Solenoid drive. Operating instructions

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1 Operating instructions (translation) Explosion protection The explosion protection is an option and is indicated by an Ex type plate on the solenoid actuator. The solenoid actuators and integrated solenoid valve controllers conform to explosion protection type "na" category II3G and can be used in zones in which explosive gas, vapour, mist or air mixtures may occur, i.e. in explosion zone 2. The electrical and thermal parameters of the separate variants can be obtained from the respective type plates. The explosion protection applies to operation of the device. For installation, maintenance or repairs, it is imperative that the relevant explosion protection regulations, especially EN (VDE 0165 T1), are observed. The electrical installation work must be carried out by, or under the supervision of, a skilled electrician, with additional observance of the relevant national regulations (VDE 0100 in Germany). Prior to installation, the constraints of the device marking must be compared against the envisaged operating conditions to ensure operation is as intended. Basics Valve solenoid actuator combinations are supplied fully assembled and tested as standard. When replacing or changing solenoid actuators, care should be taken that the combination with a UNI valve is approved and the magnet is properly secured to the valve (permissible tightening torque, for example). The devicespecific serial number for unequivocal identification and the year of build can be obtained from the type plate. Solenoid actuators are electrotechnical components that are inoperative without the associated valve and also may not be operated for themselves alone! For outdoor installations always use solenoid actuators with a IP65 rating and a rain cover. Any solenoid actuators showing signs of damage are not to be installed and must be replaced. If the solenoid actuators are subject to external loads of an exceptional kind, additional protective measures are to be taken by the operator, if required. Any undefined or unsuitable changes to the device may negatively influence the explosion protection and in the worst case even render it totally ineffective. UNI devices shall accept no liability for any loss or damage (to the device/over and above this) which have been brought about by change(s) to the device. The same applies for claims under the warranty. Description of the device The solenoid actuator (pot magnet) is used as an actuating unit for valves. Constructionally the actuator consists of a magnet housing (tube, base, magnetic disk and lid), a coil and electronics. Depending on the version, the solenoid actuator may be operated with DC or AC voltage. The version that runs off AC voltage has a builtin rectifier. Therefore when energised, direct current flows through the coils of all types. The solenoid actuators of type MG have a conventional coil with a winding and resulting average sustained pickup forces with average current consumption in continuous operation. The solenoid actuators of type MG A.. and MG A..C on the other hand have two windings on their coil body. One pickup and one holding winding. The TS / RKS builtin valve controller (rudimentary in " A " actuators) switches over after a defined time from the higher pickup power to the lesser holding winding power. In this way, very high pickup forces can be achieved shortterm with simultaneous low current consumption in sustained (holding) operation. Seite 1/ 14 TM

