Recommended Parameter Values [LEF] LEFS25 LEFS32 LEFS40 Series Lead symbol H A B H A B H A B Lead 20 12 6 24 16 8 30 20 10 Initial value Recommended Value Parameter *1,*2 Para No Number of command input pulses per revolution *3. PA05 100 100 Electronic gear numerator *3. PA06 1 100 (Positioning mode: 10) Electronic gear denominator *3.
DK (through) DH DI DJ DK DL FE HA UV Size 10 20 30 50 45h8 46h8 20H8 6 15H8 10 18.5 52.5 60h8 61h8 28H8 9 17H8 15.5 26 63 65h8 67h8 32H8 12 22H8 16.5 27 67 DL 75h8 77h8 35H8 13 26H8 17.5 30 76 (mm) AA A AV AW AX AY AZ BA BB BC CA CB CC D DD DE DF DG FA FB FC FD H J JA JB Size 10 20 30 50 D7 24.7 50 14 17 8 1 9.5 60 27 7 7 38 45h9 46h9 20H9 6 15H9 8 4 3 4.5 13 6.8 11 6.5 8 32.4 65 17 18.5
Without brake 5.8 t-_1 r l o l : r = tl-Model D F J K L N L X S H _ B _ 5 0 4 6 270 1 7 7 177 6 52 55 L X S H _ B _ . 7 5 4 6 295 202 202 6 47 65 LXSH B -1OO 8 320 227 227 6 47 75 LXSH B -125 4 8 70 345 252 252 6 4 7 85 T-slot A dimensions T-slot B dimensions LXSH _ B .150 6 I 370 277 277 8 47 65 $efie$ [)( tleclnh Arlualors 0inol|$im$ Slido $ffi||l Iy0[ LxsHnsE E;IEI9' With brake Brake
) Refer to grommet type for other dimensions. 3-2-5 Series VK3000 Dimensions: Base Mounted Grommet: VK3140-G-01 DIN terminal: VK3140-D-01 ~ = Refer to grommet type for other dimensions. 3-2-6 5 Port Direct Operated Poppet Solenoid Valve Rubber Seal Series VK3000 Type 20 Manifold Body ported (Top ported) n1 = Number of VK3000 n2 = Number of VK300 VV5K3-20Station Grommet: G DIN terminal: D
-6 = 9.0 x 10-6 (kgm2) Moment of inertia around Z axis IA = IZ1 + m1r12 X 10-6 z r2 z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis IZ2 = {m2 (d2 + e2)/12} x 10-6 IZ2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) IB = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) I =
-B 3.3 3.3.1 1 2 3ISO8573-1: 2010 (JIS B 8392-1: 2012)2:6:3 ISO8573-1: 2010 (JIS B8392-1: 2012) AFM AFF AF AR 2 : 6 : 3 3 dm 1 m 3) 0.1 d 0.5 0.5 d 1.0 1.0 d 5.0 oC) ( (mg/m 1 20,000 400 10 1 -70 1 0.01 2 400,000 6,000 100 2 -40 2 0.1 3 90,000 1,000 3 -20 3 1 4 10,000 4 +3 4 5 5 100,000 5 +7 6 +10 3.3.2 1 13 - No.ZQ-OM01401-B 3.4 3.4.1 M546 0.3 to 0.5[MPa
24V D-A9 D-A9V BHK1 -020 Yes 20 & 25 3-wire (NPN equiv.)
A port Dimensions Formula: L1 = 10n + 21, L2 = 10n + 7, n: Station (Max. 20 stations) n L L1 L2 2 41 27 3 51 37 4 61 47 5 71 57 6 81 67 7 91 77 8 9 10 121 107 11 131 117 12 141 127 13 151 137 14 161 147 15 171 157 16 181 167 17 191 177 18 201 187 19 211 197 20 221 207 1 31 17 101 87 111 97 4-12-15 16 Series VQ100 Manifold Option Plug Assembly VV3Q11 for Manifold with Multi-connector <D side
model 100 80 63 50 40 32 25 20 16 12 D-Z7/Z80 D-Y5/Y6/Y7 11.5 10 10 9 8.5 8.5 6.5 6 6 5 Other than the applicable auto switches listed in How to Order, the following auto switches can be mounted.
