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Datasheet: AV733 (Avic Technology)

To-92 Plastic-encapsulate Transistors

 

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Avic Technology
@vic
AV733
Copyright Avic Electronics Corp.
1
Website:
http://www.avictek.com
TO-92 Plastic-Encapsulate Transistors
AV733 TRANSISTOR PNP
FEATURES
Power dissipation
P
CM
: 0.25 WTamb=25
Collector current
I
CM
: -0.1 A
Collector-base voltage
V
(BR)CBO
: -60 V
Operating and storage junction temperature range
T
J
T
stg
: -55 to +150




ELECTRICAL CHARACTERISTICSTamb=25 unless otherwise specified
Parameter
Symbol
Test conditions
MIN
TYP
MAX
UNIT
Collector-base breakdown voltage
V(BR)
CBO
Ic= -5 A I
E
=0
-60
V
Collector-emitter breakdown voltage
V(BR)
CEO
I
C
= -1 mA , I
B
=0
-50
V
Emitter-base breakdown voltage
V(BR)
EBO
I
E
= -50 A I
C
=0
-5
V
Collector cut-off current
I
CBO
V
CB
= -60 V , I
E
=0
-0.1
A
Emitter cut-off current
I
EBO
V
EB
= -5 V , I
C
=0
-0.1
A
DC current gain
H
FE
1
V
CE
= -6 V, I
C
= -1mA
90
200
600
Collector-emitter saturation voltage
V
CE
(sat) I
C
= -100mA, I
B
=- 10mA
-0.18
-0.3
V
Transition frequency
f
T
V
CE
= -6 V, I
C
=-10mA
f =
30MHz
100 180 MHz

CLASSIFICATION OF HFE
(1)
Rank
R
Q
P
K
Range
90-180 135-270 200-400 300-600




1
2
3
TO--92
1. EMITTER

2.
COLLECTOR

3.BASE
@vic
AV733
Copyright Avic Electronics Corp.
2
Website:
http://www.avictek.com

TYPICAL PERFORMANCE CHARACTERISTICS











Fig.1 Static characteristics
Ic,Collector current (m
A)
C
ob,C
a
paci
t
a
nce (pF)
Cu
rren
t
Gain
-b
an
d
w
id
th
product
,
f T(M
H
z)
Ic,Collector current (m
A)
Satu
ratio
n
v
o
ltag
e
(MV)
H FE, DC current Gain
Fig.2 DC current Gain
Collector-Emitter voltage ( V)
Ic,Collector current (mA)
Fig.3 Base-Emitter on Voltage
Fig.4 Saturation voltage
Collector-Base voltage (V)
Ic,Collector current (mA)
Fig.6 Collector output
Capacitance
Fig.5 Current gain-bandwidth
product
Base-Emitter voltage (V)
Ic,Collector current (mA)
-100
-80
-60
-40
-20
0
0
-4
-8
-12 -16 -20
-0.2
f=1MHz
IE=0
0
-10
-1
10
3
10
2
10
1
10
0
-10
0
-10
1
-10
2
-10
3
-10
2
-10
1
-10
0
-10
-1
-10
4
-0.4
-1.0
-0.6 -0.8
-10
3
-10
2
-10
1
-10
-1
-10
0
-10
1
-10
2
-10
3
10
3
10
2
10
1
10
0
-10
-1
-10
0
-10
1
-10
2
10
2
10
1
10
0
10
-1
-10
0
-10
1
-10
2
-10
3
VCE=-6V
Ic=10*IB
VBE(sat)
VcE(sat)
IB= -300 A
VCE=-6V
VCE=-6V
IB= -250 A
IB= -200 A
IB= -150 A
IB= -100 A
IB= -50 A
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