Philips BUT11AX Datasheet

Philips Semiconductors Product specification
Silicon Diffused Power Transistor BUT11AX
GENERAL DESCRIPTION
High-voltage, high-speed glass-passivated npn power transistor in a plastic full-pack envelope intended for use in converters, inverters, switching regulators, motor control systems, etc.
QUICK REFERENCE DATA
SYMBOL PARAMETER CONDITIONS TYP. MAX. UNIT
V
V
CEO
I
C
I
CM
P
tot
V
CEsat
I
Csat
t
f
PINNING - SOT186A PIN CONFIGURATION SYMBOL
Collector-emitter voltage peak value VBE = 0 V - 1000 V Collector-emitter voltage (open base) - 450 V Collector current (DC) - 5 A Collector current peak value - 10 A Total power dissipation Ths 25 ˚C - 32 W Collector-emitter saturation voltage - 1.5 V Collector saturation current 2.5 - A Fall time 150 - ns
PIN DESCRIPTION
case
c
1 base 2 collector
b
3 emitter
case isolated
LIMITING VALUES
Limiting values in accordance with the Absolute Maximum Rating System (IEC 134)
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
V V I
C
I
CM
I
B
I
BM
P T T
tot stg j
Collector-emitter voltage peak value VBE = 0 V - 1000 V Collector-emitter voltage (open base) - 450 V Collector current (DC) - 5 A Collector current peak value - 10 A Base current (DC) - 2 A Base current peak value - 4 A Total power dissipation Ths 25 ˚C - 32 W Storage temperature -65 150 ˚C Junction temperature - 150 ˚C
THERMAL RESISTANCES
SYMBOL PARAMETER CONDITIONS TYP. MAX. UNIT
R R
th j-hs
th j-a
Junction to heatsink with heatsink compound - 3.95 K/W Junction to ambient in free air 55 - K/W
123
e
November 1995 1 Rev 1.100
Philips Semiconductors Product specification
Silicon Diffused Power Transistor BUT11AX
ISOLATION LIMITING VALUE & CHARACTERISTIC
Ths = 25 ˚C unless otherwise specified
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
V
isol
C
isol
STATIC CHARACTERISTICS
Ths = 25 ˚C unless otherwise specified
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
I
CES
I
CES
I
EBO
V
CEOsust
V
CEsat
V
BEsat
h
FE
h
FE
R.M.S. isolation voltage from all f = 50-60 Hz; sinusoidal - 2500 V three terminals to external waveform; heatsink R.H. 65% ; clean and dustfree
Capacitance from T2 to external f = 1 MHz - 10 - pF heatsink
Collector cut-off current
1
VBE = 0 V; VCE = V VBE = 0 V; VCE = V Tj = 125 ˚C
CESMmax
; - - 2.0 mA
CESMmax
- - 1.0 mA
Emitter cut-off current VEB = 9 V; IC = 0 A - - 10 mA Collector-emitter sustaining voltage IB = 0 A; IC = 100 mA; 450 - - V
L = 25 mH Collector-emitter saturation voltages IC = 2.5 A; IB = 0.5 A - - 1.5 V Base-emitter saturation voltage IC = 2.5 A; IB = 0.5 A - - 1.3 V DC current gain IC = 5 mA; VCE = 5 V 10 18 35
IC = 500 mA; VCE = 5 V 10 20 35
DYNAMIC CHARACTERISTICS
Ths = 25 ˚C unless otherwise specified
SYMBOL PARAMETER CONDITIONS TYP. MAX. UNIT
t
on
t
s
t
f
Turn-on time 0.6 - µs Turn-off storage time 3.5 - µs Turn-off fall time 0.6 - µs
Switching times (inductive load) I
Switching times (resistive load) I
t
s
t
f
Turn-off storage time 1.5 - µs Turn-off fall time 150 - ns
Switching times (inductive load) I
t
s
t
f
Turn-off storage time 1.8 - µs Turn-off fall time 170 - ns
= 2.5 A; I
Con
= 2.5 A; I
Con
-VBB = 5 V
= 2.5 A; I
Con
-VBB = 5 V; Tj = 100 ˚C
= -I
Bon
Boff
= 0.5 A; LB = 1 µH;
Bon
= 0.5 A; LB = 1 µH;
Bon
= 0.5 A
1 Measured with half sine-wave voltage (curve tracer).
November 1995 2 Rev 1.100
Philips Semiconductors Product specification
Silicon Diffused Power Transistor BUT11AX
ICon
90 %
10 %
tf
IBon
30-60 Hz
6V
300R
Fig.1. Test circuit for V
100-200R
Horizontal
Oscilloscope
Vertical
1R
.
CEOsust
+ 50v
Fig.
90 %
IC
ton
IB
10 %
tr 30ns
-IBoff
4.
Switching times waveforms with resistive load.
ts toff
IC / mA
250 200
100
0
VCE / V
Fig.2. Oscilloscope display for V
VIM 0
tp
T
R
B
min
VCEOsust
VCC
R
L
T.U.T.
CEOsust
VCC
LC
IBon
-VBB
.
Fig.
5.
LB
T.U.T.
Test circuit inductive load.
VCC = 300 V; -VBE = 5 V; LC = 200 uH; LB = 1 uH
ICon
90 %
IC
10 %
ts toff
IB
IBon
tf
t
t
-IBoff
Fig
.3.
Test circuit resistive load. VIM = -6 to +8 V
Fig.
6.
Switching times waveforms with inductive load.
VCC = 250 V; tp = 20 µs; δ = tp / T = 0.01.
RB and RL calculated from I
Con
and I
requirements.
Bon
November 1995 3 Rev 1.100
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