TEL:07-79 FAX: Reference conditions, Accuracy and Principle of operation Reference conditions per EN 9 Fluid temperature 0 C ±

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1 TEL:07-79 FAX: Electromagnetic flowmeter for hazardous area zone 1 with pulsed DC technology and of compact design Process connection: Flange Pulsed DC technology Class 0.% of rate 0.% of rate Pulsed DC technology Class 0.% of rate Class 0.% of rate 0.% of rate Pulsed DC technology Capacitive signal pick-off Class 1% of rate AC field technology Class 1% of rate AC field technology Class 1% of rate MAG-XM COPA-XM d COPA-XM MAG-CM COPA-CM MAG-SM Fill-MAG The electromagnetic flowmeter enables the exact measurement of the flow volume of liquids, pulps, pastes and sludges with a min. electrical conductivity of µs/cm. The (µp-technology) is a flowmeter system of Compact design primary and converter are assembled to one unit. There is no need for a long connecting cable between the primary and the converter. The principle of operation is described on page. The electromagnetic flowmeter system has following main design features: Flowmeter with flameproof converter housing suitable for the application in hazardous zone 1, type EEx de [ib] IIC T-T, PTB-No. Ex-9.D.09X Signal in-/outputs of intrinsically safe - (NAMUR) and not intrinsically safe design (PELV). Standardized laid length of DIN-flanged primaries correspond with specified laid length of VDE/VDI 1 and DVGW work sheet W0 (type WP, ISO 0, short), as well as ISO 19. Primary of flanged design DN Ambient temperature -0 C to + 0 C. (- F to F) 10 C fluid temperature (higher temp. upon request). Same electronics for all meter sizes. Parameter entry within the hazardous zone by means of -button keyboard. Instrument housing remains closed. x digits illuminated LC-Display, free configurable for the display of flow and totalling. Display pluggable into positions. Automatic detection of empty meter pipe is standard. Difference counting or individual recording of forw. and reverse flow. Integrated presetting counter. Two flow rate ranges with automatic - or external changeover. Storage of all measuring point parameters and calibration data in an EEPROM module. Converter housing rotatable through 90. Flowmeter system with maximum 0. % deviation of measured value. Fig.1 flowmeter system of compact design Contents Page Introduction 1 Reference conditions, Accuracy, and Principle of operation Overview of designs Meter size, Pressure rating and FLow rate range Installation and Grounding of flowmeter Technical date, primary flanged design 7 Dimension drawings, primary flanged design 11 Technical data, converter 1 Interconnection diagram 19 Details for ordering Additional features TEL: FAX: szss0@.com Spec. D1S0U0

2 TEL:07-79 FAX: Reference conditions, Accuracy and Principle of operation Reference conditions per EN 9 Fluid temperature 0 C ± K Ambient temperature 0 C ± K Power supply Voltage per name plate U N ± 1 % Installation requirements straight pipe sections Upstream of primary > x DN, Downstream of primary > x DN, DN = Meter size Warm up time 0 min Influence of analog output Same as pulse output ± 0,1 % of flow rate Principle of operation The operating principle of the electromagnetic flowmeter is based on Faraday s law of magnetic induction which states that the voltage induced across any conductor as it moves at right angles through a magnetic field is proportional to the velocity of that conductor (see diagram below). The voltage induced within the fluid is picked up by two diametrically opposed mounted electrodes. The induced signal voltage (U E ) is proportional to the magnetic flux density (B), the distance between the electrodes (D) and the average flow velocity (v) of the fluid. If one considers that the flux density and the electrode spacing are constants, it is readily apparent that the flow signal is proportional to the average flow velocity of the fluid. From the equation for the volume flow rate it follows that the flow signal is linearily proportional to the volume flow rate. The converter processes the electrode signal voltage into normalized, analog, and digital output signals. Magnet coil Pulse output Q > 0.0 Q max DN ± 0. % of rate Q < 0.0 Q max DN ± Q max DN Meter tube in electrode plane Accuracy ± % Measuring electrode Q Q maxdn Signal voltage v m ---- s U E B D v q v = Signal voltage = Magnetic flux density = Electrode spacing = average flow velocity = Volume flow rate U E ~ B D v q v = D π v U E ~ q v Fig. Accuracy of flowmeter system Fig. Basic operating principle of an electromagnetic flowmeter TEL: FAX: szss0@.com

3 TEL:07-79 FAX: Overview of designs Accuracy Model number 0, % of rate DX711 Primary Meter size (DN) Pressure rating (PN) Flange Liner material Conductivity Hard rubber, Soft rubber, PTFE, PFA, Polyurthane, others upon request µs/cm Electrode material Stn. stl. 1.71, 1.9 Hastelloy B-/C- Platinum-Iridium, Tantalum, Titanium Enclosure classification IP 7 Fluid temperature Converter Power supply -0 to +10 C (- to + F) 11/0 V AC V/ V AC V DC In-/outputs Intrinsically safe (NAMUR) Not intrinsically safe (PELV) Current output configurable Pulse output Contact input: external output cut-off external totalizer reset external measuring range changeover Contact output: system alarm contact configurable contact output HART-Protocol Limit alarm Flow.-/reverse flow measurement Relay Relay 0- ma 0/- ma 0/-0 ma 0-, -0 ma -1, 1-0 ma yes yes yes measuring ranges yes, automatic- or external changeover Presetting totalizer yes, with Start/Stop by means of buttons Self-monitoring yes Local indication/-totalling yes Detector empty pipe yes, Standard DN V active EEx-design PTB No. Ex-9.D.09X EEx de [ib] IIC T-T ambient temperature -0 C...+0 C (- to + F) TEL: FAX: szss0@.com

