ADC0809CCV National Semiconductor, ADC0809CCV Datasheet - Page 9

ADC Single SAR 10KSPS 8-Bit Parallel 28-Pin PLCC Rail

ADC0809CCV

Manufacturer Part Number
ADC0809CCV
Description
ADC Single SAR 10KSPS 8-Bit Parallel 28-Pin PLCC Rail
Manufacturer
National Semiconductor
Datasheet

Specifications of ADC0809CCV

Package
28PLCC
Resolution
8 Bit
Sampling Rate
10 KSPS
Architecture
SAR
Number Of Adcs
1
Number Of Analog Inputs
8
Digital Interface Type
Parallel
Input Type
Voltage
Polarity Of Input Voltage
Unipolar
No. Of Pins
28
Peak Reflow Compatible (260 C)
No
Leaded Process Compatible
No
Package / Case
28-PLCC
Rohs Compliant
No

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TRI-STATE Test Circuits and Timing Diagrams
Applications Information
OPERATION
1.0 RATIOMETRIC CONVERSION
The ADC0808, ADC0809 is designed as a complete Data
Acquisition System (DAS) for ratiometric conversion systems.
In ratiometric systems, the physical variable being measured
is expressed as a percentage of full-scale which is not nec-
essarily related to an absolute standard. The voltage input to
the ADC0808 is expressed by the equation
A good example of a ratiometric transducer is a potentiometer
used as a position sensor. The position of the wiper is directly
proportional to the output voltage which is a ratio of the full-
scale voltage across it. Since the data is represented as a
V
V
V
D
D
D
IN
fs
Z
X
MAX
MIN
= Zero voltage
= Full-scale voltage
= Data point being measured
= Input voltage into the ADC0808
= Minimum data limit
= Maximum data limit
t
t
1H
H1
, C
, C
t
1H
L
L
, t
= 10 pF
= 50 pF
H1
FIGURE 8. TRI-STATE Test Circuits and Timing Diagrams
567220
567218
567219
(1)
9
proportion of full-scale, reference requirements are greatly
reduced, eliminating a large source of error and cost for many
applications. A major advantage of the ADC0808, ADC0809
is that the input voltage range is equal to the supply range so
the transducers can be connected directly across the supply
and their outputs connected directly into the multiplexer in-
puts, (Figure 9).
Ratiometric transducers such as potentiometers, strain
gauges, thermistor bridges, pressure transducers, etc., are
suitable for measuring proportional relationships; however,
many types of measurements must be referred to an absolute
standard such as voltage or current. This means a system
reference must be used which relates the full-scale voltage to
the standard volt. For example, if V
full-scale range is divided into 256 standard steps. The small-
est standard step is 1 LSB which is then 20 mV.
2.0 RESISTOR LADDER LIMITATIONS
The voltages from the resistor ladder are compared to the
selected into 8 times in a conversion. These voltages are
coupled to the comparator via an analog switch tree which is
referenced to the supply. The voltages at the top, center and
bottom of the ladder must be controlled to maintain proper
operation.
The top of the ladder, Ref(+), should not be more positive than
the supply, and the bottom of the ladder, Ref(−), should not
be more negative than ground. The center of the ladder volt-
t
t
0H
H0
, C
, C
t
0H
L
L
, t
= 10 pF
= 50 pF
H0
CC
=V
REF
567223
567221
=5.12V, then the
567222
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