NDH10 MM MM L L RR1 E1 E1 A1 U1 NX NZ NX L1 NZ A Applicable bore size (mm) A A1 E1 L1 MM U1 NX NZ L Applicable bore size (mm) Applicable pin part no. Part no. NDH10 Part no.
) Width at closing (mm) (L1) Width at opening (mm) (L2) Weight (g) Model 112211221122112211221122112211221122112211221122112211221122112211221122MHL2-10D MHL2-10D1 MHL2-10D2 MHL2-16D MHL2-16D1 60 72 94 112 84 126 92 134 172 114 186 340 405 485 660 870 20 40 60 30 60 10 40 60 L1 16 40 L2 MHL2-16D2 MHL2-20D MHL2-20D1 MHL2-20D2 MHL2-25D 146 98 158 178 116 226 138 238 278 166 1010 1175 1645 1840
NDH10 MM MM L L RR1 E1 E1 A1 U1 NX NZ NX L1 NZ A Applicable bore size (mm) A A1 E1 L1 MM U1 NX NZ L Applicable bore size (mm) Applicable pin part no. Part no. NDH10 Part no.
6.5 6.6 9.5 5.5 32.5 45 26 22 5 12 30 10 26 40 52 56 6.5 6.6 12 5.5 38 51 28 25 5 15 35 12 28 MB1 50 60 64 8.5 9 12 6.5 46.5 64 32 27 5 15 40 12 32 63 70 75 8.5 9 16 6.5 56.5 74 40 32 5 20 45 16 40 CA2 80 90 95 11 11 16 10 72 94 50 36 5 20 45 16 50 CS1 100 110 60 115 12 11 20 10 55 20 89 41 5 25 113 60 C76 Mounting style (E) C85 C95 CP95 NCM NCA D-X 20Bore size (mm) d2 CK S5 K1 K2 l3 G1 l1
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Bore size (mm) E1 EW TG1 FL l1 L I2 d1 CD MR d2 R1 E2 UB CB MB 32 45 48 6.5 6.6 9.5 5.5 32.5 45 26 22 5 12 30 10 26 40 52 56 6.5 6.6 12 5.5 38 51 28 25 5 15 35 12 28 MB1 50 60 64 8.5 9 12 6.5 46.5 64 32 27 5 15 40 12 32 63 70 75 8.5 9 16 6.5 56.5 74 40
A2 A1 E1 L1 MM RR1 U1 NX CJ2 Material: Carbon steel d (Drill through) Applicable cotter pin l Applicable bore size (mm) Dd9 I-12 I-14 I-16 I-18 I-20 I-25 I-30 125 140 160 180 200 250 300 +0.084 0 0.1 0.3 L m 25 32 Part no. 8 54 46 100 M30 x 1.5 27 33 CM2 125 140 160 IY-12 IY-14 IY-16 IY-18 IY-25 IY-30 +0.084 0 0.1 0.3 0.065 0.117 28 36 25 8 54 48 105 M30 x 1.5 30 39 79.5 69.5 4 5 4 x 40 +
Applicable bore (mm) 6 Applicable bore (mm) 6 NX NDH10 B L1 R1 R2 U A Part no. A B L L2 MM R1 R2 U L2 MM L1 NDd9 3 NDH10 3 NX Part no.
NDH10 MM MM L L RR1 E1 E1 A1 U1 NX NZ NX L1 NZ A Applicable bore size (mm) A A1 E1 L1 MM U1 NX NZ L Applicable bore size (mm) Applicable pin part no. Part no. NDH10 Part no.
Dimensions for installation n: number of valve stations n L 1 2 3 4 5 6 7 8 L1 120.7 136.7 152.7 168.7 184.7 200.7 216.7 L2 80 96 112 128 144 160 176 n L 9 10 11 12 13 14 15 16 L1 232.7 248.7 264.7 280.7 296.7 312.7 328.7 344.7 L2 192 208 224 240 256 272 288 304 (mm) The above table shows dimensions as an example for the SY5000 series valve manifold.
Dimensions for installation n: number of valve stations n L 1 2 3 4 5 6 7 8 L1 120.7 136.7 152.7 168.7 184.7 200.7 216.7 L2 80 96 112 128 144 160 176 n L 9 10 11 12 13 14 15 16 L1 232.7 248.7 264.7 280.7 296.7 312.7 328.7 344.7 L2 192 208 224 240 256 272 288 304 (mm) The above table shows dimensions as an example for the SY5000 series valve manifold.
Table 15-1 Length of the EX245 series module M 0 1 2 3 4 5 6 7 8 L1 113.6 167.6 221.6 275.6 329.6 383.6 437.6 491.6 545.6 Formulas: L1 = 54n + 113.6 (max. 8 modules) 85 No.EX##-OMY0004 15. Troubleshooting 15.1. EX245-FPS1/2/3 Table 16-1 Troubleshooting for Ethernet communication on Port 1 (XF1) and Port 2 (XF2) No. Problem Possible cause Remedy 1 LINK indicator is OFF.
