CAPACITIVE LEVEL CONTROLS SC - SCD SERIES

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CAPACITIVE LEVEL CONTROLS SC - SCD SERIES WORKING PRINCIPLE The principle is based on the bahaviour of a capacitor the capacitance of which depends on the area of the armatures in the vicinity, the distances between them and the dielectric constant of the material. In the case of a capacitive level control the armatures of the capacitor are represented by the walls of the tank on one side and by the electrode of a probe, isolated from the walls on the other. As the surfaces of the electrode and the walls of the tank remain constant the only variable is the material which acts as the dielectric. The dielectric constant relative to air or vacuum is 1, whilst by definition that of any other material is greater than 1, therefore by varying the quantity of material in the tank the capacitance of the capacitor is varied and this is measured by applying to the electrodes a high frequency alternating voltage and as the capacitance increases as a result in the increasing level in the tank the current flowing in the capacitor also increases. This value of frequency current is transformed by the control circuit into a current which is used to indicate the level. APPLICATIONS Capacitive level controls are widely used where it is necessary to control with a good safety margin of intervention the level of substances both liquid and solid which may not be conductive. They are particularly used in silos for cereals, foodstuffs, seeds, biscuit plants and the food industry in general. They are also used in the transport, dosing, stocking and handling of plastic materials, petrochemical products, in foundries and cement factories. The field of use is vast and is practically anywhere where it is necessary to control the level inside tanks which contain many types of different material. SENSITIVITY ADJUSTMENT After having installed the probe, if the tank is not conductive, carry out the earthing of the probe by connecting to the connector placed on the probe. In order to calibrate the sensitivity the adjustment potentiometer should be adjusted with the probe free from material until the point at which the relay switches is found and this should be noted on the potentimeter. The probe should then be immersed in the material to be controlled and the potentiometer should be adjusted once again until the relay switches, once again note the position. As a last operation place the position of the potentiometer in the mid position between the two markings. Both the SC model with incorporated power supply and the SCD model with separate power supply are supplied with a min/max level security switch which can be positioned depending on the control function that is to be carried out. LIMITATIONS When using capacitive probes is should be borne in mind that large deposits adhering to the probe may affect the measurement, this can however, be discounted in most cases as the probe is covered in teflon. The value of the dielectric constant of the material must not be too low, it must in any case differ significantly from 1, furthermore it is important to bear in mind the composition of the material, humidity content, temperature etc. SENSITIVITY ADJUSTMENT AND CONNECTION DIAGRAM SCA/SCF SENSITIVITY ADJUSTMENT SCDA SCDF TEST 0 0 100 - + RELÉ MI LED 11 SX SELECTOR - RELAY ON LED N 1 0 110 0 In the case of Vac type supply connect to terminals - SCD-0P BLUE BLACK WHITE BROWN 8 9 10 1 11 0 0 110 SX SENSIBILITY SX (AMPLIFIERS) SENSITIVITY ADJUSTMENT

CAPACITIVE LEVEL CONTROLS SC - SCD SERIES SCA - SCF TYPES This is the compact version which has both the mechanical and electronic parts in one unit. They are supplied with bar electrodes of teflon coated steel (SCA) with standard lenghts of 00-00 - 800 mm, or with cable electrodes which are of plastified steel and tensioning, weight covered in teflon (SCF) with standard lenghts of 1.000 -.000 -.000 -.000 mm, these are easily shortened. SCDA - SCDF TYPES These types have the electronic and mechanical parts separate. The power supply/amplifier is situated in the SX unit. In this version the connection cable between the probe and the control unit can be of any length, it is recommended that this cable be kept separate from any power cables or that it be screened. The mechanical parts are supplied as per the compact version with bar or cable probes of equal characteristics. This system is used when it is necessary to have the calibration and the visualisation of operation in one control panel. SCD0P TYPES This minituarised version presents itself as a capacitive sensor but it works in conjunction with the SX unit. It is used when it is necessary to have the calibration and the visualisation of operation in one control panel and where the small dimensions of the sensing unit over come space problems. MECHANICAL CHARACTERISTICS OF THE PROBES The body of the SC and SCD probes is an aluminium casting with two cable clamps on the outputs, standard fixing 1 1/" GAS, available also 1" ore " GAS. The body has a degree of protection of IP which allows for outside installation. The body of the SCD0P is of macrolon plastic and can be used in combination with the SCM protection housing (Page ) ELECTRICAL CHARACTERISTICS Supply voltage ± 1% On request power supply Temperature limits type SC Temperature limits type SCD / SCD-0P Temperature limits type SX Maximum absorption Output with 1 pole changeover Degree of protection type SC / SCD Degree of protection type SCD-0P Maximum tank pressure Vca-110/0Vca 0 0Hz Vcc (Not SX) -0 +0 C -0 +100 C -0 +0 C,VA A a 0Vca IP IP 1 Kg./cmq. SC-A SC-F LEVEL CONTROLS x /8" GAS Ø10 Ø10 9 SW0 1 1/" GAS SX 10 SCD-0P 0 8 0 108 Ø1 00-00 - 800 Ø0 1 1000-000 - 000-000 8 1 M 0 X 1,