. 8-1 8.1.2 HRSH100/150/200/250/300-A-40. 8-2 8.1.3 HRSH100/150/200/250-W-20. 8-3 HRSH Series HRX-OM-Q026 Contents 8.1.4 HRSH100/150/200/250-W-40. 8-4 8.1.5 Option T High head temp . 8-5 8.1.6 Refrigerant with GWP reference . 8-6 8.1.7 Communication specifications . 8-6 8.2 Dimensions . 8-7 8.2.1 HRSH100-A-20/40. 8-7 8.2.2 HRSH150-A-20/40-, HRSH200-A-20/40. 8-8 8.2.3 HRSH250/300-A-20-, HRSH250
The cooling capacity required for the oscillator is, 20 [kW] 6 [kW] = 14 [kW] Considering a safety factor of 20%, 14 [kW] x 1.2 = 16.8 [kW] r Calculate based on the laser output. Laser output power 6 [kW], conversion efficiency 30% The oscillators power consumption is, 6 [kW] 0.3 = 20 [kW] Example 2: When the heat generation amount in the users equipment is not known.
7 8 9 A B C D E F 8 6 4 2 40 38 36 34 32 30 28 26 24 22 20 18 16 14 12 10 Input/output connector (CS0) 3 7 5 1 39 37 35 33 31 29 27 25 23 21 19 17 15 13 11 9 Power supply terminal block 20 18 16 14 12 10 8 6 4 2 Input/output connector (CS1) 19 17 15 13 11 9 7 5 3 1 Green Red F E D C B A 9 8 7 6 5 4 3 2 1 0 4 3 2 1 CN1 4 3 2 1 CN2 4 3 2 1 CN3 4 3 2 1 CN4 4 3 2 1 CN5 4 3 2 1 CN6 4 3 2 1 CN7
6 to 12 LVA 27.5 F Q S F (Q) 34 LVH LVD LVQ 25 U LQ R C R C LVN (44) G1/2 TI/ TIL E B A H D E (S) G1/2 2-P Port size PA B A H D 2-M Thread depth N 2-P Port size PAX 2-M Thread depth N L PB L K K N.C.
Fittings & Tubing Air Cylinders Rotary Actuators Relief port 2 x M5 x 0.8 2 x P through M5 x 0.8 R GC GB E GA MM D C J 2.8 2 x P through A 4 x T counterbore E 0.5 B H S Z (mm) 6 depth 4.8 5 S 10 15 20 25 30 5 Z 10 15 20 25 30 Bore size B C D E GA GB GC H J MM P R T A 13 22 3 23 16 15 13 10 3.2 7 M3 x 0.5 31 10 7 6 10 15 24 4 24 33.5 16 15.5 16 11 M4 x 0.7 3.2 9 6 depth 5 64 69 74 79 84 89
MHZJ2 40 MHQ 60 25 40 MHL2 30 MHR 32 20 MHK 30 MHS 40 20 Order Made P.2.2-6 Note) The open and close time spans represent the value when the exterior of the workpiece is being held.
D Note 1) C Note 2) Note 1) Except double (latching) Note 1) The function symbol is D for double solenoid specifications.
Protection IP 20 Certications CE, UL/cUL Certications TV (AL-10MT-D, AL-10MR-D) Description Specication UL 508 EN60730-1 EN61010-1 EN50081-1 EN50082-1 EN50082-2 10 3.
MGF 40 MGF 63 30, 50, 75, 100 MGF100 Minimum Strokes for Mounting Auto Switches (mm) Switch type D-Z7, D-Z8 D-Y5, D-Y6, D-Y7 Number of pcs. 10 5 1 pc. 15 10 2 pcs.
. 8-1 8.1.2 Refrigerant with GWP reference. 8-2 8.1.3 Communication specifications . 8-2 8.2 Dimensions . 8-3 8.2.1 HRL100-A-20 . 8-3 8.2.2 HRL200-A-20 . 8-4 8.2.3 HRL300-A-20 . 8-5 8.3 Flow Diagram . 8-6 8.3.1 HRL-A-20 . 8-6 8.4 Cooling Capacity . 8-7 8.4.1 HRL100-A-20 CH1 . 8-7 8.4.2 HRL200-A-20 CH1 . 8-7 8.4.3 HRL300-A-20 CH1 . 8-8 8.4.4 HRL100/200/300-A-20 CH2 . 8-8 8.5 Pump Capacity
EX600-DM E D-sub (25 ) 8 8 F (32 ) 8 8 P PNP N NPN EX600-DME No. 1 LED 2 () 3 4 D-sub (No.4-40 UNC) 5 6 () -46No.EX-OMN0035CN-A EX600-DMF No. 1 LED 2 () 3 4 5 () -47No.EX-OMN0035CN-A (1)EX600-DME EX600-DMPE EX600-DMNE 1 0 2 1 3 2 4 3 5 4 6 5 7 6 8 7 9 24 V() 10 24 V() 11 0 V() 12 0 V() 13 FE 14 0 15 1 16 2 17 3 18 4 19 5 20 6 21 7 22 0 V() 24 V() 23 0 V() 24 V() 24