E B1 B2 B3 TG1 T I2 FL d2 d3 CN R H SR (max) d1 I1 (min) 32 5 5.5 30 10.5 6.6 11 14 34 3.3 3 22 10 17 45 10 32.5 40 5 5.5 35 11 6.6 13 16 40 4.3 4 25 12 20 55 10 38 50 5 6.5 40 15 9 18 21 45 4.3 4 27 16 22 65 10 46.5 63 5 6.5 45 15 9 18 21 51 4.3 4 32 16 25 75 12 56.5 80 5 10 45 18 11 22 25 65 4.3 4 36 20 30 95 16 72 100 5 10 55 18 11 22 41 20 32 115 25 75 6.3 16 89 4 Mounting style (ES)
Hysteresis H 1 Hysteresis mode LLL Instantaneous flow Normal output Hysteresis H 1 Hysteresis H 1 Window comparator mode LLL Instantaneous flow Hysteresis H_1 Hysteresis mode LLL Instantaneous flow Reversed output Hysteresis H 1 Hysteresis H 1 Window comparator mode LLL Instantaneous flow -49No.LV50***-OMQ0002-G [F33] Close proximity setting Use this setting when multiple products are installed
pulse) REA Power supply voltage 100V AC ( 20%), 50/60Hz 24V DC ( 10%) (Power ripple 10% or less) Between case and AC line: 1500V AC for 1min.
A quick recovery time indicates little liquid pool. 50 Ratio of resistance [k m] Particle ratio [number/cc] PFMC 100 2 or 3 particles/cc PFMV 10 00 10 20 30 40 50 60 70 PF2A 1 0 5 10 15 20 25 30 Duration of flow [min] Duration of flow [hour] PF3W The data was obtained by performing an actual 10 minutes supersonic cleaning using an average 16 Mcm of deionized water at class 10 clean room
0(0) 0 o 12. 2 4(7.a B 1(0) 8 10{6. 83 88 104 0(0) 0(3) 2.5{6.5) 4.5 B 1.5(O) 1 . 5 s.st2) 8.s{4.5) 10.5 38 ,t3.5 50.5 B 3(O) 3 10{6) 12i3. = H s 40 43.5 49 55.5 42 50 B 3(0) 3 7 10(6) 12 38 50.5 59 B 3(0) 7.4 10.5(6) 12.5 40 43.5 4S 55.5 35 42 50 Acrtssofies $eries CLA Di mensions Of Accessories lType Single Knuckle Joint Y Type Double Knuckle Joint Malerial: Free cutting sulfer steel l\
AW-A Optional specifications Model AR10-A AR20-A AR25-A AR30-A AR40-A AR40-06-A Bracket assembly Note 1) AR12P-270AS AR22P-270AS AR27P-270AS AR32P-270AS AR42P-270AS AR42P-270AS Set nut AR12P-260S AR22P-260S AR22P-260S AR32P-260S AR42P-260S AR42P-260S AC-B AF-A Note 2) Round type Standard G27-10-R1 G36-10-l01 G46-10-l01 0.02 to 0.2 MPa setting G27-10-R1 Note 3) G36-4-l01 G46-4-l01 Pressure
11 14 20 20 27 16 19 24 34 34 42 40 50 64 80 80 10 10 14 22 22 25 10 10 14 22 22 25 14 14 20 30 30 32 14 14 20 30 30 32 28 28 40 60 60 64 12.5 16.5 23.5 23.5 100 119 28.5 Combinations of Support Brackets Available combinations Refer to below picture together.
Standard Stroke 2 , 3 , 4 , 5 , 6 , 8 , 1 0 2, 3, 4, 5, 6, 8, 10 5, 10, 15,20,25,30 5, 10, 15,20,25,30,40 5, 10, 15, 20,25, 30, 40 5, 10, 15,20,25,30,40 1 kg=2.2 16. Magnetic Holding Power (lbs) 1N=0.101 H 227.94 L type 140.65 Basicweight. -. -. 8.00 lb6) Additional weight.. . 0.30/1 inch !
srrc I SERIES NCJ2K Non-rotating Piston Rod Type: Single Acting/Spring Return Spring Return/Rocl Srde Flange Type (F) P0RT 5 tZE Nos.10-32U F lrozxrffil-ffiffiE Port location on Head Cover ln Line r+x .w oYt* Rod Cover ?H +ft| aYl I ItrB B Rod Cross Section Head Cover UNIT INCH (Ml\,1) Spring Return/Double Clevis Type (D) rtrc.
10 5 5 0 0 5 10 15 20 25 30 35 5 10 15 20 25 30 35 Circulating fluid temperature [] Circulating fluid temperature [] 60Hz 50Hz Fig. 8-3: Cooling Capacity 8.5 Pump Capacity 0.6 60 Usable flow rate range 0.5 50 Circulating fluid outlet (60Hz) Lifting head [m] Pressure [MPa] 0.4 40 0.3 30 0.2 20 Circulating fluid outlet (50Hz) 0.1 10 Circulating fluid return 0.0 0 0 10 20 30 40 50 60 70 80
Allowable voltage fluctuation is 10% of the rated voltage.
