output signal 1 function RUN 1 D.OUT1 SEL 5.5.5 No.13 screen Contact output ignal 1 operation A A/B D.OUT1 TYPE No.14 screen Contact output signal 1 alarm AL.01 AL.01 to AL.32 D.OUT1 ALARM CODE No.15 screen Contact output signal 1 maintenance MT.01 MT.01 to MT.05 D.OUT1 MANT CODE No.16 screen Contact output signal 2 function RMT 1 D.OUT2 SEL No.17 screen Contact output signal 2 operation
1 PD06PD08 PD12PD14 () ON(RYn0)CN6 4.6.3 6.1.11 (DO) ON/OFF 7.7.4 JOGDO1 MR Configurator 7.7 (LSP)(LSN) 6.3.6 1 9 1 1.4 (1) LECS C 1 S5 C CC-Link ACS5, S6 50W,100W S5 ACS7 S7 200W ACS8 S8 400W AC100VAC120V 50Hz60Hz 1 AC200VAC230V 50Hz60Hz 2 (2) a) 5 A S C S M A AC S B M B E 2m 2 5m 5 10m A S R 1 10 1 bI/O -CA LECSC A LE-CSNA 3M 10126-3000PE()/10326-52F0-008(shellkit
(Example) When Step Data No. 1 is used for a positioning operation: Recommended set value Set value for pushing speed = 6 (Thus, positioning speed of Return to Origin: 6 mm/s, Pushing speed for Step Data No. 1 positioning operation: 0 mm/s) (Example) When Step Data No. 1 (Step Data No. 0) is used for a pushing operation and the speed is set to 6 mm/s: Recommended set value Set value for pushing
M3 Find the value of M3 max at 300 mm/s in Graph (3). 2b = M3/M3 max = 1.176/14 = 0.084 L2 m x g 3. Dynamic moment M1E = 1/3 x FE x L1 (FE =1.4/100 x a x g x m) =0.05 x a x m x L1 =0.05 x 300 x 3 x 0.05 =2.25 [Nm] Investigate M1E. a Find the collision speed . = 1.4 x a = 1.4 x 300 = 420 [mm/s] Find the value of M1E max at 420 mm/s in Graph (1).
~~ , A 00) 0(0) 0 (2.5) 2(6) 4(7. 5) ~ , 40 D-AG 43.5 49 55.5 3 D-AS 1(0 1(0) 5(1.5 I O{S.5) 8(4 3t 35 42 so 57 .5 ~ Ht A 00) 00) 0(2.5 26 417 .5) D-A3 B !
Silicon rubber Urethane rubber Fluororubber EPR ZPX40H-01-B8 ZPX100H-01-B10 ZPX100H-01-B12 ZPX125H-01-B10 ZPX125H-01-B12 ZY ZPX40H-01-B10 ZPX50H-01-B8 ZPX50H-01-B10 ZPX63H-01-B10 ZPX63H-01-B12 ZPX80H-01-B10 ZPX80H-01-B12 40 50 63 80 100 125 1 1 2 3 5 8 0 0 0 1 1 3 5 8 16 27 53 84 1 0 0 1 1 0 ZF ZP SP Add or deduct the mass shown in the table on the left for order materials.
T O R M A L E/M A L E N I P P L E: 1/8-1/8 H E X 1/4-1/4 H E X 3/8-3/8 H E X 1/2-1/2 H E X F L U S H TA P E R P L U G S: 18, 14, 38, 12, 34 P O R T S I Z E 3 M3 5 M5 01 18 3/4-3/4 H E X C O N F I G U R AT I O N See Product Selectors T U B E S I Z E ( W H E R E A P P L I C A B L E) 3 3.8mm OD 2mm ID 4 4mm OD 2.5mm ID 6 6mm OD 4mm ID H O W T O O R D E R M A L E/M A L E N I P P L E H O W T
output signal 1 function RUN 1 D.OUT1 SEL 5.5.5 No.13 screen Contact output ignal 1 operation A A/B D.OUT1 TYPE No.14 screen Contact output signal 1 alarm AL.01 AL.01AL.32 D.OUT1 ALARM CODE No.15 screen Contact output signal 1 maintenance MT.01 MT.01MT.05 D.OUT1 MANT CODE No.16 screen Contact output signal 2 function RMT 1 D.OUT2 SEL No.17 screen Contact output signal 2 operation A
output signal 1 function RUN 1 D.OUT1 SEL 5.5.5 No.13 screen Contact output ignal 1 operation A A/B D.OUT1 TYPE No.14 screen Contact output signal 1 alarm AL.01 AL.01AL.32 D.OUT1 ALARM CODE No.15 screen Contact output signal 1 maintenance MT.01 MT.01MT.05 D.OUT1 MANT CODE No.16 screen Contact output signal 2 function RMT 1 D.OUT2 SEL No.17 screen Contact output signal 2 operation A
mounted. 14-10-2 E-P HYREG Series VY1 Standard Specifications 02 03 04 04 06 10 02 03 04 VY1A0 0 1-M5 VY1B0 0 1M 0 5 1 VY110 0 10 0 1 2 VY120 0 10 0 1 2 VY130 0 1VY140 0 1VY150 0 1VY170 0 11 1 0 2 VY190 0 11 2 4 0 Model VY1D00-M5 10 M5 01 M5 Port M5 01 02 01 02 02 03 20 04 02 03 04 04 06 10 12 14 P Port size Rc 11 2 1 1 8 1 8 1 4 1 8 1 4 1 4 3 8 1 2 1 4 3 8 1 2 1 2 3 4 1 1 1 4 A M5 M5 M5
How to Order Applicable solenoid valve model Interface regulator model Regulating port VVS8040-ARB-A-1 VVS8040-ARB-B-1 VVS8040-ARB-P-1 VVS8040-ARB-AB-1 A VSS R8-4 (Size 26 mm) B P A, B Unit: mm 50 54.5 148 SMC SMC 2 3/5 14 4 1 109.5 90 90 27 VVS8040-ARB-AB-1 VVS8040-ARB-1 A B P Regulating port: A Regulating port: A, B Regulating port: B Regulating port: P 25 Series VS 8-2/VS 8-4 S R S R Conforms
A unit plate is attached. Refer to Best Pneumatics No. 6 for the Specific Product Precautions. 512 Compact Manifold Regulator Series ARM11A/B Common Supply Block ARM11A 1 S 01 3 Z A q w e r t y ARJ 1. IN Piping Position 2.
