I = I + IA kgm (m to m : Mass of I to I kg) D Calculation example When d1 = 0.1m, d = 0.05m, D = 0.04m, a = 0.04m, b = 0.02m m = 1kg, m = 0.4kg, m = 0.5kg, m = 0.2kg, Gear tooth ratio = 2 Cylinder: I I = 0.2 x = 0.03 x 10 -3kg m I = 1 x = 1.25 x 10 -3 kgm 0.1 8 0.04+0.02 12 b IB = (0.13 + 0.1 + 0.03) x 10 -3= 0.26 x 10 -3 kgm 0.05 8 I = 0.4 x = 0.13 x 10 -3 kgm a IA = 2 x 0.26 x 10 -3 = 1.04
Contact protection box CD-P11 LED Brown OUT Brown Choke coil Resistor Reed switch Zener diode Surge absorber OUT Blue Blue Weight (g) D-A73 D-A72 D-A73 D-A80 Auto switch model 10 10 10 0.5 Lead wire length (m) 47 47 47 3 LED Brown OUT (+) Brown Contact protection box CD-P11 CD-P12 77 5 Resistor Reed switch Zener diode Dimensions OUT () Blue Blue Indicator light D-A80 without indicator
Low temperature operation 1) The valve can be used in an ambient temperature of between 10 to 20C.
160C (40 to 71C) (No freezing) 1) 0.07 2 x 10-11 Pam3/sec 2 x 10-10 Pam3/sec 2) 4 x 10-9 Pam3/sec 2) Ra max 10 in. (0.25 m) Option: 7 in. (0.18 m), 5 in. (0.13 m) Face seal, Tube weld 0.20 psig (0.0014 MPa) rise in delivery pressure per 20 psig (0.14 MPa) source pressure drop Bottom mount 0.19 in3 (3.1 cm3) 0.99 lbs (0.45 kg) 3) Delivery pressure Gas Source pressure Proof pressure (Inlet)
Single wiring 5 6 7 8 9 10 19 20 19 20 19 20 19 20 19 20 19 20 19 20 19 20 1 2 3 4 5 6 7 8 9 10 1 2 3 4 NEW CONCEPT N.C. valve N.C. valve N.C. valve N.O. valve N.O. valve N.O. valve 5 6 7 8 9 10 1 2 3 4 R2 B R1 A P IP65 enclosure compliant kit (Lead wire) M 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 1 2 3 4 5 6 7 8 9 10 5 (R1) 3 (R2) 5 (R1) 3 (R2) 5 (R1) 3 (R2) 1 2 3 4 4 (A) 2 (B) 4 (A) 2 (B) 4 (A
.Communication setting screen 36.Contact output 46 Setting screen 10.
Air Pressure settiflq range 0 -3oinHs (0 760mmHo) Hystersis 3% or less (fixed) Accuracv a3% full scale (40 100"F) 15% full scale (32 140'F) Supply voltage 12 24VDC (Ripple r'10% max.) Port srze M5 ( 10 32 nom.)
-06-06-08 ZH13DS-08-10-10 ZH13DL-08-10-10 ZH15DS-10-12-12 ZH15DL-10-12-12 12.8 6 24 21 7.8 6 17 24 12.8 6 24 21 6 17 24 12.8 6 24 22 6 17 24 12.8 6 24 22 6 17 24 13.7 6 26 24.5 8 20 28 13.7 6 26 24.5 8 20 28 15.3 10 28 27 10 22 30 15.3 10 28 27 10 22 30 Applicable tubing diameter J 7.8 7.8 7.8 9.6 9.6 10.7 10.7 ZH ZU Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco,
: Lead wire F, L, M and P kits 1 to 12 stations M Kit: Multiple connector C8 (For 8) C10 (For 10) T kit 1 to 10 stations 4150 S kit (without unit) Solenoid weight is not included.
HRS012/018--10-T/MT HRS012/018/024/030--20-T HRS012/018/024/030--20-MTNote 1) Applicable model Rated flow50/60Hz Note 2) 3) 7(0.36MPa)/10(0.42MPa) 10(0.44MPa)/14(0.40MPa) 10(0.32MPa/)/14(0.32MPa) Pump 18/22 Maximum flow rate (50/60 Hz) L/min Maximum pump head (50/60 Hz) m 55 70 60 Output W 320 550 Circuit protector 15A (10 A for standard) A 15 Recommended earth leakage breaker capacity 15
P.5-10 It indicates the set temperature. (10) Circulating fluid set temperature P.5-10 CH2 Press the numeric section to change the set temperature. (11) Circulating fluid discharge pressure It indicates the discharge pressure.
