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8370: JIS B 8361: JIS B 9960-1: -1 ) JIS B 8433-1993: 2) : : : 1. 2. 3. 1. 2. 3. 4

JIS B 8370: JIS B 8361: JIS B 9960-1: 1 JIS B 8433-1993: *2) 1. 2. 3. 1. 2. 3. 4. 2 VN*-OMJ0001-B / / / / 1 1 1 1 1 1 1 1.5 .5 .5 .5 *3) *3) *3) *3) 1 1 1 1 1 1 1 1 () 3 VN*-OMJ0001-B 1)-5 2) ( ( ( ( ) ) ) ) () IP IP IP IP65 65 65 65 1) 50mm 2/s 2) 3) 1) 2) 5m 3) 4) 1.5~2 2 4 VN*-OMJ0001-B 3)0.1MPa Nm Rc1/8 79 Rc1/4 1214 Rc3/8 2224 Rc1/2 2830 Rc3/4 2830 Rc1 3638 Rc1 1/4

Description Qty Applicable model Anti-quake bracket A Anti-quake bracket B 2 2 4 4 HRR010-A/W-10/20-Y HRR012/018-A/W-10/20-Y HRR-TK001 Nut (M8) HRR024/030-A/W-20-Y Bolt (M8) HRR050-A/W-20-Y Mounting of anti-quake bracket 1. Remove the cap from M8 stud bolt. (4pcs) 2. Mount the anti-quake bracket A. (Recommended torque : 12.5Nm) 3. Mount the anti-quake bracket B.

3 b b Nm a Nm 1 2 4 XLD-25 1.5 0.3 -40 2.5 -50 6 -63 6 -80 15 -100 20 -160 102 a M M0.2MPa b b O a 19 XL-OMY0002 Revision history 4-14-1, Sotokanda, Chiyoda-ku, Tokyo 101-0021 JAPAN Tel: + 81 3 5207 8249 Fax: +81 3 5298 5362 URL https://www.smcworld.com Note: Specifications are subject to change without prior notice and any obligation on the part of the manufacturer. 2020 SMC Corporation

fluid power -General rules relating to systems IEC 60204-1: Safety of machinery -Electrical equipment of machines (Part 1: General requirements) ISO 10218-1992: Manipulating 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. 3 A / 1 1.5 *3) *3)1 1 () 4 IP8000ExdBT5 1. 1 IP8000 IP8100 420mADC()*1 23515(420mADC) 0.140.7MPa

8370: JIS B 8361: JIS B 9960-1: 1 ) JIS B 8433: *2) 1. 2. 3. 1. 2. 3. 4. 4 - LEC-G Series/ 1 / 1 1.5 5 - 2 21 GWProfibus 1 5 LEC 22 DIN D DIN PR1 Profibus DP V1 G 6 - 23 PLC LEC-T1-3G Profibus (LEC-W2) LEC-GPR1 LEC RS485 Modbus ...

A Hs 32 to 63 D-P3DWA B A Hs Auto Switch Proper Mounting Position Auto Switch Mounting Height (mm) (mm) D-M9 D-M9V D-M9W D-M9WV D-M9A D-M9AV Auto switch model Auto switch model D-A9V D-P3DWA D-M9V D-M9WV D-M9AV D-A9 D-A9V D-P3DWA Bore size (mm) Bore size (mm) B 11 12.5 13 15 16 20 A 11 10.5 12 14 13.5 16.5 B 7 8.5 9 11 12 16 A 6 7.5 9.5 9 12 B 8 8.5 10.5 11.5 15.5 Hs 24.5 26 29 33 38.5

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).

The most suitable piping position can be selected by choosing each 1 port from A, B, C and combining them.

(Except cushion seal) Cushion ring B Rolled steel Zinc chromated Cushion valve Rolled steel Electroless nickel plated Rod seal SKY-36 SKY-36 SKY-40 @5 @6 NBR Spacer A Rolled steel Zinc chromated Piston seal RPS-125 RPS-140 RPS-160 Spacer B Rolled steel Zinc chromated Replacement Parts (Seal kits) Air releasing valve B Rolled steel Zinc chromated Air releasing valve A Chrome-molybdenum 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 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 e B part f d z f1 x.Calculate the inertial moment of the attachment.

Temperature Data A or B = Series IDUS: Data A Series IDFS: Data B Air pressure Data C = 2 Calculate corrected air flow by using A or B and C. Corrected air flow = (Air flow) (Data A x Data C) Corrected air flow = (Air flow) (Data B x Data C) 3 Select a model having an air flow capacity that is higher than the corrected air flow.

20.5 (28.5) A B 15 (22.5) A B 17.5 (25.5) A B 19.5 (27.5) A B 18 (26) A B 16 (24) B 20 27.5 27 24.5 31 25.5 27.5 29 27 24 30 21.5 (29.5) 20.5 (28.5) 15 (22.5) 17.5 (25.5) 19.5 (27.5) 18 (26) 16 (24) 25 30 29.5 27 31 25.5 27.5 29 27 24 30 22.5 (30.5) 21.5 (29.5) 15.5 (23.5) 18.5 (26.5) 20.5 (28.5) 19 (27) 17 (25) 32 33.5 33 30.5 32 26.5 28.5 30 28 25 31 25 (34) 24 (33) 18 (27) 21 (30) 33 (

Referring to case u where "W2" is a sphere, 4a +b 2 2 2 4a +b 2 1 2 1=m1 +m2 12 12 2 r K=m2 5 2 tThin rectangle board (Parallelogram) !0Gear transmission Position of rotation axis: Passes through center of gravity and perpendicular to the board. (Same formula regardless of board thickness.) 1. Find moment of inertia1B around the rod (B). 2.

Series KM Rotary One-touch Fittings Manifold Construction KM11 KM12 Port A: One-touch fitting Port B: One-touch fitting Port A: One-touch fitting Port B: NPT or Rc (PT) female thread KM14 KM13 Port A: One-touch fitting Port B: One-touch fitting Port A: One-touch fitting Port B: One-touch fitting, R(PT) male thread KM16 KM15 Port A: One-touch fitting Port B: One-touch fitting stud Port A:

B VFR2 1.25-31.25-3S1.25Y-3N1.25Y-3S VFR2000 A-B+B+COM -COM 1)8 2)+COM -COM 3)D U D 1 -12No.VFR2000-OMM0001 01F D COM A B 1)8 2)+COM -COM 3)D U D 1 -13No.VFR2000-OMM0001 () X () (R) () (PE) -14No.VFR2000-OMM0001 NO 1(ISO VG 32) [3(EB),5(EA),PE] X(30.20.9MPa0.10.9MPa) 1. 2. 3. 4. 5. 6. 7

P-1 = A (A B) / 4 H-1 = (A B) / 2 A = Maximum pressure value B = Minimum pressure value For low differential pressure For low pressure For compound pressure PSE533 PSE543 PSE563 For positive pressure For vacuum Pressure range C Display calibration function This function eliminates slight differences in the output values and allows uniformity in the numbers displayed.

port regulator) ARB310-00-B ARB210-00-B Can be made into manifold with series VV72.