SlideShare a Scribd company logo
1 of 1
Download to read offline
23/01/2017
Svetozar JOVANOVIC
DETAIL SKILLS IN SCOPE POWER ELECTRONICS
With regard to the subject matter, in my experience to power devices are on the same board or
between card and card, up to a maximum of 50 W:
1) Project power DC-DC sections:
A. SEPIC DC-DC single output voltage 15 W
B. DC-DC SEPIC-CUK 'with bipolar output voltage +/- 15 W
2) Project of switching regulators BUCK / BOOST
2) Linear regulators
4) Project of AC-DC converters (bridges and DC power supplies "floating, AC appended")
5) Project of power transmission systems (max. 30 W) contactless.
These are described as power transmission systems with "airgap", meaning 'between two
mechanical axis systems with a fixed part and a rotating, or both fixed parts, posed both to no more
of 1.5 cm one from other. The highest yield is in the order of 70/80%. The coupling between the
two parts is AC in the air. Usually together with the transmission of power and it will 'also
superimposed by a two-way communication between the parties, of course also in this case on air,
by means of FSK modulation to 19,200 Kbits / sec.
6) Usage and Knowledge / DC-DC converters tests "Flyback" with galvanic isolation between
input and output / outputs, and without

More Related Content

What's hot

Basics of ups seminar presentation
Basics of ups   seminar presentationBasics of ups   seminar presentation
Basics of ups seminar presentation
Murali Krishnan
 
L2 introduction to power system
L2   introduction to  power systemL2   introduction to  power system
L2 introduction to power system
Satyakam
 
Operation principle switching power supply
Operation principle switching power supplyOperation principle switching power supply
Operation principle switching power supply
Asanka Lakmal Morawaka
 
harmonic analysis of 6 phase converter
harmonic analysis of 6 phase converterharmonic analysis of 6 phase converter
harmonic analysis of 6 phase converter
Rahul Kumar
 

What's hot (20)

Basics of ups seminar presentation
Basics of ups   seminar presentationBasics of ups   seminar presentation
Basics of ups seminar presentation
 
L2 introduction to power system
L2   introduction to  power systemL2   introduction to  power system
L2 introduction to power system
 
Lab manual psd v sem experiment no 2
Lab manual psd v sem experiment no 2Lab manual psd v sem experiment no 2
Lab manual psd v sem experiment no 2
 
Dynamic analysis of dc machine
Dynamic analysis of dc machineDynamic analysis of dc machine
Dynamic analysis of dc machine
 
Electric system
Electric systemElectric system
Electric system
 
study of a DC-DC converter for solar LED street lighting
study of a DC-DC converter for solar LED street lightingstudy of a DC-DC converter for solar LED street lighting
study of a DC-DC converter for solar LED street lighting
 
Presentation11
Presentation11Presentation11
Presentation11
 
Operation principle switching power supply
Operation principle switching power supplyOperation principle switching power supply
Operation principle switching power supply
 
Fundamentals of substaion
Fundamentals of substaionFundamentals of substaion
Fundamentals of substaion
 
Transformer Seminar - Buck-Boost
Transformer Seminar - Buck-BoostTransformer Seminar - Buck-Boost
Transformer Seminar - Buck-Boost
 
RESIDENTIAL SCALE LO VOLTAGE DISTRIBUTION AND ON GRID POWER SUPPLY USING SOLA...
RESIDENTIAL SCALE LO VOLTAGE DISTRIBUTION AND ON GRID POWER SUPPLY USING SOLA...RESIDENTIAL SCALE LO VOLTAGE DISTRIBUTION AND ON GRID POWER SUPPLY USING SOLA...
RESIDENTIAL SCALE LO VOLTAGE DISTRIBUTION AND ON GRID POWER SUPPLY USING SOLA...
 
Electric power system
Electric power systemElectric power system
Electric power system
 
Electrification of railway, problems and types of solution
Electrification of railway, problems and types of solutionElectrification of railway, problems and types of solution
Electrification of railway, problems and types of solution
 
Grid Voltage Regulation
Grid Voltage RegulationGrid Voltage Regulation
Grid Voltage Regulation
 
harmonic analysis of 6 phase converter
harmonic analysis of 6 phase converterharmonic analysis of 6 phase converter
harmonic analysis of 6 phase converter
 
Shailesh (10708)
Shailesh (10708)Shailesh (10708)
Shailesh (10708)
 
ups
upsups
ups
 
Dynamic breaking
Dynamic breakingDynamic breaking
Dynamic breaking
 
Circuit diagram of smps power supply
Circuit diagram of smps power supplyCircuit diagram of smps power supply
Circuit diagram of smps power supply
 
Firing Angle Control & Constant Current Control
Firing Angle Control & Constant Current ControlFiring Angle Control & Constant Current Control
Firing Angle Control & Constant Current Control
 

