SlideShare uma empresa Scribd logo
1 de 22
Baixar para ler offline
Semiconductor Power Switching Devices-1
(Lecture-4)
R S Ananda Murthy
Associate Professor and Head
Department of Electrical & Electronics Engineering,
Sri Jayachamarajendra College of Engineering,
Mysore 570 006
R S Ananda Murthy Semiconductor Power Switching Devices-1
Static i-v Characteristics of Ideal Switch
+ -
(a)
+ -
(b)
ON
OFF
Fully
Controlled
ON
OFF
Fully
Controlled (c)
We use power semiconductor devices as switches in
converters.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Properties of Ideal Switch
When switch is OFF, i = 0 and −∞ ≤ v ≤ +∞ which implies
that PON = 0
When switch is ON, v = 0 and −∞ ≤ i ≤ +∞ which implies
that POFF = 0
It should be possible to easily turn the switch ON and OFF
by applying an appropriate control signal.
The power terminals of the switch should be electrically
isolated from the control terminals.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Properties of Ideal Switch
The power required to keep the switch in a particular state,
or to switch it ON/OFF should be infinitesimally small.
Should be able to change state instantaneously which
implies that tON = 0, tOFF = 0 and PSW = 0.
Should be able to withstand infinite temperature which
means that its power handling capability is infinite, i.e.,
PHmax → ∞.
Should be able to withstand infinite value of di/dt during
turn ON and infinite value of dv/dt during turn OFF.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Static i-v Characteristics of Practical Switch
−V1 +V2
Limit
Power
Limit
Power
III
II I
IV
v
i
+ Ito
toOFF State close
v − axis
i − axis
ON State close
− I
The switch is assumed to be bilateral while drawing this.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Classification of Power Semiconductor Devices
Bipolar voltage blocking
Pulse triggered (latched)
Continuously triggered
Unilateral
Bilateral
Semi−controlled Fully−controlledUncontrolled
Unidirectional
Power Semicondutor Switching Devices
Unipolar voltage blocking
R S Ananda Murthy Semiconductor Power Switching Devices-1
Classification of Power Semiconductor Devices
Device Control Input Controllability Conduction Blocking
Diode Nil Uncontrolled Forward Reverse
SCR Pulse Can be turned on Forward Bipolar
LASCR Pulse Can be turned on Forward Bipolar
TRIAC Pulse Can be turned on Bilateral Bipolar
BJT Continuous Fully-controlled Forward Forward
MOSFET Continuous Fully-controlled Forward Forward
IGBT Continuous Fully-controlled Forward Forward
SITH Continuous Fully-controlled Forward Forward
GTO Pulse Fully-controlled Forward Bipolar
MCT Pulse Fully-controlled Forward Forward
SITH – Static Induction Thyristor; MCT – MOS Controlled Thyristor.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Power Losses in a Switch
t
p = vi
t
p = vi
i
Turn−on time Turn−off time
v
i
v
The total average power loss over a time interval T is
PD = PON +POFF +PG +PSW ≈ PON +PSW =
1
T
ˆ T
0
pdt
as POFF +PG is negligible as compared to PON +PSW .
R S Ananda Murthy Semiconductor Power Switching Devices-1
Static Characteristics Power Diodes
Reverse
leakage
current
VBR
VF
( )
Forward
conduction
drop
A K
Circuit symbol
+ −
i
v
A K
Structure
p i n
i
v
i
v
Linear Approximation
i
v
Ideal Characteristics
Avalanche
breakdown
VF = Vγ +IF RF where RF is the ON-state bulk resistance.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Reverse Recovery Characteristics of Power Diodes
IR
t1
t2
