g x (L + B) x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8 m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide
SYJA 2(A) 2(A) Standard VZA (P)1 3(R) (P)1 3(R) i VFA 2(A) 2(A) 2(A) 3(R) VFRA o For vacuum (P)1 3(R) (P)1 3(R) VPA4 SYJA X VZA 1(P) VTA For vacuum u y t r e w q VGA VPA VPA VPA3 i 2(A) 3(R) o X Component Parts No.
475 MGP Series Dimensions: 80, 100 4 x NN through 4 x OA through 4 x MM depth ML 4 x YY depth YL L WA Z 30 HR 4 x OB counterbore depth 8 Section XX Section XX Section XX (8) HA: T-slot for hexagon bolt X 0.02 DA X 0.02 X 0.02 21 H VA VB 40 U X T R X PW DB 6H9 depth 10 2 x P GC PB GB GA 10 2 x P (Plug) Q S WB DL JB JA K 6H9 depth 10 Z WA J PA + Stroke End lock mechanism Manual release Non-lock
Wn Mass mn X-axis xn xa xb xc xd Y-axis yn ya yb yc yd Z-axis zn za zb zc zd X 1 mt = x (mn x xn)w Wa Wb Wc Wd ma mb mc md Y 1 mt = x (mn x yn)e D1 mt = x {mn x (A + zn)} r Z -X (n = a,b,c,d) Refer to the following sections 1 to 4 to calculate the center of gravity and the total load.
x 1.25 depth 14 32 40 75 22 16 18 107 8.6 140 50 34.5 160 14 depth 10 M10 x 1.5 depth 18 37 M8 x 1.25 depth 16 45 110 22 19 23 142 10.5 170 80 37 194 17 depth 12 M12 x 1.75 depth 21 42 M10 x 1.5 depth 20 Bore size (mm) W Z Y X WH W V U T S R Q O N M L K J I P 20 25 32 40 50 30 140 80 30 23 36 40 86 12 26 12 21 M6 x 1 25 38 80 60 44 25 M5 x 0.8 30 153 80 37 25 44 47 98 13 31 12 21 M6 x 1
= 22n + 118 11 to 20 stations: W = 22n + 140 2 to 10 stations: W = 47n + 156 11 to 20 stations: W = 47n + 190 Manifold base weight W (g) n: Stations Note) For more than 11 stations, supply pressure to P port on both sides and exhaust from R port on both sides.
Sensitivity (High pump head Rated current voltage x size of leak current [Optional]) (A) [mA] 3 cores x12AWG 1-phase (3 cores x HRR050-A/W-2020 200-230V AC 3.5mm2) (50/60Hz) (including ground) 30 4 cores 3-phase x14AWG 380-415V AC(50/60Hz) (4 cores x HRR050-A/W-4010 2.0mm2) 460-480V AC(60Hz) (including ground) Installation/operation in accordance with the UL standard For operate the product
22 18 14 12 10 8 21.5 15 15 15 171 137 135 131 50 45 45 41 27 25 25 21 20 20 20 10 8 8 8 30 28 28 25 104 102 102 3.2 3.2 3.2 55 40 40 40 75 55 55 55 21 19.5 19.5 15.5 M10 x 1.25 M8 x 1.25 M26 x 1.5 M20 x 1.5 4 4 4 7 6.8 6.8 1/4 1/8 1/8 16 13 13 11 8 8 M26 x 1.5 M10 x 1.25 23 10 8 3.2 134 M32 x 2 M14 x 1.5 With air cushion Relief port M5 x 0.8 H A K F AL Width across flats B1 H1 H2 GC GA
3.3 through Counterbore 6.2 depth 0.5 23 + Stroke 2 x M2.5 x 0.45 through 18.5 + Stroke 3.5 6 [ 23.3] 4 x M3 x 0.5 depth 5 2 x 1.2 (Guide air release) 9 + Stroke 5 [ 6.7] 20.5 20.5 20.5 3 5 28 29 9 2 [Auto switch] 2 x M3 x 0.5 (port size) 6.1 + Stroke 8.4 6 9 12 14.5 MGJ 10 4 x M4 x 0.7 depth 5 2 x M3 x 0.5 through 2 x 4.3 through Counterbore 8 depth 0.5 25 + Stroke MGP 5 19 + Stroke 8 [
l Y w H w Y w l l " i I I I r r l i | v l l . s o w d ; l w | v w f f Y L : f <.t __ I i i Y f Fw -t wl5uwl sor-;sS sownsot Y r.L. rr 5 r r a r s o s o w l s o w f s o v l , * ; * 1 i ' l , l -1 l a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a a MX9IEtr-@EHN+NE_I T l I r I I I I l I o , o o @ o a @ @ @ esrio" ruup @Auto switch See
