STPS30120C
Datasheet
120 V power Schottky rectifier
Features
A1
K
A2
K
K
A1
K
A2
TO-220AB
narrow leads
A1
K
•
•
•
•
High junction temperature capability
Avalanche rated
Low leakage current
Good trade-off between leakage current and forward voltage drop
•
ECOPACK®2 compliant
A2
TO-220AB
Applications
•
•
•
•
Switching diode
SMPS
DC/DC converter
LED lighting
Description
Dual center tap Schottky rectifier suited for high frequency switch mode power
supply.
Packaged in TO-220AB and TO-220AB narrow leads, the STPS30120C is optimized
for use in notebook adaptors, LCD adaptors and desktop SMPS, providing in these
applications a margin between the remaining voltages applied on the diode and the
voltage capability of the diode.
Product status link
STPS30120C
Product summary
Symbol
Value
IF(AV)
2 x 15 A
VRRM
120 V
Tj (max.)
175 °C
VF (typ.)
0.70 V
DS4230 - Rev 5 - June 2018
For further information contact your local STMicroelectronics sales office.
www.st.com
STPS30120C
Characteristics
1
Characteristics
Table 1. Absolute ratings (limiting values at 25 °C, per diode, unless otherwise specified)
Symbol
Parameter
Value
Unit
VRRM
Repetitive peak reverse voltage
120
V
IF(RMS)
Forward rms current
30
A
Tc = 145 °C
Per diode
15
Tc = 140 °C
Per device
30
Surge non repetitive forward current
tp = 10 ms sinusoidal
180
A
Repetitive peak avalanche power
tp = 10 µs, Tj = 125 °C
480
W
-65 to +175
°C
175
°C
IF(AV)
Average forward current , δ = 0.5
IFSM
PARM
Tstg
Tj
Storage temperature range
Maximum operating junction temperature(1)
A
1. (dPtot/dTj) < (1/Rth(j-a)) condition to avoid thermal runaway for a diode on its own heatsink.
Table 2. Thermal resistance parameters
Symbol
Parameter
Rth(j-c)
Junction to case
Rth(c)
Coupling
Max. value
Per diode
2.2
Total
1.3
Unit
°C/W
0.3
When the diodes 1 and 2 are used simultaneously:
Tj(diode 1) = P(diode 1) x Rth(j-c)(per diode) + P(diode 2) x Rth(c)
Table 3. Static electrical characteristics (per diode)
Symbol
IR(1)
Parameter
Reverse leakage current
Test conditions
Tj = 25 °C
Tj = 125 °C
Tj = 25 °C
Tj = 125 °C
VF(2)
Forward voltage drop
Tj = 25 °C
Tj = 125 °C
Tj = 25 °C
Tj = 125 °C
VR = VRRM
IF = 5 A
IF = 15 A
IF = 30 A
Min.
Typ.
-
2.5
-
0.57
15
µA
7.5
mA
0.61
0.92
0.70
-
Unit
0.74
-
Max.
0.74
V
1.02
0.83
0.89
1. Pulse test: tp = 5 ms, δ < 2%
2. Pulse test: tp = 380 µs, δ < 2%
To evaluate the conduction losses, use the following equation:
P = 0.59 x IF(AV) + 0.01 x IF2(RMS)
For more information, please refer to the following application notes related to the power losses :
DS4230 - Rev 5
page 2/11
STPS30120C
Characteristics (curves)
•
•
1.1
AN604: Calculation of conduction losses in a power rectifier
AN4021: Calculation of reverse losses on a power diode
Characteristics (curves)
Figure 1. Average forward power dissipation versus
average forward current (per diode)
15
PF(AV) (W)
Figure 2. Average forward current versus ambient
temperature (δ = 0.5, per diode)
18
14
δ = 0.05
13
δ = 0.1
δ = 0.2
δ = 0.5
IF(AV) (A)
16
12
Rth(j-a) =Rt h(j-c)
14
11
δ=1
10
12
9
10
8
7
8
6
5
6
4
T
3
2
IF(AV) (A)
1
T
4
2
tp
δ =tp/T
0
δ =tp/T
0
0
2
4
6
8
10
12
14
16
18
Figure 3. Normalized avalanche power derating versus
pulse duration (Tj = 125 °C)
1
PARM (t p )
PARM (10 µs)
0
Tamb (°C)
tp
25
50
75
100
125
150
175
Figure 4. Relative variation of thermal impedance junction
to case versus pulse duration
1.0
Zth(j-c) / Rth(j-c)
0.9
0.8
0.7
0.1
0.6
0.5
0.4
0.01
0.3
0.2
0.1
t p(µs)
0.001
1
DS4230 - Rev 5
10
100
1000
Single pulse
0.0
1.E-03
t p (s)
1.E-02
1.E-01
1.E+00
page 3/11
STPS30120C
Characteristics (curves)
Figure 5. Reverse leakage current versus reverse voltage
applied (typical values, per diode)
Figure 6. Junction capacitance versus reverse voltage
applied (typical values, per diode)
IR (mA )
1000
1.E+ 02
1.E+ 01
C (pF)
F= 1MHz
VOSC=30mV RMS
Tj = 25°C
Tj =150°C
1.E+ 00
Tj =125°C
Tj =100°C
1.E- 01
100
Tj =75°C
1.E- 02
Tj =50°C
1.E- 03
Tj =25°C
1.E- 04
VR(V)
1.E- 05
0
10
20
30
40
50
60
VR (V)
10
70
80
90
100
110
1
120
10
100
Figure 7. Forward voltage drop versus forward current (per diode)
100
IF(A)
T=
j 125°C
(maximum values)
T=
j 125°C
(typical values)
T=
j 25°C
(maximum values)
10
VF(V)
1
0.0
DS4230 - Rev 5
0 .2
0.4
0 .6
0.8
1 .0
1.2
1 .4
1.6
page 4/11
STPS30120C
Package information
2
Package information
In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK®
packages, depending on their level of environmental compliance. ECOPACK® specifications, grade definitions
and product status are available at: www.st.com. ECOPACK® is an ST trademark.
