SMC Corporation of America
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Search Results "CY1L40TNH-1000-F7PSBPC"

Standard stroke Maximum manufacturable stroke (mm) Standard stroke (mm) Bore size (mm) Suffix for stroke adjusting unit 25 32 40 100, 200, 300, 400, 500, 600, 700, 800, 900, 1000 100, 200, 300, 400, 500, 600, 700, 800, 900, 1000 100, 200, 300, 400, 500, 600, 700, 800, 900, 1000 2000 2000 2000 Nil S 2 pcs. 1 pc.

G 25 20 RS H A 1 16 RZQ 0.5 10 6 MI W S 0.3 50 100 (460) 500 3000 1000 CEP1 MQML: Standard type MQMLH: High speed/High frequency type CE1 Maximum speed V (mm/s) CE2 Note) When a load is attached to the rod end, adjust the speed so that the maximum speed is no more than that shown in the graph for the corresponding load weight.

With Air Cushion: CXS Vertical mounting L L Mounting orientation m m up to 200 up to 1000 up to 400 up to 600 up to 800 Maximum speed (mm/s) Stroke (mm) All strokes 20 Selection graph 1 2 3 4 5 25 32 Horizontal mounting L Mounting orientation m m Refer to the caution notes below. up to 75 up to 10 up to 30 up to 50 Stroke (mm) up to 100 up to 1000 up to 800 up to 1000 up to 1000 up to 800

Fd up to 1000 FY B up to 1000 CJ1 up to 1000 up to 1000 FX CJP FT FE FZ CJ2 CM2 Rear flange/(G) C85 Port Cushion valve 4-FD Rear flange (mm) CG1 Bore size (mm) Stroke range ZZ FZ FY FX FT FD B FY B MB 32 40 50 63 80 100 141 145 164 164 202 202 79 90 110 120 153 178 32 36 45 50 63 75 64 72 90 100 126 150 10 10 12 12 16 16 7 9 9 9 12 14 up to 500 up to 500 up to 600 up to 600 up to 750 up

1000 Maximum speed: V(mm/s) Maximum speed: V(mm/s) Graph 6 Graph 3 0.4MPaP<0.5MPa 0.4MPaP<0.5MPa 200 200 100 100 40 32 30 40 50 30 40 50 25 40 20 32 Load weight: m (kg) Load weight: m (kg) 20 20 [Example] 25 10 10 20 5 4 5 4 3 3 2 2 1 1 0.5 0.5 100 500 400 300 200 100 500 400 300 200 1000 1000 Maximum speed: V(mm/s) Maximum speed: V (mm/s) Graph 7 Graph 4 0.5MPaP 0.5MPaP 200 200 40 100 100

When the knob is not easily locked, turn it left and right a little and then push it (when the knob is locked, the "orange mark", i.e., the gap will disappear). 0.1 0.1 0 0 0 0 1000 2000 3000 4000 5000 200 400 600 800 Flow rate L/min (ANR) Flow rate L/min (ANR) AR25 Rc 3/8 AR50 Rc 1 0.6 0.6 0.5 0.5 Outlet pressure MPa Outlet pressure MPa 0.4 0.4 0.3 0.3 0.2 0.2 0.1 0.1 0 0 0 0 500 1000 1500

Examine for My My=10(10+30)/1000=0.4 A3=30 Examine for My My=10(30+10)/1000=0.4 A6=10 M=W(Ln+An)/1000 Corrected value for center position distance of moment An: Table 3 Calculate allowable static moment Ma(Nm) Ma=K Mmax Work mounting coeficient K: Fig.3 Allowable moment coeficient : Graph 2 Max. allowable moment Mmax: Table 4 2=M/Ma May=1 x 1 x 15.9=15.9 Mymax=15.9 K=1 =1 2=0.4/15.9=0.0252

(de-energized) 490 m/s2 in X, Y, Z directions 3 times each 1000 Vp-p, Pulse width 1 s, Rise time 1 ns Status LEDs Response time Hysteresis Power supply voltage Enclosure Operating temperature range Withstand voltage Insulation resistance Vibration resistance Impact resistance Noise resistance Note 1) For digital flow switch with unit switching function.

