<7. External Input and Output>
7-7
IM 12K01B02-01E
Bit4:
calibration
Bit5:
spare
Bit6:
sub, initialization
Bit7:
sampling output hold
Bit8 to 16:
spare
Bit17:
alarm 001 (warm-up)
Bit18:
spare
Bit19:
alarm 003 (cell-motor operation error)
Bit20:
alarm 004 (inside communication error)
Bit21:
alarm 005 (no sample)
Bit22:
alarm 006 (inside communication error (I2C))
Bit23:
alarm 007 (power ON alarm)
Bit24:
alarm 008 (battery cell-motor alarm)
Bit25:
alarm hold 009 (light source malfunction)
Bit26 to 31:
spare
Example) If “DataStat” is “00800006”;
1. Convert the hexadecimal notation to a binary notation.
After converting, 0 to 0000, 0 to 0000, 8 to 1000, and so on,
“0000/0000/1000/0000/0000/0000/0000/0110” is obtained.
2. Apply the binary notation value to the bit table from the left.
Bit
31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
8
7
6
5
4
3
2
1
0
Binary notation value
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
0
Hexadecimal notation value
0
0
8
0
0
0
0
6
“1” in binary notation is ON. Data status is as follows:
Bit23:
alarm 007 (power ON alarm)
Bit2:
with NO power
Bit1:
maintenance
*2: Data alarm
Determine by conversion using the same method as *1
Bit0:
alarm 0n0 (abnormal upper limit of concentration)
Bit1:
alarm 0n1 (abnormal lower limit of concentration)
Bit2:
spare
Bit3:
spare
Bit4:
spare
Bit5:
alarm 0n5 (zero calibration error)
Bit6:
alarm 0n6 (span calibration error)
Bit7 to 11:
spare
Bit12:
maintenance output data
Bit13:
warm-up output data
Bit14:
spare
Bit15:
alarm output data
Содержание UV700G
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