4 TEL:07-79 FAX: Meter size, pressure rating, flow rate range and flow nomograph Meter size, pressure rating, flow rate range Meter size DN Std. press. rating PN (bar) Min. flow rate range flow velocity 0 to 0. m/s Flow rate range flow velocity 0 to m/s Max. flow rate range flow velocity 0 to 1 m/s to 0, l/min 0 to 0, l/min 0 to 1 l/min 0 to l/min 0 to l/min 0 to 0 l/min 0 to l/min 0 to 1 l/min 0 to 0 l/min to 1, l/min 0 to, l/min 0 to l/min 0 to 0 l/min 0 to l/min 0 to 0 l/min 0 to l/min 0 to 7, l/min 0 to 10 l/min to 7, l/min 0 to l/min 0 to 10 l/min 0 to 00 l/min 0 to l/min 0 to 00 l/min to 0 l/min 0 to 0 l/min 0 to 00 l/min 0 to 00 l/min 0 to 00 l/min 0 to 900 l/min to m /h 0 to m /h 0 to 9 m /h 0 to 0 m /h 0 to 10 m /h 0 to 10 m /h 0 to 90 m /h 0 to 10 m /h 0 to 70 m /h to 1 m /h 0 to 1 m /h 0 to 0 m /h 0 to 0 m /h 0 to 0 m /h 0 to 00 m /h 0 to 0 m /h 0 to 0 m /h 0 to 900 m /h / / / 0 to m /h 0 to 90 m /h 0 to 10 m /h 0 to 0 m /h 0 to 100 m /h 0 to 00 m /h 0 to 0 m /h 0 to 700 m /h 0 to 00 m /h / / 0 to m /h 0 to m /h 0 to 0 m /h 0 to 00 m /h 0 to 00 m /h 0 to 00 m /h 0 to 90 m /h 0 to 70 m /h 0 to 9900 m /h to 0 m /h 0 to 0 m /h 0 to 900 m /h 0 to 900 m /h 0 to 100 m /h 0 to 1000 m /h 0 to 0 m /h 0 to 1900 m /h 0 to 7000 m /h to 100 m /h 0 to 10 m /h 0 to 000 m /h 0 to 7000 m /h 0 to 000 m /h 0 to 000 m /h to 0 m /h 0 to 700 m /h 0 to 00 m /h 0 to 000 m /h 0 to 000 m /h 0 to 7000 m /h 0 to 000 m /h 0 to 00 m /h 0 to 000 m /h to 00 m /h 0 to 700 m /h 0 to m /h 0 to 100 m /h 0 to 1000 m /h 0 to 1700 m /h! Note: The upper range limit of the is adjustable from 0. to 1 m/s, though the nomographs on page are layed out from 0. to m/s. (upper range see table Flow rate range ). TEL: FAX: szss0@.com

5 TEL:07-79 FAX: Flow nomograph Flow nomograph The volumetric flow rate is a function of the flow velocity and the meter size. The flow nomographs (Fig. + ) indicates the flow rate range available of a specific flowmeter size and which size is best suitable for a particular flow rate. l/min m /h l/s Example: Flow rate = 7 m /h (maximum value = end of flow rate range). Suitable are primaries of sizes DN 0 to DN for a flow velocity from 0. to m/s. Example DN 000 DN 100 DN 00 DN 0 DN 100 DN 00 DN 900 DN 00 DN 700 DN 00 DN 00 DN 00 DN 0 DN 00 DN 0 DN 00 DN 10 DN 1 0, 0, 0, 1 m/s Fig. Flow nomograph DN to DN 0 Fig. Flow nomograph DN 1 to DN 000 TEL: FAX: szss0@.com

6 TEL:07-79 FAX: Installation requirements and Grounding In- and outlet pipe sections The metering principle is independent of the velocity profile as long as swirls are not present in the metering section, e.g. after space bends, tangential flow entry into upstream pipe or after partially open valves. In sich cases measures should be employe to normalize the velocity profile. Experience has shown that in most cases an upstream and a downstream straight pipe section is sufficient. It also is recommended to install a flow control device downstream of the primary. The meter tube must be full with fluid during flow measurement. Meter orientation When installing the meter in a horizontal pipeline it has to be assured that none of the electrodes is located at the highest point. In order to achieve this, the terminal housing of the meter should be top oriented. This aligns the electrodes in a horizontal plane and eliminates the possibility of entrained air or gas acating as insulator between the fluid and the electrodes. The ideal installation is shown in Fig.. 1. Established the diameter with ratio d/d.. Determine flow velocity from the flow rate and meter sizes: Q (flow rate) v = primary constant The flow velocity also can be determined from the flow rate nomographs Fig. and Fig... In Fig. 7 at the intersection of diameter ratio d/d (X-axis) and the flow velocity value read the pressure drop on the Y-axis. Double flanged reducer IImaginary connecting line of electrodes d D v p = EMF inside diameter = inside diameter of pipe = flow velocity in m/s = pressure drop in mbar Double flanged reducer with α/ = Fig. Imaginary connecting line of electrodes Grounding Proper grounding of the EMF system is significant for safety reasons as well as for optimum performance (e.g. acc. to VDE 00, part 0). Connect primary to protective potential by means of grounding screws and bonding lead. For accurate flow measurement the fluid and pipe work should be at normal ground potential. With plastic- or insulated lined pipe lines, grounding is made using one grounding ring or grounding electrodes. If the pipeline contains other stray potentials it is recommended that two grounding rings be used, one upstream and one downstream of the flowmeter. Pressure drop p [mbar] Installation in larger pipe lines The flowmeter may be installed without concern in pipelines larger than the flowmeter through use of double flanged reducers (e.g. per DIN ). The resultant pressure drop caused by the reducer can be determined from the diagram in Fig. 7. The following procedure is to be used to determine the pressure drop: diamter ratio d/d Fig.7 Pressure drop nomograph TEL: FAX: szss0@.com

