SlideShare a Scribd company logo
AOD5B60D
600V, 5A Alpha IGBT TM
with Diode
General Description Product Summary
VCE
IC (TC=100°C) 5A
VCE(sat) (TC=25°C) 1.55V
Symbol
V CE
The Alpha IGBTTM
line of products offers best-in-class
performance in conduction and switching losses, with
robust short circuit capability. They are designed for ease
of paralleling, minimal gate spike under high dV/dt
conditions and resistance to oscillations. The soft co-
package diode is targeted for minimal losses in motor
control applications.
V
UnitsParameter
Absolute Maximum Ratings TA=25°C unless otherwise noted
AOD5B60D
600V
Collector-Emitter Voltage 600
G
C
E
AOD5B60D
Top View
TO252
DPAK
Bottom View
C
G
G E
C
E
CE
V GE
I CM
I LM
Diode Pulsed Current, Limited by TJmax I FM
t SC
T J , T STG
T L
Symbol
R θ JA
R θ JC
R θ JC °C/W3Maximum Diode Junction-to-Case
°C/W2.3Maximum IGBT Junction-to-Case
Maximum Junction-to-Ambient
10 µs
TC=100°C
Maximum lead temperature for soldering
purpose, 1/8" from case for 5 seconds °C
Power Dissipation
P D
Short circuit withstanding time VGE = 15V, VCE ≤
400V, delay between short circuits ≥ 1.0s,
TC=150°C
Junction and Storage Temperature Range
TC=25°C
Thermal Characteristics
300
-55 to 150
54.4
20
°C/W55
21.7
°C
20
AOD5B60D
Pulsed Collector Current, Limited by TJmax
Gate-Emitter Voltage
TC=100°C
W
Units
A
A
Parameter
±20 V
20 A
A
Continuous Diode
Forward Current
TC=25°C
I F
10
A
TC=100°C
Continuous Collector
Current
TC=25°C
5
10
5
I C
Turn off SOA, VCE ≤ 600V, Limited by TJmax
G
C
E
AOD5B60D
Top View
TO252
DPAK
Bottom View
C
G
G E
C
E
Rev1: Nov 2012 www.aosmd.com Page 1 of 9
AOD5B60D
Symbol Min Typ Max Units
BV CES Collector-Emitter Breakdown Voltage 600 - - V
TJ=25°C - 1.55 1.8
TJ=125°C - 1.78 -
TJ=150°C - 1.85 -
TJ=25°C - 1.46 1.75
TJ=125°C - 1.36 -
TJ=150°C - 1.3 -
V GE(th) Gate-Emitter Threshold Voltage - 6 - V
TJ=25°C - - 10
TJ=125°C - - 100
TJ=150°C - - 500
I GES Gate-Emitter Leakage Current - - ±100 nA
g FS - 2.3 - S
C ies - 367 - pF
C oes - 34 - pF
C res - 1.47 - pF
Q g - 9.4 - nC
Q ge - 3.15 - nC
Q gc - 6.25 - nC
I C(SC) - 21 - A
R g - 3 - Ω
t D(on) - 12 - ns
t r - 15 - ns
Collector-Emitter Saturation Voltage
Output Capacitance
Input Capacitance
I CES Zero Gate Voltage Collector Current
V F Diode Forward Voltage
DYNAMIC PARAMETERS
µA
VCE=VGE, IC=1mA
Electrical Characteristics (TJ=25°C unless otherwise noted)
STATIC PARAMETERS
Parameter Conditions
Reverse Transfer Capacitance
VGE=0V, VCE=25V, f=1MHz
VCE=20V, IC=5A
VCE=0V, VGE=±20V
Forward Transconductance
V CE(sat)
IC=1mA, VGE=0V, TJ=25°C
VGE=15V, IC=5A V
VCE=600V, VGE=0V
VGE=0V, IC=5A V
Gate to Collector Charge
Gate to Emitter Charge VGE=15V, VCE=480V, IC=5A
SWITCHING PARAMETERS, (Load Inductive, TJ=25°C)
Short circuit collector current, Max.
1000 short circuits, Delay between
short circuits ≥ 1.0s
VGE=15V, VCE=400V, RG=60Ω
Total Gate Charge
Gate Resistance VGE=0V, VCE=0V, f=1MHz
Turn-On Rise Time
Turn-On Delay Time
TJ=25°Ct r - 15 - ns
t D(off) - 82 - ns
t f - 10 - ns
E on - 0.14 - mJ
E off - 0.04 - mJ
E total - 0.18 - mJ
t rr - 98 - ns
Q rr - 0.23 - µC
I rm - 4.4 - A
t D(on) - 11 - ns
t r - 16 - ns
t D(off) - 110 - ns
t f - 14 - ns
E on - 0.18 - mJ
E off - 0.08 - mJ
E total - 0.26 - mJ
t rr - 166 - ns
Q rr - 0.4 - µC
I rm - 5.2 - A
THIS PRODUCT HAS BEEN DESIGNED AND QUALIFIED FOR THE CONSUMER MARKET. APPLICATIONS OR USES AS CRITICAL
COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS ARE NOT AUTHORIZED. AOS DOES NOT ASSUME ANY LIABILITY ARISING
OUT OF SUCH APPLICATIONS OR USES OF ITS PRODUCTS. AOS RESERVES THE RIGHT TO IMPROVE PRODUCT DESIGN,
FUNCTIONS AND RELIABILITY WITHOUT NOTICE.
Turn-Off Energy
Turn-On Rise Time
SWITCHING PARAMETERS, (Load Inductive, TJ=150°C)
Diode Reverse Recovery Time
Diode Reverse Recovery Charge
Diode Peak Reverse Recovery Current
TJ=25°C
IF=5A,dI/dt=200A/µs,VCE=400V
Turn-Off Delay Time
TJ=25°C
VGE=15V, VCE=400V, IC=5A,
RG=60Ω,
Parasitic Ιnductance=75nH
Total Switching Energy
Turn-Off Fall Time
Turn-On Energy
TJ=150°C
IF=5A,dI/dt=200A/µs,VCE=400VDiode Reverse Recovery Charge
Diode Peak Reverse Recovery Current
Turn-On DelayTime
TJ=150°C
VGE=15V, VCE=400V, IC=5A,
RG=60Ω,
Parasitic Inductance=75nH
Turn-On Rise Time
Turn-Off Delay Time
Turn-Off Fall Time
Turn-On Energy
Diode Reverse Recovery Time
Turn-Off Energy
Total Switching Energy
Rev1: Nov 2012 www.aosmd.com Page 2 of 9
AOD5B60D
□
TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS
0
5
10
15
20
25
30
35
40
0.0 0.5 1.0 1.5 2.0 2.5 3.0
IF(A)
VF (V)
Fig 4: Diode Characteristic
25°C
150°C
-40°C
0
5
10
15
20
25
30
35
0 1 2 3 4 5 6 7
IC(A)
VCE(V)
Fig 1: Output Characteristic
(Tj=25°C )
9V
20V
17V
15V
11V
VGE= 7V
13V
0
5
10
15
20
4 7 10 13 16
IC(A)
VGE(V)
Fig 3: Transfer Characteristic
150°C
25°C
-40°CVCE=20V
0
5
10
15
20
25
30
0 1 2 3 4 5 6 7
IC(A)
VCE(V)
Fig 2: Output Characteristic
(Tj=150°C )
VGE=7V 9V
20V
17V
15V
11V
13V
0
5
10
15
20
25
30
35
40
0.0 0.5 1.0 1.5 2.0 2.5 3.0
IF(A)
VF (V)
Fig 4: Diode Characteristic
25°C
150°C
-40°C
0
5
10
15
20
25
30
35
0 1 2 3 4 5 6 7
IC(A)
VCE(V)
Fig 1: Output Characteristic
(Tj=25°C )
9V
20V
17V
15V
11V
VGE= 7V
13V
0
5
10
15
20
4 7 10 13 16
IC(A)
VGE(V)
Fig 3: Transfer Characteristic
150°C
25°C
-40°C
0
1
2
3
4
0 25 50 75 100 125 150
VCE(sat)(V)
Temperature (°C)
Fig 5: Collector-Emitter Saturation Voltage vs.
Junction Temperature
IC=10A
IC=2.5A
IC=5A
0
5
10
15
20
25
30
0
10
20
30
40
50
60
5 8 11 14 17 20
Current(A)
Time(µµµµS)
VGE (V)
Fig 6: VGE vs. Short Circuit Time
(VCE=400V,TC=25°C )
VCE=20V
0
5
10
15
20
25
30
0 1 2 3 4 5 6 7
IC(A)
VCE(V)
Fig 2: Output Characteristic
(Tj=150°C )
VGE=7V 9V
20V
17V
15V
11V
13V
Rev1: Nov 2012 www.aosmd.com Page 3 of 9
AOD5B60D
□
TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS
1
10
100
10 100 1,000
Ic(A)
VCE (V)
Fig 10: Reverse Bias SOA
(Tj=150°C,V GE=15V)
0
3
6
9
12
15
0 2 4 6 8 10
IC(A)
Qg(nC)
Fig 7: Gate-Charge Characteristics
VCE=480V
IC=5A
1
10
100
1000
0 5 10 15 20 25 30 35 40
Capacitance(pF)
VCE(V)
Fig 8: Capacitance Characteristic
Cies
Cres
Coes
1
10
100
10 100 1,000
Ic(A)
VCE (V)
Fig 10: Reverse Bias SOA
(Tj=150°C,V GE=15V)
0
3
6
9
12
15
0 2 4 6 8 10
IC(A)
Qg(nC)
Fig 7: Gate-Charge Characteristics
VCE=480V
IC=5A
0
10
20
30
40
50
60
25 50 75 100 125 150
PowerDisspation(W)
TCASE(°C)
Fig 11: Power Disspation as a Function of Case
1
10
100
1000
0 5 10 15 20 25 30 35 40
