to 100 Slainlss sleel p6lon rod and rod nut 12 to 100 Adlustable stroke extend 1 2 1 0 1 0 0 Adiustable slroke relracl i 2 1 0 1 0 0 Dualstroke, dua rod '12 to 100 Dual stroke, single rod T2 io 100 NPT Port (1) 32 lo 160 Metal corl scraper 32 lo 100 Wth hont gude bo6s (1J 12 to 100 Hollow piston rod 20 to 100 Inch-size wrench llats 12to 1m (1J Nol avaibble on NCQ2 series. 1.
~me~~'U~ rl ~a~ca"--L_ ___'~O~O '--__-r_ -c~-c~c-~__ r -D-A30 ti I Different surfaces 35 + 30~n _ 2) 110 + 3O(n 2) DG39 ~ 1" =2.4. 6.8"-) D-K39 ~ Same surface 100 + 1oo(n _ 2) 110 + 100{n 2) 1-"->-"-==::---+-,,;---+-_--"'1 "-= = -= 27 .4"',6"'."
+ 100 (n 2) (n = 2, 3, 4, 5) D-G39/K39 D-A3/A44 35 + 30 (n 2) (n = 2, 3, 4, 5) 10 35 100 Note 1) Auto switch mounting Auto switches 2 pcs.
Roller Type/Round Bar Type/ Chamfered Type Graph (1) Lever Type (With shock absorber) Friction coefficient = 0 Graph (2) Lever Type (With shock absorber) Friction coefficient = 0.1 Graph (3) 100 200 200 50 130 130 50 50 100 100 50 40 40 40 40 Example 1 30 40 50 40 50 Weight of transferred object m (kg) Weight of transferred object m (kg) Weight of transferred object m (kg) 20 30 30 Example
Note 3) The maximum dimensions that appear are those measured at the maximum rotating angle. settings: 100 and 190.
Note 3) The maximum dimensions that appear are those measured at the maximum rotating angle. settings: 100 and 190.
60 15 0.4 0.3 150 0.4 0.4 MHK 40 10 0.3 0.3 100 0.2 0.2 0.2 MHS 5 20 50 MHC 0 0 40 Gripping point L (mm) 120 80 160 200 20 40 60 Gripping point L (mm) 80 0 20 40 60 Gripping point L (mm) 80 100 120 MHT MHW2-25D MHW2-40D 160 50 MHY Pressure 0.7 MPa Pressure 0.7 MPa 140 0.6 0.6 40 Gripping force (N) Gripping force (N) 120 MHW 0.5 0.5 100 30 0.4 0.4 80 MRHQ 0.3 0.3 20 60 0.2 0.2 Misc. 40 10
-40D 160 50 MHY Pressure 0.7 MPa Pressure 0.7 MPa 140 0.6 0.6 40 Gripping force (N) Gripping force (N) 120 MHW 0.5 0.5 100 30 0.4 0.4 80 MRHQ 0.3 0.3 20 60 0.2 0.2 Misc. 40 10 20 D0 20 40 60 Gripping point L (mm) 100 80 20 40 60 Gripping point L (mm) 80 100 120 140 160 0 20Confirmation of Gripping Point MHY Step 2 MHW 200 60 H H 50 Overhang H (mm) Overhang H (mm) MHW2-20D 150 MHW2-25D MHW2
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
The MXQ precision slide is ideal for applications requiring closely held parallelism and perpendicular specifications. The table and bearing guide are integrated into one precisely machined part made of hardened stainless steel. This minimizes tolerance stack-up associated with multiple part assemblies, and affords height tolerances of +/-0.05mm. The bearing is a recirculating linear guide
Protrusion of Auto Switch from Edge of Body: H (mm) (mm) D-M9V D-M9V D-M9N Auto switch model Auto switch model L H 1.3 The auto switch will not protrude in the case of D-F9. H 2.3 12-5-26
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com 0.5 1 Point of application L Workpiece weight m kg 0.1 Transfer speed V m/min 30 20 10 5 5 30 20 10 Transfer speed V (m/min) Transfer speed V (m/min) MIW20 MIS20 MIW25 MIS25 MIW32 MIS32 30 20 100 L = 120 mm L = 100 mm L = 80 mm L = 60 mm L = 40 mm 40
Hmm 0.3MPa 0.7MPa 0.3MPa 60 0.7MPa 0.4MPa 60 0.4MPa 40 40 20 20 100 80 60 40 20 0 100 0 80 60 40 20 Gripping point L mm Gripping point L mm 12-3-6 7 Model Selection Series MHF2 Confirmation of External Force on Fingers: Series MHF2 Step 3 MHZ L L MHF MHL Mr Mp Fv My MHR MHK MHS L MHC MHT MHY L: Distance to the point at which the load is applied (mm) MHW Maximum allowable moment Allowable