STT13005FP
High voltage fast-switching NPN power transistor
Features
■
High voltage capability
■
Minimum lot-to-lot spread for reliable operation
■
Very high switching speed
Applications
■
Electronic ballast for fluorescent lighting
■
Flyback and forward single transistor low
power converters
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It uses a cellular emitter structure with planar
edge termination to enhance switching speeds
while maintaining the wide RBSOA.
3
2
1
SOT-32FP
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Description
The device is manufactured using high voltage
multi-epitaxial planar technology for high
switching speeds and medium voltage capability.
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Figure 1.
Internal schematic diagram
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The device is designed for use in lighting
applications and low cost switch-mode power
supplies.
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Table 1.
Device summary
Order code
Marking
Package
Packaging
STT13005FP
T13005FP
SOT-32FP
Bag
September 2009
Doc ID 15663 Rev 2
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www.st.com
10
Electrical ratings
1
STT13005FP
Electrical ratings
Table 2.
Absolute maximum ratings
Symbol
Parameter
Unit
VCES
Collector-emitter voltage (VBE = 0)
700
V
VCEO
Collector-emitter voltage (IB = 0)
400
V
VEBO
Emitter-base voltage (IC = 0)
9
V
Collector current
2
A
Collector peak current (tP < 5 ms)
4
A
Base current
1
IBM
Base peak current (tP < 5 ms)
2
Ptot
Total dissipation at Tc = 25 °C
Tstg
Storage temperature
IC
ICM
IB
TJ
Thermal data
Symbol
30
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Parameter
RthJC
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Max. operating junction temperature
Table 3.
Thermal resistance junction-case
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Value
Doc ID 15663 Rev 2
Pr
A
A
W
-65 to 150
°C
150
°C
Value
Unit
4.2
°C/W
STT13005FP
2
Electrical characteristics
Electrical characteristics
Tcase = 25 °C unless otherwise specified.
Table 4.
Electrical characteristics
Symbol
Parameter
Typ.
Max.
Unit
Collector cut-off current
(VBE = 0)
VCE = 700 V
VCE = 700 V TC = 125 °C
100
500
µA
µA
ICEO
Collector cut-off current
(IB = 0)
VCE = 400 V
250
µA
VEBO
Emitter-base voltage
(IC = 0)
IE = 10 mA
VCE(sat)
(1)
VBE(sat) (1)
hFE (1)
IC = 0.5 A
IC = 0.8 A
IC = 1.6 A
IB = 125 mA
_ IB = 0.2 A
_ IB = 0.4 A
Base-emitter saturation
voltage
IC = 0.5 A
IC = 0.8 A
IC = 1.6 A
IB = 125 mA
_ IB = 0.2 A
_ IB = 0.4 A
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ts
tf
Resistive load
Rise time
Storage time
Fall time
ts
tf
Inductive load
Storage time
Fall time
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400
Collector-emitter
saturation voltage
DC current gain
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9
Collector-emitter
I = 10 mA
sustaining voltage (IB = 0) C
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Min.
ICES
VCEO(sus) (1)
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Test conditions
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IC = 0.5 A
_ VCE = 5 V
IC = 2 A _ _ VCE = 5 V
VCC = 125 V
IC = 1 A
IB1 = -IB2 = 0.2 A
IC = 1 A
IB1 = 0.2 A
L = 50 mH
VBE(off) = -5 V
VClamp = 300 V
10
8
V
0.5
1
1.5
V
V
V
1
1.3
1.5
V
V
V
50
0.4
3.2
0.25
0.8
0.16
0.7
4.5
0.4
µs
µs
µs
µs
µs
1. Pulse test: pulse duration ≤ 300 µs, duty cycle ≤ 2 %
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Electrical characteristics
2.1
STT13005FP
Electrical characteristics (curves)
Figure 2.
Safe operating area
Figure 3.
Derating curve
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Figure 4.
DC current gain (VCE = 1 V)
Figure 5.
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DC current gain (VCE = 5 V)
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Figure 6.
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Collector-emitter saturation
voltage
Figure 7.
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Base-emitter saturation
voltage
STT13005FP
Electrical characteristics
Figure 8.
Inductive load fall time
Figure 10. Resistive load fall time
Figure 9.
Inductive load storage time
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Figure 11. Resistive load storage time
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Figure 12. Reverse biased SOA
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Electrical characteristics
2.2
STT13005FP
Test circuits
Figure 13. Resistive load switching test circuit
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1. Fast electronic switch
2. Non-inductive resistor
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Figure 14. Inductive load switching test circuit
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1. Fast electronic switch
2. Non-inductive resistor
3. Fast recovery rectifier
Doc ID 15663 Rev 2
STT13005FP
3
Package mechanical data
Package mechanical data
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.
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Package mechanical data
STT13005FP
SOT-32FP mechanical data
mm.
DIM.
MIN.
A
TYP
MAX.
3.00
3.40
A1
1.80
2.20
b
0.66
0.86
b1
1.17
1.37
c
0.45
0.60
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D
7.80
8.20
E
10.80
11.20
e
2.28
e1
4.46
L
15.30
L1
1.30
P
4.04
ø1
2.90
ø2
3.10
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4.66
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Pr
15.70
1.50
4.24
3.10
3.30
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8120996B
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STT13005FP
4
Revision history
Revision history
Table 5.
Document revision history
Date
Revision
Changes
06-May-2009
1
Initial release
10-Sep-2009
2
Document status promoted from preliminary data to datasheet
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STT13005FP
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