SMC Corporation of America
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Mitsubishi Electric 30 guide 100W 0.02 Ground ball screw Corporation 1000 Yaskawa Electric 100W 0.05 Rolled ball screw Corporation Features 1 Simplified Selection Flow Chart Series LJ1/LG1 Page Standard stroke (mm) and Speed (mm/s) Nonstandard motor Model Standard motor Clean room Dust seal Deflection TSUBAKI 100 200 300 400 500 600 700 800 900 1000 1200 1500 CABLEVEYOR LJ1S101SC 88

10 500 700 900 10 700 1,000 Flow rate Q l/min (ANR) How to read the graph The sonic range pressure to generate a flow rate of 500 l/min (ANR) is P1 0.14 MPa for a 6 orifice (VX2 4), and P1 0.3 MPa for a 4.5 orifice (VX23). 3 2 For Saturated Steam [663] (179) Upstream pressure of valve P1 1.0 MPa 1.0 [664] (183) 0.9 0.95 [662] (174) 0.8 0.9 0.85 [661] (170) 0.7 0.8 0.75 Subsonic [660]

Mass (g) Size Standard mass 90 180 10 120 150 15 220 270 20 600 700 30 900 1100 40 1400 1600 Not including the mass of auto switch. D319 Series CRQ2X Rotation Range When pressurized from the port indicated by the arrow, the shaft will rotate in a clockwise direction.

When air is supplied from the unlocking port, y the piston for locking ascends and releases the lock. 3 Centering Unit MACM Series How to Order X114 4 P 20 MACM Centering unit Made to order (Table material) X114 Stainless steel Ultra high molecular weight polyethylene Cast nylon X115 X116 Allowable load weight Symbol Allowable load weight 2 450 lbf [2 KN] 4 900 lbf [4 KN] 6 1350 lbf [6 KN

Refer to the cylinder catalog for details. 11 Optimum Actuation Size Chart of Air Cylinder For JSY5000, A, B port: 12 EX120 EX260 EX250 EX600 EX245 Chart Valve Lead Wire D-sub Flat Ribbon Terminal Block Connector Connecting Base Horizontal Vertical (Upward) Average speed [mm/s] 0 100 200 300 400 500 600 700 800 900 1000 50 63 Plug-in Common Dimensions Made to Order Manifold Exploded View

12 19 25 3/16" 1/8" 1/4" 3/8" 1/2" 3/4" 1" 2 3 Union elbow reducing LQ1E-R LVC 4 5 LVA P.889 6 LVH 2 LVD 3 Union tee reducing LQ1T-R 4 LVQ 5 LVP P.891 6 2 LVW 3 Panel mount union reducing LQ1P-R LQ1 LQ1 4 LQ3 5 P.896 6 LVN 2 LQHB 3 Union reducing LQ1U-R TL TIL 4 5 TLM TILM P.897 6 TD TID 2 TH TIH 3 Space saving union elbow LQ1E-SS 4 5 SMC P.898 6 2 3 Space saving union tee LQ1T-S 4 5 P.900

Water Cooled substance mass m : (= x V) [kg] Cooled substance density : 1 [kg/L] Cooled substance total volume V : 250 [L] Cooled substance specific heat C : 4.186 x 103 [J/(kgK)] Cooled substance temperature when cooling begins T0 : 305 [K] (32 [C]) Cooled substance temperature after t hour Tt : 293 [K] (20 [C]) Cooling temperature difference iT : 12 [K] (= T0 Tt) Cooling time it : 900

Water Cooled substance mass m : (= x V) [kg] Cooled substance density : 1 [kg/L] Cooled substance total volume V : 150 [L] Cooled substance specific heat C : 4.186 x 103 [J/(kgK)] Cooled substance temperature when cooling begins T0 : 303 [K] (30 [C]) Cooled substance temperature after t hour Tt : 293 [K] (20 [C]) Cooling temperature difference iT : 10 [K] (= T0 Tt) Cooling time it : 900

Q = m x C x (T0 Tt) it = r x V x C x iT it = 1 x 20 x 4.2 x 103 x 12 900 = 1120 [J/s] 1120 [W] Q = m x C x (T0 Tt) it x 860 = c x V x 60 x C x iT it x 860 Cooling capacity = Considering a safety factor of 20%, 1120 [W] x 1.2 = 1344 [W] = 1 x 20 x 60 x 1.0 x 103 x 12 15 x 860 1120 [W] Thermo-chiller Q x t: Heat capacity [kJ] 20C Water bath Cooling capacity = Considering a safety factor

HRZ x V x C x iT it m x C x (T0 Tt) it Q = = HRZD 1 x 150 x 4.186 x 103 x 10 900 = = 6977 [J/s] 7.0 [kW] m x C x (T0 Tt) it x 860 x V x 60 x C x iT it x 860 HRW Q = = Cooling capacity = Considering a safety factor of 20%, 7.0 [kW] x 1.2 = HECR 1 x 150 x 60 x 1.0 x 103 x 10 15 x 860 8.4 [kW] = HEC Q x t: Heat capacity [kJ] Thermo-chiller Water bath 6977 [W] = 7.0 [kW] 20C HEB Cooling