Fig. 15-1 Dimensions of the Modules manifold Table 15-1 M 0 1 2 3 4 5 6 7 8 L1 113.6 167.6 221.6 275.6 329.6 383.6 437.6 491.6 545.6 L1 = 54n + 113.6 (8 ) 85 No.EX##-OMY0006CN 15. 15.1. EX245-FPS1/2/3 Table 16-1 1/2(XF1/2) No. SI Auto negotiation 1 LINK/ACT LED SI Table 16-2 PROFINET No.
Bracket for nozzle Symbol Type L1 With L-type bracket IZT43-BL1 IZT43-BL2 L2 With angle adjustment bracket L-type bracket Angle adjustment bracket DIN rail mounting bracket for controller and high voltage power supply module High voltage cable holder 1-2-3.
HRLE050 200V N L HRLE090 200V L3 L1 L2 Fig. 3-12 Cable wiring (200V) 3.3 Installation Procedure HRLE Series 3-16 HRX-OM-Z002 Chapter 3 Transport and Set Up 400V L1 L2 L3 Fig. 3-13 Cable wiring (400V) HRLE Series 3.3Installation Procedure 3-17 HRX-OM-Z002 Chapter 3 Transport and Set Up 3.3.4 Preparation and wiring of communication cable Be sure to turn OFF the breaker of the facility power
Display Board PCB3 BK BR RD RD RD RD BL BK BK RD RD WH Not connected at option Z 24COM AOUT +24V + OUT (CN1) 3 6 2 5 4 1 BR BR BL BL Option DM DI Sensor Level Switch Level Switch Water Leak Sensor BL BR WLS LS1 LS2 Solenoid Valve DI SVDI Option DM BL 11 FWD 12 CM 30C 30B G G4 [ ] 18AWG G/Y L2/N G Inverter G4 G4 2 2 [ ] 4 [ ] 18AWG BK 18AWG G/Y 18AWG G/Y 4 IV W W [ ] 3 BK 18AWG BK 8 8 3 W L1
Connect the stripped cable to the L, N, PE terminals(For 400V, L1, L2, L3, PE) of the female connector. (Recommended tightening torque: 0.7 Nm) Female connector Screw (Recommended thightening torque : 0.7Nm) PE 2(N) 1(L1) 1(L) 2(L2) PE 3(L3) 200V type 400V type Fig 3-5 Cable connection HRR Series 3.3 Installation 3-11 HRX-OM-X071 Chapter 3 Transport and Setting Up 5.
Dimensions C D L1 L2 Fd Fc C Fn (Fc) (KF Flange) (K Flange) (CF Flange) K B J H A G A Unit: mm Model A B C D Fn Fd Fc G H J KK P.C.D.
Dimensions XMH series / Angled Valve C D L1 L2 A Fn Fc C (Fc) (CF Flange) (KF Flange) H J H B G A Unit:mm Table 5 Model A B C D Fn Fc G H J P.C.D L1 L2 XMH-16 40 100.5 38 1 30 34 17 35 18 P.C.D 27 6x4.4 XMH-25 50 114 48 1 40 26 41 21.5 XMH-40 65 162.5 66 2 55 70 41 57 30 P.C.D 58.7 6x6.6 XMH-50 70 179.5 79 2 75 52 70 35 XYH series / Straight Valve D G C C B H Fn J (KF Flange) 45 Unit: mm
) 1. 2. 3. 1. 2. 3. 4. 3 *3) 1 1.5 3) 1 1 () 4 1 1-1 MXQ6 MXQ8 MXQ12 MXQ16 MXQ20 MXQ25 1) 2) ( ) 3) 4) / / 2 ,3 ) 2 2 ,3 ) 1) 1 2) 20 ,0.150.6MPa 3) MXQ25(A)-150,MXQ6B-50,75MXQ8B-75,100MXQ16B-100,150MXQ20B-125,150 300mm/s 4) MXQ**B 50200mm/S 1 (MPa) MXQ8(A,C) 0.3 MXQ8B 0.3 MXQ12(A,C) 0.3 MXQ12B 0.3 MXQ16(A) 0.2 MXQ16B 0.2 MXQ20(A) 0.2 MXQ20B 0.2 MXQ25(A) 0.2 5 2. 2-1 ,2 L1
ML2B32 15N Va 0.25m/s 0.5MPa L1 0.05m L2 0.05m W W 1 L L1 W W W M We M3 V M1 V <> W max=60N( Va P 19) a1= W = 15 =0.25 W max 60 M 2 max=2Nm( Va P 19) a2= M = 0.75 =0.375 M max 2 <> We=1.410VaW=1.4100.2515=52.2N M max=3.5Nm( V=1.4Va) M 3 WeL 1 =52.50.05 1 =0.88Nm 3 3 a3= M 3 = 0.88 =0.25 M 3max 3.5 M max=12Nm( V=1.4Va) M 1 WeL 1 1 =52.50.05 1 =0.88Nm 3 3 a4= M 1 =