2SD2098 / 2SD2118
Transistors
Electrical characteristics
(Ta=25°C)
Parameter
Collector-base breakdown voltage
Collector-emitter breakdown voltage
Emitter-base breakdown voltage
Collector cutoff current
Emitter cutoff current
Collector-emitter saturation voltage
DC current transfer ratio
Transition frequency
Output capacitance
∗
Measured using pulse current.
Symbol
BV
CBO
BV
CEO
BV
EBO
I
CBO
I
EBO
V
CE(sat)
h
FE
f
T
Cob
Min.
50
20
6
−
−
−
120
−
−
Typ.
−
−
−
−
−
0.3
−
150
35
Max.
−
−
−
0.5
0.5
1.0
390
−
−
Unit
V
V
V
µA
µA
V
−
MHz
pF
I
C
=50µA
I
C
=1mA
I
E
=50µA
V
CB
=40V
V
EB
=5V
Conditions
I
C
/I
B
=4A/0.1A
V
CE
=2V,
I
C
=0.5A
V
CE
=6V,
I
E
=−50mA,
f=100MHz
V
CE
=20V,
I
E
=0A,
f=1MHz
∗
∗
Packaging specifications and h
FE
Package
Code
Type
2SD2098
2SD2118
h
FE
QR
QR
−
Basic ordering unit (pieces)
Taping
T100
1000
TL
2500
−
h
FE
values are classified as follows :
Item
h
FE
Q
120 to 270
R
180 to 390
Rev.B
2/4
2SD2098 / 2SD2118
Transistors
Electrical characteristic curves
COLLECTOR CURRENT : I
C
(A)
10
5
COLLECTOR CURRENT : I
C
(A)
V
CE
=2V
Ta=100°C
25°C
−25°C
5
50mA
45mA
DC CURRENT GAIN : h
FE
2
1
0.5
0.2
0.1
0.05
0.02
0.01
5m
2m
1m
0
4
Ta=25°C
30mA
25mA
20mA
15mA
40mA
35mA
10mA
5000
2000
1000
500
200
100
50
20
10
Ta=25°C
V
CE
=5V
2V
1V
3
2
5mA
1
I
B
=0mA
1.6
2.0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
0
0
0.4
0.8
1.2
5
1m 2m 5m 0.010.02 0.050.1 0.2 0.5 1 2
COLLECTOR CURRENT : I
C
(A)
5 10
BASE TO EMITTER VOLTAGE : V
BE
(V)
COLLECTOR TO EMITTER VOLTAGE : V
CE
(V)
Fig.1 Grounded emitter propagation
characteristics
Fig.2 Grounded emitter output
characteristics
Fig.3 DC current gain vs.
collector current (
Ι
)
5000
2000
DC CURRENT GAIN : h
FE
V
CE
=1V
5000
2000
COLLECTOR SATURATION VOLTAGE : V
CE(sat)
(V)
V
CE
=2V
Ta=100°C
25°C
−25°C
2
1
0.5
Ta=25°C
DC CURRENT GAIN : h
FE
1000
500
200
100
50
20
10
Ta=100°C
25°C
−25°C
1000
500
200
100
50
20
10
0.2
0.1
0.05
0.02
I
C
/I
B
=50
40
30
10
5
1m 2m 5m 0.010.02 0.05 0.10.2 0.5 1 2
COLLECTOR CURRENT : I
C
(A)
5 10
5
1m 2m 5m0.010.02 0.050.10.2 0.5 1 2
COLLECTOR CURRENT : I
C
(A)
5 10
0.01
2m 5m0.010.02 0.05 0.1 0.2 0.5 1
2
5 10
COLLECTOR CURRENT : I
C
(A)
Fig.4 DC current gain vs.
collector current (
ΙΙ
)
Fig.5 DC current gain vs.
collector current (
ΙΙΙ
)
Fig.6 Collector-emitter
saturation voltage vs.
collector current (
Ι
)
COLLECTOR SATURATION VOLTAGE : V
CE(sat)
(V)
COLLECTOR SATURATION VOLTAGE : V
CE(sat)
(V)
2
1
0.5
Ta=100°C
25°C
−25°C
l
C
/l
B
=10
l
C
/l
B
=30
COLLECTOR SATURATION VOLTAGE : V
CE(sat)
(V)
2
1
0.5
Ta=100°C
25°C
−25°C
2
1
0.5
0.2
0.1
0.05
0.02
Ta=100°C
25°C
−25°C
l
C
/l
B
=40
0.2
0.1
0.05
0.2
0.1
0.05
0.02
0.02
0.01
2m 5m 0.010.02 0.05 0.1 0.2 0.5 1 2
COLLECTOR CURRENT : I
C
(A)
5 10
0.01
2m 5m0.010.02 0.05 0.1 0.2 0.5 1 2
COLLECTOR CURRENT : I
C
(A)
5 10
0.01
2m 5m0.010.02 0.05 0.1 0.2 0.5 1 2
COLLECTOR CURRENT : I
C
(A)
5
10
Fig.7 Collector-emitter
saturation voltage vs.