Viewers also liked

Marco buen desempeno_directivo
Marco buen desempeno_directivoMarco buen desempeno_directivo
Marco buen desempeno_directivo
Freddy Soto Zedano
 
T65 jorge ferreira-trabalho-escrito_v1
T65 jorge ferreira-trabalho-escrito_v1T65 jorge ferreira-trabalho-escrito_v1
T65 jorge ferreira-trabalho-escrito_v1
Jorge Miguel
 
Pieter De Vrye's CV doc new 3 Feb 2017
Pieter De Vrye's CV doc new 3 Feb 2017Pieter De Vrye's CV doc new 3 Feb 2017
Pieter De Vrye's CV doc new 3 Feb 2017
pieter de vrye
 
4220 SLSC Programme Roadmap - FINAL - 161216
4220 SLSC Programme Roadmap - FINAL - 1612164220 SLSC Programme Roadmap - FINAL - 161216
4220 SLSC Programme Roadmap - FINAL - 161216
Godfrey Bridger
 
Chapter 6 power electronic-devices
Chapter 6 power electronic-devicesChapter 6 power electronic-devices
Chapter 6 power electronic-devices
mkazree
 
Power electronics
Power electronicsPower electronics
Power electronics
Femi Prince
 

Viewers also liked (20)

Marco buen desempeno_directivo
Marco buen desempeno_directivoMarco buen desempeno_directivo
Marco buen desempeno_directivo
 
T65 jorge ferreira-trabalho-escrito_v1
T65 jorge ferreira-trabalho-escrito_v1T65 jorge ferreira-trabalho-escrito_v1
T65 jorge ferreira-trabalho-escrito_v1
 
Pieter De Vrye's CV doc new 3 Feb 2017
Pieter De Vrye's CV doc new 3 Feb 2017Pieter De Vrye's CV doc new 3 Feb 2017
Pieter De Vrye's CV doc new 3 Feb 2017
 
Cong nghe xu_ly_khi_thai_1
Cong nghe xu_ly_khi_thai_1Cong nghe xu_ly_khi_thai_1
Cong nghe xu_ly_khi_thai_1
 
HTTP/2 Comes to Java
HTTP/2 Comes to JavaHTTP/2 Comes to Java
HTTP/2 Comes to Java
 
Chapter 3
Chapter 3Chapter 3
Chapter 3
 
4220 SLSC Programme Roadmap - FINAL - 161216
4220 SLSC Programme Roadmap - FINAL - 1612164220 SLSC Programme Roadmap - FINAL - 161216
4220 SLSC Programme Roadmap - FINAL - 161216
 
Switching characteristics of power electronic devices
Switching characteristics of power electronic devicesSwitching characteristics of power electronic devices
Switching characteristics of power electronic devices
 
Comparision of power electronic devices
Comparision of power electronic devicesComparision of power electronic devices
Comparision of power electronic devices
 
Chapter 6 power electronic-devices
Chapter 6 power electronic-devicesChapter 6 power electronic-devices
Chapter 6 power electronic-devices
 
Evolution of Power Electronics Engineering
Evolution of Power Electronics EngineeringEvolution of Power Electronics Engineering
Evolution of Power Electronics Engineering
 
Power electronics
Power electronicsPower electronics
Power electronics
 
Power Electronic Devices
Power Electronic DevicesPower Electronic Devices
Power Electronic Devices
 
Generation of Electrical Power - Power Plants and Transmission Systems.
Generation of Electrical Power - Power Plants and Transmission Systems.Generation of Electrical Power - Power Plants and Transmission Systems.
Generation of Electrical Power - Power Plants and Transmission Systems.
 
Electrical Machine II by Jibesh Sir
Electrical Machine II by Jibesh SirElectrical Machine II by Jibesh Sir
Electrical Machine II by Jibesh Sir
 
Practical Motor Protection, Control and Maintenance Technologies
Practical Motor Protection, Control and Maintenance TechnologiesPractical Motor Protection, Control and Maintenance Technologies
Practical Motor Protection, Control and Maintenance Technologies
 
Electrical machines solved objective
Electrical machines solved objectiveElectrical machines solved objective
Electrical machines solved objective
 
Electricity transmission, generation and distribution
Electricity transmission, generation and distributionElectricity transmission, generation and distribution
Electricity transmission, generation and distribution
 
Troubleshooting, Maintenance and Protection of AC Electrical Motors and Drives
Troubleshooting, Maintenance and Protection of AC Electrical Motors and DrivesTroubleshooting, Maintenance and Protection of AC Electrical Motors and Drives
Troubleshooting, Maintenance and Protection of AC Electrical Motors and Drives
 
Electrical machines I (II-EEE)
Electrical machines I (II-EEE)Electrical machines I (II-EEE)
Electrical machines I (II-EEE)
 

