參數(shù)資料
型號: EVB3030A
英文描述: W3030 3 V Dual-Mode IF Cellular Receiver
中文描述: W3030 3伏雙模蜂窩接收機(jī)中頻
文件頁數(shù): 4/22頁
文件大小: 429K
代理商: EVB3030A
Data Sheet
W3030 3 V Dual-Mode IF Cellular Receiver
April 1999
Lucent Technologies Inc.
12
Quadrature Detector (continued)
40 k
dc
R
150 pF
18 pF
4 pF—25 pF
680
F
QUAD
0.1
F
PIN 3
Figure 5. L/C Tank Equivalent Circuit
(
) (
)
f
LC
1
2
1
2
680 6
184 10
450
10
12
=
π
*
kHz
Equation (1)
(
) (
)
(
) (
)
4
.
9
10
*
184
*
10
*
33
10
*
40
10
*
33
*
10
*
40
*
10
*
450
*
2
RC
*
f
*
2
Q
12
3
=
+
π
=
π
=
Equation (2)
The W3030 evaluation board is designed with a 450 kHz IF frequency, as shown in our example. The Q of the
tank circuit is set to 10 by the external resistor.
Quad Tank S-Curves
One method of determining if the Q of the tank is too large or too small is to produce an S-curve of the quad
tank. An S-curve is a plot of the dc audio output voltage versus IF input frequency. With small deviations from
center frequency, there is a proportional change in the dc audio output voltage. The overall linearity of the curve
is determined by the Q of the tank circuit; therefore, the Q determines how much deviation is allowed before
distortion of the audio signal occurs. The L/C tank circuit has a shunt resistor to set the Q of the tank. The
procedure to produce these plots is as follows:
1. Remove the 450 kHz IF filter and drive the input of the limiting amplifier with a signal generator capable of
FM modulation.
2. Apply FM modulation and adjust the tank capacitor for maximum audio out and minimal distortion.
3. Remove the FM modulation and sweep the IF frequency above and below center frequency while monitoring
the dc voltage at the audio output.
The following S-curves were produced with the value of the quad tank resistor varied from 18 k
, to 30 k, to
removing the resistor. The resistor value of 33 k
, which corresponds to a Q of 10, was chosen as the optimal
resistor value.
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