K MA V L MXP12-15B 40 29 55 68 15 76 22 9 59 24 MXP12-25B 60 49 75 98 25 106 40 29 89 42 8-8-19 19 Series MXP Dimensions: MXP16 Z 3 Metal stopper 2-M5 x 0.8, depth 8 V K 6.5 5 M G Max. 4 Max. 4 11 25 2-M4 x 0.7, depth 6 Stroke: S MXP16-20 Piping port Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800)
How to Order Integrated Display Type PF2W7 20 T 03 27 Flow rate range Unit specification T Temperature range 0.5 to 4 l/min 2 to 16 l/min 5 to 40 l/min 04 20 40 0 to 90C Nil M With unit switching function Lead wire (Refer to page 35.)
In common EB P EA SY7 40 Type 43 Stacking type Individual wiring SY9 40 + + + + P. 89 Manifold stations can be increased. Type 43P Stacking type Flat ribbon cable SY9 40 P. 103 Manifold stations can be increased. In common Type 45 Stacking type/DIN rail mounted Individual wiring SY3 40 SY5 40 + + + + + P. 115 Stations can be increased on the DIN rail.
MVGQM, MVGQL Common Dimensions ML2B Applicable solenoid valve B C DA G GA H J K L MM ML NN Q R S T V W X YY YL Z Bore size (mm) Standard stroke (mm) TA TB U Over 10 st 10 st C J G5-S 12 6 29 50 13 18 58 39 22 56 2 5 36 40 14 7 12 29 5 48 20 30 16 M4 x 0.7 10 M4 x 0.7 M4 x 0.7 10, 20, 30, 40, 50, 75, 100 16 CV 8 33 54 64 15 22 43 25 62 2.5 5.5 38 42 16 8 13 33 7 52 23 30 18 M5 x 0.8 13 M5
Size Load voltage Auto switch model Lead wire (m) Indicator Equiv. 25 piston area Equiv. 32 piston area Equiv. 40 piston area Equiv. 50 piston area Equiv. 63 piston area 25 32 40 50 63 Special function Electrical entry Wiring (output) Style Applicable load DC AC Perp. In-line 0.5 () 3 (L) 5 (Z) None (N) 3 wire (Equiv.
R Port Rc (PT)1/8 40/41 Type How to Order SS3YJ7-40 -05 --01 Applicable solenoid valve SYJ714-l SYJ714M-l SYJ724-l SYJ724M-l R Port Rc (PT)1/8 R Port Rc (PT)1/4 Valve model P Port Rc (PT)1/8 01 Rc (PT)1/8 A port side P Port Rc (PT)1/4 Stations 40 Type 40 Applicable blank plate ass'y SYJ700-10-2A 2 stations 02 41 Type 41 .. ..
MY3A MY3B MY3M Load Mass Allowable Moment MY1MW/M1 MY1MW/M3 MY1MW/M2 MY1MW/m1 200 200 50 20 40 100 e 30 q w 100 10 20 t r 50 40 5 50 4 40 30 10 3 MY1MW63 MY1MW63 30 MY1MW63 MY1MW63 20 MY1MW63 MY1MW63 MY1MW63 MY1MW63 MY1MW50 MY1MW50 2 Load mass (kg) Moment (Nm) Moment (Nm) Moment (Nm) MY1MW50 MY1MW50 20 MY1MW50 MY1MW50 5 MY1MW50 MY1MW50 4 10 MY1MW40 MY1MW40 MY1MW40 MY1MW40 1 MY1MW40 MY1MW40
Wall mounting Cylinder MY1MW40-500 z Average operating speed a 200 mm/s Mounting orientation Horizontal mounting y Wd: Workpiece (500 g) x y Wc: MHL2-16D1(795 g) x z Wa: Connection plate t = 10 (880 g) x 3. Ceiling mounting 4. Vertical mounting MY1MW40-500 z y x y z Wb: MGGLB25-200 (4.35 kg) For actual examples of calculation for each orientation, refer to the pages above. 2.
