SCS240KE2HR
Datasheet
Automotive Grade SiC Schottky Barrier Diode
lOutline
VR
1200V
IF
20A/40A*
QC
66nC(Per leg)
TO-247N
(*Per leg/ Both legs)
(3)
(1) (2)
lFeatures
lInner circuit
1) AEC-Q101 qualified
2) Low forward voltage
(1) Anode
(2) Cathode
(3) Anode
3) Negligible recovery time/current
4) Temperature independent switching behavior
(1)
lApplications
(2) (3)
lPackaging specifications
・ On Board Charger
Packaging
・ DC/DC Converter
Reel size (mm)
-
Tape width (mm)
-
・ Wireless Charger
Tube
Type
・ EV Charger
Basic ordering unit (pcs)
Packing code
30
C11
Marking
SCS240KE2
lAbsolute maximum ratings (Tj = 25°C)
Parameter
Symbol
Value
Unit
Reverse voltage (repetitive peak)
VRM
1200
V
Reverse voltage (DC)
VR
1200
V
IF
20/40
A
78/150
A
59/110
A
310/620
A
Continuous forward current *
Surge nonrepetitive forward
current *3
3
(Tc= 134°C)
PW=10ms sinusoidal, Tj=25°C
PW=10ms sinusoidal, Tj=150°C
PW=10ms square, Tj=25°C
Repetitive peak forward current*3
2
i t value*3
IFSM
IFRM
PW=10ms, Tj=25°C
∫i dt
2
PW=10ms, Tj=150°C
83/160 *
1
A
2
31/120
As
17/69
As
210/420*2
2
Total power dissipation *3
PD
Junction temperature
Tj
175
°C
Tstg
-55 to +175
°C
Range of storage temperature
W
*1 Tc=100°C, Tj=150°C, Duty cycle=10% *2 Tc=25°C *3 Per leg/ Both legs
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TSZ22111・14・001
1/5
TSQ50211-SCS240KE2HR
24.Jan.2020 - Rev.001
Datasheet
SCS240KE2HR
lElectrical characteristics (Tj = 25°C) (Per Leg)
Values
Parameter
Symbol
VDC
DC blocking voltage
VF
Forward voltage
IR
Reverse current
Total capacitance
Conditions
Unit
Min.
Typ.
Max.
1200
-
-
V
IF=20A,Tj=25°C
-
1.4
1.6
V
IF=20A,Tj=150°C
-
1.8
-
V
IF=20A,Tj=175°C
-
1.9
-
V
VR=1200V,Tj=25°C
-
20
400
mA
VR=1200V,Tj=150°C
-
160
-
mA
VR=1200V,Tj=175°C
-
260
-
mA
VR=1V,f=1MHz
-
1050
-
pF
VR=600V,f=1MHz
-
85
-
pF
IR =0.4mA
C
Total capacitive charge
QC
VR=800V,di/dt=500A/ms
-
66
-
nC
Switching time
tC
VR=800V,di/dt=500A/ms
-
18
-
ns
Symbol
Conditions
lThermal characteristics
Values
Parameter
Unit
Min.
Typ.
Max.
Per Leg
-
0.56
0.70
°C/W
Both Legs
-
0.28
0.35
°C/W
Rth(j-c)
Thermal resistance
lTypical Transient Thermal Characteristics (Per Leg)
Symbol
Value
Rth1
1.57×10
-1
Rth2
2.46×10
-1
Rth3
1.57×10
-1
Tj
PD
Unit
K/W
Value
Cth1
5.03×10
-3
Cth2
6.74×10
-3
Cth3
6.11×10
-2
Rth,n
Rth1
Cth1
Symbol
Cth2
Unit
Ws/K
Tc
Cth,n
Ta
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© 2020 ROHM Co., Ltd. All rights reserved.
TSZ22111・15・001
2/5
TSQ50211-SCS240KE2HR
24.Jan.2020 - Rev.001
Datasheet
SCS240KE2HR
lElectrical characteristic curves
Fig.2 VF - IF Characteristics (Per Leg)
Fig.1 VF - IF Characteristics (Per Leg)
30
100
Pulsed
25
Forward Current : IF [A]
Forward Current : IF [A]
10
1
Ta= -25ºC
0.1
Ta=25ºC
Ta=75ºC
0.01
Ta=125ºC
Ta=175ºC
0.0
0.5
1.0
1.5
Ta=25ºC
20
Ta=175ºC
15
Ta=125ºC
Ta=75ºC
10
5
0
0.001
2.0
0.0
2.5
Forward Voltage : VF [V]
0.5
1.0
1.5
2.0
2.5
Forward Voltage : VF [V]
Fig.3 VR - IR Characteristics (Per Leg)
Fig.4 VR - Ct Characteristics (Per Leg)
1000
Ta=125ºC
100
Ta=75ºC
10
Ta=25ºC
1
0.1
0.01
Ta= -25ºC
0.001
0
500
1000
Capacitance Between Terminals : Ct [pF]
10000
Ta=175ºC
Reverse Current : IR [mA]
Ta= -25ºC
Pulsed
Reverse Voltage : VR [V]
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© 2020 ROHM Co., Ltd. All rights reserved.
