T1 = V/a1 [s] T3 = V/a2 [s] T1 = V/a1 = 300/3000 = 0.1 [s], T1: Acceleration time [s] Time until reaching the set speed T2: Constant speed time [s] The acceleration and deceleration values have upper limits depending on the workpiece mass and the duty ratio.
V (mm/s) C85 C95 Find the Cylinder Bore Size.
IC circuit 5 V Yes (NPN equivalent) A93 A90 A54 A64 A59W A33 A34 A44 IC circuit 100 V 12 V 5 V, 12 V Grommet No Relay, PLC 100 V or less Yes 100 V, 200 V No 200 V or less 2-wire 24 V PLC Terminal conduit 12 V Relay, PLC Yes 100 V, 200 V DIN terminal Grommet Diagnostic indication (2-color indication) Solid state auto switches marked with are produced upon receipt of order.
24 V 100 V, 200 V Relay PLC DIN terminal Diagnostic indication (2-color indication) A59W Grommet Y59A Y7P J51 Y59B Y7NW Y7PW Y7BW G39 K39 3-wire (NPN) 3-wire (PNP) 5 V, 12 V 24 V IC circuit Grommet 100 V, 200 V 2-wire 12 V IC circuit 3-wire (NPN) 2-wire 5 V, 12 V Terminal conduit 12 V Relay PLC 3-wire (NPN) 3-wire (PNP) IC circuit Diagnostic indication (2-color indication) 5 V, 12 V
1 min 30 s 20 s Max. 10 s Iron (Fe) [mg/L] 0.3 or less v v Copper (Cu) [mg/L] 0.1 or less v Sulfide ion (S2) [mg/L] Should not be detected v Ammonium ion (NH4+) [mg/L] 0.1 or less v Residual chlorine (Cl) [mg/L] 0.3 or less v Free carbon (CO2) [mg/L] 4.0 or less v Reference item 5 s 2 s 1 s Min. 0.5 s 0.2 s 0.1 s *1 In the case of [Mcm], it will be 0.003 to 0.01.
Item Unit Standard value Influence 10 s Corrosion Scale generation 5 s pH (at 25C) 6.0 to 8.0 v v Electric conductivity (25C) [S/cm] 100* to 300* v v Chloride ion (Cl) [mg/L] 50 or less v Sulfuric acid ion (SO42) [mg/L] 50 or less v 2 s Min. 1 s Standard item 0.5 s 0.2 s Acid consumption amount (at pH4.8) [mg/L] 50 or less v Total hardness [mg/L] 70 or less v Calcium hardness (CaCO3) [mg
Graph (1) 400 st 500 st 600 st 700 st 400 st 500 st 600 st 700 st 10 5 4 300 st 300 st 3 200 st 200 st Load movement time: t(S) 2 [Example] 100 st 100 st Example) 1 0.5 0.4 0.3 V' 0.2 V W 0.1 100 200 300 400 500 1000 Cylinder stroke Maximum speed: V (mm/s) Movement distance of load Find the bore size.
Cylinder stroke Maximum speed: V (mm/s) Movement distance of load Find the bore size.
) $ $ $ $ $ $ $ $ $ $ IC circuit 5 V Yes $ 100 V Grommet IC circuit No 100 V or less Relay, B54 B64 A33 A34 A44 $ Yes No 100 V, 200 V PLC 12 V 200 V or less 24 V 2-wire A33C A34C A44C Terminal conduit PLC 100 V, 200 V Yes DIN terminal Relay, A59W B59W PLC $ $ Diagnostic indication (2-color indication) Grommet Water resistant type auto switches can be mounted on the above models, but
A B C D Maximum Speeds for Each Transfer Load Unit (mm/s) Transfer load (kg) 15 20 25 30 1000 1000 930 740 600 500 Note Model LJ1H202PC-500LJ1H202PC-600LJ1H202PC-700LJ1H202PC-800LJ1H202PC-900LJ1H202PC-1000700 700 600 600 500 500 500 500 500 500 500 500 500 500 500 500 500 500 Power supply: 100/110(V)AC 10% Compatible controller: LC1-1B2H1Power supply: 200/220(V)AC 10% Compatible controller
Find the maximum load speed V. Step 1 Find the maximum load speed V[mm/s] with formula (1) below. The maximum load speed V[mm/s] is approximately equal to V1 x 1.4 . (1) V: Average load speed [mm/s] V = st/t st: Load transfer distance [mm] t: Load transfer time [s] Find the cylinder bore size. Step 2 1. For vertical mounting 2.
Find the maximum load speed V. Step 1 Find the maximum load speed V[mm/s] with formula (1) below. The maximum load speed V[mm/s] is approximately equal to V1 x 1.4 . (1) V: Average load speed [mm/s] V = st/t st: Load transfer distance [mm] t: Load transfer time [s] Find the cylinder bore size. Step 2 1. For vertical mounting 2.
Load movement time: t (S) 1600st 2000st 2400st 5 4 3 1400st 1200st 1000st 800st Example) 2 [Example] 600st 500st 400st 1 300st 200st 0.5 0.4 0.3 100st V' 0.2 0.1 V W 100 200 300 400 500 Maximum speed: V (mm/s) Movement distance of load Cylinder stroke Step 2 Find the cylinder bore size.
CL CL1 Step (1) Find the maximum load speed V. MLGC Find the maximum load speed V [mm/s] with following formula (1) below. The maximum load speed V [mm/s] is approximately equal to V1 x 1.4 (1) V1: Average load speed [mm/s] V1 = st/t st: Load transfer distance [mm] t: Load transfer time [s] CNG MNB CNA Find the bore size. Step (2) 1.
CL CL1 Step (1) Find the maximum load speed V. MLGC Find the maximum load speed V [mm/s] with following formula (1) below.
T4 = 0.05 [s] T1 = V/a1 = 300/5000 = 0.06 [s], T3 = V/a2 = 300/5000 = 0.06 [s] T2 = = = 0.94 [s] L 0.5 V (T1 + T3) V 300 0.5 300 (0.06 + 0.06) 300 T4 = 0.05 [s] Therefore, the cycle time can be obtained as follows.
. 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
2-wire 12 V [] [] 3-wire (NPN equivalent) A96 Z76 5 V IC circuit A93 A90 Z73 Z80 Grommet 100 V Relay PLC 2-wire 12 V 24 V IC circuit 100 V or less Solid state auto switches marked with are produced upon receipt of order.
Mounting example for D-M9(V), M9W(V), M9A(V). 341
CHSD Series How to Mount and Move the Auto Switch
Port S (10) remains pressurized and valve S (18) remains open.