AD9220ARZ Analog Devices Inc, AD9220ARZ Datasheet - Page 13

IC ADC 12BIT 10MSPS 28-SOIC

AD9220ARZ

Manufacturer Part Number
AD9220ARZ
Description
IC ADC 12BIT 10MSPS 28-SOIC
Manufacturer
Analog Devices Inc
Datasheets

Specifications of AD9220ARZ

Data Interface
Parallel
Number Of Bits
12
Sampling Rate (per Second)
10M
Number Of Converters
7
Power Dissipation (max)
310mW
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-SOIC (0.300", 7.50mm Width)
Resolution (bits)
12bit
Sampling Rate
10MSPS
Input Channel Type
Differential, Single Ended
Supply Voltage Range - Analog
4.75V To 5.25V
Number Of Elements
1
Resolution
12Bit
Architecture
Pipelined
Sample Rate
10MSPS
Input Polarity
Unipolar
Input Type
Voltage
Rated Input Volt
±1/±2.5V
Differential Input
Yes
Power Supply Requirement
Analog and Digital
Single Supply Voltage (typ)
5V
Single Supply Voltage (min)
4.75V
Single Supply Voltage (max)
5.25V
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Power Dissipation
310mW
Differential Linearity Error
±0.75LSB
Integral Nonlinearity Error
±1.25LSB
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
28
Package Type
SOIC W
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
AD9220-EB - BOARD EVAL FOR AD9220
Lead Free Status / Rohs Status
Compliant

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Input
Connection
Single-Ended
Single-Ended
Differential
(via Transformer)
*VINA and VINB can be interchanged if signal inversion is required.
REV. E
Coupling Span (V) VINA*
DC
AC
AC
Input
2
2 × VREF 0 to
5
2 × VREF 2.5 – VREF
2 or
2 × VREF 0 to 2 × VREF
5
2 × VREF 2.5 – VREF
2
2 × VREF 2.5 – VREF/2
5
Table I. Analog Input Configuration Summary
0 to 2
2 × VREF
0 to 5
to
2.5 + VREF
0 to 1 or
0 to 5
to
2.5 + VREF
2 to 3
to
2.5 + VREF/2
1.75 to 3.25
Input Range (V)
VINB*
1
VREF
2.5
2.5
1 or VREF
2.5
2.5
3 to 2
2.5 + VREF/2 19
to
2.5 – VREF/2
3.25 to 1.75
–13–
Figure
No.
13, 14
13, 14
13, 14
24
15
15
16
19
19
Comments
Best for stepped input response applica-
tions, suboptimum THD, and noise
performance. Requires ± 5 V op amp.
Same as above but with improved noise
performance due to increase in dynamic
range. Headroom/settling time require-
ments of ± 5 V op amp should be evaluated.
Optimum noise performance, excellent
THD performance. Requires op amp with
VCC > 5 V due to headroom issue.
Optimum THD performance with VREF =
1. Noise to performance improves while
THD performance degrades as VREF
(i.e., 5 V) for many op amps.
Suboptimum ac performance due to input
common-mode level not biased at optimum
midsupply level (i.e., 2.5 V).
Optimum noise performance, excellent THD
performance, ability to use ± 5 V op amp.
Flexible input range, optimum THD
performance with VREF = 1. Noise
performance improves while THD perfor-
mance degrades as VREF increases to 2.5 V.
Ability to use +5 V or ± 5 V op amp.
Optimum full-scale THD and SFDR
performance well beyond the A/D’s Nyquist
frequency. Preferred mode for under-
sampling applications.
Same as 2 V to 3 V input range with the
exception that full-scale THD and SFDR
performance can be traded off for better
noise performance. Refer to discussion in AC
Coupling and Interface Issue section and
Simple AC Interface section.
Optimum Noise performance. Also, the
optimum THD and SFDR performance for
“less than” full-scale signals (i.e., –6 dBFS).
Refer to discussion in AC Coupling and
Interface Issue section and Simple AC
Interface section.
increases to 2.5 V. Single-supply operation
AD9221/AD9223/AD9220

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