7 TEL:07-79 FAX: Technical data Primary flanged design Max. allowable temperaure and pressure rating Liner material Meter size P Operation at T Operation DN bar C Hard rubber KTW-approved Soft rubber KTW-zugelassen (other meter sizes, press. ratings, temperature classes upon request) Max. allowable cleaning temperature CIP Cleaning in place Liner material T max C If ambient temperature is > C (77 F), deduct the difference of max. cleaning temperaure. T max - C, C = (T Amb. - C) Fluid temperature - C to +10 C (-1 to + F) depending on liner material (see table above) Ambient temperature -0 C to +0 C (- to + F) (see temperature diagrams) Enclosure classification IP 7 Pipeline vibration Max. allowable 1 m/s (-10 Hz) 1 to 0 0 < to 00 < to 000 < 90 0 to to to 000 PTFE 0 to 00 0 PFA to 0 0 Steam cleaning Liquid cleaning PTFE/PFA PTFE/PFA < < < < < < < < < < T max minutes T Amb. C 0 0 Materials Wetted parts Parts Standard Others Liner material PTFE, PFA, Hard rubber, Soft rubber Polyurethane Electrode for liner material - Hard rubber - Soft rubber - PTFE PFA Min. allowable absolute pressure Stn. stl Hast. B-, Hast. C-, Titanium, Tantalum, Platinum-Iridium Hast. C- W.-Nr. 1.71, 1.9 Hast. B- Titanium, Tantalum, Platinum-Iridium Grounding ring Stn. stl upon request Protective flange Stn. stl upon request Non-wetted parts Parts DN to DN 00 DN 0 to DN 000 Housing Two-part housing, Welded steel cast aluminum, construction, painted, painted, paint coat paint coat 0 µm thick, 0 µm thick, gray RAL 900 gray RAL 900 Terminal box Cast aluminum, painted, paint coat, 0 µm thick Frame: blue RAL 01 Lid: gray RAL 900 Meter Stn. stl Stn. stl Liner material Meter size DN P Operation mbar abs at T Operation C Hard rubber 1 to < 90 Soft rubber 0 to < 0 PTFE to PFA to < 0 < 0 < 10 < 0 < 0 < 10 Types of design (flange per DIN 01) Laid length Series 000 (short design) Flowmeter sizes DN 1 - DN 00 of DIN-flanged design correspond with the specified laid length of VDE/VDI 1 and with the DVGW worksheet W0 (water meter, type WP ISO 0 short as well ISO 19). (DVGW = Deutscher Verein von Gas- und Wasserfachmännern e.v.) Laid length Series 00 (only for exchange). DIN-flanged as model D COPA-Exi ANSI 10 lb/00 lb Lay length equivalent to Series 00 Protection flanges same as Series 00, see page. TEL: FAX: szss0@.com 7

8 TEL:07-79 FAX: Technical data Primary flanged design Hazardous area, zone 1 Identification: EEx de [ib] IIC T-T Certification: PTB-No. Ex-9.D.09X Model: DX711 Temperature diagrams Ambient temperature C Ambient temperature C Fluid temp. C Fluid temp. C Standard Standard Stn. stl. flange Stn. stl. flange Fig. Fluid temperature as a function of ambient temperature DN to DN 0 Fig.11 Fluid temperature as a function of ambient temperature DN 00 to DN 00 Ambient temperature C Ambient temperature C Fluid temp. C Fluid temp. C Standard Standard Stn. stl. flange Stn. stl. flange Fig.9 Fluid temperature as a function of ambient temperature DN 0 to DN 0 Fig.1 Fluid temperature as a function of ambient temperature DN 0 to DN 000 Ambient temperature C Fluid temp. C Standard Stn. stl. flange Fig. Fluid temperature as a function of ambient temperature DN 0 to DN 10 TEL: FAX: szss0@.com