Capacitance(pF)
VCE(V)
Fig 8: Capacitance Characteristic
Cies
Cres
Coes
0
2
4
6
8
10
25 50 75 100 125 150
CurrentratingIC(A)
TCASE(°C)
Fig 12: Current De-rating
Rev1: Nov 2012 www.aosmd.com Page 4 of 9
AOD5B60D
≤
TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS
1
10
100
1000
0 3 6 9 12
SwitchingTime(nS)
IC (A)
Figure 13: Switching Time vs. IC
(Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ)
Td(off)
Tf
Td(on)
Tr
1
10
100
1,000
10,000
0 100 200 300 400 500 600
SwitchingTime(nS)
Rg (ΩΩΩΩ)
Figure 14: Switching Time vs. Rg
(Tj=150°C,V GE=15V,VCE=400V,IC=5A)
Td(off)
Tf
Td(on)
Tr
1
10
100
1000
0 50 100 150 200
SwitchingTime(nS)
TJ (°C)
Figure 15: Switching Time vs.Tj
( VGE=15V,VCE=400V,IC=5A,Rg=60ΩΩΩΩ)
Td(off)
Tf
Td(on)
Tr
0
2
4
6
8
10
0 30 60 90 120 150
VGE(TH)(V)
TJ (°C)
Figure 16: VGE(TH) vs. Tj
1
10
100
1000
0 3 6 9 12
SwitchingTime(nS)
IC (A)
Figure 13: Switching Time vs. IC
(Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ)
Td(off)
Tf
Td(on)
Tr
1
10
100
1,000
10,000
0 100 200 300 400 500 600
SwitchingTime(nS)
Rg (ΩΩΩΩ)
Figure 14: Switching Time vs. Rg
(Tj=150°C,V GE=15V,VCE=400V,IC=5A)
Td(off)
Tf
Td(on)
Tr
1
10
100
1000
0 50 100 150 200
SwitchingTime(nS)
TJ (°C)
Figure 15: Switching Time vs.Tj
( VGE=15V,VCE=400V,IC=5A,Rg=60ΩΩΩΩ)
Td(off)
Tf
Td(on)
Tr
0
2
4
6
8
10
0 30 60 90 120 150
VGE(TH)(V)
TJ (°C)
Figure 16: VGE(TH) vs. Tj
Rev1: Nov 2012 www.aosmd.com Page 5 of 9
AOD5B60D
≤
TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS
0
0.1
0.2
0.3
0.4
0.5
0.6
0 3 6 9 12
E,SwitchIngEnergy(mJ)
IC (A)
Figure 17: Switching Loss vs. IC
(Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ)
Eoff
Eon
Etotal
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0 100 200 300 400 500 600
SwitchingEnergy(mJ)
Rg (ΩΩΩΩ)
Figure 18: Switching Loss vs. Rg
(Tj=150°C,V GE=15V,VCE=400V,IC=5A)
Eoff
Eon
Etotal
0
0.1
0.2
0.3
0.4
0 25 50 75 100 125 150 175
SwitchingEnergy(mJ)
TJ (°C)
Eoff
Eon
Etotal
0.0
0.1
0.2
0.3
0.4
200 250 300 350 400 450 500
SwitchingEnergy(mJ)
V (V)
Eoff
Eon
Etotal
0
0.1
0.2
0.3
0.4
0.5
0.6
0 3 6 9 12
E,SwitchIngEnergy(mJ)
IC (A)
Figure 17: Switching Loss vs. IC
(Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ)
Eoff
Eon
Etotal
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0 100 200 300 400 500 600
SwitchingEnergy(mJ)
Rg (ΩΩΩΩ)
Figure 18: Switching Loss vs. Rg
(Tj=150°C,V GE=15V,VCE=400V,IC=5A)
Eoff
Eon
Etotal
0
0.1
0.2
0.3
0.4
0 25 50 75 100 125 150 175
SwitchingEnergy(mJ)
TJ (°C)
Figure 19: Switching Loss vs. Tj
(VGE=15V,VCE=400V,IC=5A,Rg=60ΩΩΩΩ)
Eoff
Eon
Etotal
0.0
0.1
0.2
0.3
0.4
200 250 300 350 400 450 500
SwitchingEnergy(mJ)
VCE (V)
Figure 20: Switching Loss vs. VCE
(Tj=150°C,V GE=15V,IC=5A,Rg=60ΩΩΩΩ)
Eoff
Eon
Etotal
Rev1: Nov 2012 www.aosmd.com Page 6 of 9
AOD5B60D
□
TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS
0
3
6
9
12
15
18
0
50
100
150
200
250
300
0 3 6 9 12
S
Trr(nS)
IS (A)
Fig 24: Diode Reverse Recovery Time and Softness
Factor vs. Conduction Current
(VGE=15V,VCE=400V, di/dt=200A/µµµµs)
150°C
25°C
150°C
25°C
Trr
S
0
5
10
15
20
25
30
35
40
0
100
200
300
400
500
600
700
800
0 3 6 9 12
Irm(A)
Qrr(nC)
IF(A)
Fig 23: Diode Reverse Recovery Charge and Peak
Current vs. Conduction Current
(VGE=15V,VCE=400V, di/dt=200A/µµµµs)
25°C
150°C
150°C
25°C
Qrr
Irm
13V
1.E-08
1.E-07
1.E-06
1.E-05
1.E-04
1.E-03
0 25 50 75 100 125 150 175
ICE(S)(A)
Temperature (°C )
Fig 21: Reverse Leakage Current vs. Junction
Temperature
VCE=600V
VCE=400V
0.2
0.7
1.2
1.7
2.2
0 25 50 75 100 125 150 175
VSD(V)
Temperature (°C )
Fig 22: Diode Forward Voltage vs. Junction
Temperature
15A
10A
5A
IF=1A
0
3
6
9
12
15
18
0
50
100
150
200
250
300
0 3 6 9 12
S
Trr(nS)
IS (A)
Fig 24: Diode Reverse Recovery Time and Softness
Factor vs. Conduction Current
(VGE=15V,VCE=400V, di/dt=200A/µµµµs)
150°C
25°C
150°C
25°C
Trr
S
0
5
10
15
20
25
30
35
40
0
100
200
300
400
500
600
700
800
0 3 6 9 12
Irm(A)
Qrr(nC)
IF(A)
Fig 23: Diode Reverse Recovery Charge and Peak
Current vs. Conduction Current
(VGE=15V,VCE=400V, di/dt=200A/µµµµs)
25°C
150°C
150°C
25°C
Qrr
Irm
13V
1.E-08
1.E-07
1.E-06
1.E-05
1.E-04
1.E-03
0 25 50 75 100 125 150 175
ICE(S)(A)
Temperature (°C )
Fig 21: Reverse Leakage Current vs. Junction
Temperature
VCE=600V
VCE=400V
0.2
0.7
1.2
1.7
2.2
0 25 50 75 100 125 150 175
VSD(V)
Temperature (°C )
Fig 22: Diode Forward Voltage vs. Junction
Temperature
15A
10A
5A
IF=1A
0
4
8
12
16
20
0
40
80
120
160
200
100 200 300 400 500 600 700 800 900
S
Trr(nS)
di/dt (A/µµµµS)
Fig 26: Diode Reverse Recovery Time and Softness
Factor vs. di/dt
(VGE=15V,VCE=400V,IF=5A)
25°C
150°C
25°C
150°C
Trr
S
0
10
20
30
40
50
60
0
100
200
300
400
500
600
100 200 300 400 500 600 700 800 900
Irm(A)
Qrr(nC)
di/dt (A/µµµµS)
Fig 25: Diode Reverse Recovery Charge and Peak
Current vs. di/dt
(VGE=15V,VCE=400V,IF=5A)
150°C
25°C
150°C
25°C
Qrr
Irm
Rev1: Nov 2012 www.aosmd.com Page 7 of 9
AOD5B60D
□
TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS
0.001
0.01
0.1
1
10
1E-06 1E-05 0.0001 0.001 0.01 0.1 1 10
ZθθθθJCNormalizedTransient
ThermalResistance
Pulse Width (s)
Figure 27: Normalized Maximum Transient Thermal Impedance for IGBT
D=Ton/T
TJ,PK=TC+PDM.ZθJC.RθJC
RθJC=2.3°C/W
In descending order
D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse
Single Pulse
Ton
T
PD
0.001
0.01
0.1
1
10
1E-05 0.0001 0.001 0.01 0.1 1 10
ZθθθθJCNormalizedTransient
ThermalResistance
Pulse Width (s)
Figure 28: Normalized Maximum Transient Thermal Impedance for Diode
D=Ton/T
TJ,PK=TC+PDM.ZθJC.RθJC
RθJC=3°C/W
In descending order
D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse
Single Pulse
Ton
T
PD
0.001
0.01
0.1
1
10
1E-06 1E-05 0.0001 0.001 0.01 0.1 1 10
ZθθθθJCNormalizedTransient
ThermalResistance
Pulse Width (s)
Figure 27: Normalized Maximum Transient Thermal Impedance for IGBT
D=Ton/T
TJ,PK=TC+PDM.ZθJC.RθJC
RθJC=2.3°C/W
In descending order
D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse
Single Pulse
Ton
T
PD
0.001
0.01
0.1
1
10
1E-05 0.0001 0.001 0.01 0.1 1 10
ZθθθθJCNormalizedTransient
ThermalResistance
Pulse Width (s)
Figure 28: Normalized Maximum Transient Thermal Impedance for Diode
D=Ton/T
TJ,PK=TC+PDM.ZθJC.RθJC
RθJC=3°C/W
In descending order
D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse
Single Pulse
Ton
T
PD
Rev1: Nov 2012 www.aosmd.com Page 8 of 9
AOD5B60D
Rev1: Nov 2012 www.aosmd.com Page 9 of 9

