m 156 m 100 m 121 1%(1/4 W) DeviceNet AWG18 (0.82 mm 2) AWG15 (1.65 mm 2) AWG24 (0.20 mm 2) AWG22 (0.33 mm 2) 120 10%(1 MHz) 120 10%(1 MHz) 1.36 ns/ft(max.) 1.36 ns/ft(max.) 0.13 db/100 ft@125 kHz(max.) 0.25 db/100 ft@500 kHz(max.) 0.36 db/100 ft@1 MHz(max.) 0.29 db/100 ft@125 kHz(max.) 0.50 db/100 ft@500 kHz(max.) 0.70 db/100 ft@1 MHz(max.) 6.9 /1000 ft(max.) 3.6 /1000 ft(max.
Movement Speed Position Acceleration Deceleration Force Value Area 1 Area 2 In pos force speed force mode mm/s mm mm/s2 mm/s2 mm mm mm mm/s 0 1 Absolute 100 50.00 1000 1000 0 0 0 100 0 0 0.1 2 Relative 50 10.00 1000 1000 0 0 0 100 0 0 0.1 (E.g.) Flow chart Controller (1) Select/input Step No.1.
8 1 8 1 8 1 8 Note 1) M thread (M5 x 0.8) is applicable for 12 and 16 piping ports.
175 200 250 300 350 400 NCQ8B200-012 025 037 050 062 075 087 100 125 150 175 200 250 300 350 400 NCQ8B250-012 025 037 050 062 075 087 100 125 150 175 200 250 300 350 400 #4-40UNC3/4 7/8 1 1-1/8 1-1/4 1-3/8 1-1/2 1-5/8 1-7/8 2-1/8 2-3/8 2-5/8 3-1/8 3-5/8 4-1/8 4-5/8 #6-32UNC3/4 7/8 1 1-1/8 1-1/4 1-3/8 1-1/2 1-5/8 1-7/8 2-1/8 2-3/8 2-5/8 3-1/8 3-5/8 4-1/8 4-5/8 #6-32UNC1-1/8 1-1/4 1-3/8 1-
Condition 1) 30mm position Step no.0 Step no.0 (Move Method: Relative) Condition 2) 30mm position Step no.1 Step no.1 (Move Method: Relative) mm/s mm mm/s2 mm/s2 % % mm/s % mm mm mm 0 Relative 100 10.00 3000 3000 0 0 0 100 10.00 20.00 1.00 1 100 3000 3000 0 0 0 100 Relative -10.00 10.00 20.00 1.00 Position 10(INC) c Attainment point: 50[mm] 0 10 20 30 40 50 Stroke [mm] Position -10(INC
400 50 300 200 100 10 5 Usable range 20 30 40 50 Usable range 1 0 1 2 3 4 5 6 10 0 1 2 3 4 5 6 Distance from cylinder shaft center Lo (cm) 7 8 9 10 11 12 13 7 8 9 10 11 12 13 14 15 Distance from cylinder shaft center Lo (cm) CY3B25 500 300 200 100 20 30 40 50 10 Usable range 5 1 0 1 2 3 4 5 6 7 8 9 10 11 12 13 Distance from cylinder shaft center Lo (cm) 1464 Model Selection CY3B/CY3R Series
parallel LECSN2-T9(-) D In-line Rod end thread Motor option Lead[mm] [mm] Stroke[mm] Nill Without option Nill Rod end female thread 100 100 Symbol LEY100 M Rod end male thread B With lock B 10 1 rod end nut is included 1000 1000 D 3.33*1 *Refer to the applicable stroke table for details.
1 u t !5 CLK2 !0 o q i @2 @9 #1 @4 @5 #1 @6 #0 @1 @8 !3 @3 @7 !9 @0 !2 !7 !8 t !7 !6 y Enlarged drawing of shim part !
or less Overhang direction:L5[mm] 400 400 Overhang direction:L5[mm] 300 m 300 600mm stroke or less L5 200 200 100 100 0 0 0 1 2 3 4 5 0 1 2 3 4 5 Workload[kg] Workload[kg] 300 300 250 250 Overhang direction:L6[mm] Overhang direction:L6[mm] 600mm stroke L6 m 200 200 500mm or less 600mm stroke or less 150 150 100 100 50 50 0 0 0 1 2 3 4 5 0 1 2 3 4 5 Workload[kg] Workload[kg] -10- 2.2 How
surfaces Same surface 35 100 110 150 2 110 + 30(n2) (n = 2, 4, 6, 8 ) 150 + 100(n2) (n = 2, 4, 6, 8 ) D-A3 D-G39 D-K39 35 + 30(n2) Different surfaces n 110 + 100(n2) (n = 2, 4, 6, 8 ) 150 + 30(n2) (n = 2, 4, 6, 8 ) Same surface 100 + 100(n2) 1 110 150 15 35 55 Different surfaces Same surface 150 110 2 150 + 30(n2) (n = 2, 4, 6, 8 ) 110 + 30(n2) (n = 2, 4, 6, 8 ) 35 + 30(n2) Different surfaces
L = Stroke 1 2 , or more than 100 mm 1 7 5 4 6 2 6 5 7 3 L L Fig. 11 Position for application of grease Table 10 Amount of grease units: g Stroke 32 40 50 63 80 100 P o s i t i o n f o r Bore g r e a s e At 100st 3 to 4 3 to 4 3 to 5 4 to 5 6 to 8 8 to 10 50st added 1 1 1 1.5 2 3 26 3-2-4.