9 TEL:07-79 FAX: Technical data Primary flanged design Max. ambient temperature, temperature class, max. fluid temperature a) Power supply: Direct voltage DC Max. ambient temperature ( C) 0 C ( F) 0 C (1 F) 0 C*) ( F) Temp.- Class Liner material Max. allowable fluid temperature (operating data) DN -0 DN 0-0 DN 0 DN 1 DN 10 DN 00 DN 0-00 DN T PTFE/PFA 10 C 10 C 10 C 10 C 10 C 10 C 10 C 10 C T PTFE/PFA C 10 C 10 C 11 C 1 C 11 C 11 C 9 C Hard rubber 90 C 90 C 90 C 90 C 90 C 90 C 90 C 90 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA C 90 C 7 C 70 C C 7 C 70 C 0 C Hard rubber C 90 C 7 C 70 C C 7 C 70 C 0 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA C 7 C C 0 C C C 0 C 0 C Hard rubber C 7 C C 0 C C C 0 C 0 C Soft rubber C 0 C 0 C 0 C C C 0 C 0 C T PTFE/PFA 0 C T PTFE/PFA 0 C 90 C 0 C 0 C 0 C 0 C 0 C 90 C Hard rubber 0 C 90 C 90 C 90 C 90 C 90 C 90 C 90 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA 0 C 90 C 7 C 70 C 0 C 70 C 70 C C Hard rubber 0 C 90 C 7 C 70 C 0 C 70 C 70 C C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA 0 C 70 C C 0 C C 0 C 0 C 0 C Hard rubber 0 C 70 C C 0 C C 0 C 0 C 0 C Soft rubber 0 C 0 C 0 C 0 C C 0 C 0 C 0 C T PTFE/PFA 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C Hard rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA C 0 C 0 C 0 C 0 C 0 C 0 C C Hard rubber C 0 C 0 C 0 C 0 C 0 C 0 C C Soft rubber C 0 C 0 C 0 C 0 C 0 C 0 C C T PTFE/PFA C 0 C 0 C C 0 C 0 C 0 C C Hard rubber C 0 C 0 C C 0 C 0 C 0 C C Soft rubber C 0 C 0 C C 0 C 0 C 0 C C *) Thermostability of the connecting leads must be at least 90 C (19 F): Note: A higher temperature class always includes the lower temp. classes. TEL: FAX: szss0@.com 9

10 TEL:07-79 FAX: Technical data Primary flanged design Max. ambient temperature, temperature class, max. fluid temperature b) Power supply: Alternating voltage AC Max. ambient temperature ( C) 0 C ( F) 0 C (1 F) 0 C*) ( F) Temp.- Class Liner material Max. allowable fluid temperature (operating data) DN -0 DN 0-0 DN 0 DN 1 DN 10 DN 00 DN 0-00 DN T PTFE/PFA 10 C 10 C 10 C 10 C 10 C 10 C 10 C 10 C T PTFE/PFA 1 C 10 C 10 C 11 C 1 C 11 C 11 C 9 C Hard rubber 90 C 90 C 90 C 90 C 90 C 90 C 90 C 90 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA C 90 C 7 C 70 C C 7 C 70 C 0 C Hard rubber C 90 C 7 C 70 C C 7 C 70 C 0 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA C 70 C C 0 C C C C 0 C Hard rubber C 70 C C 0 C C C C 0 C Soft rubber C 0 C 0 C 0 C C 0 C 0 C 0 C T PTFE/PFA 10 C 10 C 10 C 10 C 10 C 1 C T PTFE/PFA 0 C 10 C 10 C 1 C C 11 C 11 C 90 C Hard rubber 90 C 90 C 90 C 90 C 90 C 90 C 90 C 90 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA 0 C 90 C 7 C 70 C C 70 C 70 C 0 C Hard rubber 0 C 90 C 7 C 70 C C 70 C 70 C 0 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA 0 C 70 C C 0 C C 0 C 0 C 0 C Hard rubber 0 C 70 C C 0 C C 0 C 0 C 0 C Soft rubber 0 C 0 C 0 C 0 C C 0 C 0 C 0 C T PTFE/PFA 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C Hard rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C Soft rubber 0 C 0 C 0 C 0 C 0 C 0 C 0 C 0 C T PTFE/PFA C 0 C 0 C 0 C 0 C 0 C 0 C C Hard rubber C 0 C 0 C 0 C 0 C 0 C 0 C C Soft rubber C 0 C 0 C 0 C 0 C 0 C 0 C C T PTFE/PFA C 0 C 0 C C 0 C 0 C 0 C C Hard rubber C 0 C 0 C C 0 C 0 C 0 C C Soft rubber C 0 C 0 C C 0 C 0 C 0 C C *) Thermostability of the connecting leads must be at least 0 C (17 F): Note: A higher temperature class always includes the lower tep. classes. TEL: FAX: szss0@.com

11 TEL:07-79 FAX: Dimension drawings Primary DN to DN 00, DIN-flanged design Display ± 90 rotatable Screw-type conduit fittingpg 1. View Z Housing rotatable through 90 Number of bolt holes N Upper part of instrument 90 rotatable Flanges per DIN 01 All dim. in mm Flange dimensions Instrument dimensions Weight DN PN 1) D d b k d N A L*) L ) L ) E F G kg , , , *) Primary with dimensions of Series 00 w/o protection flanges (dimensions see page ) available upon request. 1) Other pressure ratings upon request. ) Standard with one grounding ring made of stn. stl attached to flange on one side. Other materials upon request. Also refer to Grounding. ) With protective rings. Protective rings also used for grounding. Grounding ring not required Fig.1 Primary DN to DN 00 TEL: FAX: szss0@.com 11

12 TEL:07-79 FAX: Dimension drawings Primary DN 0 to DN 000, DIN-flanged design Display ± 90 rotatable Screw-type conduit fitting Pg 1. Housing rotatable through 90 Number of bolt holes N View Z Upper part of instrument rotatable 90 Min. clearance on both sides of primary required to remove HU electrodes Flanges per DIN 01 All dim. in mm Flange dimensions Instrument dimensions Weight Protective flanges kg w/o ) with ) DN 1) PN ) D d b k d N A L L E G H ) > DN 00 w/o protection flanges upon request. ) Standard pressure ratings. Others upon request. ) Grounding ring DN 0 upon request. Also refer to Grounding. ) Protective flanges also used for grounding. Grounding ring not required. Fig.1 Primary DN 0 to DN TEL: FAX: szss0@.com

