(mm) Mounting screw P L1 H2 D W1 L2 H1 W2 W3 Model (Nominal x Length) 6 4 TM-04 TM-06 TM-08 TM-10 TM-12 6 3.25 72.5 4.5 5.5 6 6.5 6.5 10 5 7.5 7.5 8 12 12 8 10 11 12 12 17 21 23 25 25 2.2 2.8 2.8 3.2 3.2 2 x 6 4.5 91.5 9.5 5.5 77.5 6 12.5 7.5 77.5 6 15 9 93 6.5 2.6 x 8 2.6 x 8 3 x 8 3 x 8 12 10 8 16.3 8.8 14.3 7.5 12 9.8 How to Use Caution 1.
Flow Rate Characteristics JSX Series G Grommet GS Grommet with PCB DN DIN terminal without connector WN M12 connector/ Without connector cable Recognized Series/Valve type Body material Seal material Orifice diameter/Port size Thread type Rated voltage Electrical entry Option JSX11 S N 101 R 1 G1 * F 201 N 2 GS E F 3 DN 4 WN 5 6 7 8 B J JSX11 Table of UL-compliant Products JSXD Series
Example) XLAV-16L-2M9NA-1G-XAN1A *1 Produced by Mitsubishi Cable Industries, Ltd. * With solenoid valve: Option specifications/Combinations This model has indicator, auto switch, and K (DN) flange options, but hightemperature/heater options are not available. * Solenoid valves XLAV-16, 25, 40, 50: SYJ319, XLAV-63, 80: SYJ519 Example) SYJ319-1GS, etc.
), CF KF (NW), K (DN) Flange type Body: SCS13 (Conforms to Stainless steel 304) Bellows: Stainless steel 316L Bellows holder: Stainless steel 304.
Flange size XMD Symbol Nil D C Type KF (NW) K (DN) CF Applicable flange size 25, 40, 50, 63, 80 63, 80 40 (070), 63 (114) XYD V V V V V XMD V V V V V Size 25 40 50 63 80 XYD Nil D KF (NW) K (DN) 25, 40, 50, 63, 80 63, 80 3.
(Cable length) PCA-1557633 PCA-1557646 EX500-AC010-DN (1 m) EX500-AC050-DN (5 m) PCA-1557659 PCA-1557662 PCA-1557675 i o !0 !1 !2 !
This is a legacy product. Please contact us for the latest version.sales@ocaire.com, THERMO CHILLER, OTHERS, HRZ- THERMO CHILLER, 2X, HRZ - NO SIZE RATING, 198.41603 lb
-DN Manifold Drop prevention Stoppage in the middle Caution VVQ2000-FPG 06 2 (B) 4 (A) 2 (B) 4 (A) Since air leakage from the pipe between the valve and cylinder or the fittings will prevent the cylinder from stopping for a long time. Check for air leakage using neutral household detergent, such as dish washing soap.
How to order manifold VV5Q14 P, R port size 08FS0 DN 00T SY 1. How to Order VQ0 VQ1000 VQ2000 1/4 1/4 5/16 Indicate an option symbol, K, for the manifold No. and be sure to specify the mounting position and number of stations of the single and double wiring by means of a manifold specification form.
D1 D2 H1 H2 H3 H4 H5 L1 L2 L3 Symbol Metric size Inch size TMH-23J TMH-01J 8.5 3.3 4.5 4.6 7.5 6 12 7.2 6.6 18 1/8J TMH-04J TMH-03J 9.4 4 5/32J TMH-06J 11.7 3.3 6.3 6.4 9.3 7.7 15.4 8.5 8.3 21 6J TMH-07J 12.1 1/4J TMH-06 13.1 4.3 7.1 7.2 11.1 10 20 11 10.6 26.5 6 TMH-07 13.5 1/4 TMH-08 TMH-09 15.5 8 5/16 TMH-10 18.8 4.3 9.5 9.6 13.5 14 28 14.2 14.6 34 10 TMH-12 21.2 12 TMH-13 22 1/
oO OUT 12,17 304 609 913 1217 1522 1765 30 IN 11 .08 277 554 831 1108 1385 1606 Note) Theoretical outpul(lbl) :: Pressure (pSI) X Piston area (IrI(:h2) Bore SlZ9 .
