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AD5300 PDF预览

AD5300

更新时间: 2024-02-29 00:24:13
品牌 Logo 应用领域
亚德诺 - ADI /
页数 文件大小 规格书
12页 183K
描述
+2.7 V to +5.5 V, 140 uA, Rail-to-Rail Output 8-Bit DAC in an SOT-23

AD5300 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Obsolete零件包装代码:SOIC
包装说明:LSSOP, TSOP6,.11,37针数:6
Reach Compliance Code:unknownECCN代码:EAR99
HTS代码:8542.39.00.01风险等级:5.31
最大模拟输出电压:5.5 V最小模拟输出电压:
转换器类型:D/A CONVERTER输入位码:BINARY
输入格式:SERIALJESD-30 代码:R-PDSO-G6
JESD-609代码:e3长度:2.9 mm
最大线性误差 (EL):0.3906%湿度敏感等级:1
位数:8功能数量:1
端子数量:6最高工作温度:105 °C
最低工作温度:-40 °C封装主体材料:PLASTIC/EPOXY
封装代码:LSSOP封装等效代码:TSOP6,.11,37
封装形状:RECTANGULAR封装形式:SMALL OUTLINE, LOW PROFILE, SHRINK PITCH
峰值回流温度(摄氏度):260电源:3/5 V
认证状态:Not Qualified座面最大高度:1.45 mm
最大稳定时间:6 µs标称安定时间 (tstl):4 µs
子类别:Other Converters最大压摆率:0.25 mA
标称供电电压:3 V表面贴装:YES
技术:CMOS温度等级:INDUSTRIAL
端子面层:Matte Tin (Sn)端子形式:GULL WING
端子节距:0.95 mm端子位置:DUAL
处于峰值回流温度下的最长时间:40宽度:1.6 mm
Base Number Matches:1

AD5300 数据手册

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AD5300  
TERMINOLOGY  
Gain Error  
Relative Accuracy  
This is a measure of the span error of the DAC. It is the devia-  
tion in slope of the DAC transfer characteristic from ideal ex-  
pressed as a percent of the full-scale range.  
For the DAC, relative accuracy or Integral Nonlinearity (INL)  
is a measure of the maximum deviation, in LSBs, from a straight  
line passing through the endpoints of the DAC transfer func-  
tion. A typical INL vs. code plot can be seen in Figure 2.  
Total Unadjusted Error  
Total Unadjusted Error (TUE) is a measure of the output error  
taking into account all the various errors. A typical TUE vs.  
code plot can be seen in Figure 4.  
Differential Nonlinearity  
Differential Nonlinearity (DNL) is the difference between the  
measured change and the ideal 1 LSB change between any two  
adjacent codes. A specified differential nonlinearity of ±1 LSB  
maximum ensures monotonicity. This DAC is guaranteed  
monotonic by design. A typical DNL vs. code plot can be seen  
in Figure 3.  
Zero-Code Error Drift  
This is a measure of the change in zero-code error with a  
change in temperature. It is expressed in µV/°C.  
Gain Error Drift  
This is a measure of the change in gain error with changes in  
temperature. It is expressed in (ppm of full-scale range)/°C.  
Zero-Code Error  
Zero-code error is a measure of the output error when zero code  
(00 Hex) is loaded to the DAC register. Ideally the output  
should be 0 V. The zero-code error is always positive in the  
AD5300 because the output of the DAC cannot go below 0 V.  
It is due to a combination of the offset errors in the DAC and  
output amplifier. Zero-code error is expressed in LSBs. A plot  
of zero-code error vs. temperature can be seen in Figure 6.  
Digital-to-Analog Glitch Impulse  
Digital-to-analog glitch impulse is the impulse injected into the  
analog output when the input code in the DAC register changes  
state. It is normally specified as the area of the glitch in nV secs  
and is measured when the digital input code is changed by  
1 LSB at the major carry transition (7F Hex to 80 Hex). See  
Figure 19.  
Full-Scale Error  
Digital Feedthrough  
Full-scale error is a measure of the output error when full-scale  
code (FF Hex) is loaded to the DAC register. Ideally the output  
should be VDD – 1 LSB. Full-scale error is expressed in LSBs. A  
plot of full-scale error vs. temperature can be seen in Figure 6.  
Digital feedthrough is a measure of the impulse injected into the  
analog output of the DAC from the digital inputs of the DAC,  
but is measured when the DAC output is not updated. It is  
specified in nV secs and is measured with a full-scale code  
change on the data bus, i.e., from all 0s to all 1s and vice versa.  
REV. A  
–5–  

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