Omega Projection Television CDE 440 User Manual

CDE-440 Series  
Conductivity Process Cells  
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Instructions Manual  
Conductivity Cells  
CDE-440-001/CDE-440-01/CDE-440-1/CDE-440-5/CDE-440-01T/CDE-442  
Index  
Conductivity Cells . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3  
Mechanical Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4  
Technical Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5  
Installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6  
Maintenance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9  
Troubleshooting. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10  
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ConductivityCells
3.  
Celliscomposedbasicallybytwoboardsortwoconcentriccylinders(electrodes), withwelldefined  
geometry.Thespacebetweentheboardsorcylindrescreatesasolutioncollumn, beingsothe  
measurementisindependentfromthetotalsolutionvolume.  
Theboardsorcylindresgeometyusedwillberelatedtothesolutionsconcentrationforabetterreading  
ofdifferentsampleswevarythedistance(and;or)theboardsection.  
d
s
Therelationdistance(d)overthesection(s)determinestheCellConstante  
= K .  
(K) .  
Inordertoobtaingoodresultsitisnecessarytochoosethespecificcellforthedesiredapplication. Three  
factorsareextremellyimportantinordertochoosetherightcell:theElectrical, theMechanicalandthe  
chemical.  
! Electrical  
Whenreadinganelectrolyteconcentrationofhighresistance, causedbylowquantityof ions, thegreater  
sensibilitywillbeobtainedwithbiggerelectrodesandwithasmalldistancebetweenthem. Consequently,  
weshalldiminishthecapacitivereatanceofthecell-solutionsystem, increasingthepolarizationtension  
frequencysuppliedbytheequipment.  
Wewillneedtheinversewhentheelectroliteisveryconcentrate:smallelectrodeswithlongdistancesin  
ordertoavoidsaturationandthepolarizationeffectattheelectrodes.  
TheCellwillpresentlow "K" forlowconductivityelectrolitesandhigh "K"forthoseofhighconductivity,  
consideringthattheequipmentmusthaveanautomaticexchangeoftheadequatefrequency.  
! Mechanical  
Somesignificantfactorsare:thepressure, temperature, flowspeedandthesolidsuspensionpresence.  
onlywhenallthesefactorsareconsideredthatwillbeachievedasatisfactoryperformancewithaminimum  
maintenance. Whenthesystemstemperatureandpressurearehigherthanthespecifiedvalues, itmust  
beinstalledacoolingsystemwitharestrainingvalvebeforethecellcontact.  
In places where the flow speed is very low, it must be provided with a flow increase for a solution exchange.  
solidpresencewillinfluencebecauseofobstructionthattheycancauseattheelectrodesorevenasuper  
conduction(inmetalcases).  
! Chemical  
Itisnecessarytoconsiderthechemicalaggressivenessandcloggingcausedattheelectrodes, thiscan  
modifythegeometry, alteringtheconstantvalue.  
Inthesecases, theelectrodesmustbechemicallyaggressiveandmustbecleanedperiodically.  
2
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MechanicalDescription  
4.  
Basedonprocessconditions, thecellsmustbebuildofmaterialpreviouslyspecified, suchas:Stainless  
Steel316, EpoxyorPTFEwithradialelectrodesorSS316annulars, Platinum, Titaniumorothers  
dependingonitsresistancetothesolutionschemicalaggressiveness.  
Theelectricalconnectionisdoneinisolatedteminalswithceramicbaselocatedatthecastaluminumhead,  
SAE323, withlowoxydationdegree, treatedagainstcorrosionandfinishedwithelectrostaticepoxypaint.  
TheheadoffersIP-67protection, allowingtheinstrumentationcabletogothrubya ½NPTthreadedhole  
or a ½cableknockout.  
Cell Models CDE-440-001, CDE-440-01,  
CDE-440-1, CDE-440-5 and CDE-440-  
01T are called Insertion or Immersion  
Cells.  
Insertion Cell CDE-440-01  
Cell Model CDE-442 is called Toroydal or  
Electrodeless Cell, as it does not offer  
electrodes. The body material could be  
Epoxy or PTFE, where the Toroydal  
nucleus (2) are located, indulging an  
electromagnetic field, that will generate  
an electrical current (called Focault  
Current) proportional to the sample  
concentration. This type of cell is  
recommended for high clogging  
concentration and highly chemically  
aggressive.  
This Cell can only be used with  
Conductivity Analyzer Model# CDCN442.  
Toroydal Cell CDE-442  
3
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TechnicalSpecifications  
5.  
Model  
CDE-440-001 CDE-440-01 CDE-440-1 CDE-440-5 CDE-440-1T  
CDE-442  
Type  
Insertion  
Torroid  
0.01µS  
to 2mS  
1µS  
to 100mS  
10µS  
to 150 mS  
0.1µS  
to 20mS  
1mS  
to 1S  
Range (S/cm)  
Cell Constant (K) cm-1  
0.1µS to 20mS  
0.1  
0.01  
1
5
0.1  
NA  
Temperature(@ Atm  
Pressure)  
0 to 100ºC  
10 Kgf/cm2  
42 to 2000  
0 to 200ºC  
0 to 100ºC  
Max. Pressure(@25ºC)  
Insetion length(mm)  
20 Kgf/cm2  
90  
10 Kgf/cm2  
100  
54  
60  
Threaded 1” ½  
NPT  
Threaded  
Point  
Process Connection  
Body Material  
Threaded ¾ NPT  
SS316 SS316  
SS316  
SS316  
SS316  
PTFE  
4
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Installation
6.  