MECHANICAL LEVEL CONTROL FOR SOLIDS SE-A GENERAL DESCRIPTION They are used for the level control in containers holding product in powder or granule form. The body is of cast aluminium with a cable gland at the output and a stainless steel shaft mounted on sealed roller bearings, the paddle is aluminium. The functioning is based on the slow rotation of a watt syncronous motor which turns the paddle which is placed in the container. In the absence of material the paddle turns, material coming into contact with the paddle causes a breaking effect which slows down the motor and in turn causes the unit to switch. A second switch switches off the power of the motor. The paddle starts to rotate again when the material in the container falls freeing the paddle. MOUNTING The unit is placed on the external wall of the container fixing it by means of the hole flange. The material must be able to move freely around the paddle and this must not be installed in the jet of material. In order to avoid this it may be necessary to install deflectors above the unit when the mass of the material is high. WIRING DIAGRAMS /110 0 ~ C NC NO Power supply 1 ~ 0 0 Ø Ø1 Ø10 n Cable guand PG9 TECHNICAL CHARACTERISTICS Power supply -8-110-0Vac ± 10% Absorption VA Electrical contact A a 0V Temperature limits -10 +0 C Degree of protection IP Shaft length 10-00-00-0-1000 mm. L = mm for shaft lenght 10-00-00 mm L = 80 mm for shaft lenght 0-1.000 mm Flag inox 110 Boss Ø Ø 8 Propeller N.B.: the force to be applied for stopping the shaft rotation corresponds to 1 kilo with standard paddle. 110 8 0 0 L Shaft lenght 10 1000

MEMBRANE LEVEL CONTROL FOR SOLIDS SM-8 GENERAL DESCRIPTION This unit is suitable for controlling the maximum and minimum levels. In silos and tanks containing materials such as powder, granule, such as rice, cereals, plastic material, coffee, sand, etc. Its functioning is due to the pressure created by a product on the rubber membrane which activates a fast acting microswitch. The sensitivity of the switching can be adjusted by means of a screw placed on the lid of the unit, adjustment is made depending on the material to be sensed as a function of its specific weight. Variations in humidity and temperature do not compromise the functioning, furthermore the membrane is resistant to blows and vibrations. MOUNTING The unit must be assembled on the external wall of silos or tanks by means of the three holes situated on the fixing flanges and by making a hole of 8 mm diameter in the container so as to allow contact with the material. ELECTRICAL DIAGRAM 1/NC /NO Ø11 Ø100 ( holes at 10 ) Ø, Ø8 Ø8 LEVEL CONTROLS /C Rubber membrane Screw for sensitivity adjustment Cable guand 1/" Fixing flange TECHNICAL CHARACTERISTICS Plastic housing Fixing flange Membrane Electrical contacts Temperature limits Degree of protection Response sensitivity: Autoextinguishing ABS Aluminium Neoprene 8 mm. dia. A at 0V -10 +0 C IP Min. 0 gr central, 0 mm. water pressure on membrane