Air Pressure settiflq range 0 -3oinHs (0 760mmHo) Hystersis 3% or less (fixed) Accuracv a3% full scale (40 100"F) 15% full scale (32 140'F) Supply voltage 12 24VDC (Ripple r'10% max.) Port srze M5 ( 10 32 nom.)
Lock Specifications Clamp Specifications Locking action Spring locking (Exhaust locking) Without shim With shim Clamp stroke 10 mm 0 0.5 Unlocking pressure 0.2 MPa or more 10 mm to 12 mm Lock starting pressure 1 pc.
65 C (No freezing) 2) 0.7 1.3 1.0 Inboard leakage Outboard leakage 2 x 10-11 Pam3/sec 2 x 10-10 Pam3/sec 4) 4 x 10-9 Pam3/sec 4) Ra max 15 in. (0.4 m) Option: 10 in. (0.25 m) Face seal , Tube weld Bottom mount 0.36 in3 (6.0 cm3) 1.27 kg 5) Leak rate Across the seat leak Surface finish Connections Installation Internal volume Weight 1/4 turn round knob with open/close indication window 7)
0.0 5 0 10 20 30 5 0 10 20 30 Circulating fluid flow[L/min] Circulating fluid flow[L/min] Fig. 9-7 Pump capacity(HRS040--20-(BJM)) 9.6.2 HRS040--20-T,-MT 0.5 50 Available area 0.4 40 Circulating fluid pressure[MPa] Pump head[m] Outlet50Hz Outlet:60Hz 0.3 30 0.2 20 0.1 10 Return port Available area 0 0.0 0 10 20 30 40 Circulating fluid flow[L/min] Fig. 9-8 Pump capacity(HRS040--20-T/-MT)
3 5 10 15 20 25 30 4.5 10 15 20 30 40 50 60 3 2 6 30 60 8 25 35 10 20 40 10 35 Flow rate Q kg/h Figures inside [ ] indicate the saturated steam holding heat (kcal/kg).
10 10 54 32 26 11 22 20 44 16 11 15 6 27 71.5 60 42 22 21 150.5 8 M8 x 1.25 25 to 800 25 to 650 50 35 12 13 10 59 40 27 11 27 21 52 20 10 17 9 32 80.5 70 46 24 28.5 162.5 11 M8 x 1.25 25 to 800 25 to 650 60 35 15 18 10 67 40 26 27 23 64 20 13 17 9 32 98.5 85 48.5 24 28.5 174 11 M10 x 1.25 13.5 25 to 750 25 to 600 70 40 17 23 14 72 52 30 32 23 78 25 15 21 11 37 117.5 102 55 26.5 36 189 13
20 30 40 50 0 10 20 30 40 50 Circulating fluid temperature [] Circulating fluid temperature [] 50Hz 60Hz Fig. 9-4 Cooling capacity(HRS050--20-(BJM)) 9.5 Heating capacity 9.5.1 HRS050-A-20-(BJM) 2000 2000 Ambient Ambient temperature temperature 1500 1500 5 Heating capacity [W] Heating capacity [W] 5 20 20 25 25 1000 32 1000 32 40 40 500 500 0 0 5 10 15 20 25 30 35 40 5 10 15 20 25 30 35 40
ZQ 05 1U A-K15L B-EA M G -3 3-N (1) (2) (3) (4) (5) (6) (7) (8) (9) (10)(11)(12) (1) (7) 05 0.5 5) 07 0.7 M SI (kPa) 10 1.0 5) (:psi) P 5) (99 10 ) (2) (8) 1U 3M G (2m) (9) (10) (V ) 6) (3) 0 (M5x0.8) 7) K1 N.C. N.C. K 1 3.2 () K2 N.O. N.C. 6) 2 4 () J1 N.C. 3 6 () J2 N.O. 4 3.2 () 1) ()(N.C.)
0.7 70 0.6 60 Circulating fluid pressure[MPa] 0.5 50 Pump head[m] Availavel area 0.4 40 Outlet60Hz 0.3 30 Outlet50Hz 0.2 20 0.1 10 Return port Availavel area 0.0 0 10 20 30 40 Circulating fluid flow[L/min] Fig. 9-7 Pump capacity(HRS060--20-(BJM)) 9.7 Required facility water flow (For water-cooled type) 30 Facility water flow rate[L/min] 25 20 15 10 5 0 0 10 20 30 40 50 Facility water inlet