M5 x 0.8 M5 x 0.8 M5 x 0.8 M5 x 0.8 M5 x 0.8 M5 x 0.8 M5 x 0.8 M5 x 0.8 Plug connector Large flow capacity Standard V14:13(27) V14A:16(30) V14:12(26) V14A:15(29) Large flow capacity V124A Note 1) 1 2 Flow characteristics 2 3 V100 Valve model C[dm3/(sbar)] 0.037 0.076 0.054 0.099 C[dm3/(sbar)] 0.054 0.099 0.037 0.076 b 0.11 0.070 0.35 0.23 b 0.35 0.23 0.11 0.070 Cv 0.0080 0.016 0.015 0.024
-7-7 S coupler: Series KKP.15-7-8 S coupler: Series KKHP.15-7-8 S coupler: Series KKAP.15-7-8 Regulator: Series AR P.15-7-9 Filter regulator: Series AWP.15-7-10 15-7-3 4 Blow Gun Series VMG How to Order VMG 1 1 03 01 W Blow gun Nozzle Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com
to systems IEC 60204-1: Safety of machinery -Electrical equipment of machines (Part 1: General requirements) ISO 10218: Manipulating industrial robots-Safety JIS B 8370: JIS B 8361: JIS B 9960-1: 1 ) JIS B 8433: *2) 1. 2. 3. 1. 2. 3. 4
industrial robots-Safety JIS B 8370: JIS B 8361: JIS B 9960-1: 1 : ) JIS B 8433-1993: *2) , 1. 2. 3. 1. 2. 3. 4. 4/11 FGX-OM-L007-C / 1 1.5 () 5/11 FGX-OM-L007-C FGD Series FGD , 0.5MPa 4080 oC 40 oC IN/OUT 0.1MPa , U IN/OUT 6/11 FGX-OM-L007-C 1. 1-1. 1 2 (1) 3 (2) 4 (3) (4) 5 (5) 6 (6) 7 (7) 8 (8) 9 (9) (10) (2 FGD*B ) 10 (11) (12) 18 (13) (14) 11 (15) (16) (17
A,B),25(A) has magnets on both sides. 10 Rod cover Aluminum alloy Anodized Stainless steel (MXQ6(A,B)) 11 Seal support Brass (MXQ8(A,B,C),12(A,B,C)) Electroless nickel plating (MXQ8(A,B,C),12(A,B,C)) Aluminum alloy (MXQ16(A,B),20(A,B),25(A)) Chromate treatment(MXQ16(A,B),20(A,B),25(A)) 12 Head cap Aluminum alloy Anodized 13 Floating bushing Stainless steel 14 Floating bushing Stainless steel
Operating equipment: MHC2-6D A part a b c d e f = 20 (mm) = 3 (mm) = 4 (mm) = 4 (mm) = 5 (mm) = 6 (mm) b c a e B part f d z f1 x.Calculate the inertial moment of the attachment. Assuming the attachment material is aluminium alloy (relative density=2.7), r1 = 16.4 (mm).
( 15 V F.S.=5[V]1[V]4[V] 1F.S.4[V]10.04[V] 15 V 15 V 420 mA ON OFF () (0100)() 90 () (0100) ()90ON(OFF) 0 1 atm()[nor] () 10 L/min 10 L ON OFF ON OFF 0 -12No.PF-OMS0001CN-A , , 2 5 10 L/min 5 ,51050 L ON-OFF () 1 L/min ,10 11 12 1 L/min SI SI ON-OFF ON 0 20 1 atm()[Anr] ripple -13No.PF-OMS0001CN-A 9022545 -14No.PF-OMS0001CN-A 2 0.50.7 Nm M4 (4 ) (71 ) M4 -15No.PF-OMS0001CN-A
No.IP80-OM00019-B / / * 3-4 5 1. 5 2. 6-7 2-1 IP8000 6 2-2 IP8100 7 3. 8-9 3-1 IP8000 8 3-2 IP8100 9 4. 10-12 5. 13 5-1 13 5-2 13 6. 14 7. 15-17 7-1 16 7-2 17 7-3 17 8. 18 9. 18-20 10. 20-22 11. 23-25 11-1 23 11-2 IP8100 23 11-3 IP8000 24 11-4 24 11-5 25 12. 26 13. 27-33 2 A (ISO/IEC)(JIS)*1) *2) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems ISO 4413: Hydraulic
Adjustment: Max. 8.2 6 B port A port 0.5 +0.025 0 3-3H9 long groove depth 2.5 ( A , B , C ) 5g6 0.004 0.012 12h9 0 0.043 4-M4 x 0.7 depth 8 34 0 0.062 42h9 Top ports/MSUA3-SE 36 10 A port B port 2-M3 x 0.5 11 5 Rotary Table High Precision Type Series MSUA These drawings indicate the condition when the B port is pressurized.
