16-Bit, 20/40/65/80 MSPS,
1.8 V Dual Analog-to-Digital Converter
AD9269
FUNCTIONAL BLOCK DIAGRAM
FEATURES
AVDD
GND
SDIO SCLK CSB
SPI
1.8 V analog supply operation
1.8 V to 3.3 V output supply
Integrated quadrature error correction (QEC)
SNR
77.6 dBFS at 9.7 MHz input
71 dBFS at 200 MHz input
AD9269
ORA
D15A
D0A
PROGRAMMING DATA
VIN+A
VIN–A
ADC
SFDR
DCOA
93 dBc at 9.7 MHz input
VREF
80 dBc at 200 MHz input
Low power
QUADRATURE
ERROR
CORRECTION
SENSE
DRVDD
REF
SELECT
VCM
44 mW per channel at 20 MSPS
100 mW per channel at 80 MSPS
Differential input with 700 MHz bandwidth
On-chip voltage reference and sample-and-hold circuit
2 V p-p differential analog input
DNL = −0.5/+1.1 LSB
ORB
RBIAS
D15B
VIN–B
VIN+B
ADC
D0B
DCOB
Serial port control options
DIVIDE
1 TO 6
DUTY CYCLE
STABILIZER
MODE
CONTROLS
Offset binary, gray code, or twos complement data format
Optional clock duty cycle stabilizer (DCS)
Integer 1-to-6 input clock divider
Data output multiplex option
Built-in selectable digital test pattern generation
Energy-saving power-down modes
Data clock output (DCO) with programmable clock and
data alignment
CLK+ CLK–
SYNC
DCS
PDWN DFS OEB
Figure 1.
PRODUCT HIGHLIGHTS
1. The AD9269 operates from a single 1.8 V analog power
supply and features a separate digital output driver supply
to accommodate 1.8 V to 3.3 V logic families.
2. The patented sample-and-hold circuit maintains excellent
performance for input frequencies up to 200 MHz and is
designed for low cost, low power, and ease of use.
3. An optional SPI selectable dc correction and quadrature
error correction (QEC) feature corrects for dc offset, gain,
and phase mismatches between the two channels.
4. A standard serial port interface (SPI) supports various
product features and functions, such as data output format-
ting, internal clock divider, power-down, DCO/data timing
and offset adjustments, and voltage reference modes.
5. The AD9269 is packaged in a 64-lead RoHS-compliant
LFCSP that is pin compatible with the AD9268 16-bit
ADC, the AD9258 14-bit ADC, the AD9251 14-bit ADC
the AD9231 12-bit ADC, the AD6659 12-bit baseband
diversity receiver, and the AD9204 10-bit ADC, enabling a
simple migration path between 10-bit and 16-bit converters
sampling from 20 MSPS to 125 MSPS.
APPLICATIONS
Communications
Diversity radio systems
Multimode digital receivers
GSM, EDGE, W-CDMA, LTE, CDMA2000, WiMAX, TD-SCDMA
I/Q demodulation systems
Smart antenna systems
Battery-powered instruments
Handheld scope meters
Portable medical imaging
Ultrasound
Radar/LIDAR
Rev. 0
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