More Related Content

What's hot

Pulse width modulated inverter
Pulse width modulated inverterPulse width modulated inverter
Pulse width modulated inverter
VSRAGHU
 
Internship Sapphire Power Plant (GE)
Internship Sapphire Power Plant (GE)Internship Sapphire Power Plant (GE)
Internship Sapphire Power Plant (GE)
Muhammad Usman
 
Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...
Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...
Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...
Thane Heins Regenerative Acceleration Generator Technology
 
Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR
Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR  Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR
Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR
SaadIzhar
 
Dol presentation
Dol presentationDol presentation
Dol presentation
Nii Odartei Lante
 
Potential Difference National Research Council of Canada Report Final
Potential Difference National Research Council of Canada Report FinalPotential Difference National Research Council of Canada Report Final
Potential Difference National Research Council of Canada Report FinalThane Heins
 
Testing of transformer
Testing of transformerTesting of transformer
Testing of transformer
SMRITI KESHARWANI
 
Coop Final Report at Saudi Electricity Company (SEC).pdf
Coop Final Report at Saudi Electricity Company (SEC).pdfCoop Final Report at Saudi Electricity Company (SEC).pdf
Coop Final Report at Saudi Electricity Company (SEC).pdf
ssusere9b3b4
 
Motor ac 3 fasa
Motor ac 3 fasaMotor ac 3 fasa
Motor ac 3 fasa
uti kurnia
 
INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)
INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)
INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)
Thane Heins Regenerative Acceleration Generator Technology
 
ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...
ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...
ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...
Thane Heins
 
Summer Internship and Project Report on Power System Operation Corporation Li...
Summer Internship and Project Report on Power System Operation Corporation Li...Summer Internship and Project Report on Power System Operation Corporation Li...
Summer Internship and Project Report on Power System Operation Corporation Li...
Pratap Bhunia
 
Pembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12V
Pembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12VPembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12V
Pembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12VMateri Kuliah Online
 
McMaster University, Dr. Schofield ReGenX Demonstration Protocol
McMaster University, Dr. Schofield ReGenX Demonstration ProtocolMcMaster University, Dr. Schofield ReGenX Demonstration Protocol
McMaster University, Dr. Schofield ReGenX Demonstration Protocol
Thane Heins Regenerative Acceleration Generator Technology
 
Three Phase Induction Motor & Its Application
Three Phase Induction Motor & Its ApplicationThree Phase Induction Motor & Its Application
Three Phase Induction Motor & Its Application
Imran Hossain Chowdhury
 
chapter 1 linear dc power supply
chapter 1 linear dc power supplychapter 1 linear dc power supply
chapter 1 linear dc power supply
Aida Mustapha
 
C&S Electric Summer Training Report
C&S Electric Summer Training ReportC&S Electric Summer Training Report
C&S Electric Summer Training Report
Paras Pratap
 
Line differential protection 7 sd52x 7sd610. siemens
Line differential protection 7 sd52x  7sd610. siemensLine differential protection 7 sd52x  7sd610. siemens
Line differential protection 7 sd52x 7sd610. siemens
shervin shokri
 
Digital Energy Meter Project Report
Digital Energy Meter Project ReportDigital Energy Meter Project Report
Digital Energy Meter Project Report
Vijayananda Mohire
 

What's hot (20)

training report
training reporttraining report
training report
 
Pulse width modulated inverter
Pulse width modulated inverterPulse width modulated inverter
Pulse width modulated inverter
 
Internship Sapphire Power Plant (GE)
Internship Sapphire Power Plant (GE)Internship Sapphire Power Plant (GE)
Internship Sapphire Power Plant (GE)
 
Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...
Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...
Law of Creation of Energy and the History of US Patented ReGenX Generator Inn...
 
Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR
Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR  Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR
Intership report PAK ELEKTRON LIMITED (PEL) , ENERGY METER PLANT SAAD IZHAR
 
Dol presentation
Dol presentationDol presentation
Dol presentation
 
Potential Difference National Research Council of Canada Report Final
Potential Difference National Research Council of Canada Report FinalPotential Difference National Research Council of Canada Report Final
Potential Difference National Research Council of Canada Report Final
 
Testing of transformer
Testing of transformerTesting of transformer
Testing of transformer
 
Coop Final Report at Saudi Electricity Company (SEC).pdf
Coop Final Report at Saudi Electricity Company (SEC).pdfCoop Final Report at Saudi Electricity Company (SEC).pdf
Coop Final Report at Saudi Electricity Company (SEC).pdf
 
Motor ac 3 fasa
Motor ac 3 fasaMotor ac 3 fasa
Motor ac 3 fasa
 
INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)
INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)
INTRODUCTION to Potential Difference Inc. Bi-Toroid Transformer (BiTT)
 
ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...
ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...
ReGenX Generator Prototypes for Advanced Energy Performance Testing and Valid...
 
