecki, Jacek Dabrowski, Ewa Krac, Janusz Zarebski:
Modelling the influence of weather conditions on properties of the photovoltaic installation. MIXDES 2017: 366-371 - 2016
- [c18]Krzysztof Górecki, Pawel Górecki, Ewa Krac:
Modelling simple photovoltaic systems with thermal phenomena taken into account. MIXDES 2016: 276-281 - [c17]Malgorzata Godlewska, Krzysztof Górecki:
Modelling the half-bridge dc-dc converter with selfheating taken into account. MIXDES 2016: 282-287 - [c16]Krzysztof Górecki, Damian Bisewski, Janusz Zarebski, Ryszard Kisiel, Marcin Mysliwiec:
High-temperature properties of Schottky diodes made of silicon carbide. MIXDES 2016: 382-386 - 2015
- [j11]Krzysztof Górecki:
Modelling mutual thermal interactions between power LEDs in SPICE. Microelectron. Reliab. 55(2): 389-395 (2015) - [c15]Krzysztof Górecki, Janusz Zarebski, Kalina Detka:
Application of the electrothermal average inductor model for analyses of boost converters. MIXDES 2015: 417-421 - [c14]Krzysztof Górecki, Przemyslaw Ptak:
Modelling power LEDs with thermal phenomena taken into account. MIXDES 2015: 431-435 - 2014
- [j10]Krzysztof Górecki, Malgorzata Rogalska:
The compact thermal model of the pulse transformer. Microelectron. J. 45(12): 1795-1799 (2014) - [j9]Krzysztof Górecki, Malgorzata Rogalska, Janusz Zarebski:
Parameter estimation of the electrothermal model of the ferromagnetic core. Microelectron. Reliab. 54(5): 978-984 (2014) - [c13]Krzysztof Górecki, Pawel Górecki:
Modelling the influence of self-heating on characteristics of IGBTs. MIXDES 2014: 298-302 - [c12]Krzysztof Górecki, Przemyslaw Ptak:
The influence of the mounting manner of the power LEDs on its thermal and optical parameters. MIXDES 2014: 303-308 - [c11]Krzysztof Górecki, Janusz Zarebski:
The influence of the selected factors on transient thermal impedance of semiconductor devices. MIXDES 2014: 309-314 - 2013
- [c10]Janusz Zarebski, Krzysztof Górecki, Jacek Dabrowski:
Measuring system for determining thermal parameters of semiconductor devices. MIXDES 2013: 316-320 - [c9]Krzysztof Górecki, Pawel Górecki:
The dc measurement method of thermal resistance of IGBTs. MIXDES 2013: 333-337 - [c8]Krzysztof Górecki, Malgorzata Rogalska, Janusz Zarebski:
Parameter estimation of the electrothermal model of the ferromagnetic core. MIXDES 2013: 435-439
2000 – 2009
- 2009
- [j8]Krzysztof Górecki, Janusz Zarebski:
Electrothermal analysis of the self-excited push-pull DC-DC converter. Microelectron. Reliab. 49(4): 424-430 (2009) - [j7]Krzysztof Górecki:
Non-linear average electrothermal models of buck and boost converters for SPICE. Microelectron. Reliab. 49(4): 431-437 (2009) - 2008
- [j6]Krzysztof Górecki:
A new electrothermal average model of the diode-transistor switch. Microelectron. Reliab. 48(1): 51-58 (2008) - [j5]Janusz Zarebski, Krzysztof Górecki:
Electrothermal compact macromodel of monolithic switching voltage regulator MC34063A. Microelectron. Reliab. 48(10): 1703-1710 (2008) - [c7]Janusz Zarebski, Krzysztof Górecki:
Modelling TrenchMOSFETs in SPICE. ICECS 2008: 73-76 - [c6]Krzysztof Górecki, Janusz Zarebski:
The method of a fast electrothermal transient analysis of a buck converter. ICECS 2008: 630-633 - 2007
- [j4]Janusz Zarebski, Krzysztof Górecki:
Spice-aided modelling of the UC3842 current mode PWM controller with selfheating taken into account. Microelectron. Reliab. 47(7): 1145-1152 (2007) - [j3]Janusz Zarebski, Krzysztof Górecki:
A New Method for the Measurement of the Thermal Resistance of the Monolithic Switched Regulator LT1073. IEEE Trans. Instrum. Meas. 56(5): 2101-2104 (2007) - [j2]Janusz Zarebski, Krzysztof Górecki:
A New Measuring Method of the Thermal Resistance of Silicon p-n Diodes. IEEE Trans. Instrum. Meas. 56(6): 2788-2794 (2007) - 2006
- [j1]Janusz Zarebski, Krzysztof Górecki:
The electrothermal macromodel of voltage mode PWM controllers for SPICE. Microelectron. J. 37(8): 728-734 (2006) - 2005
- [c5]Krzysztof Górecki, Witold J. Stepowicz, Janusz Zarebski:
Functional and catastrophic thermal failures in bipolar electronic circuits. ICECS 2005: 1-4 - 2003
- [c4]Janusz Zarebski, Krzysztof Górecki:
The new form of electrothermal model of MA7805 positive voltage regulator. ICECS 2003: 1105-1108 - [c3]Krzysztof Górecki, Janusz Zarebski, Krzysztof Posobkiewicz:
The electrothermal macromodel of the monolithic voltage regulator LT1073 for SPICE. ICECS 2003: 1113-1116 - [c2]Janusz Zarebski, Krzysztof Górecki:
The electrothermal model of the linear power supplies. ISCAS (1) 2003: 369-372 - 2002
- [c1]Janusz Zarebski, Krzysztof Górecki:
On some properties of the convolution algorithms for the thermal analysis of semiconductor devices. ICECS 2002: 371-374
Coauthor Index
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last updated on 2024-11-04 20:46 CET by the dblp team
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