2 Special condition for safe use 1. Since temperatures higher than 70 C occur at the cable entry and higher than 80 C at the core junction, this equipment must be additionally marked with the higher temperature (label at the cable entry). Only a heatresistant cable may be connected. 2. The solenoid actuators need to be protected against the dangerous consequences of short circuits, earth faults and overloads. A lineside fuse appropriate to the rated current (max. 3xIB acc. to IEC ) is to chosen. A lineside motor circuit breaker with shortcircuit and thermal instantaneous tripping is to be adjusted for the rated current. If the magnet has very low rated currents, fusing with the lowest current value in keeping with the stated IEC standard is sufficient. Protective devices must be of the kind that prevents automatic reconnection under fault conditions. The fusing rated voltage must match or exceed the specified nominal voltage of the solenoid actuator. The breaking capacity of the fuse link must match or exceed the maximum shortcircuit current expected at the place of installation (usually 1500 A). 3. When a silicon (or silicon containing) connection lead is used or if the connecting lead is not scratch proof respectively, this has to be protected from mechanical damage (e.g. inetrrupted tube system with edge protection). 4. A maximum permissible ripple of 20% is valid for all magnets of dcdesign. Electrical connection The diameter range / clamping range of the cable gland must be noted and adhered to. The connection thread of the cable gland amounts up to 30 Watt M16x1,5, from 40 Watt M20 x 1,5.Where a flexible connecting line is used, insulated wireend sleeves with plastic collars conforming to DIN part 4 are to be used. The voltage supply at the solenoid actuator must lie within the range 15% to +10%. The appropriate circuit diagram can be obtained from the connection diagrams at the end of these operating instructions. To guarantee an IP65 degree of protection, the magnetic housing lid must be refitted carefully. Versions supplied with a connecting cable ex works are ready for use, i.e. the connection compartment does not need to be opened again. The capacitors in the solenoid valve control TS800C must be discharged by an expert. CEIdentification The Council of the European Community passed common directives for the free movement of goods within the European Community, which determine the minimum requirements for safety and health protection. The CEidentification confirms, that the products correspond to the EC directives, i.e. are in agreement with the relevant, especially harmonized standards. Note concerning directive 2014/34/EU (explosion protection directive ATEX 95): The solenoid drives (MG..Xn, MG..A..Xn, MG..A..C..Xn) fulfil the relevant requirements of directive 2014/34/EU; therefore they have the CEidentification as per annex X of the directive. The declaration of conformity is included. Note concerning directive 2014/30/EU (EMVDirective): The solenoid drives fulfil the requirements of the specification to be applied of the product families concerning the industrial sector as well as the sectors of private housing, business and trading, as well as of small businesses. On using of AC and DCvariants the user must provide a suitable mains filter (e.g. Xcapacitor 47 nf) at the mains entrance to attenuate the physically caused linerelated turnoff current of the solenoid. In the sense of the EMVdirectives solenoid drives with driving elements for valves are not regarded as independently operable appliances and are only processed further by expert companies, or respectively installed into a machine. They must not be started up until it was determined that the machine, or respectively, the complete line, corresponds to the regulations of the EMVdirectives. Seite 2/ 14 TM

3 Note concerning directive 2014/35/EU (LowVoltage Directive): The solenoid drives (MG.., MG..A.., MG..A..C..) were developed, designed and produced in accordance with the standard Electromagnetic Appliances DIN EDV Thus they will also fulfil the requirements of the low voltage guidelines, which apply to rated voltages from 50 to 1000V AC and from 75 to 1500V DC. Operation 100% ED are permitted even in case of the most unfavourable ambient conditions permissible. Danger! During operation the solenoid drive may get hot. Don t touch, danger of injuries! During operation it must be guaranteed, that neither the maximum permitted ambient temperature or of the fluid nor the load limit (excess voltage) will be exceeded. If necessary the solenoid drive is to be protected against overcharging. All solenoid drives are wired with a varistor. To avoid induced voltage, which may cause damage of the line, the user must provide protective measures in case of necessity which go beyond the installed varistor. Dismounting of the solenoid drive Stop the solenoid drive and cut off voltage supply. Danger! During operation the solenoid drive may get hot. Don t touch, danger of injuries! MG 0801, 38 Unscrew and remove hexagonal nut (901). Completely remove solenoid drive ( 800) from the upper part of housing (106). Seite 3/ 14 TM

4 MG MG Unscrew hexagonal head screw (900) and remove it including insulating bush (401*). Remove cover of solenoid housing (105*) from solenoid housing (1). Loosen and remove connecting bolt (501). volume control butterfly valve Loosen protective cap (505) and remove including oring (4*). Remove cover of solenoid housing (105*) from solenoid housing (1). Unscrew and remove hexagonal nut (901). Pos. Item Description 1 Solenoid housing 106 Upper part of housing 500 Magnet plate 501 Connecting bolt 701 Cable gland 702 Solenoid 714 Mains outlet Hexagonal head screw 901 Hexagonal nut 1004 Casting compound Seite 4/ 14 TM

