ad7477srt-r2 Analog Devices, Inc., ad7477srt-r2 Datasheet

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ad7477srt-r2

Manufacturer Part Number
ad7477srt-r2
Description
1 Msps, 12-/10-/8-bit Adcs In 6-lead Sot-23
Manufacturer
Analog Devices, Inc.
Datasheet
FEATURES
Fast throughput rate: 1 MSPS
Specified for V
Low power
Wide input bandwidth
Flexible power/serial clock speed management
No pipeline delays
High speed serial interface
Standby mode: 1 μA maximum
6-lead SOT-23 package
APPLICATIONS
Battery-powered systems
Instrumentation and control systems
Data acquisition systems
High speed modems
Optical sensors
GENERAL DESCRIPTION
The AD7476/AD7477/AD7478
and 8-bit, high speed, low power, successive approximation
ADCs. The parts operate from a single 2.35 V to 5.25 V power
supply and feature throughput rates up to 1 MSPS. Each part
contains a low noise, wide bandwidth track-and-hold amplifier
that can handle input frequencies in excess of 6 MHz.
The conversion process and data acquisition are controlled
using CS and the serial clock, allowing the devices to interface
with microprocessors or DSPs. The input signal is sampled on
the falling edge of CS and the conversion is initiated at this
point. There are no pipeline delays associated with these parts.
The AD7476/AD7477/AD7478 use advanced design techniques
to achieve very low power dissipation at high throughput rates.
The reference for the parts is taken internally from V
allows the widest dynamic input range to the ADC. Thus, the
analog input range for the parts are 0 V to V
rate is determined by the SCLK.
1
Rev. E
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 that may result from its use. Specifications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarks and registered trademarks are the property of their respective owners.
Protected by U.S. Patent No. 6,681,332.
3.6 mW typical at 1 MSPS with 3 V supplies
15 mW typical at 1 MSPS with 5 V supplies
70 dB SNR at 100 kHz input frequency
SPI®-/QSPI™-/MICROWIRE™-/DSP-compatible
Personal digital assistants
Medical instruments
Mobile communications
DD
of 2.35 V to 5.25 V
1
are, respectively, 12-bit, 10-bit,
DD
. The conversion
DD
. This
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
Fax: 781.461.3113
PRODUCT HIGHLIGHTS
1.
2.
3.
4.
5.
First 12-/10-/8-Bit ADCs in SOT-23 Packages.
High Throughput with Low Power Consumption.
Flexible Power/Serial Clock Speed Management. The
conversion rate is determined by the serial clock, allowing
the conversion time to be reduced through the serial clock
speed increase. This allows the average power consumption
to be reduced while not converting. The parts also feature a
shutdown mode to maximize power efficiency at lower
throughput rates. Current consumption is 1 μA maximum
when in shutdown mode.
Reference Derived from the Power Supply.
No Pipeline Delay. The parts feature a standard successive-
approximation ADC with accurate control of the sampling
instant via a CS input and once-off conversion control.
1 MSPS, 12-/10-/8-Bit ADCs
AD7476/AD7477/AD7478
FUNCTIONAL BLOCK DIAGRAM
V
IN
AD7476/AD7477/AD7478
©2006 Analog Devices, Inc. All rights reserved.
APPROXIMATION
SUCCESSIVE-
12-/10-/8-BIT
CONTROL
in 6-Lead SOT-23
LOGIC
Figure 1.
ADC
GND
V
DD
SCLK
SDATA
CS
www.analog.com

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ad7477srt-r2 Summary of contents

Page 1

... CS input and once-off conversion control. . The conversion DD One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. Tel: 781.329.4700 Fax: 781.461.3113 in 6-Lead SOT-23 AD7476/AD7477/AD7478 FUNCTIONAL BLOCK DIAGRAM V DD 12-/10-/8-BIT SUCCESSIVE APPROXIMATION ADC SCLK CONTROL SDATA LOGIC CS AD7476/AD7477/AD7478 GND Figure 1. www.analog.com ©2006 Analog Devices, Inc. All rights reserved. ...

Page 2

AD7476/AD7477/AD7478 TABLE OF CONTENTS Features .............................................................................................. 1 Applications....................................................................................... 1 Functional Block Diagram .............................................................. 1 General Description ......................................................................... 1 Product Highlights ........................................................................... 1 Revision History ............................................................................... 2 Specifications..................................................................................... 3 AD7476 Specifications................................................................. 3 AD7477 Specifications................................................................. 5 AD7478 Specifications................................................................. 7 Timing Specifications .................................................................. ...

Page 3

SPECIFICATIONS AD7476 SPECIFICATIONS A version 2 5. MHz SCLK MHz 600 kSPS, unless otherwise noted; T SCLK SAMPLE Table 1. Parameter DYNAMIC PERFORMANCE 3 Signal-to-(Noise ...

Page 4

AD7476/AD7477/AD7478 Parameter LOGIC OUTPUT Output High Voltage Output Low Voltage Floating-State Leakage Current Floating-State Output Capacitance 5 Output Coding CONVERSION RATE Conversion Time Track-and-Hold Acquisition Time Throughput Rate POWER REQUIREMENTS Normal Mode ...

Page 5

AD7477 SPECIFICATIONS MHz SCLK Table 2. Parameter DYNAMIC PERFORMANCE Signal-to-(Noise + Distortion) (SINAD) 3 Total Harmonic Distortion (THD) Peak Harmonic or Spurious Noise (SFDR) 3 Intermodulation Distortion (IMD) ...

