L1 : 1mmø plated wire 10mmø 4T, tap : 2T from VBE side.
L2 : 1mmø plated wire 10mmø 7T, tap : 1T from VCE side.
L3 : 1mmø enameled wire 10mmø 3T.
5
IC -- VCE
30
μA
25
μA
20μA
Base Current, IB –
μA
100
IB -- VBE
VCE=6V
Collector Current, IC – mA
4
80
3
60
15μA
2
40
10μA
1
5μA
IB=0
0
2
4
6
8
10
20
0
0
0
0.2
0.4
0.6
0.8
1.0
ITR05128
Collector-to-Emitter Voltage, VCE – V
ITR05127
1000
7
5
Base-to-Emitter Voltage, VBE – V
2
hFE -- IC
VCE=6V
Gain-Bandwidth Product, fT – MHz
f T -- IC
1000
7
5
3
2
DC Current Gain, hFE
3
2
VC
E=12V
6
3V
V
100
7
5
3
2
100
7
10
0.1
5
2
3
5
7 1.0
2
3
5
7 10
2
3
5
2
3
5
Collector Current, IC – A
5
7 1.0
2
3
5
ITR05129
100
7
Collector Current, IC – mA
7 10
2
3
5 7 100
ITR05130
Cre -- VCB
f=1MHz
rbb'Cc -- IC
f=31.9MHz
Reverse Transfer Capacitance, Cre – pF
3
2
Output Capacitance, rbb' Cc – ps
5
3
2
1.0
7
5
10
7
5
3
VCE=3V
6V
12V
3
2
1.0
2
3
5
7
Collector-to-Base Voltage, VCB – V
10
2
3
5
2
0.1
2
3
5
7
1.0
2
3
5
7
ITR05131
Collector Current, IC – mA
2
10
ITR05132
Rev.0 I Page 2 of 5 I www.onsemi.com
2SC2814
1.0
7
VCE (sat) -- IC
IC
=10
IB
Collector Dissipation, P
C
– mW
160
140
120
100
80
60
40
20
0
PC -- Ta
Collector-to-Emitter
Saturation Voltage, VCE (sat) – V
5
3
2
0.1
7
5
3
2
1.0
2
3
5
7
2
3
5
7
Collector Current, IC – A
10
100
ITR05133
0
20
40
60
80
100
120
140
Ambient Temperature, Ta – ˚C
10
ITR05134
5
3
2
Input Admittance
y
ie -- IC
VCE=6V
f=1MHz
5
3
Output Admittance
y
oe -- IC
VCE=6V
f=1MHz
g ie
7
2
goe
–
μS,
coe
–
pF
5
g oe
gie
–
mS
0.1
7
5
3
2
c ie
100
7
5
3
2
cie
–
pF
3
c oe
2
0.01
3
5
7
10
1.0
3
5
7
Collector Current, IC – mA
2
1.0
2
3
5
10
ITR05135
2
5
3
7
Collector Current, IC – mA
1.0
2
3
5
7
10
ITR05136
Input Admittance
y
ie -- IC
VCE=6V
f=10MHz
Output Admittance
y
oe -- IC
VCE=6V
f=10MHz
g oe
g ie
100
1.0
7
5
gie
–
mS
cie
–
pF
c ie
5
3
2
goe
–
mS, coe
–
pF
7
2
10
7
5
3
2
3
2
0.1
7
5
3
3
5
7
10
7
5
3
10
ITR05137
7
c oe
1.0
3
5
7
Collector Current, IC – mA
2
1.0
2
3
5
Collector Current, IC – mA
5
3
2
1.0
2
3
5
7
10
ITR05138
5
3
2
Input Admittance
y
ie -- VCE
cie
Reverse transfer admittance
y
re -- VCE
IC=1mA
f=100MHz
IC=1mA
f=100MHz
gie
–
mS, cie
–
pF
10
7
gre
–
μS
100
7
5
3
2
1.0
7
5
3
2
5
3
2
gie
1.0
1.0
10
2
3
5
7
10
2
7
1.0
2
3
5
7
10
2
0.1
Collector-to-Emitter Voltage, VCE – V
ITR05139
Rev.0 I Page 3 of 5 I www.onsemi.com
Collector-to-Emitter Voltage, VCE – V
ITR05140
cre
–
pF
cre
gre
2SC2814
3
2
Forward transfer admittance
y
fe -- VCE
gfe
IC=1mA
f=100MHz
5
3
Output Admittance
y
oe -- VCE
IC=1mA
f=100MHz
coe
gfe, bfe
–
mS
10
7
5
--bfe
goe
–
mS, coe
–
pF
2
1.0
7
5
3
2
3
2
go
e
1.0
1.0
2
3
5
7
Collector-to-Emitter Voltage, VCE – V
ITR05141
10
2
0.1
1.0
2
3
5
7
Collector-to-Emitter Voltage, VCE – V
ITR05142
10
2
5
3
Input Admittance
y
ie -- IC
VCE=6V
f=100MHz
c ie
gre
–
μS
3
Reverse transfer admittance
y
re -- IC
VCE=6V
f=100MHz
3
2
2
gie
–
mS, cie
–
pF
2
10
7
5
3
100
g ie
cre
1.0
7
gre
7
5
2
5
1.0
3
5
7
1.0
2
3
5
7
3
3
5
7
1.0
2
3
5
7
3
100
7
5
3
2
Forward transfer admittance
y
fe -- IC
VCE=6V
f=100MHz
g fe
f
--b
goe
–
mS, coe
–
pF
Collector Current, IC – mA
ITR05143
5
3
Output Admittance
y
oe -- IC
VCE=6V
f=100MHz
Collector Current, IC – mA
ITR05144
e
coe
2
gfe, bfe
–
mS
1.0
7
5
3
2
10
7
5
3
2
3
5
7
g oe
0.1
Collector Current, IC – mA
30
28
1.0
2
3
5
7
3
5
7
ITR05145
Collector Current, IC – mA
1.0
2
3
5
7
ITR05146
PG, NF -- IC
VCE=6V
f=100MHz
See specified
Test Circuit.
PG
Voltage Gain, PG – dB
Noise Figure, NF
26
24
22
20
18
16
6
4
2
0
3
NF
5
7
Collector Current, IC – mA
1.0
2
3
5
7
10
ITR05147
Rev.0 I Page 4 of 5 I www.onsemi.com
cre
–
pF
2SC2814
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