2-2
Chapter 2: Installation and Wiring
User’s Manual Pub. 0300181-07 Rev. A
Industrial and Commercial Power Systems
•
Noise Reduction Techniques in Electronic Systems
, by Henry W. Ott;
published by Wiley-Interscience of New York in 1976
Section 2.1
Prevent
Electrostatic
Discharge
WARNING
Electrostatic discharge can damage integrated circuits or semiconductors if
you touch analog module card bus connector pins or the terminal block on
the module. Follow these guidelines when you handle the module:
•
Touch a grounded object to discharge static potential.
•
Wear an approved wrist-strap grounding device.
•
Do not touch the bus connector or connector pins.
•
Do not touch circuit components inside the module.
•
If available, use a static-safe workstation.
•
When it is not in use, keep the module in its static-shield bag.
Section 2.2
EMC Directive
This product is tested to meet Council Directive 2014/30/EU Electromagnetic
Compatibility (EMC) and the following standards, in whole or in part,
documented in a technical construction file:
•
EN 61000-6-4 Electromagnetic compatibility (EMC)–Part 6-4: Generic
standards–Emission standard for industrial environments.
•
EN 61000-6-2 Electromagnetic compatibility (EMC)–Part 6-2: Generic
standards–Immunity for industrial environments.
UKCA Electromagnetic Compatibility Regulations 2016
•
BS EN 61131-2, BS EN 61000-6-4, BS EN 61000-6-2.
This product is intended for use in an industrial environment.
Section 2.3
Power Requirements
The module receives its power through the SLC-500 chassis backplane from the
fixed or m5 VDC and +24 VDC chassis power supply. The maximum
current drawn by the module is shown in the table below:
Model
Voltage (VDC) Current (mA)
1746sc-CTR8 5
225
24
125
1746sc-CTR4 5
175
24
75
Содержание SLC 500
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