Membrane air dryer series IDG is available in a single unit or combination unit style. IDG/M models combine a mist separator and micro mist separator with a single unit. IDG/V models combine a regulator with the IDG/M model. Options available include one-touch fitting exhaust of purge air. If purged air is not exhausted around membrane air dryer, air is exhausted with tubing away from its
SMC's series AW, is a combination filter/regulator, minimizing space and piping by integrating 2 units into one. The element and bowl on the AW series is now one-piece, making element replacement easier. Bowls on size 30 and 40 are covered with a transparent bowl guard, completely protecting them from the environment, and making the inside visible from 360 degrees. This series is part
SMC's newest micro mist separator, series AFD is available in 3 sizes; 1/4 (20), 3/8 (30) & 1/2 (40). Rc(PT), PF & NPT threads are available. Port sizes range from 1/8 to 3/4. Body size 30 and 40 now have a transparent bowl guard that offers 360° visibility, while completely protecting the bowl from the environment. Accessories include a bracket, and float type auto drain. AFD MASS PRO.
This combination Filter/ Regulator minimizes space and piping by integrating the 2 units into one. Standard features include a relieving regulator, which can be quickly locked by pushing down on the adjustment knob. There are many options, which include gauges, auto-drain, metal bowl and covers, different set pressures, etc. The AW is part of the family of modular air preparation units and
min (ANR)) Flow rate (l/min (ANR)) Flow rate (l/min (ANR)) Effective area (mm2) Effective area (mm2) Effective area (mm2) Number of needle rotations Number of needle rotations Number of needle rotations AS4201FG, AS4211FG AS3201FG, AS3211FG Inlet pressure 0.5 MPa Inlet pressure 0.5 MPa Flow rate (l/min (ANR)) Flow rate (l/min (ANR)) Effective area (mm2) Effective area (mm2) Number of needle
S 100 L Flow control valve (With pressure compensation) Enables constant movement even if there are load fluctuations.
Bore size (mm) Nil Built-in magnet Port thread type No Rc NPT G Nil TN TF D With auto switch (Built-in magnet) 10 C D G 1 W L N 25 100 H7B 21 C D G 1 W L N 25 100 H7B Cylinder stroke (mm) Copper, fluorine and silicon-free + Low particle generation Reed switch Type of auto switch C73, B54 Mounting style 21 22 Relief type Vacuum suction type Basic style Axial foot style Rod side flange style
= 100 (1.0 kg) Wc: Rod L = 50 (0.5 kg) Wd: Workpiece (3.0 kg) [2] Load Blocking Mass and center of gravity of the load Y Center of gravity Load no.
L ZY O L ZF G H F ZP K J SP ZCUK B C E D I A 2 x 4.5 AMJ AMV AEP HEP Related Equipment A B C D E F G H I J K L Model ZFC050-02 ZFC050-23 ZFC050-04 ZFC051-01 ZFC051-03 58.5 12.75 12.75 2 3.2 33 25 10 10.5 10.5 12 8.5 13.75 4 58 12.5 12.5 1/8" 5/32" ZFC100-04 4 ZFC100-06 6 30 10 18 11.6 19.5 23 20 29 53.2 9.1 14.1 ZFC101-03 5/32" ZFC101-07 1/4" ZFC200-06 6 ZFC200-08 8 34 14 22 15.6 23.1 27
Tube swaged J O int rTSJ) for use with Swagelok<l type fittings 1 Digital Pressure Switch Series ZSE6/ISE6 How to Order Vacuum pressure switch Positive pressure switch ZSE68 82 27 IL ISE68 Switch type L,.,., '",..
