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TLC2543CDWR Datasheet, PDF (21/34 Pages) Texas Instruments – 12-BIT ANALOG-TO-DIGITAL CONVERTERS WITH SERIAL CONTROL AND 11 ANALOG INPUTS
TLC2543C, TLC2543I, TLC2543M
12-BIT ANALOG-TO-DIGITAL CONVERTERS
WITH SERIAL CONTROL AND 11 ANALOG INPUTS
SLAS079F – DECEMBER 1993 – REVISED NOVEMBER 2001
APPLICATION INFORMATION
simplified analog input analysis
Using the equivalent circuit in Figure 18, the time required to charge the analog input capacitance from 0 V to
VS within 1/2 LSB can be derived as follows:
+ ǒ ń Ǔ The capacitance charging voltage is given by
VC VS 1–e–tc RtCi
(1)
Where:
Rt = Rs + ri
The final voltage to 1/2 LSB is given by
VC (1/2 LSB) = VS – (VS /8192)
(2)
* ǒ ń Ǔ + ǒ ń Ǔ Equating equation 1 to equation 2 and solving for time tc gives
VS VS 8192 VS 1–e–tc RtCi
(3)
and
tc (1/2 LSB) = Rt × Ci × ln(8192)
(4)
Therefore, with the values given, the time for the analog input signal to settle is
tc (1/2 LSB) = (Rs + 1 kΩ) × 60 pF × ln(8192)
(5)
This time must be less than the converter sample time shown in the timing diagrams.
Driving Source†
TLC2543
Rs
VI
ri
VS
VC
1 kΩ Max
Ci
60 pF Max
VI = Input Voltage at AIN
VS = External Driving Source Voltage
Rs = Source Resistance
ri = Input Resistance
Ci = Input Capacitance
VC = Capacitance Charging Voltage
† Driving source requirements:
• Noise and distortion for the source must be equivalent to the
resolution of the converter.
• Rs must be real at the input frequency.
Figure 18. Equivalent Input Circuit Including the Driving Source
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