Table 29: Io-Link Product 765-4102/0100-0000 - Currents In Supply Cable 1; Table 30: Io-Link Product 765-4102/0100-0000 - Currents In Supply Cable 2; Table 31: Rules For Supply Cables 1 And 2 - WAGO 765-4102/0100-0000 User Manual

8-port-io-link master class b; profinet; 24 v dc; 2.0 a; 8 × m12 connection
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765-4102/0100-0000
Product-Specific Information
For supply cable 1 of the IO-Link product 765-4102/0100-0000, the currents declared in
the following table must be taken into account:
Current
I
X31_1L
I
X32_1L
I
logic
I
,
X01_1L
I
,
X02_1L
I
module_1L
For supply cable 2 of the IO-Link product 765-4102/0100-0000, the currents declared in
the following table must be taken into account:
Current
I
X31_2L
I
X32_2L
I
,
X01_2L
I
,
X02_2L
I
module_2L
Operation of the 765-4102/0100-0000 product requires that the rules below for the cur-
rents in supply cables 1 and 2 be followed at all times:
Current
Total current for the supply cable
(rule 1)
Permissible current feedthrough
(rule 2)
Ports
Supply current on pin 1 (rule 3)
Signal current on pin 2/4 in normal
operation
(rule 3)
Signal current on pin 2/4 in overload
operation
(rule 3)
Product manual | Version: 2.1.0
8PORT IOL-B FLD PN DC 24V 2.0A
Table 29: IO-Link Product 765-4102/0100-0000 – Currents in Supply Cable 1
I
... ,
X08_1L
Table 30: IO-Link Product 765-4102/0100-0000 – Currents in Supply Cable 2
I
... ,
X08_2L
Description
Current to connection PWR IN (X31): current 1L+ / re-
verse current 1L−
Current to connection PWR OUT (X32): current 1L+ /
reverse current 1L−
Logic supply
Total current for supply cable 1 on port X0i (i.e. port
X01, X02, ... , X08) corresponds to the current I
on pin 3 (ground). This current is the sum of the cur-
rents on pins 1 and 4 of port X0i:
I
= I
X0i_1L
X0i_pin3_1L
Module current I
I
X08_pin3_1L
Description
Current to connection PWR IN (X31): current 2L+ / re-
verse current 2L−
Current to connection PWR OUT (X32): current 2L+ /
reverse current 2L−
Total current on port X0i (i.e. ports X01, X02, ... , X08)
for supply cable 2 corresponds to the current I
on pin 5 (ground). This current is the current on pin 2
of port X0i:
I
= I
X0i_2L
X0i_pin5_2L
Module current I
I
X08_pin5_2L
Supply Cable 1
I
≤ 16 A 
X31_1L
I
= I
+ I
I
X31_1L
logic
X32_1L +
module_1L
I
≤ 16 A − I
− I
X32_1L
logic
module_1L
Ports X01, ... , X08 (henceforth
summarized as port X0i with 1 ≤ i ≤
8)
Pins 1, 3 and 4
I
≤ 4 A
X0i_pin1_1L
I
≤ 2 A
X0i_pin2_1L
I
≤ 2 A
X0i_pin4_1L
I
≤ 2.4 A
X0i_pin2_1L
I
≤ 2.4 A
X0i_pin4_1L
= I
+ I
X0i_pin1_1L
X0i_pin4_1L
I
+ I
module_1L =
X01_pin3_1L
X02_pin3_1L
= I
X0i_pin2_2L
= I
+ I
module_2L
X01_pin5_2L
X02_pin5_2L

Table 31: Rules for Supply Cables 1 and 2

Supply Cable 2
I
≤ 16 A 
X31_2L
I
= I
+ I
X31_2L
X32_2L
module_2L
I
≤ 16 A − I
X32_2L
module_2L
Ports X01, ... , X08 (henceforth
summarized as port X0i with 1 ≤ i ≤
8)
Pins 2 and 5
I
≤ 4 A
X0i_pin1_2L
-
-
Planning
X0i_pin3_1L
+ ... +
X0i_pin5_2L
+ ... +
37

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