2.1
TO-220AB package information
•
•
•
•
Epoxy meets UL 94,V0
Cooling method: by conduction (C)
Recommended torque value: 0.55 N·m
Maximum torque value: 0.70 N·m
Figure 8. TO-220AB package outline
DS4230 - Rev 5
page 5/11
STPS30120C
TO-220AB package information
Table 4. TO-220AB package mechanical data
Dimensions
Ref.
Millimeters
Min.
Max.
Min.
Max.
A
4.40
4.60
0.173
0.181
b
0.61
0.88
0.240
0.035
b1
1.14
1.55
0.045
0.061
c
0.48
0.70
0.019
0.028
D
15.25
15.75
0.600
0.620
D1
DS4230 - Rev 5
Inches
1.27 typ.
0.050 typ.
E
10.00
10.40
0.394
0.409
e
2.40
2.70
0.094
0.106
e1
4.95
5.15
0.195
0.203
F
1.23
1.32
0.048
0.052
H1
6.20
6.60
0.244
0.260
J1
2.40
2.72
0.094
0.107
L
13.00
14.00
0.512
0.551
L1
3.50
3.93
0.138
0.155
L20
16.40 typ.
0.646 typ.
L30
28.90 typ.
1.138 typ.
θP
3.75
3.85
0.148
0.152
Q
2.65
2.95
0.104
0.116
page 6/11
STPS30120C
TO-220AB narrow leads package information
2.2
TO-220AB narrow leads package information
•
•
•
•
Epoxy meets UL94, V0
Cooling method: by conduction (C)
Recommended torque value: 0.55 N·m
Maximum torque value: 0.70 N·m
Figure 9. TO-220AB narrow leads package outline
A
ØP
E
F
Q
H1
D
D1
L20
L30
L1
b1(x3)
J1
L
1
2
e
3
C
b (x3)
e1
Table 5. TO-220AB package mechanical data
Dimensions
Ref.
DS4230 - Rev 5
Millimeters
Inches
Min.
Max.
Min.
Max.
A
4.40
4.60
0.173
0.181
b
0.61
0.88
0.240
0.035
b1
0.95
1.20
0.037
0.047
page 7/11
STPS30120C
TO-220AB narrow leads package information
Dimensions
Ref.
Millimeters
Min.
Max.
Min.
Max.
c
0.48
0.70
0.019
0.028
D
15.25
15.75
0.600
0.620
D1
DS4230 - Rev 5
Inches
1.27 typ.
0.050 typ.
E
10.00
10.40
0.394
0.409
e
2.40
2.70
0.094
0.106
e1
4.95
5.15
0.195
0.203
F
1.23
1.32
0.048
0.052
H1
6.20
6.60
0.244
0.260
J1
2.40
2.72
0.094
0.107
L
13.00
14.00
0.512
0.551
L1
2.60
2.90
0.138
0.155
L20
15.40 typ.
0.646 typ.
L30
28.90 typ.
1.138 typ.
θP
3.75
3.85
0.148
0.152
Q
2.65
2.95
0.104
0.116
page 8/11
STPS30120C
Ordering Information
3
Ordering Information
Table 6. Ordering information
DS4230 - Rev 5
Order code
Marking
Package
Weight
Base qty.
Delivery mode
STPS30120CT
STPS30120CT
TO-220AB
1.95 g
50
Tube
STPS30120CTN
STPS30120CTN
TO-220AB narrow leads
1.90 g
50
Tube
page 9/11
STPS30120C
Revision history
Table 7. Document revision history
Date
Version
Changes
18-Feb-2005
1
First issue
23-Nov-2006
2
Reformatted to current standards. Added I²PAK package.
17-Feb-2010
3
Updated Table 2. Added Figure 1 and Figure 10.
13-Jan-2012
4
Added TO-220AB narrow leads package.
Removed I²PAK package.
Updated Table 1. Absolute ratings (limiting values at 25 °C, per diode, unless
otherwise specified).
01-Jun-2018
5
Removed figure 1, figure 5 and figure 10.
Updated Section 1.1 Characteristics (curves) and Table 4. TO-220AB package
mechanical data.
Minor text changes to improve readability.
DS4230 - Rev 5
page 10/11
STPS30120C
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products and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. ST
products are sold pursuant to ST’s terms and conditions of sale in place at the time of order acknowledgement.
Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of
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Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product.
ST and the ST logo are trademarks of ST. All other product or service names are the property of their respective owners.
Information in this document supersedes and replaces information previously supplied in any prior versions of this document.
© 2018 STMicroelectronics – All rights reserved
DS4230 - Rev 5
page 11/11
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