t3
VF
IF
QRR
IRM
t 3
t 2
SF =
VR
IRM
dt
diQRR
QRR
2
di/dt
trr =
dt
di
< 0
Diode with snubber
Turn OFF
starts here
turn OFF
ends here
v
t
t
Area =
RM
V
- E
0.25 IRM
= 2
0
Reverse Recovery Charge
Reverse Recovery Time
is the time taken by the
minority carriers in the diode
to recombine when the diode
is reverse biased
R S Ananda Murthy Semiconductor Power Switching Devices-1
Important Specifications of Power Diodes
Reverse Blocking Voltage (VRRM).
Forward Average Current (IF(AVE)).
Forward RMS Current (IF(RMS)).
Surge Current Rating (IFSM).
Maximum On-state Voltage Drop (VFM).
I2t Rating.
Reverse Recovery Time (trr ).
The maximum allowable junction and case temperatures
(θJM and θCM).
Junction-to-case and case-to-sink thermal resistances
(RθJC and RθCS).
R S Ananda Murthy Semiconductor Power Switching Devices-1
Types of Power Diodes
1 Standard Recovery Diodes
2 Fast Recovery Diodes
3 Schottky Diodes
4 Silicon Carbide Diodes.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Standard Recovery Diodes
trr ≈ 25µs.
Leakage current in the OFF-state is of the order of few µA.
Have lower ON-state voltage drop.
Available with ratings of several kV and kA.
Typically used in rectifiers at power frequencies i.e., at 50
Hz or 60 Hz.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Fast Recovery Diodes
trr ≤ 5µs
Have relatively higher ON-state voltage drop.
Typically used in D.C.-to-D.C. converters and inverters
operating at higher frequencies as freewheeling diodes.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Schottky Diodes
A K
Barrier Metal
n−type silicon layer
Heavily doped
silicon substrate
A K
Barrier Metal
n−type silicon layer
Heavily doped
silicon substrate
n+
trr is typically around few ns.
Have very low ON-state voltage drop of the order of
0.15-0.45 V and consequently very low PON.
Typically available in voltage ratings in the range 50-200 V.
Used in circuits having very low output voltages like
switched mode power supplies.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Silicon Carbide Diodes
These are Schottky diodes constructed from silicon
carbide.
Have very low power loss.
Have extremely fast switching behavior with ultra-low trr .
Can operate at junction temperatures > 225◦ C.
Switching behavior is independent of ON-state forward
current and temperature.
Have much lower reverse leakage current than silicon
Schottky diodes, and higher reverse voltage rating.
Very expensive as compared to Si Schottky diodes.
R S Ananda Murthy Semiconductor Power Switching Devices-1
Some Diode Packages
Axial Pack Plastic Pack Plastic Pack
Stud Type Stud Type Disc Type
Source: www.irf.com
R S Ananda Murthy Semiconductor Power Switching Devices-1
Some Diode Packages
Stud type diodes (Source: www.china-rectifier.com)
R S Ananda Murthy Semiconductor Power Switching Devices-1
Some Diode Packages
Disc type diodes (Source: www.china-rectifier.com)
R S Ananda Murthy Semiconductor Power Switching Devices-1
Some Diode Rectifier Modules
Single-phase Diode Bridge Module
(Source: www.china-rectifier.com)
R S Ananda Murthy Semiconductor Power Switching Devices-1
Some Diode Rectifier Modules
Three-phase Diode Bridge Module
(Source: www.china-rectifier.com)
R S Ananda Murthy Semiconductor Power Switching Devices-1
Next Lecture...
In the next lecture we will discuss some more power
semiconductor switching devices used in power electronics.
Thank You.
R S Ananda Murthy Semiconductor Power Switching Devices-1