Summer Internship and Project Report on Power System Operation Corporation Li...
Summer Internship and Project Report on Power System Operation Corporation Li...Summer Internship and Project Report on Power System Operation Corporation Li...
Summer Internship and Project Report on Power System Operation Corporation Li...
 
Pembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12V
Pembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12VPembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12V
Pembuatan Rangkaian Adaptor dengan Keluaran 5V dan 12V
 
McMaster University, Dr. Schofield ReGenX Demonstration Protocol
McMaster University, Dr. Schofield ReGenX Demonstration ProtocolMcMaster University, Dr. Schofield ReGenX Demonstration Protocol
McMaster University, Dr. Schofield ReGenX Demonstration Protocol
 
Three Phase Induction Motor & Its Application
Three Phase Induction Motor & Its ApplicationThree Phase Induction Motor & Its Application
Three Phase Induction Motor & Its Application
 
chapter 1 linear dc power supply
chapter 1 linear dc power supplychapter 1 linear dc power supply
chapter 1 linear dc power supply
 
C&S Electric Summer Training Report
C&S Electric Summer Training ReportC&S Electric Summer Training Report
C&S Electric Summer Training Report
 
Line differential protection 7 sd52x 7sd610. siemens
Line differential protection 7 sd52x  7sd610. siemensLine differential protection 7 sd52x  7sd610. siemens
Line differential protection 7 sd52x 7sd610. siemens
 
Digital Energy Meter Project Report
Digital Energy Meter Project ReportDigital Energy Meter Project Report
Digital Energy Meter Project Report
 

Similar to Original Mosfet AOD5B60D D5B60D 600V 5A TO-252 New

Original IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A New
Original IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A NewOriginal IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A New
Original IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A New
authelectroniccom
 
Original IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New Infineon
Original IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New InfineonOriginal IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New Infineon
Original IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New Infineon
AUTHELECTRONIC
 
Original IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New Infineon
Original IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New InfineonOriginal IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New Infineon
Original IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New Infineon
AUTHELECTRONIC
 
Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...
Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...
Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...
AUTHELECTRONIC
 
Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...
Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...
Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...
AUTHELECTRONIC
 
Original IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 New
Original IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 NewOriginal IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 New
Original IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 New
AUTHELECTRONIC
 
Original IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 New
Original IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 NewOriginal IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 New
Original IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 New
AUTHELECTRONIC
 
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IROriginal IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
authelectroniccom
 
Original IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 New
Original IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 NewOriginal IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 New
Original IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 New
AUTHELECTRONIC
 
Original N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IR
Original N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IROriginal N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IR
Original N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IR
authelectroniccom
 
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronicsOriginal IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
authelectroniccom
 
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronicsOriginal IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
AUTHELECTRONIC
 
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
authelectroniccom
 
Original IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V New
Original IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V NewOriginal IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V New
Original IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V New
authelectroniccom
 
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New InfineonOriginal IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
authelectroniccom
 
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A NewOriginal IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
AUTHELECTRONIC
 
CM1000E4C-66R Datasheet (English)
CM1000E4C-66R Datasheet (English)CM1000E4C-66R Datasheet (English)
CM1000E4C-66R Datasheet (English)
Tsuyoshi Horigome
 
Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...
Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...
Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...
authelectroniccom
 
Original IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon Technologies
Original IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon TechnologiesOriginal IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon Technologies
Original IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon Technologies
AUTHELECTRONIC
 
Original IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 New
Original IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 NewOriginal IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 New
Original IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 New
authelectroniccom
 

Similar to Original Mosfet AOD5B60D D5B60D 600V 5A TO-252 New (20)

Original IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A New
Original IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A NewOriginal IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A New
Original IGBT AOTF15B60D2 TF15B60D2 TF15B60 15B60 TO-220F IGBT 600V 15A New
 
Original IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New Infineon
Original IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New InfineonOriginal IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New Infineon
Original IGBT IKB06N60T K06T60 06T60 06N60 6N60 TO-263 New Infineon
 
Original IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New Infineon
Original IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New InfineonOriginal IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New Infineon
Original IGBT IKA10N60T K10T60 10T60 600V 10A TO-220 New Infineon
 
Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...
Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...
Original IGBT Transistor FGA15N120ANTDTU 1200V 24A TO-3P New ON Semiconductor...
 
Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...
Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...
Original IGBT Transistor IHW25N1202R2 H25R1202 25A 1200V TO-247 New Infineon ...
 
Original IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 New
Original IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 NewOriginal IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 New
Original IGBT FGP20N60 20N60 FGP20N60UFD 20A 600V TO-220 New
 
Original IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 New
Original IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 NewOriginal IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 New
Original IGBT IRG4BC20KD G4BC20KD 600V 9A TO-220 New
 
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IROriginal IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
Original IGBT IC IRGIB10B60KD1P 600V 21A New Infineon IR
 
Original IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 New
Original IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 NewOriginal IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 New
Original IGBT IRG4BC20KD-S G4BC20KD 600V 9A TO-263 New
 
Original N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IR
Original N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IROriginal N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IR
Original N-Channel IGBT GIB10B60KD1 GIB10B60KDI 10A 600V TO-220F New IR
 
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronicsOriginal IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD 6N60 600V 15A TO-220 New STMicroelectronics
 
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronicsOriginal IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
Original IGBT STGP6NC60HD GP6NC60 6N60 600V 15A TO-220 New STMicroelectronics
 
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
Original IGBT N-CHANNEL IRG7IC28U IRG71C28U G7IC28U G71C28U 71C28 225A 600V T...
 
Original IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V New
Original IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V NewOriginal IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V New
Original IGBT N-Channel FGA25N120 25N120 ANTD 25A 1200V New
 
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New InfineonOriginal IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
Original IGBT IRGP4068DPBF GP4068D 4068 600V 96A 330W TO-247 New Infineon
 
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A NewOriginal IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
Original IGBT SGF23N60UFD G23N60UF G23N60 23N60 600V 23A New
 
CM1000E4C-66R Datasheet (English)
CM1000E4C-66R Datasheet (English)CM1000E4C-66R Datasheet (English)
CM1000E4C-66R Datasheet (English)
 
Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...
Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...
Original N-CHANNEL IGBT GB10NC60KD STGB10NC60KDT4 10A 600V TO-263 New STMicro...
 
Original IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon Technologies
Original IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon TechnologiesOriginal IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon Technologies
Original IGBT SGW30N60 30N60 G30N60 600V 30A TO-247 New Infineon Technologies
 
Original IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 New
Original IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 NewOriginal IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 New
Original IGBT N-CHANNEL STGP7NC60HD GP7NC60HD 7NC60 14A 600V TO-220 New
 

More from AUTHELECTRONIC

Original Power Supply IC LNK632DG LNK632 632 SOP-7 New
Original Power Supply IC LNK632DG LNK632 632 SOP-7 NewOriginal Power Supply IC LNK632DG LNK632 632 SOP-7 New
Original Power Supply IC LNK632DG LNK632 632 SOP-7 New
AUTHELECTRONIC
 
Original Relay G5RL 1A 12V New Omron 
Original Relay G5RL 1A 12V New Omron Original Relay G5RL 1A 12V New Omron 
Original Relay G5RL 1A 12V New Omron 
AUTHELECTRONIC
 
Original Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New Leadtrend
Original Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New LeadtrendOriginal Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New Leadtrend
Original Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New Leadtrend
AUTHELECTRONIC
 
Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...
Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...
Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...
AUTHELECTRONIC
 
Original EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New Rohm
Original EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New RohmOriginal EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New Rohm
Original EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New Rohm
AUTHELECTRONIC
 
Original Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST Microelectronics
Original Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST MicroelectronicsOriginal Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST Microelectronics
Original Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST Microelectronics
AUTHELECTRONIC
 
Original N-Channel Mosfet 2SK3562 3562 TO-220 New Toshiba
Original N-Channel Mosfet 2SK3562  3562 TO-220 New ToshibaOriginal N-Channel Mosfet 2SK3562  3562 TO-220 New Toshiba
Original N-Channel Mosfet 2SK3562 3562 TO-220 New Toshiba
AUTHELECTRONIC
 
Original N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChild
Original N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChildOriginal N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChild
Original N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChild
AUTHELECTRONIC
 
Original N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International Rectifier
Original N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International RectifierOriginal N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International Rectifier
Original N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International Rectifier
AUTHELECTRONIC
 
Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...
Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...
Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...
AUTHELECTRONIC
 
Original Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New Toshiba
Original Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New ToshibaOriginal Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New Toshiba
Original Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New Toshiba
AUTHELECTRONIC
 
Original High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 New
Original High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 NewOriginal High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 New
Original High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 New
AUTHELECTRONIC
 
Original Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...
Original  Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...Original  Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...
Original Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...
AUTHELECTRONIC
 
Original Analog Switch IC CD74HC4066PWR SN74HC4066DR 4066DR 4066PWR 4066 SOP...
Original Analog Switch IC CD74HC4066PWR  SN74HC4066DR 4066DR 4066PWR 4066 SOP...Original Analog Switch IC CD74HC4066PWR  SN74HC4066DR 4066DR 4066PWR 4066 SOP...
Original Analog Switch IC CD74HC4066PWR SN74HC4066DR 4066DR 4066PWR 4066 SOP...
AUTHELECTRONIC
 
Original Microcontroller IC R5F104BDA R5F 104BDA 104 New
Original Microcontroller IC R5F104BDA R5F 104BDA 104 NewOriginal Microcontroller IC R5F104BDA R5F 104BDA 104 New
Original Microcontroller IC R5F104BDA R5F 104BDA 104 New
AUTHELECTRONIC
 
Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...
Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...
Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...
AUTHELECTRONIC
 
Original Led Driver IC TM1620 1620 New Shenzhen
Original Led Driver IC TM1620 1620 New ShenzhenOriginal Led Driver IC TM1620 1620 New Shenzhen
Original Led Driver IC TM1620 1620 New Shenzhen
AUTHELECTRONIC
 
Original Gate Driver IC TD62083APG 62083APG 62083 DIP-18 New Toshiba
Original Gate Driver IC TD62083APG  62083APG 62083 DIP-18 New ToshibaOriginal Gate Driver IC TD62083APG  62083APG 62083 DIP-18 New Toshiba
Original Gate Driver IC TD62083APG 62083APG 62083 DIP-18 New Toshiba
AUTHELECTRONIC
 
Original Zener Diode 1N5366B 5366B 5366 5W 39V New
Original Zener Diode 1N5366B 5366B 5366 5W 39V NewOriginal Zener Diode 1N5366B 5366B 5366 5W 39V New
Original Zener Diode 1N5366B 5366B 5366 5W 39V New
AUTHELECTRONIC
 
Original Audio Amplifier IC TDA7850 7850 SIP-25 New ST Microelectronics
Original Audio Amplifier IC TDA7850 7850 SIP-25 New ST MicroelectronicsOriginal Audio Amplifier IC TDA7850 7850 SIP-25 New ST Microelectronics
Original Audio Amplifier IC TDA7850 7850 SIP-25 New ST Microelectronics
AUTHELECTRONIC
 

More from AUTHELECTRONIC (20)

Original Power Supply IC LNK632DG LNK632 632 SOP-7 New
Original Power Supply IC LNK632DG LNK632 632 SOP-7 NewOriginal Power Supply IC LNK632DG LNK632 632 SOP-7 New
Original Power Supply IC LNK632DG LNK632 632 SOP-7 New
 
Original Relay G5RL 1A 12V New Omron 
Original Relay G5RL 1A 12V New Omron Original Relay G5RL 1A 12V New Omron 
Original Relay G5RL 1A 12V New Omron 
 
Original Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New Leadtrend
Original Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New LeadtrendOriginal Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New Leadtrend
Original Transition-Mode PFC Controller IC LD7591GS 7591 SOP-8 New Leadtrend
 
Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...
Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...
Original NPN Darlington Transistor MC1413DR2G 1413DR2G NCV1413BDG 1413BDG 141...
 
Original EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New Rohm
Original EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New RohmOriginal EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New Rohm
Original EEPROM IC BR93L76RFJ 93L76 RL76 SOP-8 New Rohm
 
Original Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST Microelectronics
Original Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST MicroelectronicsOriginal Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST Microelectronics
Original Advanced IGBT/Mosfet Driver TD350E 350E SOP-14 New ST Microelectronics
 
Original N-Channel Mosfet 2SK3562 3562 TO-220 New Toshiba
Original N-Channel Mosfet 2SK3562  3562 TO-220 New ToshibaOriginal N-Channel Mosfet 2SK3562  3562 TO-220 New Toshiba
Original N-Channel Mosfet 2SK3562 3562 TO-220 New Toshiba
 
Original N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChild
Original N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChildOriginal N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChild
Original N-Channel Mosfet FDPF33N25 33N25 TO-220 New FairChild
 
Original N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International Rectifier
Original N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International RectifierOriginal N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International Rectifier
Original N-Channel Mosfet IRFB4020PBF 4020 TO-220-3 New International Rectifier
 
Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...
Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...
Original Logic IC SN74LVC14A SN54LVC14A 74LVC14A 54LVC14A SOP-14 New Texas In...
 
Original Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New Toshiba
Original Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New ToshibaOriginal Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New Toshiba
Original Logic IC TC74HC238AF 74HC238AF 238AF SOP-16 New Toshiba
 
Original High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 New
Original High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 NewOriginal High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 New
Original High Voltage Isolation IC ACS710T KLA-12CB 710T SOP-16 New
 
Original Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...
Original  Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...Original  Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...
Original Voltage Regulator & Controller IC TPS54231DR 54231DR 54231 SOP-8 Ne...
 
Original Analog Switch IC CD74HC4066PWR SN74HC4066DR 4066DR 4066PWR 4066 SOP...
Original Analog Switch IC CD74HC4066PWR  SN74HC4066DR 4066DR 4066PWR 4066 SOP...Original Analog Switch IC CD74HC4066PWR  SN74HC4066DR 4066DR 4066PWR 4066 SOP...
Original Analog Switch IC CD74HC4066PWR SN74HC4066DR 4066DR 4066PWR 4066 SOP...
 
Original Microcontroller IC R5F104BDA R5F 104BDA 104 New
Original Microcontroller IC R5F104BDA R5F 104BDA 104 NewOriginal Microcontroller IC R5F104BDA R5F 104BDA 104 New
Original Microcontroller IC R5F104BDA R5F 104BDA 104 New
 
Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...
Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...
Original Power Factor Correction IC UCC28061DR 28061 SOP-16 New Texas Instrum...
 
Original Led Driver IC TM1620 1620 New Shenzhen
Original Led Driver IC TM1620 1620 New ShenzhenOriginal Led Driver IC TM1620 1620 New Shenzhen
Original Led Driver IC TM1620 1620 New Shenzhen
 
Original Gate Driver IC TD62083APG 62083APG 62083 DIP-18 New Toshiba
Original Gate Driver IC TD62083APG  62083APG 62083 DIP-18 New ToshibaOriginal Gate Driver IC TD62083APG  62083APG 62083 DIP-18 New Toshiba
Original Gate Driver IC TD62083APG 62083APG 62083 DIP-18 New Toshiba
 
Original Zener Diode 1N5366B 5366B 5366 5W 39V New
Original Zener Diode 1N5366B 5366B 5366 5W 39V NewOriginal Zener Diode 1N5366B 5366B 5366 5W 39V New
Original Zener Diode 1N5366B 5366B 5366 5W 39V New
 
Original Audio Amplifier IC TDA7850 7850 SIP-25 New ST Microelectronics
Original Audio Amplifier IC TDA7850 7850 SIP-25 New ST MicroelectronicsOriginal Audio Amplifier IC TDA7850 7850 SIP-25 New ST Microelectronics
Original Audio Amplifier IC TDA7850 7850 SIP-25 New ST Microelectronics
 

Recently uploaded

Cosmetic shop management system project report.pdf
Cosmetic shop management system project report.pdfCosmetic shop management system project report.pdf
Cosmetic shop management system project report.pdf
Kamal Acharya
 
Student information management system project report ii.pdf
Student information management system project report ii.pdfStudent information management system project report ii.pdf
Student information management system project report ii.pdf
Kamal Acharya
 
Courier management system project report.pdf
Courier management system project report.pdfCourier management system project report.pdf
Courier management system project report.pdf
Kamal Acharya
 
AKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdf
AKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdfAKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdf
AKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdf
SamSarthak3
 
