[Option] Conforms to ISO 15407-2 Standard Size 18 mm, 26 mm Plug-in Type 5 Port Solenoid Valve Series VS 8-2/VS 8-4 S R S R Series VS 8-4 S R Series VS 8-2 S R Conforms to ISO 15407-2 Standard S R S R ISO Standard: Interface conforming to 18 mm size (VS 8-2) and 26 mm size (VS 8-4) Accommodates IP65 enclosure.
Blow Velocity Distribution (Supply Pressure: 0.3 MPa) qEnergy saving static neutralization nozzle IZN10E-01 wHigh flow rate nozzle IZN10E-02 0 0 100 100 Distance [mm] Distance [mm] 200 200 4 m/s 14 m/s 300 300 11 m/s 3 m/s 400 400 8 m/s 2 m/s 500 30 30 20 10 0 10 20 500 30 30 20 10 0 10 20 Distance (Horizontal) [mm] Distance (Horizontal) [mm] 8 IZN10E Series Flow Rate Characteristics qEnergy
Positioning distance (mm) 1000 500 100 10 1 10 100.5 50.5 10.5 1.5 0.5 100 10.5 5.5 1.5 0.6 0.5 Speed (mm/s) 500 2.7 1.7 0.9 0.6 0.5 1000 1.9 1.4 0.9 0.6 0.5 A B C D Values will vary slightly depending on the operating conditions.
No, Yes MENU 2 Signal Direction Open, Close 3 Position Limit Low 0.0% [0..100%] METHOD 4 Position Limit High 100.0 % [0..100%] 5 Travel Rate Open 0.0 %/s [0..1000%/s] Editable variable 6 Travel Rate Close 0.0 %/s [0..1000%/s] 7 Low Cut-off 2.0 % [0..100%] Read-only variable 8 High Cut-off 100.0 % [0..100%] 9 Split Range Low 0.0 % [0..100%] in ND9000HT only Split Range High 100.0 % [0..100%
Cylinder : MXP10-10 Mounting : Lateral wall mounting Average speed : Va=300[mm/s] L2=20mm L3=30mm Model used Mounting position Average speed Va(mm/s) Allowable load W(N) : Fig.1 Over hung Ln(mm) : Fig.2 W L3+A3 L2 1 N = 0.2248 lbf 1 mm/s = 0.0394 in/s Kinetic energy 2 1 2 420 2 E= =0.018 2 9.8 1000 V=1.4300=420 1 W V 2 E= 2 9.8 1000 Collision speed=1.4Va Corrected coefficient ( ) (
Stroke Adjustment Unit Shock Absorber Model 25 32 40 RB1412 RB2015 RB2015 Port Port Shock Absorber Specifications 25 32 40 Applicable cylinder size (mm) RB1412 RB2015 RB2015 Shock absorber model Max. energy absorption (J) 19.6 58.8 58.8 Stroke absorption (mm) 12 15 15 Max. collision speed (mm/s) 1000 1000 1000 Max. operating frequency (cycle/min) 45 25 25 Extended 6.85 8.34 8.34 Spring force
Cylinder Bore Sizes (in inches) Valve Type Cv Type* 34 1 118 112 2 214 212 3 314 4 6 Micro-Line 0.11 SA F S S LTV 0.18 SA,DA F F F F M M M M S S Nova 1.00 SA,DA F F F F F F F M M Duramatic 0.18 SA,DA F F F F M M M M S S Duramatic 0.63 SA,DA F F F F F M M M M Capsula 0.75 SA,DA F F F F F F M M M Capsula 3.17 SA,DA F F F FT-1, FC-1 0.13 SA F F M S 4B-1, 4W-1 0.48 SA,DA F F F F M M M S FC51,
Cylinder Bore Sizes (in inches) Valve Type Cv Type* 34 1 118 112 2 214 212 3 314 4 6 Micro-Line 0.11 SA F S S LTV 0.18 SA,DA F F F F M M M M S S Nova 1.00 SA,DA F F F F F F F M M Duramatic 0.18 SA,DA F F F F M M M M S S Duramatic 0.63 SA,DA F F F F F M M M M Capsula 0.75 SA,DA F F F F F F M M M Capsula 3.17 SA,DA F F F FT-1, FC-1 0.13 SA F F M S 4B-1, 4W-1 0.48 SA,DA F F F F M M M S FC51,
style (D-A73C/A80C) and A9/A9 V style: 1000 V AC/min.