2nd letter Y U8 0 Refer to Figure "2nd to 4th letter (7seg) of Line name communication data". 0x071E (1822) 0 R/W Line name 3rd letter Y U8 0 Lower level screen 0x071F (1823) 0 R/W Line name 4th letter Y U8 0 0x0720 (1824) 0 R/W Line name Left side bot Y U8 0 0: OFF (dot OFF) 1: ON (dot ON) 0x0721 (1825) 0 R/W Line name Center bot Y U8 0 0x0722 (1826) 0 R/W Line name Right side bot Y U8
g x (L + B) x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide
depth 5 SS T Bore size (mm) 2 x 2-4.3 through 2 x 2-8 counterbore with depth 4.3 2 x 2-5.5 through 2 x 2-9.5 counterbore with depth 5.3 2 x 2-6.5 through 2 x 2-11 counterbore with depth 6.3 2 x 2-6.5 through 2 x 2-11 counterbore with depth 6.3 2-M4 x 0.7 with depth 6 15 54 19 70 52 17 8.5 2-M5 x 0.8 42 25 5 10 2.5 20 8 9.5 38 57.5 9 2-M4 x 0.7 with depth 6 20 62 24 84 60 22 11 2-M5 x 0.8
set screw) M8 x 1.25 x 7.5l (Bolt holder) CX 0.5 D-X 25 0.2 25 0.2 5.3 5.3 16 32 31 20Data 2-M3 x 0.5 through 3.4 through 6.5 counterbore with depth 5 (Opposite side: Same) 5.5 2-M3 x 0.5 through M2.5 x 0.45 x 6l (Hexagon socket head cap screw) M3 x 0.5 x 12.5l (Hexagon head bolt) M3 x 0.5 (Hexagon nut) (12) (5 + Stroke) 2.75 2-M3 x 0.5 through 25 0.2 4 8-28-23 23 Series CXSJ Dimensions:
Load factor: ( (Load weight x 9.8) /Theoretical force) x 100% Conditions Series CJ2 Series CM2 6 x 1 m AS3301F-06 12 x 1 m AS4001F-12 AN200-02 AS2301F-06 AN110-01 Series MB/CA2 Series CJ2 Series CM2 Series MB/CA2 Body ported Tubing bore x Length Speed controller Silencer Base mounted Tubing bore x Length Speed controller Silencer AN200-02 AN3301F-06 AS1301F-06 6 x 1 m AS3001F-06 SYJ7120-01
Load Load Switch 1 Switch 1 Blue Blue Brown Brown Switch 2 Switch 2 Blue Blue Load voltage at ON=Supply voltage-Internal drop voltage X 2 pcs. =24V-4V X 2 pcs. =16V Load voltage at OFF=Leakage current X 2 pcs. X Load impedance =1mA X 2 pcs.
Foot: CG3LN Bore size Stroke S+ Stroke H t (Clearance)1 GB GA 2 x P Width across flats NA With rubber bumper 8 x J Rod part A MM AL I H1 C Width across flats B1 B (LT) 15 LH H2 D W Width across flats KA W 2 x LC (Knock pin position) C Y X M 4 x LD X Y LX LZ Sectional view of the rod part LS+ Stroke ZZ+ Stroke Z 1 The rod end nut should be mounted in the position t (clearance) so that it will
With "a" as the safety margin, F is determined as follows: mg F = x a 2 x When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg 10 x work piece weight 20 x work piece weight (Note) Even in cases where the coefficient of friction is greater than = 0.2, for safety reasons, SMC recommends selecting a gripping force which is at least 10 to 20 times the work piece
2 i r i t y w w e !0 !0 !2 !5 o !0 !4 q q y u !1 !3 r t !1 M5 type U10/32 type M5 type U10/32 type !1 y !2 u !4 !3 i !5 u e r r t w e o !0 i o q q t y !0 !2 w !
Coordinates and Moments z M3: Yawing M1: Pitching y x M2: Rolling Static Moment Ceiling mounting Horizontal mounting Wall mounting M2 M1 M1 M2 M2 M3 y x y x z x Y Y X X X Z m1 x g m2 x g m3 x g Vertical mounting Mounting orientation Horizontal Ceiling Wall Vertical m1 m2 m3 m4 Static load m m1 x g x X m2 x g x X m4 x g x Z Static moment M1 M3 M1 CY3B CY3R m3 x g x Z m1 x g x Y m2 x g x Y