13 TEL:07-79 FAX: Dimensions Primary DN to DN 00, ANSI- flanged design Display ± 90 rotatable Screw-type conduit fitting Pg 1. View Z Housing rotatable through 90 Number of bolt holes N Upper part of instrument rotatable 90 Shown are primaries DN 00 Illustration of primary DN 0 upon request Meter size Instrument dimensions ANSI 10 lb/00 lb Flange dimensions ANSI 10 lb Flange dimensions ANSI 00 lb DN Inch A L L 1) L ) E F G D d b k d N D d b k d N -, /, / /, 1/ / 1 1 1/ 1 1/ 1/ ) With one grounding ring made of stn. stl attached to flange on one side. Other materials upon request. Also refer to Grounding. ) With protective flanges. Protective flanges also used for grounding. Grounding ring not required. Also with protection flanges with the dimensions of Series 00 available. Dimensions see page All dim. in mm Fig.1 Primary DN to DN 00 TEL: FAX: szss0@.com 1

14 TEL:07-79 FAX: Technical data converter Forw.-/reverse flow measurement An arrow in the display indicates the flow direction and a relayor optocoupler contact provides for an external indication of flow direction. F 9.00 F l/s m Display x-digit LCD dot matrix display with LED background lighting. The internal flow totalling is separate for both flow directions in different units. The flow volume display is in percent or different units or one free configurable unit. The engineering units listed below are set by means of the arrow buttons. The unit refers to Q max DN, Q max forw.- and reverse flow and the flow volume indication, if these are displayed in engineering units. In multiplex operation mode the flow volume in %, direct reading unit or bargraph, totalizer value, forw.- or reverse flow, tag number or current output value can be displayed in addition to the selection of the 1 st and nd line of the display.. Fig. Flow rate range Continually configurable between 0. and 1 m/s Accuracy 0. % of rate Reproducibility 0.1 % of rate Converter unit with display, -button keyboard separate Min. conductivity 0 µs/cm DN - DN µs/cm >DN Response time As a step function 0-99 % 1 s (= τ) at 1/, 7 1/ Hz excitation As step function 0-99 % 0. s (= τ) at 1 1/, 7 1 Hz excitation Power supply 0 V, 11 V AC + /-1 % / V AC + /-1 % 0/0 Hz ± % V DC -0/+ 0 %, residual ripple 1. Vp Magnet coil supply Standard: 1/, 7 1/ Hz (0/0 Hz line) Option: 1 1/, 1 Hz (0/0 Hz line) Power consumption VA (primary and converter) Ambient temperature -0 to + 0 C (see temperature diagrams page 9 and ) Electrical connection Terminal strip, screw-type DN to DN 000 screw-type conduit fitting Pg 1. Parameter input Within the hazardous area the input is carried out by means of the -button keyboard. Instrument housing remains closed. Unit Second Minute Hour Day Milliliter ml/s ml/min ml/h Liter l/s l/min l/h Hectoliter hl/s hl/min hl/h Megaliter Ml/min Ml/h Ml/day Cubicmeter m /s m /min m /h Imperial-gallon per igps igpm igph U.S.-mill.-gall. per/d mgd U.S.-gall. per gpm gph Barrel Brewery bbl/s bbl/min bbl/h Barrel bls/min bls/h bls/day Petrochemistrye Gram g/s g/min g/h U.S. Ton uton/min uton/h uton/day Kilogram kg/s kg/min kg/h Ton (metric) t/s t/min t/h Pound lb/s lb/min lb/h Kilo-gallon per* kgal/s kgal/min kgal/h * Free configurable unit, kgal factory set.! Note: The instrument meets the NAMUR recommendations, EMC guidlines for manufacturer and user of electrical instruments and equipment part 1, /9 and the CE regulations, 9//EWG (EN 001-1, EN 00). Data security means At failure or cur-off of power supply all data are stored in a NV- RAM for a period of more than years without requiring external power. Additional data security is offered by a serial EEPROM for the exchange or storage of process information. At exchange of the electronics and the memory module all parameters are accepted after pressing specific buttons, i.e. one time input of parameters at startup. 1 TEL: FAX: szss0@.com

15 TEL:07-79 FAX: Display F % F 0 m Pulse width ms In the 1st line the instantaneous forward flow rate in % or engineering units of the set flow rate range is displayed. In the nd line the integrated volume flow (incl. dimension) is displayed. The display is equipped with a LED background lighting. Pulse width adjustable between 0.0 ms and 000 ms. Language English Unit l/s Qmax The entry of data is possible in one of nine languages. Unit m totalizer The flow indication is in percent or in different engineering units. The flow totalling is displayed in different engineering units e.g. Liter, Hectoliter, Cubic meter, Tons (at instantaneous entry of the density). In addition there is the possibility to program an arbitrary unit. Error register Automatic self-monitoring with error diagnosis indication in the display and error message via contact output. All occurred errors are stored in the error register. Functional test Iout Damping.0000 s The functional test can be used the check the individual internal elements. All outputs can be simulated for start up and monitoring. The damping is adjustable at an excitation frequency of 1/ Hz from 1 s to 99 s. Low flow cut-off is adjustable from 0 to % of rate (valid for current-/frequency- and pulse output). Low flow volume % Pulse /m The pulse factor as a factor between and 00 can be multiplied with the displayed values. TEL: FAX: szss0@.com 1