Similar to Power_electronics_details_SJV

A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
Ecwayt
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
Ecwaytech
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
Ecway2004
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
Ecwaytechnoz
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
Ecwaytechnoz
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
Ecwaytech
 
PF correction using SEPIC
PF correction using SEPICPF correction using SEPIC
PF correction using SEPIC
Soumya Dash
 
Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...
Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...
Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...
IAEME Publication
 

Similar to Power_electronics_details_SJV (20)

Tectechnical
TectechnicalTectechnical
Tectechnical
 
VSC BASED HVDC SYTEM DESIGN AND PROTECTION AGAINST OVER VOLTAGES
VSC BASED HVDC SYTEM DESIGN AND PROTECTION AGAINST OVER VOLTAGESVSC BASED HVDC SYTEM DESIGN AND PROTECTION AGAINST OVER VOLTAGES
VSC BASED HVDC SYTEM DESIGN AND PROTECTION AGAINST OVER VOLTAGES
 
Design and implementation of Closed Loop Control of Three Phase Interleaved P...
Design and implementation of Closed Loop Control of Three Phase Interleaved P...Design and implementation of Closed Loop Control of Three Phase Interleaved P...
Design and implementation of Closed Loop Control of Three Phase Interleaved P...
 
Electric Power Converter with a Wide Input Voltage Range
Electric Power Converter with a Wide Input Voltage RangeElectric Power Converter with a Wide Input Voltage Range
Electric Power Converter with a Wide Input Voltage Range
 
A Novel Single Phase bridgeless AC/DC PFC converter for Low Total Harmonics D...
A Novel Single Phase bridgeless AC/DC PFC converter for Low Total Harmonics D...A Novel Single Phase bridgeless AC/DC PFC converter for Low Total Harmonics D...
A Novel Single Phase bridgeless AC/DC PFC converter for Low Total Harmonics D...
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
 
A high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converterA high step down transformer less single-stage single-switch acdc converter
A high step down transformer less single-stage single-switch acdc converter
 
Ijetcas14 641
Ijetcas14 641Ijetcas14 641
Ijetcas14 641
 
Electric Power Converter with a Wide Input Voltage Range
Electric Power Converter with a Wide Input Voltage RangeElectric Power Converter with a Wide Input Voltage Range
Electric Power Converter with a Wide Input Voltage Range
 
RGPV NOTES ON FACTS EX8303 unit I & II
RGPV NOTES ON FACTS EX8303 unit I & IIRGPV NOTES ON FACTS EX8303 unit I & II
RGPV NOTES ON FACTS EX8303 unit I & II
 
an introduction to electro pneumatic and
an introduction to electro pneumatic andan introduction to electro pneumatic and
an introduction to electro pneumatic and
 
PF correction using SEPIC
PF correction using SEPICPF correction using SEPIC
PF correction using SEPIC
 
Simulation and analysis of HVDC on MATLAB and PSCAD
Simulation and analysis of HVDC on MATLAB and PSCADSimulation and analysis of HVDC on MATLAB and PSCAD
Simulation and analysis of HVDC on MATLAB and PSCAD
 
Hybrid circuit breaker
Hybrid circuit breakerHybrid circuit breaker
Hybrid circuit breaker
 
[IJET V2I5P9] Authors: Anju John Gray, Beena M Vargheese, Miss. Geethu James
[IJET V2I5P9] Authors: Anju John Gray, Beena M Vargheese, Miss. Geethu James[IJET V2I5P9] Authors: Anju John Gray, Beena M Vargheese, Miss. Geethu James
[IJET V2I5P9] Authors: Anju John Gray, Beena M Vargheese, Miss. Geethu James
 
Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...
Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...
Comparision of pi, fuzzy & neuro fuzzy controller based multi converter unifi...
 

Power_electronics_details_SJV

  • 1. 23/01/2017 Svetozar JOVANOVIC DETAIL SKILLS IN SCOPE POWER ELECTRONICS With regard to the subject matter, in my experience to power devices are on the same board or between card and card, up to a maximum of 50 W: 1) Project power DC-DC sections: A. SEPIC DC-DC single output voltage 15 W B. DC-DC SEPIC-CUK 'with bipolar output voltage +/- 15 W 2) Project of switching regulators BUCK / BOOST 2) Linear regulators 4) Project of AC-DC converters (bridges and DC power supplies "floating, AC appended") 5) Project of power transmission systems (max. 30 W) contactless. These are described as power transmission systems with "airgap", meaning 'between two mechanical axis systems with a fixed part and a rotating, or both fixed parts, posed both to no more of 1.5 cm one from other. The highest yield is in the order of 70/80%. The coupling between the two parts is AC in the air. Usually together with the transmission of power and it will 'also superimposed by a two-way communication between the parties, of course also in this case on air, by means of FSK modulation to 19,200 Kbits / sec. 6) Usage and Knowledge / DC-DC converters tests "Flyback" with galvanic isolation between input and output / outputs, and without