method setting unit 1 2 0.2 0.5 5 10 20 25 50 100 150 200 300 500 600 1000 2000 3000 6000 12000 0.2 PFM 0.01 L/min 10 0.5 25 Air N2 Thermal type Argon (MEMS) CO2 0.1 L/min 1 50 2 100 PFMB 2 200 Thermal New New type Air N2 (MEMS) 1 L/min 5 500 Bypass flow type 10 1000 PF2A 0.1 L/min 1 10 0.5 L/min 5 50 1 L/min 10 100 2 L/min 20 200 Thermal Air N2 type (Thermistor) 5 L/min 50 500 5 L/min 150
hd'd.3 p, (1)n at'r@. duodel l l (1) d.r 1s, (2) d.r9, {2) rbr 10, & 0 ) .rr 3 sc0001 6B &l4ilcpssy indLd6ep, (1) 6*.drcn-l@kir'9 opoErord6r r2, (r ) d6r r 5, {2) d6r 9, {2}d6t 10, & sc@02 6C &lsFrd ep *Ey indude. c.p, (1) ruhbr.c.* plugd.l 1 1, 11) hdr.iorrishtsl. dst 13 a 14, (1) (h 1s, {2) .bi 9, l2) d.t 10. & d ) de13 tld@tvos t"t sc 0@3.)o( a0 So|mij ep aEy. indld6 @p, (l ) Eesd M]oding
ZL3 M 0 1 K1 5 LO Z 1 E A M G 1 ZL3 M 0 1 K1 5 LO Z 1 E A M G 1 ZL3 M 0 1 K1 5 LO Z 1 V A M W 1 1 2) 3) 4) 5) 6) 7) 8) 9) 10) 11) 12) 13) 14) 4) 2) 1) 3 300L/min(ANR) M 0.35MPa *2 P 6 600L/min(ANR) H 0.50MPa 3)P V/ *23 (V) (P) 5/ 06 Rc3/4 K1 N.C.+N.C. 8() 04 2xRc1/2 K2 N.C. *1 F06 G3/4 B1 N.0.+N.C. *1 F04 2xG1/2 B2 N.O.
Klt (when tactory assembted) XX = No. of Stailons DIMENSIONS A B BBD E G H K M N 3.58 (91) 4.61 ( 1 1 4 2.56 (65) 3.58 r) 1.22 (31) 1.50 (38) 0.26 (5.5) 3.29 (83.5) 3.23 (82) 1,42 (36) 2.05 (52) 't.10 (28) 0.59 05) 'Dlmension if DC Sotenold is Used Mlllimeters In Parentheses MANIFOLD DIMENSIONS I-!
Klt (when tactory assembted) XX = No. of Stailons DIMENSIONS A B BBD E G H K M N 3.58 (91) 4.61 ( 1 1 4 2.56 (65) 3.58 r) 1.22 (31) 1.50 (38) 0.26 (5.5) 3.29 (83.5) 3.23 (82) 1,42 (36) 2.05 (52) 't.10 (28) 0.59 05) 'Dlmension if DC Sotenold is Used Mlllimeters In Parentheses MANIFOLD DIMENSIONS I-!
(with no condensation) Withstand voltage 1000 VAC for 1 min. between whole charging part and case 50 M or more (500 VDC Mega) between whole charging part and case Insulation resistance Vibration resistance 10 to 150 Hz with a 1.5 mm amplitude, max. 98 m/s2, in each X, Y, Z direction for 2 hrs (De-energized) Impact resistance 980 m/s2 in X, Y, Z directions 3 times each (De-energized) Port
Rush speed into cushion is as follows: M + m 2 = 1.4a Ek = 2 Ek: Kinetic energy (J) M: Weight for the driven object (kg) m: Weight for movable part of cylinder (kg) : Maximum speed (m/s) a: Average speed (m/s) = 1.4 x 300 = 420 mm/s. Note) Set a so that rush speed into cushion should not exceed 0.75 m/s.
