SMC Corporation of America
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Search Results "HRS012-A-10-MT"

Cooling Capacity: Cooling Capacity: 1100/1300W, 50/60 Hz, Cooling Method: Air-cooled Refrigeration, Thread: Rc, Option: B + G + M + T

Note 2) When mounting auto switches with in-line electrical entry, allow a space of 10 mm or more at the rear end to prevent lead wire interference.

Note 2) When mounting auto switches with in-line electrical entry, allow a space of 10 mm or more at the rear end to prevent lead wire interference. 10 mm or more 248 Series MTS Precision Cylinder Auto Switch Proper Mounting Position (Detection at Stroke End) and Its Mounting Height 12 to 40 D-A9 D-M9 D-M9W A B MXH MXU 12/16/20 MXS C MXQ MXF MXW 25/32/40 MXJ D-A9V D-M9V D-M9WV MXP A B Hs

flat 10 Width across flat 10 A A 10 10 2 2 1.8 1.8 8.4 6 Dimensions (per stroke) Dimensions (per stroke) 10 13 Weight (g) Non-rotating (J) Rotating (K) Weight (g) Non-rotating (J) Rotating (K) 14 11 A B D A B D Model Model ZP3-T13B;3-B5 ZP3-T13B;6-B5 ZP3-T13B;10-B5 ZP3-T10B;3-B5 ZP3-T10B;6-B5 ZP3-T10B;10-B5 8.5 9.7 11.7 8.6 9.8 11.8 8.6 9.7 11.7 8.7 9.8 11.8 15 18 22 34.5 41 51 11 14.5 20.5

flat 10 Width across flat 10 A A 10 10 2 2 1.8 1.8 8.4 6 Dimensions (per stroke) Dimensions (per stroke) 10 13 Weight (g) Non-rotating (J) Rotating (K) Weight (g) Non-rotating (J) Rotating (K) 14 11 A B D A B D Model Model ZP3-T13B;3-B5 ZP3-T13B;6-B5 ZP3-T13B;10-B5 ZP3-T10B;3-B5 ZP3-T10B;6-B5 ZP3-T10B;10-B5 8.5 9.7 11.7 8.6 9.8 11.8 8.6 9.7 11.7 8.7 9.8 11.8 15 18 22 34.5 41 51 11 14.5 20.5

A + Stroke 4-FD C J G5-S Rear flange style: MQQLG 10, 16, 20 25, 28 Bore size (mm) Stroke range (mm) A L 2-FD 4-FD CV 10 10 to 40 75 8 16 10 to 60 88.5 10 MVGQ 20 10 to 60 97 10 FV FV M 25 10 to 50, 75, 100 104.5 12 CC 28 10 to 50, 75, 100 124 12 L FT FX B + Stroke FZ FX (Dimensions except A and L are same as rod side flange style.)

, z + A = 100 y, z + A a 100 10 y, z + A = 200 y, z + A = 200 y, z + A = 300 y, z + A = 300 1 1 0 200 400 600 800 1000 1200 0 100 200 300 400 500 600 700 800 Stroke [mm] Stroke [mm] [Graph 6] Allowable load mass by stroke 32 [Graph 5] Allowable load mass by stroke 25 100 100 y, z + A = 0 y, z + A = 0 y, z + A = 50 y, z + A = 50 10 Load mass [kg] Load mass [kg] 10 y, z + A = 100 y, z + A =

+ A = 100 y, z + A 100 10 y, z + A = 200 y, z + A = 200 y, z + A = 300 y, z + A = 300 1 1 0 200 400 600 800 1000 1200 0 100 200 300 400 500 600 700 800 Stroke [mm] Stroke [mm] [Graph 6] Allowable load mass by stroke 32 [Graph 5] Allowable load mass by stroke 25 100 100 y, z + A = 0 y, z + A = 0 y, z + A = 50 y, z + A = 50 10 Load mass [kg] Load mass [kg] 10 y, z + A = 100 y, z + A = 100

MT-S8 8 40 MT-S12 12 Caution Do not apply a load that is 50% or more of the theoretical output.

