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參數(shù)資料
型號: AD8307AR
廠商: ANALOG DEVICES INC
元件分類: 運(yùn)動控制電子
英文描述: Low Cost DC-500 MHz, 92 dB Logarithmic Amplifier
中文描述: LOG OR ANTILOG AMPLIFIER, 490 MHz BAND WIDTH, PDSO8
封裝: MS-012AA, SOIC-8
文件頁數(shù): 18/20頁
文件大小: 394K
代理商: AD8307AR
AD8307
–18–
REV. A
T he intercept can be raised, for example, to 100
μ
V, with the
rationale that the dc precision does not warrant operation in the
first decade (from 10
μ
V–100
μ
V). Likewise, the slope can be
raised to 50 mV/dB, using R7 = 3 k
, R8 = 2 k
, or to 100 mV/
dB, to simplify decibel measurements on a DVM, using R7 =
8 k
, R8 = 2 k
, which raises the maximum output to +11 V,
thus requiring a +15 V supply for the AD830. T he output may
be made to swing in a negative direction by simply reversing
Pins 1 and 2. Low-pass filtering capacitor C3 sets the output
rise time to about 1 ms.
V
IN
6.0
10
V
O
100
m
1m
10m
100m
5.5
5.0
4.5
4.0
3.5
3.0
2.5
2.0
1.5
1.0
0.5
0
10
m
1
E
1.0
0.5
0
–0.5
–1.0
Figure 44. Ideal Output and Law-Conformance Error for
the DC-Coupled AD8307 at 50 mV/dB
Figure 44 shows the output and the law-conformance error in
the absence of noise and input offset, for the 50 mV/dB option.
Note in passing that the error ripple for dc excitation is about
twice that for the more usual sinusoidal excitation. In practice,
both the noise and the internal offset voltage will degrade the
accuracy in the first decade of the dynamic range. T he latter is
now manually nulled, by VR1, using a simple method that en-
sures very low residual offsets.
A temporary ac signal, typically a sine wave of 100 mV in ampli-
tude at a frequency of about 100 Hz, is applied via the capacitor
at node T EMP; this has the effect of disturbing the offset-nulling
voltage. T he output voltage is then viewed on an oscilloscope
and VR1 is adjusted until the peaks of the (frequency-doubled)
waveform are exactly equal in amplitude. T his procedure can
provide an input null down to about 10
μ
V; the temperature
drift is very low, though not specified since the AD8307 is not
principally designed to operate as a baseband log amp, and in ac
modes this offset is continuously and automatically nulled.
Next, it is necessary to set the intercept. T his is the purpose of
VR2, which should be adjusted
after
VR1. T he simplest method
is to short the input and adjust VR2 for an output of 0.3 V,
corresponding to the noise floor. For more exacting applica-
tions, a temporary sinusoidal test voltage of 1 mV in amplitude,
at about 1 MHz, should be applied, which may require the use
of a temporary onboard input attenuator. For 20 mV/dB scaling,
a 10
μ
V dc intercept (which is 6 dB below the ac intercept)
requires adjusting the output to 0.68 V; for the 100 mV/dB
scaling, this becomes 3.4 V. If a 100
μ
V intercept is preferred
(usefully lowering the maximum output voltage), these become
0.28 V and 1.4 V respectively.
Finally, the slope must be adjusted. T his can be performed by
applying a low frequency square wave to the main input, having
precisely determined upper and lower voltage levels, provided
by a programmable waveform generator. A suitable choice is a
100 Hz square wave with levels of 10 mV and 1 V. T he output
will be a low-pass filtered square wave, and its amplitude should
be 0.8 V, for 20 mV/dB scaling, or 4 V for 100 mV/dB scaling.
Operation Above 500 MHz
T he AD8307 is not intended for use above 500 MHz. However,
it does provide useful performance at higher frequencies.
Figure 45 shows a plot of the logarithmic output of the AD8307
for an input frequency of 900 MHz. T he device shows good
logarithmic conformance from –50 dBm to –10 dBm. T here is a
“bump” in the transfer function at –5 dBm, but if this is accept-
able, the device is usable over a 60 dB dynamic range (–50 dBm
to +10 dBm).
P
IN
– dBm
2
1.8
0
–60
V
O
–40
–20
0
1.6
1.4
1.2
0.2
–50
–30
–10
10
0.4
0.6
0.8
1
Figure 45. Output vs. Input Level for a 900 MHz Input Signal
E valuation Board
An evaluation board, carefully laid out and tested to demon-
strate the specified high speed performance of the AD8307 is
available. Figure 46 shows the schematic of the evaluation board.
For ordering information, please refer to the Ordering Guide.
Figures 47 and 49 show the component-side and solder-side
silkscreens of the evaluation board. T he component-side and
solder-side layouts are shown in Figures 48 and 50.
For connection to external instruments, side-launched SMA
type connectors are provided. Space is also provided on the
board for the installation of SMB or SMC type connectors.
When using the top-mount SMA connector, it is recommended
that the stripline on the outside 1/8" of the board edge be re-
moved (i.e., scraped using a blade) as this unused stripline acts
as an open stub, which could degrade the overall performance of
the evaluation board/device combination at high frequencies.
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