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HRX-OM-Q026-V Operation Manual Installation Operation Original Instructions Thermo Chiller HRSH Series HRSH100-A-20HRSH100-A-40HRSH100-A-20-S HRSH150-A-20HRSH150-A-40HRSH150-A-20-S HRSH200-A-20HRSH200-A-40HRSH200-A-20-S HRSH250-A-20HRSH250-A-40HRSH250-A-20-S HRSH300-A-20HRSH300-A-40HRSH100-W-20HRSH100-W-40HRSH100-W-20-S HRSH150-W-20HRSH150-W-40HRSH150-W-20-S HRSH200-W-20HRSH200-W-40HRSH200

NPTF PodLocallon P A B EA EB sP0101/sP01r r 1/B s S sPot0zsP0112 S sP01m/sP0113 1/6 9B S/B S/B s/B S/B sPoto4/sP0114 1/. B B B sPor05/sP011s la S S S Electrictl Conncllons: Class 1 suFplates provide access of alectri(El solenoid leads from the vatue bass inlothe conduitcavitywithinthe sub-platediecasting.

:p:I L.LJ ~LI--_-II \ ~ '-' f-tw'~ S H r; A Rod end without thread . 1 R H ~. -I Z s . I z . oG I H K MM I [ flore size; I; # F' B C ~ (mm) . 5" 10" R 5" NN W S!

Female lhread length {"1') is shonerfor the lollowing . 2o0 (2') 1/g & 1A st. 1/s & 1/a st. r/s & 1/a st. l=o.44 25O (2112')' I/s st. r/s st. '/s stl=0.44 300 (3") ]/s & 1/a st. 1/e &r/l st. 1/e & 1A st. 400 (4) 1/s &1/a st. r/s & 1/a st. 1/e &14 st. Series NCQT Dimensions Spring Extend NCQTBO-OT T Type Bore,, 9t4,F' I 60re ,b,:!

After 1.6 s Blinking After 0.2 s When an alarm or warning also occurs during the test operation, the decimal point on the first digit will blink as follows. After 0.8 s After 0.8 s Blinking Blinking After 0.2 s (4) Start operation with the PC. -21- 5.2 JOG Mode JOG operation can be executed without host command.

Female lhread length {"1') is shonerfor the lollowing . 2o0 (2') 1/g & 1A st. 1/s & 1/a st. r/s & 1/a st. l=o.44 25O (2112')' I/s st. r/s st. '/s stl=0.44 300 (3") ]/s & 1/a st. 1/e &r/l st. 1/e & 1A st. 400 (4) 1/s &1/a st. r/s & 1/a st. 1/e &14 st. Series NCQT Dimensions Spring Extend NCQTBO-OT T Type Bore,, 9t4,F' I 60re ,b,:!

6.4516 ft2 0.0929 Volume ins 16387 in3 16.387 ft3 0.0283 ft3 28.329 sal(U.S.)3.78s Energy tt. lb ft. lb 1.356 N.m 1.356 J 3.6 MJ tt. lb ft. lb L L Power ft. lb/s hp 1.356 W 0.7457 kW s Kg Weight oz 24329 tb 0-4536 ft . lb/s np Temperature "c = 5/sfF-32) Force Temperatule gl 2.205 x '10-3 lbf 'F=(1.8x'C)+32 kSt 2.2046 lbl N 0.2248 lbf Flow raie Nl/minx0.035=SCFlVl Force tbf 453.6 tbf 0.4536

4t i I '.*"{ c o M . r s r + t '.*{ la:q.B js t ) L l s ! r 6 L + r tL--g.S!" i6 t+l r-fP!3zo r t I r-V-ru ?sdm,{t-!:-!!.Fst-r ?i,oxl+4r5"a, I l r c o M " I r + r t r c o M c , + l ll coM" i q (+) ( coMo ro(+) /r'Y;-"' M* fr'fi-"" ' ire!.f s | ) ,-Js!jr L , 3 smms { l'.;+_2. ( ) ( L--!9!!" zz r +r 3sd5{fj:3'?L i 3 idb61f-1:-_r: ( ' tl co 22 l+) tL-Lg!!"r5 L+' tL-l-s!"