Condition: Pressure 0.5MPa, Load 50%, Piping length 5m Effective area mm 2(Cv ) Cylinder speed (mm/s) 50 63 80 100 125 140 Bore size (mm) 160 180 200 250 300 Port size Rc(PT) 40 250 25(1.4) VEX312 -01, 02 500 750 02 ( 1 4) 60(3.3) 250 500 750 250 500 750 500 750 1000 500 750 1000 250 500 750 250 500 750 VEX332 -02, 03, 04 Body ported Base mounted 03 (3 8) 160(8.9) VEX350 -04, 06, 10 06 (3
Unit mm/s kg kg kg kg Va W Wa We Wmax K 8
Configuration 1 master : 1 thermo-chiller 2 2 R D R D 3 3 S D S D 5 5 S G S G Master This product Fig. 3-11 Connection of RS-232C 3.3 Installation HRS Series 3-16 HRX-OM-W038 Chapter 3 Transport and Setting Up 3.4 Piping Connect piping firmly. Incorrect piping might cause leakage of supplied or drained leakage and wet surrounding area and facility.
Series 10-/11-/21-/22-CDG1 Series 10-/11-REC Series 10-/11-CDM2X Series Perpendicular entry is unavailable.
(l/min (ANR)) Flow (l/min (ANR)) Effective area (mm2) Effective area (mm2) Flow (l/min (ANR)) 300 06 1.0 2 4 200 50 100 0.5 1 2 100 0 0 0 0 5 10 0 5 10 0 5 10 Needle rotation (Turns) Needle rotation (Turns) Needle rotation (Turns) ASD530F ASD630F 1000 1500 14 20 10, 11 12 Flow (l/min (ANR)) Effective area (mm2) Effective area (mm2) Flow (l/min (ANR)) 12 1000 10 8 10, 11, 12 08, 09 15 500
16 16 20 20 24 27 32 39 11 11 14 14 30 30 40 50 34 40 46 58 7.5 7.5 9 9 Rc1/8 Rc1/8 Rc1/4 Rc1/4 32 38 34 39 32 40 50 63 MGF 91 69 14 10 14 M6 M8 X 1.25 M8 X 1.25 18 25, 50, 75, 100, 125, 150, 175 ,200 97 69 14 11 12 M8 M10 X 1.5 M10 X 1.5 21.5 CY1 102 74 16.5 13.5 16.5 M10 M10 X 1.5 M10 X 1.5 28 WA WB Bore (mm) Standard stroke (mm) R S T U VA VB X XA XB XC XL YY YL Z MY1 25 ,50, 75st 200st
B Cushion Rubber bumper, Air cushion REC 50 to 1000 mm/s 20 to 63 Piston speed 50 to 700 mm/s 80, 100 CX Thread tolerance JIS Class 2 st + 1.4 0 st + 1.5 0 st + 1.4 0 st + 1.5 0 Up to 1000 mm, Up to 1200 mm 20 to 63 CY Stroke length tolerance Up to 1000 mm, Up to 1500 mm 80, 100 Basic style, Axial foot style, Rod side flange style, Head side flange style, Clevis integrated style MQQ M JIS
B Cushion Rubber bumper, Air cushion REC 50 to 1000 mm/s 20 to 63 Piston speed 50 to 700 mm/s 80, 100 CX Thread tolerance JIS Class 2 st + 1.4 0 st + 1.5 0 st + 1.4 0 st + 1.5 0 Up to 1000 mm, Up to 1200 mm 20 to 63 CY Stroke length tolerance Up to 1000 mm, Up to 1500 mm 80, 100 Basic style, Axial foot style, Rod side flange style, Head side flange style, Clevis integrated style MQQ M JIS
ES20-150 B Stainless Steel Cylinder Series CJ5-S/Series CG5-S 10, 16 20, 25, 32, 40, 50, 63, 80, 100 For use in environments with water spray such as food processing machines Stainless Steel Cylinder Series CJ5-S/Series CG5-S Series CJ5-S/Series CG5-S Series CJ5-S/Series CG5-S 10, 16 20, 25, 32, 40, 50, 63, 80, 100 Uses grease for food processing machines that meets FDA (U.S.
(mm) Connection thread R H 1(P) 2(A) B S (Width across flats) Weight (g) L3 L4 L5 L6 M1 Q L1 L2 Model C D E F G J K 1(P) R 2(A) 2(A) R 3(R)* VHK-04F-M5 18 2.0 3.4 1.2 19 49 11 21 51 13 4 29.1 31.6 55.4 52.9 M5 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-04F-01S VHK-06F-M5 3.5 11 41 23.8 16.5 15.8 1 8 53.9 29.6 56.9 24.3 32.6 16.5 3.5 16.8 11 7.2 21 50 11 23 53 13 M5 2.0 VHK-B1A 44.5 14.5 1 27 22
L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], T3 = V/a2 = 300/3000 = 0.1 [s] Time T = T1 + T2 + T3 + T4 [s] [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be found by the following equation.