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AD7715* PDF预览

AD7715*

更新时间: 2024-11-06 23:27:35
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亚德诺 - ADI /
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描述
3 V/5 V. 450 uA 16-Bit. Sigma-Delta ADC

AD7715* 数据手册

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3 V/5 V, 450 A  
a
16-Bit, Sigma-Delta ADC  
AD7715*  
FUNCTIONAL BLOCK DIAGRAM  
FEATURES  
Charge-Balancing ADC  
16 Bits No Missing Codes  
AV  
DV  
DD  
REF IN(–) REF IN(+)  
DD  
0.0015% Nonlinearity  
Programmable Gain Front End  
Gains of 1, 2, 32 and 128  
Differential Input Capability  
Three-Wire Serial Interface  
SPI™, QSPI™, MICROWIRE™ and DSP Compatible  
Ability to Buffer the Analog Input  
3 V (AD7715-3) or 5 V (AD7715-5) Operation  
Low Supply Current: 450 A max @ 3 V Supplies  
Low-Pass Filter with Programmable Output Update  
16-Lead SOIC/DIP/TSSOP  
CHARGE BALANCING  
A/D CONVERTER  
SIGMA-DELTA  
MODULATOR  
DIGITAL  
FILTER  
AIN(+)  
AIN(–)  
BUFFER  
PGA  
A = 1–128  
CLOCK  
GENERATION  
MCLK IN  
MCLK OUT  
SERIAL  
INTERFACE  
RESET  
SCLK  
CS  
DIN  
REGISTER BANK  
DOUT  
DRDY  
AD7715  
AGND  
DGND  
GENERAL DESCRIPTION  
CMOS construction ensures very low power dissipation, and the  
power-down mode reduces the standby power consumption to  
50 µW typ. The part is available in a 16-lead, 0.3 inch-wide,  
plastic dual-in-line package (DIP) as well as a 16-lead 0.3 inch-  
wide small outline (SOIC) package and a 16-lead TSSOP package.  
The AD7715 is a complete analog front end for low frequency  
measurement applications. The part can accept low level input  
signals directly from a transducer and outputs a serial digital  
word. It employs a sigma-delta conversion technique to realize  
up to 16 bits of no missing codes performance. The input signal  
is applied to a proprietary programmable gain front end based  
around an analog modulator. The modulator output is pro-  
cessed by an on-chip digital filter. The first notch of this digital  
filter can be programmed via the on-chip control register allow-  
ing adjustment of the filter cutoff and output update rate.  
PRODUCT HIGHLIGHTS  
1. The AD7715 consumes less than 450 µA in total supply  
current at 3 V supplies and 1 MHz master clock, making it  
ideal for use in low-power systems. Standby current is less  
than 10 µA.  
The AD7715 features a differential analog input as well as a dif-  
ferential reference input. It operates from a single supply (+3 V  
or +5 V). It can handle unipolar input signal ranges of 0 mV to  
+20 mV, 0 mV to +80 mV, 0 V to +1.25 V and 0 V to +2.5 V.  
It can also handle bipolar input signal ranges of ±20 mV, ±80 mV,  
±1.25 V and ±2.5 V. These bipolar ranges are referenced to  
the negative input of the differential analog input. The AD7715  
thus performs all signal conditioning and conversion for a single-  
channel system.  
2. The programmable gain input allows the AD7715 to accept  
input signals directly from a strain gage or transducer remov-  
ing a considerable amount of signal conditioning.  
3. The AD7715 is ideal for microcontroller or DSP processor  
applications with a three-wire serial interface reducing the  
number of interconnect lines and reducing the number of  
opto-couplers required in isolated systems. The part con-  
tains on-chip registers which allow software control over  
output update rate, input gain, signal polarity and calibration  
modes.  
The AD7715 is ideal for use in smart, microcontroller or DSP  
based systems. It features a serial interface that can be config-  
ured for three-wire operation. Gain settings, signal polarity and  
update rate selection can be configured in software using the  
input serial port. The part contains self-calibration and system  
calibration options to eliminate gain and offset errors on the  
part itself or in the system.  
4. The part features excellent static performance specifications  
with 16-bits no missing codes, ±0.0015% accuracy and low  
rms noise (<550 nV). Endpoint errors and the effects of  
temperature drift are eliminated by on-chip calibration op-  
tions, which remove zero-scale and full-scale errors.  
SPI and QSPI are trademarks of Motorola, Inc.  
MICROWIRE is a trademark of National Semiconductor Corporation.  
*Protected by U.S. Patent No: 5,134,401.  
See page 30 for data sheet index.  
REV. C  
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.  
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.  
Tel: 781/329-4700  
Fax: 781/326-8703  
World Wide Web Site: http://www.analog.com  
© Analog Devices, Inc., 2000  

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