SMC Corporation of America
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Search Results "MBBL63-150-WN"

WN V V V 1 A cable for the M12 connector is not included with the product. Refer to the Option on page 51 to order it separately. A grommet type is not available.

HRR Series 3.4 Piping 3-19 HRX-OM-X084 Chapter 3 Transport and Setting Up [Tips] For HRR010-AN-10/20-,HRR010-WN-10/20A set of thread adapters that converts the connections from Rc to NPT is enclosed as an accessory. For NPT thread, be sure to use this adapter.

HRR Series 3.4 Piping 3-19 HRX-OM-W002 Chapter 3 Transport and Setting Up [Tips] For HRR012/018/024/030-AN-20-HRR012/018/024/030-WN-10/20A set of thread adapters that converts the connections from Rc to NPT is enclosed as an accessory. For NPT thread, be sure to use this adapter.

Bore (mm) Standard stroke (mm) Nylon tarpaulin 60C 110C Neo plain cloth 25, 50, 75, 100, 125, 150, 175, 200, 250, MG 40 Maximum ambient temperature for the rod boot itself. 300, 350, 400, 450, 500 25, 50, 75, 100, 125, 150, 175, 200, 250, MGP 50, 63 300, 350, 400, 450, 500, 600 25, 50, 75, 100, 125, 150, 175, 200, 250, MGQ 80, 100 300, 350, 400, 450, 500, 600, 700 MGG Minimum stroke of

Standard stroke (mm) 60C Nylon tarpaulin 110C Neo plain cloth MXQ 25, 50, 75, 100, 125, 150, 175, 200, 250, 40 Maximum ambient temperature for the rod boot itse 300, 350, 400, 450, 500 MXF 25, 50, 75, 100, 125, 150, 175, 200, 250, 50, 63 300, 350, 400, 450, 500, 600 MXW 25, 50, 75, 100, 125, 150, 175, 200, 250, 80, 100 300, 350, 400, 450, 500, 600, 700 MXP Minimum stroke of auto switch

Model number: HRR050-AN/WN-20/40The transition connector from Rc to NPT is enclosed as an accessory. For NPT piping, be sure to use this connector. Model number: HRR050-AF/WF-20/40The transition connector from Rc to G is enclosed as an accessory. For G piping, be sure to use this connector.

75, 100, 125, 150, 200 32 25, 50, 75, 100, 125, 150, 200 40 25, 50, 75, 100, 125, 150, 200, 250, 300 Note 1)Other intermediate strokes can be manufactured upon receipt of order.

25 25, 50, 75, 100, 125, 150 32 25, 50, 75, 100, 125, 150, 200 40 25, 50, 75, 100, 125, 150, 200, 250 Note 1) Other intermediate strokes can be manufactured upon receipt of order.

HRSH100/150/200-A: 2 pcs. are used per unit HRS-S0185 Dust-proof filter 1 pc.

-A-20. 8-1 8.1.2 HRS100/150-A-40. 8-2 8.1.3 HRS100/150-A-46. 8-3 8.1.4 HRS100/150-W-20. 8-4 8.1.5 HRS100/150-W-40. 8-5 8.1.6 HRS100/150-W-46. 8-6 8.1.7 Refrigerant with GWP reference . 8-7 8.1.8 Communication specification . 8-7 8.2 Outline dimensions . 8-8 8.2.1 HRS100/150-A-20/40/46. 8-8 8.2.2 HRS100/150-W-20/40/46. 8-9 8.3 Flow diagram . 8-10 8.3.1 HRS100/150-A-20/40/46. 8-10 8.3.2 HRS100

Volume GR-L-005 5 g GR-L-010 10 g GR-L-150 150 g 3. Do not wipe off grease from the sliding part of the air cylinder. Wiping grease from the sliding part of the air cylinder forcefully may cause malfunction. 1110

Bore size (mm) Standard stroke (mm) 2040 25, 50, 75, 100, 125, 150, 175, 200, 250, 300, 350, 400, 450, 500 Data 50, 63 25, 50, 75, 100, 125, 150, 175, 200, 250, 300, 350, 400, 450, 500, 600 80, 100 25, 50, 75, 100, 125, 150, 175, 200, 250, 300, 350, 400, 450, 500, 600, 700 Intermediate strokes not listed above are also available.

