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ADR02ARZ-REEL7 参数 Datasheet PDF下载

ADR02ARZ-REEL7图片预览
型号: ADR02ARZ-REEL7
PDF下载: 下载PDF文件 查看货源
内容描述: 超小型,精密10.0 V / 5.0 V / 2.5 V / 3.0 V电压参考 [Ultracompact, Precision 10.0 V/5.0 V/2.5 V/3.0 V Voltage References]
分类和应用: 电源电路参考电压源光电二极管输出元件PC
文件页数/大小: 20 页 / 511 K
品牌: ADI [ ADI ]
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Data Sheet  
ADR01/ADR02/ADR03/ADR06  
ADR06 ELECTRICAL CHARACTERISTICS  
VIN = 5.0 V to 36.0 V, VIN = 5.0 V to 26.0 V for ADR06WARZ, TA = 25°C, unless otherwise noted.  
Table 5.  
Parameter  
Symbol  
VO  
Conditions  
Min  
Typ  
Max  
3.006  
6
Unit  
V
OUTPUT VOLTAGE  
INITIAL ACCURACY  
A and C grades  
A and C grades  
2.994  
3.000  
VOERR  
mV  
0.2  
3.003  
3
%
OUTPUT VOLTAGE  
INITIAL ACCURACY  
VO  
B grade  
B grade  
2.997  
3.000  
V
VOERR  
mV  
0.1  
10  
25  
25  
3
9
9
40  
%
TEMPERATURE COEFFICIENT  
TCVO  
A grade, 8-lead SOIC, –40°C < TA < +125°C  
A grade, 5-lead TSOT, –40°C < TA < +125°C  
A grade, 5-lead SC70, –40°C < TA < +125°C  
B grade, 8-lead SOIC, –40°C < TA < +125°C  
B grade, 5-lead TSOT, –40°C < TA < +125°C  
B grade, 5-lead SC70, –40°C < TA < +125°C  
C grade, 8-lead SOIC, –40°C < TA < +125°C  
3
ppm/°C  
ppm/°C  
ppm/°C  
ppm/°C  
ppm/°C  
ppm/°C  
ppm/°C  
V
1
10  
DROPOUT VOLTAGE  
LINE REGULATION  
VDO  
2
∆VO/∆VIN  
VIN = 5.0 V to 36.0 V, VIN = 5.0 V to 26.0 V for  
ADR06WARZ, –40°C < TA < +125°C  
7
30  
70  
1
ppm/V  
LOAD REGULATION  
∆VO/∆ILOAD ILOAD = 0 mA to 10 mA, –40°C < TA < +125°C,  
IN = 7.0 V  
40  
ppm/mA  
V
QUIESCENT CURRENT  
IIN  
No load, –40°C < TA < +125°C  
0.1 Hz to 10.0 Hz  
1 kHz  
0.65  
10  
mA  
VOLTAGE NOISE  
eN p-p  
eN  
µV p-p  
nV/√Hz  
µs  
VOLTAGE NOISE DENSITY  
TURN-ON SETTLING TIME  
LONG-TERM STABILITY1  
OUTPUT VOLTAGE HYSTERESIS  
RIPPLE REJECTION RATIO  
SHORT CIRCUIT TO GND  
TEMPERATURE SENSOR  
Voltage Output at TEMP Pin  
Temperature Sensitivity  
510  
4
tR  
∆VO  
∆VO_HYS  
RRR  
ISC  
1000 hours  
fIN = 10 kHz  
50  
ppm  
ppm  
dB  
70  
–75  
30  
mA  
VTEMP  
TCVTEMP  
550  
1.96  
mV  
mV/°C  
1 The long-term stability specification is noncumulative. The drift in subsequent 1000 hour periods is significantly lower than in the first 1000 hour period.  
Rev. R | Page 7 of 20