3.13.2 Circulating fluid flow rate . 3-19 3.13.3 Circulating fluid discharge pressure . 3-19 3.13.4 Circulating fluid electrical conductivity . 3-19 3.13.5 Status flag . 3-20 3.13.6 Alarm flag. 3-21 3.13.7 Data display . 3-22 3.13.8 Circulating fluid set temperature . 3-22 3.13.9 Operation instruction . 3-23 3.13.10 Data instruction . 3-23 Communication alarm function . 4-1 4.1 Communication
63 35 32 27 38 20 16.5 32 2 14 14 58 11 45 59 72 M10 x 1.5 depth 16 to 1400 80 40 37 32 50 25 19 40 3 20 20 71 13 53.5 68 89 M10 x 1.5 depth 22 to 1500 100 40 37 41 60 30 20 50 3 20 20 71 16 64.5 79 110 M12 x 1.75 depth 22 Bore size (mm) K KA MM MO NA P RF S TA TC TDH9 TE TF TG WL ZZ 20 +0.08 0 5 6 M8 x 1.25 15 24 1/8 11 81 11 M5 x 0.8 8 4 0.5 5.5 15 118 25 5.5 8 M10 x 1.25 15 29 1/8 11
NCA1-CB325 NCA1-CB800 NCA1-CB1000 MR 1 1/16 1 1/8 1 3/4 M 3/4 1 1 3/8 LR 1 1/16 1 1/4 1 7/8 FL 1 7/8 2 1/4 3 F 5/8 3/4 7/8 E 3 1/2 4 1/2 5 DD 1/2-20 5/8-18 5/8-18 CW 5/8 3/4 1 CD 3/4 1 1 3/8 CB 1.265 1.515 2.032 BA 2 9/16 3 1/4 3 13/16 AA 3.6 4.6 5.4 Weight (lbs) 2.79 5.45 9.89 Note: Pivot pin is not included. Rod Clevis CW CW CB ER CH F CD A L CE KK Tap through Dimensions Part No.
Drain cock Oil bowl B' C C Drain cock Drain guide (A) (B) Rc , NPT, G Mounting bracket Port size Model C B A Drain piping F G H J K L B' D E 6 6 1/4 female thread M3 x 0.5 1 4 2.3 15 12 20 50 73 AMC220 40 56 88 100 22 Depth 8 Body size A B C M3 x 0.5 71 88 101 101 121 55 63 83 96 96 116 1 4 3 8 , 56 75 102 118 135 153 AMC320 75 120.5 140.5 2.3 15 20 30 50 123.5 24 55 2 3 5 6 8 9 Depth
Station 3 2 1 D side U side Stations 02 03 2 stations 3 stations 20 20 stations Note) Maximum of 20 stations Electrical entry Grommet/Plug lead C How to Order Valve S070 A 5 B G Electrical entry Body type Body type Base mounted with clips Symbol A G C Grommet Plug lead with light/surge voltage suppressor Coil voltage Power consumption Pressure specification Flow rate 24 VDC 12 VDC
flats C G E H B NN Effective thread length T (R) NA Q N F NA I F N CC 0.1 + 12-CY3B50, 63 12-CY3B6 to 15 (mm) B 17 25 35 36 46 60 70 86 100 0.007 0.043 30 32 CC 32 38 D 7.6 12 16.6 21.6 26.4 33.6 41.6 52.4 65.4 E 4 1.5 2 2 2 2 3 8 8 F 8 9 10 13 13 16 16 2 2 G 5 5 5.5 7.5 7.5 8 11 14 14 H 13.5 12.5 13 20 20.5 22 29 33 33 I 28 34 40 50 58 72 J 4.5 4.5 6 6 8 8 10 12 12 N 9.5 11 11 18 18.5 20
Bore size (mm) 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 GP > 0.5 Calculation of load ratio to the theoretical output of cylinder = f / F Horizontal mounting: f = x W Inclined mounting: f = x Wcos + Wsin (Refer to the figure on the right.)
Applicable fitting size d M Weight (g) A Effective orifice(mm 2) L1 D 8 KRR06-08 3.9 6 5.7 16.8 39 19 18.5 10 KRR06-10 5.5 4.4 KRR08-10 10 19.2 41.5 20.5 18.5 43 20 20 8 18.0 KRR08-12 12 6.1 36 KRR10-12 10 12 32.8 23.3 44 23 Note: Fitting cover ordered separately. Bulkhead union: KRE Inch e l b a c i l p p A . D .
mm/s] 20 10 2] 1000 1000 [mm/s [mm/s] 20 10 2] 1000 1000 [mm/s [mm] 1 1 3 LEP6 LEP10L LEP10 J K J K J K 7 14 12 24 12.5 25 8.5 17 16 32 19 37.5 [N] 10 20 20 40 25 50 [mm/s] 20 10 20 10 20 10 *LEP6 30%F.S.LEP10 25%F.S.
