STTH3006
Turbo 2 ultrafast high voltage rectifier
Datasheet - production data
Description
The device is developed using ST's Turbo 2
600 V technology. It is well-suited as a boost
diode, especially for use in continuous mode
power factor corrections and hard switching
conditions.
This device is also intended for use as a free
wheeling diode in power supplies and other
power switching applications.
Table 1: Device summary
Features
Ultrafast switching
Low reverse current
Low thermal resistance
Reduces switching and conduction losses
Insulated package: DOP3I
Insulating voltage = 2500 VRMS sine
May 2017
DocID12368 Rev 4
This is information on a product in full production.
Symbol
Value
IF(AV)
30 A
VRRM
600 V
VF (typ.)
1.10 V
Tj
175 °C
trr (max)
50 ns
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www.st.com
Characteristics
1
STTH3006
Characteristics
Table 2: Absolute ratings (limiting values at 25 °C, unless otherwise specified)
Symbol
Parameter
Value
Unit
VRRM
Repetitive peak reverse voltage
600
V
IF(RMS)
Forward rms current
50
A
Average forward current,
δ = 0.5 square wave
DO-247
TC = 115 °C
IF(AV)
DOP3I
TC = 85 °C
30
A
IFSM
Surge non repetitive forward current
tp = 10 ms sinusoidal
300
A
Tstg
Storage temperature range
-65 to +175
°C
175
°C
Tj
Maximum operating junction temperature
Table 3: Thermal parameters
Symbol
Rth(j-c)
Parameter
Max. value
DO-247
1.1
DOP3I
1.7
Junction to case
Unit
°C/W
Table 4: Static electrical characteristics
Symbol
Parameter
Test conditions
IR(1)
Reverse leakage current
VF(2)
Forward voltage drop
Tj = 25 °C
Tj = 150 °C
Tj = 25 °C
Tj = 150 °C
VR = VRRM
IF = 30 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 = 1.07 x IF(AV) + 0.011 x IF2(RMS)
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DocID12368 Rev 4
Min.
Typ.
-
25
80
-
Max.
800
1.85
1.10
1.40
Unit
µA
V
STTH3006
Characteristics
Table 5: Dynamic electrical characteristics
Symbol
Parameter
Test conditions
IF = 0.5 A
Irr = 0.25 A
IR = 1 A
trr
IRM
tfr
VFP
Reverse recovery time
Reverse recovery current
Typ.
-
Max.
Unit
50
Tj = 25 °C
ns
IF = 1 A
VR = 30 V
dIF/dt = -50 A/µs
-
50
70
Tj = 125 °C
IF = 30 A
VR = 400 V
dIF/dt = -100 A/µs
-
8
11
A
IF = 30 A
VFR = 1.1 x VF max
dIF/dt = 100 A/µs
500
ns
Tj = 25 °C
Forward recovery time
Forward recovery voltage
Min.
DocID12368 Rev 4
-
2.5
V
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Characteristics
1.1
STTH3006
Characteristics (curves)
Figure 1: Conduction losses versus average
forward current
Figure 2: Forward voltage drop versus forward
current
PF( AV )(W)
55
δ = 0.5
50
δ = 0.2
45
δ = 0.1
40
δ=1
δ = 0.05
35
30
25
20
T
15
10
IF( AV ) ( A)
5
δ=tp/T
tp
0
0
5
10
15
20
25
30
35
Figure 3: Relative variation of thermal impedance
junction to case versus pulse duration
Figure 4: Peak reverse recovery current versus
dIF/dt (typical values)
Zth (j-c) /Rth(j-c)
IRM(A)
1.0
30
IF =2 x I F(AV )
VR = 400 V
Tj = 125°C
0.9
25
IF =I F(AV )
0.8
IF =0.5 x I F(AV )
0.7
20
IF =0.25 x I F(AV )
0.6
15
0.5
0.4
10
0.3
5
0.2
dIF/dt(A/µs)
Single pulse
t P (s)
0.1
0
0
0.0
1.E -03
1.E -02
1.E -01
Figure 5: Reverse recovery time versus dIF/dt
(typical values)
trr(ns)
VR = 400 V
Tj = 125°C
IF =2 x I F(AV )
IF =I F(AV )
IF =0.5 x I F(AV )
100
50
dIF/dt(A/µs)
0
0