(ANR)) 4B 1B B AMF250 AMF650 AMF1000 1 4 0.1 MPa 0.1 MPa 0.1 MPa Pressure drop (MPa) Pressure drop (MPa) Pressure drop (MPa) Max. flow line Max. flow line Air flow rate (l /min (ANR)) Air flow rate (m3/min (ANR)) Air flow rate (l /min (ANR)) 2B AMF350 AMF800/801 B 3 8 0.1 MPa 0.1 MPa Pressure drop (MPa) Pressure drop (MPa) Max. flow line Air flow rate (m3/min (ANR)) Air flow rate (l /min
Auto switch CUJ cylinder Cylinder B Cylinder A Auto switch Magnetic substance Non-magnetic spacer of 2.5 mm or more Without Shielding Plate d Bore (mm) 10 L 6 8 L d 19 6 19 6 19.5 6 The space can be reduced by attaching shielding plates (steel plates 0.2 to 0.3 mm thick) to the sides of the cylinders facing each other.
W G M K J 25 to 40 Minimum lead wire bending radius 10 Auto switch H thread effective depth C 4 x N through F Q 2 x M5 x 0.8 (Port size) I D E M Z A + Stroke B + Stroke L W E M K J Standard [mm] Bore size Stroke range Without magnet for auto switch With magnet for auto switch C D E F G H I J K L M N Q W Z A B A B 20 5 to 50 21 17.5 27.5 24 8 8 30 5 29.5 M4 x 0.7 36 2.5 6 3.5 21 3.5 7.5 32
is required 45 40.6 1.8 Acceptable (OK) * Supply pressure: 0.5 MPa, Load factor: 50% 50: 2.2 L (ANR) 45: 1.8 L (ANR) = 0.4 L (ANR) 18% reduction Air consumption Compact and lightweight (32, 40, 50, 63, 80, 100) L1 L2 JMB W2 W1 Current product (Compared with the current product (MB)) W: Width L: Overall length Weight Bore size [mm] Current product W1 [mm] JMB W2 [mm] Current product L1 [
I PORTOPORTLOOP SEC mm2/s LABEL PRO Main modes ALM mm/s L C RUN Directs a program operation. Operation mode ACTUATOR & CONSTRUCTION SYSTEM CONTROLLER POWER ALARM STOP JOG Executes a JOG operation. JOG operation mode HOLD /BS UP L R MON Monitors operating condition. Monitor mode DOWN MODE ENT /ESC Directs alarm code display and clear.
ALD ALD Air dryer IDF series ALB Flow rate (L/min (ANR)) LMU How to read the graph (Example) With the flow rate set to 250 L/min (ANR) and the pressure differential set to 0.05 MPa, by changing the flow rate to 3800 L/min (ANR) and 6000 L/min (ANR), the pressure differential will change from the initial 0.05 MPa to 0.06 MPa, and to 0.065 MPa.
A IN L/A IN L/A OUT LINK L/A INL/A OUT 11 OUT L/A OUT RUN L/A IN L/A OUT LINK MS [](64 ) RUN MS: LED 27 MS: SI NS: IP IP [IP ]( 19 ) 12 PLC PLC SI TM NS: EtherNet/IP PLC PLC SI TM NS: EtherNet/IP NS: IP IP [IP ](19 ) -38No.EX-OMS0026CN No.
To obtain more detailed information about operating this product, please refer to the SMC website (URL http://www.smcworld.com) or contact SMC directly. approx. 1 second The flow range is displayed 10 L/min (PFM510) 25 L/min (PFM525) 50 L/min (PFM550) 100 L/min (PFM511) Indicator LED (OUT2) Indicates the output status of OUT2. LED is ON (Red) when OUT2 is ON.
[PA06] [PA05]100P [PA07] Actuator lead L[mm] n1/n2 1 Ex.)
OK OK NG OK OK 17 4-2 W (N) WeN) () V m/s) () Va (m/s) L (m) M (Nm) E (J) g (m/s) (9.8m/ ) (N) W1 (Nm) V=1.4Va MFL F (V=0.) 1 L <> W1.VaW10 M2F2L2 F2 M= WeL =5VaWL 3 2 L W2 M3F3L3 F3 an= F Fmax 3 L F W4 Fmax : () W Ek= W V 2g (V=0.