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Search Results "MLGCLB32-450-R-E"

L NA 33 2-Rc, NPT, G 1/4 14 14 E(h8) E(h8) X D I 4-TC 14 14 Effective thread depth R 23 22 K W 23 25 2 4-M8 x 1.25 25 8-Q 14.5 C 0.1 + Effective thread depth 12 Effective thread depth R B S + Stroke 2 ZZ + Stroke Q x R S TC x R Model L 122 110 K 38 32 C 70 60 X ZZ NA E D B 72.2 58.2 I 70 60 W 12-REA63 12-REA50 100 86 66 53 30-0.033 69 55 M10 x 1.5 x 16 M8 x 1.25 x 16 188 176 M14 x 1.5 x

Inlet pressure (MPa) Weather resistant NBR Diaphragm assembly e 1315510A Flow Characteristics Inlet pressure: 0.7 MPa Valve assembly Valve spring Valve mini Y packing O-ring O-ring Handle Set nut Brass, HNBR Stainless steel NBR NBR NBR Polyacetal Zinc die-casted r t y u i o !

When the bearing slides, e the spring for returning to center also expands and contracts. When the force in the lateral direction is released, r the center shaft is returned to the neutral position by e the spring for returning to center. Lock Mechanism Unlocked condition Unlocked condition Locked condition Locked condition The table becomes free when unlocked.

Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used. Area x Pressure = Force Output Example: What is the theoretical force output of a 2 12 bore cylinder operating at 80 lbs. per square inch air pressure? Step 1.

Calculate the area of the cylinder piston Area = r2 where = 3.1416 r = 12 the bore diameter 2. Multiply the piston area by the air pressure to be used. Area x Pressure = Force Output Example: What is the theoretical force output of a 2 12 bore cylinder operating at 80 lbs. per square inch air pressure? Step 1.

A S A N E X A M P L E : A C C O R D I N G T O I S O , T H E R E I S N O D I F F E R E N C E I N S Y M B O L B E T W E E N A C O N V E N T I O N A L D O U B L E A C T I N G C Y L I N D E R A N D A T W I N B O D C Y L I N D E R , A L T H O U G H S O M E M A N U F A C T U R E R S H A V E I N T R O D U C E D T H E I R O W N S Y M B O L S F O F C L A R I F I C A T I O N .

A S A N E X A M P L E : A C C O R D I N G T O I S O , T H E R E I S N O D I F F E R E N C E I N S Y M B O L B E T W E E N A C O N V E N T I O N A L D O U B L E A C T I N G C Y L I N D E R A N D A T W I N B O D C Y L I N D E R , A L T H O U G H S O M E M A N U F A C T U R E R S H A V E I N T R O D U C E D T H E I R O W N S Y M B O L S F O F C L A R I F I C A T I O N .

o o t r u t r u w y e q w y e q Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com VQ7-6-FG-DVQ7-6-FG-D-R o o t r u t r u w y e q w y e q FHG FJG FIG FHG FJG FIG VQ7-6-DVQ7-6-D-R o o t r u t r u w y e q w y e q VQ7-6-FPG-Do t r u w y e q i Replacement Parts (For valve

r 1.3 x 108 1.3 x 109 B w, e 1.3 x 108 1.3 x 109 C r 1.3 x 1010 (FKM) 1.3 x 109 D w 1.3 x 108 1.3 x 1011 (FKM) E w, r 1.3 x 108 1.3 x 109 Seal material Symbol Seal material Compound no.

2 r Pressure gauge r Outlet Pressure gauge e e Outlet y Fluid release Replacement Parts No. Description Part No.

Stainless steel With switch only 9 Magnet plate 10 Scraper 11 Rod seal NBR 12 Piston seal 13 Tube gasket 14 Piston gasket 6 Series CHKDB Dimensions 2-Rc P F with effective thread depth G F with effective thread depth G Q Q R D R H E E 4-K through 8-L counter bore 4-K through C B + Stroke J J 8-L counter bore A + Stroke M M CHKDB20 & 25 CHKDB32 to 100 Width across flats f c a b g e h + Stroke

Temperature distribution of 120C specifications Excellent thermal conductivity results in a uniform temperature for the entire valve body and a marked decrease in the condensation of gases inside the valve. 140 e, r, t Comparison with KF25 flange 120 e Body 1 100 Temperature (C) 80 r Body 2 q, w t Body 3 60 40 20 w Bellows Valve q 0 0 30 60 90 Heater Time (minutes) High Vacuum Angle Valves

location, P/R port with One-touch fitting for 6 VZ1000-3A-1D r VZ1000-3A-1U t SUP/EXH block assembly VZ1000-2A-1M y Note) Block pin (2 pcs.) is attached for q, e, t, y.

R at type Flat with rib , I Mqde~ . > Il. 9, Y .C Rat type (mm) y . H :M6)$1 . ..Ii:M8'Xl . i ,8 0 MOOsl M E F I . , 1 .F!a, >C I E F I G. r '.e G lit"'" lb. F:M5.X O.8 I F:M6 x 1 D E t3 I D." ~ ' G 1J 2O 8 3 19 19 25 ' 45 14 3 3.5 24 15 1.7 I ZPT20~ 20 23 8 12 4 40 ZPT02U 2 2.6 1.2 ZPT04U ' 4 . .. a:.e 1.6 ZPT06U 6 7 08 '9 ' 12 ZPT2Sg . 25 28 I 14 3 .8 4 25 , 45 , ''24 '' . '5 : .

0 H RX0F RX00 1 1 FROM E 1 H RX 1 F RX 1 0 M15 M10 M5 M0 E 2 H E 2 H R X F R X 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 RX 2 F R X 2 0 2 E 3 H 2 E 3 H RX 3 F RX 3 0 2 E4 H RX4F RX40 E5 H 3 RX5F RX50 M31 M26 M21 M16 15E H RX1F RX10 1 0 RX 7E F RX 7E 0 64 15F H RX 7F F RX 7F 0 . 1 Ready bit0 1 (1) M0(RD) M1(INP) M2(CPO) M3(ZP) M4(TLC) M5 M6(MBR) M7(PUS) M8 (MOF) M9 (COF) M10(

e w q Nil None With vacuum switch t r e w q Number of ejector/valve stations E Alignment (for special specifications) U side D side 13-14-40 40 e Valve Model Fill in the blanks below with symbols of necessary specifications.