Cleanliness class: Nc or M British unit: Number of particles/ft 3 = Nc x (0.5/D) 22 Cleanliness class indication Calculation of the maximum permitted concentration of particulate cleanliness classes Cn = 10 N x (0.1/D) 2.08 SI unit: Number of particles/m3 = 10M x (0.5/D) 22 q Number of sampling locations: 2 to 9 95% UCL of the mean and the mean of the averages w Number of sampling locations
0.7 7 16 M4 x 0.7 7 Auto switch Minimum lead wire bending radius 10 H thread effective depth C 4 x N through Q F 2 x M3 x 0.5 (Port size) I D M E Z L B + Stroke K A + Stroke M G J W 16 Minimum lead wire bending radius 10 Auto switch Q F 4 x N through H thread effective depth C 2 x M3 x 0.5 (Port size) I D M E Z L B + Stroke K A + Stroke M G J W Standard [mm] Bore size Stroke range Without
amount: 800 x 1 / 10 x 100 = 8000[pulse] Travel speed: 800 x 1 / 10 x 100 = 8000 [pulse/sec] Acceleration / deceleration time: 100 / 3000 = 0.1 [s]
(Drill through) Note) Dd9 L l d m H B C CJ1 D Cotter pin 3 x 18l 4 x 25l 4 x 35l 0.040 0.076 0.050 0.093 0.065 0.117 NT-03 NT-04 NT-05 NT-08 NT-10 CD-M03 CD-M05 CD-M08 10 14 22 32 40 50, 63 80 100 32, 40 50, 63 80, 100 3 4 4 44 60 82 36 51 72 M10 x 1.25 M14 x 1.5 M18 x 1.5 M22 x 1.5 M26 x 1.5 4 4.5 5 6 8 11 13 16 17 22 27 32 41 19.6 25.4 31.2 37.0 47.3 16.5 21 26 31 39 CJP CJ2 Note) When
(Drill through) Note) Dd9 L l d m H B C CJ1 D Cotter pin 3 x 18l 4 x 25l 4 x 35l 0.040 0.076 0.050 0.093 0.065 0.117 NT-03 NT-04 NT-05 NT-08 NT-10 CD-M03 CD-M05 CD-M08 10 14 22 32 40 50, 63 80 100 32, 40 50, 63 80, 100 3 4 4 44 60 82 36 51 72 M10 x 1.25 M14 x 1.5 M18 x 1.5 M22 x 1.5 M26 x 1.5 4 4.5 5 6 8 11 13 16 17 22 27 32 41 19.6 25.4 31.2 37.0 47.3 16.5 21 26 31 39 CJP CJ2 Note) When
max Model CYV15 1 CYV32 5 (Nm) M1 M2 Model CYV15 CYV32 M1 0.3 3 M2 0.6 4 M3 0.3 3 m m Static Moment Moment generated by the work piece weight even when the cylinder is stopped Pitch moment M1 = m x 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
10-10 (FKM) 1.3 x 10-8 External 1.3 x 10-10 (FKM) 1.3 x 10-8 Nil A B C None w, e, r, t w, r, t e Seal material 1.3 x 10-8 1.3 x 10-10 (FKM) 1.3 x 10-8 Seal material FKM EPDM Barrel Perfluoro Compound no. 1349-80 2101-80 Symbol Nil N1 1.3 x 10-10 (FKM) Note 1) Values at ambient temperatures, excluding gas permeation.
