Rockwell Automation Allen-Bradley 1606-XLERED20 Installation Instructions Download Page 2

 

 

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The information in this document is believed to be accurate and reliable and may change without notice.

 

Rockwell Automation maintains current product environmental compliance information on its website at rok.auto/pec. 

Allen-Bradley, Rockwell Software, and Rockwell Automation are trademarks of Rockwell Automation, Inc. Trademarks not belonging to Rockwell Automation are property of their respective companies. 

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Americas: Rockwell Automation, 1201 South Second Street, Milwaukee, WI 53204-2496 USA, Tel: (1) 414.382.2000, Fax. (1) 414.382.4444 
Europe/Middle East/Africa: Rockwell Automation NV, Pegasus Park, De Kleetlaan 12a, 1831 Diegem, Belgien, Tel: (32) 2663.0600, Fax (32) 2663.0640 
Asia Pacific: Rockwell Automation,Level 14, Core F, Cyberport 3, 100 Cyberport Road, Hong Kong, Tel: (852) 2887.4778, Fax (852) 2508.1846 
Turkey: Rockwell Otomasyon Ticraet A.

Ş

., Kar Plaza 

İş

 Merkezi E Blok Kat:6 34752 

İ

çerenköy, Istanbul, Tel: (90) 216.5698400  (EEE Yönetmeli

ğ

ine Uygundur) 

 

Publication 1606-IN071A-EN-E - June 2020 

DIR 10005140969 (Version 01)

Copyright © 2020 Rockwell Automation, Inc. All Rights Reserved..

 

 
The device is designed as “Class of Protection III” equipment according to IEC 61140. A PE (ground) connection is not 

required. However, connecting the chassis ground terminal to ground can be beneficial to gain a high EMI immunity. 
The device is designed for convection cooling and does not require an external fan. Do not obstruct airflow and do not cover 

ventilation grid! 
The device is designed for altitudes up to 5000m (16400ft). Above 2000m (6560ft) a reduction in output current is required. 
Keep the following minimum installation clearances: 40mm on top, 20mm on the bottom, 5mm left and right side. Increase 

the 5mm to 15mm in case the adjacent device is a heat source. When the device is permanently loaded with less than 50%, 

the 5mm can be reduced to zero. Under special circumstances clearances can be reduced. See details in the product 

datasheet. 
The maximum surrounding air temperature is +70°C (+158°F). The operational temperature is the same as the ambient or 

surrounding air temperature and is defined 2cm below the device. 
The device is designed to operate in areas between 5% and 95% relative humidity. 
 

Installation Instructions for Hazardous Location Areas 

The device is suitable for use in Class I Division 2 Groups A, B, C, D locations and for use in Group II Category 3 (Zone 2) 

environments. 
Classification: ATEX: EPS 11 ATEX 1 312 X, II 3G EX ec IIC T4 Gc / IECEx EPS 15.0074X 

WARNING EXPLOSION HAZARDS! 

Substitution of components may impair suitability for this environment. 
Do not disconnect the device unless power has been switched off or the area is known to be non-hazardous. 
The equipment shall be installed in an enclosure that provides a degree of protection not less than IP54 in accordance with 

EN 60079-7 or EN 60079-15. 
 

Functional Description 

The device can supply any kind of loads, including unlimited capacitive and inductive loads. 
Do not apply return voltages from the load to the output higher than 40Vdc. 

 

Functional Diagram 

+

-

+

-

+

-

Input 1

control

control

Input 2

Chassis
Ground

Output

 

 

Wiring Scheme - 1+1 Redundancy 

L1
L2

PE

L3

Load

Failure

Monitor

I

I

I

I

I

I

opt

io

nal

Power

Supply

Output

DC-

OK

L1 L2 L3

Input

+

-

+

-

o o

Power

Supply

Output

DC-

OK

L1 L2 L3

Input

+

-

+

-

o o

Redundancy

Module

Output

Input

 1

Input

2

+

-

+

-

+

-

 

Wiring Scheme - N+1 Redundancy 

L1
L2

PE

L3

Load

Failure

Monitor

I

I

I

op

tion

al

I

I

I

I

I

I

o

pt

ion

al

I

I

I

Power

Supply

Output

DC-

OK

L1 L2 L3

Input

+

-

+

-

o o

Power

Supply

Output

DC-

OK

L1 L2 L3

Input

+

-

+

-

o o

Power

Supply

Output

DC-

OK

L1 L2 L3

Input

+

-

+

-

o o

Power

Supply

Output

DC-

OK

L1 L2 L3

Input

+

-

+

-

o o

Redundancy

Module

Output

Input

 1

Input

2

+

-

+

-

+

-

Redundancy

Module

Output

Input

 1

Input

2

+

-

+

-

+

-

 
 
 

 

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