SMC Corporation of America
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Search Results "ZA1071-Q15L-FP1A-M2"

)V E(J= m1 kg m2 kg V m/s 4. 4-1 CE1 4-2 A A B B C COM(OV) D COM(OV) E 12 24V F 0V G CEU5 CEU5 3 +12V +12V 1k A 680 COM +12V +12V 1k B 680 COM +12V DC12V60mA GND F.G. 4-3 (1)CEU5 CE1-R** (2) (3) (4) (5) *(CEU5**-D)EMC CEU5) 5. 5-1 () CE1 14.5mT CE1 15000 18cm 5-2 0.1mm 0.0 0.2 0.1 A B (1)0.8mm (2) sin cos 2 0.8mm (3)1/8 90,0.1mm/ (4)0.1mm 5-3

E = 1/2 x I x 2 EKinetic energy (J) IMoment of inertia (kg/m2) Angular speed (rad/s) (2) There is a threshold of kinetic energy that a rotary actuator allows. Therefore, by finding the moment of inertia, it is possible to find the threshold value of the rotation time. The basic formula for finding the moment of inertia is shown below.

B 2 r I = m2 2 b a I I = A B Number of teeth =b 5. Solid sphere Position of rotational axis: Through the center of diameter r 2 2 r I = m5 27 - Kinetic energy Table 9 shows the allowable kinetic energy of the rotary table.

B 2 r I = m2 2 b a I I = A B Number of teethb 5. Solid sphere Position of rotational axis: Through the center of diameter r 2 2 r I = m5 29 - Kinetic energy Table 10 shows the allowable kinetic energy of the rotary table. Here, the angular speed can be found from the formula below.

B 2 r I = m2 2 b a I I = A B Number of teeth = b 5. Solid sphere Position of rotational axis: Through the center of diameter r 2 2 r I = m5 -27- Kinetic energy Table shows the allowable kinetic energy of the rotary actuator.

Gasket Mounting screw (M2) For the manifold with pressure sensor/vacuum pressure switch, order the (a) (b) manifold base (a) for the required number (c) of stations.

Clean the emitters with the cleaning kit [IZS30-M2] or a cotton bud soaked in alcohol. Before cleaning the emitters, make sure that the power supply is OFF and confirm that the fan motor has stopped. Never perform cleaning or replace the emitters when the fan motor is rotating. The fan rotation may cause injury.

B 2 r I = m2 2 b a I I = A B Number of teeth=b 5. Solid sphere Position of rotational axis: Through the center of diameter 2 2 r I = m5 27 - Kinetic energy Table (9) shows the allowable kinetic energy of the rotary actuator. The end angular speed is obtained by: Table 9.

Thin shaft Position of rotational axis: Perpendicular to the shaft through one end I = m1 + m2 3 a1 I = m 2 r 3 a2 2. Thin shaft Position of rotational axis: Through the shaft's center of gravity 7. Solid sphere Position of rotational axis: Diameter I = m 12 a I = m 5 2r 3.

x 0.4 M2 x 0.4 2 4.6 1.6 4 1.6 6 2.5 7 12.5 Rod end nut part no.: NTJ-004 6 Series CUJ Dimensions for 6 Double Acting/Single Acting Without magnet/CUJB6 Note) The angular position of the width across flats is not fixed with respect to the tube. 2-M3 x 0.5 (bore size) 6 3.5 M2.5 x 0.45 effective depth 5 3 Element Width across flats 8 Width across flats 3.5 9 10 7 4 9h9 19 7 2.5 2-3.3 through

M3 M1 M2 1.25 1.68 Slide 12 3 0.53 0.70 Ball bushing 3.34 4.25 Slide 16 7 1.53 2.11 Ball bushing 11.4 17.1 Slide l l 20 12 5.60 7.28 Ball bushing Note) For the purpose of calculating the moment, the length of the arm is the distance that is measured from the guide shaft center ( mark).