Mais conteúdo relacionado

Mais procurados

Advancements in inverter technology
Advancements  in inverter technologyAdvancements  in inverter technology
Advancements in inverter technologyBhanu Teja
 
Arduino_based_inverter_using_matlab
Arduino_based_inverter_using_matlabArduino_based_inverter_using_matlab
Arduino_based_inverter_using_matlabROHIT TANDON
 
EE8552 Power Electronics
EE8552 Power ElectronicsEE8552 Power Electronics
EE8552 Power Electronicsrmkceteee
 
Chapter 6 power electronic-devices
Chapter 6 power electronic-devicesChapter 6 power electronic-devices
Chapter 6 power electronic-devicesmkazree
 
LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...
LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...
LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...ASHOKKUMAR RAMAR
 
Presentation 12v dc to 230v ac 100 wat invertor
Presentation 12v dc to 230v ac 100 wat invertorPresentation 12v dc to 230v ac 100 wat invertor
Presentation 12v dc to 230v ac 100 wat invertormirzaahmadali
 
Power electronics
Power electronicsPower electronics
Power electronicsFemi Prince
 
Power Electronics-Introduction
Power Electronics-IntroductionPower Electronics-Introduction
Power Electronics-Introductionsangeetha rakhi
 
New bhgat ram ppt 7793005660
New bhgat ram ppt 7793005660New bhgat ram ppt 7793005660
New bhgat ram ppt 7793005660bhagat ram meena
 
12 v dc to 220v ac
12 v dc to 220v ac12 v dc to 220v ac
12 v dc to 220v acDeepGhosh17
 
Variable Regulated Power Supply
Variable Regulated Power SupplyVariable Regulated Power Supply
Variable Regulated Power SupplyBhanu Bhawesh
 
Designing of Single Phase Inverter using Arduino
Designing of Single Phase Inverter using ArduinoDesigning of Single Phase Inverter using Arduino
Designing of Single Phase Inverter using ArduinoPawan kumar Verma
 
Distance Protection
Distance ProtectionDistance Protection
Distance Protectionncct
 

Mais procurados (20)

Advancements in inverter technology
Advancements  in inverter technologyAdvancements  in inverter technology
Advancements in inverter technology
 
L1 introduction
L1 introductionL1 introduction
L1 introduction
 
Arduino_based_inverter_using_matlab
Arduino_based_inverter_using_matlabArduino_based_inverter_using_matlab
Arduino_based_inverter_using_matlab
 
EE8552 Power Electronics
EE8552 Power ElectronicsEE8552 Power Electronics
EE8552 Power Electronics
 
Chapter 6 power electronic-devices
Chapter 6 power electronic-devicesChapter 6 power electronic-devices
Chapter 6 power electronic-devices
 
LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...
LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...
LATEST ELECTRICAL PROJECTS ABSTRACT-POWER SHARING OF TRANSFORMER WITH OVERLOA...
 
Simple Low Power Inverter Convert 12V DC into 230AC
Simple Low Power Inverter Convert 12V DC into 230ACSimple Low Power Inverter Convert 12V DC into 230AC
Simple Low Power Inverter Convert 12V DC into 230AC
 
Presentation 12v dc to 230v ac 100 wat invertor
Presentation 12v dc to 230v ac 100 wat invertorPresentation 12v dc to 230v ac 100 wat invertor
Presentation 12v dc to 230v ac 100 wat invertor
 
Power electronics
Power electronicsPower electronics
Power electronics
 
Power Electronics-Introduction
Power Electronics-IntroductionPower Electronics-Introduction
Power Electronics-Introduction
 
Self Switching Power Supply
Self Switching Power SupplySelf Switching Power Supply
Self Switching Power Supply
 
New bhgat ram ppt 7793005660
New bhgat ram ppt 7793005660New bhgat ram ppt 7793005660
New bhgat ram ppt 7793005660
 
12 v dc to 220v ac
12 v dc to 220v ac12 v dc to 220v ac
12 v dc to 220v ac
 
PPT ON 220KV GSS
PPT ON 220KV GSSPPT ON 220KV GSS
PPT ON 220KV GSS
 
pdf presentation
pdf presentationpdf presentation
pdf presentation
 
Variable Regulated Power Supply
Variable Regulated Power SupplyVariable Regulated Power Supply
Variable Regulated Power Supply
 
Designing of Single Phase Inverter using Arduino
Designing of Single Phase Inverter using ArduinoDesigning of Single Phase Inverter using Arduino
Designing of Single Phase Inverter using Arduino
 
Distance Protection
Distance ProtectionDistance Protection
Distance Protection
 
Inverter doc
Inverter docInverter doc
Inverter doc
 
Power Electronics
Power ElectronicsPower Electronics
Power Electronics
 

Semelhante a L4 applications-of-power-electronics-130715221937-phpapp01

Power Electronics - Power Semi – Conductor Devices
Power Electronics - Power Semi – Conductor DevicesPower Electronics - Power Semi – Conductor Devices
Power Electronics - Power Semi – Conductor DevicesBurdwan University
 
