AD9280ARS Analog Devices Inc, AD9280ARS Datasheet - Page 6

IC ADC CMOS 8BIT 32MSPS 28-SSOP

AD9280ARS

Manufacturer Part Number
AD9280ARS
Description
IC ADC CMOS 8BIT 32MSPS 28-SSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD9280ARS

Rohs Status
RoHS non-compliant
Number Of Bits
8
Sampling Rate (per Second)
32M
Data Interface
Parallel
Number Of Converters
9
Power Dissipation (max)
110mW
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-SSOP (0.200", 5.30mm Width)
Number Of Elements
1
Resolution
8Bit
Architecture
Pipelined
Sample Rate
32MSPS
Input Polarity
Unipolar
Input Type
Voltage
Rated Input Volt
3V
Differential Input
Yes
Power Supply Requirement
Analog and Digital
Single Supply Voltage (typ)
3V
Single Supply Voltage (min)
2.7V
Single Supply Voltage (max)
5.5V
Dual Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Power Dissipation
110mW
Differential Linearity Error
±1LSB
Integral Nonlinearity Error
±1.5LSB
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
28
Package Type
SSOP
For Use With
AD9280-EB - BOARD EVAL FOR AD9280
Lead Free Status / RoHS Status
Not Compliant

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AD9280
DEFINITIONS OF SPECIFICATIONS
Integral Nonlinearity (INL)
Integral nonlinearity refers to the deviation of each individual
code from a line drawn from “zero” through “full scale.” The
point used as “zero” occurs 1/2 LSB before the first code transi-
tion. “Full scale” is defined as a level 1 1/2 LSB beyond the last
code transition. The deviation is measured from the center of
each particular code to the true straight line.
Differential Nonlinearity (DNL, No Missing Codes)
An ideal ADC exhibits code transitions that are exactly 1 LSB
apart. DNL is the deviation from this ideal value. It is often
specified in terms of the resolution for which no missing codes
(NMC) are guaranteed.
Typical Characterization Curves
–0.5
–1.0
–0.5
–1.0
1.0
0.5
1.0
0.5
0
0
0
0
32
32
Figure 3. Typical DNL
Figure 4. Typical INL
64
64
96
96
CODE OFFSET
CODE OFFSET
128
128
160
160
192
192
224
224
(AVDD = +3 V, DRVDD = +3 V, F
Span from 0.5 V to 2.5 V, External Reference, unless otherwise noted)
240
240
–6–
Offset Error
The first transition should occur at a level 1 LSB above “zero.”
Offset is defined as the deviation of the actual first code transi-
tion from that point.
Gain Error
The first code transition should occur for an analog value 1 LSB
above nominal negative full scale. The last transition should
occur for an analog value 1 LSB below the nominal positive full
scale. Gain error is the deviation of the actual difference be-
tween first and last code transitions and the ideal difference
between the first and last code transitions.
Pipeline Delay (Latency)
The number of clock cycles between conversion initiation and
the associated output data being made available. New output
data is provided every rising edge.
1.00E+05
1.00E+05
60
55
50
45
40
35
30
25
20
60
55
50
45
40
35
30
25
20
S
Figure 6. SINAD vs. Input Frequency
Figure 5. SNR vs. Input Frequency
= 32 MHz (50% Duty Cycle), MODE = AVDD, 2 V Input
1.00E+06
1.00E+06
INPUT FREQUENCY – Hz
INPUT FREQUENCY – Hz
–20.0 AMPLITUDE
–6.0 AMPLITUDE
–0.5 AMPLITUDE
–20.0 AMPLITUDE
–0.5 AMPLITUDE
–6.0 AMPLITUDE
1.00E+07
1.00E+07
1.00E+08
1.00E+08
REV. E

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