SMC Corporation of America
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Search Results "VV80110-02F-SD60-W1-R-Q"

Pad assembly ZL ZH ZH Pad Locking status: Acceptable e ZH -X267 q Lock plate w Lock screw r Stud assembly Unlocked ZHP ZHP Adhesion q Remove the lock screw. w Push the lever (on the ejector side) of the lock plate to slide it to a position where it stops completely. e Pull out the pad assembly. r Pull out the stud assembly from the pad assembly. t Remove the holder. y Remove the plate from

4 q o !3 @1 @0 !1 !0 !2 r w u e !5 y !9 u t MDHR3 !4 !3 q !1 @0 @1 w o e i !5 r !7 !6 t !8 !0 !2 i !9 y u MHZ Component Parts MHF Description Material Description Material Note Note No. No.

i' r' il r: "r l i r i , ,,: ,. .-:,, ii' r, , n One-touch connection reduces installation time and costs. n Rugged, vibration resistant composite body. n Various shapes and configurations to meet vehicle applications and make installation easier. tr Nylon tubing n Pipe fittings D0T/$trlFrlltinm lu $efies Taile 0l Conleilts Body lil 0ne-Iouclt Page H Male Connector . . .

Port location on head cover 10, 16 Nil R Perpendicular to axis Axial direction Built-in Magnet Cylinder Model Suffix the symbol -A (Rail mounting style) or -B (Band mounting style) to the end of part number for cylinder with auto switch. For configuration, refer to page 10-3-7.

Port location on head cover 10, 16 Nil R Perpendicular to axis Axial direction Built-in Magnet Cylinder Model Suffix the symbol -A (Rail mounting style) or -B (Band mounting style) to the end of part number for cylinder with auto switch. For configuration, refer to page 10-3-7.

Port location on head cover 10, 16 Nil R Perpendicular to axis Axial direction Built-in Magnet Cylinder Model Suffix the symbol -A (Rail mounting style) or -B (Band mounting style) to the end of part number for cylinder with auto switch. For configuration, refer to page 10-3-7.

Step Motor (Servo/24 VDC) Electric Actuator Miniature Rod Type LEPY Series LEPY6, 10 How to Order LEPY 10 K 50 1 1 R 6N q w e r t y u i o !

Description Note Note Material Aluminum alloy Material Zinc alloy Clear anodized Plate q !2 MK(2) Refer to the note below. Clear anodized Aluminum alloy Head cover Solenoid valve w !3 Stainless steel Cylinder tube Aluminum alloy Clear anodized Pipe e !4 RS Q G Stainless steel Piston rod NBR Piston seal r !5 Brass Piston NBR Rod seal t !

Be aware that there is an increase in the leakage voltage particularly if a C-R element (surge voltage protector) is used for protecting the switching element, because the leakage current flows through the C-R element.

L R L R L R L R L R L R Glass q w e Stainless steel Stainless steel Cross recessed round head screw Brass Stainless steel r t Stub 3.8-2 ISA Specifications Fluid Dry air (Filtered through a 5m filter) Operating pressure range 0.05 to 0.2MPa Recommended pressure range 0.1 to 0.2MPa Detection zone 10 to 300 m Repeatability including temperature characteristics 10m (for 0 to 60C on the basis

Drip failure can cause damage to the components that need lubrication. 0.04 0.02 0 0 2000 4000 6000 8000 Flow rate L/min (ANR) 51 Lubricator AL10 to 60 Construction AL10 AL20 w w e q q t IN OUT IN OUT y y r u u AL30, 40 AL50, 60 w w q t q e e t IN OUT OUT IN y r i r u y u Parts list Description Material Note No.

of ge ge an an n r tio ta n r Ro +8 0 io Ro tat tat Ro 80 io t 1 n r fla an ge gle of sin +10 0 Ro tat 90 ion t 1 ra fla ng le e o ing f s With external stopper For 90 For 180 Single flat Single flat A n 5 5 gl e ge ge ad an an ju t r t r st en m en en stm m t r st ju ju an ad ad ge le e Ang 5 gl n A B port A port B port A port 90 A 5 n gl ge e an ad t r ju en st m 180 Note) The drawings

ad an an ju t r t r st en m en en stm m t r st ju ju an ad ad ge le e Ang 5 gl n A B port A port B port A port 90 A 5 n gl ge e an ad t r ju en st m 180 Note) The drawings show the rotation range for the shaft's single flat.

Force Output Calculation Q: How do I figure out the theoretical force output of a cylinder? A: Follow these steps. 1. Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used.

Force Output Calculation Q: How do I figure out the theoretical force output of a cylinder? A: Follow these steps. 1. Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used.

(740) = qo50 Quick opening 50:1 (R=50) Y=(1-R-X)1/0.98 (750) = USEr Users definition11 polygonal line settings The default value at shipping is (700) = (Lin) Linear.