FXP DATASHEET JUNHO 2013
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1 FXP DATASHEET JUNHO 01
2 Data Sheet D1S0U0 Rev. 0. FXP000 (PARTI-MAG II) Electromagnetic Flowmeter Model DP1F and DPF Measurement made easy For full and partially full pipelines (free and surface pipelines) Precise measurement of the flowrate of liquids and slurries with electrical conductivities of at least 0 ms/cm up to.000 ms/cm High accuracy also with partially for full pipes Especially suitable for flow metering in partially full pipelines (e.g. for rain retention basins, clarifier in- and outflow) In the partially full flow regime it is unaffected by backflow Short in- and outlet straight sections: x DN upstream and x DN downstream of the meter Minimum required fill level % of the flowmeter diameter Meter size range from DN 10 to DN 000 User friendly parameter entry directly at the converter Factory calibrated Automatic system monitoring with error diagnostics in clear text plus an output alarm signal Absolute zero stability Maximum measuring error With partially for full pipes: % or % of rate With full pipe: 1 % of rate
3 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Accuracy, Reference Conditions and Functional Description Reference Conditions Based on EN 9 Fluid Temperature 0 C ( F) ± K Ambient Temperature 0 C ( F) ± K Supply Power Line voltage per Instrument Tag U N ± 1 % Straight Pipe Installation Requirements Upstream > x DN, Downstream > x DN, DN = Flowmeter primary diameter Warm Up Time 0 min Accuracy: (Pulse Output) Full Pipe Q > 0.0 Q maxdn 1 % of rate Q < 0.0 Q maxdn Q maxdn Partially Full Pipe (v > 0. m/s); (h > 0.1 x DN) (for DN 10 only: h > 0.1 x DN) Q > Q ü % of rate Q min < Q < Q ü % of rate where Q ü = 0.0 Q maxdn and Q min = Q maxdn (For values of Q maxdn see Table Page ) Functional Description The basis for the electromagnetic flowmeter is Faraday's law of induction. A conductive fluid flows through a pipe perpendicular to the direction of a magnetic field (see Fig. ). U E ~ B D v The voltages generated in the fluid are measured by a number of electrodes pairs. They are arranged in the meter tube in such a manner that for each cross sectional flow area (full or partially full) the electrode pair with the optimal weighting factor is utilized for the measurements. One additional electrode is integrated for full pipe detection. In addition to the optimized measurement of the average flow velocity the four electrode pairs are also utilized for determining the fill level through utilization of a superimposed ac field. The signal voltage U E is corrected using the partially full characteristic curves stored in the converter and converted into a flowrate proportional output signal. Current Output Effects Same as pulse output plus ± 0.1 % of rate Messunsicherheit [% v. M.] Messunsicherheit [% v. M.] [% of rate] [% of rate] Messunsicherheit Partially full pipe bei accuracy Teilfüllung (in (in Anlehnung accordance an to DIN 199) 11 Q min min Qü Qü Q maxdn Messunsicherheit Full pipe accuracy bei Vollfüllung 11 U E = Signal voltage B = Magnetic induction D = Electrode spacing v = Average flow velocity qv = Volume flowrate k = Correction factor Fig. Measurement Principle U E ~ B D v D π qv = v k U E k ~ qv Q min min 0,0 0.0 Q maxdn Q maxdn Fig. 1 Accuracy of the FXP000 (PARTI-MAG II)
4 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Technical Data: Flowmeter Primary Flowrate Nomograph for Full Pipelines l/min m /h l/s Fig. Flowmeter Primary Meter Size, Pressure Rating and Flow Ranges Meter Size DN Standard Pressure rating PN /1 /1 /1 /1 /1 /1 Min. Range Setting 0 to. l/s 0 to 1.0 l/s 0 to.0 l/s 0 to. l/s 0 to. l/s 0 to.0 l/s 0 to 91.7 l/s 0 to 1. l/s 0 to 1. l/s 0 to 7.0 l/s 0 to. l/s 0 to 7 l/s 0 to 90 l/s 0 to 70 l/s 0 to 00 l/s 0 to 10 l/s 0 to 190 l/s Max. Range Setting Q maxdn 0 to 1.7 l/s 0 to 00 l/s 0 to 00 l/s 0 to 7 l/s 0 to 917 l/s 0 to 10 l/s 0 to 1 l/s 0 to 7 l/s 0 to 7 l/s 0 to 000 l/s 0 to 7 l/s 0 to 700 l/s 0 to 1100 l/s 0 to 1000 l/s 0 to 0000 l/s 0 to 000 l/s 0 to 1700 l/s Sizing Information For the selection of the nominal sizes, observe that the meter tube for minimum flow must be at least % filled. Otherwise the nominal size is to be reduced. The filling height at max. flow should be well above 0 %. The filling height at normal flow which occurs most of the time should be above 0 % at minimum. The conductivity must lie in a range from 0 μs/cm to ms/cm. For selecting the optimum flowmeter size for your application a sizing program is available on a 1/ disc for IBM compatible PC's. All required calculation values are integrated in the program. Volume Flowrate DN 100 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! Notice When the level drops below the minimum allowable value of % of the flowmeter primary diameter, (1 % only for DN 10), an automatic shut off of the output signals occurs % Q maxdn Fig. Flowrate Nomograph for DN 10 to DN 000
