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TS6001

更新时间: 2024-11-25 01:19:19
品牌 Logo 应用领域
芯科 - SILICON /
页数 文件大小 规格书
13页 1308K
描述
Improved Electrical Performance

TS6001 数据手册

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TS6001  
A 7ppm/°C, 0.08% Precision +2.5V Voltage Reference in SOT23  
FEATURES  
DESCRIPTION  
Improved Electrical Performance  
over MAX6025  
The TS6001 is a 3-terminal, series-mode 2.5-V  
precision voltage reference and is a pin-for-pin,  
identical to the MAX6025 voltage reference with  
improved electrical performance. The TS6001  
consumes only 31μA of supply current at no-load,  
exhibits an initial output voltage accuracy of less than  
0.08%, and a low output voltage temperature  
coefficient of 7ppm/°C. In addition, the TS6001’s  
output stage is stable for all capacitive loads to  
2200pF and is capable of sinking and sourcing load  
currents up to 500µA.  
Initial Accuracy:  
0.08% (max) – TS6001A  
0.16% (max) – TS6001B  
Temperature Coefficient:  
7ppm/°C (max) – TS6001A  
10ppm/°C (max) – TS6001B  
Quiescent Supply Current: 35μA (max)  
Low Supply Current Change with VIN: 0.1μA/V  
Output Source/Sink Current: ±500µA  
Low Dropout at 500μA Load Current: 75mV  
Load Regulation: 30ppm/mA  
Line Regulation: 10ppm/V  
Since the TS6001 is a series-mode voltage reference,  
its supply current is not affected by changes in the  
applied supply voltage unlike two-terminal shunt-  
mode references that require an external resistor.  
The TS6001’s small form factor and low supply  
current operation all combine to make it an ideal  
choice in low-power, precision applications.  
Stable with CLOAD up to 2200pF  
APPLICATIONS  
Battery-Operated Equipment  
Data Acquisition Systems  
Hand-Held Equipment  
Smart Industrial Transmitters  
Industrial and Process-Control Systems  
Precision 3V/5V Systems  
Hard-Disk Drives  
The TS6001 is fully specified over the -40°C to +85°C  
temperature range and is available in a 3-pin SOT23  
package.  
TYPICAL APPLICATION CIRCUIT  
Output Voltage Temperature Drift  
2.5010  
2.5005  
2.5000  
2.4995  
2.4990  
-40  
-15  
10  
35  
60  
85  
TEMPERATURE DRIFT- °C  
Page 1  
© 2014 Silicon Laboratories, Inc. All rights reserved.  

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