Beforeyouinstallyourconductivitycell, pleaseverifyforanypossiblebubblesandifthesampleis  
constantlyrenewed.  
ELECTRICALCONNECTION  
1. Preparethecellinstallationpointinareathatoffersgoodstirring, itispreferredtobeclosetothe  
equipment(maximumof10meters-32feet)andexemptofvibrations.  
2. Verifyifallthreadedpointsaretied.  
3. Proceedwiththeinstrumentationcableconnectionoriginatingfromtheequipment, goingthruthecable  
knockoutoftheelectricalconnectionboxandconnectingit totheinterconnectionbase.  
Yellow  
4
Cable Knockout  
Black  
3
1
Green  
Interconnection  
Base  
2
Conneection  
Box  
Red  
4. Electrical installation example between the equipment and the cell.  
F4  
F3  
F2  
F1  
11 Na  
17  
16  
15  
14  
13  
12  
Vd  
Am  
Pr.  
5
4
3
2
1
10  
9
C
Na  
C
SHIELD  
5
4
3
2
1
THERMO  
8
20  
19  
18  
Vm.  
Blind  
7
Na  
C
MEAS  
.
6
CN1  
CN2  
CN3  
CN4  
5. Verify if the cable knockouts are firmly attached to its respective interconnection cables. This is  
very important so the enclosure still offers IP-67. Sealing is crucial for a perfect performance  
6. Be careful with humidity! It will diminish the impedance generating measuring errors. Verify the  
cable press and if necessary, dry the area using a hair dryer.  
7. Be careful when tying threaded areas, depending on the cable position, it can be cut!  
Note: Cell model CDE-442 do not offer a connection box and it is necessary a good  
instrumentation cable Sealing only at the equipment, as they do not offer connection cable.  
5
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Installation(cont.)
6.  
Interconnection Cable  
a)Donotcutonmendthecellcables!  
Interconnection Cable  
Vd.  
5
Green  
Yellow  
Am.  
4
Pr.  
3
Vm.  
Red  
2
Blind.  
(Anode)  
1
(Cathhode)  
CELL  
EQUIPPMENT  
CDE-442 Cell Interconnection  
This cell type is also connected directly to the equipment connection barr, so cable terminal pin type are used for  
someequipmentcases.  
Red  
Colorless from Red  
Black  
Colorless from Shield  
Blue  
Colorless from Blue  
6
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Installation(cont.)
6.  
Insertion Type  
For a correct conductivity measurement, it is recommended to install the cell as shown on below  
Illustration.  
The liquid flow must go thru the Sensor and exit thru the holes located at the upper portion of the  
sensor. See indicative arrows shown below, showing the recommended liquid flow.  
Válve 2  
Válve 1  
Retractile Insertion Cell  
For Retractable Insertion Cell installation, allow the liquid to exit thru the holes located on the upper  
portion of the electrode or vice-versa.  
FLOW  
Torroydal Type  
Torroydal cell CDE-442 generally must be installed in a Transfluency Body made out of lower  
magnetic permeability material. Special attention must be observed regarding the sample flow being  
CELL  
CELL  
RESERVOIR  
PIPING  
Flanged  
Threaded Point  
7
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Maintenance
7.  
All OMEGA equipments, are shipped from factory tested and calibrated. When under operation, the  
Conductivity Cell must be maintained periodically (the frequency will depend on the process), which  
would be basically cleaning, or if necessary, a new calibration.  
Cleaning  
Dip the electrodes in cleaning solution for 40 seconds, then wash throughly with deionized  
water to avoid standard contamination, when it is time to perform a calibration.  
Calibration  
Equipments with range of 0 to 200µS or higher.  
1. Dip cell 3 or 4 times in standard compatible with the equipment range. Wait 1 minute before you  
can adjust the A.T.C. (Automatic Temperature Compensation), If necessary, move it vertically (up  
and down) in order to eliminate any bubbles.  
2. Proceed with the constant adjustment.  
3. Repeat the operation "1" two or three times in order to confirm the value.  
Calibration for Low Conductivity Reading(Ultra Pure Water)  
Range 0.01µS thru 2µS  
1. Assemble the Transfluency Cell and wash it well.  
PVC TRANSFLUENCY  
Hose Connection  
1” Cap  
1’’ Nipple  
1’’ Nipple  
1’’ Elbow  
Reducer 1’’  
3/4”  
Conductivity Cell  
2. Using a 500 mL beaker, place approximately 400 mL of deionized or distilled water. Using a  
Conductivity Meter, adjust the conductivity value to approximately 50% of range value,  
"contaminating" with high conductivity water (example: tap water).  
3. Fill the transfluency with 146.9 uS/cm standard and return to the beaker many times in order to  
rinse and eliminate contaminations. Finally leave the transfluency filled with the standard.  
4. Verify the standard conductivity value and thru "constant adjustment" reproduce the same read  
value at the equipment to be calibrated.  
Repeat this operation many times until you can reproduce at least three times the calibrated value.  
8
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Troubleshooting
8.  
1) When Calibrating the equipment, the function is not complete  
Verify for humidity presence at probes header or at connection box of the equipment.  
Another possibility could be the equipments interconnection cable and cell being cut or in short.  
2) Reading above Range  
First clean the cell and try to calibrate it. If this operation is not succefull, verify the point where the  
cell is connected, making sure bubbles are not present and if the solution is flowing normally.  
9
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M-4506/0908  
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