SMC Corporation of America
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Search Results "SYJ3123-SLOZ-M3-F"

force acts on Section F Displacement of Section A when force acts on Section F Guide central axis (1 axis type) F A F F For the double axis type, this is the cylinder's central axis.

(Fixed SI unit [(l/min, or l, m3 or m3 x 103)] will be set for switch type without the unit switching function.) Note 3) The high flow rate type is CE marked; however, the linearity with applied noise is 5% F .S. or less. Note 4) Switch output and accumulated pulse output selections are made using the button controls.

Operating pressure: 0.4 MPa Model Selection Illustration When gripping a workpiece as in the figure to the left and with the following definitions, F: Gripping force (N) : Coefficient of friction between attachments and workpiece m: Workpiece mass (kg) g: Gravitational acceleration (= 9.8 m/s2) mg: Workpiece weight (N) F F the conditions under which the workpiece will not drop are mg F F

Operating pressure: 0.4 MPa Model Selection Illustration When gripping a workpiece as in the figure to the left and with the following definitions, F: Gripping force (N) : Coefficient of friction between attachments and workpiece m: Workpiece mass (kg) g: Gravitational acceleration (= 9.8 m/s2) mg: Workpiece weight (N) F F the conditions under which the workpiece will not drop are mg F F

Number of fingers and therefore, mg F 2 x With "a" as the safety margin, F is determined as follows: mg F = x a 2 x When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg 10 x workpiece weight 20 x workpiece weight (Note) Even in cases where the coefficient of friction is greater than = 0.2, for safety reasons, SMC recommends selecting a gripping force which

Number of fingers and therefore, mg F 2 x With "a" as the safety margin, F is determined as follows: mg F = x a 2 x When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg 10 x workpiece weight 20 x workpiece weight (Note) Even in cases where the coefficient of friction is greater than = 0.2, for safety reasons, SMC recommends selecting a gripping force which

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Angle adjustment range 3 Angle adjustment range 3 Angle adjustment range 3 Auto switch Key Direction indicating label Key Direction indicating label Magnet A Magnet B +4 0 +4 0 0 90 18 90 ve 00 ve o ve o 1 o ro A port B port gr o e A port B port g v o y y o e gr e o k k r f g o f y o e y g e e n e Auto switch R ra g k k n n io ra at f ot f o o n e io g at e Angle adjustment range 3 ot

Angle adjustment range 3 Angle adjustment range 3 Angle adjustment range 3 Auto switch Key Direction indicating label Key Direction indicating label Magnet A Magnet B +4 0 +4 0 0 90 18 90 ve 00 ve o ve o 1 o ro A port B port gr o e A port B port g v o y y o e gr e o k k r f g o f y o e y g e e n e Auto switch R ra g k k n n io ra at f ot f o o n e io g at e Angle adjustment range 3 ot

(mm) <M3, M5> <M3, M5> Weight (g) Note) Model L1 L2 L3 A M D 2-applicable tubing M3 x 0.5 KJY23-M3 KJY23-M5 KJY23-01S KJY04-M3 KJY04-M5 KJY04-01S KJY06-M5 KJY06-01S 2.8 3.2 7.4 3.1 3.5 7.7 4.5 7.5 Reference dimensions after R thread installation.

No indication is necessary for Rc thread; however, indicate N for NPT thread, and F for G thread. (For auto drain, Nil: 10, N: 3/8") Please contact SMC separately for psi and F unit display specifications. Option/Part Nos.

M1 = F x L A M2 = F x L M3 = F x L Note) Deflection: Displacement of section A when force acts on section F REBH15/25 REBH15/25 REBH15/25 REBH15 REBH15 REBH25 REBH15 REBH25 0.08 Deflection (mm) Deflection (mm) Deflection (mm) Deflection (mm) 0.03 REBH25 0.02 0.06 0.02 0.04 0.01 0.01 0.02 25 25 25 5 10 15 20 0 Moment (Nm) 5 10 15 20 0 Moment (Nm) 5 10 15 20 0 Moment (Nm) REBHT25/32 REBHT25

L1 Data n = 1 + 2 + 3 + 4 = 0.333 + 0.125 + 0.25 + 0.27 = 0.978 1 And it is possible to use. 10-2-79 Table Deflection Amount Displacement of Table due to Pitch Moment Load Displacement of Table due to Yaw Moment Load Displacement of Table due to Roll Moment Load Guide central axis (1 axis type) F F A F L L A L Guide central axis (1 axis type) Opposite port side M1 = F x L A M2 = F x L M3

x 0.35 x 19 M3 x 0.35 x 23 M3 x 0.35 x 24 M3 x 0.35 x 28 M3 x 0.35 x 68 M3 x 0.35 x 72 M3 x 0.35 x 73 M3 x 0.35 x 77 y u Components Ejector unit + Vacuum switch/Filter unit i o For nozzle size 10, 13, 15 M3 x 0.35 x 84 4 [For ZSE4 spec.]

SYJA3 20-M3-F The mounting bracket for the 2 position double solenoid and 3 position is supplied unattached.

Operating range RB Model C 8 8 8 8 D 50 60 50 60 75 85 75 85 85 95 75 85 95 130 100 130 Mounting bolt M3 x 50l M3 x 60l M3 x 50l M3 x 60l M5 x 75l M5 x 85l M5 x 75l M5 x 85l M5 x 85l M5 x 95l M5 x 75l M5 x 85l M6 x 95l M6 x 130l M8 x 100l M8 x 130l MKB12-10 MKB12-20 MKB16-10 MKB16-20 MKB20-10 MKB20-20 MKB25-10 MKB25-20 MKB32-10 MKB32-20 MKB40-10 MKB40-20 MKB50-20 MKB50-50 MKB63-20 MKB63-50

Combination example q A Spacer with bracket F S 2 x P (Port size) J M Line Filter AFF30-03-D 1 pc. Mist Separator AM30-03-D 1 pc. Spacer with Bracket Y300T-D 1 pc. R V1 V2 Q1 Q21 Q1 C Y300T-D U G Maintenance space E AFF30-03-D AM30-03-D 1 Q2 (Sizes 20, 40) Q1 (Size 30) Combination example w A Spacer with bracket N F 2 x P (Port size) J M S Mist Separator AM30-03-D 1 pc.

Calculation of applied lateral load The lateral load F equals the total load of the workpiece. Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 1. Calculation of applied lateral load F F = N m g (N) = 0.2 x 10 x 0.1 x 9.8 = 2.1 (N) CC 70 Lateral load F (N) RB 60 0.4 MPa 50 J 40 2.

Calculation of applied lateral load The lateral load F equals the total load of the workpiece. Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 1. Calculation of applied lateral load F F = N m g (N) = 0.2 x 10 x 0.1 x 9.8 = 2.1 (N) CC 70 Lateral load F (N) RB 60 0.4 MPa 50 J 40 2.