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BCR 22PN E6327 -BCR22PN E6327-BCR22PN E6327-BCR22PN E6327 -BCR22PNE6327 Fast Delivery,Good Price
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BCR 22PN E6327 |BCR22PNE6327SIEMENSN/a2582avaiDigital Transistors
BCR22PNE6327INFINEONN/a6000avaiDigital Transistors
BCR22PN E6327 |BCR22PNE6327INFINEONN/a12000avaiDigital Transistors
BCR22PN E6327 |BCR22PNE6327INFINEONN/a12000avaiDigital Transistors
BCR22PN E6327 |BCR22PNE6327SIEMENSN/a2582avaiDigital Transistors


BCR22PN E6327 ,Digital TransistorsCharacteristics at T =25°C, unless otherwise specifiedAParameter Symbol Values Unitmin. typ. max.DC
BCR22PN E6327 ,Digital TransistorsBCR22PNNPN/PNP Silicon Digital Transistor Array 45

BCR 22PN E6327 -BCR22PN E6327-BCR22PN E6327-BCR22PN E6327 -BCR22PNE6327
Digital Transistors
BCR22PN
NPN/PNP Silicon Digital Transistor Array
Switching circuit, inverter, interface circuit,
driver circuit Two (galvanic) internal isolated NPN/PNP
Transistors in one package Built in bias resistor (R1=22k, R2=22k)
Tape loading orientation

EHA07193356
Direction of Unreeling
Top ViewMarking on SOT-363 package
(for example W1s)
corresponds to pin 1 of device
EHA0717621E2B1E1R
TR1
TR2
Maximum Ratings
Thermal Resistance
For calculation of RthJA please refer to Application Note Thermal Resistance
BCR22PN
Electrical Characteristics at T
A=25°C, unless otherwise specified
DC Characteristics
AC Characteristics
BCR22PN
NPN Type
DC Current Gain h
FE = f (IC) CE = 5V (common emitter configuration) 2 10 10 10 10
Collector-Emitter Saturation Voltage
CEsat = f (IC), hFE = 20
0.010 10 10
Input on Voltage V
i(on) = f (IC) CE = 0.3V (common emitter configuration)
10 2
-1 10 10 10 10
Input off voltage V
i(off) = f (IC) CE = 5V (common emitter configuration)
-3 10
-2 10
-1 10 10 10
BCR22PN
PNP Type
Collector-Emitter Saturation Voltage
CEsat = f (IC), hFE = 20
0.010 10 10
DC Current Gain h
FE = f (IC) CE = 5V (common emitter configuration) 2 10 10 10 10
Input off voltage V
i(off) = f (IC)CE = 5V (common emitter configuration)
-2 10
-1 10 10 10
Input on Voltage V
i(on) = f (IC) CE = 0.3V (common emitter configuration)
10 2
-1 10 10 10 10
BCR22PN
Total power dissipation P
tot = f (TS)
50
100
150
200
300
tot
Permissible Pulse Load R
thJS = f (tp)
10 0
-1 10 10 10 10 10
thJS
Permissible Pulse Load
totmax / PtotDC = f (tp) 0 10 10 10 10
totmax
/ P
totDC
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