across flat 14 (Hexagon) E 11 E 11 D E 11 3 3 3 3 3 3 M10 x 1 M10 x 1 M10 x 1 Q Q Q D D (F) (F) (F) P P P Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) S S S 31 8 31 8 31 14.9 14.9 14.9 R R R 6 6 6 M5 x 0.8 M5 x 0.8 M5 x 0.8 8 Y Y Y A A A C a a a C C b B 20 30 21 31 Dimensions Model Dimensions Model Dimensions a 3.5 4 5 6 A 4.5 5 6 7 b 7 B 8

across flat 14 (Hexagon) E 11 E 11 D E 11 3 3 3 3 3 3 M10 x 1 M10 x 1 M10 x 1 Q Q Q D D (F) (F) (F) P P P Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) S S S 31 8 31 8 31 14.9 14.9 14.9 R R R 6 6 6 M5 x 0.8 M5 x 0.8 M5 x 0.8 8 Y Y Y A A A C a a a C C b B 20 30 21 31 Dimensions Model Dimensions Model Dimensions a 3.5 4 5 6 A 4.5 5 6 7 b 7 B 8

across flat 14 (Hexagon) E 11 E 11 D E 11 3 3 3 3 3 3 M10 x 1 M10 x 1 M10 x 1 Q Q Q D D (F) (F) (F) P P P Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) S S S 31 8 31 8 31 14.9 14.9 14.9 R R R 6 6 6 M5 x 0.8 M5 x 0.8 M5 x 0.8 8 Y Y Y A A A C a a a C C b B 20 30 21 31 Dimensions Model Dimensions Model Dimensions a 3.5 4 5 6 A 4.5 5 6 7 b 7 B 8

across flat 14 (Hexagon) E 11 E 11 D E 11 3 3 3 3 3 3 M10 x 1 M10 x 1 M10 x 1 Q Q Q D D (F) (F) (F) P P P Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) S S S 31 8 31 8 31 14.9 14.9 14.9 R R R 6 6 6 M5 x 0.8 M5 x 0.8 M5 x 0.8 8 Y Y Y A A A C a a a C C b B 20 30 21 31 Dimensions Model Dimensions Model Dimensions a 3.5 4 5 6 A 4.5 5 6 7 b 7 B 8

across flat 14 (Hexagon) E 11 E 11 D E 11 3 3 3 3 3 3 M10 x 1 M10 x 1 M10 x 1 Q Q Q D D (F) (F) (F) P P P Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) S S S 31 8 31 8 31 14.9 14.9 14.9 R R R 6 6 6 M5 x 0.8 M5 x 0.8 M5 x 0.8 8 Y Y Y A A A C a a a C C b B 20 30 21 31 Dimensions Model Dimensions Model Dimensions a 3.5 4 5 6 A 4.5 5 6 7 b 7 B 8

0.0 5 0 10 20 30 5 0 10 20 30 Circulating fluid flow[L/min] Circulating fluid flow[L/min] Fig. 9-7 Pump capacity(HRS040--20-(BJM)) 9.6.2 HRS040--20-T,-MT 0.5 50 Available area 0.4 40 Circulating fluid pressure[MPa] Pump head[m] Outlet50Hz Outlet:60Hz 0.3 30 0.2 20 0.1 10 Return port Available area 0 0.0 0 10 20 30 40 Circulating fluid flow[L/min] Fig. 9-8 Pump capacity(HRS040--20-T/-MT)

A large digital display provides a clear view of the current and set values. 

A large digital display provides a clear view of the current and set values. 

flat 10 Width across flat 10 A A 10 10 2 2 1.8 1.8 8.4 6 Dimensions (per stroke) Dimensions (per stroke) 10 13 Weight (g) Non-rotating (J) Rotating (K) Weight (g) Non-rotating (J) Rotating (K) 14 11 A B D A B D Model Model ZP3-T13B;3-B5 ZP3-T13B;6-B5 ZP3-T13B;10-B5 ZP3-T10B;3-B5 ZP3-T10B;6-B5 ZP3-T10B;10-B5 8.5 9.7 11.7 8.6 9.8 11.8 8.6 9.7 11.7 8.7 9.8 11.8 15 18 22 34.5 41 51 11 14.5 20.5

E MGPL (ball bushing)/Dimensions A, E (mm) (mm) E E A 10 to 39st 43 49 A Bore size (mm) Bore size (mm) 10 to 74st 42 46 75 to 100st 60.5 64.5 101 to 250st 85 95 10 to 74st 0 0 75 to 100st 18.5 18.5 101 to 250st 43 49 40 to 100st 55 65 101 to 250st 85 95 10 to 39st 1 3 40 to 100st 13 19 101 to 250st 43 49 12 16 12 16 A E A E Bore size (mm) Bore size (mm) 20 to 74st 53 53.5 75 to 200st 84.5

Cooling Capacity: 018 (Cooling Capacity: 1500/1700W, 50/60 Hz), Cooling Method: A (Air-cooled Refrigeration), Thread: Rc, Option: MT (M + T)