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LT1236AIN8-10 PDF预览

LT1236AIN8-10

更新时间: 2024-01-02 21:29:29
品牌 Logo 应用领域
凌特 - Linear 电源电路参考电压源光电二极管
页数 文件大小 规格书
12页 264K
描述
Precision Reference

LT1236AIN8-10 技术参数

是否Rohs认证: 符合生命周期:Transferred
零件包装代码:DIP包装说明:DIP, DIP8,.3
针数:8Reach Compliance Code:compliant
ECCN代码:EAR99HTS代码:8542.39.00.01
风险等级:5.33模拟集成电路 - 其他类型:THREE TERMINAL VOLTAGE REFERENCE
JESD-30 代码:R-PDIP-T8JESD-609代码:e3
湿度敏感等级:1功能数量:1
输出次数:1端子数量:8
最高工作温度:85 °C最低工作温度:-40 °C
最大输出电压:10.005 V最小输出电压:9.995 V
标称输出电压:10 V封装主体材料:PLASTIC/EPOXY
封装代码:DIP封装等效代码:DIP8,.3
封装形状:RECTANGULAR封装形式:IN-LINE
峰值回流温度(摄氏度):260认证状态:Not Qualified
座面最大高度:3.809 mm子类别:Voltage References
最大供电电流 (Isup):1.7 mA表面贴装:NO
技术:BIPOLAR最大电压温度系数:5 ppm/ °C
温度等级:INDUSTRIAL端子面层:Matte Tin (Sn)
端子形式:THROUGH-HOLE端子节距:2.54 mm
端子位置:DUAL处于峰值回流温度下的最长时间:30
微调/可调输出:YES最大电压容差:0.05%
宽度:7.62 mmBase Number Matches:1

LT1236AIN8-10 数据手册

 浏览型号LT1236AIN8-10的Datasheet PDF文件第1页浏览型号LT1236AIN8-10的Datasheet PDF文件第2页浏览型号LT1236AIN8-10的Datasheet PDF文件第4页浏览型号LT1236AIN8-10的Datasheet PDF文件第5页浏览型号LT1236AIN8-10的Datasheet PDF文件第6页浏览型号LT1236AIN8-10的Datasheet PDF文件第7页 
LT1236  
ELECTRICAL CHARACTERISTICS VIN = 10V, IOUT = 0, TA = 25°C, unless otherwise noted.  
LT1236-5  
TYP  
PARAMETER  
CONDITIONS  
0 I 10mA  
MIN  
MAX  
UNITS  
Load Regulation (Sinking Current)  
(Note 3)  
60  
100  
150  
ppm/mA  
ppm/mA  
OUT  
Supply Current  
0.8  
1.2  
1.5  
mA  
mA  
Output Voltage Noise  
(Note 5)  
0.1Hz f 10Hz  
10Hz f 1kHz  
3.0  
2.2  
µV  
P-P  
3.5  
µV  
RMS  
Long-Term Stability of Output Voltage (Note 6)  
Temperature Hysteresis of Output (Note 7)  
t = 1000Hrs Non-Cumulative  
T = ±25°C  
20  
10  
ppm  
ppm  
VIN = 15V, IOUT = 0, TA= 25°C, unless otherwise noted.  
LT1236-10  
TYP  
PARAMETER  
CONDITIONS  
MIN  
MAX  
UNITS  
Output Voltage (Note 1)  
LT1236A-10  
LT1236B-10/LT1236C-10  
9.995  
9.990  
10.000 10.005  
10.000 10.010  
V
V
Output Voltage Temperature Coefficient (Note 2)  
Line Regulation (Note 3)  
T
T T  
MIN J MAX  
LT1236A-10  
LT1236B-10  
LT1236C-10  
2
5
10  
5
10  
15  
ppm/°C  
ppm/°C  
ppm/°C  
11.5V V 14.5V  
1.0  
4
6
2
4
ppm/V  
ppm/V  
ppm/V  
ppm/V  
IN  
14.5V V 40V  
0.5  
IN  
Load Regulation (Sourcing Current)  
(Note 3)  
0 I  
10mA  
12  
50  
25  
40  
ppm/mA  
ppm/mA  
OUT  
Load Regulation (Shunt Mode)  
(Notes 3, 4)  
1.7mA I  
10mA  
100  
150  
ppm/mA  
ppm/mA  
SHUNT  
Series Mode Supply Current  
Shunt Mode Minimum Current  
Output Voltage Noise (Note 5)  
1.2  
1.1  
1.7  
2.0  
mA  
mA  
V
is Open  
1.5  
1.7  
mA  
mA  
IN  
0.1Hz f 10Hz  
10Hz f 1kHz  
6.0  
3.5  
µV  
P-P  
6
µV  
RMS  
Long-Term Stablility of Output Voltage (Note 6)  
Temperature Hysteresis of Output (Note 7)  
t = 1000Hrs Non-Cumulative  
T = ±25°C  
30  
5
ppm  
ppm  
Note 5: RMS noise is measured with a 2-pole highpass filter at 10Hz and a  
2-pole lowpass filter at 1kHz. The resulting output is full-wave rectified and  
then integrated for a fixed period, making the final reading an average as  
opposed to RMS. Correction factors are used to convert from average to  
RMS, and 0.88 is used to correct for the non-ideal bandbass of the filters.  
Peak-to-peak noise is measured with a single highpass filter at 0.1Hz and a  
2-pole lowpass filter at 10Hz. The unit is enclosed in a still-air environment  
to eliminate thermocouple effects on the leads. Test time is 10 seconds.  
Note 6: Long-term stability typically has a logarithmic characteristic and  
therefore, changes after 1000 hours tend to be much smaller than before  
that time. Total drift in the second thousand hours is normally less than  
one third that of the first thousand hours, with a continuing trend toward  
reduced drift with time. Significant improvement in long-term drift can be  
The  
range.  
denotes specifications which apply over the specified temperature  
Note 1: Output voltage is measured immediately after turn-on. Changes  
due to chip warm-up are typically less than 0.005%.  
Note 2: Temperature coefficient is measured by dividing the change in  
output voltage over the temperature range by the change in temperature.  
Incremental slope is also measured at 25°C.  
Note 3: Line and load regulation are measured on a pulse basis. Output  
changes due to die temperature change must be taken into account  
separately.  
Note 4: Shunt mode regulation is measured with the input open. With the  
input connected, shunt mode current can be reduced to 0mA. Load  
regulation will remain the same.  
3

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