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Electromagnet, Tubular
item #: ELMATU025017

Made in USA



Availability:   in stock - available for immediate shipment

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Unit Price:   
1-4 pieces: $35.15   
5-9 pieces: $29.00   
10-24 pieces: $24.10   
25-49 pieces: $20.13   
50-99 pieces: $16.93   
Prices for larger quantities may be obtained by contacting us or by clicking the RFQ below.  
OEM quantities, more than 100 units or special instructions:
  
select a DC voltage
06
09
12
18
24
30
36
48
72
120

select a duty cycle
C
I
L
P
Special Comments
   


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If the internal wire gauge for winding is predetermined or if the "voltage" is different from the above, enter the desired information in the above box labeled "Special Comments" and select the closest "voltage" and "duty cycle".

C = Continuous (100%) Duty Cycle, Maximum On-Time = Infinite
Approximate Input Power = 1.25 Watts
Holding force against cold rolled steel with a thickness of:
0.125” (3.2 mm): 9.1 Lb (41 N)
0.063” (1.6 mm): 8.8 Lb (39 N)
Available for voltages equal to or less than 48 Volts DC

I = Intermittent (50%) Duty Cycle, Maximum On-Time = 500 Seconds
Approximate Input Power = 2.5 Watts
Holding force against cold rolled steel with a thickness of:
0.125” (3.2 mm): 12.4 Lb (55 N)
0.063” (1.6 mm): 10.9 Lb (49 N)
Available for voltages equal to or less than 72 Volts DC

L = Long Pulse (25%) Duty Cycle, Maximum On-Time = 150 Seconds
Approximate Input Power = 5 Watts
Holding force against cold rolled steel with a thickness of:
0.125” (3.2 mm): 16.7 Lb (74 N)
0.063” (1.6 mm): 14.0 Lb (62 N)

P = Pulse (10%) Duty Cycle, Maximum On-Time = 40 Seconds
Approximate Input Power = 12.5 Watts
Holding force against cold rolled steel with a thickness of:
0.125” (3.2 mm): 23.1 Lb (103 N)
0.063” (1.6 mm): 17.6 Lb (78 N)

Tubular Electromagnet, 1.00" (25 mm) DIA X 0.66" (17 mm) L.
Mounting: 6-32 threaded hole.
Minimum Heat Sink: Equivalent of 1.5” x 1.5" x 0.125" (38 mm x 38 mm x 3.2 mm) metal Plate
All values are at 25ºC.

Duty Cycle= on time/(on time+off time) in one cycle of operation when voltage is being cycled on and off.

V = R × I
P = V × I = V² /R = R × I²

V = input D.C. voltage (volts)
R = electromagnet resistance (ohms)
I = current used by electromagnet (amperes)
P = input power to electromagnet (watts)



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