Design and Analysis of Algorithms-DP,Backtracking,Graphs,B&B
Design and Analysis of Algorithms-DP,Backtracking,Graphs,B&BDesign and Analysis of Algorithms-DP,Backtracking,Graphs,B&B
Design and Analysis of Algorithms-DP,Backtracking,Graphs,B&B
Sreedhar Chowdam
 
CME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional ElectiveCME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional Elective
karthi keyan
 
ethical hacking in wireless-hacking1.ppt
ethical hacking in wireless-hacking1.pptethical hacking in wireless-hacking1.ppt
ethical hacking in wireless-hacking1.ppt
Jayaprasanna4
 
Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...
Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...
Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...
Dr.Costas Sachpazis
 
Forklift Classes Overview by Intella Parts
Forklift Classes Overview by Intella PartsForklift Classes Overview by Intella Parts
Forklift Classes Overview by Intella Parts
Intella Parts
 
LIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.pptLIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.ppt
ssuser9bd3ba
 
Democratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek AryaDemocratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek Arya
abh.arya
 
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdf
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdfHybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdf
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdf
fxintegritypublishin
 
Automobile Management System Project Report.pdf
Automobile Management System Project Report.pdfAutomobile Management System Project Report.pdf
Automobile Management System Project Report.pdf
Kamal Acharya
 
Top 10 Oil and Gas Projects in Saudi Arabia 2024.pdf
Top 10 Oil and Gas Projects in Saudi Arabia 2024.pdfTop 10 Oil and Gas Projects in Saudi Arabia 2024.pdf
Top 10 Oil and Gas Projects in Saudi Arabia 2024.pdf
Teleport Manpower Consultant
 
The Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfThe Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdf
Pipe Restoration Solutions
 
TECHNICAL TRAINING MANUAL GENERAL FAMILIARIZATION COURSE
TECHNICAL TRAINING MANUAL   GENERAL FAMILIARIZATION COURSETECHNICAL TRAINING MANUAL   GENERAL FAMILIARIZATION COURSE
TECHNICAL TRAINING MANUAL GENERAL FAMILIARIZATION COURSE
DuvanRamosGarzon1
 
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptxCFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
R&R Consult
 
block diagram and signal flow graph representation
block diagram and signal flow graph representationblock diagram and signal flow graph representation
block diagram and signal flow graph representation
Divya Somashekar
 
ethical hacking-mobile hacking methods.ppt
ethical hacking-mobile hacking methods.pptethical hacking-mobile hacking methods.ppt
ethical hacking-mobile hacking methods.ppt
Jayaprasanna4
 
Railway Signalling Principles Edition 3.pdf
Railway Signalling Principles Edition 3.pdfRailway Signalling Principles Edition 3.pdf
Railway Signalling Principles Edition 3.pdf
TeeVichai
 

Recently uploaded (20)

Cosmetic shop management system project report.pdf
Cosmetic shop management system project report.pdfCosmetic shop management system project report.pdf
Cosmetic shop management system project report.pdf
 
Student information management system project report ii.pdf
Student information management system project report ii.pdfStudent information management system project report ii.pdf
Student information management system project report ii.pdf
 
Courier management system project report.pdf
Courier management system project report.pdfCourier management system project report.pdf
Courier management system project report.pdf
 
AKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdf
AKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdfAKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdf
AKS UNIVERSITY Satna Final Year Project By OM Hardaha.pdf
 
Design and Analysis of Algorithms-DP,Backtracking,Graphs,B&B
Design and Analysis of Algorithms-DP,Backtracking,Graphs,B&BDesign and Analysis of Algorithms-DP,Backtracking,Graphs,B&B
Design and Analysis of Algorithms-DP,Backtracking,Graphs,B&B
 
CME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional ElectiveCME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional Elective
 
ethical hacking in wireless-hacking1.ppt
ethical hacking in wireless-hacking1.pptethical hacking in wireless-hacking1.ppt
ethical hacking in wireless-hacking1.ppt
 
Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...
Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...
Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...
 
Forklift Classes Overview by Intella Parts
Forklift Classes Overview by Intella PartsForklift Classes Overview by Intella Parts
Forklift Classes Overview by Intella Parts
 
LIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.pptLIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.ppt
 
Democratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek AryaDemocratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek Arya
 
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdf
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdfHybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdf
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdf
 
Automobile Management System Project Report.pdf
Automobile Management System Project Report.pdfAutomobile Management System Project Report.pdf
Automobile Management System Project Report.pdf
 
Top 10 Oil and Gas Projects in Saudi Arabia 2024.pdf
Top 10 Oil and Gas Projects in Saudi Arabia 2024.pdfTop 10 Oil and Gas Projects in Saudi Arabia 2024.pdf
Top 10 Oil and Gas Projects in Saudi Arabia 2024.pdf
 
The Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfThe Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdf
 
TECHNICAL TRAINING MANUAL GENERAL FAMILIARIZATION COURSE
TECHNICAL TRAINING MANUAL   GENERAL FAMILIARIZATION COURSETECHNICAL TRAINING MANUAL   GENERAL FAMILIARIZATION COURSE
TECHNICAL TRAINING MANUAL GENERAL FAMILIARIZATION COURSE
 
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptxCFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
 
block diagram and signal flow graph representation
block diagram and signal flow graph representationblock diagram and signal flow graph representation
block diagram and signal flow graph representation
 
ethical hacking-mobile hacking methods.ppt
ethical hacking-mobile hacking methods.pptethical hacking-mobile hacking methods.ppt
ethical hacking-mobile hacking methods.ppt
 
Railway Signalling Principles Edition 3.pdf
Railway Signalling Principles Edition 3.pdfRailway Signalling Principles Edition 3.pdf
Railway Signalling Principles Edition 3.pdf
 

