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AD9240AS

Part # AD9240AS
Description ADC SGL PIPELINED 10MSPS 14BIT PARALLEL 44MQFP - Trays
Category IC
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

REV. A
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
a
Complete 14-Bit, 10 MSPS
Monolithic A/D Converter
AD9240
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700 World Wide Web Site: http://www.analog.com
Fax: 781/326-8703 © Analog Devices, Inc., 1998
FUNCTIONAL BLOCK DIAGRAM
VINA
CAPT
CAPB
SENSE
OTR
BIT 1
(MSB)
BIT 14
(LSB)
VREF
DVSSAVSS
AD9240
SHA
DIGITAL CORRECTION LOGIC
OUTPUT BUFFERS
VINB
1V
REFCOM
5
5
4
4
4
4
4
14
DVDDAVDD
CLK
MODE
SELECT
MDAC3
GAIN = 8
MDAC2
GAIN = 8
MDAC1
GAIN = 16
A/DA/DA/D
DRVDD
DRVSS
CML
BIAS
A/D
FEATURES
Monolithic 14-Bit, 10 MSPS A/D Converter
Low Power Dissipation: 285 mW
Single +5 V Supply
Integral Nonlinearity Error: 2.5 LSB
Differential Nonlinearity Error: 0.6 LSB
Input Referred Noise: 0.36 LSB
Complete: On-Chip Sample-and-Hold Amplifier and
Voltage Reference
Signal-to-Noise and Distortion Ratio: 77.5 dB
Spurious-Free Dynamic Range: 90 dB
Out-of-Range Indicator
Straight Binary Output Data
44-Lead MQFP
PRODUCT HIGHLIGHTS
The AD9240 offers a complete single-chip sampling 14-bit,
analog-to-digital conversion function in a 44-lead Metric Quad
Flatpack.
Low Power and Single Supply
The AD9240 consumes only 280 mW on a single +5 V power
supply.
Excellent DC Performance Over Temperature
The AD9240 provides no missing codes, and excellent tempera-
ture drift performance over the full operating temperature range.
Excellent AC Performance and Low Noise
The AD9240 provides nearly 13 ENOB performance and has an
input referred noise of 0.36 LSB rms.
Flexible Analog Input Range
The versatile onboard sample-and-hold (SHA) can be configured
for either single ended or differential inputs of varying input spans.
Flexible Digital Outputs
The digital outputs can be configured to interface with +3 V and
+5 V CMOS logic families.
Excellent Undersampling Performance
The full power bandwidth and dynamic range of the AD9240
make it well suited for Direct-IF Down Conversion extending to
45 MHz.
PRODUCT DESCRIPTION
The AD9240 is a 10 MSPS, single supply, 14-bit analog-to-
digital converter (ADC). It combines a low cost, high speed
CMOS process and a novel architecture to achieve the resolution
and speed of existing hybrid implementations at a fraction of the
power consumption and cost. It is a complete, monolithic ADC
with an on-chip, high performance, low noise sample-and-hold
amplifier and programmable voltage reference. An external refer-
ence can also be chosen to suit the dc accuracy and temperature
drift requirements of the application. The device uses a multistage
differential pipelined architecture with digital output error correc-
tion logic to guarantee no missing codes over the full operating
temperature range.
The input of the AD9240 is highly flexible, allowing for easy
interfacing to imaging, communications, medical and data-
acquisition systems. A truly differential input structure allows
for both single-ended and differential input interfaces of varying
input spans. The sample-and-hold amplifier (SHA) is equally
suited for multiplexed systems that switch full-scale voltage
levels in successive channels as well as sampling single-channel
inputs at frequencies up to and beyond the Nyquist rate. The
AD9240 also performs well in communication systems employ-
ing Direct-IF Down Conversion, since the SHA in the differen-
tial input mode can achieve excellent dynamic performance well
beyond its specified Nyquist frequency of 5 MHz.
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 (OTR) signal indicates an
overflow condition which can be used with the most significant
bit to determine low or high overflow.
