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Page
2
First Printing:
02/05
Revised:
08/05
Revision
A
Publication
9387900990
Electrical Specifications
Input Voltage:
90 to 277 Vac, 90 to 300 Vdc
Input Frequency:
dc, 50 to 420 Hz
Input Current
ICRM-7:
9
Aac
ICRM-15:
18
Aac
Power Dissipation:
25 W
Physical Specifications
Temperature
Operating:
–25 to 70
°
C (–13 to 158
°
F)
Storage:
–40 to 70
°
C (–40 to 158
°
F)
Dimensions:
Refer to Figure 1
Weight:
227 g (8 oz)
Type Tests
Dielectric:
Withstands 2,000 Vac for one minute in accordance with IEC 60255-5.
Shock:
Withstands 15 G in three perpendicular planes in accordance with IEC 60255-21-1.
Vibration:
Tested in accordance with IEC 60255-21-2. Withstands 2 G in each of three mutually
perpendicular axes, swept over the range of 10 to 500 Hz for a total of six sweeps, 15
minutes each sweep.
Humidity:
Qualified to IEC 68-1, IEC 68-2-28.
Certifications
UL Recognition:
cURus recognition per UL Standard 508 and CSA Standard C22.2 No. 14.
CE Qualification:
This product meets or exceeds the standards required for distribution in the European
community.
INSTALLATION
The ICRM may be installed in any environment where the conditions do not exceed the capabilities listed in the
Specifications
section.
Mounting
For maximum cooling, the ICRM should be mounted on a vertical surface and oriented so that the ventilation
holes are located at the top and bottom of the unit.
Figure 1 shows the ICRM mounting dimensions. Mounting dimensions are identical for both ICRM models.
Dimensions are shown in inches with millimeters in parenthesis.
Connections
Figure 2 illustrates typical connections for an application using single-phase operating power. The ICRM is not
phase sensitive. Figure 3 illustrates typical connections for an application using three-phase operating power.
Table 2 lists the terminal connections for each voltage regulator that is compatible with the ICRM.
Table 2. ICRM Terminals Cross-Reference
ICRM Output Terminals
Voltage Regulator
A-OUT B-OUT C-OUT
AVC63-12,
AVC125-10 26 28 30
DECS-100
3 4 5
DECS-200
C2 C3 C4
CAUTION
Case may become hot during operation.