Original Mosfet AOD5B60D D5B60D 600V 5A TO-252 New

  • 1. AOD5B60D 600V, 5A Alpha IGBT TM with Diode General Description Product Summary VCE IC (TC=100°C) 5A VCE(sat) (TC=25°C) 1.55V Symbol V CE The Alpha IGBTTM line of products offers best-in-class performance in conduction and switching losses, with robust short circuit capability. They are designed for ease of paralleling, minimal gate spike under high dV/dt conditions and resistance to oscillations. The soft co- package diode is targeted for minimal losses in motor control applications. V UnitsParameter Absolute Maximum Ratings TA=25°C unless otherwise noted AOD5B60D 600V Collector-Emitter Voltage 600 G C E AOD5B60D Top View TO252 DPAK Bottom View C G G E C E CE V GE I CM I LM Diode Pulsed Current, Limited by TJmax I FM t SC T J , T STG T L Symbol R θ JA R θ JC R θ JC °C/W3Maximum Diode Junction-to-Case °C/W2.3Maximum IGBT Junction-to-Case Maximum Junction-to-Ambient 10 µs TC=100°C Maximum lead temperature for soldering purpose, 1/8" from case for 5 seconds °C Power Dissipation P D Short circuit withstanding time VGE = 15V, VCE ≤ 400V, delay between short circuits ≥ 1.0s, TC=150°C Junction and Storage Temperature Range TC=25°C Thermal Characteristics 300 -55 to 150 54.4 20 °C/W55 21.7 °C 20 AOD5B60D Pulsed Collector Current, Limited by TJmax Gate-Emitter Voltage TC=100°C W Units A A Parameter ±20 V 20 A A Continuous Diode Forward Current TC=25°C I F 10 A TC=100°C Continuous Collector Current TC=25°C 5 10 5 I C Turn off SOA, VCE ≤ 600V, Limited by TJmax G C E AOD5B60D Top View TO252 DPAK Bottom View C G G E C E Rev1: Nov 2012 www.aosmd.com Page 1 of 9
  • 2. AOD5B60D Symbol Min Typ Max Units BV CES Collector-Emitter Breakdown Voltage 600 - - V TJ=25°C - 1.55 1.8 TJ=125°C - 1.78 - TJ=150°C - 1.85 - TJ=25°C - 1.46 1.75 TJ=125°C - 1.36 - TJ=150°C - 1.3 - V GE(th) Gate-Emitter Threshold Voltage - 6 - V TJ=25°C - - 10 TJ=125°C - - 100 TJ=150°C - - 500 I GES Gate-Emitter Leakage Current - - ±100 nA g FS - 2.3 - S C ies - 367 - pF C oes - 34 - pF C res - 1.47 - pF Q g - 9.4 - nC Q ge - 3.15 - nC Q gc - 6.25 - nC I C(SC) - 21 - A R g - 3 - Ω t D(on) - 12 - ns t r - 15 - ns Collector-Emitter Saturation Voltage Output Capacitance Input Capacitance I CES Zero Gate Voltage Collector Current V F Diode Forward Voltage DYNAMIC PARAMETERS µA VCE=VGE, IC=1mA Electrical Characteristics (TJ=25°C unless otherwise noted) STATIC PARAMETERS Parameter Conditions Reverse Transfer Capacitance VGE=0V, VCE=25V, f=1MHz VCE=20V, IC=5A VCE=0V, VGE=±20V Forward Transconductance V CE(sat) IC=1mA, VGE=0V, TJ=25°C VGE=15V, IC=5A V VCE=600V, VGE=0V VGE=0V, IC=5A V Gate to Collector Charge Gate to Emitter Charge VGE=15V, VCE=480V, IC=5A SWITCHING PARAMETERS, (Load Inductive, TJ=25°C) Short circuit collector current, Max. 1000 short circuits, Delay between short circuits ≥ 1.0s VGE=15V, VCE=400V, RG=60Ω Total Gate Charge Gate Resistance VGE=0V, VCE=0V, f=1MHz Turn-On Rise Time Turn-On Delay Time TJ=25°Ct r - 15 - ns t D(off) - 82 - ns t f - 10 - ns E on - 0.14 - mJ E off - 0.04 - mJ E total - 0.18 - mJ t rr - 98 - ns Q rr - 0.23 - µC I rm - 4.4 - A t D(on) - 11 - ns t r - 16 - ns t D(off) - 110 - ns t f - 14 - ns E on - 0.18 - mJ E off - 0.08 - mJ E total - 0.26 - mJ t rr - 166 - ns Q rr - 0.4 - µC I rm - 5.2 - A THIS PRODUCT HAS BEEN DESIGNED AND QUALIFIED FOR THE CONSUMER MARKET. APPLICATIONS OR USES AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS ARE NOT AUTHORIZED. AOS DOES NOT ASSUME ANY LIABILITY ARISING OUT OF SUCH APPLICATIONS OR USES OF ITS PRODUCTS. AOS RESERVES THE RIGHT TO IMPROVE PRODUCT DESIGN, FUNCTIONS AND RELIABILITY WITHOUT NOTICE. Turn-Off Energy Turn-On Rise Time SWITCHING PARAMETERS, (Load Inductive, TJ=150°C) Diode Reverse Recovery Time Diode Reverse Recovery Charge Diode Peak Reverse Recovery Current TJ=25°C IF=5A,dI/dt=200A/µs,VCE=400V Turn-Off Delay Time TJ=25°C VGE=15V, VCE=400V, IC=5A, RG=60Ω, Parasitic Ιnductance=75nH Total Switching Energy Turn-Off Fall Time Turn-On Energy TJ=150°C IF=5A,dI/dt=200A/µs,VCE=400VDiode Reverse Recovery Charge Diode Peak Reverse Recovery Current Turn-On DelayTime TJ=150°C VGE=15V, VCE=400V, IC=5A, RG=60Ω, Parasitic Inductance=75nH Turn-On Rise Time Turn-Off Delay Time Turn-Off Fall Time Turn-On Energy Diode Reverse Recovery Time Turn-Off Energy Total Switching Energy Rev1: Nov 2012 www.aosmd.com Page 2 of 9
  • 3. AOD5B60D □ TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS 0 5 10 15 20 25 30 35 40 0.0 0.5 1.0 1.5 2.0 2.5 3.0 IF(A) VF (V) Fig 4: Diode Characteristic 25°C 150°C -40°C 0 5 10 15 20 25 30 35 0 1 2 3 4 5 6 7 IC(A) VCE(V) Fig 1: Output Characteristic (Tj=25°C ) 9V 20V 17V 15V 11V VGE= 7V 13V 0 5 10 15 20 4 7 10 13 16 IC(A) VGE(V) Fig 3: Transfer Characteristic 150°C 25°C -40°CVCE=20V 0 5 10 15 20 25 30 0 1 2 3 4 5 6 7 IC(A) VCE(V) Fig 2: Output Characteristic (Tj=150°C ) VGE=7V 9V 20V 17V 15V 11V 13V 0 5 10 15 20 25 30 35 40 0.0 0.5 1.0 1.5 2.0 2.5 3.0 IF(A) VF (V) Fig 4: Diode Characteristic 25°C 150°C -40°C 0 5 10 15 20 25 30 35 0 1 2 3 4 5 6 7 IC(A) VCE(V) Fig 1: Output Characteristic (Tj=25°C ) 9V 20V 17V 15V 11V VGE= 7V 13V 0 5 10 15 20 4 7 10 13 16 IC(A) VGE(V) Fig 3: Transfer Characteristic 150°C 25°C -40°C 0 1 2 3 4 0 25 50 75 100 125 150 VCE(sat)(V) Temperature (°C) Fig 5: Collector-Emitter Saturation Voltage vs. Junction Temperature IC=10A IC=2.5A IC=5A 0 5 10 15 20 25 30 0 10 20 30 40 50 60 5 8 11 14 17 20 Current(A) Time(µµµµS) VGE (V) Fig 6: VGE vs. Short Circuit Time (VCE=400V,TC=25°C ) VCE=20V 0 5 10 15 20 25 30 0 1 2 3 4 5 6 7 IC(A) VCE(V) Fig 2: Output Characteristic (Tj=150°C ) VGE=7V 9V 20V 17V 15V 11V 13V Rev1: Nov 2012 www.aosmd.com Page 3 of 9
  • 4. AOD5B60D □ TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS 1 10 100 10 100 1,000 Ic(A) VCE (V) Fig 10: Reverse Bias SOA (Tj=150°C,V GE=15V) 0 3 6 9 12 15 0 2 4 6 8 10 IC(A) Qg(nC) Fig 7: Gate-Charge Characteristics VCE=480V IC=5A 1 10 100 1000 0 5 10 15 20 25 30 35 40 Capacitance(pF) VCE(V) Fig 8: Capacitance Characteristic Cies Cres Coes 1 10 100 10 100 1,000 Ic(A) VCE (V) Fig 10: Reverse Bias SOA (Tj=150°C,V GE=15V) 0 3 6 9 12 15 0 2 4 6 8 10 IC(A) Qg(nC) Fig 7: Gate-Charge Characteristics VCE=480V IC=5A 0 10 20 30 40 50 60 25 50 75 100 125 150 PowerDisspation(W) TCASE(°C) Fig 11: Power Disspation as a Function of Case 1 10 100 1000 0 5 10 15 20 25 30 35 40 Capacitance(pF) VCE(V) Fig 8: Capacitance Characteristic Cies Cres Coes 0 2 4 6 8 10 25 50 75 100 125 150 CurrentratingIC(A) TCASE(°C) Fig 12: Current De-rating Rev1: Nov 2012 www.aosmd.com Page 4 of 9