Water Cooled substance mass m : (= x V) [kg] Cooled substance density : 1 [kg/L] Cooled substance total volume V : 150 [L] Cooled substance specific heat C : 4.186 x 103 [J/(kgK)] Cooled substance temperature when cooling begins T0 : 303 [K] (30 [C]) Cooled substance temperature after t hour Tt : 293 [K] (20 [C]) Cooling temperature difference iT : 10 [K] (= T0 Tt) Cooling time it : 900

Water Cooled substance mass m : (= x V) [kg] Cooled substance density : 1 [kg/L] Cooled substance total volume V : 300 [L] Cooled substance specific heat C : 4.186 x 103 [J/(kgK)] Cooled substance temperature when cooling begins T0 : 305 [K] (32 [C]) Cooled substance temperature after t hour Tt : 293 [K] (20 [C]) Cooling temperature difference iT : 12 [K] (= T0 Tt) Cooling time it : 900

Water Cooled substance mass m : (= x V) [kg] Cooled substance density : 1 [kg/L] Cooled substance total volume V : 150 [L] Cooled substance specific heat C : 4.186 x 103 [J/(kgK)] Cooled substance temperature when cooling begins T0 : 303 [K] (30 [C]) Cooled substance temperature after t hour Tt : 293 [K] (20 [C]) Cooling temperature difference iT : 10 [K] (= T0 Tt) Cooling time it : 900

Large Flow Air Filter AF800/900 Series AC-A Standard Specifications AF-A AF900 AF800 Model AF-A 1 4 1 2 Port size 1 2 1 AR-A Proof pressure 1.5 MPa Maximum operating pressure 1.0 MPa AL-A 5 to 60C (No freezing) Ambient and fluid temperature Standard specifications: 5 m Option: 2, 10, 20, 40, 70, 100 m Polycarbonate Filtration Bowl material AW-A Bowl capacity (cm3) 45 cm3 AC-B Weight (kg)

2.12 (53.8) AP1200HF 150 psig (1.0 MPa) 50 psig (0.35 MPa) Inlet pressure: 100 psig (0.69 MPa) Max. 6.5 (165.1) (When selecting the option code FC) Max. 5.6 (142.2) (When selecting the option code SC) 120 0.83 100 0.69 Delivery pressure (MPa) Delivery pressure (psig) Max. 6.0 (152.4) 1.5 (38.1) 80 0.55 60 0.41 2.62 (66.5) 40 0.28 20 0.14 0 0.00 0.69 (17.5) 0 100 200 300 400 500 600 700 800 900

1000 0 0 100 200 300 400 500 600 700 800 900 1000 AU Flow rate (/min (ANR)) Flow rate (/min (ANR)) AF AR ARX21-01 ARX21-02 0.35 0.35 IR 0.30 0.30 Outlet pressure (MPa) Outlet pressure (MPa) VEX 0.25 0.25 0.20 0.20 AMR 0.15 0.15 ITV 0.10 0.10 IC 0.05 0.05 0 0 50 100 150 200 250 300 350 400 450 500 0 0 50 100 150 200 250 300 350 400 450 500 VBA Flow rate (/min (ANR)) Flow rate (/min (ANR))

be used according to buckling strength 100.0 Nominal symbol C76 Mounting bracket diagram 32 40 (MPa) Lateral load applied to the rod end fR (N) Foot: L Rod side flange: F Head side flange: G 0.3 58 54 10.0 L C7640 44 0.5 40 W W W F 36 0.7 33 C7632 24 0.3 23 G 17 0.5 16 1.0 13 0.7 13 Clevis: C, D Rod side trunnion: U 0.3 C 0.5 W W D 0.7 0.1 (100) (100) 0.3 600 500 400 300 1000 1100 900

Plate cylinder type (Guide pin diameter: 12) C(L)KQG50 (Guide pin diameter: 13) Clamping height LOW type HIGH type LOW type HIGH type LOW type HIGH type Clamping height H 30 100 30 100 24 54 Body thickness T 50 29 66 Body width W 50 70 66 Body length L1 127 (159) 132.5 (160) 147.5 (182.5) Overall length L2 183 (215) 253 (295) 118.5 (216) 258.5 (286) 204.5 (239.5) 234.5 (269.5) Weight [g] 900

12-CY3B6 6 300 50, 100, 150, 200 M5 x 0.8 12-CY3B10 10 500 50, 100, 150, 200, 250, 300 12-CY3B15 15 1000 50, 100, 150, 200, 250, 300, 350, 400, 450, 500 12-CY3B20 20 100, 150, 200, 250, 300, 350, 400, 450, 500, 600, 700, 800 Rc1/8 NPT1/8 G1/8 12-CY3B25 25 (Both sides) Non-lube 12-CY3B32 32 1300 Rc1/4 NPT1/4 G1/4 12-CY3B40 40 100, 150, 200, 250, 300, 350, 400, 450, 500, 600, 700, 800, 900