ROHM SCS210KE2C Datasheet

SCS210KE2
)
Datasheet
SiC Schottky Barrier Diode
V
R
I
F
Q
C
(*Per leg/ Both legs)
Features
1) Shorter recovery time
2) Reduced temperature dependence
3) High-speed switching possible
Applications
PFC Boost Topology
1200V
5A/10A*
17nC(Per leg
Outline
TO-247
(3)
(2)
(1)
Inner circuit
(1) (3)(2)
Packaging specifications
Packaging
(1) Anode (2) Cathode (3) Anode
Tube
Secondary Side RectificationData CenterPV Power Conditioners
Absolute maximum ratings (T
Parameter Reverse voltage (repetitive peak) Reverse voltage (DC)
3
Continuous forward current
*
PW=10ms sinusoidal, T
Surge non­repetitive forward
3
current
*
Repetitive peak forward current
PW=10ms sinusoidal, T PW=10s square, T
*
PW=10ms, T
3
i2t value
*
PW=10ms, T
3
Total power dissipation
*
= 25°C)
j
(T
3
=25°C
j
=150°C
j
=
c
j
148°C)
=25°C
j
=150°C
j
=25°C
Type
Symbol
Reel size (mm) Tape width (mm) ­Basic ordering unit (pcs) Packing code Marking
V
RM
V
R
I
F
1200 1200
5/10
22/45
I
FSM
17/34
80/160
I
FRM
26/52
*
1
2.5/10
i2dt
1.4/5.7
2
P
D
83/170
*
-
30
C
SCS210KE2
UnitValue
V V A A A A A
2
A
s
2
A
s
W Junction temperature Range of storage tem per ature
T
j
T
stg
*1 Tc=100°C, Tj=150°C, Duty cycle=10% *2 Tc=25°C *3 Per leg/ Both legs
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TSQ50210-SCS210KE2
9.Ma.2018 - Rev.002
°C175 °C
SCS210KE2
Datasheet
Electrical characteristics (T
Parameter Conditions
DC blocking voltage
Forward voltage
Reverse current
Total capacitance
Total capacitive charge
= 25°C) (Per Leg)
j
Symbol
V
DC
V
I
R
IR =0.1mA
=5A,Tj=25°C
I
F
IF=5A,Tj=150°C
F
I
=5A,Tj=175°C
F
V
R
V
R
V
R
V
R
=1200V,Tj=25°C =1200V,Tj=150°C =1200V,Tj=175°C =1V,f=1MHz
C
V
=800V,f=1MHz
R
Q
VR=800V,di/dt=500A/s
C
Values
Typ.
1200
-
-
1.4
-1.8
-
1.9 5
-
40 -
-
-
260
­17 --
Unit
Max.Min.
-
1.6
V V
-V
-
100-
V
AA
-65
-
-
A pF pF21 nC
Switching time
t
C
VR=800V,di/dt=500A/s
Thermal characteristics
Parameter Symbol Conditions
Thermal resistance
R
th(j-c)
Both Legs - 0.75 0.86 °C/W
Typical Transient Thermal Characteristics (Per Leg)
Symbol Value Unit Symbol Value Unit
R
th1
R
th2
R
th3
4.22E-01
9.58E-01
1.19E-01
T
K/W
R
th1
j
-
15
-ns
Values
Unit
Min. Typ. Max.
1.8 °C/WPer Leg - 1.5
C
th1
C
th2
C
th3
R
th,n
2.40E-03
5.95E-03
1.40E-01
T
c
Ws/K
PD
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C
th1
C
th2
2/5
C
th,n
T
a
TSQ50210-SCS210KE2
9.Ma.2018 - Rev.002
SCS210KE2
Datasheet
Electrical characteristic curves
Fig.1 VF -IFCharacteristics (Per Leg)
[A]
F
Forward Current : I
100
0.01
0.001
Pulsed
10
1
0.1
0.0 0.5 1.0 1.5 2.0 2.5
Ta= 25ºC
Ta=25ºC
Ta=75ºC
Ta=125ºC
Ta=175ºC
Forward Voltage : VF[V]
Fig.2 VF -IFCharacteristics (Per Leg)
[A]
F
Forward Current : I
Pulsed
7
6
5
4
3
2
1
0
0.0 0.5 1.0 1.5 2.0 2.5
Ta= 25ºC
Ta=25ºC
Forward Voltage : VF[V]
Ta=175ºC
Ta=125ºC
Ta=75ºC
Fig.3 VR -IRCharacteristics (Per Leg)
1000
Ta=175ºC
Ta=125ºC
Ta=75ºC
[A]
R
0.01
Reverse Current : I
0.001
100
10
1
0.1
0 500 1000
Ta=25ºC
Reverse Voltage : VR[V]
Ta= 25ºC
Fig.4 VR -CtCharacteristics (Per Leg)
1000
[pF]
t
100
10
Ta=25ºC f=1MHz
1
Capacitance Between Term inals : C
0.01 0.1 1 10 100 1000
Reverse Voltage : VR[V]
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TSQ50210-SCS210KE2
9.Ma.2018 - Rev.002
SCS210KE2
Datasheet
Electrical characteristic curves
Fig.5 Typical Transient Thermal Resistance vs. Pulse Width (Per Leg)
10
[ºC/W]
th(j-c)
1
0.1
Ta=25ºC Single Pulse
0.01
Transient Thermal Resistance : R
1.E-4 1.E-3 1.E-2 1.E-1 1.E+0 1.E+1 1.E+2 1.E+3
Pulse Width : PW [s]
Fig.6 Power Dissipation (Per Leg)
90 80 70 60 50 40 30 20
Power Dissipation [W ]
10
0
25 50 75 100 125 150 175
Case Temperature : Tc[ºC]
[A]
P
Peak Forward Current : I
Fig.7*3Maximum peak forward current derating curve I
70
60
50
40
30
20
10
0
25 50 75 100 125 150 175
Duty=0.1
Duty=0.2
Duty=0.5
Duty=0.8
Case Temperature : Tc[ºC] *3 Based on max Vf, max R Valid for switching of above 10kHz, excluding D.C. curve.
