Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
26 18 13.6 PFMC7202 Rc3/4, NPT3/4, G3/4 90 35 66.1 46.7 17.5 24 31 28 16.8 PFMC7501/7102 G1/2 76 30 60.6 41.2 15 14 26 18 13.6 Symbol Model Bracket dimensions S T U V W PFMC7501/7102 24 22 32 40 50 PFMC7202 30 30 42 48 58 Lead wire and M8 connector ZS-40-A Cable Specifications 2 (White) (Black) 4 4 Conductor Nominal cross section AWG23 10 (Blue) 3 1 (Brown) Outside diameter Approx. 0.7 mm
Applicable Fluid Process Gas Molecular Formula Process Gas Molecular Formula Ar CClF3 Argon Halocarbon 13 C2Cl2F4 CF4 Halocarbon 114 Halocarbon 14 C2ClF5 CH2F2 Halocarbon 115 Halocarbon 32 C2F6 CH4 Halocarbon 116 Methane C2H2 CHF3 Acetylene Halocarbon 23 C2H2F4 CO2 Halocarbon 134A Carbon Dioxide C2HF5 H2 Halocarbon 125 Hydrogen C3F8 He Halocarbon R218 Helium C3H6 Kr Propene Krypton C3H8 N2
TUB-14 TAS Antistatic Nylon Tubing . TUB-15 TAU Antistatic Polyurethane Tubing . TUB-16 TIRS Flame Resistant Soft Nylon TubingInch . TUB-17 TRS Flame Resistant Nylon TubingMetric . TUB-18 TRB Flame Resistant Double Layer TubingMetric. TUB-19 TRBU Flame Resistant Double Layer Polyurethane TubingMetric ... TUB-20 PEAPP Polyurethane TubingInch/Metric . TUB-21 Related Equipment .
VFN212N-5D-02F 240 VFN212N-5D-02F-D 380 C b Cv C b Cv 2-position Single solenoid 2.68 0.40 0.72 5.41 0.31 1.38 Double solenoid 2.68 0.40 0.72 5.41 0.31 1.38 189 A VFN200N Series Dimensions DIN terminal VFN212N-l D (Y)ll-02l-l 138 19 23 Applicable heavy-duty cord O.D. 6 to 8 Pg 9 Indicator light (With "Z") 84.5 ( Without "Z": 66.5) 36.5 75.5 (Without "Z": 57) 2(A) port 24 32 40 119 Pilot EXH 14
Body size 2 AMC220 AMC310, 320 AMC510, 520 AMC610 AMC810 AMC910 Refer to page 5-10-14 for Specific Product Precautions. 3 5 6 8 9 Model/Male Thread Type Model Specifications Effective area (mm2) AMC310 AMC510 AMC610 AMC810 AMC910 16 55 165 330 550 Max. air flow (l/min(ANR)) Port size Weight (kg) Element model no.
CKQ CLKQ Relay, PLC Note 1) D-P4DWZ 5 m 2-wire (14) 2-color display CK1 D-P79WSE 24 VDC 0.3 m Pre-wired connector DC/AC magnetic field Reed auto switch CLK2 Series C(L)KQP D-P74L 3 m 24 VDC 100 VAC 1-color display 2-wire Grommet D-P74Z 5 m Note 1) PLC: Programmable Logic Controller Note 2) There are other applicable auto switches other than the listed above.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.
Through the combination of parallel I/O inputs, 14 points of positioning are available. The speed and acceleration of the positioning can be set by the switch for each operating direction. A single signal sent to a dedicated terminal returns an actuator to the home position.