Transistors
2SD0592A
(2SD592A)
Silicon NPN epitaxial planar type
For low-frequency output amplification
Complementary to 2SB0621A (2SB621A)
■
Features
0.7
±0.2
5.0
±0.2
Unit: mm
4.0
±0.2
•
Large collector power dissipation P
C
•
Low collector-emitter saturation voltage V
CE(sat)
0.7
±0.1
■
Absolute Maximum Ratings
T
a
=
25°C
Parameter
Collector-base voltage (Emitter open)
Collector-emitter voltage (Base open)
Emitter-base voltage (Collector open)
Collector current
Peak collector current
Collector power dissipation
Junction temperature
Storage temperature
Symbol
V
CBO
V
CEO
V
EBO
I
C
I
CP
P
C
T
j
T
stg
Rating
60
50
5
1
1.5
750
150
−55
to
+150
Unit
V
V
2.3
±0.2
0.45
+0.15
–0.1
2.5
+0.6
–0.2
1
2 3
12.9
±0.5
0.45
+0.15
–0.1
2.5
+0.6
–0.2
V
A
A
mW
°C
°C
5.1
±0.2
1: Emitter
2: Collector
3: Base
TO-92-B1 Package
■
Electrical Characteristics
T
a
=
25°C
±
3°C
Parameter
Collector-base voltage (Emitter open)
Collector-emitter voltage (Base open)
Emitter-base voltage (Collector open)
Collector-base cutoff current (Emitter open)
Forward current transfer ratio
Symbol
V
CBO
V
CEO
V
EBO
I
CBO
h
FE1 *
h
FE2
Collector-emitter saturation voltage
Base-emitter saturation voltage
Transition frequency
Collector output capacitance
(Common base, input open circuited)
V
CE(sat)
V
BE(sat)
f
T
C
ob
Conditions
I
C
=
10
µA,
I
E
=
0
I
C
=
2 mA, I
B
=
0
I
E
=
10
µA,
I
C
=
0
V
CB
=
20 V, I
E
=
0
V
CE
=
10 V, I
C
= 500
mA
V
CE
= 5
V, I
C
=
1 A
I
C
=
500 mA, I
B
=
50 mA
I
C
=
500 mA, I
B
=
50 mA
V
CB
=
10 V, I
E
= −50
mA, f
=
200 MHz
V
CB
=
10 V, I
E
=
0, f
=
1 MHz
85
50
0.2
0.85
200
20
0.4
1.20
V
V
MHz
pF
Min
60
50
5
0.1
340
Typ
Max
Unit
V
V
V
µA
Note) 1. Measuring methods are based on JAPANESE INDUSTRIAL STANDARD JIS C 7030 measuring methods for transistors.
2. *: Rank classification
Rank
h
FE1
Q
85 to 170
R
120 to 240
S
170 to 340
Note) The part number in the parenthesis shows conventional part number.
Publication date: January 2003
SJC00189CED
1
2SD0592A
P
C
T
a
1.0
1.50
I
C
V
CE
T
a
=
25°C
I
B
=
10 mA
9 mA
8 mA
7 mA
6 mA
5 mA
4 mA
0.50
3 mA
2 mA
0.25
1 mA
1.2
V
CE
=
10 V
T
a
=
25°C
1.0
I
C
I
B
Collector power dissipation P
C
(W)
0.8
1.25
Collector current I
C
(A)
1.00
Collector current I
C
(A)
0.8
0.6
0.75
0.6
0.4
0.4
0.2
0.2
0
0
40
80
120
160
0
0
2
4
6
8
10
0
0
2
4
6
8
10
12
Ambient temperature T
a
(
°C
)
Collector-emitter voltage V
CE
(V)
Base current I
B
(mA)
V
CE(sat)
I
C
Collector-emitter saturation voltage V
CE(sat)
(V)
10
V
BE(sat)
I
C
100
h
FE
I
C
600
V
CE
=
10 V
Base-emitter saturation voltage V
BE(sat)
(V)
I
C
/ I
B
=
10
I
C
/ I
B
=
10
1
T
a
=
75°C
25°C
0.1
−25°C
10
Forward current transfer ratio h
FE
500
400
25°C
1
T
a
= −25°C
75°C
300
T
a
=
75°C
200
25°C
−25°C
0.01
0.1
100
0.001
0.01
0.1
1
10
0.01
0.01
0.1
1
10
0
0.01
0.1
1
10
Collector current I
C
(A)
Collector current I
C
(A)
Collector current I
C
(A)
f
T
I
E
Collector output capacitance
C (pF)
(Common base, input open circuited)
ob
200 V
=
10 V
CB
T
=
25°C
180
a
50
C
ob
V
CB
120
V
CER
R
BE
Collector-emitter voltage
(V)
V
(Resistor between B and E)
CER
I
E
=
0
f
=
1 MHz
T
a
=
25°C
I
C
=
10 mA
T
a
=
25°C
Transition frequency f
T
(MHz)
100
160
140
120
100
80
60
40
20
0
−1
−10
−100
40
80
30
60
20
40
10
20
0
1
10
100
0
0.1
1
10
100
Emitter current I
E
(mA)
Collector-base voltage V
CB
(V)
Base-emitter resistance R
BE
(kΩ)
2
SJC00189CED
2SD0592A
I
CEO
T
a
10
4
V
CE
=
10 V
10
3
I
CEO
(T
a
)
I
CEO
(T
a
=
25°C)
10
2
10
1
0
40
80
120
160
Ambient temperature T
a
(
°C
)
SJC00189CED
3
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and semiconductors described in this material
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if any of the products or technologies described in this material and controlled under the "Foreign
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(3) We are not liable for the infringement of rights owned by a third party arising out of the use of the
product or technologies as described in this material.
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electronic equipment (such as office equipment, communications equipment, measuring instru-
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Consult our sales staff in advance for information on the following applications:
•
Special applications (such as for airplanes, aerospace, automobiles, traffic control equipment,
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•
Any applications other than the standard applications intended.
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notice for modification and/or improvement. At the final stage of your design, purchasing, or use of
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the latest specifications satisfy your requirements.
(6) When designing your equipment, comply with the guaranteed values, in particular those of maxi-
mum rating, the range of operating power supply voltage, and heat radiation characteristics. Other-
wise, we will not be liable for any defect which may arise later in your equipment.
Even when the products are used within the guaranteed values, take into the consideration of
incidence of break down and failure mode, possible to occur to semiconductor products. Measures
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(7) When using products for which damp-proof packing is required, observe the conditions (including
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2002 JUL