Panasonic 2SD1747A, 2SD1747 Datasheet

Po wer Transistors
2SD1747, 2SD1747A
Silicon NPN epitaxial planar type
For power switching Complementary to 2SB1177
Features
Low collector to emitter saturation voltage V
Satisfactory linearity of foward current transfer ratio h
Large collector current I
I type package enabling direct soldering of the radiating fin to
C
the printed circuit board, etc. of small electronic equipment.
Absolute Maximum Ratings (T
Parameter
Collector to base voltage Collector to emitter voltage
2SD1747 2SD1747A 2SD1747
2SD1747A Emitter to base voltage Peak collector current Collector current Collector power dissipation
TC=25°C Ta=25°C
Junction temperature Storage temperature
Symbol
V
CBO
V
CEO
V
EBO
I
CP
I
C
P
C
T
j
T
stg
CE(sat)
=25˚C)
C
Ratings
130 150
80
100
7
15
7
15
1.3
150
–55 to +150
FE
Unit
W
˚C ˚C
7.0±0.3
3.0±0.2
0.8±0.21.0±0.2
7.2±0.3
1.1±0.1
2.3±0.2
4.6±0.4 213
7.0±0.3
123
2.3±0.2
4.6±0.4
0.75±0.1
2.0±0.2
3.0±0.2
1.0 max.
0.75±0.1
+0.3
–0.
10.0
V
V
7.2±0.3
V
10.2±0.3
A A
1.1±0.1
Unit: mm
3.5±0.2
0.85±0.1
0.4±0.1
1:Base 2:Collector 3:Emitter I Type Package
Unit: mm
3.5±0.2 0 to 0.15
1.01.0
2.5
0.5 max.
0.9±0.1
0 to 0.15
1:Base 2:Collector 3:Emitter I Type Package (Y)
2.5±0.2
2.5±0.2
Electrical Characteristics (T
Parameter
Collector cutoff current Emitter cutoff current Collector to emitter voltage
2SD1747 2SD1747A
Forward current transfer ratio
Collector to emitter saturation voltage Base to emitter saturation voltage Transition frequency Turn-on time Storage time Fall time
*
h
Rank classification
FE2
Rank Q P
h
FE2
90 to 180 130 to 260
C
Symbol
I
CBO
I
EBO
V
CEO
h
FE1
*
h
FE2
V
CE(sat)
V
BE(sat)
f
T
t
on
t
stg
t
f
=25˚C)
Conditions
VCB = 100V, IE = 0 VEB = 5V, IC = 0
IC = 10mA, IB = 0
VCE = 2V, IC = 0.1A VCE = 2V, IC = 3A IC = 5A, IB = 0.25A IC = 5A, IB = 0.25A VCE = 10V, IC = 0.5A, f = 10MHz
IC = 3A, IB1 = 0.3A, IB2 = – 0.3A, VCC = 50V
min
80
100
45 90
typ
30
0.5
1.5
0.1
max
10 50
260
0.5
1.5
Unit
µA µA
V
V V
MHz
µs µs µs
1
Po wer Transistors 2SD1747, 2SD1747A
PC—Ta IC—V
20
) W
(
C
15
10
5
Collector power dissipation P
0
0 16040 12080 14020 10060
Ambient temperature Ta (˚C
)
100
V
(
30
CE(sat)
10
3
1
0.3
0.1
0.03
0.01
Collector to emitter saturation voltage V
0.01 0.1 1 100.03 0.3 3
Collector current IC (A
(1) TC=Ta (2) Without heat sink
(1)
(2)
V
CE(sat)—IC
(P
=1.3W)
C
)
IC/IB=20
TC=100˚C 25˚C
–25˚C
)
CE
10
8
) A
(
C
6
4
Collector current I
2
0
012108264
TC=25˚C
IB=55mA
50mA 45mA
40mA
35mA
30mA
20mA 15mA 10mA
5mA
Collector to emitter voltage VCE (V
V
BE(sat)—IC
) V
(
10
BE(sat)
3
1
0.3
0.1
0.03
Base to emitter saturation voltage V
0.01
0.1 301010.3 3
Collector current IC (A
(1) IC/IB=10 (2) I
C/IB
T
=25˚C
C
)
(1) (2)
=20
V
) V
(
10
CE(sat)
3
1
0.3
0.1
0.03
0.01
Collector to emitter saturation voltage V
0.1 301010.3 3
)
100
) V
(
30
BE(sat)
10
3
1
0.3
0.1
0.03
Base to emitter saturation voltage V
0.01
0.01 0.1 1 100.03 0.3 3
CE(sat)—IC
Collector current IC (A
V
BE(sat)—IC
TC=–25˚C
100˚C
25˚C
Collector current IC (A
(1) IC/IB=10
=20
(2) I
C/IB
T
=25˚C
C
(2)
(1)
)
IC/IB=20
)
hFE—I
10000
3000
FE
1000
300
TC=100˚C
25˚C
100
Forward current transfer ratio h
–25˚C
30
10
3
1
0.01 0.1 1 100.03 0.3 3
Collector current IC (A
2
C
VCE=2V
10000
3000
) MHz
1000
(
T
300
100
30
10
Transition frequency f
3
1
0.01 0.1 1 100.03 0.3 3
)
fT — I
C
VCE=10V f=10MHz T
C
Collector current IC (A
=25˚C
10000
) pF
3000
(
ob
1000
300
100
30
10
3
Collector output capacitance C
1
)
Cob—V
0.1 1 10 1000.3 3 30
CB
IE=0 f=1MHz
=25˚C
T
C
Collector to base voltage VCB (V
)
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