The load kinetic energy can be obtained by the following equation: 5 a 1 Rush speed into cushion (mm/s) 100 50 200 500 750 M Also, selection can be made by using the graph above. Example) Find the maximum load weight when using a cylinder with 32, stroke 500 mm, with rear plate as a lifter at an average speed of a 300 mm/s.
F G H J K L Anchor bolt 406.4 609 609 609 962 962 962 1216 1216 361 510 510 510 824 824 824 1019 1019 440 650 650 650 1080 1080 1080 1300 1300 1268 1258 1978 2278 1550 2160 2770 2558 3288 1000 945 1340 1340 1100 1550 1650 1700 1700 550 645 740 740 750 750 750 850 850 6 9 9 9 12 12 12 16 16 460 665 693 693 1162 1162 1162 1416 1416 19 19 19 19 19 19 19 27 27 80 M16 x l 250 M16 x l 250 M16 x
R S E E N E X T P A G E Courtesy of Steven Engineering, Inc. !
THREE-PORT VALVES FIVE-PORT VALVES D I R E C T A C T I N G VT S E R I E S (S E E V A LV E S E C T I O N) V A C U U M V E R S I O N SY B O D Y P A R T E D (S E E V A LV E S E C T I O N) H O W T O O R D E R VT S E R I E S H O W T O O R D E R SY S E R I E S VT3 V Refer to series VT307/327 P O R T W AY SY 20 X20 S I Z E 07 17 25 S I Z E E N T E R A S S TA N D A R D P A R T F O R E X T E R 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 .
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 .
2 @2 @4 t e !0 Series CH2G !3 @3 r @5 !
1 q r e w t i y u o !0 !
AS 0 0.1 0.15 0.2 0.25 0.3 Return stroke pressure (MPa) ASP ASN v v w w a a o o l l v v l l F F e e AQ ASV u u r r e e s s v v s s a a e e l l v v r r P P e e AK ASS ASR ASF Working stroke Working stroke Return stroke Return stroke Pressure valve Flow valve 15-16-1 2 Cuts air consumption by operating the return stroke at a reduced pressure.
(A set of b, c, d, e) BMA3-050S (A set of b, c, d, e) BMA3-063S (A set of b, c, d, e) Switch bracket (Resin) Transparent (Nylon) Note 1) Auto switch a e White (PBT) b Switch holder d Auto switch mounting screw c Auto switch mounting band Band (c) is mounted so that the projected part is on the internal side (contact side with the tube).
Symbol Specications X01 Different diameters (IN side < OUT side) X02 Different diameters (IN side > OUT side) X03 Blue element X04 Filtration: 10 m X05 FKM/Oil free (Seal) X06 Nylon 5 20 L/min 750 mm2 7 100 L/min 1260 mm2 Applicable tubing O.D. Metric size Symbol Applicable tubing O.D.
e Valve Model SX340 is for internal pilot.
2 4-NT WF G J TN Depth ND E XT SN + Stroke A ZB + Stroke EA E/2 E DD D Bore size (in) MM KK NT TN WF XT Y LF P SN ZB C BA B AA ND A J G EE R 150 (1.5") 5/8 7/16-20 1/4-20 5/8 1 1 15/16 1.71 3 5/8 2 1/4 4 3/4 0.3 1 2 1/4-28 9/16 3/8 1 1/8 1 1/8 2.02 9/32 3/4 1.1 1.26 3/8 1.43 2.36 200 (2") 5/8 7/16-20 5/16-18 7/8 1 1 15/16 1.71 3 5/8 2 1/4 4 3/4 0.3 1 1/4 2 1/2 5/16-24 9/16 3/8 1 1/8 1 1/8
2 4-NT WF G J TN Depth ND E XT SN + Stroke 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 A ZB + Stroke Bore size (in) MM KK NT TN WF XT Y LF P SN ZB A AA B BA C D DD E E/2 EA EE G J ND R 150 (1.5") 5/8 7/16-20 1/4-20 5/8 1 1 15/16 1.71 3 5/8 2 1/4 4 3/4 3/4 2.02
B AA A C FA G TT J LF + STROKE ZB + STROKE R WF TL TM TL E X119 Option (in) TD 0.001 0 Bore (in) MM KK A AA B BA C D DD E EA EE FA G J R TL TM TT UM UV WF Y LF P XI ZB 200 (2) 1 3/4-16 1 1/8 2.6 1.5 1 1/8 1/2 7/8 5/16-24 2 1/2 0.3 3/8 3/8 1.26 1.06 1.84 1 1 3 1.18 5 2.56 1 3/8 2.09 3 5/8 2.40 3.29 5 1/8 250 (2.50 1 3/4-16 1 1/8 3.1 1.5 1 1/8 1/2 7/8 5/16-24 3 0 3/8 3/8 1.30 1.06 2.19 1 1
Posit io n e rr? ? or Posit io n e rr? ? or 3 La rg e friction Refere nc e sp ee d Refere nc e sp ee d Without friction compensation With friction compensation 5 5-62 5 Adjustments 5.8.3 Current Control Mode Selection Function This function reduces high-frequency noises while the servomotor is being stopped.