SMC Corporation of America
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Search Results "CLG1FN40-500-E"

+ 1 () (=)(=) 1 / 43 No.LFE*-OMY0008 ( ( ( ( ) ) ) ) 1 1 1 1 1 1 1 1 1 [F82](54 ) OFF 44 No.LFE*-OMY0008 [F20] 45 No.LFE*-OMY0008 [F22] (5V)(20mA) [F22] [AnA] [AnA][-] OFF ON OFF ON 5V 20mA 10% [V] [V] [V] [V] [L/min] [L/min] [L/min] [L/min] 20L/min( 20L/min( 20L/min( 20L/min( 1 1 1 1-5V 5V 5V 5V ) ) ) ) [F22] 46 No.LFE*-OMY0008 [F30] OFF 2 5 100 24 5 5 100 500

Make sure to connect a speed controller and adjust it to a speed of 500 mm/s or less to operate the cylinder.

600 500 400 300 200 100 0 SQ2000 2.4 0.14 0.75 3.1 0.18 0.71 It is when the cylinder is extending that is meter-out controlled by speed controller which is directly connected with cylinder, and its needle valve with being fully open.

When piping, apply a spanner to the piping section of the sensor. 5 6 Safety Instructions PSE5 #-28 Current output: 4 to 20 mA Allowable load impedance: 500 or less (at 24 VDC) 100 or less (at 12 VDC) Wiring Warning Attaching the connector to the sensor wire Strip the sensor wire as shown below. Do not cut the insulation.

Make sure to connect a speed controller and adjust it to a speed of 500 mm/s or less to operate the cylinder.

, 350, 400, 450, 500, 600, 700, 800 12-REA40 12-REA50 50 1300 Non-lube 200, 250, 300, 350, 400, 450, 500, 600, 700, 800, 900, 1000 63 12-REA63 Note 1) Stroke exceeding the standard stroke but below the maximum manufacturable stroke is available as special orders.

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2

25 to 85C (with no freezing and condensation)1000 VAC for 1 min. between external terminal and case50M or more (500 VDC Mega) between external terminal and case10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.490 m/s2 in X, Y, Z directions 3 times each1000 Vp-p, Pulse width 1 ?s, Rise time 1 ns470 g3/8, 1/2