(With 2 input blocks) With external pilot specification 46.5 (Pitch) M12 M3 16.5 18.3 13.5 P = 10.5 14.1 8.4 8.6 9.5 A 4 A 4 A 4 A 4 A 4 A 4 A 4 A 4 A 4 A 4 17.7 24.6 23 59.5 3 3 PWR 3 3 42.7 3 5 E 5 3 E 5 3 E 3 5 E PWR 43 56.5 2 2 2 2 B 2 B 2 B 2 B 2 B 2 B 2 B 2 B 2 B 2 B 2 1 P 1 P 1 P 1 P One-touch fitting [1(P), 3/5(E) port] Applicable tubing O.D.: 8 N9 1 1 1 1 BUS 0 BUS 0 0 0 PE PE X
Replace the element every 2 years or when the pressure drop becomes 0.1MPa, whichever comes first to prevent damage to the element. 0.15 0.15 0 1 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0 1 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 Inlet pressure MPa 0 Inlet pressure MPa 0 64 AW20K/30K/40K Operating Principle A-A w A Figure 1 Normal SMC K P C U O S L H o t Pressure in diaphragm chamber Inlet pressure (IN)
Brown 2 A B-1 Red 1 A A-1 Cable length (L) Orange 6 B B-2 Yellow 5 B A-2 1.5m 1 Green 3 COM-A/COM B-3 Blue 4 COM-B/ A-3 3m 3 Shield Cable color Terminal no. 5m 5 Vcc B-4 Brown 12 GND A-4 Black 13 A B-5 Red 7 Actuator cable type A A-5 Black 6 B B-6 Orange 9 Nil Robotic type cable B A-6 Black 8 3 S Standard cable signal Terminal no.
M2 Find the value of M2 max. at 300mm/s in Graph 2. m x g M1E = 1/3 x FE x L1 (FE = 1.4/100 x a x g x m) = 0.05 x a x m x L1 = 0.05 x 300 x 0.5 x 0.05 = 0.375 [Nm] 3A = M1E/M1E max = 0.375/1.07 = 0.350 cDynamic moment Investigate M1E. Find the collision speed . =1.4 x a =1.4 x 300 =420 [mm/s ] L1 M1 a Find the value of ME1 max. at 420mm/s in Graph 1.
(R1) r r e q w e q w VQ1301 VQ1401 VQ1300 VQ1400 (B) 2 (A) 4 (B) 2 (A) 4 (B) 2 (A) 4 (B) 2 (A) 4 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) VQ1500 VQ1501 r r (B) 2 (A) 4 (B) 2 (A) 4 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) 5 (R1) e q w VQ1A01 VQ1B01 4 (A) 2 (B) 4 (A) 2 (B) 5 (R1) 3 (R2) 5 (R1) 3 (R2) 1 (P) 1 (P) r VQ1C01 4 (A) 2 (B) 5 (R1) 3 (R2) 1 (P) Component
1 (P) (A) 4 (B) 2 3 position exhaust center (A) 4 (B) 2 5 (R1) 3 (R2) 1 (P) 3 position pressure center (A) 4 (B) 2 i 5 (R1) 3 (R2) 1 (P) 5 (R1) 3 (R2) 1 (P) (This figure shows a closed center type.)
3/4 BM1-02 1 BM1-32 1 1/4 BM1-04 1 1/2 BM1-05 2 BM1-06 2 1/2 BA-01 3/4 BA-02 1 BA-32 1 1/4 BA-04 1 1/2 BA-05 2 BA-06 2 1/2 BMA1-020 3/4 BMA2-025 1 BMA2-032 1 1/4 BMA2-040 1 1/2 BMA2-050 2 BMA2-063 2 1/2 R E P A I R K I T S TA N D A R D S E R I E S NCG T E C H N I C A L SPECIFICATIONS S TA N D A R D S E R I E S NCG Bore Size Bumper Design Air Cushion Design Air Fluid 20 CG1N20-PS CG1A20-PS
Contact SMC regarding the specifications for psi unit and F. 229 Filter Regulator with Built-in Pressure Gauge with Backflow Function AWG20K/30K/40K Construction AWG20K AWG30K/40K B D P A A K U C C C S O P H L to K U C S O H L to B D D-D C-C A-A B-B !0 o !1 !0 o !1 y y !2 !