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AD7722ASZ Datasheet(PDF) 15 Page - Analog Devices

No. de pieza AD7722ASZ
Descripción Electrónicos  16-Bit, 195 kSPS CMOS,-ADC
PDF  24 Pages
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Fabricante Electrónico  AD [Analog Devices]
Página de inicio  http://www.analog.com
Logo AD - Analog Devices

AD7722ASZ Datasheet(HTML) 15 Page - Analog Devices

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REV. B
AD7722
–15–
APPLYING THE AD7722
Analog Input Range
The AD7722 uses differential inputs to provide common-mode
noise rejection (i.e., the converted result will correspond to the
differential voltage between the two inputs). The absolute voltage
on both inputs must lie between AGND and AVDD.
In unipolar mode, the full-scale analog input range
(VIN(+) – VIN(–)) is 0 V to VREF2. The output code is straight
binary in the unipolar mode with 1 LSB = 38
µV. The ideal transfer
function is shown in Figure 11.
In bipolar mode, the full-scale input range is
±V
REF2/2. The
bipolar mode allows complementary input signals. As another
example, in bipolar mode, VIN(–) can be connected to a dc bias
voltage to allow a single-ended input on VIN(+) equal to VBIAS
±VREF2/2. In bipolar mode, the output code is twos complement
with 1 LSB = 38
µV. The ideal transfer function is shown in
Figure 12.
111...111
111...110
111...101
111...100
000...011
000...010
000...001
000...000
OUTPUT
CODE
0V
VREF2 –1LSB
DIFFERENTIAL INPUT VOLTAGE V IN(+) – V IN(–)
Figure 11. Unipolar Mode Transfer Function
111...111
111...110
100...001
100...000
000...010
000...001
000...000
OUTPUT
CODE
0V
+VREF2/2 – 1LSB
DIFFERENTIAL INPUT VOLTAGE V IN(+) – V IN(–)
–VREF2
011...111
011...110
Figure 12. Bipolar Mode Transfer Function
Differential Inputs
The analog input to the modulator is a switched capacitor design.
The analog signal is converted into charge by highly linear
sampling capacitors. A simplified equivalent circuit diagram of
the analog input is shown in Figure 13. A signal source driving
the analog input must be able to provide the charge onto the
sampling capacitors every half CLKIN cycle and settle to the
required accuracy within the next half cycle.
18
ΦA
ΦB
ΦA
ΦB
16
2pF
2pF
AC
GROUND
500
ΦA ΦB ΦA ΦB
CLKIN
VIN(+)
VIN(–)
AD7722
500
Figure 13. Analog Input Equivalent Circuit
Since the AD7722 samples the differential voltage across its
analog inputs, low noise performance is attained with an input
circuit that provides low common-mode noise at each input.
The amplifiers used to drive the analog inputs play a critical role
in attaining the high performance available from the AD7722.
When a capacitive load is switched onto the output of an op amp,
the amplitude will momentarily drop. The op amp will try to
correct the situation and, in the process, will hit its slew rate limit.
This nonlinear response, which can cause excessive ringing, can
lead to distortion. To remedy the situation, a low-pass RC filter
can be connected between the amplifier and the input to the
AD7722 as shown in Figure 14. The external capacitor at each
input aids in supplying the current spikes created during the
sampling process. The resistor in this diagram, as well as creating
the pole for the antialiasing, isolates the op amp from the transient
nature of the load.
ANALOG
INPUT
R
C
AD7722
VIN(+)
VIN(–)
R
C
Figure 14. Simple RC Antialiasing Circuit
The differential input impedance of the AD7722 switched capacitor
input varies as a function of the CLKIN frequency, given by the
equation
Z
f
k
IN
CLKIN
=
×
10
4
9



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