Normal output Reversed output P_1 = A (A B)/4 n_1 = B + (A B)/4 A = Maximum pressure H_1 = (A B)/2 H_1 = (A B)/2 B = Minimum pressure In the OUT2 setting, the above P_1, n_1 and H_1 will be P_2, n_2 and H_2 respectively.
1 q t i 385 PF2D Series Dimensions: Remote Type Sensor Unit PF2D504-11/520-13 60 70 176 40 15 A Model PF2D504 PF2D520 9.52 12.7 62 52 42 A 4 x 4.5 52 1 18 PF2D540-19 Internal Circuits and Wiring Examples 78 86 186 -1/2 Analog voltage output Analog current output 56 15 Sensor Monitor PF2D3 Black Output for PF2D3 4 8 Switch output Main circuit Main circuit Main circuit Main circuit 3 7 U DC
Power off Power on (0) (A): Ready-off, Servo-off Not ready to switch on (1) (15) Switch on Fault disabled (2) (7) (12) (10) (14) Ready to switch on (3) (6) (B): Ready-on, Servo-off (8) (9) Switched on (4) (5) Fault reaction active (16) (C): Ready-on, Servo-on Quick stop Operation (13) active enabled Error occurs (11) Transition by slave Transition by master Transition by slave or master FSA
B L2 Q L1 H 1(P) 2(A) L3 L4 L5 L6 C D E F G J K 1(P) R 2(A) 2(A) R 3(R)* VHK-01S-M5 VHK-M5-M5 11 41 1.2 26 23 11 3.5 11 M5 M5 M5 18 29.1 16.5 VHK-B1A 29 29.1 44.5 14.5 1 27 22 16.5 26 61.6 58.2 2.0 2.0 54 51 1 8 11 41 8.6 1.2 13 3.5 18 32.6 16.5 13 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-01S-01S 1 8 1 8 30 32.6 65.2 57 VHK-02S-01S 18 41 71.6 39 32.6 39 78 16.5 3.5 11 9.0 9.7 1.2 39 13 47 62
B L2 Q L1 H 1(P) 2(A) L3 L4 L5 L6 C D E F G J K 1(P) R 2(A) 2(A) R 3(R)* VHK-01S-M5 VHK-M5-M5 11 41 1.2 26 23 11 3.5 11 M5 M5 M5 18 29.1 16.5 VHK-B1A 29 29.1 44.5 14.5 1 27 22 16.5 26 61.6 58.2 2.0 2.0 54 51 1 8 11 41 8.6 1.2 13 3.5 18 32.6 16.5 13 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-01S-01S 1 8 1 8 30 32.6 65.2 57 VHK-02S-01S 18 41 71.6 39 32.6 39 78 16.5 3.5 11 9.0 9.7 1.2 39 13 47 62
Option Symbol and Composition Option Symbol and Composition Main body, shading coil material Holder material (in core ass'y) Option symbol Seal material Coil insulation type Main body, shading coil material Standard A B D E F G H J L N P T X Option symbol Seal material Coil insulation type NBR FKM Standard A B D E F G H J L N P T X NBR FKM B Polyacetal B FKM EPDM Brass or BC6, Copper FKM
Normal output Reversed output P_1 = A (A B)/4 n_1 = B + (A B)/4 A = Maximum pressure H_1 = (A B)/2 H_1 = (A B)/2 B = Minimum pressure If setting is not necessary press the and buttons simultaneously for 1 second or longer. -34No.PS-OMS0007-H [F 6] Fine adjustment of display value This function is to manually perform a fine adjustment of the displayed pressure value.
40DB MHSH3-50 DB MHSH3-63 DB MHSH3-80 DB mm 5 5 10 10 15 N 6~10 11~15 20~25 29~34 49~59 g 500 740 1,290 2,250 4,000 g 32 40 50 63 80 MHSHJ3-D 430 600 1,020 1,710 3,040 MHSHJ3-DA 550 800 1,380 2,360 4,120 MHSHJ3-DB 520 770 1,340 2,310 4,120 5 3. 3-1. 1 2 3 3-2. 1 .
Piping 10 7.1 Piping connections to the PD Ports 10 7.2 Piping connections to the Supply (P) port 11 8. Construction 12 9. Dimensions 15 10.
Wiring 1) Pass them through the cable (7) in the order of cable ground (4), washer (5), rubber seal (6), and then insert into the housing (2). 2) From the terminal block (3), loosen the screw (11), then pass the lead wire (10) through, then again tighten the screw (11). Note 1) Tighten within the tightening torque of 0.5 Nm +/-15%.
Piping 11 11. Lubrication 12 12. Air Supply 12 13. Operating Environment 13 14. Maintenance 13 15. Troubleshooting 14 16. Construction: With Rear Plate 15 17. Auto switch Mounting 16 -1- Safety Instructions These safety instructions are intended to prevent hazardous situations and/or equipment damage.