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MP8799 датащи(PDF) 8 Page - Exar Corporation

номер детали MP8799
подробное описание детали  CMOS Very Low Power, 1 MSPS, 10-Bit Analog-to-Digital Converter with 8-Channel Mux
PDF  20 Pages
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производитель  EXAR [Exar Corporation]
домашняя страница  http://www.exar.com
Logo EXAR - Exar Corporation

MP8799 датащи(HTML) 8 Page - Exar Corporation

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MP8799
8
Rev. 3.00
Figure 7. gives a visual definition of the INL error. The chart
shows a 3-bit converter transfer curve with greatly exaggerated
DNL errors to show the deviation of the real transfer curve from
the ideal one.
After a tester has measured all the transition voltages, the
computer draws a line parallel to the ideal transfer line. By defi-
nition the best fit line makes equal the positive and the negative
INL errors. For example, an INL error of –1 to +2 LSB’s relative
to the Ideal Line would be +1.5 LSB’s relative to the best fit line.
7
6
5
4
3
2
1
Figure 7. INL Error Calculation
Output
Codes
Analog Input (Volt)
Best Fit Line
EFS
EZS
LSB
Ideal Transfer Line
Real Transfer Line
INL
Clock and Conversion Timing
A system will clock the MP8799 continuously or it will give
clock pulses intermittently when a conversion is desired. The
timing of
Figure 8a shows normal operation, while the timing of
Figure 8b keeps the MP8799 in balance and ready to sample the
analog input.
Figure 8. Relationship of Data to Clock
CLOCK
DATA
b. Single sampling
N
N
BALANCE
CLOCK
DATA
a. Continuous sampling
N
N+1
N
N+1
Analog Input
The MP8799 has very flexible input range characteristics.
The user may set VREF(+) and VREF(–) to two fixed voltages and
then vary the input DC and AC levels to match the VREF range.
Another method is to first design the analog input circuitry and
then adjust the reference voltages for the analog input range.
One advantage is that this approach may eliminate the need for
external gain and offset adjust circuitry which may be required
by fixed input range A/Ds.
The MP8799’s performance is optimized by using analog in-
put circuitry that is capable of driving the AIN input. Figure 9.
shows the equivalent circuit for AIN.
300
15 pF
Figure 9. Analog Input Equivalent Circuit
AVDD
AIN
40
φ
S
60 pF
87 pF
160
4
1 pF
10 pF
Channel
Selection
8
Control
R Series
40
W
R MUX
500
W
87 pF
1/2 [ VREF(+)
+ VREF(–) ]
φS
φB
4 pF
+



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