SMC Corporation of America
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Flow Rate Range: 11 [2 to 100 (50 for CO2) â„“/min], Flow Adjustment Valve: S (Yes), Port Size: N7 (ø1/4 One-touch Fitting), Piping Entry Direction: Straight, Output Specification: 1 [Analog Output (1 to 5 V)], Instruction Manual: N (None), Calibration Certificate: None, Connector: Z (w/o Lead Wire w/Connector)

Flow Rate Range: 11 [2 to 100 (50 for CO2) â„“/min], Flow Adjustment Valve: S (Yes), Port Size: N7 (ø1/4 One-touch Fitting), Piping Entry Direction: Straight, Output Specification: 1 [Analog Output (1 to 5 V)], Instruction Manual: N (None), Calibration Certificate: None, Connector: W [Lead Wire w/Connector (2m) + Rubber Cover]

Flow Rate Type: Standard, Operating Temperature Range(°C): -10~60, Operating Humidity Range(%): 35~85, Number of Inputs: 2, Number of Outputs: 1, Analog Voltage Output(V): [DC1-5V] 1-5V, Power Supply Type: DC, Power Supply Voltage(V): [24] 24±10%, Pipe Connection Direction: 2-way, Connecting Tube Diameter: 6, Liquid contact parts material: Resin + Metal, Mounting Hole: Presence, Display:

Flow Rate Range: 11 [2 to 100 (50 for CO2) â„“/min], Flow Adjustment Valve: Yes, Port Size: ø6 One-touch Fitting, Piping Entry Direction: Straight, Output Specification: 1 [Analog Output (1 to 5 V)], Instruction Manual: None, Calibration Certificate: None, Connector: w/o Lead Wire w/Connector, Option: -

Flow Rate Range: 11 [2 to 100 (50 for CO2) â„“/min], Flow Adjustment Valve: Yes, Port Size: NPT1/4, Piping Entry Direction: Straight, Output Specification: 1 [Analog Output (1 to 5 V)], Instruction Manual: None, Calibration Certificate: None, Connector: W [Lead Wire w/Connector (2m) + Rubber Cover], Option: -

Flow Rate Range: 11 [2 to 100 (50 for CO2) â„“/min], Flow Adjustment Valve: Yes, Port Size: ø1/4 One-touch Fitting, Piping Entry Direction: Straight, Output Specification: 1 [Analog Output (1 to 5 V)], Instruction Manual: None, Calibration Certificate: None, Connector: w/o Lead Wire w/Connector, Option: -

Flow Rate Range: 11 [2 to 100 (50 for CO2) â„“/min], Flow Adjustment Valve: Yes, Port Size: ø1/4 One-touch Fitting, Piping Entry Direction: Straight, Output Specification: 1 [Analog Output (1 to 5 V)], Instruction Manual: None, Calibration Certificate: None, Connector: W [Lead Wire w/Connector (2m) + Rubber Cover], Option: -

50 12.5 Y-05MNote 1) 64 16.5 Y-08MNote 1) 80 23.5 Y-10MNote 1) 80 23.5 Y-12MNote 2) 119 28.5 Note 1) A pin, cotter pin and a flat washer are equipped as standard.

,~C86 1 With 'od end btacket g 0 1 .,' ,',.'

1 pc. 5 *1 5 2 pcs. 10 *1 10 D-A9V 1 pc. 5 2 pcs. 10 D-Z7 D-Z80 1 pc. 5 *1 5 2 pcs. 10 D-Y59 D-Y7P 1 pc. 5 *1 5 2 pcs. 10 D-Y69 D-Y7PV 1 pc. 5 2 pcs. 5 D-Y7W D-Y7WV 1 pc. 5 *2 2 pcs. 10 *2 D-Y7BA 1 pc. 5 *2 2 pcs. 10 *2 D-P3DWA 1 pc. 15 2 pcs. 15 D-P4DW 1 pc. 5 *2, 3 2 pcs.

