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Datasheet: AV42 (Avic Technology)

To-92 Plastic-encapsulate Transistors

 

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Avic Technology
@vic
AV42
Copyright Avic Electronics Corp.
1
Website:
http://www.avictek.com
TO-92 Plastic-Encapsulate Transistors
A42 TRANSISTOR NPN
FEATURES
Power dissipation
P
CM
: 0.625 WTamb=25
Collector current
I
CM
: 0.3 A
Collector-base voltage
V
(BR)CBO
: 300 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
MAX
UNIT
Collector-base breakdown voltage
V(BR)
CBO
Ic= 100
A I
E
=0
300
V
Collector-emitter breakdown voltage
V(BR)
CEO
Ic= 1 mA I
B
=0
300
V
Emitter-base breakdown voltage
V(BR)
EBO
I
E
= 10
A I
C
=0
5
V
Collector cut-off current
I
CBO
V
CB
= 200 V I
E
=0
0.25
A
Emitter cut-off current
I
EBO
V
EB
= 3 V I
C
=0
0.25
A
H
FE
1
V
CE
= 10 V, I
C
= 1 mA
25
H
FE
2
V
CE
= 10V, I
C
= 10 mA
80
250
DC current gain
H
FE
3
V
CE
= 10 V, I
C
= 50 mA
25
Collector-emitter saturation voltage
V
CE
(sat) I
C
= 20 mA, I
B
= 2 mA
0.5
V
Base-emitter saturation voltage
V
BE
(sat) I
C
= 20mA, I
B
= 2 mA
0.9
V
Transition frequency
f
T
V
CE
= 5 V, I
C
= 10 mA
f =
30MHz
50
MHz

CLASSIFICATION OF HFE
(2)
Rank
A
B
1
B
2
C
Range
80-100 100-150 150-200
200-250

1
2
3
TO--92
1. EMITTER

2. BASE

3.COLLECTOR
@vic
AV42
Copyright Avic Electronics Corp.
2
Website:
http://www.avictek.com

Typical Characteristics












DC Current Gain
vs Collector Current
h EF - DC Current Gain
Reverse Bias Voltage (V)
T
A
- Ambient Temperature ( C)
Collector-Base and Emitter-Base
Capacitance vs Reverse Bias
Collector-Cutoff
Current
Collector-Emitter
Saturationvs Voltage vs
I
C
- Collector Current (mA)
Base-Emitter Saturation
Voltage vs Collector Current
Base-Emitter ON Voltage vs
Collector Current
I
CB
O
- Collector Current (nA)
Capacitance (pF
)
V
BE
S
A
T
- Base-Em
itter
Voltage (V)
V
CESA
T
- Collector-Em
itter
Voltage (V)
I
C
- Collector Current (mA)
I
C
- Collector Current (mA)
I
C
- Collector Current (mA)
V
BE(ON)
- Base-Em
itter
On Voltage (V)
140
120
100
80
60
40
20
125 C
0.1
1
10
100
0.3
25 C
-40 C
V
CE
=
0.25
0.2
0.15
0.1
0.05
0.1
1
10
100
=1 0
125 C
25 C
-40 C
0.8
0.6
0.4
0.2
0.1
1
100
1
10
100
100
100
50
150
=1 0
125 C
25 C
-40 C
0.8
0.6
0.4
0.2
0.1
1
10
-40 C
25 C
125 C
V
CE
=1V
10
1
25
50
75
100
125
V
CB
=150V
20
10
5
2
1
1
10
100
1000
c
eb
C
cb
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