AD9280
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a
Complete 8-Bit, 32 MSPS, 95 mW
CMOS A/D Converter
FUNCTIONAL BLOCK DIAGRAM
A/D
A/D
VINA
REFTF
REFBF
REFSENSE
OTR
D7 (MSB)
D0 (LSB)
VREF
DRVDD
AVDD
CLK
DRVSS
AD9280
SHA
SHA SHAGAIN SHA GAINGAIN
D/A
A/D
D/A
A/D
D/A
CORRECTION LOGIC
OUTPUT BUFFERS
REFTS
1V
AVSS
REFBS
THREE-
STATE
MODE
STBY
CLAMP
CLAMP
IN
SHA GAIN
A/D D/A
FEATURES
CMOS 8-Bit 32 MSPS Sampling A/D Converter
Pin-Compatible with AD876-8
Power Dissipation: 95 mW (3 V Supply)
Operation Between +2.7 V and +5.5 V Supply
Differential Nonlinearity: 0.2 LSB
Power-Down (Sleep) Mode
Three-State Outputs
Out-of-Range Indicator
Built-In Clamp Function (DC Restore)
Adjustable On-Chip Voltage Reference
IF Undersampling to 135 MHz
PRODUCT DESCRIPTION
The AD9280 is a monolithic, single supply, 8-bit, 32 MSPS
analog-to-digital converter with an on-chip sample-and-hold
amplifier and voltage reference. The AD9280 uses a multistage
differential pipeline architecture at 32 MSPS data rates and
guarantees no missing codes over the full operating temperature
range.
The input of the AD9280 has been designed to ease the devel-
opment of both imaging and communications systems. The user
can select a variety of input ranges and offsets and can drive the
input either single-ended or differentially.
The sample-and-hold amplifier (SHA) is equally suited for both
multiplexed systems that switch full-scale voltage levels in suc-
cessive channels and sampling single-channel inputs at frequen-
cies up to and beyond the Nyquist rate. AC-coupled input
signals can be shifted to a predetermined level, with an onboard
clamp circuit. The dynamic performance is excellent.
The AD9280 has an onboard programmable reference. An
external reference can also be chosen to suit the dc accuracy and
temperature drift requirements of the application.
A single clock input is used to control all internal conversion
cycles. The digital output data is presented in straight binary
output format. An out-of-range signal (OTR) indicates an over-
flow condition which can be used with the most significant bit
to determine low or high overflow.
The AD9280 can operate with a supply range from +2.7 V to
+5.5 V, ideally suiting it for low power operation in high speed
applications.
The AD9280 is specified over the industrial (–40°C to +85°C)
temperature range.
PRODUCT HIGHLIGHTS
Low Power
The AD9280 consumes 95 mW on a 3 V supply (excluding the
reference power). In sleep mode, power is reduced to below
5 mW.
Very Small Package
The AD9280 is available in a 28-lead SSOP package.
Pin Compatible with AD876-8
The AD9280 is pin compatible with the AD876-8, allowing
older designs to migrate to lower supply voltages.
300 MHz Onboard Sample-and-Hold
The versatile SHA input can be configured for either single-
ended or differential inputs.
Out-of-Range Indicator
The OTR output bit indicates when the input signal is beyond
the AD9280’s input range.
Built-In Clamp Function
Allows dc restoration of video signals.
REV. E
2010
AD9280* PRODUCT PAGE QUICK LINKS
Last Content Update: 02/23/2017
COMPARABLE PARTS
View a parametric search of comparable parts.
DOCUMENTATION
Application Notes
AN-282: Fundamentals of Sampled Data Systems
AN-345: Grounding for Low-and-High-Frequency Circuits
AN-501: Aperture Uncertainty and ADC System
Performance
AN-715: A First Approach to IBIS Models: What They Are
and How They Are Generated
AN-737: How ADIsimADC Models an ADC
AN-741: Little Known Characteristics of Phase Noise
AN-756: Sampled Systems and the Effects of Clock Phase
Noise and Jitter
AN-835: Understanding High Speed ADC Testing and
Evaluation
AN-905: Visual Analog Converter Evaluation Tool Version
1.0 User Manual
AN-935: Designing an ADC Transformer-Coupled Front
End
Data Sheet
AD9280: Complete 8-bit, 32 MSPS, 95 mW CMOS A/D
Converter Data Sheet
TOOLS AND SIMULATIONS
Visual Analog
REFERENCE MATERIALS
Technical Articles
Correlating High-Speed ADC Performance to Multicarrier
3G Requirements
DNL and Some of its Effects on Converter Performance
MS-2210: Designing Power Supplies for High Speed ADC
DESIGN RESOURCES
AD9280 Material Declaration
PCN-PDN Information
Quality And Reliability
Symbols and Footprints
DISCUSSIONS
View all AD9280 EngineerZone Discussions.