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200
400
600
100
150
200
250
300
350
400
450
500
Figure 6: Reverse recovery charges versus dIF/dt
(typical values)
200
150
50
1.E +00
800
1000
DocID12368 Rev 4
STTH3006
Characteristics
Figure 8: Relative variations of dynamic
parameters versus junction temperature
Figure 7: Softness factor versus dIF/dt
(typical values)
Sfactor
0.6
IF ≤ 2 x IF(AV)
VR = 400 V
Tj = 125°C
0.5
0.4
0.3
0.2
0.1
dIF/dt(A/µs)
0.0
0
50
100
150
200
250
300
350
400
450
500
Figure 9: Transient peak forward voltage versus
dIF/dt (typical values)
Figure 10: Forward recovery time versus dIF/dt
(typical values)
VFP(V)
t FR(ns)
8.0
800
7.5
IF = IF(AV)
VR = 400 V
Tj = 125°C
7.0
6.5
IF ≤ 2 x IF(AV)
VR = 400 V
Tj = 125°C
700
6.0
600
5.5
5.0
500
4.5
4.0
400
3.5
3.0
300
2.5
200
2.0
1.5
100
1.0
0.5
dIF/dt(A/µs)
dIF/dt(A/µs)
0.0
0
100
200
0
300
400
500
DocID12368 Rev 4
0
100
200
300
400
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500
Characteristics
STTH3006
Figure 11: Junction capacitance versus reverse voltage applied (typical values)
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Package information
STTH3006
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.
Epoxy meets UL94, V0
Cooling method: by conduction (C)
Recommended torque value: 0.55 N·m (DO-247)
Recommended torque value: 0.9 to 1.2 N·m (DOP3I)
Maximum torque value: 1.0 N·m (DO-247)
DocID12368 Rev 4
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Package information
2.1
STTH3006
DO247 package information
Figure 12: DO-247 package outline
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DocID12368 Rev 4
Package information
STTH3006
Table 6: DO-247 package mechanical data
Dimensions
Ref.
Millimeters
Inches
Min.
Max.
Min.
Max.
A
4.85
5.15
0.191
0.203
D
2.20
2.60
0.086
0.102
E
0.40
0.80
0.015
0.031
F
1.00
1.40
0.039
0.055
F2
F3
2.00 typ.
2.00
G
0.078 typ.
2.40
0.078
10.90 typ.
0.094
0.429 typ.
H
15.45
15.75
0.608
0.620
L
19.85
20.15
0.781
0.793
L1
3.70
4.30
0.145
0.169
L2
L3
18.50 typ.
14.20
0.728 typ.
14.80
0.559
0.582
L4
34.60 typ.
1.362 typ.
L5
5.50 typ.
0.216 typ.
M
2.00
V
0.078
5°
V2
Dia.
3.00
5°
60°
3.55
0.118
60°
3.65
DocID12368 Rev 4
0.139
0.143
9/12
Package information
2.2
STTH3006
DOP3I package information
Figure 13: DOP3I package outline
Table 7: DOP3I package mechanical data
Dimensions
Ref.
Millimeters
Min.
Max.
Min.
Max.
A
4.40
4.60
0.173
0.181
b
1.20
1.40
0.047
0.055
c
1.45
1.55
0.057
0.061
c1
0.50
0.70
0.020
0.028
D
12.15
13.10
0.474
0.516
E
15.10
15.50
0.594
0.610
E1
7.55
7.75
0.297
0.305
e
10.80
11.30
0.425
0.445
G
20.4
21.10
0.815
0.831
L
14.35
15.60
0.565
0.614
P
4.08
4.17
0.161
0.164
Q
2.70
2.90
0.106
0.114
R
Y
10/12
Inches
4.60
15.80
0.181
16.50
DocID12368 Rev 4
0.622
0.650
Ordering information
STTH3006
3
Ordering information
Table 8: Ordering information
4
Order code
Marking
Package
Weight
Base qty.
Delivery mode
STTH3006W
STTH3006W
DO-247
4.40 g
30
Tube
STTH3006PI
STTH3006P
DOP3I
4.46 g
30
Tube
Revision history
Table 9: Document revision history
Date
Revision
17-May-2017
1
Changes
First issue.
DocID12368 Rev 4
11/12
STTH3006
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12/12
DocID12368 Rev 4
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