Wn Y Y-axis Yn X-axis Xn Z-axis Zn X Wa 65 mm 0 mm 5 mm 0.88 kg 210 65 150 111 Z Wb 150 mm 0 mm 42.5 mm 4.35 kg Wc 150 mm 111 mm 42.5 mm 0.795 kg Wd 150 mm 210 mm 42.5 mm 0.5 kg Y 42.5 5 n = a, b, c, d 3.

Wn Y X-axis Xn Y-axis Yn Z-axis Zn X Wa 5 mm 0 mm 65 mm 0.88 kg 210 65 150 111 Z Wb 42.5 mm 0 mm 150 mm 4.35 kg Wc 42.5 mm 111 mm 150 mm 0.795 kg Wd 42.5 mm 210 mm 150 mm 0. 5kg Y 42.5 5 n = a, b, c, d 3 Composite Center of Gravity Calculation m1 = mn = 0.88 + 4.35 + 0.795 + 0.5 = 6.525 kg 1 m1 X = x (mn x xn) 1 6.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 0.5 x 150) = 138.5 mm 1 m1 Y

(Wn) Mass (mn) Y-axis Yn Z-axis Zn X-axis Xn LXS LXS Z X Wa 5 mm 0 mm 0.88 kg 65 mm LC6m LC6m 111 Wb 42.5 mm 0 mm 4.35 kg 150 mm Y 210 Y Wc LZm LZm 42.5 mm 111 mm 0.795 kg 150 mm Wd 42.5 mm 210 mm 1.0 kg 150 mm LC3F2 LC3F2 n = a, b, c, d 3 Calculation of Composite Center of Gravity Xm Xm m3 = mn = 0.88 + 4.35 + 0.795 + 1.0 = 7.025 kg D-m D-m E-MY E-MY 1 m3 X = x (mn x xn) 1 7.025 = (0.88

Wn Y Y-axis Yn Z-axis Zn X-axis Xn X Wa 65 mm 0 mm 5 mm 0.88 kg 210 65 150 111 Z Wb 150 mm 0 mm 42.5 mm 4.35 kg Wc 150 mm 111 mm 42.5 mm 0.795 kg Wd 150 mm 210 mm 42.5 mm 0.5 kg Y 42.5 5 n = a, b, c, d 3.

Wn Mass mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88 kg 65 mm 0 mm 5 mm 111 Wb 4.35 kg 150 mm 0 mm 42.5 mm Y 210 Y Wc 0.795 kg 150 mm 111 mm 42.5 mm Wd 1.5 kg 150 mm 210 mm 42.5 mm n = a, b, c, d 3 Composite Center of Gravity Calculation m3 = mn = 0.88 + 4.35 + 0.795 + 1.5 = 7.525 kg m3 1 X = x (mn x xn) 7.525 1 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.5 x 150) = 140.1 mm m3 1 Y = x

Load Blocking Workpiece Weight and Center of Gravity 42.5 150 Center of gravity 5 65 Workpiece no. Wn Weight mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88 kg 65 mm 0 mm 5 mm 111 Wb 4.35 kg 150 mm 0 mm 42.5 mm Y 210 Y Wc 0.795 kg 150 mm 111 mm 42.5 mm Wd 1.5 kg 150 mm 210 mm 42.5 mm n = a, b, c, d 3.

Load Blocking Mass and Center of Gravity for Each Workpiece 5 42.5 65 150 Center of gravity Mass mn Workpiece Wn Y-axis Yn X-axis Xn Z-axis Zn Z X Wa 0 mm 5 mm 0.88 kg 65 mm 111 210 Wb 0 mm 42.5 mm 4.35 kg 150 mm Y Y Wc 111 mm 42.5 mm 0.795 kg 150 mm Wd 210 mm 42.5 mm 0.5 kg 150 mm n = a, b, c, d 3.

(Wn) Weight (mn) Y-axis Yn Z-axis Zn X-axis Xn Z X Wa 5 mm 0.88 kg 0 mm 65 mm 111 Wb 42.5 mm 4.35 kg 0 mm 150 mm Y 210 Y Wc 42.5 mm 0.795 kg 111 mm 150 mm Wd 42.5 mm 1.0 kg 210 mm 150 mm n = a, b, c, d 3 Calculation of composite center of gravity m3 = mn = 0.88 + 4.35 + 0.795 + 1.0 = 7.025 kg 1 m3 X = x (mn x xn) 1 7.025 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.0 x 150) = 139.4 mm 1