L5 semiconductor-power-switching-devices-2-130818121609-phpapp01
L5 semiconductor-power-switching-devices-2-130818121609-phpapp01L5 semiconductor-power-switching-devices-2-130818121609-phpapp01
L5 semiconductor-power-switching-devices-2-130818121609-phpapp01neomindx
 
chapter_1 Intro. to electonic Devices.ppt
chapter_1 Intro. to electonic Devices.pptchapter_1 Intro. to electonic Devices.ppt
chapter_1 Intro. to electonic Devices.pptLiewChiaPing
 
Components passive
Components   passiveComponents   passive
Components passivesld1950
 
Module 1 introduction to Power Electronics
Module 1 introduction to Power ElectronicsModule 1 introduction to Power Electronics
Module 1 introduction to Power ElectronicsZahiraTabassum1
 
Module 1 introduction
Module 1 introductionModule 1 introduction
Module 1 introductionAmreen Khanam
 
Chapter 1 Introduction to power Electronic Devices.pdf
Chapter 1 Introduction to power Electronic Devices.pdfChapter 1 Introduction to power Electronic Devices.pdf
Chapter 1 Introduction to power Electronic Devices.pdfLiewChiaPing
 
Power Electronics
Power ElectronicsPower Electronics
Power ElectronicsMirza Baig
 
powerelectronics-switch.pptx for Engineering students
powerelectronics-switch.pptx for Engineering studentspowerelectronics-switch.pptx for Engineering students
powerelectronics-switch.pptx for Engineering studentsMuhammadusman112116
 
Industrial electronics 1 marks- polytechnic
Industrial electronics  1 marks- polytechnicIndustrial electronics  1 marks- polytechnic
Industrial electronics 1 marks- polytechnicSukesh R
 
Automatic street light using ldr and relay
Automatic street light using ldr and relayAutomatic street light using ldr and relay
Automatic street light using ldr and relayShivam Raidas
 
Presentation on Over-/under-voltage protection of electrical appliance
Presentation on Over-/under-voltage protection of electrical appliancePresentation on Over-/under-voltage protection of electrical appliance
Presentation on Over-/under-voltage protection of electrical applianceNishant Kumar
 
Industrial electronics 1 marks- polytechnic
Industrial electronics  1 marks- polytechnicIndustrial electronics  1 marks- polytechnic
Industrial electronics 1 marks- polytechnicSukesh R
 
Industrial electronics question bank
Industrial electronics question bankIndustrial electronics question bank
Industrial electronics question bankSukesh R
 
Power electronics and applications of semiconductors devices, peripheral effects
Power electronics and applications of semiconductors devices, peripheral effectsPower electronics and applications of semiconductors devices, peripheral effects
Power electronics and applications of semiconductors devices, peripheral effectsSrikanthRaja4
 

Semelhante a L4 applications-of-power-electronics-130715221937-phpapp01 (20)

1 power electric
1 power electric1 power electric
1 power electric
 
Vimal
VimalVimal
Vimal
 
Vimal
VimalVimal
Vimal
 
Power Electronics - Power Semi – Conductor Devices
Power Electronics - Power Semi – Conductor DevicesPower Electronics - Power Semi – Conductor Devices
Power Electronics - Power Semi – Conductor Devices
 
L5 semiconductor-power-switching-devices-2-130818121609-phpapp01
L5 semiconductor-power-switching-devices-2-130818121609-phpapp01L5 semiconductor-power-switching-devices-2-130818121609-phpapp01
L5 semiconductor-power-switching-devices-2-130818121609-phpapp01
 
Devices part 1
Devices part 1Devices part 1
Devices part 1
 
chapter_1 Intro. to electonic Devices.ppt
chapter_1 Intro. to electonic Devices.pptchapter_1 Intro. to electonic Devices.ppt
chapter_1 Intro. to electonic Devices.ppt
 
Components passive
Components   passiveComponents   passive
Components passive
 
Module 1 introduction to Power Electronics
Module 1 introduction to Power ElectronicsModule 1 introduction to Power Electronics
Module 1 introduction to Power Electronics
 
