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DAC8164A PDF预览

DAC8164A

更新时间: 2024-11-28 04:38:27
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德州仪器 - TI 转换器脉冲
页数 文件大小 规格书
47页 1459K
描述
14-Bit, Quad Channel, Ultra-Low Glitch, Voltage Output DIGITAL-TO-ANALOG CONVERTER with 2.5V, 2ppm/∑C Internal Reference

DAC8164A 数据手册

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DAC8164  
www.ti.com ......................................................................................................................................... SBAS410AFEBRUARY 2008REVISED FEBRUARY 2008  
14-Bit, Quad Channel, Ultra-Low Glitch, Voltage Output  
DIGITAL-TO-ANALOG CONVERTER with 2.5V, 2ppm/°C Internal Reference  
1
FEATURES  
DESCRIPTION  
234  
Relative Accuracy: 1LSB  
Glitch Energy: 0.15nV-s  
Internal Reference:  
The DAC8164 is  
a
low-power, voltage-output,  
four-channel, 14-bit digital-to-analog converter (DAC).  
The device includes 2.5V, 2ppm/°C internal  
a
reference (enabled by default), giving a full-scale  
output voltage range of 2.5V. The internal reference  
has an initial accuracy of 0.004% and can source up  
to 20mA at the VREFH/VREFOUT pin. The device is  
monotonic, provides very good linearity, and  
minimizes undesired code-to-code transient voltages  
(glitch). The DAC8164 uses a versatile 3-wire serial  
interface that operates at clock rates up to 50MHz.  
The interface is compatible with standard SPI™,  
QSPI™, Microwire™, and digital signal processor  
(DSP) interfaces.  
2.5V Reference Voltage (enabled by default)  
0.004% Initial Accuracy (typ)  
2ppm/°C Temperature Drift (typ)  
5ppm/°C Temperature Drift (max)  
20mA Sink/Source Capability  
Power-On Reset to Zero-Scale  
Ultra-Low Power Operation: 1mA at 5V  
Wide Power Supply Range: +2.7V to +5.5V  
14-Bit Monotonic Over Temperature Range  
The DAC8164 incorporates a power-on-reset circuit  
that ensures the DAC output powers up at zero-scale  
and remains there until a valid code is written to the  
device. The device contains a power-down feature,  
accessed over the serial interface, that reduces the  
current consumption of the device to 1.3µA at 5V.  
Power consumption is 2.6mW at 3V, reducing to  
1.4µW in power-down mode. The low power  
consumption, internal reference, and small footprint  
make this device ideal for portable, battery-operated  
equipment.  
Settling Time: 10µs to ±0.006% Full-Scale  
Range (FSR)  
Low-Power Serial Interface with  
Schmitt-Triggered Inputs: Up to 50MHz  
On-Chip Output Buffer Amplifier with  
Rail-to-Rail Operation  
1.8V to 5.5V Logic Compatibility  
Temperature Range: –40°C to +105°C  
The DAC8164 is drop-in and functionally compatible  
with the DAC7564 and DAC8564, and functionally  
compatible with the DAC7565, DAC8165 and  
DAC8565. All these devices are available in a  
TSSOP-16 package.  
APPLICATIONS  
Portable Instrumentation  
Closed-Loop Servo-Control  
Process Control, PLCs  
Data Acquisition Systems  
Programmable Attenuation  
PC Peripherals  
IOVDD  
AVDD  
VREFL  
DAC8164  
DAC Register A  
VOUTA  
VOUTB  
VOUTC  
VOUTD  
Data Buffer A  
14-Bit DAC  
DAC Register B  
DAC Register C  
DAC Register D  
Data Buffer B  
Data Buffer C  
Data Buffer D  
14-Bit DAC  
14-Bit DAC  
14-Bit DAC  
RELATED  
DEVICES  
16-BIT  
14-BIT  
12-BIT  
Pin and  
Functionally  
Compatible  
DAC8564  
DAC8164  
DAC7564  
SYNC  
SCLK  
DIN  
Functionally  
Compatible  
Register  
Control  
Buffer  
Control  
DAC8565  
DAC8165  
DAC7565  
24-Bit Shift Register  
Power-Down  
Control Logic  
2.5V  
Reference  
Control Logic  
GND  
A0  
A1  
LDAC  
ENABLE  
VREFH/VREFOUT  
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
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 © 2008, Texas Instruments Incorporated  

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