SPTECH Product Specification
SPTECH Silicon NPN Darlington Power Transistor
TIP150
DESCRIPTION
·Collector-Emitter Breakdown Voltage: V(BR)CEO= 300V(Min.)
·Collector-Emitter Saturation Voltage: VCE(sat)= 2.0V(Max.)@ IC= 5A
APPLICATIONS
·Designed for use in automotive ignition,switching and motor
control applications.
ABSOLUTE MAXIMUM RATINGS(Ta=25℃)
SYMBOL
PARAMETER
VALUE
UNIT
VCBO
Collector-Base Voltage
300
V
VCEO
Collector-Emitter Voltage
300
V
VEBO
Emitter-Base Voltage
8
V
IC
Collector Current-Continuous
7
A
ICM
Collector Current-Peak
10
A
IB
Base Current- Continuous
1.5
A
PC
Collector Power Dissipation
@TC=25℃
80
W
Tj
Junction Temperature
150
℃
-65~150
℃
Tstg
Storage Temperature Range
THERMAL CHARACTERISTICS
SYMBOL
Rth j-c
PARAMETER
Thermal Resistance, Junction to Case
SPTECH website:www.superic-tech.com
MAX
UNIT
1.56
℃/W
1
SPTECH Product Specification
SPTECH Silicon NPN Darlington Power Transistor
TIP150
ELECTRICAL CHARACTERISTICS
TC=25℃ unless otherwise specified
SYMBOL
PARAMETER
V(BR)CEO
Collector-Emitter Breakdown Voltage
IC= 10mA, IB= 0
300
V
V(BR)CBO
Collector-Base Breakdown Voltage
IC= 1.0mA, IE= 0
300
V
VCE(sat)-1
Collector-Emitter Saturation Voltage
IC= 1A, IB= 10mA
1.5
V
VCE(sat)-2
Collector-Emitter Saturation Voltage
IC= 2A, IB= 100mA
1.5
V
VCE(sat)-3
Collector-Emitter Saturation Voltage
IC= 5A, IB= 250mA
2.0
V
VBE(sat)-1
Base-Emitter Saturation Voltage
IC= 2A, IB= 100mA
2.2
V
VBE(sat)-2
Base-Emitter Saturation Voltage
IC= 5A, IB= 250mA
2.3
V
C-E Diode Forward Voltage
IF= 7A
3.5
V
ICEO
Collector Cutoff current
VCE= 300V, IB= 0
0.25
mA
IEBO
Emitter Cutoff Current
VEB= 8V; IC= 0
15
mA
hFE-1
DC Current Gain
IC= 2.5A; VCE= 5V
150
hFE-2
DC Current Gain
IC= 5A; VCE= 5V
50
hFE-3
DC Current Gain
IC= 7A; VCE= 5V
15
COB
Collector Output Capacitance
IE= 0; VCB= 10V; f= 1MHz
150
pF
VF
CONDITIONS
MIN
TYP.
MAX
UNIT
Switching Times
td
Delay Time
tr
Rise Time
tstg
tf
Storage Time
Fall Time
SPTECH website:www.superic-tech.com
VCC = 250V, IC = 5.0 A,
IB1= -IB2= 250mA; tp= 20μs
Duty Cycle≤2%
0.03
μs
0.18
μs
3.5
μs
1.6
μs
2
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