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Inovance H3U Series - Terminal Block Handling and Lithium Cell

Inovance H3U Series
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12
Instructions Lookup Sheet
Type
Model Supported
Page
H2U-XP H3U
LD>=
LD contact comparison larger
than or equal to
84
LD<=
LD contact comparison smaller
than or equal to
84
AND=
AND contact comparison equal
to
86
AND>
AND contact comparison larger
than
86
AND<
AND contact comparison
smaller than
86
AND<>
AND contact comparison not
equal to
86
AND>=
AND contact comparison larger
than or equal to
86
AND<
AND contact comparison
smaller than or equal to
86
OR=
OR contact comparison equal
to
87
OR>
OR contact comparison larger
than
87
OR<
OR contact comparison smaller
than
87
OR<>
OR contact comparison not
equal to
87
OR>=
OR contact comparison larger
than or equal to
87
OR<=
OR contact comparison smaller
than or equal to
87
LD& LD logical AND operation × 88
LD| LD logical OR operation × 88
LD^ LD logical XOR operation × 883
AND& LD logical AND operation × 89
AND| AND logical OR operation × 89
AND^ AND logical XOR operation × 89
OR& OR logical AND operation × 90
OR| OR logical OR operation × 90
OR^ OR logical XOR operation × 90
FLD>
Conductive when oating point
number > comparative state
contact S1 > S2
× 91
FLD>=
Conductive when oating point
number >= comparative state
contact S1 S2
× 91
FLD <
Conductive when oating point
number < comparative state
contact S1 < S2
× 91
FLD<=
Conductive when oating point
number <= comparative state
contact S1 S2
× 91
FLD =
Conductive when oating point
number = comparative state
contact S1 = S2
× 91
FLD<>
Conductive when oating point
number <> comparative state
contact S1 S2
× 91
Type
Model Supported
Page
H2U-XP H3U
FAND >
Conductive when oating point
number > comparative AND
state contact S1 > S2
× 92
FAND>=
Conductive when oating point
number >= comparative AND
state contact S1 S2
× 92
FAND<
Conductive when oating point
number < comparative AND
state contact S1 < S2
× 92
FAND<=
Conductive when oating point
number <= comparative AND
state contact S1 S2
× 92
FAND=
Conductive when oating point
number = comparative AND
state contact S1 = S2
× 92
FAND<>
Conductive when oating point
number <> comparative AND
state contact S1 S2
× 92
FOR>
Conductive when oating point
number > comparative OR state
contact S1 > S2
× 93
FOR>=
Conductive when oating point
number >= comparative OR
state contact S1 S2
× 93
FOR<
Conductive when oating point
number < comparative OR state
contact S1 < S2
× 93
FOR<=
Conductive when oating point
number <= comparative OR
state contact S1 S2
× 93
FOR =
Conductive when oating point
number = comparative OR state
contact S1 = S2
× 93
FOR<>
Conductive when oating point
number <> comparative OR
state contact S1 S2
× 93
LDZ>
Conductive when absolute value
> comparative state contact |S1
– S2| > |S3|
× 94
LDZ>=
Conductive when absolute value
>= comparative state contact
|S1 – S2| |S3|
× 94
LDZ<
Conductive when absolute value
< comparative state contact |S1
– S2| < |S3|
× 94
LDZ<=
Conductive when absolute value
<= comparative state contact
|S1 – S2| |S3|
× 94
LDZ=
Conductive when absolute value
= comparative state contact |S1
– S2| = |S3|
× 94
LDZ<>
Conductive when absolute value
<> comparative state contact
|S1 – S2| |S3|
× 94
ANDZ>
Conductive when absolute
value > comparative AND state
contact |S1 – S2| > |S3|
× 95

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