16 TEL:07-79 FAX: Technical data converter Isolation in-/output The current- and pulse output are galvanically isolated from the input circuit and from one another. Output signals Standard Current output, configurable via terminals +/ Range 0 ma 0/ ma 0/ 0 ma Current output - 0 ma Load characteristic 0/ to 0 ma A/mm Load = 00 Ω 0 mawg 17 = 1 0 mawg 0 = 0. mawg = 0. Output characteristic Current Current Load resistance 100 Ω 00 Ω 00 Ω Design Max. data of safety intrinsically safe U Z 1, V I K 0 ma *) Li 00 µh Ci 1, nf L A =,7 mh CA = 1 nf Linear characteristic not intrinsically safe U M = 0 V I max R L Ohm A = 0. mm Current R-flow 0 % F-flow R-flow 0 % F-flow 0 % Flow 0 % 0 % Flow 0 % Current output (0- ma, 0- ma, Current output(- ma, -0 ma) 0-0 ma 0 ma ma R-flow 0 % F-flow 0 % Flow 0 % Current output with elevated zero (0-, -0 ma) Current (PELV) Rated current ma passive equipments *) other values upon request (see certificate of conformity) I max I min 0 ma 1 ma ma R-flow 0 % F-flow 0 % Flow 0 % Current output with elevated zero (-1, 1-0 ma) Contact in- and outputs via terminals V, V9 The type and function of the contact is selected through details for ordering.. Output/ input Systemalarmoutput Selectable contact output Contact input Signalling General alarm incl. monitoring of a CPU failure. The contact is open at alarm The following functions are software selectable: - General alarm: Selectable contact function 1) - Forw.flow signalling: Contact is closed at signalling - Limit value signalling: Max-/Min-, or Max/Min Alarm selectable Contact function selectable 1) - Empty pipe signalling ( DN ): Signalling of empty pipe. Contact function selectable 1) The current output is set to 0 % (, ma at -0 ma or 10 % of upper range current value. The pulse totalling is interrupted. - Flow rate range signalling: Contact is closed with flow rate range active. 1) Whether contact is closed or open at signalling is software selectable. The followig functions are software selectable: - ext. output cut-off: At empty pipe condition all output signals can be interrupted. - ext. totalizer reset: The internal totalizer values can be reset via an external NO contact. - ext. flow rate range changeover: Contact is closed with flow rate range active. Type/function of contact intrinsically safe not intrinsically safe function E9/C9 Relay function 9, 0 function P1, P Relay function P1, P function G, X1 function E9/C9 function P1, P function G, X1 Techn. data of intrinsically safe design of the system alarm and contact output: Used as a Namur contact DIN 19 (electrical position sensors) internal resistance approx 70 Ω. Resistance with openend contact > kω. Operating data Max. data of safety U M = 0 V (Namur) V U CE 0 V ma I CE ma U = V I = 0 ma Li = 00 µh Ci = nf Relay (Namur) U 0 V I < 1 ma U = V I = 1 ma Li = 00 µh Ci = nf TEL: FAX: szss0@.com

17 TEL:07-79 FAX: Technical data converter Techn. data of the not intrinsically safe design of the system alarm and contact output: Output for connection to PELV circuits per DIN/VDE 00 (protection by functional extra-low voltages with protective seperation). Operating data Max. data of safety U M = 0 V (PELV) V U CE 0 V ma I CE 0 ma U = 0 V I = 0 ma Techn. data of the intrinsically safe design of the contact input for the ext. output signal cut-off or ext. totalizer reset:. Operating data Max. data of safety U M = 0 V Terminal voltage: OFF 0 V U V ON V U 0 V U = V I = 0 ma L i = 00 µh C i = nf Techn. data of the not intrinsically safe design of the contact input for the ext. ouput signal cut-off or ext. totalizer reset:. Operating data Max. data of safety U M = 0 V (PELV) Terminal voltage: OFF 0 V U V ON V U 0 V U = 0 V R i =,9 kω Output signals options via terminals V1, V1 Scaled pulse output Scaled pulse output max. khz. Pulse factor can be multiplied with a factor between and 00 and the displayed values (1 pulse/m x 00). The pulse width is configurable from 0,0 ms to 000 ms. Design passive Type of contact/function intrinsically safe not intrinsically safe function G/1 function G/1 Techn. data of the intrinsically safe design of the pulse output: Used as a Namur contact per DIN 19 (electrical position sensors) internal resistance approx. 70 Ω. Resistance with opened contact > kω. Operating data Max. data of safety U M = 0 V (Namur) V U CE 0 V ma I CE ma U = V I = 0 ma L i = 00 µh C i = nf Relay (Namur) U 0 V I 1 ma U = V I = 1 ma L i = 00 µh C i = nf Techn. data of the not intrinsically safe design of pulse output: Outout for the connection to PELV circuits per DIN/VDE 00 (protection by function extra-low voltages with protective separation). Operating data Max. data of safety U M = 0 V (PELV) active V (PELV) V U CE 0 V 0 V U L V ma I CE 0 ma V U H 0 V 0 ma I L ma 0 ma I H 0 ma Load 10 Ω U = 0 V I = 0 ma I = 0 ma passive operating equipment Safety maximum voltage of power supply, for type of protection increased-safety type of protection EEx e II.. Terminal L, N 1L1, 1L Alaternating voltage supply Power supply Max. safety voltage 0 V ( %) 10 V ( %) 1 V ( %) V ( %) V ( %) Um = V Um = 1 V Um = 11 V Um =, V Um =, V Terminal Direct voltage supply Power supply Max. safety voltage L+, L- V ( %) Um = 1, V Relay function G/0 active V pulses function 9/ TEL: FAX: szss0@.com 17