Module 1 introduction
Module 1 introductionModule 1 introduction
Module 1 introduction
 
POWER ELECTRONICS
POWER ELECTRONICSPOWER ELECTRONICS
POWER ELECTRONICS
 
Chapter 1 Introduction to power Electronic Devices.pdf
Chapter 1 Introduction to power Electronic Devices.pdfChapter 1 Introduction to power Electronic Devices.pdf
Chapter 1 Introduction to power Electronic Devices.pdf
 
Power Electronics
Power ElectronicsPower Electronics
Power Electronics
 
powerelectronics-switch.pptx for Engineering students
powerelectronics-switch.pptx for Engineering studentspowerelectronics-switch.pptx for Engineering students
powerelectronics-switch.pptx for Engineering students
 
Industrial electronics 1 marks- polytechnic
Industrial electronics  1 marks- polytechnicIndustrial electronics  1 marks- polytechnic
Industrial electronics 1 marks- polytechnic
 
Automatic street light using ldr and relay
Automatic street light using ldr and relayAutomatic street light using ldr and relay
Automatic street light using ldr and relay
 
Presentation on Over-/under-voltage protection of electrical appliance
Presentation on Over-/under-voltage protection of electrical appliancePresentation on Over-/under-voltage protection of electrical appliance
Presentation on Over-/under-voltage protection of electrical appliance
 
Industrial electronics 1 marks- polytechnic
Industrial electronics  1 marks- polytechnicIndustrial electronics  1 marks- polytechnic
Industrial electronics 1 marks- polytechnic
 
Industrial electronics question bank
Industrial electronics question bankIndustrial electronics question bank
Industrial electronics question bank
 
Power electronics and applications of semiconductors devices, peripheral effects
Power electronics and applications of semiconductors devices, peripheral effectsPower electronics and applications of semiconductors devices, peripheral effects
Power electronics and applications of semiconductors devices, peripheral effects
 

Mais de neomindx

DM_FabioCosta_2016_MEEC.pdf
DM_FabioCosta_2016_MEEC.pdfDM_FabioCosta_2016_MEEC.pdf
DM_FabioCosta_2016_MEEC.pdfneomindx
 
Mineral insulating oils_in_service
Mineral insulating oils_in_serviceMineral insulating oils_in_service
Mineral insulating oils_in_serviceneomindx
 
transformers
transformerstransformers
transformersneomindx
 
L1 introduction-to-power-electronics-130627131834-phpapp02
L1 introduction-to-power-electronics-130627131834-phpapp02L1 introduction-to-power-electronics-130627131834-phpapp02
L1 introduction-to-power-electronics-130627131834-phpapp02neomindx
 
L3 applications-of-power-electronics-130708114138-phpapp01
L3 applications-of-power-electronics-130708114138-phpapp01L3 applications-of-power-electronics-130708114138-phpapp01
L3 applications-of-power-electronics-130708114138-phpapp01neomindx
 
L2 applications-of-power-electronics-130701122140-phpapp02
L2 applications-of-power-electronics-130701122140-phpapp02L2 applications-of-power-electronics-130701122140-phpapp02
L2 applications-of-power-electronics-130701122140-phpapp02neomindx
 
L7 semiconductor-power-switching-devices-4-130929140022-phpapp02
L7 semiconductor-power-switching-devices-4-130929140022-phpapp02L7 semiconductor-power-switching-devices-4-130929140022-phpapp02
L7 semiconductor-power-switching-devices-4-130929140022-phpapp02neomindx
 
Chapter1 131114022851-phpapp02 (2)
Chapter1 131114022851-phpapp02 (2)Chapter1 131114022851-phpapp02 (2)
Chapter1 131114022851-phpapp02 (2)neomindx
 
Powerelectronicsnote 121011031400-phpapp02
Powerelectronicsnote 121011031400-phpapp02Powerelectronicsnote 121011031400-phpapp02
Powerelectronicsnote 121011031400-phpapp02neomindx
 
Powerelectronicsnote 121011031400-phpapp02 (1)
Powerelectronicsnote 121011031400-phpapp02 (1)Powerelectronicsnote 121011031400-phpapp02 (1)
Powerelectronicsnote 121011031400-phpapp02 (1)neomindx
 
