
290
The value for the Referenced FB parameter references the block number of an already-programmed analog
math function block.
Description of the function
The analog math error detection block sets the output when the referenced analog math function block has
an error. You can program the function to set the output on a zero division error, an overflow error, or when
either type of error occurs.
If you select the automatically reset checkbox, the output is reset prior to the next execution of the function
block. If not, the output retains its state until the analog math error detection block is reset with the R
parameter.
In any scan cycle, if the referenced analog math function block executes before the analog math error
detection function block, the error is detected in the same scan cycle. if the referenced analog math function
block executes after the analog math error detection function block, the error is detected in the next scan
cycle.
Analog math error detection logic table
In the table below, Error to Detect represents the parameter of the analog math error detection instruction
that selects which type of error to detect. Zero represents the zero division bit set by the analog math
instruction at the end of its execution: 1 if the error occurred, 0 if not. OF represents the overflow bit set by
the analog math instruction: 1 if the error occurred, 0 if not. Zero division OR Overflow represents the logical
OR of the zero division bit and the overflow bit of the referenced analog math instruction. Output (Q)
represents the output of the analog math error detection function. An “x” indicates that the bit can be either
0 or 1 with no influence on the output.
Error to
Detect
zero
of
Output
Zero
division
1
X
1
Zero
division
0
X
0
Overflow
X
1
1
Summary of Contents for EXM-12DC-DA-R-HMI
Page 15: ...15 Application 2 Home Security Application 3 Remote monitoring of product level in a tank...
Page 35: ...35 How to change the phone book include phone number and Email address Only for 4G version...
Page 38: ...38...
Page 49: ...49 Step C Download voice section Click menu Tool Record Click Hardware Detect button...
Page 66: ...66 You can read the parameters from the PLC...
Page 68: ...68...
Page 75: ...75 Modbus Poll works as TCP client...
Page 78: ...78 TCP Sever 192 168 0 227 port 8004 is ok TCP Sever 192 168 0 227 port 8005 is ok...
Page 79: ...79 TCP Sever 192 168 0 227 port 8006 is ok TCP Sever 192 168 0 227 port 8007 is ok...
Page 80: ...80 TCP Sever 192 168 0 227 port 8008 is ok TCP Sever 192 168 0 227 port 8009 is ok...
Page 84: ...84 3 Click Read button to read web server configure The default configuration is as follows...
Page 102: ...102 Slave1 IP 192 168 0 101 TCP server port 8001 Slave2 IP 192 168 0 102 TCP server port 8002...
Page 103: ...103 Slave3 IP 192 168 0 103 TCP server port 8003 Step 2 Program in master and slave...
Page 115: ...115 Slave1 IP 192 168 0 101 UDP Server port 8001 Slave2 IP 192 168 0 102 UDP Server port 8002...
Page 128: ...128 Network settings You can view the network parameters in such table...
Page 135: ...135 3 Select Ethernet option 4 To search PLC s IP by clicking Search button...
Page 145: ...145 B005 Read the I1 I4 status from the slave1 to the F11 F14 of the master Setting as follows...
Page 146: ...146 B006 Read the I1 IA status from the slave2 to the F21 F24 of the master Setting as follows...
Page 147: ...147 B009 Read the AF1 value from the slave1 to the AF1 of the master Setting as follows...
Page 148: ...148 B010 Read the AF1 value from the slave2 to the AF2 of the master Setting as follows...
Page 260: ...260 E F digital flag status F AF analog flag value...
Page 261: ...261 G M status H AM value...
Page 332: ...332 For example If the Memory Read block had been triggered the Q1 of ELC 12 CPU will be set 1...
Page 411: ...411 Establish the communication between eSmsConfig and EXM WIFI Unit...
Page 426: ...426 7 6 How to configure WIFI connection TCP protocol among EXM WIFI CPUs...
Page 432: ...432 B005 Read the I1 I4 status from the slave1 to the F11 F13 of the master Setting as follows...
Page 433: ...433 B006 Read the I1 I4 status from the slave2 to the F21 F23 of the master Setting as follows...
Page 434: ...434 B009 Read the AF1 value from the slave1 to the AF1 of the master Setting as follows...
Page 435: ...435 B010 Read the AF1 value from the slave2 to the AF2 of the master Setting as follows...
Page 436: ...436...