18 TEL:07-79 FAX: Technical data converter HART-Protocol The HART-Protocol provides a communication means between a process control system, hand-held terminal and the electromagnetic flowmeter EMF in the field. With selected HART-Protocol communication the serial data link is not available. The digital communication occurs through use of an alternating voltage superimposed on the current output. This voltage does not effect the connected evaluation devices. This version only is possible with a current output of to 0 ma. Fig.17 Communication with HART-Protocol Communication mode FSK modulation on current output -0 ma in accordance with Bell 0 standards. Max. signal amplitude 1. ma pp. Current output load Min.: 0 Ω, max.: 00 Ω Signal cable Length and type: (also see page ) Baud rate 100 Baud Log. 1: 100 Hz; Log. 0: 00 Hz Limitation of parameters: Submenu data link Not available 1 TEL: FAX: szss0@.com

19 TEL:07-79 FAX: Interconnection diagram G X1 E9 C9 G G 0 1L1 1L Low voltage 0/0 Hz P1 P 9 L+ L Direct voltage V V9 V1 V1 + L N Alternating voltage 0/0 Hz 1) Contact output/contact input, terminals V/V9 a)* The function to be signalized via cotact output is software selectable: General alarm, limit alarm, empty pipe, forw.-/reverse flow direction, flow rate ranges autom. changeover, preset counter (start and stop by button) Function Type of contact Operating data intrinsically safe not intrinsically safe P1/P Relay contact U 0 V, I 1 ma b) System alarm via contact ouput Function Type of contact Operating data intrinsically safe not intrinsically safe 9/0 Relay contact U 0 V, I 1 ma c) Selectable contact input, terminals G, X1 The function to be signalized via contact input is software selectable: External output signal cut-off, ext. totalizer reset, ext. flow rate changeover ) Scaled pulse output, active or passive, pulse width adjustable from 0.0 ms to 000 ms, terminals V1/V1. Function Type of contact Operating data intrinsically safe not intrinsically safe G/0 Relay U 0 V I 1 ma 9/ V active 0 V U L V V U H 0 V 0 ma I L ma 0 ma I H 0 ma load 10 Ω ) Current output, settable, terminals +/ ) Power supply: see nameplate *) Forw. flow direction is selected. Note: Safety data see page /17. V U CE 0 V ma I CE ma E9/C9 V U CE 0 V ma I CE ma V U CE 0 V ma I CE 0 ma V U CE 0 V ma I CE 0 ma Function Type of contact Operating data intrinsically safe not intrinsically safe G/X1 active input OFF 0 V U V ON V U 0 V R i = 1,0 kω G/1, passive V U CE 0 V ma I CE ma Current output 0 ma 0/ ma 0/ 0, 00 ma, 10 ma 1) ) ) ) Load 100 Ω 00 Ω 00 Ω OFF 0 V U V ON V U 0 V R i =,9 kω V U CE 0 V ma I CE 0 ma Fig.1 Interconnection diagram TEL: FAX: szss0@.com 19

20 TEL:07-79 FAX: Allowable combinations Type of explosion protection Direct current output Contact input/output terminals V/V9 intrinsically safe + Contact input function G/X1 + Contact output, optocoupler function E9/C9 or function P1/P + Contact output, relay contact function 9/0 or function P1/P not intrinsically safe + Contact input function G/X1 + Contact output function E9/C9 or function P1/P Pulse output terminals V1/V1 without Relay contact, function G/0 passive, function G/1 passive without, function G/1 passive without Relay contact, function G/0 passive without active V, function 9/, function G/1 passive without active V, function 9/, function G/1 passive! Note: At ambient temperatures higher than 0 C (1 F) the thermal stability of the connecting leads must be at leads 0 C (17 F). 0 TEL: FAX: szss0@.com

21 TEL:07-79 FAX: Connection examples (typical) of peripherals for explosion protected design Scaled pulse output passive, relay (option) Scaled pulse output passive, optocoupler (option) internal V1 (0) external V+ internal V1 (1) external R L * V+ V1 (G) V1 (G) Scaled pulse output active (option) V+ internal V1 () V1 (9) external! Note: According to the selected explosion-protected type the circuits are to carry out intrinsically safe or not intrinsically safe and the peripheral intruments must be accordingly selected and installed. *R L U CE I CE Contact output optocoupler internal V9 (C9)/(P) V (E9)/(P1) or Contact output relay external internal +U R L * V9 (0)/(P) V (9)/(P1) external Direct current output internal 0/-0 ma 0/- ma 0- ma 0-, -0 ma -1, 1-0 ma + external At system alarm (function E9/C9 opened. At forw. flow-/flow rate range signalling, (flow rate range, function P1/P) closed. The circuit state at general alarm, limit alarm and empty pipe is software selectable. At system alarm (function 9/0) opened. At forw. flow-/flow rate range signalling, (flow rate range, function P1/P) closed. The circuit state at general alarm, limit alarm and empty pipe is software selectable. Contact input Ext. output signal cut-off With closed contact the outputs are switched off. Ext. totalizer reset: With closed contact the internal totalizer value is set to zero. Ext. flow rate range changeover: With closed contact the flow rate range is active. internal R i V9 () V (G) external V Fig.19 Connection examples for peripherals TEL: FAX: szss0@.com 1