DC power supply Black DC2(-) (Power supply 0V) Black DC2(-) (Power supply 0V) 24V DC +/-10% 0V 0V Blue DC1(-) (F.G.)
to 40 Cooling capacity2 kW 9 1 8 19 1 8 26 1 8 Heating capacity3 kW 1.5 1 4.5 1 6.5 1 Temperature stability 4 C CH1 0.1 CH2 0.5 Rated flow rate (Outlet) L/min 45 10 45 10 125 10 (0.43MPa) (0.45MPa) (0.45MPa) (0.45MPa) (0.45MPa) (0.45MPa) Pump capacity Maximum flow rate L/min 120 16 *12 130 16 *12 180 16 *12 Maximum lifting height m 50 49 55 49 68 49 0.10 0.10 0.10 0.10 0.10 0.10 Settable
Pressure [MPa] 0.4 40 0.3 30 Usable flow rate range 0.2 20 Circulating fluid return 0.1 10 0 0 0 10 20 30 40 50 60 70 80 90 100 110 120 Circulating fluid flow [L/min] Fig. 8-9 Pump capacity(HRL100-A-20 CH1) 8.5.2 HRL200A20 CH1 0.6 60 0.5 50 Circulating fluid outlet Lifting head [m] Pressure [MPa] 0.4 40 0.3 30 Usable flow rate range 0.2 20 Circulating fluid return 0.1 10 0 0 0 10 20 30 40
IN side OUT side IN port size OUT port size 2 levels of filtration rating are available. 8 6 5 m 10 m/Made to Order 10 8 12 10 Application examples Improvement of air quality for air blow Flexible mounting orientation Allow a sufficient margin of tube length when piping, in order to prevent twisting, tensile, moment loads, vibration or impact being applied to the tubes and filter body.
Altitude [m] 1. Max. ambient 2. Cooling capacity temp.
The kinetic energy of the load is calculated by the formula below. + = 4 . 1 = a V V 2 V m M E k 2 Ek: Kinetic energy (J) M : Mass of object being transported (kg) m : Mass of moving parts of cylinder (kg) V: Maximum speed (m/s) Va: Average speed (m/s) Mass of moving parts of cylinder (kg) Bore size Standard stroke (mm) (mm) model 20 25 30 40 50 75 100 125 150 175 200 250 300 350 MLGPM20
Applicable model AW40-06 AW40 AW30 AW20 AW10 Accessory Bracket assembly Note 1) AR30P-270AS AR30P-260S G36-10-01 GC3-10AS G36-2-01 GC3-2AS AD38 AD38NNote 6) AR40P-270AS AR40P-260S G46-10-02 GC3-10AS G46-2-02 GC3-2AS AD48 AD48NNote 6) AR40P-270AS AR40P-260S G46-10-02 GC3-10AS G46-2-02 GC3-2AS AD48 AD48NNote 6) AR10P-270AS AR10P-260S G27-10-R1 G27-10-R1 Note 3) AW20P-270AS AR20P-260S G36-10
Nil (Example) C73C 3 m L (Example) H73CL 5 m Z (Example) C73CZ None N (Example) C73CN Since there are other applicable auto switches than listed, refer to page 9-4-10 for details.
Nil (Example) C73C 3 m L (Example) H73CL 5 m Z (Example) C73CZ None N (Example) C73CN Since there are other applicable auto switches than listed, refer to page 9-4-10 for details.
NPN open collector 1 output, Lead wire with connector (Length 2 m) PNP open collector 1 output , Lead wire with connector (Length 2 m) NPN open collector 2 outputs, Lead wire with connector (Length 2 m) PNP open collector 2 outputs, Lead wire with connector (Length 2 m) Digital pressure switch specifications ZSE30A-01-N-ML ZSE30A-01-P-ML ZSE30A-01-A-ML ZSE30A-01-B-ML 1 to 3 are assembled
ZFC1l-l-X03 ZFC-EL019 ZFC3l-l-X03 ZFC-EL020 ZFC5l-l-X03 ZFC-EL015 ZFC7l-l-X03 ZFC-EL016 OUT side IN side Symbol -X04 Filtration: 10 m 4 X04 Standard product Filtration: 10 m Replacement Element Part No. (Element: 1 pc.) Series Part no.
Transfer speed v [m/min] Mass of transferred object m [kg] Coefficient of friction Figure-1.
10 0.1 Outlet50Hz Return port 0.0 0 10 20 30 Circulating fluid flow [L/min] Fig 9.6-1 Pump capacity(HRS018/030--20-R) 9.6.2 HRS018-A-20-T-R, HRS030-A-20-T-R 0.8 80 0.7 70 available area Circulating fluid pressure [MPa] 0.6 60 Pump head[m] 0.5 50 Outlet: 60Hz 0.4 40 0.3 30 Outlet: 50Hz 0.2 20 available area 0.1 10 Return port 0.0 0 0 5 10 15 20 25 Circulating fluid flow [L/min] Fig 9.6-2