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BFR360FSIEMENSN/a445avaiRF-Bipolar
BFR360FINFINEONN/a50000avaiRF-Bipolar


BFR360F ,RF-BipolarBFR360FNPN Silicon RF TransistorPreliminary data

BFR360F
RF-Bipolar
NPN Silicon RF Transistor
Preliminary data Low voltage/ low current operation For low noise amplifiers For Oscillators up to 3.5 GHz and Pout > 10 dBm Low noise figure: 1.0 dB at 1.8 GHz
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
BFR360F
Characteristics
BFR360F
AC Characteristics (verified by random sampling)
Gma = |S21e / S12e| (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
BFR360F
SPICE Parameter (Gummel-Poon Model, Berkley-SPICE 2G.6 Syntax):
Transitor Chip Data:

NF =1-
ISE =150fA
NR =1-
ISC =20fA
IRB =75µA
RC =0.35-
MJE =0.5-
VTF =0.198V
CJC =473fF
XCJC =0.129-
VJS =0.75V
EG =1.11eV
NK =0.5K
IS =0.0689fA
VAF =20V
NE = 2.4-
VAR =60V
NC =1.4-
RBM =7.31-
CJE =400fF
TF =9.219ps
ITF =1.336mA
VJC =0.864V
TR =1.92ns
MJS =0-
XTI =0-
AF =1-
BF =147-
IKF =77.28mA
BR =6-
IKR =0.3A
RB =0.1-
RE =78.2m
VJE =1.3V
XTF =0.115-
PTF =0deg
MJC =0.486-
CJS =0fF
XTB =0.5K
FC =0.954
KF =1E-14-
All parameters are ready to use, no scalling is necessary.
Package Equivalent Circuit:
1 =0.556nH2 =0.657nH3 =0.381nH1 =43fF2 =123fF3 =66fF4 =10fF5 =36fF47fF
EHA07524CC
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
Valid up to 6GHz
BFR360F
Total power dissipation P
tot = (TS)
30
60
90
120
150
180
240
tot
Permissible Pulse Load R
thJS = (tp)
10 0 10 10 10
thJS
Permissible Pulse Load
totmax/PtotDC = (tp)
10 0 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
BFR360F
Third order Intercept Point IP
3=(IC)
(Output, ZS=ZL=50)CE = parameter, f = 1.8GHz
-5
10
15
20
30
Transition frequency f
T= (IC)
f = 1GHzCE = parameter
10
12
14
17
Power gain G
ma, Gms = (IC)
f = 0.9GHzCE = parameter
12
13
14
15
16
17
18
19
20
21
22
24
Power gain G
ma, Gms = (IC)
f = 1.8GHzCE = parameter
10
12
14
18
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