= M/Ma 3-3 Load factor of dynamic moment Examine Mep. (30 + 10.5) Mep = 1/3 x 16.8 x 9.8 x = 2.2 1000 We = 4/100 x 1 x 420 = 16.8 A = 10.5 Meap = 1 x 0.7 x 18 = 12.6 K = 1 = 0.7 Mpmax = 18 = 2.2/12.6 = 0.17 Pitching (Ln + An) Me = 1/3We x 9.8 1000 Weight equivalent to impact We = WV : Bumper coefficient Rubber stopper without adjuster = 4/100 Shock absorber = 1/100 Metal stopper = 16/
Ratio of discharge rate against fresh water (%) PAX PB 50 0 1 10 100 1000 Viscosity (mPas) Caution Viscosities up to 1000 mPas can be used.
Item Display Content [0.1] 0.1 increments [1] 1 increments [UAC] Selection of accumulated minimum unit [10] 10 increments [100] 100 increments Move on to the setting of accumulated volume per pulse. Press the SET button to set.
P611070-1 P611090-1 P611060-1 P611080-1 P611010-1 P611070-1 P611090-1 P611060-1 P611080-1 P611010-1 P411020-1 P411030-1 P411040-1 P411050-1 Series Vane type Model CRB2BWU10 CRB2BWU15 CRB2BWU20 CRB2BWU30 CRB2BWU40 CRBU2WU10 CRBU2WU15 CRBU2WU20 CRBU2WU30 CRBU2WU40 Unit part no.
/ 1 8, / 1 4 / 3 8 / 1 2 In-line M3/M5 / 1 8, / 1 4 / 1 4, / 3 8 2.5 to 25 20 to 40 32 to 63 32 to 63 40 to 100 40 to 100 AS1000 AS2000 AS3000 AS3500 AS4000 AS5000 4.1-23 / 1 4, / 3 8 / 1 4, / 3 8, / 1 2 / 1 4, / 3 8, / 1 2 63 to 125 1 40 to 200 160 to 250 300 300 AS420 AS500 AS600 AS800 AS900 / 1 4, / 3 8, / 1 2 / 3 4 4.1-27 1 / 11 4 / 1 2 1 2, 4.0-1 Applicable tube O.D Applicable cylinder
Minimum Stroke for Auto Switch Mounting [mm] Auto switch model Number of auto switches Bore size 12 (10 x 2) 16 (12 x 2) 20 (16 x 2) 25 (20 x 2) 32 (25 x 2) 40 (32 x 2) 50 (40 x 2) 63 (45 x 2) 80 (56 x 2) 100 (71 x 2) D-M9V 1 5 2 5 D-M9 1 5 Note 1) 5 2 10 Note 1) 10 D-M9W 1 5 Note 2) 2 10 Note 2) 10 D-M9WV D-M9AV 1 5 Note 2) 2 10 D-M9A 1 5 Note 2) 2 10 Note 2) Note 1) Confirm that it is possible
/50 = 0.43 kg 3 Air Cylinder Double Acting, Single Rod JMB Series Allowable Kinetic Energy Allowable Lateral Load at Rod End 1000 100 100 85 80 67 Allowable lateral load at rod end [N] 63 56 50 45 40 100 85 100 Load mass [kg] 80 67 10 32 63 40 56 50 45 40 10 32 3 1 500 300 100 50 500 200 100 400 300 0 Maximum speed [mm/s] Cylinder stroke [mm] Example) Load limit at rod end when the air cylinder
Cable length (L)[m] 1 3 5 8 A B C (30.7) (16.6) (23.7) Connector A1 (12.7) (10.2) (5.6) (10.5) 1.5 3 5 8 (7.0) Connector C (14.2) (6.7) (5.7) Connector A2 3 2 1 (Terminal no.) 1 3 2 4 1 4 10 (13.5) AB 1 3 15 1 2 (18) 20 AB 15 16 (30.7) (11) L Produced upon receipt of order (14.7) (10) Connector D Connector B With lock and sensor Connector A1 terminal no. 1 2 3 Connector C terminal no. 1 2
AC/Class B coil (Built-in full-wave rectifier type) DC 1 5 G N 1 1 G N R VX02 VX02 Series Series Rated voltage Note) 1 2 3 1 2 3 VX31 VX32 VX33 VX31 VX32 VX33 1 2 3 4 7 8 J 100 VAC 50/60 Hz 200 VAC 50/60 Hz 110 VAC 50/60 Hz 220 VAC 50/60 Hz 240 VAC 50/60 Hz 48 VAC 50/60 Hz 230 VAC 50/60 Hz Rated voltage Note) 5 6 24 VDC 12 VDC Note 1) Refer to Table (1) for available combinations.