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ADC0804LCWMX/NOPB датащи(PDF) 25 Page - Texas Instruments

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номер детали ADC0804LCWMX/NOPB
подробное описание детали  Analog-to-Digital Converters
PDF  56 Pages
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производитель  TI1 [Texas Instruments]
домашняя страница  http://www.ti.com
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ADC0804LCWMX/NOPB датащи(HTML) 25 Page - Texas Instruments

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ADC0801, ADC0802, ADC0803, ADC0804, ADC0805
www.ti.com
SNOSBI1C – NOVEMBER 2009 – REVISED JUNE 2015
Notice that the reference voltage for the IC is either 1/2 of the voltage applied to the VCC supply pin, or is equal to
the voltage that is externally forced at the VREF/2 pin. This allows for a ratiometric voltage reference using the
VCC supply, a 5 VDC reference voltage can be used for the VCC supply or a voltage less than 2.5 VDC can be
applied to the VREF/2 input for increased application flexibility. The internal gain to the VREF/2 input is 2, making
the full-scale differential input voltage twice the voltage at pin 9.
An example of the use of an adjusted reference voltage is to accommodate a reduced span — or dynamic
voltage range of the analog input voltage. If the analog input voltage were to range from 0.5 VDC to 3.5 VDC,
instead of 0V to 5 VDC, the span would be 3 V as shown in Figure 33. With 0.5 VDC applied to the VIN(−) pin to
absorb the offset, the reference voltage can be made equal to 1/2 of the 3V span or 1.5 VDC. The ADC now will
encode the VIN(+) signal from 0.5V to 3.5 V with the 0.5V input corresponding to zero and the 3.5 VDC input
corresponding to full-scale. The full 8 bits of resolution are therefore applied over this reduced analog input
voltage range.
9.2.1.2.3.2
Reference Accuracy Requirements
The converter can be operated in a ratiometric mode or an absolute mode. In ratiometric converter applications,
the magnitude of the reference voltage is a factor in both the output of the source transducer and the output of
the ADC converter and therefore cancels out in the final digital output code. The ADC0805 is specified
particularly for use in ratiometric applications with no adjustments required. In absolute conversion applications,
both the initial value and the temperature stability of the reference voltage are important factors in the accuracy
of the ADC converter. For VREF/2 voltages of 2.4 VDC nominal value, initial errors of ±10 mVDC will cause
conversion errors of ±1 LSB due to the gain of 2 of the VREF/2 input. In reduced span applications, the initial
value and the stability of the VREF/2 input voltage become even more important. For example, if the span is
reduced to 2.5 V, the analog input LSB voltage value is correspondingly reduced from 20 mV (5V span) to 10 mV
and 1 LSB at the VREF/2 input becomes 5 mV. As can be seen, this reduces the allowed initial tolerance of the
reference voltage and requires correspondingly less absolute change with temperature variations. Note that
spans smaller than 2.5 V place even tighter requirements on the initial accuracy and stability of the reference
source.
In general, the magnitude of the reference voltage will require an initial adjustment. Errors due to an improper
value of reference voltage appear as full-scale errors in the ADC transfer function. IC voltage regulators may be
used for references if the ambient temperature changes are not excessive. The LM336B 2.5-V IC reference
diode (from National Semiconductor) has a temperature stability of 1.8 mV typical (6 mV maximum) over
0°C
≤TA≤+70°C. Other temperature range parts are also available.
Figure 33. Analog Input Signal Example
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Product Folder Links: ADC0801 ADC0802 ADC0803 ADC0804 ADC0805



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