Page 6

AD7476/AD7477/AD7478 Parameter POWER REQUIREMENTS Normal Mode (Static) Normal Mode (Operational) Full Power-Down Mode 5 Power Dissipation Normal Mode (Operational) Full Power-Down 1 Temperature range for A version is −40°C to +85°C; temperature range for S version ...

Page 7

AD7478 SPECIFICATIONS MHz SCLK Table 3. Parameter DYNAMIC PERFORMANCE Signal-to-(Noise + Distortion) (SINAD) 3 Total Harmonic Distortion (THD) Peak Harmonic or Spurious Noise (SFDR) Intermodulation Distortion (IMD) 3 ...

Page 8

AD7476/AD7477/AD7478 Parameter Power Dissipation 5 Normal Mode (Operational) Full Power-Down 1 Temperature range for A version is −40°C to +85°C; temperature range for S version is −55°C to +125°C. 2 Operational from V = 2.0 V, with input high voltage, ...

Page 9

ABSOLUTE MAXIMUM RATINGS T = 25°C, unless otherwise noted. A Table 5. Parameter V to GND DD Analog Input Voltage to GND Digital Input Voltage to GND Digital Output Voltage to GND Input Current to Any Pin Except Supplies Operating ...

Page 10

AD7476/AD7477/AD7478 PIN CONFIGURATION AND FUNCTION DESCRIPTIONS Table 6. Pin Function Descriptions Pin No. Mnemonic Description 1 V Power Supply Input. The GND Analog Ground. Ground reference point for all circuitry on the part. All analog input signals ...

Page 11

TYPICAL PERFORMANCE CHARACTERISTICS –15 –35 –55 –75 –95 –115 0 50 100 150 200 250 300 FREQUENCY (kHz) Figure 4. AD7476 Dynamic Performance at 1 MSPS –15 –35 –55 –75 –95 –115 0 50 100 150 FREQUENCY (kHz) Figure 5. ...

Page 12

AD7476/AD7477/AD7478 TERMINOLOGY Integral Nonlinearity This is the maximum deviation from a straight line passing through the endpoints of the ADC transfer function. For the AD7476/AD7477, the endpoints of the transfer function are zero scale, a point ½ LSB below the ...

Page 13

THEORY OF OPERATION CIRCUIT INFORMATION The AD7476/AD7477/AD7478 are, respectively, 12-bit, 10-bit, and 8-bit, fast, micropower, single-supply ADCs. The parts can be operated from a 2. 5.25 V supply. When operated from either supply or a ...

Page 14

AD7476/AD7477/AD7478 TYPICAL CONNECTION DIAGRAM Figure 14 shows a typical connection diagram for the AD7476/AD7477/AD7478 taken internally from V REF and as such, V should be well decoupled. This provides an DD analog input range ...

Page 15

IN –60 –70 –80 – 10kHz IN –100 1 10 100 SOURCE IMPEDANCE (Ω) Figure 16. THD vs. Source Impedance for Various Analog Input Frequencies –50 –55 –60 –65 ...

Page 16

AD7476/AD7477/AD7478 Power-Down Mode This mode is intended for use in applications where slower throughput rates are required; either the ADC is powered between each conversion series of conversions can be performed at a high throughput rate and the ...

Page 17

Power-Up Time The power-up time of the AD7476/AD7477/AD7478 is typi- cally 1 μs, which means that with any frequency of SCLK MHz, one dummy cycle is always sufficient to allow the device to power up. Once the ...

Page 18

AD7476/AD7477/AD7478 SERIAL INTERFACE Figure 23, Figure 24, and Figure 25 show the detailed timing diagrams for serial interfacing to the AD7476, AD7477, and AD7478, respectively. The serial clock provides the conversion clock and controls the transfer of information from the ...

Page 19

MICROPROCESSOR INTERFACING The serial interface on the AD7476/AD7477/AD7478 allows the part to be directly connected to a range of many different microprocessors. This section explains how to interface the AD7476/AD7477/AD7478 with some of the more common microcontroller and DSP serial ...

Page 20

AD7476/AD7477/AD7478 AD7476/ DSP56xxx AD7477/ AD7478 1 SCLK SCK SRD SDATA CS SC2 1 ADDITIONAL PINS OMITTED FOR CLARITY Figure 28. Interfacing to the DSP56xxx AD7476/AD7477/AD7478 to MC68HC16 Interface The serial peripheral interface (SPI) on the MC68HC16 is configured for master ...

Page 21

OUTLINE DIMENSIONS INDICATOR 0.15 MAX 2.90 BSC 2.80 BSC 1.60 BSC PIN 1 0.95 BSC 1.90 1.30 BSC 1.15 0.90 1.45 MAX 0.22 0.08 0.50 SEATING 0.30 PLANE COMPLIANT TO JEDEC STANDARDS MO-178-AB Figure ...

Page 22

... AD7477ARTZ-REEL −40°C to +85°C 3 AD7477ARTZ-REEL7 −40°C to +85°C AD7477SRT-500RL7 −55°C to +125°C AD7477SRT-R2 −55°C to +125°C AD7477SRT-REEL −55°C to +125°C AD7477SRT-REEL7 −55°C to +125°C AD7477SRTZ-REEL −55°C to +125°C AD7477SRTZ-REEL7 −55°C to +125°C AD7478ART-500RL7 − ...

Page 23

NOTES AD7476/AD7477/AD7478 Rev Page ...

Page 24

... AD7476/AD7477/AD7478 NOTES ©2006 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. C01024-0-4/06(E) Rev Page ...

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