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For 115 VAC and 230 VAC, the allowable voltage is 15% to +5% of rated voltage. 33 Series SYJ700 Flow Characteristics/Weight C [dm 3/(s bar)] b Cv C [dm 3/(s bar)] b Cv 1R2 (PRA) 2R3 (ARR) Valve model Flow characteristics Weight (g) Note) Type of actuation Port size Grommet L/M plug connector DIN terminal M8 connector SYJ712 SYJ722 SYJ714 SYJ724 SYJ714 SYJ724 Body ported 0.76 0.69 0.69 0.63

5 1 l 3 = % =V2 0 1 0 3 NVEP 31 4 Size I Pressure Size Code PSIG (Kg7cm2) NPTF (Base mount type) 2 1 7-90 (0.s-5.5)O2=t/c 03=% 2 15-135 (1-9) 4 1 o.7 -22.5 (0.051.s) 03=% O4=th 06 =Vr Subplates (NVEF2120; NVEFII20; NVERI I20) Part No.

M MDU B 25 10 S M A73 S With auto switch Built-in magnet Number of auto switches Mounting S n 2 1 n B L F G C D Basic Axial foot Front flange Rear flange Single clevis Double clevis Without auto switch(built-in magnet) Auto Switch Applicable Auto Switches/Refer to p.5.3-2 for further information on auto switch.

S = 6mm 5. S = 15mm 4. S = 10mm 7. S = 27mm 5. S = 15mm 7. S = 27mm 10. S = 38mm VCA21 200 300 400 500 600 700 VCA21 VCA31 VCA31 VCA41 VCA41 VCA41 Other 200 400 400 600 800 1000 1200 1.

R and S (Because S function is also included in R.) S and T (Because S function is also included in T.) Note 2) Voltage symbol 20 (200 VAC) is the terminal block connection as standard. Option S cannot be chosen. Voltage symbol 10 (100 VAC) is the power cable with plug as standard.

6 Single acting, spring return Piston seal CQ2B12-S-PS Rod seal NBR 12 16 20 25 32 40 50 CQ2B12-S-PS CQ2B16-S-PS CQ2B20-S-PS CQ2B25-S-PS CQ2B32-S-PS CQ2B40-S-PS CQ2B50-S-PS CQ2B16-S-PS Gasket CQ2B20-S-PS CQ2B25-S-PS CQ2B32-S-PS CQ2B40-S-PS CQ2B50-S-PS Left no. !4. Seal kit includes !4. Order the seal kit, based on each bore size.

5 L 6 H 7 4 2147483647 0.01mm 8 9 L 10 H 2 065500 mm/s2 11 L 12 H 2 065500 mm/s2 13 L H=L= (LECP6)(LECA6) 42 - Bit/Byte / Address ID No. 14 1 030 10% 15 1 030 10% 16 1 0255 mm/s ID1 17 1 030 10% 18 H 2 065500 0.01mm 19 L ID2 2039 ID1 ID3 4059 ID1 ID4 6079 ID1 ID5 8099 ID1 ID6 100119 ID1 ID7 120139 ID1 ID8 140159 ID1 ID9 160179 ID1 ID10 180199 ID1 ID11 200219 ID1 ID12

g = 9.8m/s m = 0.1kg x = 10 L = 50mm V = 12m/min Procedure2 Confirmation of impact Obtain the total amount of the work piece.

Refer to page 372 for pivoting bracket. (80, 100) Clevis: CG3DN Bore size Stroke With rubber bumper H S + Stroke L RR V CZ TZ GA GB 8 x J F 2 x P AL A Width across flats NA CDH10 (Hole dia.) C d9 (Shaft dia.)

