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Quantity adjustment on next page Series S-29-200 Optional Plunger Return Spring: SP30 and SP31 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 = 18 Watts Force at 0.10" (2.5 mm) stroke: 210.0 Oz (5954 gr) Force at 0.50" (12.7 mm) stroke: 60.0 Oz (1701 gr) Force at 1.00" (25.4 mm) stroke: 18.0 Oz (510 gr) Force at 1.40" (35.6 mm) stroke: 6.5 Oz (184 gr) I = Intermittent (50%) Duty Cycle, Maximum On-Time = 840 Seconds Approximate Input Power = 36 Watts Force at 0.10" (2.5 mm) stroke: 270.0 Oz (7655 gr) Force at 0.50" (12.7 mm) stroke: 110.0 Oz (3119 gr) Force at 1.00" (25.4 mm) stroke: 40.0 Oz (1134 gr) Force at 1.60" (40.6 mm) stroke: 7.5 Oz (213 gr) L = Long Pulse (25%) Duty Cycle, Maximum On-Time = 270 Seconds Approximate Input Power = 72 Watts Force at 0.10" (2.5 mm) stroke: 310.0 Oz (8789 gr) Force at 0.50" (12.7 mm) stroke: 155.0 Oz (4394 gr) Force at 1.00" (25.4 mm) stroke: 68.0 Oz (1928 gr) Force at 1.80" (45.7 mm) stroke: 6.5 Oz (184 gr) P = Pulse (10%) Duty Cycle, Maximum On-Time = 90 Seconds Approximate Input Power = 180 Watts Force at 0.10" (2.5 mm) stroke: 400.0 Oz (11340 gr) Force at 0.50" (12.7 mm) stroke: 255.0 Oz (7229 gr) Force at 1.00" (25.4 mm) stroke: 165.0 Oz (4678 gr) Force at 1.90" (48.3 mm) stroke: 9.0 Oz (255 gr) Tubular Solenoid, Pull type, 2.00" (51 mm) DIA X 2.85" (72 mm) L. Mounting: Threaded front end and matching 1"-14 nut. Minimum Heat Sink: Equivalent of 6.0" x 6.0" x 0.125" (152 mm x 152 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 |