collector current (
ΙΙ
)
Fig.8 Collector-emitter
saturation voltage vs.
collector current (
ΙΙΙ
)
Fig.9 Collector-emitter
saturation voltage vs.
collector current (IV)
Rev.B
3/4
2SD2098 / 2SD2118
Transistors
COLLECTOR SATURATION VOLTAGE : V
CE(sat)
(V)
2
1
0.5
Ta=100°C
25°C
−25°C
l
C
/l
B
=50
1000
COLLECTOR OUTPUT CAPACITANCE : Cob (pF)
EMITTER INPUT CAPACITANCE
: Cib (pF)
TRANSITION FREQUENCY : f
T
(MHz)
500
200
100
50
20
10
5
2
Ta=25°C
V
CE
=6V
1000
500
Ta=25°C
f=1MHz
I
C
=0A
I
E
=0A
Cib
200
100
50
0.2
0.1
0.05
0.02
Cob
20
10
0.1 0.2
0.01
2m 5m 0.010.02 0.05 0.1 0.2 0.5 1 2
COLLECTOR CURRENT : I
C
(A)
5
10
1
−1m −2m −5m−10m−20m −50m−0.1 −0.2 −0.5 −1
EMITTER CURRENT : I
E
(A)
0.5
1
2
5
10
20
50
COLLECTOR TO BASE VOLTAGE : V
CB
(V)
EMITTER TO BASE VOLTAGE
: V
EB
(V)
Fig.10 Collector-emitter
saturation voltage vs.
collector current (V)
Fig.11 Gain bandwidth product vs.
emitter current
Fig.12 Collector output capacitance vs.
collector-base voltage
Emitter input capacitance vs.
emitter-base voltage
50
COLLECTOR CURRENT : I
C
(A)
20
10
5
2
1
500m
200m
100m
50m
20m
10m
Pw
Pw
=
1
00
m
COLLECTOR CURRENT : I
C
(A)
Ic max (Pulse)
Ta=25(°C)
Single pulse
Recommended land
pattern
50
20
10
5
2
1
500m
200m
100m
50m
20m
10m
Ic max (Pulse)
Ic max (Pulse)
Ta=25 (°C)
Single pulse
s
µ
s
00
=
1
s
Pw
m
=
1
s
Pw
0m
s
0m
ms
=
1
00
Pw
=
1
Pw
=
1
D
C
0.2 0.5 1
COLLECTOR TO EMITTER VOLTAGE : V
CE
(V)
Fig.13 Safe operating area
(2SD2098)
DC
2
5 10 20 50 100 200 500
0.2 0.5 1
2
5 10 20 50 100 200 500
COLLECTOR TO EMITTER VOLTAGE : V
CE
(V)
Fig.14 Safe operating area
(2SD2118)
Rev.B
4/4
Appendix
Notes
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The contents described herein are subject to change without notice. The specifications for the
product described in this document are for reference only. Upon actual use, therefore, please request
that specifications to be separately delivered.
Application circuit diagrams and circuit constants contained herein are shown as examples of standard
use and operation. Please pay careful attention to the peripheral conditions when designing circuits
and deciding upon circuit constants in the set.
Any data, including, but not limited to application circuit diagrams information, described herein
are intended only as illustrations of such devices and not as the specifications for such devices. ROHM
CO.,LTD. disclaims any warranty that any use of such devices shall be free from infringement of any
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otherwise dispose of the same, no express or implied right or license to practice or commercially
exploit any intellectual property rights or other proprietary rights owned or controlled by
ROHM CO., LTD. is granted to any such buyer.
Products listed in this document are no antiradiation design.
The products listed in this document are designed to be used with ordinary electronic equipment or devices
(such as audio visual equipment, office-automation equipment, communications devices, electrical
appliances and electronic toys).
Should you intend to use these products with equipment or devices which require an extremely high level
of reliability and the malfunction of which would directly endanger human life (such as medical
instruments, transportation equipment, aerospace machinery, nuclear-reactor controllers, fuel controllers
and other safety devices), please be sure to consult with our sales representative in advance.
It is our top priority to supply products with the utmost quality and reliability. However, there is always a chance
of failure due to unexpected factors. Therefore, please take into account the derating characteristics and allow
for sufficient safety features, such as extra margin, anti-flammability, and fail-safe measures when designing in
order to prevent possible accidents that may result in bodily harm or fire caused by component failure. ROHM
cannot be held responsible for any damages arising from the use of the products under conditions out of the
range of the specifications or due to non-compliance with the NOTES specified in this catalog.
Thank you for your accessing to ROHM product informations.
More detail product informations and catalogs are available, please contact your nearest sales office.
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Appendix1-Rev2.0