L2 L3 M D2 D2 L1 L1 L4 L4 H (Hexagon width across flats) H (Hexagon width across flats) D3 D3 L5 A1 A2 L5 A1 A2 D1 D1 T T Metric Size L4 L5 A1 A2 M Max.
M D2 D2 L1 L1 L4 L4 H H (Width across flats) (Width across flats) D3 D3 A1 L5 L5 A1 A2 D1 D1 A2 T T Metric L4 L5 A1 A2 M MAX.
Inlet pressure 0.5 MPa Total stroke time (t) (1) Piping length SV1000: 1 m, SV2000/3000: 2 m, SV4000: 3 m Stroke (L) Speed d% d% Stroke (mm) Speed at the end Cylinder direction Vertical upward Stroke Speed controller Meter-out, Directly connected to cylinder, Needle fully open (2) Load ratio {(Load weight x 9.8) Theoretical output} x 100% Speed at the end (u) Time (s) SOL: ON(OFF) 1-2-6
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
Electrical entry q Description 01 02 03 01 02 03 01 02 03 Mounting bolt and gasket are not included. Platinum silver Body C: Conduit VS4010-CSSub-plate Platinum silver Aluminum die-casted w T: Conduit terminal VS4010-TSSpool/Sleeve Stainless steel e U: Grommet, D: DIN terminal VS4010-SReplacement Parts Part no. No.
50 76 118.5 127.5 96.5 6.6 9 67 63 92 130 139 102 9 9 90 CEP1 Bore size (mm) Rear flange style: RZQG FZ L M 4-FD CE1 32 65 18 34 CE2 40 72 18 40 50 90 22 50 ML2B 63 108 28 60 FV M C J G5-S CV M L B + Full stroke FT FZ AH + Full stroke MVGQ CC RB Double clevis style: RZQD Double Style (mm) J CT Cap bolt Bore size (mm) Hole: CD H10 d9 A B CD CL CT CU CW D32 112.5 82.5 10 102.5 5 14 20 -X 40
Contents Action 12 12 CQSB12-S-PS CQSB12-T-PS 16 16 CQSB16-S-PS CQSB16-T-PS Single actng, Spring return Single acting, Spring extend Set of nos. above !2, !3, !4 Set of nos. above !3 20 20 CQSB20-S-PS CQSB20-T-PS 25 25 CQSB25-S-PS CQSB25-T-PS Seal kit includes !3. Order the seal kit, based on each bore size. Seal kit includes !2, !3, !4.
E1 2 I E[J]I[kg][rad/s] Imr m[kg] rm 5.1 19 I I I I kg kg kg kg m m m m 2 2 2 2 m: m: m: m: kg kg kg kg b 20 5-2. 5.1 5.1 32 0.023[J] 40 0.028[J] 2 t [rad]t[s] E E1 2 I t E 2 I t E[J][rad]I[kg] 2 t (1) t = & (2) C C t 2 1 tdt 2 + = = & & t=0 =0C=0 t 2 1 t 2 1 2 = = & t 2 = 21 5-3.
connector 11 23 9 H C 15 6.5 H C H C G1/2 Terminal: T DIN terminal: D Applicable cable O.D.: 6 to 12 G F G F Width across flats 22 G1/2 32 H (44) H 31.5 25 C C J G1/2 J Dimensions [mm] Model A B C D E F M P Q Grommet: G Grommet: GS Conduit: C Flat terminal: F DIN terminal: D Terminal: T G H G H G H G H G H J G H J XSA1-1P(N) 30 30 66 30 11 20 8 1/8 19 27 56.5 30 43 47.5 50.5 23 56.5 64.5
A A a B B s j C f g t C0.5 C0.2 C0.2 b d e 45 45 Section A-A p k C0.5 45 C n h i l (d) C0.5 q m O Section B-B r (l) View C (mm) +0.2 0 l i o j k m n p q r s t b e g a c d f h Model 0 0.2 0.05 0.15 + 0.1 0 +0.2 0 3.5 +0.013 +0.001 CXS 6 2.75 M2.5 x 0.45 4.5 3.5 4.75 C0.5 2.8 0.5 4 3.5 3 3.5 16 0.1 M3 x 0.5 4 1 5.5 6 +0.2 0 0.05 0.15 0 0.2 + 0.1 0 +0.2 0 5 +0.016 +0.001 CXS10 4 M3 x 0.5 8 5
A, B port size Port size M5 x 0.8 1/8 1/4 3/8 Symbol M5 01 02 03 VFA1000 VFA3000 VFA5000 VFA1000 Double type only Thread type (Including pilot port) Nil F N T Rc G NPT NPTF M5 is available with Nil only.
2 3 4 6 5 0 1 2 3 4 5 Flow velocity (m/s) Flow velocity (m/s) Calculating the Flow Velocity v = 21.2 x Q/d2 (Symbol) v: flow velocity (m/s) Q: flow rate (L/min) d: piping inner diameter (mm) 626
m s m s Type of impact s m Kinetic energy E1 1 2 m2 Thrust energy E2 Fs Fs + mgs Fs mgs Absorbed energy E E1 + E2 Symbol : Speed of impact object (m/s) m: Weight of impact object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8 m/s2) s: Shock absorber stroke (m) Note) The speed of the impact object is measured at the moment of impact with the shock absorber. 8-12-11 12 Series
m s m s Type of impact s m Kinetic energy E1 1 2 m2 Thrust energy E2 Fs Fs + mgs Fs mgs Absorbed energy E E1 + E2 Symbol : Speed of impact object (m/s) m: Weight of impact object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8 m/s2) s: Shock absorber stroke (m) Note) The speed of the impact object is measured at the moment of impact with the shock absorber. 8-12-11 12 Series
Altitude [m] 1. Max. ambient 2. Cooling capacity temp.
Contents Action CQSB12-S-PS CQSB12-T-PS 12 12 Kits include items !2, !3 and !4 from the table above. CQSB16-S-PS CQSB16-T-PS 16 16 Kits include item !3 Single acting Spring return Single acting Spring extend CQSB20-S-PS CQSB20-T-PS 20 20 from the table above. CQSB25-S-PS CQSB25-T-PS 25 25 Seal kits consist of item !
9 N K M 1 RE A B O 1 H REC O H PP CX NN NN MM MM CY KK LL KK LL 2-PA J J MQQ M 2-PA (Port for operating cylinder) (Port for operating cylinder) 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 F I F RHC (mm) (mm) MK(2) M 30.5 32 41.5 K 46 58 68 J 40 46.5 55 I 76.5
9 N K M 1 RE A B O 1 H REC O H PP CX NN NN MM MM CY KK LL KK LL 2-PA J J MQQ M 2-PA (Port for operating cylinder) (Port for operating cylinder) F I F RHC (mm) (mm) MK(2) M 30.5 32 41.5 K 46 58 68 J 40 46.5 55 I 76.5 91 110 N 16 15 19 H 73 88 106 F 93.5 107.5 130.5 O 18.5 19.5 21.5 N 16 15 19 M 13 15 19 K 46 58 68 J 40 46.5 55 H 73 88 106 F 76.5 91 110 Applicable cylinder ML2B25 ML2B32 ML2B40