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UAA2077TS-D View Datasheet(PDF) - Philips Electronics

Part Name
Description
View to exact match
UAA2077TS-D
Philips
Philips Electronics Philips
UAA2077TS-D Datasheet PDF : 16 Pages
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Philips Semiconductors
2 GHz image rejecting front-end
Preliminary specification
UAA2077TS
AC CHARACTERISTICS
VCC = 2.8 V; Tamb = 25 °C; fo(RX) = 200 MHz; unless otherwise specified.
SYMBOL
PARAMETER
CONDITIONS
MIN. TYP. MAX.
UNIT
Receive section (receive section enabled): DCS mode
Ri(RX)
Ci(RX)
fi(RX)
RLi(RX)
GCP(RX)
Grip
G/T
CP1RX
DES3
IP3RX
NFRX
ZL(RX)
RLo(RX)
fo(RX)
IR
RF input resistance (real part of balanced; at 1845 MHz
the parallel input impedance)
50
RF input capacitance (imaginary balanced; at 1845 MHz
part of the parallel input
impedance)
0.5
pF
RF input frequency
1805
1880 MHz
return loss on matched RF input balanced; note 1
10 15
dB
conversion power gain
RF inputs to IF outputs; note 1 20 23 26 dB
gain ripple as a function of RF over DCS frequency range;
frequency
note 1
1 1.5 dB/100 MHz
gain variation with temperature
60 30
mdB/K
1 dB compression point
referenced to RF input; note 1 23.5 20
dBm
input referred
3 dB desensitisation
interferer frequency offset is
3 MHz; useful signal is
101 dBm; note 1
25
dBm
3rd order intercept point
referenced to RF input; note 1 15 12
dBm
overall noise figure
RF inputs to IF outputs; note 1
normal case
3.5 4.2 dB
worse case for LO input, power
and VCC
typical application IF output load balanced; note 1
impedance
4.4 dB
1000
return loss on matched IF output note 1
10 15
dB
IF frequency range
rejection of image frequency
fRF > fLO
fRF > fLO; fRF is the frequency of 30
the wanted signal; note 1
200
38
MHz
dB
Receive section (receive section enabled): PCS mode
Ri(RX)
Ci(RX)
fi(RX)
RLi(RX)
GCP(RX)
Grip
G/T
CP1RX
RF input resistance (real part of balanced; at 1960 MHz
the parallel input impedance)
RF input capacitance (imaginary balanced; at 1960 MHz
part of the parallel input
impedance)
RF input frequency
return loss on matched RF input balanced; note 1
conversion power gain
RF inputs to IF outputs; note 1
gain ripple as a function of
RF frequency
over PCS frequency range;
note 1
gain variation with temperature
1 dB compression point
referenced to RF input; note 1
tbf
tbf
pF
1930
10 15
22
1
1 990
MHz
dB
dB
dB/100 MHz
30
mdB/K
20
dBm
2000 Apr 17
7
 

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