-02 AS321F AS331F AS421F AS431F Model 3.2, 4, 6 Metric size 3.2, 4 6, 8, 10 4 6 8, 10 6 8 10, 12 10 12 Tubing O.D. 1/8", 5/32" 3/16", 1/4" 1/8" 5/32" 3/16", 1/4" 5/16" 1/4", 5/16" 3/8" 1/4" Inch size 5/32" 3/16" 5/16" 3/8" 3/8" 1/2" Flow rate (l/min (ANR)) 100 180 230 260 390 460 660 790 920 1580 1710 Controlled flow (Free flow) 1.5 2.7 3.5 4 6 7 10 12 14 24 26 Effective area (mm2) Note)
Reference dimensions of 10-32 UNF and NPT threads after installation. 15-9-79 6 Dimensions Universal type L6 D4 Applicable tubing O.D. d H D1 (Hexagon width across flats) M1 L3 A L4 L5 D3 L1 D2 T L2 Metric Size Inch Size A Model A d T H D1 D2 D3 D4 L1 L2 L3 L4 L5 L6 M1 d T H D1 D2 D3 D4 L1 L2 L3 L4 L5 L6 Model M1 AS131F-M5-23D AS131F-U10/32-01D 1/8" 8.4 3.2 8.4 19.8 19.8 12.7 17.5 28.7
I1 = 0.03 x (0.02 + 0.01)/12 = 1.25 x 10-kgm I2 = 0.006 x (0.005 + 0.005)/12 + 0.006 x 0.007 = 0.32 x 10-kgm I = 1.25 x 10+ 0.32 x 10-6 I1 = m x (a + b)/12 I2 = m x (a + b)/12 + m x H I = I1 + I2 Inertial moment = 1.57 x 10-kgm Kinetic energy 6 1/2 x I x Allowable energy = 2 /t (: Terminal angular velocity) : Rotation angle (rad) 1/2 x 1.57 x 10-6 x (2 x ( /2)/0.2) Confirm that the load's
Lock keys ( ref er t o P11) M i ni m um pressure ( F_1) adj ust i ng range M axi m um pressure ( F_2) adj ust i ng range 100% 100% 50% 0% 10% 0% 20m A 20m A 5V 10V 20m A 20m A 5V 10V 4 0 0 0 12 10 2. 5 5 4 0 0 0 12 10 2. 5 5 ( N ot e 1) : F_1 i s adj ust abl e i n a range f rom 0 t o 50% of t he rat ed val ue. ( N ot e 2) : F_2 i s adj ust abl e i n a range f rom 10 t o 100% of t he rat ed
Lock keys ( ref er t o P11) M i ni m um pressure ( F_1) adj ust i ng range M axi m um pressure ( F_2) adj ust i ng range 100% 100% 50% 0% 10% 0% 20m A 20m A 5V 10V 20m A 20m A 5V 10V 4 0 0 0 12 10 2. 5 5 4 0 0 0 12 10 2. 5 5 ( N ot e 1) : F_1 i s adj ust abl e i n a range f rom 0 t o 50% of t he rat ed val ue. ( N ot e 2) : F_2 i s adj ust abl e i n a range f rom 10 t o 100% of t he rat ed
Lock keys ( ref er t o P11) M i ni m um pressure ( F_1) adj ust i ng range M axi m um pressure ( F_2) adj ust i ng range 100% 100% 50% 0% 10% 0% 20m A 20m A 5V 10V 20m A 20m A 5V 10V 4 0 0 0 12 10 2. 5 5 4 0 0 0 12 10 2. 5 5 ( N ot e 1) : F_1 i s adj ust abl e i n a range f rom 0 t o 50% of t he rat ed val ue. ( N ot e 2) : F_2 i s adj ust abl e i n a range f rom 10 t o 100% of t he rat ed
O.D. d D1 L3 A L4 L2 L1 M T H (Width across flats) Metric Size [mm] Model d T Uni thread H D1 D3 L1 L2 L3 L4 Note1) A Note 2) M Weight [g] Unlocked Locked Unlocked Locked AS22l1F-U01-23A 3.2 7.2 12 19.1 26.2 19.1 30.6 29.2 25.8 24.4 13.3 9 AS22l1F-U01-04A 4 8.2 AS22l1F-U01-06A 6 10.4 10 AS22l1F-U01-08A 8 13.2 22.4 29.5 14.2 11 AS22l1F-U01-10A 10 15.9 25.3 32.4 15.6 12 AS22l1F-U02-23A 3.2
I1 = 0.03 x (0.02 + 0.01)/12 = 1.25 x 10-kgm I2 = 0.006 x (0.005 + 0.005)/12 + 0.006 x 0.007 = 0.32 x 10-kgm I = 1.25 x 10+ 0.32 x 10-6 I1 = m x (a + b)/12 I2 = m x (a + b)/12 + m x H I = I1 + I2 Inertial moment = 1.57 x 10-kgm Kinetic energy 6 1/2 x I x Allowable energy = 2 /t (: Terminal angular velocity) : Rotation angle (rad) 1/2 x 1.57 x 10-6 x (2 x ( /2)/0.2) Confirm that the load's
Ratio of resistance [k m] 100 10 50 Particle ratio [number/cc] 1 0 5 10 15 20 25 30 Duration of flow [min] 2 or 3 particles/cc Tube 00 10 20 30 40 50 60 70 Duration of flow [min] The data was obtained by performing an actual 10 minutes supersonic cleaning using an average 16 Mcm of deionized water at class 10 clean room (1 l/min flow rate).