Bore size Stroke H G (Shock absorber stroke) S T W SD TT E Shock absorber EA h EY Stroke adjusting unit EC FA MY2H16 W Applicable cylinder MY2H16 MY2H25 MY2H40 TT 5.6 (MAX. 12) 7.1 (MAX. 18.6) 10 (MAX. 6) SD 6.7 17.7 Shock absorber model RB1007 RB1412 RB2015 E 14.4 17.5 25 h 6 6 EA 7 8.5 13 EC 6 9 13 EY 27 36 57 FA 12.5 19.3 17 S 46.7 67.3 73.2 T 7 12 15 W 23.5 25.8 38 8-13-27 28 Series
&lfifitweBftl L x 36mm W x 59mm H, 4409 Houu incneasd by 250% tage nozzle design allows for suction tlow of to 250% higher than traditional single stage 3-stage nozzle design -in 0ne-Iomt Hffn$ ilt-in One,Touch fittings (O% SUP / O% VAC) for quick and easy process connection. filhn & txlau$ $ilemen f ilter and exhaust Silencer are an part of the vacuum ejector module. exhaust oDtion is also
) 7.1(MAX 18.6) 10 (MAX 26) T 6 7 12 S 40.8 46.7 67.3 h 4 5 6 FA 38.5 56.4 67.8 EY 27 36 56.5 EC 6 9 13.5 E 14.4 17.5 25 EA 7 8.5 13 W 16.5 25.8 38 High load shock absorber MY2C Bore size Stroke H G T S (Shock absorber stroke) E SD TT EY EA EC Stroke adjusting unit h Shock absorber FA W Applicable cylinder MY2H25 MY2H40 SD 17.7 Shock absorber model RB1412 RB2015 FA 56.4 67.8 h 6 6 W 25.8
Can be used based on n = + + '+ + ' = 0.25 + 0.022 + 0.011 + 0.17 + 0.24 = 0.693 1 n = + + + n 1 7 Air Slide Table Series MXQ Load weight: W (kg) Overhang: Ln (mm), Corrected value of moment center position distance: An (mm) Work piece mounting coefficient: K Fig. 3 Fig. 1 Fig. 2 Pitch moment Yaw moment Roll moment Table mounting W W My Mp Mr W W W Static moment Dynamic moment L
&lfifitweBftl L x 36mm W x 59mm H, 4409 Houu incneasd by 250% tage nozzle design allows for suction tlow of to 250% higher than traditional single stage 3-stage nozzle design -in 0ne-Iomt Hffn$ ilt-in One,Touch fittings (O% SUP / O% VAC) for quick and easy process connection. filhn & txlau$ $ilemen f ilter and exhaust Silencer are an part of the vacuum ejector module. exhaust oDtion is also
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.
Pallet Lock Cylinder W-R1/W-R3 Series How to Order W R1 S2 Type 1 B W R3 S B Type 3 Proximity Switch B With mounting bracket (Without proximity switch) SC With proximity switch * For details, refer to the table below.
D-M9V D-F9WV Hs Hs D-F9BAL Hs Hs D-A9 D-A9V D-M9, D-F9W D-M9V, D-F9WV Auto switch model W 19.5 21.5 B 4.5 4 A 11.5 12 W 5.5 6 B 4.5 4 A 11.5 12 Hs 17 19 B 0 0 A 7.5 8 W 1.5 (4) 2 (4.5) B 0 0 A 7.5 8 Symbol Bore size (mm) 12 16 D-F9BAL Auto switch model W 14.5 15 Hs 17 19 A 10.5 11 B 3.5 3 Symbol Bore size (mm) 12 16 ( ): Denotes the values of D-A93. 10-7-12 13 Rotary Clamp Cylinder:
W D d E E D M MA a a M MA F NA NA F K A A K C H + Stroke S + Stroke H B ZZ + 2 strokes (mm) Bore size (mm) A a B C d E F G GA J K M MA MM NA P R S T V W H ZZ D 0 -0.018 0 -0.021 0 -0.021 0 -0.021 0 -0.025 0 -0.025 0 -0.025 0 -0.062 0 -0.062 0 -0.074 0 -0.074 0 -0.074 0 -0.074 0 -0.087 40 23 10 60 44 18 45 25 14 17.5 M8 x 1.25 18 13 20 M14 x 1.5 30 1/4 37 114 11 7.5 8 66 246 17 50 25 9 73
As a guide, adjust P2, so that it could be W + P2A = P0a.
