mm Connection threads R Weight g L2 M D2 L1 Applicable tubing M 4 5 5 6 8 9 13 14 15 18 24.5 26.5 27 29 30 31.5 35.5 36.5 38.5 41.5 23.2 27.2 24.4 28.4 26.6 29.4 32.1 33.1 34.3 38.3 1/8 1/4 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 12 14 12 KPL04-01 KPL04-02 KPL06-01 KPL06-02 KPL08-01 KPL08-02 KPL10-02 KPL10-03 KPL12-03 KPL12-04 4 3.5 10.4 3.5 20.7 18 10 D1 6 9 12.8 9 22.8 19.5 D2 L2 A 14 8 12 22
mm Connection threads R Weight g L2 M D2 L1 Applicable tubing M 4 5 5 6 8 9 13 14 15 18 24.5 26.5 27 29 30 31.5 35.5 36.5 38.5 41.5 23.2 27.2 24.4 28.4 26.6 29.4 32.1 33.1 34.3 38.3 1/8 1/4 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 12 14 12 KPL04-01 KPL04-02 KPL06-01 KPL06-02 KPL08-01 KPL08-02 KPL10-02 KPL10-03 KPL12-03 KPL12-04 4 3.5 10.4 3.5 20.7 18 10 D1 6 9 12.8 9 22.8 19.5 D2 L2 A 14 8 12 22
If it is unavoidable, install a cover, etc., for protection. 1 Places where the ambient temperature exceeds -5 to 50C range.
to 220VAC (60Hz) Model 3D 4D 6D 8D Note 1) Single phase 200 to 240VAC is "S" specification standard.
P3318113-2 P3318105 P3318105-1 P3318105-2 Note 2) 20 Dust cover Note 2) Note 2) Note 1) No. 16 to 19 is supplied in one unit for KT-packing set.
Maximum load mass m 1 = m/mmax = 1/5 = 0.20 L2 Review m. L1 M2 = m g (L1 + B) 103 2. Static moment m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 & M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103 m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We (L2 + A) 103 3.
1 r !4 @2 u o !3 @4 e !5 !1 r u @2 @3 !3 @4 e !2 MXH16/20 (16, 20) @0 y @1 !7 w q!9 t !8 i !0 !1 r u @2 @3 !3 @4 e !2 Component Parts Description Material Note Description Material No. q w No. !2 !3 !4 !5 !
Note 5) When the voltage output is selected. Note 6) When the current output is selected.
Calculate the load factor for each direction. x = Xc/Lx, y = Yc/Ly, z = Zc/Lz 5. Confirm the total of x, y and z is 1 or less. x + y + z 1 When 1 is exceeded, please consider a reduction of acceleration and work load, or a change of the work load center position and series. 25AAcceleration [mm/s2]: a Work load [kg]: m Work load center position [mm]: Xc/Yc/Zc z y 1. Horizontal 3.
Note 5) When the voltage output is selected. Note 6) When the current output is selected.
Series Option Example VV2DW2-0501 ... 1 set Manifold part no. 1 2 3 10 20 30 None With bracket Nil F VDW23-5G-2 ... 5 sets Valve part no. (Stations 1 to 5) Note) Type 30 is available only with bracket. "" is the symbol for mounting. Add "" in front of the part numbers for solenoid valves, etc., to be mounted. Enter together in order, counting from station 1 on the D side.
Body PBT 1 Valve NBR, Aluminum alloy 2 Spring Stainless steel 3 Spacer Brass Electroless nickel plated 4 Cassette 5 Seal NBR 6 Male Connector Type: AKH 4, 6 8 x R 1/8 5/32, 1/4 5/16 x NPT 1/8 M5 type U10/32 8, 10, 12 5/16, 3/8, 1/2 Free flow Fitting Male thread Description Material Note Parts list No.
(Mp max.,My max.,Mr max.) 1 mm/s = 0.0394 in/s 1 J = 1 Nm = 0.7375 ftlbf 1 mm = 0.0394 in 1 N = 0.2248 lbf 164 Precision Air Slide Table Series MXP Table Deflection Table deflection when pitch moment is applied. Deflection on A when load is applied on F. Table deflection when yawing moment is applied. Deflection on A when load is applied on F.
For manifold type 30, 31 VP Standard type (Cv: 0.008) SY1 3 5 L 1 M3 : Body ported VG VP Standard type (Cv: 0.008) 5 1 SY1 4 M : Base mounted S070 3 port VQ Port size Rated voltage For DC Nil: Without sub-plate M3: With sub-plate VKF 5 6 V S R 24 VDC 12 VDC 6 VDC 5 VDC 3 VDC VQZ VZ Sub-plate style For manifold type S41 For AC (50/60 Hz) 1 2 3 4 100 VAC 200 VAC VS (With gasket and screws)
Model 6 6 6 ZH05DA ZH07DA 1/4" 1/4" 1/4" ZH05DA ZH07DA One-touch One-touch SUP. EXH. 6 6 8 ZH10DA 1/4" 1/4" 5/16" ZH10DA 8 10 10 ZH13DA ZH15DA 5/16" 3/8" 3/8" ZH13DA ZH15DA 10 12 12 ZH18DA ZH20DA 3/8" 1/2" 1/2" ZH18DA ZH20DA One-touch Oval release button is only available with 6. VAC. One-touch and screw-in connection SUP. VAC. EXH. Model SUP. VAC. EXH.
HHH is 6 displayed. (1) Reset applied pressure (1) Check that the pressure is not to a level within the set pressure range.
LC6D Connector Cable LC6C Power Connector Cable Model LC6-1-C1--X258 Model LC6-1-C2--X252 Electric actuator LC6D Electric actuator LC6C Cable length 1 1m 3 3m 5 5m Cable length 1 1m 2 2m 5 5m Power connector Cable length: 1 to 5m Motor cable b Cable length: 1 to 5m 13 12 11 10 6 5 4 3 2 1 a Motor cable 7 13 12 11 10 9 8 6 5 4 3 2 1 Switch cable 14 15 16 17 18 Interface cable 7 9 8 Power cable
weight m (kg) Load weight m (kg) 30 30 MGF63 10 20 20 MGF63 5 10 10 MGF40 5 4 3 5 4 3 MGF40 MGF40 5 MGF40 2 2 3 5 2 1 1 10 20 30 40 50 100 200 300 400 10 20 30 40 50 100 200 300 400 10 50 100 5 10 50 100 Eccentric distance l (mm) Eccentric distance l (mm) Stroke (mm) Stroke (mm) How to read the graph 1) When the load weight is 70kg, eccentric distance is 60mm, and the maximum speed is 150mm
Jumping of pressure compensating mechanism Be aware that the amount of jumping that is shown in Graph 5 applies to the pressure compensation mechanism during the operation of the cylinder. Jumping is a condition in which the cylinder operates without control at a speed that is higher than the control speed. Skip valve 1.
Refer to pages 12-10-4 to 12-10-5 for the details on effective holding force and allowable overhanging distance. Misc. D2012-10-9 9 Series MHY2 Construction Closed condition Size 10 Size 16 Size 20, 25 r o !8 e w !7 t r o !8 e w @0 !7 t r o !8 e w @0 !7 t !5 !5 !5 !6 !6 !0 u !2 i q !1 y !9 !0 u !2 i q !1 y !9 !0 u !3 !2 i q !1 y !9 !4 !4 !