5 Subsequently the solenoid housing (1) will be completely dismounted from the upper part (106) of the solenoid valve together with magnet plate (500) and coil (702). Remove magnet plate (500) and coil (702) from the solenoid housing (1). Notice! Before assembly or if the sealing elements are damaged, with solenoid actuator MG004 MG020 (solenoid housing cover (105*), insulating housing (401*) and flat gasket (402*)), or with solenoid actuator volume control butterfly valve (solenoid housing cover (105**), Oring (4**) and flat gasket (402**)), replace if necessary. Assembly will be done in reverse order Screw torques of the connecting bolt (501) and the hexagonal head screw (900) Screw torque Item Thread size 4,6 Nm M6 11 Nm M8 22 Nm M10 62 Nm M14 MG... / MG...Xn Typ MG... P W Nominal current A* VAC , , ,4 0,09 0,05 0,04 0,04 0,09 0, ,6 0,1 0,07 0,07 0,06 0,1 0, ,3 0,3 0,1 0,1 0,1 0,3 0, ,7 0,4 0,2 0,2 0,2 0,4 0, ,1 0,5 0,2 0,2 0,2 0,5 0, ,9 0,6 0,3 0,3 0,3 0,6 0, ,8 0,8 0,7 0,4 0,4 0,4 0,8 0, ,2 1,1 1,0 0,6 0,5 0,5 1,1 0, ,7 1,5 1,3 0,7 0,7 0,7 1,5 0,7 230 VAC ,5 1,6 0,8 0,8 0,7 1,6 1,3 *Amb.temp. 20 C at 100% duty cycle stationary warmed up (Amb.temp. 20 C at 0% duty cycle switch on moment / values x factor 1,25) Seite 5/ 14 TM

6 MG...A / MG...A...Xn with integrated control TS900, TS1500 Typ MG..A.. P W Nominal current A* TS 900 TS VAC 230 VAC 016A 720/70 30/2,9 6,5/0,6 3,3/0,3 3,1/0,3 3,0/0,3 6,5/0,6 3,1/0,3 018A1 900/70 38/2,9 8,2/0,6 4,1/0,3 3,9/0,3 3,8/0,3 8,2/0,6 3,9/0,3 018A2 1200/70 11/0,6 5,5/0,3 5,2/0,3 5,0/0,3 11/0,6 5,2/0,3 019A1 1200/120 11/1,1 5,5/0,6 5,2/0,5 5,0/0,5 11/1,1 5,2/0,5 019A2 1500/90 14/0,8 6,8/0,4 6,5/0,4 6,3/0,4 14/0,8 6,5/0,4 019A /20 17/0,9 3,6/0,2 1,8/0,09 1,7/0,09 1,7/0,08 3,6/0,2 1,7/0,09 019A /50 17/2,1 3,6/0,5 1,8/0,23 1,7/0,2 1,7/0,2 3,6/0,5 1,7/0,22 *Amb.temp. 20 C at 100% duty cycle stationary warmed up (Amb.temp. 20 C at 0% duty cycle switch on moment / values x factor 1,25) MG...A5 / MG...A5...Xn With integrated control TS200 Typ MG... P W Nominal current A * VAC 010A5 200/20 8,3/0,8 1,2/0,9 012A5 200/20 8,3/0,8 1,2/0,9 014A5 200/20 8,3/0,8 1,2/0,9 016A5 200/20 8,3/0,8 1,2/0,9 018A5 200/20 8,3/0,8 1,2/0,9 019A5 200/20 8,3/0,8 1,2/0,9 * Amb.temp. 20 C at 0% duty cycle switch on moment Switching Frequenzy: switchings / hour MG A 020A A5 019A A5C6, 019A5C6 ; 016A5.2C6, 019A5.2C9 Soelnoid valve control Solenoid valvce control TS 200 TS 800 TS 900 / 1500 RKS / max. switching capacity Watt / /4000 Switch over time Sec. 1,5 40(*) 3 3 For opening delay Sec (*) Charging time Seite 6/ 14 TM