As a guide, adjust P2, so that it could be W + P2A = P0a.
e Drain cock with barb fitting: 6 x 4 nylon tube W AC25 to 60 q w Note 3) Name plate, caution plate for bowl, and pressure gauge in imperial units (PSI, F) q w Z AC10 to 60 w q e When more than one specification is required, indicate in ascending alphanumeric order.
LEF How to Order LEJ 11 Vacuum type LEJS 11 40 S2 A 500 H LEL Clean series q w e r y u i o !0 !
Load N 150 100 50 200 250 Load N 150 100 100 400 500 Load N 300 200 3 Precision Air Slide Table Series MXP Table Accuracy Clean Series: Precision Air Slide Table Traveling parallelism C 11-MXP Cylinder bore Stroke Adjuster option D Surface C to surface A M Clean series Vacuum type B Surface D to surface B W 11-MXPJ6Stroke A Port C Clean series Vacuum type This type has a relief port provided
Specifications and operational instructions MI W S 1 2 Note 3) For the formula of moment of inertia (kgm2), refer to the catalog of rotary actuator. Confirmation of specifications 0.7 < 3 (max.) t 10 (min.) < 25 < 80 (max.) F F1 628 < 686 (max.) CEP1 3.
1W 2 WAREA ON W 1 W 1 *W 1W 2 PARA W 1=W 2=0 WAREA OFF (-) (+) W 2 W 2 * * 1 1 * 11 11 * 12 12 * *1 46 - 11.3 12 1CW [CW] 2CCW [CCW] 12 1[] 2[SW] *1 * *1 *1 * 0[] 1a [a ] 2b [b ] 02 SW * 21 21 * *1 47 - 12 12.1 ( ) *1 2 M 2 1 12.2 * []0 [] / M 48 - 12.3 []1 1 INP ON (/) M 2 () INP OFF 3 [1] INP OFF INP ON 49 - [2] INP ON 12.4 1 2 3 PLC 2 12.5 3
7 8.5 13 EC 6 9 13 EY 27 36 57 FA 12.5 19.3 17 h 4 5 6 S 40.8 46.7 67.3 T 6 7 12 TT 5.6 (Max. 11.2) 7.1 (Max. 18.6) 10 (Max. 26) W 16.5 25.8 38 High load shock absorber MY2H Bore size Stroke H G (Shock absorber stroke) S T W SD TT E Shock absorber EA h EY Stroke adjusting unit EC FA MY2H16 W Applicable cylinder MY2H16 MY2H25 MY2H40 TT 5.6 (Max. 12) 7.1 (Max. 18.6) 10 (Max. 6) Shock absorber
Example: Set 20 W (100 W 20%) for the 100-W external Regenerative resistor with natural convection cooling method: Pn600 = 2 (unit: 10 W) Note 1. If Pn600 is not set to the optimum value, alarm A.320 will occur. 2.
Example: Set 20 W (100 W 20%) for the 100-W external Regenerative resistor with natural convection cooling method: Pn600 = 2 (unit: 10 W) Note 1. If Pn600 is not set to the optimum value, alarm A.320 will occur . 2.
VQ1000-FPG-C4M5-D: 6 sets Double check block 757 S0700 Series Construction Body Ported Construction 2(B) (A)4 S0716 2-Position Single r u e w q 3(R2) (R1)5 1 (P) t y i 2-Position Double S0726 2(B) (A)4 r u e w q 3(R2) (R1)5 1 (P) t y i 3-Position Closed Center S0736 r u e w q 2(B) (A)4 (R1)5 1 (P) 3(R2) t y i 4-Position Dual 3-Port Valve S07A6 r u e w q 2(B) 4(A) 5(R1) 3(R2) 1(P) N.C. + N.C