Acceleration/deceleration time (ms) = {3000 (r/min) 60 (S) } 8 (mm) 1000 3000 (mm/s2) 133 (ms) Speed at a rated motor rotation of 3000rpm Accel/decel time (ms) = {Rated Rotation Speed (r/min) 60 (S) } Screw Lead (mm) 1000 * Acceleration/deceleration speed (mm/s2) *Acceleration speed is measured in ms, so this must be calculated as (s) 1000 47 - 5.6.4 Move distance Configuration and Operation

Acceleration/deceleration time (ms) = {3000 (r/min) 60 (S) } 8 (mm) 1000 3000 (mm/s2) 133 (ms) Speed at a rated motor rotation of 3000rpm Accel/decel time (ms) = {Rated Rotation Speed (r/min) 60 (S) } Screw Lead (mm) 1000 * Acceleration/deceleration speed (mm/s2) *Acceleration speed is measured in ms, so this must be calculated as (s) 1000 -37- 6.6.4 Movement distance Configuration and

Acceleration/deceleration time (ms) = {3000 (r/min) 60 (S) } 8 (mm) 1000 3000 (mm/s2) 133 (ms) Speed at a rated motor rotation of 3000rpm Accel/decel time (ms) = {Rated Rotation Speed (r/min) 60 (S) } Screw Lead (mm) 1000 * Acceleration/deceleration speed (mm/s2) *Acceleration speed is measured in ms, so this must be calculated as (s) 1000 -39- 6.6.4 Movement distance Configuration and

-105 1050 Kgf/cm 2 0 10.197 -1.07 10.71 ISE70 Bar 0 10.000 -1.05 10.50 Psi 0 145.04 -15.2 152.3 (PD) 1000 5000 580 5200 MPa 0 1.6000 -0.105 1.680 kPa 0 1,600.0 -105 1680 Kgf/cm 2 0 16.315 -1.07 17.13 ISE71 Bar 0 16.000 -1.05 16.80 Psi 0 232.06 -15.2 243.7 (PD) 1000 5000 738 5200 ISE70 MPa (PD) PD [MPa] (PD)(ISE70 MPa) -62No.PS-OMV0003CN-G Pr = a (PD) + b (PD) = (Pr

2000 3000 6000 12000 PF2M7(-L) 0.001 L/min 0.01 1 0.02 2 0.01 L/min 0.05 5 Dry air N2 Ar CO2 0.1 10 Thermal type (MEMS) 0.3 25 0.1 L/min 0.5 50 1 100 1 L/min 2 200 PFMB 2 200 Thermal type (MEMS) 5 500 Dry air N2 1 L/min PFG300 10 1000 Bypass flow type 20 2000 PFMC(-L) Thermal type (MEMS) 5 500 Dry air N2 1 L/min PFG300 10 1000 Bypass flow type 20 2000 PF2A 1 10 0.1 L/min 0.5 L/min 5 50

This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYL, COMPACT, AUTO-SW, NPT, ACTUATOR, NCQ2 COMPACT CYLINDER, LE, 32MM NCQ2 DBL-ACT AUTO-SW, .87601 lb

This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYL, COMPACT, AUTO-SW, NPT, ACTUATOR, NCQ2 COMPACT CYLINDER, LE, 32MM NCQ2 DBL-ACT AUTO-SW, .93720 lb

This is a legacy product. Please contact us for the latest version.sales@ocaire.com, CYL, COMPACT, AUTO-SW, NPT, ACTUATOR, NCQ2 COMPACT CYLINDER, LE, 32MM NCQ2 DBL-ACT AUTO-SW, 1.36400 lb

63 63 3000 40 50 2000 500 50 1000 40 0 0 5 10 15 20 0 450 400 350 300 250 200 150 100 50 0 Arm length L (mm) Arm length L (in) Allowable load for clamp arm end Refer to the graph on pages 190 and 191 for parts weight of the arm.

Assuming that the tube I.D. is 2 mm, the piping capacity is as follows: V = /4 x D2 x L x 1/1000 = /4 x 22 x 1 x 1/1000 = 0.0031 L (2) Assuming that leakage (QL) during adsorption is 0, find the average suction flow rate to meet the adsorption response time using the formula on the front matter 17.

R O D B O R E S I Z E 7/16-20 7/16-20 7/16-20 3/4-16 3/4-16 3/4-16 1-14 1-14 1 1/4-12 1 1/2-12 1 7/8-12 5/8 5/8 5/8 1 1 1 1-3/8 1-3/8 1-3/4 2 2-1/2 S TA N D A R D S T R O K E 150 1.5 200 2 250 2.5 325 3.25 400 4 500 5 600 6 800 8 1000 10 1200 12 1400 14 E 1 G 1 3/8 H 1 3/4 J 2 K 2 1/2 L 3 M 3 1/2 Z Please consult SMC Customer Service for larger sizes.

Cushioning nearly equal to a shock absorber is achieved with a unique cushion ring configuration and cushion seal design. 3.5 80 25 to 1300 25 to 1000 25 to 1500 100 50 to 1000 50 to 1300 125 50 to 1200 50 to 1500 160 CHAW CHA Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com