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
60 15 0.4 0.3 150 0.4 0.4 MHK 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 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
Wall mounting Cylinder MY1MW40-500 z Average operating speed a 200 mm/s Mounting orientation Horizontal mounting y Wd: Workpiece (500 g) x y Wc: MHL2-16D1(795 g) x z Wa: Connection plate t = 10 (880 g) x 3. Ceiling mounting 4.
(No.4-40 UNC) 4 Lock screw 5 Joint bracket Links units to one another. Transmits signals to the neighboring unit and supplies power. Connector for unit (Plug) 6 y t y t EX600-DXlB EX600-DYlB EX600-DXlCl q w q w e q w er e y t y t y t EX600-DXlD EX600-DXlE EX600-DYlE EX600-DMlE EX600-DXlF EX600-DYlF EX600-DMlF Analog Unit q w e q w e No.
0 60 20 40 0 60 80 20 40 0 60 Moment (Nm) Moment (Nm) Moment (Nm) Vertical Operation Intermediate Stops The cushion effect (smooth start-up, soft stop) exists only before the stroke end in the stroke ranges indicated in the table below.
(Total Travel) 3 P .T.
138 28 164.5 132 54 13 1/4 12.5 49 40 20 depth 6 Bore size (mm) S T U V W WB X Y 24 50 16 3.1 7.2 15.5 72 32 5 10 24.5 63 18.5 3 8.8 16 87.5 38.5 5 10 24.5 80 21 3.7 9 19 109 49 5 12.5 10-9-20
10 20 30 40 0 0 0.6 CE1 Transfer speed [m/min] = 0 Transfer speed [m/min] = 0.1 0.5 0.4 CE2 Graph (3) Graph (4) Bore size 20, 32/ = 0 Bore size 20, 32/ = 0.1 0.3 ML2B 0.2 0.1 C J G5-S 80 80 1000 2000 3000 4000 0 5000 Lateral load F [N] 32 CV 70 70 MVGQ 60 60 CC 50 50 32 RB 40 40 30 30 J 20 20 20 D20 10 10 -X 200 0 10 20 30 40 10 20 30 40 Transfer speed [m/min] = 0 Transfer speed [
Z S L, Z S Note ) PAX 1 1 4 1 2 PB AC Ordering example (Example) Series VXR21, Rc 3/4, 24 VDC, Conduit terminal (Part no.)
40 Me LEY 0 0.1 0.2 0.3 0.4 0.5 0 0.0 0.3 0.6 0.9 1.2 1.5 0 m Vertical Work load [kg] Work load [kg] LES 200 200 LEPY LEPS LEPY LEPS 160 160 L8 [mm] L8 [mm] 120 120 LER Z 80 80 L8 LEH 40 40 0 0.1 0.2 0.3 0.4 0.5 0 0.0 0.3 0.6 0.9 1.2 1.5 0 Me LEY -X5 m Work load [kg] Work load [kg] 11LEFS 11LEJS 25ALEC LEC S LEC SS-T LEC Y Motorless LAT LZ LC3F2 387 LEPS Series Step Motor (Servo/24 VDC)
A part z1 m1 = 40 X 7 X 8 X 2.7 X 10-6 Calculation of weight m1 = a X b X c X Specific gravity = 0.006(kg) Iz1 = {0.006 X (40 2+7 2)/12} X 10-6 Moment of inertia around Z1 axis = 0.8 X 10-6 (kgm 2) = 0.8 X 10-6+ 0.006 X 37 2 X 10-6 Iz1 = {m1(a 2+ b 2)/12} X 10-6 IA = 9.0 X 10-6(kgm 2) Moment of inertia around Z axis IA = IZ1 + m1r1 2 X 10-6 z r2 Z2 B part r2 = 47(mm) m2 = 5 X 10 X 12 X