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 BC 846S NPN Silicon AF Transistor Array
Preliminary data * For AF input stages and driver applications * High current gain * Low collector-emitter saturation voltage * Two (galvanic) internal isolated Transistors in one package
Type BC 846S
Marking Ordering Code 1Ds Q62702-
Pin Configuration
Package
1/4=E1/E2 2/5=B1/B2 3/6=C2/C1 SOT-363
Maximum Ratings Parameter Collector-emitter voltage Collector-base voltage Collector-emitter voltage Emitter-base voltage DC collector current Peak collector current Total power dissipation, TS = 115C Junction temperature Storage temperature Thermal Resistance Junction ambient
1)
Symbol
Values 65 80 80 6 100 200 250 150 - 65 ... + 150
Unit V
VCEO VCBO VCES VEBO IC ICM Ptot Tj Tstg
mA mW C
RthJA RthJS
275 140
K/W
Junction - soldering point
1) Package mounted on pcb 40mm x 40mm x 1.5mm / 0.5cm2 Cu
Semiconductor Group
1
Nov-27-1996
BC 846S
Electrical Characteristics at TA=25C, unless otherwise specified Parameter Symbol min. DC Characteristics per Transistor Collector-emitter breakdown voltage Values typ. max. Unit
V(BR)CEO
65 140 220 90 200 700 900 660 15 5 450
V
IC = 10 mA, IB = 0
Collector-base breakdown voltage
V(BR)CBO
80
IC = 10 A, IB = 0
Collector-emitter breakdown voltage
V(BR)CES
80
IC = 10 A, VBE = 0
Base-emitter breakdown voltage
V(BR)EBO
6
IE = 10 A, IC = 0
Collector cutoff current
ICBO
nA A 110
VCB = 30 V, IE = 0 , TA = 25 C VCB = 30 V, IE = 0 , TA = 150 C
DC current gain
hFE
IC = 10 A, VCE = 5 V IC = 2 mA, VCE = 5 V
Collector-emitter saturation voltage 1)
VCEsat
250 650 700 770
mV
IC = 10 mA, IB = 0.5 mA IC = 100 mA, IB = 5 mA
Base-emitter saturation voltage 1)
VBEsat
-
IC = 10 mA, IB = 0.5 mA IC = 100 mA, IB = 5 mA
Base-emitter voltage
VBE
580 -
IC = 10 mA, VCE = 5 V 1) Pulse test: t < 300s; D < 2%
Semiconductor Group
2
Nov-27-1996
BC 846S
Electrical Characteristics at TA=25C, unless otherwise specified Parameter Symbol min. AC Characteristics per Transistor Transition frequency Values typ. max. Unit
fT
250 2 10 4.5 2 330 30 -
MHz pF k 10-4 S -
IC = 20 mA, VCE = 5 V, f = 100 MHz
Collector-base capacitance
Ccb Ceb
-
VCB = 10 V, f = 1 MHz
Emitter-base capacitance
VEB = 0.5 V, f = 1 MHz
Short-circuit input impedance
h11e
IC = 2 mA, VCE = 5 V, f = 1 kHz
Open-circuit reverse voltage transfer ratio h12e IC = 2 mA, VCE = 5 V, f = 1 kHz Short-circuit forward current transfer ratio h21e IC = 2 mA, VCE = 5 V, f = 1 kHz Open-circuit output admittance h22e
IC = 2 mA, VCE = 5 V, f = 1 kHz
Semiconductor Group
3
Nov-27-1996
BC 846S
Total power dissipation Ptot = f (TA*;TS) * Package mounted on epoxy
300
mW
Ptot
200
TS
TA
150
100
50
0 0 20 40 60 80 100 120 C 150 TA ,TS
Permissible Pulse Load RthJS = f(tp)
Permissible Pulse Load Ptotmax / PtotDC = f(tp)
10 3
10 3
K/W -
RthJS
10 2
Ptotmax/PtotDC
10 2 D=0 0.005 0.01 0.02 0.05 0.1 0.2 0.5
10 1 0.5 0.2 0.1 0.05 0.02 0.01 0.005 D=0
10 1
10 0
10 -1 -6 10
10
-5
10
-4
10
-3
10
-2
10 s 10 tp
-1
0
10 0 -6 10
10
-5
10
-4
10
-3
10
-2
10 s 10 tp
-1
0
Semiconductor Group
4
Nov-27-1996
BC 846S
Transition frequency fT = f (IC) VCE = 5V
Collector-base capacitance CCBO = f (VCBO) Emitter-base capacitance CEBO = f (VEBO)
Collectot cutoff current ICBO = f (TA) VCB = 30V
Collector-emitter saturation voltage IC = f (VCEsat), hFE = 20
Semiconductor Group
5
Nov-27-1996
BC 846S
DC current gain hFE = f (IC) VCE = 5V
Base-emitter saturation voltage IC = f (VBEsat), hFE = 20
Semiconductor Group
6
Nov-27-1996


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