Powersemiconductordevices 140513040047-phpapp01
Powersemiconductordevices 140513040047-phpapp01Powersemiconductordevices 140513040047-phpapp01
Powersemiconductordevices 140513040047-phpapp01neomindx
 
Apostilatiristorscr 150316222420-conversion-gate01
Apostilatiristorscr 150316222420-conversion-gate01Apostilatiristorscr 150316222420-conversion-gate01
Apostilatiristorscr 150316222420-conversion-gate01neomindx
 
Cap5tiristores 140426163115-phpapp02
Cap5tiristores 140426163115-phpapp02Cap5tiristores 140426163115-phpapp02
Cap5tiristores 140426163115-phpapp02neomindx
 

Mais de neomindx (14)

DM_FabioCosta_2016_MEEC.pdf
DM_FabioCosta_2016_MEEC.pdfDM_FabioCosta_2016_MEEC.pdf
DM_FabioCosta_2016_MEEC.pdf
 
Mineral insulating oils_in_service
Mineral insulating oils_in_serviceMineral insulating oils_in_service
Mineral insulating oils_in_service
 
transformers
transformerstransformers
transformers
 
L1 introduction-to-power-electronics-130627131834-phpapp02
L1 introduction-to-power-electronics-130627131834-phpapp02L1 introduction-to-power-electronics-130627131834-phpapp02
L1 introduction-to-power-electronics-130627131834-phpapp02
 
L3 applications-of-power-electronics-130708114138-phpapp01
L3 applications-of-power-electronics-130708114138-phpapp01L3 applications-of-power-electronics-130708114138-phpapp01
L3 applications-of-power-electronics-130708114138-phpapp01
 
L2 applications-of-power-electronics-130701122140-phpapp02
L2 applications-of-power-electronics-130701122140-phpapp02L2 applications-of-power-electronics-130701122140-phpapp02
L2 applications-of-power-electronics-130701122140-phpapp02
 
L7 semiconductor-power-switching-devices-4-130929140022-phpapp02
L7 semiconductor-power-switching-devices-4-130929140022-phpapp02L7 semiconductor-power-switching-devices-4-130929140022-phpapp02
L7 semiconductor-power-switching-devices-4-130929140022-phpapp02
 
Chapter1 131114022851-phpapp02 (2)
Chapter1 131114022851-phpapp02 (2)Chapter1 131114022851-phpapp02 (2)
Chapter1 131114022851-phpapp02 (2)
 
Powerelectronicsnote 121011031400-phpapp02
Powerelectronicsnote 121011031400-phpapp02Powerelectronicsnote 121011031400-phpapp02
Powerelectronicsnote 121011031400-phpapp02
 
Powerelectronicsnote 121011031400-phpapp02 (1)
Powerelectronicsnote 121011031400-phpapp02 (1)Powerelectronicsnote 121011031400-phpapp02 (1)
Powerelectronicsnote 121011031400-phpapp02 (1)
 
Powersemiconductordevices 140513040047-phpapp01
Powersemiconductordevices 140513040047-phpapp01Powersemiconductordevices 140513040047-phpapp01
Powersemiconductordevices 140513040047-phpapp01
 
Apostilatiristorscr 150316222420-conversion-gate01
Apostilatiristorscr 150316222420-conversion-gate01Apostilatiristorscr 150316222420-conversion-gate01
Apostilatiristorscr 150316222420-conversion-gate01
 
Cap5tiristores 140426163115-phpapp02
Cap5tiristores 140426163115-phpapp02Cap5tiristores 140426163115-phpapp02
Cap5tiristores 140426163115-phpapp02
 
Aula 04n
Aula 04nAula 04n
Aula 04n
 

Último

DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesMayuraD1
 
Computer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersComputer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersMairaAshraf6
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxSCMS School of Architecture
 
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
COST-EFFETIVE  and Energy Efficient BUILDINGS ptxCOST-EFFETIVE  and Energy Efficient BUILDINGS ptx
COST-EFFETIVE and Energy Efficient BUILDINGS ptxJIT KUMAR GUPTA
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdfKamal Acharya
 
