Note 1) ( ): Long stroke Note 2) Refer to p.1.6-11 for pivot bracket.
0.1 x mcos + msin P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m mv P Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 29) 1 Review of operating conditions Determination of load factor () = Load mass (m) Maximum allowable load (m max) + Static moment (M) Allowable static moment (Mmax)+ Dynamic moment (ME) Allowable dynamic moment (MEmax
Refer to "Flow Characteristics" (p.4.6-2) and figure of "Max. air flow" (p.4.6-3).
Then, port P and port A are connected. At this time, there will be gaps between the armature t and the core y, but the armature will be magnetically attracted to the core y. Component Parts Operation principles
P 17 P T 21.5 27.5 A I R R G Y 7 R A I 8 17.5 32 8 42 Side A Side B Scale: 40% 12 Rotary Gripper Series MRHQ Construction Description Material Note Parts list No.
P O Flow Characteristics/Operating Principles P O, O Construction Detail .. PO Dimensions P O Installation PO Power Amp.: Series VEA Model / Spe c i f i c a t i o n s . . . . . P O H o w t o O r d e r . . . . . . . . . P @ Dimensions/ Handling Instructions . . . . . P@, @, @ External Connections P@, @ Features and Functions P@ Sample Applications . . .
Horizontal 10 10 P.10 Standard motor 6 6 P.18 Vertical 10 10 P.26 Frame-type linear guide LTF 6 6 P.34 Horizontal 10 10 P.42 Non-standard motor 6 6 P.50 Vertical 10 10 P.58 Options P.66 Construction P.67 Mounting P.68 Non-standard Motor Mounting P.69 Deflection Data P.71 Part Number Designations P 1 E F G LTF 6 100 R 2 X10 Motor specification Lead screw lead Series Series 6 Nil
l/min VCB 3 Cv = 0.35 3 4 Formula based on effective area (Smm) 1.0 Q = 0.8 S 10.2 P l/min VCB23 Cv = 0.33 VCB25 Cv = 0.65 Q: Flow rate (l/min) P:Pressure differential (P P) P: Upstream pressure (MPa) P: Downstream pressure (MPa) S: Effective area (mm) Cv: Cv factor VCB34 Cv = 0.54 VCB24 Cv = 0.51 0.1 0.001 0.01 0.1 1 10 Pressure differential P = (P P) MPa Note: 1l/min = 0.353SCFM
[IDFA125F-38/40] () (10 2m) (100.7m) 20 4x R2 1/2 R2 1/2 1130 78 9351 267 1120 655 75 64 (17 ) 40 1276 1375 R ) (14~18) () P.1-5 P.1-5 P.1-5 7122 20 350 700 752 IDFA100F150F 6 4 6.3 IDX-OM-U022 6.
P-80 (D) 2nd printing April, 2002 D-DAD P-80 (YG) This catalog is printed on recycled paper with concern for the global environment.
Port size Rc1/4, NPT1/4, G1/4(ISO1179) U P DOWN U P DOWN U P DOWN SET SET SET Model with initial display settings of PSI is also available as standard.
LVN Port P TI/ TIL Port P Port P PA Port A PAX Port A Port A PB Normally open (N. O.) Port P Port P Port P Model Manifold base model Individual port Rc VVXA211-stations Common port Rc Port A 1 8 1 4 3 8 1 8 1 4 VVXA212-stations VVXA221-stations VVXA222-stations Manifold Manifold Stations B mount 2 to 10 stations 17-3-97 2 The VX series will be revised shortly.
Printed in Japan. 1st printing April, 2003 D-DN P-120 (DN) Printed in Japan. This catalog is printed on recycled paper with concern for the global environment.
P O Flow Characteristics/Operating Principles P O, O Construction Detail .. PO Dimensions P O Installation PO Power Amp.: Series VEA Model / S pec ific ations . . . . P O H o w t o O r d e r . . . . . . . . . P @ Dimensions/ Handling Instructions . . . . . P@, @, @ External Connections P@, @ Features and Functions P@ Sample Applications . . .
Sealant/Gasket seal P.554 P.667 P.554 P.554 M/UNF/R/NPT More space beneath the tube. Easier installation/removal of the tube.
1/2 77 60 17 80 133 168 100 25 to 1000 14.5 M42 x 2 58 42 15 257.5 M14 x 1.5 56 115 52 90 56 86 16 50 41 38 19 3/4 79 72 22 97 146 187 Transaxial foot: CHSDLA PJ + Stroke Y J MM S + Stroke H B 2 x RcP GB GA Air release LY D E V V LH LT X1 X2 K F Y1 Cushion valve G C M Y2 MA ZA + Stroke SS BB LX 4 x CD Z + Stroke A ZZ + Stroke Stroke range Bore size (mm) BB CD E F GA GB H M J LH LT LX LY P
Q1 = M L2 = L2 + (3 x P) 3. L1 + (3 x P) L2 + (3 x P) 4. L2 = Q2 = M L1 = 5. Q2 = M 6.
m P 0.1 x m + m P D 1.6 x D 5.0 x D 5.0 x m m mv P Pv m > mv P > Pv Determination of allowable load mass & pressure Inclined operation (Refer to page 8-16-8