160V
160V
125V
7V
25A
30A
5A
150W
–65 to 200°C
200°C
Prelim.4/00
BUX10X
Semelab plc. Telephone +44(0)1455 556565. Fax +44(0)1455 552612.
E-mail: sales@semelab.co.uk Website: http://www.semelab.co.uk
VCBO Collector – Base Voltage (IE= 0)
VCEX Collector – Emitter Voltage (VBE = –1.5V)
VCEO Collector – Emitter Voltage (IB= 0)
VEBO Emitter – Base Voltage (IC= 0)
ICCollector Current
ICM Peak Collector Current (tp= 10 ms)
IBBase Current
Ptot Total Power Dissipation at Tcase
£
25°C
Tstg,Storage Temperature
TjJunction Temperature
12
3
(case)
25.15 (0.99)
26.67 (1.05)
10.67 (0.42)
11.18 (0.44)
38.61 (1.52)
39.12 (1.54)
29.9 (1.177)
30.4 (1.197)
16.64 (0.655)
17.15 (0.675)
3.84 (0.151)
4.09 (0.161)
0.97 (0.060)
1.10 (0.043)
7.92 (0.312)
12.70 (0.50)
22.23
(0.875)
max.
6.35 (0.25)
9.15 (0.36)
1.52 (0.06)
3.43 (0.135)
NPN MULTI - EPITAXIAL
POWER TRANSISTOR
FEATURES
HIGH CURRENT
FAST SWITCHING
HIGH RELIABILITY
ABSOLUTE MAXIMUM RATINGS(Tcase = 25°C unless otherwise stated)
TO–3
PIN 1 Base
PIN 2 Emitter
Case is Collector.
APPLICATIONS
POWER SWITCHING CIRCUITS
MOTOR CONTROL
MECHANICAL DATA
Dimensions in mm(inches)
Semelab plc. Telephone +44(0)1455 556565. Fax +44(0)1455 552612.
E-mail: sales@semelab.co.uk Website: http://www.semelab.co.uk
BUX10X
Prelim.4/00
Parameter Test Conditions Min. Typ. Max. Unit
IC= 200mA
IE= 50mA
VCE = 100V
VCE = 160V VBE = 1.5V
TC= 125°C
IC= 0 VEB = 5V
IC= 10A IB= 1A
IC= 20A IB= 2A
IC= 20A IB= 2A
IC= 10A VCE = 2V
IC= 20A VCE = 4V
VCE = 30V t = 1s
VCE = 140V t = 1s
IC= 1A VCE = 15V
f = 10MHz
Collector - Emitter Sustaining
Voltage
Emitter BaseVoltage
Collector Cut-off Current
Collector Cut-off Current
Emitter Cut-off Current
Collector Emitter
Saturation Voltage
Base Emitter
Saturation Voltage
DC Current Gain
Second Breakdown
Collector Current
Transition Frequency
125
71.5
1.5
6
1
0.3 0.6
0.7 1.2
1.6 2
20 75
10
5
1
8
V
V
mA
mA
mA
V
V
A
MHz
ELECTRICAL CHARACTERISTICS (Tcase = 25°C unless otherwise stated)
THERMAL CHARACTERISTICS
R
q
JCThermal Resistance Junction to Case 1.17 °C/W
VCEO(sus)*
VEBO
ICEO
ICEX
IEBO
VCE(sat)*
VBE(sat)*
hFE*
IS/b
fT