ADC0816CJ National Semiconductor, ADC0816CJ Datasheet - Page 11

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ADC0816CJ

Manufacturer Part Number
ADC0816CJ
Description
IC ADC 8BIT W/16CH MUX 40-DIP
Manufacturer
National Semiconductor
Datasheet

Specifications of ADC0816CJ

Number Of Bits
8
Sampling Rate (per Second)
10k
Data Interface
Parallel
Number Of Converters
1
Power Dissipation (max)
875mW
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 85°C
Mounting Type
Through Hole
Package / Case
40-DIP (0.600", 15.24mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
*ADC0816CJ

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Applications Information
3.0 CONVERTER EQUATIONS
The transition between adjacent codes N and N + 1 is given
by:
The center of an output code N is given by:
The output code N for an arbitrary input are the integers
within the range:
where: V
V
V
V
REF
REF
TUE
= Voltage at Ref(+)
= Voltage at Ref(−)
= Total unadjusted error voltage (typically
IN
= Voltage at comparator input
FIGURE 13. Symmetrically Centered Reference
(Continued)
(2)
(3)
(4)
11
4.0 ANALOG COMPARATOR INPUTS
The dynamic comparator input current is caused by the pe-
riodic switching of on-chip stray capacitances These are
connected alternately to the output of the resistor ladder/
switch tree network and to the comparator input as part of
the operation of the chopper stabilized comparator.
The average value of the comparator input current varies di-
rectly with clock frequency and with V
6 .
If no filter capacitors are used at the analog or comparator in-
puts and the signal source impedances are low, the com-
parator input current should not introduce converter errors,
as the transient created by the capacitance discharge will die
out before the comparator output is strobed.
If input filter capacitors are desired for noise reduction and
signal conditioning they will tend to average out the dynamic
comparator input current. It will then take on the characteris-
tics of a DC bias current whose effect can be predicted con-
ventionally. See AN-258 for further discussion.
V
REF
(+) ÷ 512)
IN
as shown in Figure
DS005277-15
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