I = I + IA kgm (m to m : Mass of I to I kg) D Calculation example When d1 = 0.1m, d = 0.05m, D = 0.04m, a = 0.04m, b = 0.02m m = 1kg, m = 0.4kg, m = 0.5kg, m = 0.2kg, Gear tooth ratio = 2 Cylinder: I I = 0.2 x = 0.03 x 10 -3kg m I = 1 x = 1.25 x 10 -3 kgm 0.1 8 0.04+0.02 12 b IB = (0.13 + 0.1 + 0.03) x 10 -3= 0.26 x 10 -3 kgm 0.05 8 I = 0.4 x = 0.13 x 10 -3 kgm a IA = 2 x 0.26 x 10 -3 = 1.04
I = I + IA kgm (m to m : Mass of I to I kg) D Calculation example When d1 = 0.1m, d = 0.05m, D = 0.04m, a = 0.04m, b = 0.02m m = 1kg, m = 0.4kg, m = 0.5kg, m = 0.2kg, Gear tooth ratio = 2 Cylinder: I I = 0.2 x = 0.03 x 10 -3kg m I = 1 x = 1.25 x 10 -3 kgm 0.1 8 0.04+0.02 12 b IB = (0.13 + 0.1 + 0.03) x 10 -3= 0.26 x 10 -3 kgm 0.05 8 I = 0.4 x = 0.13 x 10 -3 kgm a IA = 2 x 0.26 x 10 -3 = 1.04
10 -6 Port A pressure Pa 1.3 x 10 -9 {1 x 10 -8} at ordinary temperatures, excluding gas permeation Internal External 1.3 x 10 -11 {1 x 10 -10} at ordinary temperatures, excluding gas permeation Leakage Pa m 3/s {Torr l/s} VCR 1.3 x 10 -11 {1 x 10 -10} Fitting Swagelok 1.3 x 10 -10 {1 x 10 -9} VCR/SWJ (Swagelok) Piping connection system 3/8B Connection size 1/4B 5 to 40C (41 to 104F) Operating
2 x PH7 Depth D 2 x 2 x MM Depth J Hexagon socket head plug 2 x 2 x NPT 1/4 G Rc GA E B RD (mm) Bore size (mm) B C D E GA GC J L LA LB MM N P GB 50 63 92 48 12 13.7 95 166 95.5 12 376.6 155.5 78.4 M8 x 1.25 19 8 110 54 15 16.6 99 171.5 100.5 12 391.6 161 78 M10 x 1.5 22 10 Bore size (mm) PA PB PC PD R RB RC RD RR W XA XB XC RA 104.5 50 63 45 45 5 40 46 88 20 20 46 48 78.4 138.5 134 92 55
cushion valve Top width across flats 3 4-M6 x 1 Thread depth 12 GA W GB 17 1010 32 3 BX 14 30 45 45 M 3 Approx.
Cleanliness class: Nc or M British unit: Number of particles/ft 3 = Nc x (0.5/D) 22 Cleanliness class indication Calculation of the maximum permitted concentration of particulate cleanliness classes Cn = 10 N x (0.1/D) 2.08 SI unit: Number of particles/m3 = 10M x (0.5/D) 22 q Number of sampling locations: 2 to 9 95% UCL of the mean and the mean of the averages w Number of sampling locations
Area: (800) 258-9200-www.stevenengineering.com 4H7 depth 6 +0.012 0 Socket 4-M4 x 0.7 2-M5 x 0.8 2-M4 x 0.7 socket connection port thread depth 6 Cylinder port (2 positions of hexagon socket head cap screws) 2-M5 x 0.8 plug (M-5P) (Port on the housing side) 4-3.2 through 4-6.5 counterbore depth 3.3 +0.012 0 2 x 2-4H7 depth 5 2-M8 x 1.0 RB0805 Shock absorber 2 x 2-M4 x 0.7 thread depth 8
cushion valve Top width across flats 3 4-M6 x 1 Thread depth 12 GA W GB 17 1010 32 3 BX 14 30 45 45 M 3 Approx.
Connector type A B D M8-3 pins M8-4 pins M12-4 pins CJP Lead wire length S 0.5 (m)(1.64 ft) CJ2 M 1.0 (m)(3.28 ft) Auto Switch Mounting Bracket Part No.
Connector type A B D M8-3 pins M8-4 pins M12-4 pins CJP Lead wire length S 0.5 (m)(1.64 ft) CJ2 M 1.0 (m)(3.28 ft) Auto Switch Mounting Bracket Part No.
(A) Black zinc chromated MY-16B-stroke (B) Nickel plated MY-16BW-stroke 4 Series MY1W Dimensions: 16, 20 L (LL) 4-MM with depth M 4-B counterbore with depth C LD through hole bottom side J with depth K PA YW PB QW LW 2 x 2-M5 x 0.8 (Hexagon socket head plug) PG Q + Stroke M5 x 0.8 (Hexagon socket head plug) M5 x 0.8 (Port) W CH LH RR SS NE RR SS H QQ NH NC This port is not available for
7 30 Load + V 26 13 Proximity switch main circuit DIndicator LED Vinyl insulation round cord 3.5 (18/0.12), 2-wire, Standard 2 m, Cord extension (Individual metal piping), Max. 200 m M8 x 1 Blue Washer with teeth Tightening nut 0 V 3 -X 595 RS2H Series Construction Double acting (DL, DM) !
Weight calculation m2 = d x e x f x Relative density m2 = 4 x 5 + 6 x 2.7 x 10-6 = 3.24 x 10-4 (kg) Inertial moment around Z2 axis IZ2 = {m2 (d2 x e2) / 12} x 10-6 IZ2 = {3.24 x 10-4 x (42 + 52) / 12} x 10-6 = 1.11 x 10-9 (kg.m2) = 1.11 x 10-9 + 3.24 x 10-4 x 23.52 x 10-6 = 0.18 x 10-6 (kg.m2) Inertial moment around Z axis IB = IZ2 x m2r22 x 10-6 IB Thus, the total inertial moment is I