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L2 L1 L2 ARM1000 ARM2000 14-4-54 37 Manifold Regulator Modular Style Series ARM2500/3000 How to Order F.R.L.

Width across flat Width across flat Effective area (mm2) Connection thread R A Weight (g) L1 L2 M d Model H1 H2 I.D.

L1 Applicable fitting size d Pivoting nozzle with self-align fitting/KNK (mm) Model Nozzle size D L1 M Width across flats H1 H2 Applicable tubing O.D.

L1 [mm] L1 [mm] L1 [mm] L1 [mm] 1000 1000 1000 1000 X LEM 500 500 500 500 LEY 0 0 0 10 20 30 40 50 0 0 0 10 20 30 40 50 60 0 2 4 6 8 10 12 14 16 0 4 8 12 16 20 24 LES Work load [kg] Work load [kg] Work load [kg] Work load [kg] 1000 1000 1000 1000 LEPY LEPS Horizontal/Bottom 800 800 800 800 L2 L2 [mm] L2 [mm] L2 [mm] L2 [mm] 600 600 600 600 LER Y 400 400 400 400 Mer m LEH 200 200 200 200

AC200230V AC100120V 40 M5 3.24[Nm] M5 3.24[Nm] 6 AC100120V AC200230V AC100120V AC200230V L1 L1 PE PE L2 2-M5 2-M5 L2 L3 CNP1 CNP1 N N P1 P1 M4 1.2[Nm] P2 P2 M4 1.2[Nm] P P C C CNP2 D CNP2 D L11 L11 L21 L21 U U CNP3 V CNP3 V W W 9 2 9 (2) LECSS-S8 [mm] 5 40 6 6 6 (80) (170) 6 6 () CN4 CN2L CN2 CN1B CN1A CN3 CN5 CNP1 L1 L2 L3 N P1 P2 P C D L11 L21 U V W L1 L2 () L3 N P1 CNP2 P2

L2 L1 L2 ARM1000 ARM2000 14-4-54 37 Manifold Regulator Modular Style Series ARM2500/3000 How to Order F.R.L.

) 35 35 L Dimension Formula L n 10 9 8 7 6 5 4 3 1 2 P , R1, R2 port n: Stations L1 = 56n + 64 L2 = 56n + 80 n: Stations L1 = 56n + 90 L2 = 56n + 106 L1 624 568 512 456 400 344 288 232 120 176 1/2 L2 640 584 528 472 416 360 304 248 136 192 L1 650 594 538 482 426 370 314 258 146 202 3/4 L2 666 610 554 498 442 386 330 274 162 218 ( ): 3/4 Dimensions inside are for rubber seals. 3-10-28 29 ISO

94 80.5 139 14 12 4-Rc1/8 (pilot pressure exhaust port) PA PB P R2 R1 67 40 (41.5) 38 (27) 6-Rc1/2, 3/4 1 5 3 SMC 32 (35) 32 (35) 35 35 L: Dimensions Fomula L n 10 9 8 7 6 5 4 3 2 1 Port P, R1, R2 n: stations L1 = 56n + 64 L2 = 56n + 80 n: stations L1 = 56n + 90 L2 = 56n +1 06 L1 624 568 512 456 400 344 288 232 176 120 Rc1/2 L2 640 584 528 472 416 360 304 248 192 136 L1 650 594 538 482 426

The ISA series is a non-contact style air catch sensor for applications requiring confirmation of work present for machining operations. Due to the construction of the sensor, fluctuations in the supply pressure does not influence operations. The ISA series is IP66 rated and is dust proof and drip proof. Air catch sensor, Operating pressure: 0.05 to 0.2MPa, Enclosure IP66, Port size: 1/8

The ISA series is a non-contact style air catch sensor for applications requiring confirmation of work present for machining operations. Due to the construction of the sensor, fluctuations in the supply pressure does not influence operations. The ISA series is IP66 rated and is dust proof and drip proof. Air catch sensor, Operating pressure: 0.05 to 0.2MPa, Enclosure IP66, Port size: 1/8

The ISA series is a non-contact style air catch sensor for applications requiring confirmation of work present for machining operations. Due to the construction of the sensor, fluctuations in the supply pressure does not influence operations. The ISA series is IP66 rated and is dust proof and drip proof. Air catch sensor, Operating pressure: 0.05 to 0.2MPa, Enclosure IP66, Port size: 1/8

The ISA series is a non-contact style air catch sensor for applications requiring confirmation of work present for machining operations. Due to the construction of the sensor, fluctuations in the supply pressure does not influence operations. The ISA series is IP66 rated and is dust proof and drip proof. Air catch sensor, Operating pressure: 0.05 to 0.2MPa, Enclosure IP66, Port size: 1/8

The ISA series is a non-contact style air catch sensor for applications requiring confirmation of work present for machining operations. Due to the construction of the sensor, fluctuations in the supply pressure does not influence operations. The ISA series is IP66 rated and is dust proof and drip proof. Air catch sensor, Operating pressure: 0.05 to 0.2MPa, Enclosure IP66, Port size: 1/8

M2 Find the value of M2 max. at 300mm/s in Graph 2. m x g M1E = 1/3 x FE x L1 (FE = 1.4/100 x a x g x m) = 0.05 x a x m x L1 = 0.05 x 300 x 0.5 x 0.05 = 0.375 [Nm] 3A = M1E/M1E max = 0.375/1.07 = 0.350 cDynamic moment Investigate M1E. Find the collision speed . =1.4 x a =1.4 x 300 =420 [mm/s ] L1 M1 a Find the value of ME1 max. at 420mm/s in Graph 1.

) VQ 300 7 4 2-4.3 mounting hole With light surge voltage suppressor (Lead wire length) 17.3 31.4 VKF 2-M5x0.8 4-Rc 1/8 26 VQZ R side 49.5 VZ VS Stations n: Stations Formula L1 = 16n + 11 L2 = 16n + 33 2 43 65 3 59 81 4 75 97 5 91 113 6 107 129 7 123 145 8 139 161 9 155 177 10 171 193 Symbol L1 L2 VFN Common exhaust: VV3Z2-S50 (Built-in One-touch fittings manifold) (G) (L) (M) (D) With light

For (Built-in one-touch fitting) C4 N3 4 L2 L1 For M5 Manual override 10 12.3 35 15.5 91.7 [96.1] 0.2 34.2 78.8 [83.2] 36.5 17 12.5 57.2 [59.4] P R P R A A A A A 31.5 56.4 [58.6] B B B B B (4.4) 2-4.5 (For mounting) (Pitch) P = 10.5 (Station 1) (Station n) 15.5 L1 L2 4.5 (Station 1) (Station n) 15.5 (Light/surge voltage suppressor) (Light/surge voltage suppressor) + + + + + + + + + + B B

L1 (Non-locking) Manual override 43.5 [50] 31.1 24.5 A A 15 12 Type S31 / Side Ported (Single solenoid coil is located on same side as the A , B port.)