MVGQ CC RB J D-X 20Data 10-6-11 11 Series RHC Dimensions: Basic Style 20 to 40 Rc P Rc P GA H2 NN NN GB I H1 MM D NB ND NE C Effective thread E E NF 10 N JD N JC 10 A K F NA S + Stroke F H WH B ZZ + 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 B C D E
VQ7 E Europe N North America < Manifold block assembly> This manifold block assembly includes tension bolts for a single station addition. < Manifold block replacement parts > AXT502 1A E Description Material Qty. Part No.
L1 L2+A5 L3 2 1 V 2 E = W () 2 1000 Collision speed V = 1.4 Va 1 420 2 E = 1 () = 0.088 2 1000 Find the kinetic energy E (J) of the load. ) Correction factor (Reference values) V = 1.4 x 300 = 420 Ea = K E max Find the allowable kinetic energy Ea (J). Confirm that the kinetic energy of the load does not exceed the allowable kinetic energy.
8 i e !7 !4 t !9 !0 !2 w !1 o @0 @1 Built-in magnet @2 @5 @3 @4 Component Parts No. Description Material Qty. Note No. Description Material Qty.
R R: Gripping point distance [mm] 6 MHL2 Series Construction 10 16 to 25 e r t u w y @4 @0 @1 @2 !7 !5 !8 @3 !3 e o i q @6 @7 @3 @5 !9 !0 !2 !1 !6 !4 Component Parts No. Description Material Note 1 Body Aluminum alloy Hard anodized No.
This will allow for incremental spacing to prevent harmful large initial surge. 8 XL*-OMI0011-E 4.
0 t t r i w e r i u 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 q VQ7-8-FG-DVQ7-8-FG-D-R !0 !0 t t r i w y e q r i w e q VQ7-8-D-R FHG FJG FIG VQ7-8-DFHG FJG FIG !0 !0 t t r i w y e q r i w e q VQ7-8-FPG-D!
0 t t r i u w y e q r i w e q VQ7-8-FG-DVQ7-8-FG-D-R !0 !0 t t r i w y e q r i w e q VQ7-8-D-R FHG FJG FIG VQ7-8-DFHG FJG FIG !0 !0 t t r i w y e q r i w e q VQ7-8-FPG-D!0 t r i w y e q o Replacement Parts (For valve) Description VQ7-8-FG-SVQ7-8-FG-DVQ7-8-FPG-DVQ7-8-FG-S-R VQ7-8-FG-D-R VQ7-8--D-R VQ7-8--DNumber q w e r t y u i o !
F) EX600-DX#D/E/F (5 byte) Byte Bit Parameter Setting value 0..3 Unit No. 0..8 0 4..7 Parameter type 1 EX600-DX#D: 05 (Hex) EX600-DX#E: 14 (Hex) EX600-DX#F: 16 (Hex) 1 0..7 Unit ID Unit parameter 0 Monitor short circuit (power) 0: disable, 1: enable 1 Reserved 0 2 Inrush current filter 0: disable, 1: enable 3 Reserved 0 2 4..5 Input filtering time 0: 0.1 ms, 1: 1 ms, 2: 10 ms, 3: 20 ms 6.
Confirm that E1 + E2 E E1 + E2 = 2.25 + 0.27 = 2.52J Since E = 3.7J, E1 + E2 E Therefore, the cylinder cushion is available for use. 21 Series CHN Technical Data 3-2 Maximum Absorbed Energy Chart & External Force and Energy Conversion Chart at Cushion Seal Contact Point Maximum absorbed energy pressure and chart in terms of cushion performance characteristics Be sure to keep the combined
Since the PTFE seal is used for element e, a certain amount of force is needed to set the element. Set the element in the following procedure. Handle element e carefully to keep it clean, for example, open the element package only when the element is mounted. a. Fit the grooved part of gasket w into the flange part of case q. b. Place element e in case q.
Since the PTFE seal is used for element e, a certain amount of force is needed to set the element. Set the element in the following procedure. Handle element e carefully to keep it clean, for example, open the element package only when the element is mounted. a. Fit the grooved part of gasket w into the flange part of case q. b. Place element e in case q.
F) EX600-DX#D/E/F (5 byte) Byte Bit Parameter Setting value 0..3 Unit No. 0..8 0 4..7 Parameter type 1 EX600-DX#D: 05 (Hex) EX600-DX#E: 14 (Hex) EX600-DX#F: 16 (Hex) 1 0..7 Unit ID Unit parameter 0 Monitor short circuit (power) 0: disable, 1: enable 1 Reserved 0 2 Inrush current filter 0: disable, 1: enable 2 3 Reserved 0 4..5 Input filtering time 0: 0.1 ms, 1: 1 ms, 2: 10 ms, 3: 20 ms 6.
.: GR-S-010 (10 g), GR-S-020 (20 g) Individual -X 763 Series CNS Dimensions Basic style (B): CNSB 2 x MA Thread effective depth R Rc BQ plug with breathing hole BC element CL M GA T G G FA GB BP (Rc, NPT, G) Unlocking port 2 x P (Rc, NPT, G) Cylinder port GL GR Width across flats KA MM Q D EA E C B V C B AL A K F VA BN N N 4 x J M H S + Stroke ZZ + Stroke With rod boot 75 40 l h + l ZZ1 +
O F , < F , Q r '=r, @ r,> r, Pressure Raies (P1 =Primary Pressure) (P2=Secondary Pressure) NVEP3l2O-2 NVEP314O-'r -04 Primary Pressure P1 = 45 PSIG (3 KSI/cmr) E t2 I { t r S F g t o o E 28 (r. a ( 1 ) E a E a NVEHtl4O-1 E t ^ *t 6 S (0.15) (0.s) t . 5 ( 0 1 ) F 5 (0.05) NVEE NVEP CONSTRUCTION DETAIL Flow Raie'lvpo: VEF212O (2 Pdts) NVEF:112O (3 Porb) Pressuro llrp: NVEP3I2O (3 Porb) l l
C D 4-O MX MTS T MY Q CY 2-P S U W E B K L MG 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 CX DAA AB I AP A R X Y + Stroke Z + Stroke -X J V 20Data 8-AF AC AD AE 100 piston rod end connection Stroke range (mm) Bore size (mm) AF AE AD AC AB AA G F N E M D L C K
Grease pack part number: GR-S-010 (10 g), GR-S-020 (20 g) D-X Technical Data 1213 A MY1H Series Construction End lock !9 @2 @0 @1 e w !5 !6 !3 !2 !1 !0 q t r i S u y o !4 !8 !
O F , < F , Q r '=r, @ r,> r, Pressure Raies (P1 =Primary Pressure) (P2=Secondary Pressure) NVEP3l2O-2 NVEP314O-'r -04 Primary Pressure P1 = 45 PSIG (3 KSI/cmr) E t2 I { t r S F g t o o E 28 (r. a ( 1 ) E a E a NVEHtl4O-1 E t ^ *t 6 S (0.15) (0.s) t . 5 ( 0 1 ) F 5 (0.05) NVEE NVEP CONSTRUCTION DETAIL Flow Raie'lvpo: VEF212O (2 Pdts) NVEF:112O (3 Porb) Pressuro llrp: NVEP3I2O (3 Porb) l
(Fig. 1-2) w Bend the reinforcing plate on the nut (M3) side, as shown in Fig. 1-3. e Pass the clip of the switch holder (a) through the square hole in the side of the reinforcing plate that was not bent in step w. (Fig. 1-4 and Fig. 1-5) r Place the switch holder on the cylinder tube in the state of step e. t Wrap the band around the cylinder tube.