Cylinder bore size 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 MGQ GP b>0.5 Calculation of load ratio b to MGG the theoretical output of cylinder b=f / F Horizontal mounting: f= X W Inclined mounting: f= X Wcosq+Wsinq (Refer to the diagram on the right.)
Applicable model LVR20 LVR40 LVR50 03 3 x 2 LVR20 LVR40 LVR50 03 1/8" x 0.086" 04 4 x 3 05 3/16" x 1/8" 06 6 x 4 07 1/4" x 5/32" 10 10 x 8 11 3/8" x 1/4" 12 12 x 10 13 1/2" x 3/8" 19 19 x 16 19 3/4" x 5/8" LQ3 Metric size Inch size Symbol Applicable tubing size Applicable model Symbol Applicable tubing O.D.
22 (0.15) to 150 (1.0) AT F (C) Ambient temperature 36 to 104 (2 to 40) Relative humidity of 85% or less Air flow capacity 37F (2.8C) 10 (17) 15 (25) 25 (43) 41 (70) 59 (100) 71 (120) Outlet air pressure dew point IDF IDU 45F (7.2C) 11 (19) 16 (27) 26 (45) 43 (74) 62 (106) 80 (136) Outlet air pressure dew point SCFM Note 1, 2) (m3/h (ANR)) 50F (10C) 12 (20) 17 (28) 28 (47) 45 (77) 65 (110
4 = 100 ff, f 1 = 40"F, T2 = AO"F, VZ = ? We have to use th absolute tompratures in H (Rankine), thus 1oo v2 vz= 19!Ij!2Z=1ssrt" 4997 539?
4 = 100 ff, f 1 = 40"F, T2 = AO"F, VZ = ? We have to use th absolute tompratures in H (Rankine), thus 1oo v2 vz= 19!Ij!2Z=1ssrt" 4997 539?
Z + Stroke RR ZZ + Stroke (mm) A AL B1 CD CX CZ D E F G H H1 I K L MM N Bore (mm) Stroke range 0 0.033 0 0.033 0 0.033 0 0.039 20 M8 x 1.25 Up to 700 18 15.5 13 9 10 8 20 13 10 41 5 33.5 5 30 20 19 25 M10 x 1.25 Up to 700 22 19.5 17 9 10 10 26 13 10 45 6 37.5 5.5 30 20 19 32 M10 x 1.25 Up to 1000 22 19.5 17 9 10 12 26 13 11 45 6 46.5 5.5 30 22 19 40 M14 x 1.5 Up to 1000 24 21 22 10 15 14
[C] HRS100-W-20/40(60 Hz) HRS100-W-20/40(50 Hz) 14 14 Facility water temperature 32C 12 12 Cooling capacity [kW] Cooling capacity [kW] Facility water temperature 32C 10 10 8 8 6 6 4 4 Facility water temperature 40C Facility water temperature 40C 2 2 0 0 5 10 15 20 25 30 35 5 10 15 20 25 30 35 Circulating fluid temperature [C] Circulating fluid temperature [C] HRS150-A-20/40(50 Hz) HRS150-
9 B 20 10 21 11 22 1 12 2 13 3 14 4 15 5 16 NBR 6 17 7 18 8 A 19 9 B 20 10 21 11 22 -15- 1 14 2 15 3 16 4 17 5 18 6 19 NBR 7 20 8 21 9 A 22 10 23 11 24 12 25 13 -16- 3. 3.1. 1 I/O LEC-CN5-* / PLC 1 2 DC24V CN5 1 LE-C*-*-* LE-C*-*S-* CN4 CN3 CN2 120.3 120.3 mm mm 200 200 mm/s mm/s 2 100 500 100 500 1 1 200 1000 200 1000
F C37 1/2 15 G Stainless steel B 100 VAC Grommet With surge voltage suppressor C 110 VAC 5 20A N.C. H C37 3/4 20 J Stainless steel D 200 VAC E 230 VAC 6 25A N.C.
M1 = F x L A M2 = F x L M3 = F x L Note) Deflection: Displacement of section A when force acts on section F REBH15, 25 REBH15, 25 REBH15, 25 REBH15 REBH15 REBH25 REBH15 REBH25 0.08 0.03 REBH25 0.02 Deflection (mm) Deflection (mm) Deflection (mm) 0.06 0.02 0.04 0.01 0.01 0.02 5 10 15 20 0 25 25 5 10 15 20 0 5 10 15 20 0 25 Moment (Nm) Moment (Nm) Moment (Nm) REBHT25, 32 REBHT25, 32 REBHT25