Applicable bore size B2 C2 d H2 SNJ-010C 10 11 12.7 M8 x 1.0 4 NTJ-010C 10 7 8.1 M4 x 0.7 3.2 Y-J016C 16 11 16.6 21 M5 x 0.8 SNJ-016C 16 14 16.2 M10 x 1.0 4 Part no. NDd9 NDH10 NX R1 U1 Y-J010C 3.30.030 0.060 3.3+0.048 0 3.2 8 10 NTJ-015C 16 8 9.2 M5 x 0.8 4 Y-J016C 50.030 0.060 5+0.048 0 6.5 12 10 * A knuckle pin and retaining rings are included.
I = m x (a2 + b2) / 12 + m x H2 I = 0.15 x (0.062 + 0.042) / 12 + 0.15 x 0.032 = 0.0002 kgm2 Moment of inertia Kinetic energy 6 Confirm that the loads kinetic energy is within the allowable value. 1/2 x I x 2 = < Allowable energy 1 / 2 x (0.0002) x (2 x ( / 2) / 0.3)2 = = 2 / t (: Terminal angular velocity) 0.01096 J < Allowable energy OK : Rotation angle (rad) t: Rotation time (s) Allowable
High-temperature type (Temperature specifications/ H0, H2, H3) 1. In models with heater (thermistor), take care not to damage the insulation components of the lead wires and connector section. 2. The setting temperature for models with heater should be established without a draft or heat insulation.
= m x (a2 + b2) / 12 + m x H2 = 0.4 x (0.102 + 0.062) / 12 + 0.4 x 0.042 = 0.00109 kgm2 Inertial moment Kinetic energy 6 Confirm that the load's kinetic energy is within the allowable value. 1 / 2 x x 2 allowable energy = 2 / t (: Terminal angular velocity) : Rotation angle (rad) 1/ 2 x 0.00109 x (2 x ( / 2) / 0.3)2 = 60 mJ Allowable energy OK t : Rotation time (s) Allowable kinetic
I = m x (a2 + b2) / 12 + m x H2 I = 0.15 x (0.062 + 0.042) / 12 + 0.15 x 0.032 = 0.0002 kgm2 Moment of inertia Kinetic energy 6 Confirm that the loads kinetic energy is within the allowable value. 1/2 x I x 2 = < Allowable energy 1 / 2 x (0.0002) x (2 x ( / 2) / 0.3)2 = = 2 / t (: Terminal angular velocity) 0.01096 J < Allowable energy OK : Rotation angle (rad) t: Rotation time (s) Allowable
I = m x (a2 + b2) / 12 + m x H2 I = 0.15 x (0.062 + 0.042) / 12 + 0.15 x 0.032 = 0.0002 kgm2 Moment of inertia Kinetic energy 6 Confirm that the loads kinetic energy is within the allowable value. 1/2 x I x 2 = < Allowable energy 1 / 2 x (0.0002) x (2 x ( / 2) / 0.3)2 = = 2 / t (: Terminal angular velocity) 0.01096 J < Allowable energy OK : Rotation angle (rad) t: Rotation time (s) Allowable
Applicable Fluid Process Gas Molecular Formula Process Gas Molecular Formula Ar CClF3 Argon Halocarbon 13 C2Cl2F4 CF4 Halocarbon 114 Halocarbon 14 C2ClF5 CH2F2 Halocarbon 115 Halocarbon 32 C2F6 CH4 Halocarbon 116 Methane C2H2 CHF3 Acetylene Halocarbon 23 C2H2F4 CO2 Halocarbon 134A Carbon Dioxide C2HF5 H2 Halocarbon 125 Hydrogen C3F8 He Halocarbon R218 Helium C3H6 Kr Propene Krypton C3H8 N2
Applicable Fluid Process Gas Molecular Formula Process Gas Molecular Formula Boron11 Trifluoride Chlorine 11BF3 Cl2 Argon Chlorine Trifluoride Ar ClF3 Arsine Carbon Monoxide AsH3 CO Boron Trichloride Carbon Dioxide CO2 BCl3 Boron Trifluoride Germane BF3 GeH4 Halocarbon114 Hydrogen C2ClF4 H2 Halocarbon115 Hydrogen Sulfide C2ClF5 H2S Halocarbon116 Hydrogen Selenide H2Se C2F6 Acetylene Hydrogen