SAMPLE AND BUY
Visit the product page to see pricing options.
TECHNICAL SUPPORT
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number.
DOCUMENT FEEDBACK
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–2–
AD9280–SPECIFICATIONS
(AVDD = +3 V, DRVDD = +3 V, F
S
= 32 MHz (50% Duty Cycle), MODE = AVDD, 2 V Input
Span from 0.5 V to 2.5 V, External Reference, T
MIN
to T
MAX
unless otherwise noted)
Parameter Symbol Min Typ Max Units Condition
RESOLUTION 8 Bits
CONVERSION RATE F
S
32 MHz
DC ACCURACY
Differential Nonlinearity DNL ±0.2 ±1.0 LSB REFTS = 2.5 V, REFBS = 0.5 V
Integral Nonlinearity INL ±0.3 ±1.5 LSB
Offset Error E
ZS
±0.2 ±1.8 % FSR
Gain Error E
FS
±1.2 ±3.9 % FSR
REFERENCE VOLTAGES
Top Reference Voltage REFTS 1 AVDD V
Bottom Reference Voltage REFBS GND AVDD – 1 V
Differential Reference Voltage 2 V p-p
Reference Input Resistance
1
10 k REFTS, REFBS: MODE = AVDD
4.2 k Between REFTF & REFBF: MODE = AVSS
ANALOG INPUT
Input Voltage Range AIN REFBS REFTS V REFBS Min = GND: REFTS Max = AVDD
Input Capacitance C
IN
1 pF Switched
Aperture Delay t
AP
4ns
Aperture Uncertainty (Jitter) t
AJ
2ps
Input Bandwidth (–3 dB) BW
Full Power (0 dB) 300 MHz
DC Leakage Current 43 µA Input = ±FS
INTERNAL REFERENCE
Output Voltage (1 V Mode) VREF 1 V REFSENSE = VREF
Output Voltage Tolerance (1 V Mode) ±10 ±25 mV
Output Voltage (2 V Mode) VREF 2 V REFSENSE = GND
Load Regulation (1 V Mode) 0.5 2 mV 1 mA Load Current
POWER SUPPLY
Operating Voltage AVDD 2.7 3 5.5 V
DRVDD 2.7 3 5.5 V
Supply Current IAVDD 31.7 36.7 mA AVDD = 3 V, MODE = AVSS
Power Consumption P
D
95 110 mW AVDD = DRVDD = 3 V, MODE = AVSS
Power-Down 4 mW STBY = AVDD, MODE and CLOCK
= AVSS
Gain Error Power Supply Rejection PSRR 1 % FS
DYNAMIC PERFORMANCE (AIN = 0.5 dBFS)
Signal-to-Noise and Distortion SINAD
f = 3.58 MHz 46.4 49 dB
f = 16 MHz 48 dB
Effective Bits
f = 3.58 MHz 7.8 Bits
f = 16 MHz 7.7 Bits
Signal-to-Noise SNR
f = 3.58 MHz 47.8 49 dB
f = 16 MHz 48 dB
Total Harmonic Distortion THD
f = 3.58 MHz –62 –49.5 dB
f = 16 MHz –58 dB
Spurious Free Dynamic Range SFDR
f = 3.58 MHz 66 51.4 dB
f = 16 MHz 61 dB
Differential Phase DP 0.2 Degree NTSC 40 IRE Mod Ramp
Differential Gain DG 0.08 %
REV. E

AD9280ARSZ

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Analog to Digital Converters - ADC 8B Complete 32 MSPS
Lifecycle:
New from this manufacturer.
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