TSZ22111・15・001
1000
100
10
Ta=25ºC
f=1MHz
1
0.01
0.1
1
10
100
1000
Reverse Voltage : VR [V]
3/5
TSQ50211-SCS240KE2HR
24.Jan.2020 - Rev.001
Datasheet
SCS240KE2HR
Fig.5 Typical Transient Thermal Resistance
vs. Pulse Width (Per Leg)
Fig.6 Power Dissipation (Per Leg)
250
1
200
Power Dissipation [W]
Transient Thermal Resistance : Rth(j-c) [ºC/W]
lElectrical characteristic curves
0.1
Ta=25ºC
Single Pulse
0.01
0.0001
150
100
50
0
0.01
1
25
100
50
Pulse Width : PW [s]
200
150
175
Duty=0.1
200
Peak Forward Current : IP [A]
Peak Forward Current : IP [A]
125
Fig.8*5 Typical peak forward current
derating curve IP - Tc
(Per Leg, Not guaranteed)
Maximum peak forward current
derating curve IP - Tc (Per Leg)
150
Duty=0.1
Duty=0.2
Duty=0.5
50
Duty=0.8
100
Case Temperature : Tc [ºC]
Fig.7*4
100
75
150
Duty=0.2
100
Duty=0.5
50
Duty=0.8
D.C.
D.C.
0
0
25
50
75
100
125
150
175
25
75
100
125
150
175
Case Temperature : Tc [ºC]
*5 Based on typ Vf, typ Rth(j-c)
Typical value, not guaranteed
Valid for switching of above 10kHz,
excluding D.C. curve
Case Temperature : Tc [ºC]
*4 Based on max Vf, max Rth(j-c)
Valid for switching of above 10kHz,
excluding D.C. curve.
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© 2020 ROHM Co., Ltd. All rights reserved.
TSZ22111・15・001
50
4/5
TSQ50211-SCS240KE2HR
24.Jan.2020 - Rev.001
Datasheet
SCS240KE2HR
lElectrical characteristic curves
Fig.10 Typical capacitance store energy
(Per Leg)
40
1000
Capacitance stored energy : EC[mJ]
Surge non-repetitive forward current : IFSM [A]
Fig.9 Surge non-repetitive forward current
vs. Pulse width (Sinusoidal waveform) (Per Leg)
100
Ta=25ºC
Single Pulse
10
0.00001
0.0001
35
30
25
20
15
10
5
0
0.001
0
0.01
200
Pulse Width : PW [s]
400
600
800
Reverse Voltage : VR [V]
lSymplified forward characteristic model (Per Leg)
Fig.11 Equivalent forward current curve
Forward Current : IF
VF = Vth + Rdiff IF
Vth ( Tj ) = a0 + a1 Tj
Rdiff ( Tj ) = b0 + b1 Tj + b2 Tj2
Symbol
Vth
1/Rdiff
Unit
a0
9.93×10
-1
V
a1
-1.27×10
-3
V/°C
b0
1.83×10
-2
Ω
b1
1.03×10
-4
Ω/°C
b2
6.65×10
-7
Ω/°C2
Tj in ºC; -55 ºC < Tj < 175ºC ; IF < 40 A
Forward Voltage : VF
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© 2020 ROHM Co., Ltd. All rights reserved.
TSZ22111・15・001
Typical Value
5/5
TSQ50211-SCS240KE2HR
24.Jan.2020 - Rev.001
Notice
Notes
1) The information contained herein is subject to change without notice.
2) Before you use our Products, please contact our sales representative and verify the latest specifications :
3) Although ROHM is continuously working to improve product reliability and quality, semiconductors can break down and malfunction due to various factors.
Therefore, in order to prevent personal injury or fire arising from failure, please take safety
measures such as complying with the derating characteristics, implementing redundant and
fire prevention designs, and utilizing backups and fail-safe procedures. ROHM shall have no
responsibility for any damages arising out of the use of our Poducts beyond the rating specified by
ROHM.
4) Examples of application circuits, circuit constants and any other information contained herein are
provided only to illustrate the standard usage and operations of the Products. The peripheral
conditions must be taken into account when designing circuits for mass production.
5) The technical information specified herein is intended only to show the typical functions of and
examples of application circuits for the Products. ROHM does not grant you, explicitly or implicitly,
any license to use or exercise intellectual property or other rights held by ROHM or any other
parties. ROHM shall have no responsibility whatsoever for any dispute arising out of the use of
such technical information.
6) The Products specified in this document are not designed to be radiation tolerant.
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equipment, medical systems, and power transmission systems.
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equipment, nuclear power control systems, and submarine repeaters.
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the recommended usage conditions and specifications contained herein.
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shall have no responsibility for any damages arising from any inaccuracy or misprint of such
information.
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R1102S