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REF6025 データシート(PDF) 16 Page - Texas Instruments

部品番号 REF6025
部品情報  REF60xx High-Precision Voltage Reference With Integrated ADC Drive Buffer
PDF  38 Pages
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メーカー  TI2 [Texas Instruments]
ホームページ  https://www.ti.com
Logo TI2 - Texas Instruments

REF6025 データシート(HTML) 16 Page - Texas Instruments

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±121339
±121338
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±121334
0
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Time (µs)
C048
121405
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Time (µs)
C047
16
REF6025, REF6030, REF6033, REF6041, REF6045, REF6050
SBOS708B – MAY 2016 – REVISED AUGUST 2016
www.ti.com
Product Folder Links: REF6025 REF6030 REF6033 REF6041 REF6045 REF6050
Submit Documentation Feedback
Copyright © 2016, Texas Instruments Incorporated
8.3 Reference Droop Measurements
Many applications, such as event-triggered and multiplexed data-acquisition systems, require the very first
conversion of the ADC to have 18-bit or greater precision. These types of data-acquisition systems capture data
in bursts, and are also called burst-mode, data-acquisition systems. Achieving 18-bit precision for the first sample
is a very difficult using a conventional voltage reference because the voltage reference droop limits the accuracy
of the first few conversions. The REF60xx have an integrated ADC drive buffer that makes sure the reference
droop is less than 1 LSB at 18-bit precision when used with the ADS8881, even at full throughput. Figure 44 and
Figure 45 show the REF60xx output voltage droop when driving the REF pin of the ADS8881 at positive and
negative full-scale inputs, respectively.
REF6050 driving REF pin of ADS8881 operating at 1 MSPS,
positive full-scale input to ADS8881
Figure 44. Output Voltage Droop
REF6050 driving REF pin of ADS8881 operating at 1 MSPS,
negative full-scale input to ADS8881
Figure 45. Output Voltage Droop
Direct measurement of the reference droop to 18-bit accuracy can be a challenging process. Therefore, the plots
in Figure 44 and Figure 45 were obtained by processing the output code of the ADC. The ADC output code is
given by:
C = (Input Voltage / VREF) × 2
N
(2)
If the input voltage is kept constant, VREF is computed by monitoring the ADC output code C. The ADC code
usually has six to seven LSBs of code spread due to the inherent noise of the ADC. In order to measure
reference droop, this noise must be reduced drastically. Noise reduction is done by averaging the output code
multiple times, as described in the next paragraph.



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