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...HenryBriggs2
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VDineshKumar4165
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayEpec Engineered Technologies
 
Bridge Jacking Design Sample Calculation.pptx
Bridge Jacking Design Sample Calculation.pptxBridge Jacking Design Sample Calculation.pptx
Bridge Jacking Design Sample Calculation.pptxnuruddin69
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueBhangaleSonal
 
2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projectssmsksolar
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapRishantSharmaFr
 
Employee leave management system project.
Employee leave management system project.Employee leave management system project.
Employee leave management system project.Kamal Acharya
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startQuintin Balsdon
 
Air Compressor reciprocating single stage
Air Compressor reciprocating single stageAir Compressor reciprocating single stage
Air Compressor reciprocating single stageAbc194748
 
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Call Girls Mumbai
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfJiananWang21
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaOmar Fathy
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadhamedmustafa094
 

Último (20)

DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
 
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced LoadsFEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
 
Computer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersComputer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to Computers
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
 
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
COST-EFFETIVE  and Energy Efficient BUILDINGS ptxCOST-EFFETIVE  and Energy Efficient BUILDINGS ptx
COST-EFFETIVE and Energy Efficient BUILDINGS ptx
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdf
 
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
scipt v1.pptxcxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx...
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
Bridge Jacking Design Sample Calculation.pptx
Bridge Jacking Design Sample Calculation.pptxBridge Jacking Design Sample Calculation.pptx
Bridge Jacking Design Sample Calculation.pptx
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torque
 
2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects2016EF22_0 solar project report rooftop projects
2016EF22_0 solar project report rooftop projects
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
Employee leave management system project.
Employee leave management system project.Employee leave management system project.
Employee leave management system project.
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the start
 
Air Compressor reciprocating single stage
Air Compressor reciprocating single stageAir Compressor reciprocating single stage
Air Compressor reciprocating single stage
 
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS Lambda
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 

