M262 Logic/Motion Controller system components are designed as Zone B, Class A industrial equipment according to IEC/CISPR Publication 11. If they are used in environments other than those described in the standard, or in environments that do not meet the specifications in this manual, the ability to meet electromagnetic compatibility requirements in the presence of conducted and/or radiated interference may be reduced.
All M262 Logic/Motion Controller system components meet European Community (CE) requirements for open equipment as defined by IEC/EN 61131-2. You must install them in an enclosure designed for the specific environmental conditions and to minimize the possibility of unintended contact with hazardous voltages. Use metal enclosures to improve the electromagnetic immunity of your M262 Logic/Motion Controller system. Use enclosures with a keyed locking mechanism to minimize unauthorized access.
All the M262 Logic/Motion Controller module components are electrically isolated between the internal electronic circuit and the input/output channels within the limits set forth and described by these environmental characteristics. For more information on electrical isolation, see the technical specifications of your particular controller found later in the current document. This equipment meets CE requirements as indicated in the table below. This equipment is intended for use in a Pollution Degree 2 industrial environment.
WARNING | |
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The following table shows the general environmental characteristics:
Characteristic |
Minimum Specification |
Tested Range |
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---|---|---|---|---|
Standard compliance |
IEC/EN 61131-2 UL/CSA 61010-1, -2-201 |
– |
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Ambient operating temperature |
– |
Horizontal installation |
-20...60 °C (-4...140 °F) |
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– |
Vertical installation |
-20...50 °C (-4...122 °F) |
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– |
Flat installation |
-20...45 °C (-4...113 °F) |
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Transport/storage temperature |
– |
-40...85 °C (-40...185 °F) |
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Relative humidity |
– |
Transport and storage |
5...95 % (non-condensing) |
|
– |
Operation |
5...95 % (non-condensing) |
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Degree of pollution |
IEC/EN 60664-1 |
2 |
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Degree of protection |
IEC/EN 61131-2 |
IP20 with protective covers in place |
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Corrosion immunity |
– |
Atmosphere free from corrosive gases |
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Operating altitude |
– |
0...2000 m (0...6560 ft) |
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Storage altitude |
– |
0...3000 m (0...9843 ft) |
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Vibration resistance |
IEC/EN 61131-2 |
Panel mounting or mounted on a top hat section rail (DIN rail) |
3.5 mm (0.13 in) fixed amplitude from 2...8.4 Hz 9.8 m/s2 (32.15 ft/s2) (1 gn) fixed acceleration from 8.4...200 Hz |
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Mechanical shock resistance |
– |
147 m/s2 (482.28 ft/s2) (15 gn) for a duration of 11 ms |
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NOTE: The tested ranges may indicate values beyond that of the IEC Standard. However, our internal standards define what is necessary for industrial environments. In all cases, we uphold the minimum specification if indicated.
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The M262 Logic/Motion Controller system meets electromagnetic susceptibility specifications as indicated in the following table:
Characteristic |
Minimum Specification |
Tested Range |
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---|---|---|---|---|---|
Electrostatic discharge |
IEC/EN 61000-4-2 IEC/EN 61131-2 |
8 kV (air discharge) 4 kV (contact discharge) |
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Radiated electromagnetic field |
IEC/EN 61000-4-3 IEC/EN 61131-2 |
10 V/m (80...1000 MHz) 3 V/m (1.4...2 GHz) 1 V/m (2...3 GHz) |
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Fast transients burst |
IEC/EN 61000-4-4 IEC/EN 61131-2 |
24 Vdc main power lines |
2 kV (CM1 and DM2) |
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24 Vdc I/Os |
2 kV (clamp) |
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Relay output |
1 kV (clamp) |
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Digital I/Os |
1 kV (clamp) |
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Communication line |
1 kV (clamp) |
||||
Surge immunity |
IEC/EN 61000-4-5 IEC/EN 61131-2 |
– |
CM1 |
DM2 |
|
DC Power lines |
0.5 kV |
0.5 kV |
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Relay Outputs |
– |
– |
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24 Vdc I/Os |
– |
– |
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Shielded cable (between shield and ground) |
1 kV |
– |
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Induced electromagnetic field |
IEC/EN 61000-4-6 IEC/EN 61131-2 |
10 Vrms (0.15...80 MHz) |
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Conducted emission |
IEC 61000-6-4 IEC/EN 61131-2 |
|
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Radiated emission |
IEC 61000-6-4 IEC/EN 61131-2 |
30...230 MHz: 40 dBμV/m QP 230...1000 MHz: 47 dBμV/m QP |
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1 Common Mode 2 Differential Mode
NOTE: The tested ranges may indicate values beyond that of the IEC Standard. However, our internal standards define what is necessary for industrial environments. In all cases, we uphold the minimum specification if indicated.
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