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REF2912 데이터시트(PDF) 17 Page - Texas Instruments

부품명 REF2912
상세설명  REF29xx 100 ppm/°C, 50 μA in 3-Pin SOT-23 CMOS Voltage Reference
PDF  27 Pages
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제조업체  TI2 [Texas Instruments]
홈페이지  https://www.ti.com
Logo TI2 - Texas Instruments

REF2912 데이터시트(HTML) 17 Page - Texas Instruments

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0.00
0.25
0.50
0.75
1.00
1.25
±6
±5
±4
±3
±2
±1
0
1
2
3
4
5
6
Input Voltage (V)
C003
±4000
±3000
±2000
±1000
0
1000
2000
±6
±5
±4
±3
±2
±1
0
1
2
3
4
5
6
Input Voltage (V)
C002
-0.00056
-0.00054
-0.00052
-0.0005
-0.00048
-0.00046
-0.00044
-0.00042
-0.0004
±6
±5
±4
±3
±2
±1
0
1
2
3
4
5
6
Input Voltage (V)
C001
17
REF2912, REF2920, REF2925
REF2930, REF2933, REF2940
www.ti.com
SBVS033C – JUNE 2002 – REVISED JUNE 2016
Product Folder Links: REF2912 REF2920 REF2925 REF2930 REF2933 REF2940
Submit Documentation Feedback
Copyright © 2002–2016, Texas Instruments Incorporated
Typical Application (continued)
9.2.1 Design Requirements
•
Supply Voltage: 3.3 V
•
Maximum Input Voltage: ±6 V
•
Specified Input Voltage: ±5 V
•
ADC Reference Voltage: 1.25 V
The goal for this design is to accurately condition a ±5-V bipolar input voltage into a voltage suitable for
conversion by a low-voltage ADC with a 1.25-V reference voltage, VREF, and an input voltage range of VREF / 2.
The circuit should function with reduced performance over a wider input range of at least ±6 V to allow for easier
protection of overvoltage conditions.
9.2.2 Detailed Design Procedure
Figure 30 depicts a simplified schematic for this design showing the MSP430 ADC inputs and full input-
conditioning circuitry. The ADC is configured for a bipolar measurement where final conversion result is the
differential voltage between the voltage at the positive and negative ADC inputs. The bipolar, GND referenced
input signal must be level-shifted and attenuated by the operational amplifier so that the output is biased to VREF /
2 and has a differential voltage that is within the ±VREF / 2 input range of the ADC.
9.2.3 Application Curves
Figure 31. OPA317 Output Voltage vs Input Voltage
Figure 32. OPA317 Output Voltage Error vs Input Voltage
Figure 33. Output Code Error vs Input Voltage



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