22 TEL:07-79 FAX: Details for ordering flanged design In addition to the order number please supply the following information: Fluid, fluid temperature, operating pressure, flow rate range, type of pipeline (grounding ring, grounding electrodes) 1) Order number DX711 Conductivity µs/cm Design level (specified by BFP) * Laid length Series 000 (short design) standard Series 00 (only for replacement) Liner material Hard rubber (DN 1 to DN 000) Soft rubber (DN 0 to DN 000) PTFE (DN to DN 00) PFA (DN to DN 0) Others Meter size (inch) DN 1/ DN / DN 1/ DN / DN / DN 1 1/ DN 0 / DN 1 DN 1 1/ DN 0 1 1/ DN 0 DN 1/ DN 0 DN 0 DN 1 DN 10 DN 00 DN 0 DN 00 1 DN 0 1 DN 00 DN 00 0 DN 00 DN 700 DN 00 DN 900 DN 00 0 DN 100 DN 0 DN 00 DN DN Pressure rating DIN PN. DIN PN DIN PN DIN PN DIN PN DIN PN 0 JIS K DN 0 ANSI 10 lb (laid length Series 00) ANSI 00 lb (laid length Series 00) Flange material Steel Stn. stl. 1.1 ( DN 10) Stn. stl Others upon request 1) If one grounding ring is required (see order no.). If grounding electrodes are required, please supply additional order information. The standard grounding ring material is stn. stl The grounding ring material is stn. stl Other materials upon request. A C A B E K Z A B C D E F G P Q 1 9 continued next page TEL: FAX: szss0@.com

23 TEL:07-79 FAX: Details for ordering flanged design Order number DX711 Flange accessory None A Protective rings stn. stl B Grounding ring stn. stl ) C Protective flanges stn. stl (only with DIN/ANSI flanges, laid length Series 00) ) D Electrode design Standard Removable (HU) only stn. stl ) Electrode material Stn. stl (standard w. hard-/soft rubber lining) B Hastelloy B- C Hastelloy C- (standard w. PTFE/PFA lining) D Titaiumn E Tantalum F Platinum-Iridium H Stn. stl. 1.9 ) R Others Z Certification EEx (standard) D EEx and DIN 009.1B ) G EEx and certified: Cold water/waste water H Enclosure classification IP 7 Temperature range Ambient temperature 0 C Ambient teperature 0 C Ambient temperature 0 C Line frequency / Excitation frequency 0 Hz / 1/ Hz (f/) 0 Hz / 7 1/ Hz (f/) Nameplate German English French Others Software level Generation User in-/outputs: Intrinsically safe i (Namur) terminals V/V9 + terminals V1/V1 Contact input selectable + pulse relay Contact input selectable + pulse opto Contact output alarm, relay + pulse relay Contact output selectable, relay 7) + pulse relay Contact output alarm, opto + pulse opto Contact output selectable, opto 7) + pulse opto User in-/outputs: Not intrinsically safe e (PELV) terminals V/V9 + terminals V1/V1 Contact input selectable + pulse opto Contact input selectable + pulse active Contact output alarm, opto + pulse opto Contact output selectable, opto 7) + pulse opto Contact output alarm, opto + pulse active Contact output selectable, opto 7) + pulse active Operating mode Continuous flow measurement Additional feature None HART-Protocol Power supply 0 V; 0/0 Hz 11 V; 0/0 Hz V; 0/0 Hz V; 0/0 Hz V/ V DC D A A C B C E F H ) Grounding ring attached to one side of flange, >DN 00 and other materials upon request. ) Protection flanges, dimensions L + 0 mm DN 0, L + mm from DN 0 and up. ) Only hard rubber lining DN 00. ) Only CIP (cleaning in place). ) Certificate for meter tube and flange, DN -00 without protective flange. For other meter sizes, please supply additional ordering details. 7) Selected is forward flow signalling. TEL: FAX: szss0@.com

24 TEL:07-79 FAX: Details for ordering Test simulator, adaptor Test simulator for converter unit Additional operator unit ( button keyboard) Part No. D7A1U01 upon request Order number XC Without (at order only of the adaptor) Setting of the flow signal With a -digit switch, in 00 steps Others Power supply 1) Without (at order only of the adaptor) Grounding-type plug (Schuko) 1 V to 0 V 0/0 Hz Banana plug ( mm) V to V AC/DC USA-plug for 1 V to 0 V 0 Hz Others Additional feature None Adaptor for converter 0XM000 Others Design level (specified by BFP) * Nameplate German English French Others 1) Power supply is used to supply the converter PC-Software 1.) Products selection program Select the required EMF using the Bailey-Fischer & Porter FlowSelect program. The selection program for all flowmeters with all technical datas, includes FlowCalc a flow rate Calculation program. PC-Requirements:, MB RAM, 7 MB free hard drive, colors, Windows.1, Windows 9 or Windows NT, 1/ -Disk format at no charge..) Smart Vision The PC-Operator level for HART-Communication. Pricing upon request. Bailey-Fischer & Porter reserves the right to make changes which serve engineering refinements without notice. Products: Variable Area Flowmeter z Electromagnetic flowmeter z Vortex and Swirlmeters z Mass-flowmeters z Converters for Pressure and Differential Pressure z Dispensing Systems for Gases and Liquids z Ultrasonic Concentration Measurements Bailey-Fischer & Porter GmbH 7070 Göttingen Tel. 01/90-0 Fax 01/ Elsag Bailey Process Automation certified per DIN EN ISO TEL: FAX: szss0@.com

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