SMC Corporation of America
Elite Part Number Search
Search Results "VDW41-5GE-6-C10-N-XF"

Single vane type Double vane type +4 0 9 0 a a r r n n e n n g g g o o e e n i i t t 1 2 a a a 8 7 r t t 0 -5 +4 0 o o 0 0 n R R +4 0 +4 0 o 0 i 0 0 t a 9 1 t o e e R g g n n a a r r n n o o i i t t a a Chamfer Chamfer t t o o Chamfer Chamfer Chamfer R R A port B port B port A port A port B port A port B port A port B port For size 40 actuators, a parallel key will be used instead of

force [%] Duty ratio [%] Continuous pushing time [minute] 40C or less 95 or less 100 LES 40 or less 100 50 70 12 70 20 1.3 85 15 0.8 LEY25 LEPY LEPS 40C 140 Lead 3: LEY25AC LER 120 LEY25 Lead 6: LEY25AB 100 Lead 12: LEY25AA 500 LEH Force [N] 80 Lead 3: LEY25C 400 60 LEY -X5 Lead 6: LEY25B 40 Force [N] Lead 12: LEY25A 300 11LEFS 20 200 20 30 40 50 60 70 80 90 100 0 11LEJS Set value of pushing

type) 50 130 150 40 MSQA30 (High precision type) 20 0 10 20 30 40 50 60 70 18 16 14 12 10 8 6 4 2 0 Load N Load N MSQ7A MSQ50 MSQB50 (Basic type) MSQB7A (Basic type) 100 200 Displacement m Displacement m MSQA7A (High precision type) 80 150 60 120 40 50 MSQA50 (High precision type) 20 24 22 20 18 16 14 12 10 8 6 4 2 0 20 40 60 80 100 120 0 Load N Load N 11-9-9 10 Courtesy of Steven Engineering

RoHS Weight 4.6OZ (130 g) Stroke: 10 mm 9mm mm 9mm Thickness Maximum pushing force Maximum pushing force Maximum pushing force 6 N 6 N 6 N Linear guide Linear motor Pushing a very little load Pushing a very little load Pushing a very little load 3 functions in 1 unit 3 functions in 1 unit Example) Pushing a probe pin Example) Pushing a probe pin Positioning repeatability Positioning repeatability

C4SF-J C4SF-W C4SF-6 AD47-6 AD48-6 C4SF-6J C4SF-6W C4SF-2 AD47-2 AD48-2 C4SF-2J C4LF-8 AD47-8 AD48-8 C4LF-8J C1SF-6 AD17-6 C1SF-2 AD17-2 C2SF-C AD27-C C2SF-J C2SF-CJ C2SF-6 C2SF-6C AD27-6 AD27-6C C2SF-6J C2SF-6CJ C2SF-2 AD27-2 C2SF-2J C3SF-J C3SF-W C3SF-6 AD37-6 AD38-6 C3SF-6J C3SF-6W C3SF-2 AD37-2 AD38-2 C3SF-2J C3LF-8 AD37-8 AD38-8 C3LF-8J Polycarbonate Nylon Metal AC Metal

MPa) 0.3 (MPa) 0.2 (MPa) 0.2 (MPa) 1 1 0.1 (MPa) 0.1 (MPa) 0.5 0.5 0 0 0 1 2 3 4 5 6 7 8 9 10 0 1 2 3 4 5 6 7 8 9 10 Distance from the workpiece (mm) Distance from the workpiece (mm) Lifting Force [Bernoulli Type] Size: 40/60/80 Size: 100 Size: 120/150 10 20 6 80 120 5 8 16 Lifting force (N) Lifting force (N) Lifting force (N) 4 60 6 12 150 3 4 8 2 40 2 4 1 0 0 0 0 0.05 0.1 0.15 0.2 0.25

PE 20.3 29.4 P Exhaust part 8.4 17.7 0.8 107.5 Note 1) 10 (3.7) Circuit diagram 5 6 Q N 5 6 Q N Note 1) The above dimensions are for ZQ1 1U2 L-E G -00.

N-04 N-06 L-04 L-06 S-04 S-06 LL-04 LL-06 4 6 N-08 8 N-10 10 N-12 12 4 6 L-08 8 L-10 10 L-12 12 4 6 S-08 8 S-10 10 S-12 12 4 6 LL-08 8 LL-10 10 LL-12 12 Precautions Be sure to read before handling.