Me = 1/3We x 9.8 Mep = 1/3 x 16.8 x 9.8 x = 2.2 (30 + 10) 1000 We = 4/100 x 1 x 420 = 16.8 A2 = 10 Meap = 1 x 0.7 x 15.9 = 11.1 K = 1 = 0.7 Mpmax = 15.9 3 = 2.2/11.1 = 0.20 Collision equivalent to impact We = WV : Bumper coefficient With urethane bumper (Standard) = 4/100 With shock absorber = 1/100 Correction value of moment center position distance An: Table (3) Mea = KMmax Workpiece

Allowable moment Wmax: Table 2 1=W/Wa Calculate static moment Wa(N) Wa=1 x 1 x 40=40 K=1 =1 Wmax=40 1=10/40=0.25 Calculate load rate 1 of static moment. 3-2 Load rate of static moment Rolling Yawing Calculate static moment M(Nm).

f@1 1r..tov ti? I installed \tl .1 onry) f e lri=d.c-) L Type of actuation With irdicator ght and surge v0rrage suppress0r 1 INormal closed 2 lNormal open S and Z not available lor grornmel. i 1 oVAC type inc udes S (do not specity). Body Port size : Standard typerindividual gilot exhaust ut subplate _,,' (a --1ry1 wv l--l l ?

f@1 1r..tov ti? I installed \tl .1 onry) f e lri=d.c-) L Type of actuation With irdicator ght and surge v0rrage suppress0r 1 INormal closed 2 lNormal open S and Z not available lor grornmel. i 1 oVAC type inc udes S (do not specity). Body Port size : Standard typerindividual gilot exhaust ut subplate _,,' (a --1ry1 wv l--l l ?

0.5 0.5 1 0.4 0.5 1 0.5 0.5 1 0.4 0.4 0.8 0.5 0.4 0.8 0.5 __ 0.5 0.4 0.8 1 0.5 0.5 1 0.4 0.8 0.5 Note) Auto switches are not applicable to blank sections in the table.

f@1 1r..tov ti? I installed \tl .1 onry) f e lri=d.c-) L Type of actuation With irdicator ght and surge v0rrage suppress0r 1 INormal closed 2 lNormal open S and Z not available lor grornmel. i 1 oVAC type inc udes S (do not specity). Body Port size ut subplate _,,' (a --1ry1 wv : Standard typerindividual gilot exhaust l--l l ?

(Mp, My values do not apply to this example.) = 1 x 9.8 (0.05 + 0.014) = 0.63 [N m] Mr 2 = Mr/Mrmax Mrmax value is from Graph (3) at Va = 300 mm/s. = 0.63/12 L3+C = 0.053 Mey = 1/3We x 9.8 (L2 + B) V = 1.4 Va We = WV = 4/10011.4300 = 16.8 [kg] Mey = 1/3 x 16.8 x 9.8 (0.05 + 0.037) = 4.8 [N m] 3 = Mey/Meymax = 4.8/14.3 = 0.34 Dynamic moment Examine Mey.

. (3) Allowable load weight coefficient : Graph (1) Wa = 1 x 1 x 4 = 4 K = 1 = 1 Wmax = 4 1 = 0.5/4 = 0.125 Find the allowable load weight Wa (kg).

Allowable kinetic energy E max. : Table 1 Possible to use by E=0.0181 Load rate of moment Wa=W max. Calculate allowable load Wa(N). Wa=112=12 =1 W max.=12 1=2/12=0.167 Allowable load coefficient : Graph 1 Calcurate load rate (1) of moment.

= M/Ma 3-3 Load factor of dynamic moment Examine Mep. (30 + 10.5) Mep = 1/3 x 16.8 x 9.8 x = 2.2 1000 We = 4/100 x 1 x 420 = 16.8 A = 10.5 Meap = 1 x 0.7 x 18 = 12.6 K = 1 = 0.7 Mpmax = 18 = 2.2/12.6 = 0.17 Pitching (Ln + An) Me = 1/3We x 9.8 1000 Weight equivalent to impact We = WV : Bumper coefficient Rubber stopper without adjuster = 4/100 Shock absorber = 1/100 Metal stopper = 16/