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AD9670EBZ Datasheet(PDF) 23 Page - Analog Devices

Part # AD9670EBZ
Description  Octal Ultrasound Analog Front End
PDF  48 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD9670EBZ Datasheet(HTML) 23 Page - Analog Devices

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AD9674
Data Sheet
Rev. A | Page 22 of 47
Table 9 lists the recommended values for RFB and CSH in terms
of RIN. CFB is needed in series with RFB because the dc levels at the
LO-x pin and the LI-x pin are unequal.
Table 9. Active Termination External Component Values
LNA Gain (dB)
RIN (Ω)
RFB (Ω)
Minimum CSH (pF)
15.6
50
150
90
17.9
50
200
70
21.6
50
300
50
15.6
100
350
30
17.9
100
450
20
21.6
100
650
10
15.6
200
750
Not applicable
17.9
200
950
Not applicable
21.6
200
1350
Not applicable
LNA Noise
The short-circuit noise voltage (input referred noise) is an important
limit on system performance. The short-circuit noise voltage for
the LNA is 0.78 nV/√Hz at a gain of 21.6 dB, including the VGA
noise at a VGA postamplifier gain of 27 dB. These measurements,
which were taken without a feedback resistor, provide the basis for
calculating the input noise and noise figure (NF) performance.
Figure 35 and Figure 36 are simulations of noise figure vs. RS results
with different input configurations and an input referred noise
voltage of 2.5 nV/√Hz for the VGA. The unterminated (RFB = ∞)
operation exhibits the lowest equivalent input noise and noise
figure. Figure 36 shows the noise figure vs. the source resistance
rising at low RS, where the LNA voltage noise is large compared
with the source noise, and at high RS due to the noise contribution
from RFB. The lowest NF is achieved when RS matches RIN.
Figure 35 shows the relative noise figure performance. With an LNA
gain of 21.6 dB, the input impedance is swept with RS to preserve
the match at each point. The noise figures for a source impedance
of 50 Ω are 7 dB, 4 dB, and 2.5 dB for the shunt termination, active
termination, and unterminated configurations, respectively. The
noise figures for 200 Ω are 4.5 dB, 1.7 dB, and 1 dB, respectively.
10
100
1k
0
1.5
3.0
4.5
6.0
7.5
9.0
10.5
12.0
RS (Ω)
UNTERMINATED
ACTIVE TERMINATION
SHUNT TERMINATION
Figure 35. Noise Figure vs. RS for Shunt Termination, Active
Termination Matched and Unterminated Inputs, VGAIN = 1.6 V
Figure 36 shows the noise figure as it relates to RS for various
values of RIN, which is helpful for design purposes.
10
100
1k
0
1
2
3
4
5
6
7
8
RS (Ω)
RIN = 50Ω
RIN = 75Ω
RIN = 100Ω
RIN = 200Ω
UNTERMINATED
Figure 36. Noise Figure vs. RS for Various Fixed Values of RIN,
Active Termination Matched Inputs, VGAIN = 1.6 V
CLNA Connection
CLNA (Ball B7) must have a 1 nF capacitor attached to AVDD2.
DC Offset Correction/High-Pass Filter
The AD9674 LNA architecture is designed to correct for dc offset
voltages that can develop on the external CS capacitor due to
leakage of the transmit/receive switch during ultrasound transmit
cycles. The dc offset correction, as shown in Figure 37, provides
a feedback mechanism to the LG-x input of the LNA to correct
for this dc voltage.
TRANSDUCER
gm
T/R
SWITCH CS
CSH
CFB
RFB1
RFB2
CLG
LO-x
LOSW-x
LI-x
LG-x
15.6dB,
17.9dB,
21.6dB
LNA
DC OFFSET
CORRECTION
AD9674
Figure 37. Simplified LNA Input Configuration



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