VXS VXS VXB VXE (3) Formula for flow rate When P2 + 0.1 0.5, choked flow P1 + 0.1 293 Q = 120 x S (P1 + 0.1) (3) 273 + T When P2 + 0.1 > 0.5, subsonic flow P1 + 0.1 293 Q = 240 x S (P2 + 0.1) (P1 P2) (4) 273 + T Conversion with sonic conductance C: VXP VXR VXH VXF VX3 VXA S = 5.0 x C(5) Q : Air flow rate[L/min(ANR)] S : Effective area [mm2] P1 : Upstream pressure [MPa] P2 : Downstream

+ l 179 (188) + l 207 (216) + l 40 164 192 159 (168) 187 (196) Z + Stroke 210 + l 242 + l 205 (217) + l 237 (249) + l 50 190 222 185 (197) 217 (229) ZZ + Stroke 215 + l 252 + l 210 (222) + l 247 (259) + l 63 195 232 190 (202) 227 (239) 245 + l 303.5 + l 239 (253) + l 297.5 (311.5) + l 80 236 294.5 230 (244) 288.5 (302.5) 253 + l 329.5 + l 247 (261) + l 323.5 (337.5) + l 100 244 320.5 238

axis of cylinder Dynamic Moment Moment generated by the load equivalent to impact at the stroke end We: Load equivalent to impact [N] m : Load mass [kg] U: Max. speed [mm/s] g: Gravitational acceleration [9.8m/s] We = 5 x 103 x m x g x U Pitch moment Me1 = 1/3 We(L + B) 10Yaw moment Me3 = 1/3 We(L + A) 10(mm) Average load coefficient Average load coefficient Model CYV15 CYV32 A 16.5

Confirmation of allowable load weight by application Vertical upward: Lifter Vertical downward: Press Horizontal: Chucking L l m m F m F Maximum speed mm/s (in/s) Maximum speed mm/s (in/s) Load center of gravity position l mm (in) to 300 (11.8) to 500 (19.7) to 700 (27.6) to 300 (11.8) to 500 (19.7) to 100 (3.9) to 200 (7.9) to 300 (11.8) Graph Graph Graph Graph Graph Graph Graph Graph l

cubic decimeter) of SI unit is good to be described by l (liter), too. 1 dm3 = 1 l S : Effective area [mm2] P1 : Upstream pressure [MPa] P2 : Downstream pressure [MPa] t : Temperature [C] Note) Formula for subsonic flow (4) is only applicable when the critical pressure ratio b is the unknown equipment.

OK OK NG OK OK 17 4-2 W (N) WeN) () V m/s) () Va (m/s) L (m) M (Nm) E (J) g (m/s) (9.8m/ ) (N) W1 (Nm) V=1.4Va MFL F (V=0.) 1 L <> W1.VaW10 M2F2L2 F2 M= WeL =5VaWL 3 2 L W2 M3F3L3 F3 an= F Fmax 3 L F W4 Fmax : () W Ek= W V 2g (V=0.

[mg/L] 70 or less 200 or less Calcium hardness [mg/L] 50 or less 150 or less Ion silica [mg/L] 30 or less 50 or less Iron [mg/L] 0.3 or less 1.0 or less Copper [mg/L] 0.1 or less 0.3 or less Sulfide ion [mg/L] Not detected Not detected Referential Ammonium ion [mg/L] 0.1 or less 1.0 or less item Residual chlorine [mg/L] 0.3 or less 0.3 or less Separation carbonic acid [mg/L] 4.0 or less

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 MHW2-25D MHW2-40D 160 50 Pressure 0.7 MPa Pressure 0.7 MPa MHZ 140 0.6 0.6 40 120 Gripping force (N) Gripping force (N) 0.5 0.5 MHF 100 30 0.4 0.4 80 0.3 MHL 0.3 0.2 20 60 0.2 40 MHR 10 20 MHK 0 20 40 60 Gripping point L (mm) 100 80 80 100 120 140 160 0 20 40 60 Gripping point L (mm)

Lateral piping / wiring Axial piping / wiring 135 135 MXW Series Long Stroke Slide Table How To Order Preferred Option Program F9N L S B MXW 16 100 Auto switch 2 pcs. 1 pc. n pcs.

R C R C (44) G1/2 E A H 2-P Port size B (S) E G1/2 2-M Thread depth N D A H B 2-P Port size 2-M Thread depth N D L L K K N.O.

73+l 73+l 82+l 91+l 91+l 46 51 51 62 71 71 93 98 101 113+l 120+l 123+l 114 119 125 134+l 141+l 147+l 67.7 78.7 118 (125) 138 (145) +l 146 (153) 166 (173) +l 98.6 136 (147) 156 (167) +l 168 (179) 188 (199) +l 119.2 136 (147) 156 (167) +l 173 (184) 193 (204) +l Consists of pins, flat washer and hexagon socket head cap bolt.