參數(shù)資料
型號: TQ3132
廠商: TRIQUINT SEMICONDUCTOR INC
元件分類: 衰減器
英文描述: Low Current, 3V Cellular Band CDMA/AMPS LNA IC
中文描述: RF/MICROWAVE WIDE BAND LOW POWER AMPLIFIER
封裝: SOT-23, 8 PIN
文件頁數(shù): 7/10頁
文件大?。?/td> 88K
代理商: TQ3132
TQ3132
Data Sheet
For additional information and latest specifications, see our website:
www.triquint.com
7
Table 1. TQ3132 Control lines C2, C3
TQ3132 LNA Mode
C2
C3
CDMA
High Gain (HG)
0
1
0
0
Bypassed
1
1
AMPS
0
1
Gain Control via Pin 4 Inductance
The source connection of the LNA cascode is brought out
separately through pin 4. This allows external degeneration of
the cascode by adding a small amount of PC board trace
inductance to pin 4. Thus some increase in IIP3 can be made
while reducing LNA gain. The total amount of inductance
present at the source of the cascode is equal to the bond wire
plus package plus external inductances. One should generally
use an external inductance such that gain in the High Gain
mode = 13.5dB. On the evaluation board the total PCB trace
inductance at pin 4 is approximately 2.57nH. In order to achieve
the desire gain, this board inductor should be shorted half way
of its total length which is equivalent to about 1.55nH.
Board Layout Recommendations
All ground pins should be kept close to the IC and have its own
via to the ground plane to mnimze inductance. Most PC boards
for portable applications have thin dielectric layers and very
narrow line width which increase the board parasitic capacitance
and inductance. To mnimze these effects when implementing a
matching network, it is recommended to relieve the ground
underneath pads carrying RF signals whenever possible.
RF input power levels for accurate test results
Because the CDMA devices have a number of gain states, it
important to make sure that IP3 measurements are not taken in
a state of compression. Additionally, using too low of a power
puts the IMD products too close to the noise floor for accurate
results. Additionally, the LNA in the bypass mode have OIP3 of
around 30dBm which is higher than the IIP3 of common
spectrumanalyzers in their preset configuration. We have
found that setting the spectrumanalyzer attenuator to 20dB
allows for accurate measurement in that mode, and in all the
other modes.
TQ3132 Noise and S-Parameters Data
The following noise and S-parameter data was obtained using
TriQuint’s evaluation board. This information is intended to be
used as a guide to synthesize the LNA tuning network and find a
compromse between noise figure and gain for all modes.
Table 2. Gamma Opt analysis for TQ3132 High Gain Mode
Freq
(MHz)
Γ
Opt
< Angle
Fmn
(dB)
R noise
700
0.53
32.8
1.1
24.15
880
0.52
41.5
1.0
19.03
1000
0.49
42.6
1.1
17.98
Table 3. Gamma Opt analysis for TQ3132 AMPS Mode
Freq
(MHz)
Γ
Opt
< Angle
Fmn
(dB)
R noise
700
0.62
33.5
1.3
33.5
880
0.56
40.2
1.2
26.4
1000
0.53
41.9
1.3
25.1
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