for lead wire 10 Auto switch D-A7/A8 K L B + Stroke M E S A + Stroke J 2-cushion needle Rod end male threads H1 C1 L1 X Rod end nut Auto switch D-A9/F9 Rod end male threads mm Bore size (mm) C1 X H1 L1 32 40 50 20.5 23.5 M14 x 1.5 28.5 20.5 23.5 M14 x 1.5 28.5 26 28.5 M18 x 1.5 33.5 Standard type mm A B C D E F H I J K L M N Bore size (mm) 32 40 50 Stroke range (mm) 20 to 100 44 37 13 16 45
allows the piston rod to move freely. 4 Series RLQ Dimensions/32 (Emergency Stop) Both ends tapped: RLQA32 3.2 16 3.2 16 2 x 4-M5 x 0.8 Standard (through hole): RLQB32 Extension locking LOCK PC PC Rod side cylinder port Rear cylinder port PL unlocking port M8 x 1.25 (Effective thread depth) 18.5 55 Unlocks when pressurized 22.5 2-5.4 through 2 x 2-9 counterbore depth 7 9 7.5 60 6.5 16 45
KAL06-M6 16.5 Uni thread 17 1 8 KAL06-U01 3 8 KAL06-U03 24 23 21.5 20 14 12.8 6 10 23.5 1 4 KAL06-U02 11.4 11.4 10 15 Uni thread 24.5 23 17 12 1 8 1 4 KAL08-U01 KAL08-U02 25.5 26 22.5 24.5 11 16 14 15.2 8 12 23 18.5 14.9 14.9 3 8 KAL08-U03 17 25.5 27 24 1 8 KAL10-U01 29.5 27 26.5 25 25 21 24 14.9 14.9 1 4 3 8 KAL10-U02 KAL10-U03 30 30.5 17 10 26.5 18.5 17 21 25.0 25.0 1 2 KAL10-U04 30 31.5 45
Weight (g) Nylon Urethane D1 D2 L2 M1 M2 L1 Q P 4 6 35 39.5 45 49 KGU06-08 KGU04-06 7 12 19 27 KGU08-10 KGU10-12 4.2 13.4 17.7 28.4 10.4 18 16 12.8 20 17 15.2 24.5 18.5 18.5 12.8 15.2 18.5 20.9 27.5 21 9.7 11.7 13.7 16.1 17 18.5 21 22 10.4 12.8 15.2 18.5 4.2 13.4 25.6 40 6 8 10 8 10 12 Different dia. double unionY: KGUD Effective orifice(mm 2) Applicable tube O.D.
Body ported type M5 0.8 3.6 (0.2) 43 45 SYJ522 N.O. SYJ514 N.C. Base mounted type (With sub-plate) 57 (Without sub-plate 43) 59 (Without sub-plate 45) 1/8 NPTF 4.5 (0.25) SYJ524 N.O.
specifications 2-4.5 mounting hole 4 89.4 Manual override Indicator light VQ210 -W-02 37 45 5 128.1 (DC) 137.3 (AC) 22.4 15.5 (93.5) (AC) (84.3) (DC) Clamp screw M5 x 0.8 External pilot port 81 (AC) 75 (DC) 70.7 25 25 25 15.4 12 2.5 5 G 3/8 Electrical entry 14.5 19.5 43.8 39.1 53.6 Note) When used for IP65 specifications, install a seal connector in the electrical entry.
Since Q0 = 15/45 = 0.33 [ /min], according to the Graph (2), if reading P when Q0 is 0.33, it will be 0.031 [MPa]. Example 2) Obtain the flow rate of saturated aqueous vapor when P1 = 0.8 [MPa], P = 0.008 [MPa] with a solenoid valve with an Av =1.5 x 106 [m2]. According to the Graph (2), if reading Q0 when P1 is 0.8 and P is 0.008, it is 0.7 [kg/h].
leakage cm/ min 300 (PTFE), 0.1 (FKM) with air Mounting orientation Unrestricted Vibration/Impact resistance m/s Note 2) 30/150 or less Rated voltage 100VAC, 110VAC, 200VAC, 220VAC, 230VAC (50/60Hz) Allowable voltage fluctuation 10% of rated voltage Coil insulation type Class H Power consumption W 50/60Hz VCS2: 4.9/4.1, VCS3: 7.7/6.6, VCS4: 10.5/9.3 Inrush VCS2: 22/19, VCS3: 36/30, VCS4: 45
leakage 0cm/min (0in/min) (with water pressure) Mounting orientation Unrestricted Vibration/Impact resistance m/s Note 1) 30/150 or less Rated voltage 100VAC, 110VAC, 200VAC, 220VAC, 230VAC (50/60Hz) Allowable voltage fluctuation 10% of rated voltage Coil insulation type Class H Power consumption W 50/60Hz VCB2: 4.9/4.1, VCB3: 7.7/6.6, VCB4: 10.5/9.3 Inrush VCB2: 22/19, VCB3: 36/30, VCB4: 45
H 28 30 36 44 54 G 33 42 44 50 61 F 45 55 58 65 76 E 22 21 26 D 34 46 63 67 78 C 40 53 70 75 90 B 20 29 39 42 53 A 59 78 107 110 134 I 45 55 63 69 81 Model Piping port VHS20 VHS30 VHS40 VHS40-06 VHS50 1/8, 1/4 1/4, 3/8 1/4, 3/8, 1/2 3/4 3/4, 1 3
(Also confirm that the O-ring is not damaged.) 5) After aligning the projections (2 places) on cover A with the grooves in the case, push cover A in and turn it clockwise until it stops (approx. 45).