P-Tc
D.C.
(Per Leg)
th(j-c)
4
Fig.8*
Typical peak forward current derating curve I (Per Leg, Not guaranteed)
70
Duty=0.1
60
[A]
P
Peak Forward Current : I
50
40
30
20
10
0
Duty=0.2
Duty=0.5
Duty=0.8
25 50 75 100 125 150 175
Case Temperature : Tc[ºC] *4 Based on typ Vf, typ R Typical value, not guaranteed Valid for switching of above 10kHz, excluding D.C. curve
P-Tc
D.C.
th(j-c)
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TSQ50210-SCS210KE2
9.Ma.2018 - Rev.002
SCS210KE2
Datasheet
Electrical characteristic curves
Fig.9 Surge non-repetitive forward current vs. Pulse width (Sinusoidal waveform) (Per Leg)
1000
[A]
FSM
100
Ta=25ºC Single Pulse
10
Surge non-repetitive forward current : I
1.E-5 1.E-4 1.E-3 1.E-2
Pulse Width : PW [s]
Fig.10 Typical capacitance store energy (Per Leg)
10
9
[J]
8
C
7 6 5 4 3 2 1
Capacitance stored energy : E
0
0 200 400 600 800
Reverse Voltage : VR[V]
Symplified forward characteristic model (Per Leg)
Fig.11 Equivalent forward current curve
F
Forward Current : I
V
th
Forward Voltage : V
1/R
diff
F
VF = Vth+ R
V
( Tj) = a0 + a1 T
th
R
( Tj) = b0+ b1 Tj+ b2 T
diff
Symbol
a
0
a
1
b
0
b
1
b
2
Tjin ºC; -55 ºC < Tj< ºC ; IF<
Typical Value
9.93E-01
-1.27E-03
7.30E-02
4.12E-04
2.66E-06
diff IF
j
Unit
V
V/°C
/°C
/°C
10
2
j
2
A
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TSQ50210-SCS210KE2
9.Ma.2018 - Rev.002
Notes
The information contained herein is subject to change without notice.
1)
Before you use our Products, please contact our sales representative and verify the latest specifica-
2) tions :
Although ROHM is continuously working to improve product reliability and quality, semicon-
3) ductors 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.
Examples of application circuits, circuit constants and any other information contained herein are
4) 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.
The technical information specified herein is intended only to show the typical functions of and
5) 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.
Notice
The Products specified in this document are not designed to be radiation tolerant.
6)
For use of our Products in applications requiring a high degree of reliability (as exemplified
7) below), please contact and consult with a ROHM representative : transportation equipment (i.e. cars, ships, trains), primary communication equipment, traffic lights, fire/crime prevention, safety equipment, medical systems, and power transmission systems.
Do not use our Products in applications requiring extremely high reliability, such as aerospace
8) equipment, nuclear power control systems, and submarine repeaters.
ROHM shall have no responsibility for any damages or injury arising from non-compliance with
9) the recommended usage conditions and specifications contained herein.
ROHM has used reasonable care to ensur the accuracy of the information contained in this
10) document. However, ROHM does not warrants that such information is error-free, and ROHM shall have no responsibility for any damages arising from any inaccuracy or misprint of such information.
Please use the Products in accordance with any applicable environmental laws and regulations,
11) such as the RoHS Directive. For more details, including RoHS compatibility, please contact a ROHM sales office. ROHM shall have no responsibility for any damages or losses resulting non-compliance with any applicable laws or regulations.
When providing our Products and technologies contained in this document to other countries,
12) you must abide by the procedures and provisions stipulated in all applicable export laws and regulations, including without limitation the US Export Administration Regulations and the Foreign Exchange and Foreign Trade Act.
This document, in part or in whole, may not be reprinted or reproduced without prior consent of
13) ROHM.
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