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PDF MPSA56 Data sheet ( Hoja de datos )

Número de pieza MPSA56
Descripción (MPSA05 - MPSA56) Amplifier Transistors
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No Preview Available ! MPSA56 Hoja de datos, Descripción, Manual

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MPSA05, MPSA06, MPSA55,
MPSA56
MPSA06 and MPSA56 are Preferred Devices
Amplifier Transistors
Voltage and Current are Negative
for PNP Transistors
NPN
COLLECTOR
3
2
BASE
1
EMITTER
STYLE 1
MPSA05, MPSA06
PNP
COLLECTOR
3
2
BASE
1
EMITTER
STYLE 1
MPSA55, MPSA56
http://onsemi.com
NPN
MPSA05, MPSA06
PNP
MPSA55, MPSA56
TO−92
CASE 29
STYLE 1
MARKING DIAGRAM
MPS
Axxx
YWW
MAXIMUM RATINGS
Rating
Symbol
Value
Unit
Collector −Emitter Voltage
MPSA05, MPSA55
MPSA06, MPSA56
VCEO
D6a0taSheeVt4dUc .com
80
Collector −Base Voltage
MPSA05, MPSA55
MPSA06, MPSA56
VCBO
Vdc
60
80
Emitter −Base Voltage
Collector Current − Continuous
Total Device Dissipation
@ TA = 25°C
Derate above 25°C
VEBO
IC
PD
4.0 Vdc
500 mAdc
625 mW
5.0 mW/°C
Total Device Dissipation
@ TC = 25°C
Derate above 25°C
Operating and Storage Junction
Temperature Range
PD
TJ, Tstg
1.5
12
−55 to
+150
Watts
mW/°C
°C
THERMAL CHARACTERISTICS
Characteristic
Symbol Max Unit
Thermal Resistance,
Junction to Ambient
RθJA
200 °C/W
(Note 1.)
Thermal Resistance,
Junction to Case
RθJC
83.3 °C/W
1. RqJA is measured with the device soldered into a typical printed circuit board.
1
23
MPSA
xxx
Y
WW
= Specific Device Code
= 05, 06, 55 or 56
= Year
= Work Week
ORDERING INFORMATION
Device
Package
Shipping
MPSA05
TO−92
5000 Units/Box
MPSA05RLRA
TO−92 2000/Tape & Reel
MPSA05RLRM
TO−92 2000/Ammo Pack
MPSA06
TO−92
5000 Units/Box
MPSA06RLRA
TO−92 2000/Tape & Reel
MPSA06RLRM
TO−92 2000/Ammo Pack
MPSA06RLRP
TO−92 2000/Ammo Pack
MPSA55
TO−92
5000 Units/Box
MPSA55RLRA
TO−92 2000/Tape & Reel
MPSA56
TO−92
5000 Units/Box
MPSA56RLRA
TO−92 2000/Tape & Reel
MPSA56RLRM
TO−92 2000/Ammo Pack
MPSA56RLRP
TO−92 2000/Ammo Pack
DataShee
DataSheet4U.com
© Semiconductor Components Industries, LLC, 2001
October, 2001 − Rev. 1
DataSheet4 U .com
Preferred devices are recommended choices for future use
and best overall value.
1 Publication Order Number:
MPSA05/D
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MPSA56 pdf
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1.0
0.8
IC =
50 mA
0.6
MPSA05, MPSA06, MPSA55, MPSA56
NPN
IC =
100 mA
TJ = 25°C
IC =
250 mA
IC =
500 mA
−1.0
−0.8
IC =
−50 mA
−0.6
PNP
TJ = 25°C
IC = IC = IC =
−100 mA −250 mA −500 mA
0.4
IC =
0.2 10 mA
0
0.05 0.1 0.2
0.5 1.0 2.0 5.0
IB, BASE CURRENT (mA)
10 20
50
Figure 14. MPSA05/06 Collector Saturation
Region
−0.4
IC =
−0.2 −10 mA
0
−0.05 −0.1 −0.2
−0.5 −1.0 −2.0 −5.0 −10 −20
IB, BASE CURRENT (mA)
−50
Figure 15. MPSA55/56 Collector Saturation
Region
et4U.com
−0.8 −0.8
−1.2 −1.2
−1.6 −1.6
−2.0 RqVB for VBE
−2.4
DataSheet4U.2c.0om
−2.4
RqVB for VBE
−2.8
0.5
1.0 2.0 5.0 10 20 50 100 200
IC, COLLECTOR CURRENT (mA)
Figure 16. MPSA05/06 Base−Emitter
Temperature Coefficient
500
−2.8
−0.5 −1.0 −2.0 −5.0 −10 −20 −50 −100 −200
IC, COLLECTOR CURRENT (mA)
−500
Figure 17. MPSA55/56 Base−Emitter
Temperature Coefficient
DataShee
1.0
0.7 D = 0.5
0.5
0.3 0.2
0.2 0.1
0.05
0.1
0.07 SINGLE PULSE
0.05
0.03
0.02
0.02 0.01
SINGLE PULSE
0.01
1.0 2.0
5.0 10
20
P(pk)
t1
t2
DUTY CYCLE, D = t1/t2
ZθJC(t) = r(t) RθJC
TJ(pk) − TC = P(pk) ZθJC(t)
ZθJA(t) = r(t) RθJA
TJ(pk) − TA = P(pk) ZθJA(t)
D CURVES APPLY FOR
POWER PULSE TRAIN
SHOWN READ TIME AT t1
(SEE AN469)
50 100 200
500 1.0 k 2.0 k
5.0 k 10 k 20 k
50 k 100 k
t, TIME (ms)
DataSheet4U.com
Figure 18. MPSA05, MPSA06, MPSA55 and MPSA56 Thermal Response
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http://onsemi.com
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