Actuator operation from host . 40 8.1 CiA 402 drive profile . 40 8.1.1 FSA state . 40 8.1.2 Controlword / Statusword . 41 8.1.3 Control mode . 42 8.2 Parameter setting . 43 8.3 Servo-on and Homing . 44 8.4 Positioning operation (Profile position mode) . 45 9.
FA 3m 27 (M230) 2 O 1 No.ZB-OM00301 Assy ZB1ZS A M G A E 0.0~-101.0KPa G (2m) F -100.0~100KPa ZS-39-5G A NPN2 B PNP2 1) M SI2) P (psi)1) 1) (M230) 2 2)kPa O 1 V Assy 45 2 V Assy 45 (V Assy ) A ) 28 - No.ZB-OM00301 A R R Nm 0.0540.08 R R ON OFF R 29 - No.ZB-OM00301 3 P911 Nm 0.075~0.096 M2 / 3 Assy Assy / / O (/) O 30 - No.ZB-OM00301 [L/min(ANR)] V
50 55 60 65 IDF60/IDF70 1.26 1.00 0.78 0.64 0.54 0.42 0.35 0.27 IDF80/IDF90 1.30 1.29 1.00 0.81 0.63 0.55 0.47 0.39 MPa 0.2 0.4 0.5 0.6 0.7 0.8 0.9 1.0 0.3 1.6 IDF60/IDF70 0.70 0.74 0.87 0.92 1.00 1.02 1.05 1.05 IDF80/IDF90 0.64 0.75 0.86 0.93 1.00 1.04 1.07 1.09 20 25 30 32 35 40 45 IDF60/IDF70 1.12 1.07 1.05 1.00 0.94 0.83 0.71 IDF80/IDF90 1.11 1.11 1.04 1.00 0.92 0.80 0.64 3 5 10
() S O 45 () 45 () O O CAUTION Check that air pressure is zero before servicing. 4 3 5. 5 5.1 3 ON OFF 60cm 1 10% () ( ) 60cm 1 10% 3 5 1 5. ( ) 60cm 1 2 IN OUT INOUT () 5 2 6. 6 6.1 IDF15E1-10 IDF15E1-20 550 MPa 0.151.0 () 240 (85%) 50Hz 2.8 (ANR) 1) 60Hz 3.1 m 3/min 50Hz 2.9 2) 60Hz 3.2 MPa 0.7 35 32 10 () AC100V(50Hz) AC100,110V(60Hz) 3) AC200V(50Hz
Coefficient factors Inlet air temperature (oC) 35 40 45 50 55 60 65 70 75 80 1.58 1.46 1.09 1.00 0.79 0.64 0.55 0.51 0.49 0.47 Inlet air pressure (MPa) 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 to 1.6 0.67 0.79 0.88 0.91 1.00 1.02 1.04 1.09 Ambient temperature (oC) 20 25 30 35 40 45 1.19 1.13 1.06 1.00 0.90 0.77 Calculation example: The air flow capacity when the dew point of IDFC60 is set to 10 oC
oC 0.9m 3/min 1.6m 3/min 2.2m 3/min 3.1m 3/min 0.7MPa 50 oC 35 oC () 230V (50Hz) 10% (3) (4) 1.0kW 1.6kW 2.4kW 2.8kW (4) 5.5A 8.0A 13.0A 14.0A 30mA (5) 10A 15A 20A 30A R410A (HFC) GWP:2088 (6) 39010g 53010g 63010g 78010g 0.1MPa 12mm R1 R1 1/2 R2 49kg 68kg 95kg 110kg 1 2 1 2[3275%] 3 4 5R 30mA 6IPCC4 AR4 R410A GWP2090 7L V1.6MPa IDFC60/70/80/90 Series 7-1 IDX-OM-W095 oC 35 40 45
WEB IDF-S0001 1 C32FP-260S 1 IDF-S1932 1 2 44 IDH Series 4.1 IDX-OM-W038 4 4.2.4 2 4 x 40 x 72 (1) 1.4 (5)( ,) 2.O 3.O 4. 5. 6.4 7. 1 1 OUT IN 4 4 3 3 2 2 5 5 6 IDH*4 IDH*6 1 2 AMH-EL350 3 AMH-EL250 4 O 5 AM-CA250C-D E AM-CA250C-C AM-CA350C-D E AM-CA350C-C 6 45 IDH Series 4.2 IDX-OM-W038 4 (2) 1.4 (5)( ,) 2.O 3.O 4. 5. 6.4 7. 1 1 IN OUT 4 4 3 3 2 2 5 5 IDH*4
. <> [F 6] [F 6] -42No.PS-OMU0005CN-C [F10] <> [F10] 2 OUT1 OFF OUT2 [dUAL]2 () () [dUAL]2 45 () () () 45 () [F10] -43No.PS-OMU0005CN-C <> (OFF) OUT1 n_1 OUT1 OFF OUT2 OUT2 OFF n_2 [F10 ] () OUT2 n2H OUT1 OUT2 n2L OUT1 n1L OUT1 OUT2 n1H [F10 ] -44No.PS-OMU0005CN-C 2 2 ( ) OUT1 OUT1 ( ) OUT1 () ( ) OUT1 () OUT1 ( ) OUT2 OUT2 ( ) OUT2 () ( ) OUT2 () OUT2 OUT1
No.PS-OMS0006CN-G / / ZSE20(F) ISE20 2 8 10 11 14 14 16 18 [] 20 21 3 22 24 26 26 26 F0 28 F1 OUT1 29 F3 32 F4 33 F6 35 F10 36 F11 41 F80 42 F81 43 F82 45 F90 46 F98 48 F99 49 50 54 54 55 62 62 64 -1No.PS-OMS0006CN-G *1) (ISO/IEC)(JIS) *2) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems ISO 4413: Hydraulic fluid power -General rules