Brazil EXW1-BMJAAE E EXW1-BMJAAN N EXW1-BMJABE E EXW1-BMJABN N A Base MJ B A B EXW1-RDXNE4AE E EXW1-RDXNE4AN N EXW1-RDXNE4BE E EXW1-RDXNE4BN N EXW1-RDYNE4AE E EXW1-RDYNE4AN N EXW1-RDYNE4BE E EXW1-RDYNE4BN N EXW1-RDMPE3AE E EXW1-RDMPE3AN N EXW1-RDMPE3BE E EXW1-RDMPE3BN N EXW1-RDMNE3AE E EXW1-RDMNE3AN N EXW1-RDMNE3BE E EXW1-RDMNE3BN N A DX N B E4 A EXW1 DY N B Remote R A P B DM E3 A N B -17No.EX-OMZ0016

28 {58) 1961 8.35 1212\ 2.05 ts2) 11.2\ 2.AO (66) 803 8 6 6 :220\ 4.O2 (l 02) 307 t7B) 0 9 3 (25) 2.05 (s2) 0.55 (14) 0.83 t 2 1 l n 1 2 t 1 7 a 1.43 i.B9 M2211.51.46 137) c 7 9 (201t 1 r 6 l 1 . 1 0 (24) 1 24 :8;li' 3 r . 5 : l i i I 2.80 (71) 9.25 (235) 1 0 0 9 (25s) 2.56 (65) 0.49 r 2 5 ) 3 . 1 5 (80) 9 6 1 1244\ t0.39 :264\ 1 5 7 t 1 1 6 ) 3 6 2 t92l 0 9 8 (30) 2.05 (52) 0.83 i21l n 1

3 MY2C16 @9 %6 !4 #1@3@9 !5@8 @7 %5!

Acting Standard Stroke Bore size (mm) 4 6 8, 10 4 6 8, 10 Standard stroke (mm) 4, 6, 8, 10 4, 6, 8, 10, 15 4, 6, 8, 10, 15, 20 4, 6 4, 6, 8 4, 6, 8, 10 Action IN Spring in pre-loaded condition Spring in loaded condition OUT Double acting Single acting, Spring return When the spring is contracted by applying air When the spring is set in the cylinder (N) Stroke (mm) Spring condition Pre-loaded

2.99 176) 186 108) 1.4 o09) 1.22 (31) 112) MillimdeB in PaEnthese$ NVSA rt524 4534 M4 t t 6 6 l n / " Eq{I .-.

2, 4, 6, 8 n = 4, 8, 12, 16 2 Different sides 110 35 Same side 110 100 D-A3 D-G39 D-K39 Different sides 110 + 30 (n 2) n = 2, 4, 6, 8 35 + 30 (n 2) 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 n Same side 110 + 100 (n 2) n = 2, 4, 6, 8 100 + 100 (n 2) 1 110

MXP 6-5 MXPJ6-5 MXP 6-10 MXPJ6-10 0.05 0.05 0.06 0.04 Table displacement mm Table displacement mm Table displacement mm 0.04 0.03 0.04 0.03 0.02 0.03 0.02 0.02 0.01 0.01 0.01 0 10 20 30 40 Load N 0 10 20 30 50 Load N 0 10 20 30 40 Load N 40 10 10 10 L = 100mm L = 100mm L = 100mm MXP10-10 MXP10-20 MXP10-10 MXP10-20 0.04 0.03 0.08 MXP10-10 MXP10-20 MXP10-10 MXP10-20 MXP10-10 MXP10-20 MXP10

bracket L1 L2 3 38 5 38 LED level meter Lead wire connector EXH port EXH port End plate L End plate R 3 0 3 0 3 0 92 P P P T T T U U U E E E L L L S S S L L L 81 6 9 6 9 6 9 Setting dial 0.3 0.2 0.1 0.3 0.2 0.1 0.3 0.2 0.1 0 MPa 0.4 0 MPa 0.4 0 MPa 0.4 12 12 21 Bracket Plug SUP port Pressure gauge 5.5 L3 6.5 24 Rc, NPT, G 1/8 24 36 36 n Stations 1 Left Right 1 46 2 84 38 3 122 38 76 4

2.99 176) 186 108) 1.4 o09) 1.22 (31) 112) MillimdeB in PaEnthese$ NVSA rt524 4534 M4 t t 6 6 l n / " Eq{I .-.

28 {58) 1961 8.35 1212\ 2.05 ts2) 11.2\ 2.AO (66) 803 8 6 6 :220\ 4.O2 (l 02) 307 t7B) 0 9 3 (25) 2.05 (s2) 0.55 (14) 0.83 t 2 1 l n 1 2 t 1 7 a 1.43 i.B9 M2211.51.46 137) c 7 9 (201t 1 r 6 l 1 . 1 0 (24) 1 24 :8;li' 3 r . 5 : l i i I 2.80 (71) 9.25 (235) 1 0 0 9 (25s) 2.56 (65) 0.49 r 2 5 ) 3 . 1 5 (80) 9 6 1 1244\ t0.39 :264\ 1 5 7 t 1 1 6 ) 3 6 2 t92l 0 9 8 (30) 2.05 (52) 0.83 i21l n 1