REV. A
–2–
AD9240–SPECIFICATIONS
DC SPECIFICATIONS
Parameter AD9240 Units
RESOLUTION 14 Bits min
MAX CONVERSION RATE 10 MHz min
INPUT REFERRED NOISE
VREF = 1 V 0.9 LSB rms typ
VREF
= 2.5 V 0.36 LSB rms typ
ACCURACY
Integral Nonlinearity (INL) ±2.5 LSB typ
Differential Nonlinearity (DNL) ±0.6 LSB typ
±1.0 LSB max
INL
1
±2.5 LSB typ
DNL
1
±0.7 LSB typ
No Missing Codes 14 Bits Guaranteed
Zero Error (@ +25°C) 0.3 % FSR max
Gain Error (@ +25°C)
2
1.5 % FSR max
Gain Error (@ +25°C)
3
0.75 % FSR max
TEMPERATURE DRIFT
Zero Error 3.0 ppm/°C typ
Gain Error
2
20.0 ppm/°C typ
Gain Error
3
5.0 ppm/°C typ
POWER SUPPLY REJECTION 0.1 % FSR max
ANALOG INPUT
Input Span (with VREF = 1.0 V) 2 V p-p min
Input Span (with VREF = 2.5 V) 5 V p-p max
Input (VINA or VINB) Range 0 V min
AVDD V max
Input Capacitance 16 pF typ
INTERNAL VOLTAGE REFERENCE
Output Voltage (1 V Mode) 1 Volts typ
Output Voltage Tolerance (1 V Mode) ±14 mV max
Output Voltage (2.5 V Mode) 2.5 Volts typ
Output Voltage Tolerance (2.5 V Mode) ±35 mV max
Load Regulation
4
5.0 mV max
REFERENCE INPUT RESISTANCE 5 k typ
POWER SUPPLIES
Supply Voltages
AVDD +5 V (±5% AVDD
Operating)
DVDD +5 V (±5% DVDD
Operating)
DRVDD +5 V (±5% DRVDD
Operating)
Supply Current
IAVDD 50 mA max (46 mA typ)
IDRVDD 1 mA max (0.1 mA typ)
IDVDD 15 mA max (11 mA typ)
POWER CONSUMPTION 330 mW max (285 mW typ)
NOTES
1
VREF = 1 V.
2
Including internal reference.
3
Excluding internal reference.
4
Load regulation with 1 mA load current (in addition to that required by the AD9240).
Specification subject to change without notice.
(AVDD = +5 V, DVDD = +5 V, DRVDD = +5 V, f
SAMPLE
= 10 MSPS, R
BIAS
= 2 k, VREF = 2.5 V, VINB = 2.5 V,
T
MIN
to T
MAX
unless otherwise noted)
AC SPECIFICATIONS
Parameter AD9240 Units
SIGNAL-TO-NOISE AND DISTORTION RATIO (S/N+D)
f
INPUT
= 500 kHz 75.0 dB min
77.5 dB typ
f
INPUT
= 1.0 MHz 77.5 dB typ
f
INPUT
= 5.0 MHz 75.0 dB typ
EFFECTIVE NUMBER OF BITS (ENOB)
f
INPUT
= 500 kHz 12.2 Bits min
12.6 Bits typ
f
INPUT
= 1.0 MHz 12.6 Bits typ
f
INPUT
= 5.0 MHz 12.2 Bits typ
SIGNAL-TO-NOISE RATIO (SNR)
f
INPUT
= 500 kHz 76.0 dB min
78.5 dB typ
f
INPUT
= 1.0 MHz 78.5 dB typ
f
INPUT
= 5.0 MHz 78.5 dB typ
TOTAL HARMONIC DISTORTION (THD)
f
INPUT
= 500 kHz –78.0 dB max
–85.0 dB typ
f
INPUT
= 1.0 MHz –85.0 dB typ
f
INPUT
= 5.0 MHz –77.0 dB typ
SPURIOUS FREE DYNAMIC RANGE
f
INPUT
= 500 kHz 90.0 dB typ
f
INPUT
= 1.0 MHz 90.0 dB typ
f
INPUT
= 5.0 MHz 80.0 dB typ
DYNAMIC PERFORMANCE
Full Power Bandwidth 70 MHz typ
Small Signal Bandwidth 70 MHz typ
Aperture Delay 1 ns typ
Aperture Jitter 4 ps rms typ
Acquisition to Full-Scale Step (0.0025%) 45 ns typ
Overvoltage Recovery Time 167 ns typ
Specifications subject to change without notice.
DIGITAL SPECIFICATIONS
Parameters Symbol AD9240 Units
CLOCK INPUT
High Level Input Voltage V
IH
+3.5 V min
Low Level Input Voltage V
IL
+1.0 V max
High Level Input Current (V
IN
= DVDD) I
IH
±10 µA max
Low Level Input Current (V
IN
= 0 V) I
IL
±10 µA max
Input Capacitance C
IN
5 pF typ
LOGIC OUTPUTS (with DRVDD = 5 V)
High Level Output Voltage (I
OH
= 50 µA) V
OH
+4.5 V min
High Level Output Voltage (I
OH
= 0.5 mA) V
OH
+2.4 V min
Low Level Output Voltage (I
OL
= 1.6 mA) V
OL
+0.4 V max
Low Level Output Voltage (I
OL
= 50 µA) V
OL
+0.1 V max
Output Capacitance C
OUT
5 pF typ
LOGIC OUTPUTS (with DRVDD = 3 V)
High Level Output Voltage (I
OH
= 50 µA) V
OH
+2.4 V min
Low Level Output Voltage (I
OL
= 50 µA) V
OL
+0.7 V max
Specifications subject to change without notice.
AD9240
REV. A
–3–
(AVDD
= +5 V, DVDD= +5 V, DRVDD = +5 V, f
SAMPLE
= 10 MSPS, R
BIAS
= 2 k, VREF = 2.5 V, A
IN
= –0.5 dBFS,
AC Coupled/Differential Input, T
MIN
to T
MAX
unless otherwise noted)
(AVDD
= +5 V, DVDD
= +5 V, T
MIN
to T
MAX
unless otherwise noted)
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