113
9. Write the
value
from
0x0300
to
0x03FF
sequentially to the
Calibration Command and Data register
(BASE+18), and get
each bipolar range’s data by the software trigger A/D method.
Repeat this procedure 1000 times then average those data for each
value
. See whether the average data is close to 65534.6. If so, go
to the next step. Otherwise, you must change the
value
and repeat
the whole procedure in this step again until the average data is
close to 65534.6.
10. Repeat steps 2 to 9 several times.
Table E-1: A/D binary code table
A/D code
Mapping Voltage
Hex.
Dec.
Bipolar
Unipolar
0000h
0
-FS
0
7FFFh
32767
–1 LSB
0.5 FS – 1
LSB
8000h
32768
0
0.5 FS
FFFFh
65535
+FS – 1 LSB
FS – 1 LSB
Note
n
1 LSB = FS / 65535 for Unipolar
(For example: 1LSB = 10 / 65535, while the range is 0 V to10 V)
n
1 LSB = +FS / 32768 for Bipolar
(For example: 1LSB = 5 / 32768, while the range is –5 V to +5 V)
Summary of Contents for MIC-3716
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Page 8: ...viii Table E 2 D A binary code table 117...
Page 11: ...1 Introduction 1 CHAPTER...
Page 17: ...7 Fig 1 1 Installation Flow Chart...
Page 21: ...11 Installation and Configuration CHAPTER 2...
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Page 41: ...31 Signal Connections CHAPTER 3...
Page 44: ...34 Fig 3 1 I O connector pin assignments for the MIC 3716...
Page 50: ...40...
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Page 55: ...45 Software Programming Overview CHAPTER 4...
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Page 61: ...51 Calibration CHAPTER 5...
Page 77: ...67 Appendixes...
Page 81: ...71 Appendix B Block Diagrams...
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