the L terminal and terminal are shorted, it changes to ON when light enters. + Photo Micro Sensor/ Dog Fitting for Photo Micro Sensor Mounting Output level circuit ON when light enters ON when light is blocked Operating condition of output transistor Phillips countersunk machine screw (Class 1)(M2.6 x 5) Tightening torque: 0.160.01Nm + Brown Phillips countersunk machine screw (Class 1)(M2

the L terminal and terminal are shorted, it changes to ON when light enters. + Photo Micro Sensor/ Dog Fitting for Photo Micro Sensor Mounting Output level circuit ON when light enters ON when light is blocked Operating condition of output transistor Phillips countersunk machine screw (Class 1)(M2.6 x 5) Tightening torque: 0.160.01Nm + Brown Phillips countersunk machine screw (Class 1)(M2

M1 M2 Weight (g) ASV310F-01-06S ASV310F-01-08S ASV310F-02-06S ASV310F-02-08S ASV410F-01-08S ASV410F-01-10S ASV410F-02-08S ASV410F-02-10S ASV410F-03-08S ASV410F-03-10S ASV510F-02-10S ASV510F-02-12S ASV510F-03-10S ASV510F-03-12S ASV510F-04-10S ASV510F-04-12S 71.9 73.8 71.9 73.8 83.1 85.2 83.1 85.2 83.1 85.2 90.2 91.8 90.2 91.8 90.2 91.8 16.8 19.3 16.8 19.3 19.3 23.3 19.3 23.3 19.3 23.3 23.3

compatible MHQG2 compatible MHQ2 compatible MHQG2 compatible MHQ2 compatible MHQG2 compatible MHQ2 compatible 6 5 8 7 10 9 12 12 5.2 5.2 8.3 8.3 10.5 10.5 13.1 13.1 12 9 16 12 20.8 15.5 25 19 +2.2 0 5.7 5.7 6.6 6.6 7.2 7.2 8.8 8.8 0 -0.4 0 -0.4 0 -0.4 0 -0.4 0 -0.4 0 -0.4 0 -0.4 0 -0.4 0 -0.05 0 -0.05 0 -0.05 0 -0.05 0 -0.05 0 -0.05 0 -0.05 0 -0.05 9.7 9.7 12.6 12.6 17.2 17.2 22.8 22.8 M2

Moment (Nm) Payload (N) ML1C/M2,M3 How to calculate the load ratio A. Consider q Max. payload, w static moment, e dynamic moment (when stopper collides) when calculating the Max. allowable moment and payload. Evaluate q and w as a (average speed), and e as (collision speed =1.4a).

M1 M2 M3 Cp, Cy Cr 0.046 0.040 0.049 28.3 5 0.046 0.040 0.049 28.3 10 Caution 0.061 0.053 0.062 31.5 15 MXU6 7.5 1. Do not place your fingers in the clearance between the table and the cylinder tube. Your fingers could get caught between the table and the cylinder tube when the piston rod retracts.

(mm) Model H Bracket mounting dimensions Q Weight (g) 1(P) R 2(A) 2(A) R 3(R)* L1 L2 L3 L4 L5 L6 M1 M2 Bracket assembly no.

Allowable Kinetic Energy [J] 50 Bore size (mm) 20 25 32 40 Allowable lateral load at rod end (N) Male rod end 0.2 0.29 0.46 0.84 Female rod end 0.11 0.18 0.29 0.52 m1: Mass of cylinder movable parts kg m2: Load mass kg V : Piston speed at the end m/s Kinetic energy E (J) = (m1 + m2) V2 40 10 2 32 Table (2) Mass of Cylinder Movable Parts: At Each Rod End/Without Built-in Magnet/0 Stroke 25

(O.D.) 3.2 4 2 / 1.2 M-32F-2 M-04F-2 17.7 18 13.7 14 7.5 8.5 2.4 2.9 4 0.9 12.7 2.5 q w e r M2 E Component Parts Material C3604 C3604 NBR No. 1 2 3 4 Description Sleeve Body Seal Cassette Note Electroless nickel plated Electroless nickel plated D C POM, Stainless steel 304 Applicable tubing M1 Applicable tubing B A Plug-in Reducer: M-32R-2, M-04R-2 Applicable tubing O.D. / I.D.