6.4516 ft2 0.0929 Volume ins 16387 in3 16.387 ft3 0.0283 ft3 28.329 sal(U.S.)3.78s Energy tt. lb ft. lb 1.356 N.m 1.356 J 3.6 MJ tt. lb ft. lb L L Power ft. lb/s hp 1.356 W 0.7457 kW s Kg Weight oz 24329 tb 0-4536 ft . lb/s np Temperature "c = 5/sfF-32) Force Temperatule gl 2.205 x '10-3 lbf 'F=(1.8x'C)+32 kSt 2.2046 lbl N 0.2248 lbf Flow raie Nl/minx0.035=SCFlVl Force tbf 453.6 tbf 0.4536

4t i I '.*"{ c o M . r s r + t '.*{ la:q.B js t ) L l s ! r 6 L + r tL--g.S!" i6 t+l r-fP!3zo r t I r-V-ru ?sdm,{t-!:-!!.Fst-r ?i,oxl+4r5"a, I l r c o M " I r + r t r c o M c , + l ll coM" i q (+) ( coMo ro(+) /r'Y;-"' M* fr'fi-"" ' ire!.f s | ) ,-Js!jr L , 3 smms { l'.;+_2. ( ) ( L--!9!!" zz r +r 3sd5{fj:3'?L i 3 idb61f-1:-_r: ( ' tl co 22 l+) tL-Lg!!"r5 L+' tL-l-s!"

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Piston speed V (mm/s) M2 = F2 x L2 ML1C/M2, M3 Moment (Nm) M3 = F3 x L3 Piston speed V (mm/s) (How to calculate the load ratio) A.

Moment (Nm) Moment (Nm) Load weight (kg) M1 = F1 x L1 Piston speed V (mm/s) M2 = F2 x L2 ML1C/M2, M3 Moment (Nm) M3 = F3 x L3 Piston speed V (mm/s) (How to calculate the load ratio) A. Consider (1) max. load weight, (2) static moment, (3) dynamic moment (when stopper collides) when calculating the max. allowable moment and load weight.

Moment (Nm) Moment (Nm) Moment (Nm) Load mass (kg) M1 = F1 x L1 Piston speed V (mm/s) ML1C/M2, M3 M2 = F2 x L2 M3 = F3 x L3 Piston speed V (mm/s) (How to calculate the load ratio) A. Consider (1) max. load mass, (2) static moment, (3) dynamic moment (when stopper collides) when calculating the max. allowable moment and load mass.

Example using a 20[mm] Lead Actuator with target travel speed of 500[mm/sec] Rotations per second Travel distance per second Travel distance per rotation Rotation Speed (rpm) = {Speed (mm/s) Lead (mm) }60 (S) = {500 (mm/s) 20 (mm) }60 (s) =1500 (rpm) The rotation speed must be a value between 0 and the allowable actuator speed. The actuator will not operate if set to 0.

Example using a 20[mm] Lead Actuator with target travel speed of 500[mm/sec] Rotations per second Travel distance per second Travel distance per rotation Rotation Speed (rpm) = {Speed (mm/s) Lead (mm) }60 (S) = {500 (mm/s) 20 (mm) }60 (s) =1500 (rpm) The rotation speed must be a value between 0 and the allowable actuator speed. The actuator will not operate if set to 0.

Configuration One thermo-chiller for one master. 2 2 R D R D 3 3 S D S D 5 5 S G S G Master This product Fig. 3-13 Connection of RS-232C HRS Series 3.3 Installation 3-25 HRX-OM-W032 Chapter 3 Transport and Setting Up 3.4 Piping Piping port size Connect piping firmly. Incorrect piping might cause leakage of supplied or drained fluid and wet surrounding area and facility.