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BFP650E6327AN/a2262avaiNPN Silicon Germanium RF Transistor


BFP650E6327 ,NPN Silicon Germanium RF TransistorBFP650NPN Silicon Germanium RF Transistor3Preliminary data4

BFP650E6327
NPN Silicon Germanium RF Transistor
BFP650
NPN Silicon Germanium RF Transistor

Preliminary data For high power amplifiers Ideal for low phase noise oscilators Maxim. available Gain Gma = 21 dB at 1.8 GHz
Noise figure F = 0.9 dB at 1.8 GHz Gold metallization for high reliability 70 GHz fT- Silicon Germanium technology
ESD: Electrostatic discharge sensitive device, observe handling precaution!
Maximum Ratings
Thermal Resistance
TS is measured on the collector lead at the soldering point to the pcbFor calculation of RthJA please refer to Application Note Thermal Resistance
BFP650
Electrical Characteristics at T
A = 25°C, unless otherwise specified
DC Characteristics
BFP650
AC Characteristics (verified by random sampling)
Gma = |S21 / S12| (k-(k²-1)1/2)IP3 value depends on termination of all intermodulation frequency components.
Termination used for this measurement is 50 from 0.1 MHz to 6 GHz
BFP650
SPICE Parameter (Gummel-Poon Model, Berkley-SPICE 2G.6 Syntax):
Transitor Chip Data:

All parameters are ready to use, no scalling is necessary. Extracted on behalf of Infineon Technologies AG by:
Institut für Mobil- und Satellitentechnik (IMST)
Package Equivalent Circuit:�

������������������������������������ ����������������!��������"���LBC =50pH
LCC =50pH
LEC =4pH
LBB =554.6pH
LCB =606.9pH
LEB =138.7pH
CBEC =327.6fF
CBCC =171.4fF
CES =490fF
CBS =120fF
CCS =135fF
CBCO =7.5fF
CCEO =112.6fF
CBEO =121.5fF
CCEI =5.7fF
CBEI =6.9-
RBS =710-
RCS =710-
For examples and ready to use parameters
please contact your local Infineon Technologies
distributor or sales office to obtain a Infineon
Technologies CD-ROM or see Internet:
http//www.infineon.com/silicondiscretes
BFP650
Total power dissipation P
tot = (TS)
50
100
150
200
250
300
350
400
450
550
tot
Permissible Pulse Load R
thJS = (tp)
10 0 10 10 10 10
thJS
Permissible Pulse Load
totmax/PtotDC = (tp)
10 0 10 10 10
totmax
totDC
Collector-base capacitance C
cb= (VCB)
f = 1MHz
0.1
0.2
0.3
0.4
0.5
0.6
0.8
BFP650
Transition frequency f
T= (IC)
f = 1GHzCE = parameter in V
10
15
20
25
30
40
Power gain G
ma, Gms = (IC)CE = 3V
f = parameter in GHz
10
12
14
16
18
20
22
24
26
30
Power Gain G
ma, Gms = (f),21|² = f (f)CE = 3V, IC = 80mA
10
15
20
25
30
35
40
45
55
Power gain G
ma, Gms = (VCE)C = 80mA
f = parameter in GHz
10
15
20
30
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