SMC Corporation of America
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Search Results "CDQ2B40-30+15DCZ-M9BV-XC11"

Magnet: D (Built-in), Rod Type: Standard, Mounting: A (Both Ends Tapped), Bore Size: 12mm, Stroke: 15mm, Body Option: C (Rubber Bumper), Auto Switch Groove: Z (Auto Switch Mounting Grooves), Auto Switch: M9BV--Solid State , Gen. Purpose, 2 Wire, Vertical

Magnet: D (Built-in), Rod Type: Standard, Mounting: B [Through Hole (Standard)], Bore Size: 20mm, Stroke: 15mm, Body Option: C (Rubber Bumper), Auto Switch Groove: Z (Auto Switch Mounting Grooves), Auto Switch: M9BV--Solid State , Gen. Purpose, 2 Wire, Vertical

Magnet: Built-in, Mounting: B [Through Hole (Standard)], Type: Standard, Bore Size: 63mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Mounting Bolt: None, Rod End Bracket: None, Auto Switch: M9BV--Solid State , Gen.

Magnet: Built-in, Mounting: B [Through Hole (Standard)], Type: Standard, Bore Size: 16mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Mounting Bolt: None, Rod End Bracket: None, Auto Switch: M9BV--Solid State , Gen.

Magnet: Built-in, Mounting: Both Ends Tapped, Type: Standard, Bore Size: 12mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Mounting Bolt: None, Rod End Bracket: None, Auto Switch: M9BV--Solid State , Gen.

Magnet: Built-in, Mounting: Both Ends Tapped, Type: Standard, Bore Size: 16mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Mounting Bolt: None, Rod End Bracket: None, Auto Switch: M9BV--Solid State , Gen.

Magnet: Built-in, Mounting: Both Ends Tapped, Type: Standard, Bore Size: 25mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Mounting Bolt: None, Rod End Bracket: None, Auto Switch: M9BV--Solid State , Gen.

Magnet: Built-in, Mounting: Both Ends Tapped, Type: Standard, Bore Size: 32mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Mounting Bolt: None, Rod End Bracket: None, Auto Switch: M9BV--Solid State , Gen.

Magnet: Built-in, Mounting: Both Ends Tapped, Type: Standard, Bore Size: 40mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Mounting Bolt: None, Rod End Bracket: None, Auto Switch: M9BV--Solid State , Gen.

Magnet: Built-in, Mounting: B [Through Hole (Standard; 12 through 63 Bore)], Bore Size: 12mm, Port Thread Type: Rc: 32-100 Bore; M Thread 12 to 25 Bore, Stroke: 15mm, Body Option: Rubber Bumper, Auto Switch Groove: Auto Switch Mounting Grooves, Auto Switch: M9BV--Solid State , Gen.

Pressure 0.6 MPa 0.5 40 8 0.5 Gripping force (N) Gripping force (N) 0.4 30 6 0.4 0.3 0.3 20 4 0.2 0.2 10 2 0.1 0.1 0 20 30 50 60 Gripping point L (mm) 40 0 30 40 60 70 Gripping point L (mm) 50 80 MHY2-16D MHY2-25D F F F F 35 100 Pressure 0.6 MPa Pressure 0.6 MPa 30 0.5 0.5 80 25 Gripping force (N) External grip Gripping force (N) 0.4 0.4 60 20 0.3 0.3 15 40 0.2 0.2 10 20 0.1 0.1 5 L L 0 20

MY2 H/HT MY3A MY3B MY3M Load Mass Allowable Moment MY1H/m3 MY1H/M3 MY1H/M1 MY1H/M2 q r w e t 30 40 50 50 40 30 40 50 30 40 50 30 20 20 20 20 MY1H40 MY1H32 10 10 10 MY1H40 MY1H40 MY1H32 Load mass kg MY1H32 Moment Nm Moment Nm Moment Nm 5 4 3 MY1H25 MY1H40 10 5 4 3 5 4 3 MY1H32 MY1H25 MY1H25 2 MY1H25 5 4 2 2 1 3 1 1 0.5 0.4 0.3 2 0.5 0.4 0.3 0.5 0.4 0.3 D0.2 1 0.2 0.2 0.1 -X 100 200 300 400

