RM0018N15 HAMMOND POWER SOLUTIONS, RM0018N15 Datasheet - Page 4

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RM0018N15

Manufacturer Part Number
RM0018N15
Description
Line Reactor
Manufacturer
HAMMOND POWER SOLUTIONS
Series
RMr
Datasheet

Specifications of RM0018N15

Suppressor Type
Line Reactor
Power Consumption
29W
Supply Voltage Range
240VAC To 600VAC
Output Current
18A
Inductance
1.5mH
Switching Frequency
20kHz
Width
6.3"
Height
4.8"
No. Of Phases
Three
Brand/series
RM Series
Current, Rating
18 A
Frequency, Operating
60 Hz
Impedance
3%
Power, Rating
5 HP
Standards
UL File No.: E61431, CSA File No.: LR 3902 and CE Mark (IEC 61558- 2-20-2000:)
Voltage, Rating
240 VAC
Mounting Type
PCB Surface
Rohs Compliant
Yes
External Height
4.80"
Terminal Type
PCB Surface Mount
Phase Type
3 Phase
Length
3.55"
Current Rating
18A
External Depth
3.55"
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
SECTION 3
Why Choose A Line Reactor cont’d...
IMPEDANCE RATINGS
SELECTION - 3% OR 5% IMPEDANCE REACTOR
for 3% impedance are ideal for absorbing normal line spikes and motor current surges, and will prevent most
nuisance line tripping of circuit protection devices or equipment.
Additionally, if the application is overseas, or when it is necessary to comply to IEEE 519, the higher impedance
reactor is recommended. These units may also be selected to further reduce harmonic current and frequencies if
desirable, or to both extend motor life or diminish motor noise.
LINE REACTORS OR DRIVE ISOLATION TRANSFORMERS ?
up or step down voltage, use a drive isolation transformer. Hammond carries an extensive line of drive isolation
transformers in stock. Refer to Section 4 for information on Drive Isolation transformers.
© Hammond Power Solutions Inc.
Choose 3% impedance reactors to satisfy most solid state applications in North America. Reactors rated
Where considerably higher line disturbances are present, a 5% impedance reactor may be required.
When true line isolation is required, such as limiting short circuit current, or where it is necessary to step
Z = IMPEDANCE (three phase)
VD = VOLTAGE DROP ACROSS REACTOR
VS = VOLTAGE SUPPLY FOR RATED CURRENT TO FLOW THROUGH REACTOR
Defi nition:
% Z = (VD x 100) x 3
VS
112
RM SERIES LINE REACTORS
Data subject to change without notice.

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