SMC Corporation of America
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Search Results "SS5YJ3-31-02-M3"

Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 13 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -

Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 16 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -

Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 3 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -

Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 4 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -

Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 6 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -

Valve Mounting Direction: Solenoid on the Side Opposite to A,B Ports, Piping: 4 Port/Base Mounted Common SUP Common EXH, Stations: 10 Stations, A B Port Size: M3X0.5 Type 31, S31, P R Port Thread: -

9.5 MHS A C 32 M3 x 0.5 Finger opening port M3 x 0.5 Finger closing port MHC MHT 25 25 MHY 3-3 depth 6 +0.02 0 M3 x 0.5 Finger opening port M3 x 0.5 Finger closing port (A, B, C common view) MHW 6-M3 x 0.5 thread depth 6 (A, B, C common view) MRHQ Misc.

D A A MXQ16B 57 31 17 30 16 13 MXQ20B 64 32 14 31 13 18 The MXQ6(A, B) is not available.

Size: 10 31 2 x M3 x 0.5 through 2 x 3.5 through 25 Chamfer (Rotation range is stated on page 70.) 25 31 41 B port A port 29 9h9 0 0.036 17 4g70.004 0.016 0.5 2 x 3.5 through 9 14 31 29 1 3 10.6 7 16.5 9.5 2 x M3 x 0.5 1 18.5 35 19.8 67 2 15 When D-M9m is used *1.

= 38.7 (Nm) M3 = m3 x g x X = 6.525 x 9.8 x 138.5 x 103 = 8.86 (Nm) MTS m3 M3 Load factor 3 = M3/M3max = 8.86/38.7 = 0.23 MY 5.

x 8 0.63 M4 x 10 1.5 8 7.5 19 M4 x 0.7 7.5 46 30 3.7 11 42 NY M2.5 x 10 1.0 M3 x 8 0.63 M4 x 10 1.5 8 7.5 19 M3 x 0.5 5.5 45 30 5 11 38 NX M2.5 x 10 1.0 M3 x 8 0.63 M4 x 10 1.5 8 4.5 19 M4 x 0.7 7.5 46 30 3.7 11 42 NM1 M3 x 5 0.63 M3 x 8 0.63 M4 x 10 1.5 5 11.8 19 3.4 7.0 31 28 3.5 8.5 42 NM2 M2.5 x 10 1.0 M3 x 8 0.63 M4 x 10 1.5 6 48 19 3.4 7.0 31 28 3.5 8.5 42 25 NZ M3 x 12 1.5 M4 x 12

M3 x 10 M3 x 8 M3 x 8 0.9 0.9 0.9 3. Shock absorber is considered a consumable component. When energy absorption is decreased, replace it.

Z S MB1 Bore size (mm) GA A B C D F H MM NN NA NB ND h8 T 5 to 15 st 16 to 30 st 31 to 45 st 46 to 60 st 61 to 75 st 76 to 100 st 101 to 125 st 126 to 150 st 5 to 15 st 16 to 30 st 31 to 45 st 46 to 60 st 61 to 75 st 76 to 100 st 101 to 125 st 126 to 150 st CA2 46.5 (51.5) 55.5 (60.5) 59.5 (64.5) 74.5 (79.5) 83.5 (88.5) 87.5 (92.5) 101.5 73.5 (78.5) 80 81 6 M3 x 0.5 M6 x 1.0 3 3 3 12 14

S Z 101 to 126 to 101 to 126 to Bore A B C D F GB H LB LC LH LT LX LY LZ MM NA NB NN X Y 5 to 16 to 31 to 46 to 61 to 76 to 5 to 16 to 31 to 46 to 61 to 76 to 100st 125st 150st 100st 125st 150st 15st 30st 45st 60st 75st 15st 30st 45st 60st 75st 34.5 43.5 47.5 61.5 62.5 71.5 75.5 89.5 6 32 15 8 16.5 M3 X 0.5 3 M6 X 1.0 5 9 7 7 3 8 28 13 4.5 9 1.6 24 (39.5) (48.5) 53 54 (52.5) 65 66 (66.5)

