W 50mm W CJ5 CG5 HY C M D-X Individual -X Technical data 869 Series HYC Construction r !3 !6 y u q !5 !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.
Table Displacement (Reference Value) 0.05 W L LEKFS32 (L = 30 mm) 0.04 Displacement [mm] LEKFS40 (L = 37 mm) 0.03 LEKFS25 (L = 25 mm) 0.02 0.01 0.00 0 50 100 150 200 250 300 350 400 450 500 Load W [N] * This displacement is measured when a 15 mm aluminum plate is mounted and fixed on the table. 9 10 Battery-less Absolute (Step Motor 24 VDC) Battery-less Absolute Encoder: Electric Actuator
. = 2.5 mm only, w/threads w e u i Stainless steel Lever Packing O-ring NBR Valve Retainer Spring r POM o NBR t Stainless steel !
9 @2 @0 @1 e w !5 !6 !3 !2 !1 !0 q t r i S u y o !4 !8 !
(g) n: Stations W = 30n + 50 W = 37n + 63 W = 61n + 101 W = 79n + 127 W = 100n + 151 Note) For more than 10 stations, supply pressure to P port on both sides and exhaust from EA and EB port on both sides.
RZQ MI W S CEP1 CE1 < For AC > (Since the rectifier prevents the production of surge voltage, there is no S type.)
IP65 DIN terminal only Power consumption: 0.35 W * At 12/24 VDC Current model: 1.8 W (80% reduction) Improved flow rate characteristics: Up to 2.3 times C[dm3/(sbar)]: 9.2 * For AV2000-A Energy saving No air flow when the main valve is switched.
IP65 DIN terminal only Power consumption: 0.35 W * At 12/24 VDC Current model: 1.8 W (80% reduction) Improved flow rate characteristics: Up to 2.3 times C[dm3/(sbar)]: 9.2 * For AV2000-A Energy saving No air flow when the main valve is switched.
Hz 220 VAC 50/60 Hz 24 VDC 12 VDC 240 VAC 50/60 Hz Others Conduit terminal DIN terminal (with connector) DIN terminal (without connector) M12 connector Allowable voltage fluctuation 15 to 10% of rated voltage Power consumption W DC 1.8 W (With indicator light: 2 W) W 5.6 VA (50 Hz) 5.0 VA (60 Hz) Inrush Apparent voltage VA AC r Manual override 3.4 VA (50 Hz) 2.3 VA (60 Hz) Holding Push type
Body opton.ombi.albn s Nominal bore size Actuation ffi 1 Nol aEiab e wilhout auo switch 1 Nol a ab e wilh Doub e fod (W) r Nol a@ lable w lh spr n9 retum or spr n9 xlsd orwrrh supercompacr typ (z) .
2 i r i t y w w e !0 !0 !2 !5 o !0 !4 q q y u !1 !3 r t !1 M5 type U10/32 type M5 type U10/32 type !1 y !2 u !4 !3 i !5 u e r r t w e o !0 i o q q t y !0 !2 w !
Description Body Material Body Zinc die-cast Zinc die-cast q q Spool valve Spool/Sleeve Aluminum/NBR Stainless steel w w Piston Piston Resin Resin e e rPilot Valve Assembly rPilot Valve Assembly (1) (1) L M G L M G VQ111P (H) (Y) VQ111P (H) (Y) 2 2 Single Single Voltage 1 to 6 Voltage 1 to 6 L M L M VQ110L VQ110L 2 2 Double (latching) Double (latching) Voltage 1 to 6 Voltage 1 to 6 The
Calculation ZX ZR : Lifting force (N) : Stable vacuum pressure (kPa) : Pad area (cm2) : Factor of safety: Horizontal pad contact : 4 (dynamic) Vertical pad contact : 8 (dynamic) W P S t Pad ZM W = P x S x 0.1 x 1 t W ZH W ZU Horizontal lifting Vertical lifting Basically ( avoid this use. ) ZL Theoretical Lifting Force ZY The theoretical lifting force (not including the safety factor) is
As a guide, adjust P2, so that it could be W + P2A = P0a.
4 t w e !5 Rod end male thread CHQB32 to CHQB100 r o !0 y q !2 !1 !4 u t !3 e w !5 Rod end male thread Description Material Note Parts List Replacement Parts: Seal Kit No. Bore size (mm) Seal kit no.
As a guide, adjust P2, so that it could be W + P2A = P0a.
As a guide, adjust P2, so that it could be W + P2A = P0a.
0 y t r w e u w !2 i !1 (A) 4 (B) 2 (A) 4 (B) 2 4(A) SOL.a SOL.b SOL.a SOL.b 5 (EA) 1 (P) 3 (EB) 5 (EA) 1 (P) 3 (EB) 2(B) o 5(EA)/3(EB) 1(P) SJ3C60 [N.C., N.O. valve x 1 (each)] SJ3C60K with back pressure check valve SJ3C60 [N.C. valve, N.O. valve x 1 (each)] !0 y t r q e u w !2 i !
M W Remote control type Nominal size Speed specifications [mm/s] 16 25 Stroke Made to Order (Refer to page 1099.)
2 i r i t y w w e !0 !0 !2 !5 o !0 !4 q q y u !1 !3 r t !1 M5 type U10/32 type M5 type U10/32 type !1 y !2 u !4 !3 i !5 u e r r t w e o !0 i o q q t y !0 !2 w !