Ultrafast Dual Diode
30 A, 200 V
RURG3020CC
Description
The RURG3020CC is an ultrafast dual diode with low forward
voltage drop. This device is intended for use as freewheeling
and clamping diodes in a variety of switching power supplies
and other power switching applications. It is specially suited for use
in switching power supplies and industrial application.
Features
•
•
•
•
•
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CATHODE
(BOTTOM SIDE METAL)
Ultrafast Recovery trr = 50 ns (@ IF = 30 A)
Max Forward Voltage, VF = 1.0 V (@ TC = 25°C)
Reverse Voltage, VRRM = 200 V
Avalanche Energy Rated
This Device is Pb−Free and is RoHS Compliant
ANODE 1
CATHODE
ANODE 2
TO−247−3LD
CASE 340CK
Applications
• Switching Power Supplies
• Power Switching Circuits
• General Purpose
K
A1
A2
MARKING DIAGRAM
$Y&Z&3&K
RURG3020C
$Y
&Z
&3
&K
RURG3020C
= ON Semiconductor Logo
= Assembly Plant Code
= Numeric Date Code
= Lot Code
= Specific Device Code
ORDERING INFORMATION
See detailed ordering and shipping information on page 2 of
this data sheet.
© Semiconductor Components Industries, LLC, 2001
March, 2020 − Rev. 3
1
Publication Order Number:
RURG3020CC/D
RURG3020CC
ABSOLUTE MAXIMUM RATINGS (Per Leg) (TC = 25°C)
Symbol
Ratings
Unit
Peak Repetitive Reverse Voltage
VRRM
200
V
Working Peak Reverse Voltage
VRWM
200
V
VR
200
V
Average Rectified Forward Current (Per Leg) (TC = 145°C)
IF(AV)
30
A
Repetitive Peak Surge Current (Square Wave, 20 kHz)
IFRM
70
A
Nonrepetitive Peak Surge Current (Halfwave, 1 Phase, 60 Hz)
IFSM
325
A
PD
125
W
EAVL
20
mJ
TSTG, TJ
−65 to 175
°C
Parameter
DC Blocking Voltage
Maximum Power Dissipation
Avalanche Energy (See Figures 7 and 8)
Operating and Storage Temperature
Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality
should not be assumed, damage may occur and reliability may be affected.
PACKAGE MARKING AND ORDERING INFORMATION
Device
Device Marking
Package
Shipping
RURG3020CC
RURG3020C
TO−247−3LD
450 / Tube
ELECTRICAL SPECIFICATION (Per Leg) (TC = 25°C, unless otherwise specified)
Parameter
Symbol
Instantaneous Forward Voltage
(Pulse Width = 300 ms, Duty Cycle = 2%)
VF
Instantaneous Reverse Current
IR
Reverse Recovery Time (See Figure 6)
Summation of ta + tb
trr
Time to Reach Peak Reverse Current
(See Figure 6)
Time from Peak IRM to Projected Zero
Crossing of IRM Based on a Straight Line
from Peak IRM through 25% of IRM
(See Figure 6)
Thermal Resistance Junction to Case
Test Conditions
Min
Typ
Max
Unit
IF = 30 A
−
−
1.0
V
IF = 30 A, TC = 150°C
−
−
0.85
V
VR = 200 V
−
−
250
mA
VR = 200 V, TC = 150°C
−
−
1
mA
IF = 1 A, dIF/dt = 100 A/ms
−
−
45
ns
IF = 30 A, dIF/dt = 100 A/ms
−
−
50
ns
ta
IF = 30 A, dIF/dt = 100 A/ms
−
20
−
ns
tb
IF = 30 A, dIF/dt = 100 A/ms
−
15
−
ns
−
−
1.2
°C/W
RqJC
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
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2
RURG3020CC
200
400
100
100
IR, Reverse Current (mA)
IF, Forward Current (A)
TYPICAL PERFORMANCE CURVES
175°C
100°C
10
25°C
1
0
0.3
0.6
0.9
175°C
10
100°C
1.0
0.1
0.01
1.2
0.001
1.5
25°C
50
0
VF, Forward Voltage (V)
IF(AV), Average Forward Current (A)
40
trr
t, Time (ns)
30
ta
tb
10
0
1
10
IF, Forward Current (A)
150
200
Figure 2. Reverse Current vs. Reverse Voltage
Figure 1. Forward Current vs. Forward Voltage
20
100
VR, Reverse Voltage (V)
40
30
20
SQ. WAVE
10
0
130
30
DC
140
150
160
170
TC, Case Temperature (°C)
Figure 4. Current Derating Curve
Figure 3. trr, ta and tb Curves vs. Forward Current
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3
180
RURG3020CC
TEST CIRCUITS AND WAVEFORMS
VGE AMPLITUDE AND
RG CONTROL dIF/dt
t1 AND t2 Control IF
L
DUT
CURRENT
SENSE
RG
VGE
dIF
dt
trr
ta
0
+
−
IGBT
t1
IF
VDD
0.25 IRM
IRM
t2
Figure 6. trr Waveforms and Definitions
Figure 5. trr Test Circuit
I=1A
L = 40 mH
R < 0.1 W
EAVL = 1/2LI2 [VR(AVL)/(VR(AVL) − VDD)]
Q1 = IGBT (BVCES > DUT VR(AVL)
tb
VAVL
L
R
CURRENT
SENSE
+
VDD
DUT
VDD
−
IL
IL
I V
Q1
t0
t1
t2
t
Figure 8. Avalanche Current and Voltage
Waveforms
Figure 7. Avalanche Energy Test Circuit
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4
MECHANICAL CASE OUTLINE
PACKAGE DIMENSIONS
TO−247−3LD SHORT LEAD
CASE 340CK
ISSUE A
A
DATE 31 JAN 2019
A
E
P1
P
A2
D2
Q
E2
S
B
D
1
2
D1
E1
2
3
L1
A1
L
b4
c
(3X) b
0.25 M
(2X) b2
B A M
DIM
(2X) e
GENERIC
MARKING DIAGRAM*
AYWWZZ
XXXXXXX
XXXXXXX
XXXX = Specific Device Code
A
= Assembly Location
Y
= Year
WW = Work Week
ZZ
= Assembly Lot Code
*This information is generic. Please refer to
device data sheet for actual part marking.
Pb−Free indicator, “G” or microdot “G”, may
or may not be present. Some products may
not follow the Generic Marking.
DOCUMENT NUMBER:
DESCRIPTION:
98AON13851G
TO−247−3LD SHORT LEAD
A
A1
A2
b
b2
b4
c
D
D1
D2
E
E1
E2
e
L
L1
P
P1
Q
S
MILLIMETERS
MIN NOM MAX
4.58 4.70 4.82
2.20 2.40 2.60
1.40 1.50 1.60
1.17 1.26 1.35
1.53 1.65 1.77
2.42 2.54 2.66
0.51 0.61 0.71
20.32 20.57 20.82
13.08
~
~
0.51 0.93 1.35
15.37 15.62 15.87
12.81
~
~
4.96 5.08 5.20
~
5.56
~
15.75 16.00 16.25
3.69 3.81 3.93
3.51 3.58 3.65
6.60 6.80 7.00
5.34 5.46 5.58
5.34 5.46 5.58
Electronic versions are uncontrolled except when accessed directly from the Document Repository.
Printed versions are uncontrolled except when stamped “CONTROLLED COPY” in red.
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