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ADA4945-1ACPZ-R2 Datasheet(PDF) 49 Page - Analog Devices

Part # ADA4945-1ACPZ-R2
Description  High Speed, ±0.1 μV/˚C Offset Drift, Fully Differential ADC Driver
PDF  57 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADA4945-1ACPZ-R2 Datasheet(HTML) 49 Page - Analog Devices

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Data Sheet
ADA4945-1
analog.com
Rev. A
49 of 57
Figure 105. Single-Ended Input Impedance RIN
2. Add a termination resistor (RT) to match the 50 Ω source resistance. Because RT||665.33 Ω = 50 Ω,
RT = 54.06 Ω.
Figure 106. Adding Termination Resistor, RT
3. Replace the source termination resistor combination with the Thevenin equivalent. The Thevenin equivalent
of the source resistance, RS, and the termination resistance, RT, is RTH = RS||RT = 25.976 Ω. The Thevenin
equivalent of the source voltage is
������������������ = ������������
������������
������������ + ������������
= 1.039 ������������−������
Figure 107. Thevenin Equivalent Circuit
4. Set RF1 = RF2 = RF to maintain a balanced system. Compensate the imbalance caused by RTH. There are two
methods available to compensate, as follows:
Add RTH to RG2 to maintain balanced gain resistances and increase RF1 and RF2 to RF =
VS
VTH
Gain(RG + RTH) to
maintain the system gain.
Decrease RG2 to RG2 =
RF×VTH
VS×Gain
to maintain system gain and decrease RG1 to (RG2 − RTH) to maintain balanced
gain resistances.
The first compensation method is used in the Analog Devices DiffAmpCalc™ tool. Using the second compensation
method, RG2 =259.241 Ω and RG1 = 259.241 – 25.976 = 233.265 Ω. The modified circuit is shown in Figure 108
RS
50Ω
VS
2V p-p
RIN
665.333Ω
ADA4945-1
RL VOUT, dm
+VS
–VS
RG1
499Ω
RG2
499Ω
RF2
499Ω
RF1
499Ω
VOCM
ADA4945-1
RL VOUT, dm
+VS
–VS
RS
50Ω
RG1
499Ω
RG2
499Ω
RF2
499Ω
RF1
499Ω
VOCM
VS
2V p-p
RIN
50Ω
RT
54.06Ω
RS
50Ω
VS
2V p-p
RT
54.06Ω
RTH
25.976Ω
VTH
1.039V p-p



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