Required griping force = 0.15 kg x 20 x 9.8 m/s2 = Approx. 29.4 N or more 80 60 30 40 20 0 Gripping point L mm Length of gripping point: 30 mm Selecting the MHF2-12D The gripping force is obtained from the intersection point of the gripping point distance L = 30 mm and a pressure of 0.4 MPa.

Required griping force = 0.15 kg x 20 x 9.8 m/s2 = Approx. 29.4 N or more 80 60 30 40 20 0 Gripping point L mm Length of gripping point: 30 mm Selecting the MHF2-12D The gripping force is obtained from the intersection point of the gripping point distance L = 30 mm and a pressure of 0.4 MPa.

Allowable load mass on guides and moment Allowable moment [Nm] M1 1.3 2.6 8.6 17 30 67 96 Bore size (mm) Allowable load mass on guides m [kg] 6 10 15 20 25 32 40 M2 1.4 2.9 8.9 18 35 82 124 M3 1.3 2.6 8.6 17 30 67 96 9 15 35 60 104 195 244 The table above indicates the maximum performance of the guide, but does not show the actual allowable work load mass.

RLQB32-20 RLQB32-25 RLQB32-30 RLQB32-40 RLQB32-50 RLQB32-75 RLQB32-100 RLQB40-20 RLQB40-25 RLQB40-30 RLQB40-40 RLQB40-50 RLQB40-75 RLQB40-100 RLQB50-30 RLQB50-40 RLQB50-50 RLQB50-75 RLQB50-100 RLQB63-30 RLQB63-40 RLQB63-50 RLQB63-75 RLQB63-100 M5 x 90l M5 x 95l M5 x 100l M5 x 110l M5 x 120l M5 x 145l M5 x 170l M5 x 100l M5 x 105l M5 x 110l M5 x 120l M5 x 130l M5 x 155l M5 x 180l M6 x 120l

F F MHL2-10D Z-X85 MHL2-16D Z-X85 1 2 1 2 MHL2-10DZ-X85 MHL2-16DZ-X85 25 25 70 60 70 60 20 20 Pressure 0.6 MPa Gripping force [N] Gripping force [N] Gripping force [N] Gripping force [N] Pressure 0.6 MPa Pressure 0.6 MPa 50 50 Pressure 0.6 MPa 0.5 MPa 0.5 MPa 15 15 40 40 0.5 MPa 0.5 MPa 0.4 MPa 0.4 MPa 30 30 10 10 0.4 MPa 0.4 MPa 0.30 MPa 0.3 MPa 20 20 5 5 10 10 0 0 10 20 30 40 50 60 70 0

MHZ MHC2/MHCA2/MHCM2 MHF MHL F MHR L MHK MHS F MHC MHC2-6D/MHCA2-6D MHC2-6S/MHCA2-6S MHCM2-7S MHT Pressure 0.6MPa 4 4 2 MHY Pressure 0.6MPa 0.5 Pressure 0.6MPa MHW Gripping force N Gripping force N Gripping force N 3 3 0.4 MRHQ 0.5 0.5 Misc. 2 2 1 0.3 0.4 0.4 D0.2 1 1 0.3 200 30 20 10 0 30 20 10 0 30 20 10 Gripping point L mm Gripping point L mm Gripping point L mm 12-8-11 12 Series MHC2/

20 10 0 30 20 10 0 30 20 10 Gripping point L mm Gripping point L mm Gripping point L mm 12-8-11 12 Series MHC2/MHCA2/MHCM2 Confirmation of Inertial Moment of Attachment Step 2 Confirm the inertial moment of one of the two attachments.