SMC Corporation of America
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Search Results "MGCLB25-150-R"

1 r !0 !2 w y e u t !6 i o !7 B !3 B section MU25 Spring extend w i !0 o !8 t !5 q !7 r e u !1 !2 !6 y !4 A B !

Model number Serial number Type and quantity of refrigerant How to read the serial number A R 001 April 2022 A R 001 Year Symbol Remarks Month Symbol Remarks Serial no. 4 R Repeated from O to Z in alphabetical order, with O for January and Z for December 2022 A 2023 B 5 S Repeat ed from A to Zin alphab etical order 2024 C 6 T Fig 1-1 Position of product label HRR Series 1.4 Product Label

JXC-OMU0026 (4) CIR-R / CIR-L / CIR-3 Pushing Push Position Step Movement Speed Position Acceleration Deceleration Threshold Area 1 Area 2 In-position Axis Selection Speed Force No. mode (mm/s) (mm) (mm/s2) (mm/s2) (%) (mm) (mm) (mm) (%) (mm/s) (%) Axis 1 CIR-R 100 100.00 1000 1000 100 0.0 0.0 0.5 Axis 2 CIR-R 100.00 100 0.0 0.0 0.5 0 Axis 3 -Note 1) 50.00 100 0.0 0.0 0.5 Axis 4 -Note 1)

Note 3) A particulate generation test has been conducted in a vacuum environment of 10-Pa. a t e l u g c 2 Stainless steel linear guide & low particulate generation vacuum grease e i t n r a e p r a 0.0 10 0 20 10 w t i o o n L Operation cycles a t e l u g c e 1 i t n r a e Particulate generation from the linear guide unit has been reduced with the use of a stainless steel linear guide and

06 ZZR1 R 1 R1 ZR1 1 1 RV ZR1 Port location Stations R L Left side Right side 01 1 Arrangement (Right valve station which is looked from valve side is first station.) Arrangement (Right valve station which is looked from valve side is first station.)

controller PP+B7 1k PPB8 Current limit resistor R NP+B9 1 k NPB10 Current limit resistor R (b) Upper level equipment is PNP type Power supply for pulse train signal Positioning Unit side Inside the controller PP+B7 1k PP-B8 Current limit resistor R NP+B9 1k NP-B10 Current limit resistor R 27 - ii.

Note 3) A particulate generation test has been conducted in a vacuum environment of 10-Pa. a t e l u g c 2 Stainless steel linear guide & low particulate generation vacuum grease e i t n r a e p r a 0.0 10 0 20 10 w t i o o n L Operation cycles a t e l u g c e 1 i t n r a e Particulate generation from the linear guide unit has been reduced with the use of a stainless steel linear guide and

Note 3) A particulate generation test has been conducted in a vacuum environment of 105 Pa. a t e l u g c Stainless steel linear guide & low particulate generation vacuum grease e i 2 t n r a e p r a 0.0 10 0 20 10 w t i o o n L Operation cycles a t e l u g c e i t n 1 r a e Particulate generation from the linear guide unit has been reduced with the use of a stainless steel linear guide and

X165US inch rod option dimensional changes R V Integral clevis type (E)/CG5ENS Dim.

d 5 i e n R g All the external parts (made of aluminum alloy) such as the body and slide table are electroless nickel plated.

When the motor mounting position is right side parallel (LEFS*R) or left side parallel (LEFS*L), the rotation direction selection is 0(+: Counter motors side).

3 o r !4 u Component Parts Component Parts Note No. Description Note No.

Leakage voltage Particularly when using a resistor in parallel with a switching element and using a C-R element (surge voltage suppressor) to protect the switching element, take note that leakage current will flow through the resistor and C-R element, etc., creating a danger that the valve may not shut OFF.

(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

back direction [mm] 150 100 50 0 50 100 150 150 100 50 0 50 100 150 250 200 150 100 50 0 50 100 150 200 250 0 0 50 50 0.5 s 100 100 0.5 s 150 150 1 s 200 200 2 s 1 s 250 250 5 s 2 s 5 s 300 300 3) With energy saving type de-ionizing cartridge, Supply pressure: 0.3 MPa Installation distance in height from ionizer to workpiece (Charged object location) [mm] Installation distance in height

45 150 to 700 26 M10 X 1.25 32 6 8 46.5 5.5 22 19.5 17 12 13 11 45 150 to 1000 26 M14 X 1.5 40 8 10 56.2 7 24 21 22 14 16 12.5 50 200 to1000 32 20, 25 NA S TD TT TX TY TZ Z ZZ NN P N Bore size Stroke range 1 8 30 20 M20 X 1.5 146 8 10 32 32 52 192 202 150 to 700 20 1 8 34.5 M26 X 1.5 25 146 9 10 40 40 60 196 206 150 to 700 20 1 8 42.5 M26 X 1.5 32 159 9 10 40 40 60 209 219 150 to 1000 22

-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

2500 75 2500 150 2500 100 2500 11 200 3000 100 3000 200 3000 110 3000 12 250 3500 125 3500 250 3500 120 3500 13 300 4000 150 4000 300 4000 130 4000 14 350 4500 175 4500 350 4500 140 4500 15 400 5000 200 5000 400 5000 150 5000 60 No.

Axis Movement Speed Position Acceleration Deceleration Pushing Area 2 In-position 2) 2) mode (mm/s) (mm) (mm/s (mm/s Selection (mm) (mm) (mm) 1 CIR-R 100 100.00 1000 1000 0.0 0.0 0.5 2 CIR-R 100.00 0.0 0.0 0.5 0 1) 50.00 3 1) 50.00 4 () () 1) CIR-R CIR-L 1 2 34 (5) SYN-I Area 1 Step No.