Nil A B C D q w e q w q w w q e q w The number inside indicates the combination order counted from the inlet side.
S S Effective area ratio 3.2 : 1 Pressure loss: Small Filter regulator S coupler Coil tube 2 Nozzle 2 Upstream side S: 9 Nozzle side S: 2.8 Effective area (mm) Effective area ratio Nozzle size (mm) Number of nozzles Supply pressure S: S = 3.2 : 1 2 1 0.5MPa 0.35MPa 0.33MPa Regulator pressure Outlet pressure Effect of Energy Saving Improvement 50 to 75% Reduction 50 to 75% Reduction 100%
Z R U 5 6 V S R 1 2 Without light/surge voltage suppressor With surge voltage suppressor With light/surge voltage suppressor Power saving circuit is not available in the case of W type.
How to Order S 2 B P H S4 200 LEY 63 A2 w y !0 i o e r t q u !1 !2 !3 !
Dimensions: Without Buffer ZP2-R W-A5 04 06 ZP2-R 20 W-A5 04 06 ZP2-R 30 W-A5 04 06 Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 10 (Hexagon) Q Q Q Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) 4 4 4 4 4 4 21 21 21 M5 x 0.8 M5 x 0.8 M5 x 0.8 P P P (60) (60) (60) S S 31 8 31 S 31 14.9 A 14.9 14.9 R R R 6 6 6 M5
E W Without auto switch Connection port location Nil E Side ported Axial ported Size 10 15 With auto switch Size: 10, 15 T99 L 180 S CDRBU2 10 W CDRBU2 20 W 180 S T79 L With auto switch Size: 20, 30, 40 Size 20 30 40 Made to Order Refer to the table below for details.
W W W U,V,WCN2 3 2 3. 3.1 (L1L2L3) ALM() () U,V,WCN2 SSCNET/HAA EM2EM1 AC200V240VL1L3LECSS-S LECSS-SLECSS2-T ON(MCCB) 3 3 3
T S T S T S T S T S T C(D)UK6C(D)UK10C(D)UK16C(D)UK20C(D)UK25C(D)UK32For the auto switch weight, refer to page 68 to 72.
Be sure to periodically drain the product or conduct drain removal using an air dryer. 0 V 3 W (2 W) 0 200 ms The value in ( ) is for the JSX10U. The OFF time should be at least 2 s. If the OFF time is less than 2 s, the coil may generate an abnormal amount of heat, resulting in damage, depending on the length of ON time.
HRX-OM-Q026-V Operation Manual Installation Operation Original Instructions Thermo Chiller HRSH Series HRSH100-A-20HRSH100-A-40HRSH100-A-20-S HRSH150-A-20HRSH150-A-40HRSH150-A-20-S HRSH200-A-20HRSH200-A-40HRSH200-A-20-S HRSH250-A-20HRSH250-A-40HRSH250-A-20-S HRSH300-A-20HRSH300-A-40HRSH100-W-20HRSH100-W-40HRSH100-W-20-S HRSH150-W-20HRSH150-W-40HRSH150-W-20-S HRSH200-W-20HRSH200-W-40HRSH200
To CN3 T-branch type LEC-CMJ-T Standard cable Robotic cable LE-CP-m-S LE-CP-m Note) The terminating resistor (110 , 1/2 W) should be provided by the customer.
Maximum load weight W 1 = W/Wmax = 1/9 = 0.111 Investigate W. Find the value of Wmax when Va = 300mm/s from
Applicable shaft types: S, W Equal dimensions are indicated by the same marker.
1 Drain q r e w t i u y o !0 !
r w AR30(K)-B/AR40(K)-B q t AR50(K)-B/AR60(K)-B e IN OUT q t r w e IN OUT r w Component Parts No.
Contents Series Bore size (mm) Kit no. 20 25 32 40 50 63 80 100 20 25 32 40 50 63 80 100 CBG1N20-PS-W CBG1N25-PS-W CBG1N32-PS-W CBG1N40-PS-W CBG1N50-PS-W CBG1N63-PS-W CBG1N80-PS-W CBG1N100-PS-W Order seal kit in accordance with the bore size. Order seal kit in accordance with the bore size.
1/2 VQC 4/5 VQZ SQ VFS VFR VQ7 537 Connector Type Manifold VQC1000/2000 Series IP67 enclosure compatible Dust-tight, Immersion-proof (Based on IEC60529) (S/T/L/M kit) Power saving Standard: 0.4 W (Reduced by 60% compared to current model) High-pressure (1 MPa, Metal seal): 0.95 W Accommodates gateway-type serial wiring.
5 2 3 4 5 CY1H20 CY1HT32 13 16 13 64 96 64 CY1H10 CY1H10 1.5 1 M3 1 0.5 0.5 70 100 300 500 1000 70 100 300 500 1000 Piston speed (mm/s) Piston speed (mm/s) M1 M2 Graph (3) Graph (2) Static Moment Moment generated by the workpiece weight even when the cylinder is stopped Pitch moment M1 = W L Yaw moment M3 = W (L A) Roll moment M2 = W L (mm) Model CY1H10 CY1H15 CY1H20 CY1H25 CY1HT25
L D-A73 (Example) RS H A Lead wire length RZQ 5 m None Nil L 0.5 m 3 m Z N MI W S Applicable for the connector type (D-C) only.
. 600 0.51000(0.4 + 0.4) 1000 LEC = T1: Acceleration time [s] Time until reaching the set speed LEC S = 0.2 [s] T1 = V/a1 [s] T3 = V/a2 [s] T4 = 0.3 [s] T2: Constant speed time [s] Time while the actuator is operating at a constant speed T3: Deceleration time [s] Time from the beginning of the constant speed operation to stop T4: Settling time [s] Time until positioning is completed LEC