L4 applications-of-power-electronics-130715221937-phpapp01

  • 1. Semiconductor Power Switching Devices-1 (Lecture-4) R S Ananda Murthy Associate Professor and Head Department of Electrical & Electronics Engineering, Sri Jayachamarajendra College of Engineering, Mysore 570 006 R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 2. Static i-v Characteristics of Ideal Switch + - (a) + - (b) ON OFF Fully Controlled ON OFF Fully Controlled (c) We use power semiconductor devices as switches in converters. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 3. Properties of Ideal Switch When switch is OFF, i = 0 and −∞ ≤ v ≤ +∞ which implies that PON = 0 When switch is ON, v = 0 and −∞ ≤ i ≤ +∞ which implies that POFF = 0 It should be possible to easily turn the switch ON and OFF by applying an appropriate control signal. The power terminals of the switch should be electrically isolated from the control terminals. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 4. Properties of Ideal Switch The power required to keep the switch in a particular state, or to switch it ON/OFF should be infinitesimally small. Should be able to change state instantaneously which implies that tON = 0, tOFF = 0 and PSW = 0. Should be able to withstand infinite temperature which means that its power handling capability is infinite, i.e., PHmax → ∞. Should be able to withstand infinite value of di/dt during turn ON and infinite value of dv/dt during turn OFF. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 5. Static i-v Characteristics of Practical Switch −V1 +V2 Limit Power Limit Power III II I IV v i + Ito toOFF State close v − axis i − axis ON State close − I The switch is assumed to be bilateral while drawing this. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 6. Classification of Power Semiconductor Devices Bipolar voltage blocking Pulse triggered (latched) Continuously triggered Unilateral Bilateral Semi−controlled Fully−controlledUncontrolled Unidirectional Power Semicondutor Switching Devices Unipolar voltage blocking R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 7. Classification of Power Semiconductor Devices Device Control Input Controllability Conduction Blocking Diode Nil Uncontrolled Forward Reverse SCR Pulse Can be turned on Forward Bipolar LASCR Pulse Can be turned on Forward Bipolar TRIAC Pulse Can be turned on Bilateral Bipolar BJT Continuous Fully-controlled Forward Forward MOSFET Continuous Fully-controlled Forward Forward IGBT Continuous Fully-controlled Forward Forward SITH Continuous Fully-controlled Forward Forward GTO Pulse Fully-controlled Forward Bipolar MCT Pulse Fully-controlled Forward Forward SITH – Static Induction Thyristor; MCT – MOS Controlled Thyristor. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 8. Power Losses in a Switch t p = vi t p = vi i Turn−on time Turn−off time v i v The total average power loss over a time interval T is PD = PON +POFF +PG +PSW ≈ PON +PSW = 1 T ˆ T 0 pdt as POFF +PG is negligible as compared to PON +PSW . R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 9. Static Characteristics Power Diodes Reverse leakage current VBR VF ( ) Forward conduction drop A K Circuit symbol + − i v A K Structure p i n i v i v Linear Approximation i v Ideal Characteristics Avalanche breakdown VF = Vγ +IF RF where RF is the ON-state bulk resistance. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 10. Reverse Recovery Characteristics of Power Diodes IR t1 t2 t3 VF IF QRR IRM t 3 t 2 SF = VR IRM dt diQRR QRR 2 di/dt trr = dt di < 0 Diode with snubber Turn OFF starts here turn OFF ends here v t t Area = RM V - E 0.25 IRM = 2 0 Reverse Recovery Charge Reverse Recovery Time is the time taken by the minority carriers in the diode to recombine when the diode is reverse biased R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 11. Important Specifications of Power Diodes Reverse Blocking Voltage (VRRM). Forward Average Current (IF(AVE)). Forward RMS Current (IF(RMS)). Surge Current Rating (IFSM). Maximum On-state Voltage Drop (VFM). I2t Rating. Reverse Recovery Time (trr ). The maximum allowable junction and case temperatures (θJM and θCM). Junction-to-case and case-to-sink thermal resistances (RθJC and RθCS). R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 12. Types of Power Diodes 1 Standard Recovery Diodes 2 Fast Recovery Diodes 3 Schottky Diodes 4 Silicon Carbide Diodes. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 13. Standard Recovery Diodes trr ≈ 25µs. Leakage current in the OFF-state is of the order of few µA. Have lower ON-state voltage drop. Available with ratings of several kV and kA. Typically used in rectifiers at power frequencies i.e., at 50 Hz or 60 Hz. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 14. Fast Recovery Diodes trr ≤ 5µs Have relatively higher ON-state voltage drop. Typically used in D.C.-to-D.C. converters and inverters operating at higher frequencies as freewheeling diodes. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 15. Schottky Diodes A K Barrier Metal n−type silicon layer Heavily doped silicon substrate A K Barrier Metal n−type silicon layer Heavily doped silicon substrate n+ trr is typically around few ns. Have very low ON-state voltage drop of the order of 0.15-0.45 V and consequently very low PON. Typically available in voltage ratings in the range 50-200 V. Used in circuits having very low output voltages like switched mode power supplies. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 16. Silicon Carbide Diodes These are Schottky diodes constructed from silicon carbide. Have very low power loss. Have extremely fast switching behavior with ultra-low trr . Can operate at junction temperatures > 225◦ C. Switching behavior is independent of ON-state forward current and temperature. Have much lower reverse leakage current than silicon Schottky diodes, and higher reverse voltage rating. Very expensive as compared to Si Schottky diodes. R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 17. Some Diode Packages Axial Pack Plastic Pack Plastic Pack Stud Type Stud Type Disc Type Source: www.irf.com R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 18. Some Diode Packages Stud type diodes (Source: www.china-rectifier.com) R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 19. Some Diode Packages Disc type diodes (Source: www.china-rectifier.com) R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 20. Some Diode Rectifier Modules Single-phase Diode Bridge Module (Source: www.china-rectifier.com) R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 21. Some Diode Rectifier Modules Three-phase Diode Bridge Module (Source: www.china-rectifier.com) R S Ananda Murthy Semiconductor Power Switching Devices-1
  • 22. Next Lecture... In the next lecture we will discuss some more power semiconductor switching devices used in power electronics. Thank You. R S Ananda Murthy Semiconductor Power Switching Devices-1