PD07PD09 (DO) ON/OFF 4.5.1(1)(d) JOGDO TM 4.5 MR Configurator2 No.PC09 MR Configurator2 11.8 TM master-slave masterslave C1 5.4.3 1 5 1 1.5 (1) LECS S 1 S5 50W,100W SSCNET S ACS5, S6 S5 ACS7 S7 200W ACS8 S8 400W AC100VAC120V 50Hz60Hz 1 AC200VAC230V 50Hz60Hz 2 1 6 1 (2) aSSCNET 5 A S LE C S M A AC S B M B E 2m 2 5m 5 10m A S R bSSCNET LE-CSS-MR-J3BUSM 1 LE C S S
CRB2 CRB1 MSU CRJ CRA1 Realized a stable motion at 5 s/90.
XB9 Bore Stroke Magnetic holding force CY1B XC24 Bore Stroke CY1L Low speed (15 to 50mm/s) rodless cylinder Even at a low drive speed of 15 to 50mm/s there is no sticking and slipping.
CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing
CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing
S Kit can be used by connecting to gateway unit.
0 100 200 300 400 500 600 V(mm/s) 0 0 100 200 300 400 500 600 V (mm/s) LEFS 16 LEFS 25 LEFS 32 50 12 20 W(kg) W(kg) 10 W(kg) W(kg) W(kg) W(kg) 6 40 6 15 8 30 8 6 8 10 5 5 20 4 5 12 10 16 10 12 16 10 2 0 0 0 0 100 200 300 400 500 600 V (mm/s) 0 100 200 300 400 500 600 V(mm/s) 0 100 200 300 400 500 600 V(mm/s) -9- (1)(DC24V) LEFS40 (mm) 1) 200, 300, (400), 500, (600) (700), 800
MM NA 20, 25 2-Eh8 D Standard port Relief port 45 AL 1.5 A 1.5 K F N N H S + Stroke F ZZ + Stroke 32, 40 (mm) H2 22 17 17 13 B1 41 32 32 26 B2 H H1 11 8 8 8 13 F Bore size AL K MM NA NN G ZZ S P N I E D A 0 50 45 45 41 6 6 5 8 8 8 14 12 10 8 20-0.033 21 19.5 19.5 15.5 154 122 120 116 1/8 24 22 22 18 40 32 25 20 42.5 34.5 30 24 21.5 15 15 15 88 64 62 62 7 5.5 5.5 5 46.5 37.5 33.5 28 M26 x
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
0.5 s 1 s 1.5 s 2 s 2.5 s 50 50 100 100 150 150 200 200 1500 0 150 300 450 600 750 900 1050 1200 1350 1500 0 150 300 450 600 750 900 1050 1200 1350 Distance [mm] Distance [mm] 3) Supply pressure: 0.2 MPa Flow rate consumption: 188 L/min (ANR) 4) Supply pressure: 0.3 MPa Flow rate consumption: 253 L/min (ANR) 200 200 150 150 2.5 s 2 s 100 100 50 50 0.5 s 1 s 1.5 s 2 s 0.5 s 1 s 1.5 s 50 50
When ordering the double clevis, the clevis pin and the cotter pin (2 pcs.) are attached. 6-9-2 3 Series CS1 Air Cylinder: Standard Type Dobule Acting, Single Rod Specifications Air-hydro Type Lube, Non-lube Fluid Turbine oil Air 1.57 MPa Note) Proof pressure 0.97 MPa Maximum operating pressure Minimum operating pressure 0.06 MPa 0.05 MPa Piston speed 0.5 to 200 mm/s 50 to 500 mm/s Cushion
N-04 N-06 L-04 L-06 S-04 S-06 LL-04 LL-06 4 6 N-08 8 N-10 10 N-12 12 4 6 L-08 8 L-10 10 L-12 12 4 6 S-08 8 S-10 10 S-12 12 4 6 LL-08 8 LL-10 10 LL-12 12 Precautions Be sure to read before handling.
(increment of 0.1 s), 1 to 10 s (increment of 1 s), 20 s, 30 s, 40 s, 50 s, or 60 s.
075 (3/4") NCQ8B075-S-PS 106 (1-1/16") NCQ8B106-S-PS Piston seal is included. 150 (1-1/2") NCQ8B150-S-PS 200 (2") NCQ8B200-S-PS 250 (2-1/2") NCQ8B250-S-PS With auto switch Here is the typical, cross-sectional construction.
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
TB PLC 0 No. 3 ABS 1 INC 2 *1 (mm/s) (-) (+) mm 42 - 1 mm/s 2 1 mm/s 2 100% * *1 0 1100 1100 INP ON INP ON *1 1100 ( mm/s) *1 * *1 (mm/s) * (-) (+) AREA ON mm 1122 AREA ON 1 1 *1(1)2(2) 1=2=0 AREA OFF 2 2 (-) (+) 43 - mm mm INP ON INP ON *1 * INP ON () INP ON *1 44 - 11.2 ID ID 132 ID () IO IO * [64 ] * [] S S * (+) (+) *1 + mm (-) (-) *1
Load mass kg Load mass kg m s m s Type of impact s m 1 m 2 Kinetic energy E1 Thrust energy E2 Fs Fs + mgs Fs mgs Absorbed energy E E + E Symbols : Speed of impacting object (m/s) m: Mass of impacting object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8m/s) s: Shock absorber stroke (m) Note) The speed of the impacting object is measured at the time of impact with the
If those values are input, the Return to Origin operation cannot be performed as the speed becomes 0 mm/s.
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