FERD20H60C
60 V field-effect rectifier diode
Datasheet - production data
Description
A1
The device is based on a proprietary technology
that achieves the best in class VF/IR trade-off for a
given silicon surface.
K
A2
K
K
This 60 V rectifier has been optimized for use in
confined applications where both efficiency and
thermal performance are key.
A2
K
A2
A1
A1
TO-220AB
This device is suitable for use in adapters and
chargers.
D²PAK
Table 1: Device summary
Features
ST advanced rectifier process
Stable leakage current over reverse voltage
Reduced leakage current
Low forward voltage drop
High frequency operation
September 2017
DocID030963 Rev 1
This is information on a product in full production.
Symbol
Value
IF(AV)
2 x 10 A
VRRM
60 V
VF (typ.)
0.39 V
Tj (max.)
175 °C
1/12
www.st.com
Characteristics
1
FERD20H60C
Characteristics
Table 2: Absolute ratings (limiting values at 25 °C, per diode, unless otherwise specified)
Symbol
Parameter
Value
Unit
VRRM
Repetitive peak reverse voltage
60
V
IF(RMS)
Forward rms current
30
A
Per diode
10
Per device
20
Average forward current δ = 0.5,
square wave
TC = 155 °C
IFSM
Surge non repetitive forward
current
tp = 10 ms sinusoidal
Tstg
Storage temperature range
IF(AV)
Maximum operating junction temperature
Tj
A
130
A
-65 to +175
°C
+175
°C
Max. value
Unit
(1)
Notes:
(1)(dP
tot/dTj)
< (1/Rth(j-a)) condition to avoid thermal runaway for a diode on its own heatsink.
Table 3: Thermal resistance parameters
Symbol
Rth(j-c)
Parameter
Per diode
2.2
Per device
1.3
Junction to case
Coupling
Rth(c)
°C/W
0.4
Table 4: Static electrical characteristics, per diode
Symbol
Parameter
Test conditions
Tj = 25 °C
IR(1)
Reverse leakage current
Tj = 125 °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
VR = 45 V
IF = 2 A
IF = 5 A
IF = 10 A
Notes:
(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 = 0.285 x IF(AV) + 0.03 x IF2(RMS)
2/12
DocID030963 Rev 1
Min.
Typ.
-
Max.
Unit
200
µA
-
10
20
-
6
12
-
0.34
0.38
-
0.28
0.315
-
0.415
0.465
-
0.39
0.435
-
0.52
0.575
-
0.525
0.585
mA
V
FERD20H60C
1.1
Characteristics
Characteristics (curves)
Figure 1: Average forward current versus ambient
temperature (δ = 0.5, per diode)
25
Figure 2: Relative variation of thermal impedance
junction to case versus pulse duration
IF(AV)(A)
1.0
Zth(j-c) /Rth(j-c)
0.9
Rth(j-a) = Rth(j-c)
20
0.8
0.7
15
0.6
0.5
0.4
10
0.3
Single pulse
T
0.2
5
δ = tp/T
tp
0.1
Tamb (°C)
0
0
25
50
75
100
125
150
175
Figure 3: Reverse leakage current versus reverse
voltage applied (typical values, per diode)
1.E+02
IR(mA)
t p(s)
0.0
1.E-04
1.E-03
1.E-02
1.E+00
Figure 4: Junction capacitance versus reverse
voltage applied (typical values, per diode)
10000
C(pF)
F = 1 MHz
Vosc = 30 mVRMS
Tj = 25 °C
Tj = 150 °C
1.E+01
1.E-01
Tj = 125 °C
Tj = 100 °C
1.E+00
1000
Tj = 75 °C
Tj = 50 °C
1.E-01
Tj = 25 °C
VR(V)
VR(V)
100
1.E-02
0
10
20
30
40
50
1
60
Figure 5: Forward voltage drop versus forward
current (typical values, per diode)
10
100
Figure 6: Forward voltage drop versus forward
current (typical values, per diode)
DocID030963 Rev 1
3/12
Characteristics
FERD20H60C
Figure 7: Thermal resistance junction to ambient versus copper surface under tab for D²PAK
(typical values)
R th (j-a) (°C/W )
80
D²PAK
70
Epoxy printed board FR4, copper thickness = 35 µm
60
50
40
30
20
10
SCu(cm²)
0
0
4/12
5
10
15
20
25
DocID030963 Rev 1
30
35
40
FERD20H60C
2
Package information
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.
Cooling method: by conduction (C)
Epoxy meets UL94,V0
Recommended torque value: 0.55 N·m (for TO-220AB)
Maximum torque value: 0.6 N·m (for TO-220AB)
DocID030963 Rev 1
5/12
Package information
2.1
FERD20H60C
TO-220AB package information
Figure 8: TO-220AB package outline
6/12
DocID030963 Rev 1
FERD20H60C
Package information
Table 5: TO-220AB package mechanical data
Dimensions
Ref.
Millimeters
Inches
Min.
Max.
Min.
Max.
A
4.40
4.60
0.173
0.181
b
0.61
0.88
0.024
0.035
b1
1.14
1.70
0.045
0.067
c
0.48
0.70
0.019
0.028
D
15.25
15.75
0.600
0.620
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
0.51
0.60
0.020
0.024
J1
2.40
2.72
0.094
0.107
H1
6.20
6.60
0.244
0.256
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
ØP
3.75
3.85
0.148
0.156
Q
2.65
2.95
0.104
0.116
DocID030963 Rev 1
7/12
Package information
2.2
FERD20H60C
D²PAK package information
Figure 9: D²PAK package outline
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DocID030963 Rev 1
FERD20H60C
Package information
Table 6: D²PAK package mechanical data
Dimensions
Ref.
Millimeters
Min.
Typ.
Inches
Max.
Min.
Typ.
Max.
A
4.40
4.60
0.173
0.181
A1
0.03
0.23
0.001
0.009
b
0.70
0.93
0.028
0.037
b2
1.14
1.70
0.045
0.067
c
0.45
0.60
0.018
0.024
c2
1.23
1.36
0.048
0.053
D
8.95
9.35
0.352
0.368
D1
7.50
7.75
8.00
0.295
0.305
0.315
D2
1.10
1.30
0.051
0.060
E
10
E1
8.50
E2
6.85
e
1.50
0.043
10.40
0.394
8.70
8.90
0.335
0.343
0.346
7.05
7.25
0.266
0.278
0.282
2.54
0.409
0.100
e1
4.88
5.28
0.190
0.205
H
15
15.85
0.591
0.624
J1
2.49
2.69
0.097
0.106
L
2.29
2.79
0.090
0.110
L1
1.27
1.40
0.049
0.055
L2
1.30
1.75
0.050
0.069
R
V2
0.4
0°
0.015
8°
DocID030963 Rev 1
0°
8°
9/12
Package information
FERD20H60C
Figure 10: D²PAK recommended footprint (dimensions are in mm)
10/12
DocID030963 Rev 1
FERD20H60C
3
Ordering information
Ordering information
Table 7: Ordering information
4
Order code
Marking
Package
Weight
Base qty.
Delivery mode
FERD20H60CTS
FD20H60CTS
TO-220AB
1.38 g
50
Tube
FERD20H60CG-TR
FD20H60CG
D²PAK
1.43 g
1000
Tape and reel
Revision history
Table 8: Document revision history
Date
Revision
01-Sep-2017
1
DocID030963 Rev 1
Changes
Initial release.
11/12
FERD20H60C
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12/12
DocID030963 Rev 1
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