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BDX33, BDX33A, BDX33B, BDX33C, BDX33D
NPN SILICON POWER DARLINGTONS
● Designed for Complementary Use with
BDX34, BDX34A, BDX34B, BDX34C and
BDX34D
● 70 W at 25°C Case Temperature
● 10 A Continuous Collector Current
● Minimum hFE of 750 at 3V, 3 A
TO-220 PACKAGE
(TOP VIEW)
B1
C2
E3
Pin 2 is in electrical contact with the mounting base.
MDTRACA
absolute maximum ratings at 25°C case temperature (unless otherwise noted)
RATING
Collector-base voltage (IE = 0)
Collector-emitter voltage (IB = 0)
Emitter-base voltage
Continuous collector current
Continuous base current
Continuous device dissipation at (or below) 25°C case temperature (see Note 1)
Continuous device dissipation at (or below) 25°C free air temperature (see Note 2)
Operating free air temperature range
Storage temperature range
Operating free-air temperature range
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
NOTES: 1. Derate linearly to 150°C case temperature at the rate of 0.56 W/°C.
2. Derate linearly to 150°C free air temperature at the rate of 16 mW/°C.
SYMBOL
VCBO
VCEO
VEBO
IC
IB
Ptot
Ptot
TJ
Tstg
TA
VALUE
45
60
80
100
120
45
60
80
100
120
5
10
0.3
70
2
-65 to +150
-65 to +150
-65 to +150
UNIT
V
V
V
A
A
W
W
°C
°C
°C
PRODUCT INFORMATION
AUGUST 1993 - REVISED SEPTEMBER 2002
Specifications are subject to change without notice.
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BDX33, BDX33A, BDX33B, BDX33C, BDX33D
NPN SILICON POWER DARLINGTONS
electrical characteristics at 25°C case temperature (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN TYP MAX
Collector-emitter
V(BR)CEO breakdown voltage
IC = 100 mA IB = 0
ICEO
Collector-emitter
cut-off current
ICBO
Collector cut-off
current
IEBO
Emitter cut-off
current
Forward current
hFE transfer ratio
Base-emitter
VBE(on) voltage
Collector-emitter
VCE(sat) saturation voltage
Parallel diode
VEC forward voltage
VCE = 30 V
VCE = 30 V
VCE = 40 V
VCE = 50 V
VCE = 60 V
VCE = 30 V
VCE = 30 V
VCE = 40 V
VCE = 50 V
VCE = 60 V
VCB = 45 V
VCB = 60 V
VCB = 80 V
VCB = 100 V
VCB = 120 V
VCB = 45 V
VCB = 60 V
VCB = 80 V
VCB = 100 V
VCB = 120 V
VEB = 5 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
VCE = 3 V
IB = 8 mA
IB = 8 mA
IB = 6 mA
IB = 6 mA
IB = 6 mA
IE = 8 A
IB = 0
IB = 0
IB = 0
IB = 0
IB = 0
IB = 0
IB = 0
IB = 0
IB = 0
IB = 0
IE = 0
IE = 0
IE = 0
IE = 0
IE = 0
IE = 0
IE = 0
IE = 0
IE = 0
IE = 0
IC = 0
IC = 4 A
IC = 4 A
IC = 3 A
IC = 3 A
IC = 3 A
IC = 4 A
IC = 4 A
IC = 3 A
IC = 3 A
IC = 3 A
IC = 4 A
IC = 4 A
IC = 3 A
IC = 3 A
IC = 3 A
IB = 0
(see Note 3)
TC = 100°C
TC = 100°C
TC = 100°C
TC = 100°C
TC = 100°C
TC = 100°C
TC = 100°C
TC = 100°C
TC = 100°C
TC = 100°C
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
45
60
80
100
120
(see Notes 3 and 4)
(see Notes 3 and 4)
(see Notes 3 and 4)
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
BDX33
BDX33A
BDX33B
BDX33C
BDX33D
750
750
750
750
750
0.5
0.5
0.5
0.5
0.5
10
10
10
10
10
1
1
1
1
1
5
5
5
5
5
10
2.5
2.5
2.5
2.5
2.5
2.5
2.5
2.5
2.5
2.5
4
NOTES: 3. These parameters must be measured using pulse techniques, tp = 300 µs, duty cycle ≤ 2%.
4. These parameters must be measured using voltage-sensing contacts, separate from the current carrying contacts.
UNIT
V
mA
mA
mA
V
V
V
2
DataSheet4 U .com
PRODUCT INFORMATION
AUGUST 1993 - REVISED SEPTEMBER 2002
Specifications are subject to change without notice.
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