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LMV232TL/NOPB bảng dữ liệu(PDF) 9 Page - Texas Instruments

tên linh kiện LMV232TL/NOPB
Giải thích chi tiết về linh kiện  LMV232 Dual-Channel Integrated Mean Square Power Detector for CDMA & WCDMA
PDF  19 Pages
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nhà sản xuất  TI2 [Texas Instruments]
Trang chủ  https://www.ti.com
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LMV232TL/NOPB bảng dữ liệu(HTML) 9 Page - Texas Instruments

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PA1
ANTENNA
RFIN1
LMV232
RF
INPUT
OUT
R1
6.2 k:
RFIN2
PA2
RF
INPUT
FB
BS
SD
VDD
GND
A3
B3
C1
B1
A1
C3
C2
A2
R3
50:
C1
1.5 nF
COUPLER
COUPLER
TO BASEBAND
R2
50:
LMV232
www.ti.com
SNWS017C – DECEMBER 2004 – REVISED MARCH 2013
Figure 21. Typical Application
The detection curves of Figure 22 show the detector response to RF input power. To show the complete dynamic
range on a logarithmic scale, the pedestal voltage (VPEDESTAL) is subtracted from the output. The pedestal
voltage is defined as the output voltage in the absence of an RF input signal (at 25°C). The best-fit ideal mean
square response is represented by the fitted curve in Figure 22. The input referred error of the detection curves
with respect to this best-fit mean square response is determined as follows:
•
Determine the best-fit mean square response.
•
Determine the output referred error between the actual detector response and the ideal mean square
response.
•
Translate the output referred error to an input referred error.
Figure 22. Detection Curve
The best-fit linear curve is obtained from the detector response by means of linear regression. The output
referred error is calculated with the formula:
ErrordBV = 20*log[ (VOUT-VPEDESTAL)/(KDET*PIN) ]
Where,
Conversion gain of the ideal fitted curve KDET is in V/mW and the RF input power PIN in mW.
To translate this output referred error (in dB) to an input referred error, it has to be divided by a factor of 2. This
is due to the mean square characteristic of the device. The response of a mean square detector changes by 2
dB for every dB change of the input power. Figure 23 depicts the resulting curve.
Copyright © 2004–2013, Texas Instruments Incorporated
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