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Quantity adjustment on next page Series S-70-300 Optional Plunger Return Spring: SP50 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 = 35 Watts Force at 0.10" (2.5 mm) stroke: 740.0 Oz (20979 gr) Force at 1.00" (25.4 mm) stroke: 160.0 Oz (4536 gr) Force at 3.00" (76.2 mm) stroke: 54.0 Oz (1531 gr) Available for voltages equal to or greater than 9 Volts DC I = Intermittent (50%) Duty Cycle, Maximum On-Time = 1700 Seconds Approximate Input Power = 70 Watts Force at 0.10" (2.5 mm) stroke: 960.0 Oz (27216 gr) Force at 1.00" (25.4 mm) stroke: 256.0 Oz (7258 gr) Force at 3.00" (76.2 mm) stroke: 104.0 Oz (2948 gr) Available for voltages equal to or greater than 12 Volts DC L = Long Pulse (25%) Duty Cycle, Maximum On-Time = 580 Seconds Approximate Input Power = 140 Watts Force at 0.10" (2.5 mm) stroke: 1050.0 Oz (29768 gr) Force at 1.00" (25.4 mm) stroke: 390.0 Oz (11057 gr) Force at 3.00" (76.2 mm) stroke: 210.0 Oz (5954 gr) Force at 3.75" (95.3 mm) stroke: 105.0 Oz (2977 gr) Available for voltages equal to or greater than 18 Volts DC P = Pulse (10%) Duty Cycle, Maximum On-Time = 190 Seconds Approximate Input Power = 350 Watts Force at 0.10" (2.5 mm) stroke: 1340.0 Oz (37989 gr) Force at 1.00" (25.4 mm) stroke: 640.0 Oz (18144 gr) Force at 3.00" (76.2 mm) stroke: 416.0 Oz (11794 gr) Force at 4.25" (108.0 mm) stroke: 150.0 Oz (4253 gr) Available for voltages equal to or greater than 30 Volts DC Tubular Solenoid, Pull type, 3.00"(76 mm)DIA X 7.00"(178 mm)L. Mounting: Threaded front end and matching 1.75"-12 nut. Minimum Heat Sink: Equivalent of 12.0" x 12.0" x 0.125" (305 mm x 305 mm x 3.2 mm) Aluminum 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 = solenoid resistance (ohms) I = current used by solenoid (amperes) P = input power to solenoid (watts) Quantity adjustment on next page |