(mm) (mm) Q1 = M Q2 Y L2 max Size C1 = C L2-(3 x P) Q1 X L1 max Size 10 M3 5.5 to 8 Y 1 10 M3 X 3 7.5 to 14 Y = 15 M3, M4 7.5 to 9 Y 1.5 15 M3, M4 X 4 10 to 18 L2 = X = C2 = C 20 M3, M4, M5 9 to 10 Y 1.5 L1-(3 x P) 20 X 4.5 12 to 20 M3, M4, M5 30 11 to 13 Y 2 M3, M4, M5, M6 M3, M4, M5, M6 L1 = 30 Q2 = M X 5 14 to 22 M3, M4, M5, M6, M8 14 to 15 Y 4.5 40 11-2-28 28 Simple Specials

(mm) (mm) Q1 = M Q2 Y L2 max Size C1 = C L2-(3 x P) Q1 X L1 max Size 10 M3 5.5 to 8 Y 1 10 M3 X 3 7.5 to 14 Y = 15 M3, M4 7.5 to 9 Y 1.5 15 M3, M4 X 4 10 to 18 L2 = X = C2 = C 20 M3, M4, M5 9 to 10 Y 1.5 L1-(3 x P) 20 X 4.5 12 to 20 M3, M4, M5 30 11 to 13 Y 2 M3, M4, M5, M6 M3, M4, M5, M6 L1 = 30 Q2 = M X 5 14 to 22 M3, M4, M5, M6, M8 14 to 15 Y 4.5 40 11-2-28 28 Simple Specials

(mm) (mm) Q1 = M Q2 Y L2 max Size C1 = C L2-(3 x P) Q1 X L1 max Size 10 M3 5.5 to 8 Y 1 10 M3 X 3 7.5 to 14 Y = 15 M3, M4 7.5 to 9 Y 1.5 15 M3, M4 X 4 10 to 18 L2 = X = C2 = C 20 M3, M4, M5 9 to 10 Y 1.5 L1-(3 x P) 20 X 4.5 12 to 20 M3, M4, M5 30 11 to 13 Y 2 M3, M4, M5, M6 M3, M4, M5, M6 L1 = 30 Q2 = M X 5 14 to 22 M3, M4, M5, M6, M8 14 to 15 Y 4.5 40 11-2-28 28 Simple Specials

M3 x 0.5 M3 7.5 15 34 3.3 10.5 10 6.5 23 3.4 5.5 3.5 9.5 5 7 26 M3 x 0.5 M3 7.5 15 38 3.3 13 12 6.5 30 3.4 7 3.5 11.5 5 7 33 -X M4 x 0.7 M4 8.5 17 53 4.4 14.5 14 8 35.5 4.5 7.5 4.5 18 4.5 6.5 38.5 M4 x 0.7 M3 14.5 29 62 6.5 3 26 14 34 4 4.5 16.5 6 45 7 20M5 x 0.8 M4 14.5 29 70 8 3 31 17 39 4 5.5 20.5 7 51 8 M6 x 1 M5 17 34 76 9.5 3 41 22 50 4.5 6.5 21 7.5 62.5 10

Q1 M3 5.5 to 8 Y-1 10 15 X-3 7.5 to 14 M3 Y = M3, M4 7.5 to 9 Y-1.5 L2 = L1(3 x P) C2 = C 15 20 X-4 M3, M4 10 to 18 9 to 10 Y-1.5 M3, M4, M5 X = 20 30 12 to 20 X-4.5 M3, M4, M5 11 to 13 Y-2 M3, M4, M5, M6 L1 = Q2 = M 30 40 14 to 22 X-5 14 to 15 Y-4.5 M3, M4, M5, M6 M3, M4, M5, M6, M8 24 Simple Specials Series CRB2 Axial: Top (Long-shaft side) Axial: Bottom (Short-shaft side) Symbol: A10 Symbol