CONDUCTIVITY LEVEL CONTROL FOR LIQUIDS CL1001-CL100 SERIES WORKING PRINCIPLE TECHNICAL CHARACTERISTICS Supply voltage type CL1001/0-110-0V 0-0Hz Supply voltage type CL1001/U -110/0V 0-0Hz Supply voltage type CL100/U -110-0V 0-0Hz Voltage limits ± 1% Voltage between the electrodes 1Vac Absorption.VA Relay output with 1 pole changeover A a 0 Vac Relay output with pole changeover A a 0 Vac Temperature limits - 0 + 0 C Degree of protection IP0 Sensitivity adjustment 0 KOhm (On request higher) LED relay ON-OFF The CL 1001 - CL 100 level controls work on the resistivity of liquids and sense the level via the electrodes placed in the conductive liquids. The presence of liquid between the electrode (or electrodes) and the metal surface of the container (or earth electrode) causes the functioning of the electronic circuit in the control unit and the subsequent commutation of the output relay. It is also possible to sense solids as long as the conductivity of the material is within the range of the unit which in its standard form reaches 0 KOhm. Other models which can sense materials with a resistivity up to 1 MOhm are available on request. The low alternating voltage and current applied to the electrodes and the isolation level between them guarantees a safe operation. They are used as level controls in tanks, heaters deep wells and other containers and as alarm units for overfilling, presence or absence in any position and the checking of ice accumulation. The unit is supplied in single voltage form with an octal base and is interchangable with most of the units available on the market. It can also be supplied in a multivoltage version with undecal base. Type CL1001/O: Single voltage level control with power supply at Vac, or 110Vac, or 0Vac supplied with octal base. It is the most economic type of this series. Type CL1001/U: Multi voltage level control either at 110Vac, or 0Vac, by changing the wiring diagram. It is supplied with undecal base it is also available at Vac single voltage. Type CL100/U: Single voltage level control available with power supply at Vac or 110Vac or 0Vac, it is supplied with undecal base and relay output with pole changeover A at 0Vac. R ANTI-WAVE DELAY: On request it is possible to delay for sec. (non-adjustment) so the wave created by the liquid does not cause commutation. RANGE OF SENSITIVITY: All type are supplied with sensitivity adjustment and are also available with special sensitivity, see table below. SPECIAL SENSITIVITY REFERENCE FOR ORDERING WIRING DIAGRAMS 00 ohm 10 Kohm Kohm 0 Kohm 10 Kohm 00 Kohm 10 Kohm 00 Kohm 10 Kohm 1000 Kohm 10 K 0 K (standard) 00 k 00 k 1000 K A 0V TYPE CL1001/O POWER SUPPLY V-110V-0V N.O. N.C. 1 8 TYPE CL1001/U POWER SUPPLY 110 0 0 A 0V 1 10 11 N.C. 9 8 N.O. TYPE CL100/U POWER SUPPLY V-110V-0V A 0V 11 1 10 9 8 IDENTIFICATION REFERENCE PLUG SENSITIVITY* POWER SUPPLY...... LEVEL CONTROL CL 1001 - U R 10K TYPE ANTI-WAVE DELAY** * Specify only if different from the standard ** Specify only if requested. RELAY ON CONDUCTIVITY LEVEL CONTROL SENSIBILITY 10 8 1 ONE LEVEL CONTROL Use a reference probe or the tank earthing and a level probe. (To be connected to the terminal that corresponds to the max. level). When the liquid leaves tha probe level max. the relay switches in order to permit the tank to be filled. (Use output contact N.C. of relay). TWO LEVEL CONTROL (Filling) Use a reference probe or the tank earthing, min. level probe and max. level probe.tank filling begins the liquid leaves the minimum probe and switches off when the max. probe is reached. (Use output contact N.C. of relay). TWO LEVEL CONTROL (To empty) Use a reference probe or the tank earthing, min. level probe and max. level probe. The empting begins when the liquid reaches the max. probe and switches off when the liquid abbandons the min. probe. (Use output contact N.O. of relay). For a correct fixing of the MEYLE units it is recommended to use socket B8 an B11 with fixing spring MF. (page 10)

ELECTRODE HOLDER FOR CONDUCTIVITY LEVEL CONTROL SPECIFICATIONS These units are supplied with electrodes which are suitable for the sensing of conductive liquids, to be used with level controls CL1001 and CL100. They consist of a stainless steel electrode support or plastic material and a separate electrode which can be supplied with different length according to the different requirements. ONE POLE DETECTOR TYPE CL/1N This one pole detector is used for level controls of wells or tanks. It consists of a stainless steel electrode AISI1, a polycarbonate electrode holder and a cable gland. The sealing ring placed on the lower part and gland prevents the liquid from entering into contact with the cable connection causing subsequent oxidization. ONE POLE DETECTOR TYPE CL-A This one pole detector is used for level controls in boilers, autoclaves in all conditions where there are pressure (1 kg/cmq) and high temperatures (max. 00 C). It consists of a stainless steel holder AISI 1 with a rubber cap of protection, insulating material of teflon and stainless steel electrode support AISI 1. TWO POLE DETECTOR TYPE CLK-A The electrode holder is provided with a three pole connector for the electrical connection, two poles are connected to the electrode and the third, earth pole, is connected to the thread stainless steel holder. Using this method if the tank is in metallic material it is not necessary to install a earthing probe simplifing the wiring diagrams. It consists of a stainless steel holder AISI 1, provided with connector, supported by a teflon coated element and electrode holder AISI 1. Max. working pressure: 1 kgs cmq and max. temperature at 100 C limited by the presence of the connector in plastic material. THREE POLE DETECTOR TYPE CL-A The electrode holder is thermosetting plastic material with terminal block cover and three nickelled brass holders with M plug for electrode mm dia. (these are not included). It is supplied with adapter to be used with standard electrode mm dia. It is suitable for temperature up to 10 C and non-pressure application. On request a metallic bracket is available for flange fixing to electrode holder (type FCL). ELECTRODES They are supplied with five different lenght: 100, 00, 00, 0, 1000 mm, mm dia., stainless steel AISI 1. They can be used together with CL-A, CLK-A and CL-A with special adapter. When ordering add "E" to the length required (e.i. E-100 = 100 mm length). LEVEL CONTROLS CL/1N CL-A CLK-A CL-A FCL- Ø 8 0 mpm 10 Ø1 9 /8" Gas CH M Ø Rubber cap 11 9 0 00-00 - 0-1000 /8" Gas CH M Ø PG Connett. K 11 9 0 00-00 - 0-1000 1 " Gas 90 M 18 0 8 Ø 9 Ø Ø 11