  • 5. AOD5B60D ≤ TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS 1 10 100 1000 0 3 6 9 12 SwitchingTime(nS) IC (A) Figure 13: Switching Time vs. IC (Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ) Td(off) Tf Td(on) Tr 1 10 100 1,000 10,000 0 100 200 300 400 500 600 SwitchingTime(nS) Rg (ΩΩΩΩ) Figure 14: Switching Time vs. Rg (Tj=150°C,V GE=15V,VCE=400V,IC=5A) Td(off) Tf Td(on) Tr 1 10 100 1000 0 50 100 150 200 SwitchingTime(nS) TJ (°C) Figure 15: Switching Time vs.Tj ( VGE=15V,VCE=400V,IC=5A,Rg=60ΩΩΩΩ) Td(off) Tf Td(on) Tr 0 2 4 6 8 10 0 30 60 90 120 150 VGE(TH)(V) TJ (°C) Figure 16: VGE(TH) vs. Tj 1 10 100 1000 0 3 6 9 12 SwitchingTime(nS) IC (A) Figure 13: Switching Time vs. IC (Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ) Td(off) Tf Td(on) Tr 1 10 100 1,000 10,000 0 100 200 300 400 500 600 SwitchingTime(nS) Rg (ΩΩΩΩ) Figure 14: Switching Time vs. Rg (Tj=150°C,V GE=15V,VCE=400V,IC=5A) Td(off) Tf Td(on) Tr 1 10 100 1000 0 50 100 150 200 SwitchingTime(nS) TJ (°C) Figure 15: Switching Time vs.Tj ( VGE=15V,VCE=400V,IC=5A,Rg=60ΩΩΩΩ) Td(off) Tf Td(on) Tr 0 2 4 6 8 10 0 30 60 90 120 150 VGE(TH)(V) TJ (°C) Figure 16: VGE(TH) vs. Tj Rev1: Nov 2012 www.aosmd.com Page 5 of 9
  • 6. AOD5B60D ≤ TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS 0 0.1 0.2 0.3 0.4 0.5 0.6 0 3 6 9 12 E,SwitchIngEnergy(mJ) IC (A) Figure 17: Switching Loss vs. IC (Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ) Eoff Eon Etotal 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0 100 200 300 400 500 600 SwitchingEnergy(mJ) Rg (ΩΩΩΩ) Figure 18: Switching Loss vs. Rg (Tj=150°C,V GE=15V,VCE=400V,IC=5A) Eoff Eon Etotal 0 0.1 0.2 0.3 0.4 0 25 50 75 100 125 150 175 SwitchingEnergy(mJ) TJ (°C) Eoff Eon Etotal 0.0 0.1 0.2 0.3 0.4 200 250 300 350 400 450 500 SwitchingEnergy(mJ) V (V) Eoff Eon Etotal 0 0.1 0.2 0.3 0.4 0.5 0.6 0 3 6 9 12 E,SwitchIngEnergy(mJ) IC (A) Figure 17: Switching Loss vs. IC (Tj=150°C,V GE=15V,VCE=400V,Rg=60ΩΩΩΩ) Eoff Eon Etotal 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0 100 200 300 400 500 600 SwitchingEnergy(mJ) Rg (ΩΩΩΩ) Figure 18: Switching Loss vs. Rg (Tj=150°C,V GE=15V,VCE=400V,IC=5A) Eoff Eon Etotal 0 0.1 0.2 0.3 0.4 0 25 50 75 100 125 150 175 SwitchingEnergy(mJ) TJ (°C) Figure 19: Switching Loss vs. Tj (VGE=15V,VCE=400V,IC=5A,Rg=60ΩΩΩΩ) Eoff Eon Etotal 0.0 0.1 0.2 0.3 0.4 200 250 300 350 400 450 500 SwitchingEnergy(mJ) VCE (V) Figure 20: Switching Loss vs. VCE (Tj=150°C,V GE=15V,IC=5A,Rg=60ΩΩΩΩ) Eoff Eon Etotal Rev1: Nov 2012 www.aosmd.com Page 6 of 9
  • 7. AOD5B60D □ TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS 0 3 6 9 12 15 18 0 50 100 150 200 250 300 0 3 6 9 12 S Trr(nS) IS (A) Fig 24: Diode Reverse Recovery Time and Softness Factor vs. Conduction Current (VGE=15V,VCE=400V, di/dt=200A/µµµµs) 150°C 25°C 150°C 25°C Trr S 0 5 10 15 20 25 30 35 40 0 100 200 300 400 500 600 700 800 0 3 6 9 12 Irm(A) Qrr(nC) IF(A) Fig 23: Diode Reverse Recovery Charge and Peak Current vs. Conduction Current (VGE=15V,VCE=400V, di/dt=200A/µµµµs) 25°C 150°C 150°C 25°C Qrr Irm 13V 1.E-08 1.E-07 1.E-06 1.E-05 1.E-04 1.E-03 0 25 50 75 100 125 150 175 ICE(S)(A) Temperature (°C ) Fig 21: Reverse Leakage Current vs. Junction Temperature VCE=600V VCE=400V 0.2 0.7 1.2 1.7 2.2 0 25 50 75 100 125 150 175 VSD(V) Temperature (°C ) Fig 22: Diode Forward Voltage vs. Junction Temperature 15A 10A 5A IF=1A 0 3 6 9 12 15 18 0 50 100 150 200 250 300 0 3 6 9 12 S Trr(nS) IS (A) Fig 24: Diode Reverse Recovery Time and Softness Factor vs. Conduction Current (VGE=15V,VCE=400V, di/dt=200A/µµµµs) 150°C 25°C 150°C 25°C Trr S 0 5 10 15 20 25 30 35 40 0 100 200 300 400 500 600 700 800 0 3 6 9 12 Irm(A) Qrr(nC) IF(A) Fig 23: Diode Reverse Recovery Charge and Peak Current vs. Conduction Current (VGE=15V,VCE=400V, di/dt=200A/µµµµs) 25°C 150°C 150°C 25°C Qrr Irm 13V 1.E-08 1.E-07 1.E-06 1.E-05 1.E-04 1.E-03 0 25 50 75 100 125 150 175 ICE(S)(A) Temperature (°C ) Fig 21: Reverse Leakage Current vs. Junction Temperature VCE=600V VCE=400V 0.2 0.7 1.2 1.7 2.2 0 25 50 75 100 125 150 175 VSD(V) Temperature (°C ) Fig 22: Diode Forward Voltage vs. Junction Temperature 15A 10A 5A IF=1A 0 4 8 12 16 20 0 40 80 120 160 200 100 200 300 400 500 600 700 800 900 S Trr(nS) di/dt (A/µµµµS) Fig 26: Diode Reverse Recovery Time and Softness Factor vs. di/dt (VGE=15V,VCE=400V,IF=5A) 25°C 150°C 25°C 150°C Trr S 0 10 20 30 40 50 60 0 100 200 300 400 500 600 100 200 300 400 500 600 700 800 900 Irm(A) Qrr(nC) di/dt (A/µµµµS) Fig 25: Diode Reverse Recovery Charge and Peak Current vs. di/dt (VGE=15V,VCE=400V,IF=5A) 150°C 25°C 150°C 25°C Qrr Irm Rev1: Nov 2012 www.aosmd.com Page 7 of 9
  • 8. AOD5B60D □ TYPICAL ELECTRICAL AND THERMAL CHARACTERISTICS 0.001 0.01 0.1 1 10 1E-06 1E-05 0.0001 0.001 0.01 0.1 1 10 ZθθθθJCNormalizedTransient ThermalResistance Pulse Width (s) Figure 27: Normalized Maximum Transient Thermal Impedance for IGBT D=Ton/T TJ,PK=TC+PDM.ZθJC.RθJC RθJC=2.3°C/W In descending order D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse Single Pulse Ton T PD 0.001 0.01 0.1 1 10 1E-05 0.0001 0.001 0.01 0.1 1 10 ZθθθθJCNormalizedTransient ThermalResistance Pulse Width (s) Figure 28: Normalized Maximum Transient Thermal Impedance for Diode D=Ton/T TJ,PK=TC+PDM.ZθJC.RθJC RθJC=3°C/W In descending order D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse Single Pulse Ton T PD 0.001 0.01 0.1 1 10 1E-06 1E-05 0.0001 0.001 0.01 0.1 1 10 ZθθθθJCNormalizedTransient ThermalResistance Pulse Width (s) Figure 27: Normalized Maximum Transient Thermal Impedance for IGBT D=Ton/T TJ,PK=TC+PDM.ZθJC.RθJC RθJC=2.3°C/W In descending order D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse Single Pulse Ton T PD 0.001 0.01 0.1 1 10 1E-05 0.0001 0.001 0.01 0.1 1 10 ZθθθθJCNormalizedTransient ThermalResistance Pulse Width (s) Figure 28: Normalized Maximum Transient Thermal Impedance for Diode D=Ton/T TJ,PK=TC+PDM.ZθJC.RθJC RθJC=3°C/W In descending order D=0.5, 0.3, 0.1, 0.05, 0.02, 0.01, single pulse Single Pulse Ton T PD Rev1: Nov 2012 www.aosmd.com Page 8 of 9
  • 9. AOD5B60D Rev1: Nov 2012 www.aosmd.com Page 9 of 9