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DAC7718

更新时间: 2024-11-28 06:52:15
品牌 Logo 应用领域
德州仪器 - TI 转换器
页数 文件大小 规格书
60页 1858K
描述
Octal, 12-Bit, Low-Power, High-Voltage Output, Serial Input DIGITAL-TO-ANALOG CONVERTER

DAC7718 数据手册

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DAC7718  
www.ti.com  
SBAS467A MAY 2009REVISED DECEMBER 2009  
Octal, 12-Bit, Low-Power, High-Voltage Output, Serial Input  
DIGITAL-TO-ANALOG CONVERTER  
Check for Samples: DAC7718  
1
FEATURES  
DESCRIPTION  
2345  
Bipolar Output: ±2V to ±16.5V  
Unipolar Output: 0V to +33V  
12-Bit Resolution  
The DAC7718 is  
digital-to-analog converter (DAC). With  
a
low-power, octal, 12-bit  
5V  
a
reference, the output can either be a bipolar ±15V  
voltage when operating from dual ±15.5V (or higher)  
power supplies, or a unipolar 0V to +30V voltage  
when operating from a +30.5V (or higher) power  
supply. With a 5.5V reference, the output can either  
be a bipolar ±16.5V voltage when operating from dual  
±17V (or higher) power supplies, or a unipolar 0V to  
+33V voltage when operating from a +33.5V (or  
higher) power supply. This DAC provides low-power  
operation, good linearity, and low glitch over the  
specified temperature range of –40°C to +105°C. This  
device is trimmed in manufacturing and has very low  
zero-code and gain error. In addition, system level  
calibration can be performed over the entire signal  
chain. The output range can be offset by using the  
DAC offset register.  
Low Power: 14.4mW/Ch (Bipolar Supply)  
Relative Accuracy: 1 LSB Max  
Low Zero/Full-Scale Error: ±1 LSB Max  
Flexible System Calibration  
Low Glitch: 4nV-s  
Settling Time: 15μs  
Channel Monitor Output  
Programmable Gain: x4/x6  
Programmable Offset  
SPI™: Up to 50MHz, 1.8V/3V/5V Logic  
Schmitt Trigger Inputs  
Daisy-Chain with Sleep Mode Enhancement  
The DAC7718 features a standard, high-speed serial  
peripheral interface (SPI) that operates at up to  
50MHz and is 1.8V, 3V, and 5V logic compatible, to  
communicate with a DSP or microprocessor. The  
input data of the device are double-buffered. An  
asynchronous load input (LDAC) transfers data from  
the DAC data register to the DAC latch. The  
asynchronous CLR input sets the output of all eight  
DACs to AGND. The VMON pin is a monitor output  
that connects to the individual analog outputs, the  
offset DAC, the reference buffer outputs, and two  
external inputs through a multiplexer (mux).  
Packages: QFN-48 (7x7mm), TQFP-64  
(10x10mm)  
APPLICATIONS  
Automatic Test Equipment  
PLC and Industrial Process Control  
Communications  
IOVDD  
DGND  
DVDD  
AVDD  
AVSS  
REF-A  
Analog Monitor  
DAC7718  
VOUT-0  
VOUT-7  
AIN-0  
AIN-1  
Ref Buffer A  
Ref Buffer B  
OFFSET-B  
The DAC7718 is pin-to-pin and function-compatible  
with the DAC8718 (16-bit) and the DAC8218 (14-bit).  
VMON  
Reference  
Buffer A  
OFFSET  
DAC A  
WAKEUP  
SCLK  
CS  
Command  
Registers  
To DAC-0, DAC-1,  
DAC-2, DAC-3  
(When Correction Engine Disabled)  
SDI  
OFFSET-A  
VOUT-0  
SDO  
DAC-0  
Input Data  
Register 0  
Correction  
Engine  
DAC-0  
Data  
Latch-0  
To DAC-0, DAC-1,  
DAC-2, DAC-3  
LDAC  
RST  
RSTSEL  
LDAC  
User Calibration:  
Zero Register 0  
Gain Regsiter 0  
Internal Trimming  
Zero/Gain; INL  
AGND-A  
CLR  
To DAC-4, DAC-5, DAC-6, DAC-7  
USB/BTC  
GPIO-0  
GPIO-1  
GPIO-2  
OFFSET-B  
AGND-B  
VOUT-7  
OFFSET  
DAC B  
(Same Function Blocks  
for All Channels)  
Reference  
Buffer B  
Power-Up/  
Power-Down  
Control  
AIN-0  
AIN-1  
DGND  
DVDD  
AVDD  
AVSS  
REF-B  
1
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas  
Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.  
2
3
4
5
DSP is a trademark of Texas Instruments.  
SPI, QSPI are trademarks of Motorola Inc.  
Microwire is a trademark of National Semiconductor.  
All other trademarks are the property of their respective owners.  
PRODUCTION DATA information is current as of publication date.  
Products conform to specifications per the terms of the Texas  
Instruments standard warranty. Production processing does not  
necessarily include testing of all parameters.  
Copyright © 2009, Texas Instruments Incorporated  

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