L3 A3 Graph (1) Load Weight: W Mr Static moment Dynamic moment MXY6 W My W L3 A3 0.6 A2 L2 Rubber stopper screw MX Load weight W kg Mr 0.5 L1 A1 Metal stopper screw Mp 0.4 W MTS My W 0.3 W MY 0.2 Mey Mep 0.1 We CY We 0.0 A2 L3 A3 L2 Collision speed V mm/s 0 100 200 300 400 500 280 560 MG Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650
Vertical mounting: f = W = 0.3 (Slide bearing) = 0.1 (Ball bushing bearing) W 0.5 NO Confirmation of adjusting bolt capacity W WA Determine the movable weight WA which can be operated only by adjusting bolts.
B W W A stroke 89 Series CP96/C96 Symbol -XC11 Dual Stroke Cylinder/Single Rod Type 8 Dimensions (Dimensions other than below are the same as standard type.)
Can be used based on n = + + '+ + ' = 0.25 + 0.022 + 0.011 + 0.17 + 0.24 = 0.693 1 n = + + + n 1 7 Air Slide Table Series MXQ Load weight: W (kg) Overhang: Ln (mm), Corrected value of moment center position distance: An (mm) Work piece mounting coefficient: K Fig. 3 Fig. 1 Fig. 2 Pitch moment Yaw moment Roll moment Table mounting W W My Mp Mr W W W Static moment Dynamic moment L
x PC F=q x PA+(e-q) x PC F=-q x PA+r x PB+(w-e) x PC F=q x PA q, w and e are piston areas.
Retraction locking: B Extension locking: F CL W CL1 B A MLGC Emergency stop Drop prevention A W B CNG W MNB Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com CNA W CNS W CLS CLQ MLGP W RLQ W MLU ML1C W DPreparing for Operation Warning 1.
X axis Y axis Z axis Z 5 W 5 mm 10 mm 20 mm 0.8 kg 20 Y 10 3.
12 CUJ A B W CU 16/20/25 CQS CQM W A B CQ2 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com RQ Hs 32/40/50 MU D(mm) -X D-A9 D-M9 D-F9 W Auto switch model D-F9BAL Mounting height Hs exists only for the D-F9BAL type. 20Symbol A B W A B W A B W HS 16.5 18.5 22 24 26.5
8.5 10.7 6-M5 x 0.8 depth 7 20 20 L (mm) L K J V H S Z M MA W Model 36 40 93 82 58 20 102 40 30 65 MXP16-20B 42 50 119 108 70 30 128 56 46 75 MXP16-30B 14
1 u t q w e y !2 i r !4 !0 MX MTS MY CY !9 !8 !5 !7 MG Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com CX MY1WK with side seal D@5 @0 @3 @4 @2 @1 -X 20Data Component Parts No. q w e r t y u i o !0 !
1 u t q w e y !2 i r !4 !0 MX MTS MY CY !9 !8 !5 !7 MG CX MY1WK with side seal D@5 @0 @3 @4 @2 @1 -X 20Data Component Parts No. q w e r t y u i o !0 !
4 #1 @6 @1 u @0 #0 o w !5 !8 !9 !6 !7 @9 !2 @2 @4 t e !0 CH2G Series !3 @3 r @5 !
M2 bolt circle M1 W I dia.
B MY CY 22 (20) MG Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com A CX D-A9V D-M9V D-F9WV D-X 20( ): Denotes the values of D-M9V, D-F9WV. 5(7) B W Data D-A9, D-A9V D-F9W, D-M9 D-F9WV, D-M9V Bore size (mm) A A W B W B A W B 6 12.5 3.5 (6) 16.5 7.5 2.5 16.5 5.5 2.5
Features 2 Mechanically Jointed Rodless Cylinder with Protective Cover Series MY1W Slide Bearing Guide Type/Cam Follower Guide Type 16, 20, 25, 32, 40, 50, 63 How to Order Y7BW 300 25 MY1 M W K Number of auto switches Guide type Auto switch type 2 pcs. 1pc. "n" pcs.
Through holes Double end taps Extension locking Easy manual unlocking B Locked A 40 to 100 20 to 32 W Retraction locking Unlocked 40 to 100 20 to 32 W A B Wide variations from 20 to 100 Standard stroke (mm) Locking direction Bore size (mm) Mounting Series 5 10 15 20 25 30 35 40 45 50 75 100 20 Through holes, double end taps common 25 Extension locking 32 40 CLQ Through holes 50 Retraction
TH Rear cylinder Port TP w e r t q u i y w e r t q u i y Approx. Max. T1 Approx. Max. T1 Approx. Max. T2 Approx. Max. T2 Approx. T3 Cylinder with by-pass piping component parts No. 1 2 3 4 Quantity 1 1 1 1 Description Part No.
x PC F=q x PA+(e-q) x PC F=-q x PA+r x PB+(w-e) x PC F=q x PA q, w and e are piston areas.