7 Solenoid dirve MG...A with mounted control: RKS MG...A...Xn With category II3G, only permitted outside the ex zone (installation of RKS(*) separate from valve in switch cabinet) Typ MG..A.. P W Nominal current A* VAC RKS / MG...A with mounted control: RKS MG...A...Xn With category II3G, only permitted outside the ex zone (installation of RKS(*) separate from valve in switch cabinet) Typ P Nominal current A* 019A3 4000/100 17,4/0,4 019AA /160 13/0,7 020A1 2000/100 8,7/0,4 020A2 3000/125 13/0,5 020A3 4000/132 17,4/0,6 MG..A.. W A2 1200/70 50/2,9 019A1 1200/120 50/5 019A2 1500/90 63/3,8 019A5 200/20 1,6/0,16 As per request of customer valve control RKS / for installation into switching cabinet *Amb.temp. 20 C at 100% duty cycle stationary warmed up (Amb.temp. 20 C at 0% duty cycle switch on moment / values x factor 1,25) MG...A...C With mounted control TS800C MG...A...C...Xn With category II3G, only permitted outside the ex zone (installation of RKS(*) separate from valve in switch cabinet) Typ MG..A..C P W I Nominal A* 24 Charging time sec. 16A5C6 48/ A5C6 48/ A5.2C6 72/ A5.2C9 72/ RKS(*) Relais combination control; *Amb.Temp. 20 C at 0% duty cycle switch on moment. Seite 7/ 14 TM

8 Standard solenoid drive IP 54 Standard solenoid drive IP 65* * compound filled with casting resin. with Harting plug HAN 7D / 8D optionally available Seite 8/ 14 TM

9 Xn version IP 54 and IP 65** In accordance with DIN EN , as well as the inner earth connection, version type Xn solenoid actuators have an additional outer earth connection, with a conducting connection between them. The outer earth connection is suitable for connecting a maximum of two equipotential bonding conductors, each with a cross section of up to 6mm². Minimum crosssectional area of earthing conductors Crosssectional area of the phase conductor of the installation, S mm² S 16 Minimum crosssectional area of the associated protective conductor, S mm² 16 < S S > 35 S 0,5 S Protective conductor connection The solenoid actuator must always be integrated in the equipotential bonding. A connecting facility is available for this purpose in the vicinity of the magnetic coil connecting terminal. NOTICE! The solenoid drive must additionally be earthed via the external earthing connection on the housing. ** encapsulated with cast resin up to the terminal strip Dimensions Solenoid MG... A B ØC D E Weight in kg IP 54 IP ,6 1, ,6 1, ,2 3,5 010 (A) ,0 7,0 012 (A) ,6 7,2 014 (A) ,5 11,7 016 (A) ,7 12,5 018 (A) ,0 22,2 019 (A) ,3 24,5 020 (A) ,3 40,0 Seite 9/ 14 TM

10 Rainproof cover standard series MG Rainproof cover explosion protection series for MG Xn version Sight ØE F MG..(A).., MG..Xn.. Sight ØE F MG..(A).., MG..Xn , (A), 016(A) , 010(A), 012(A) (A), 019(A), 020(A) Anschlussplan mit Kabelverschraubung DIN EN als standard & Xn Ausführung für Ex Version erhältlich Design Design VAC Solenoid drive MG A5 012A5 014A5 016A 016A5 018A A A A1 019A A A5 019A A A1 020A2 020A AP 01 AP 02 AP 04 AP 05 Seite 10/ 14 TM

11 Connection plan with pinandsocket connector as per DIN EN (not available in Xn version) Solenoid Design Design VAC drive MG A5 012A5 014A5 016A 016A5 016A5C6 016A5.2C A1 018A2 09(*) 018A5 019A1 019A2 09(*) 09(*) 09(*) 019A3 09(*) 09(*) 09(*) 019A5 019A5C A5.2C9 019A5.3 09(*) 019A A1 020A2 09(*) 09(*) 09(*) 020A3 AP 08 AP 09 AP AP 06 AP 07 AP 09* * Installation of switching cabine Seite 11/ 14 TM

12 Connection plan with pinandsocket connector as per DIN EN / DIN (not available in Xn version) DIN EN Solenoid drive MG A5 012A5 014A5 016A 016A5 016A5C6 016A5.2C A1 018A2 09(*) 018A5 019A1 09(*) 019A2 Design (*) 09(*) A3 09(*) 019A5 019A5C A5.2C9 019A5.3 09(*) 019A A1 020A2 09(*) 020A3 AP 08 AP 10 Design VAC (*) DIN AP AP 07 AP 09 AP 09* * Installation of switching cabine Seite 12/ 14 TM

13 Seite 13/ 14 TM

14 Seite 14/ 14 TM

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