5 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Technical Data Model DP1F, DPF Min. allow. Pressure as a function of Fluid Temperature Liner Meter Size P Operation mbar abs. Hard rubber (... ) ( ) Soft rubber (... ) ( ) PTFE KTW approved (... ) Max. Allowable Ambient Temperature as a function of Fluid Temperature For flowmeters with carbon steel flangers Y 0 [ C] 10 [ F] at T Operation 0 < 0 C (17 F) 0 < 0 C (17 F) 0 < 0 C (10 F) 0 < 0 C (10 F) < 0 C ( F) < 0 C (17 F) < 0 C (17 F) Materials, Flowmeter Primary Parts Standard Options Liner PTFE, PFA, hard rubber, soft rubber Signal and ground electrodes for Hard rubber Soft rubber SS 1.71 [1Ti] Process Connection Materials Hast. B- (.00), Hast. C- (.), Titanium, Tantalum, Platinum-Iridium, 1.9 [90L] PTFE Hast. C- (.) SS1.71[1Ti] Hast. B- (.00) Titanium, Tantalum, Platinum-Iridium, 1.9 [90L] Ground plate SS 1.71 [1Ti] Upon request Protection plate SS 1.71 [1Ti] Upon request Parts Standard Options Flange DN DN 00 (... 1 ) Steel (galvanized) SS1.71[1Ti] DN 0... DN 00 ( ) Steel (painted) SS1.71[1Ti] Fig For flowmeter with stainless steel flangers Y 0 [ C] 10 [ F] 0 [ C] 17 [ F] X Parts Standard Options Housing DN DN 00 (... 1 ) DN 0... DN 00 ( ) Connection box Two-piece cast aluminum housing, painted, paint coat 0 μm thick, RAL 900 Welded steel construction, painted, paint coat 0 μm thick, RAL 900 Cast aluminium, painted, 0 μm thick, frame: dark gray, RAL701, cover: light gray, RAL 900 Meter tube SS 1.01 [0] PG-Connector Polyamide Fig. Y = Ambient temperature C/ F X = Fluid temperature C/ F 0 [ C] 17 [ F] Notes regarding min./max. measuring temperature Liner Flange Min. Temp. Max. Temp. material Hard rubber Steel - C (1 F) 0 C (17 F) stainless steel -1 C ( F) 0 C (17 F) 1.71 Soft rubber Steel - C (1 F) 0 C (10 F) stainless steel -1 C ( F) 0 C (10 F) 1.71 PTFE Steel - C (1 F) 0 C (17 F) stainless steel C (-1 F) 0 C (17 F) X Storage Temperature C ( F) Protection Class per EN 09 IP 7 IP (optional, max. immersion depth: m) Pipeline Vibration Following EN 00-- Converter In the range of - Hz max. 0.1 mm deflection Flowmeter primary In the range of - Hz max. 0.1 mm deflection In the range of -10 Hz max. g acceleration Designs The flanged flowmeters comply with the installation lengths defined in VDI/VDE 1, ISO 19 or DVGW (W0, Design WP, ISO 0 short).
6 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Electrical connection Screw terminals Cable gland DN DN 000 Excitation cable PG1. Signal cable PG1 Explosion protection Sensor DPF II G EEx em [ib] IIC T, EC-type Examination Certificate TÜV 97 ATEX 119X Ex-Data for model DPF The maximum allowable fluid temperatures C ( F) are listed in the following table as a function of the maximum allowable ambient temperature and the flowmeter size: Flowmeter size DN Temperature class T 0 (1 F) 0 (17 F) The max. allowable fluid temperature 0 C (17 F) is determined by the thermal fuse for the coils. Allowable ambient temperature primary C ( F) Material load for flanged design model DP1F / DPF Limits for the allowable fluid temperature (TS) and allowable pressure (PS) are a function of the liner and flange materials of the flowmeter (see instrument name plate). Temperature limits Max. allowable ambient temperature C ( F) Max. allowable fluid temperature C ( F) 10-0 T 0 (10 F) 0 (17 F) 10-0 T 0 (1 F) 0 (17 F) 10-0 T 0 ( F) 0 (17 F) T 0 (10 F) 0 (17 F) T 0 (1 F) 0 (17 F) T 0 ( F) 0 (17 F) T 0 (10 F) 0 (17 F) Liner Flange Min. Temp. Max. Temp. material Hard rubber Steel - C (1 F) 0 C (17 F) Stainless steel -1 C ( F) 0 C (17 F) 1.71 Soft rubber Steel - C (1 F) 0 C (10 F) Stainless steel -1 C ( F) 0 C (10 F) 1.71 PTFE Steel - C (1 F) 0 C (17 F) Stainless steel C (-1 F) 0 C (17 F) DIN-Flange SS 1.71 [1Ti] to DN 00 (") Fig. 7 ASME Flange SS1.71[1TI] to DN 00 (1") (CL10/00) to DN 00 (0") (CL10) Fig. PS [bar] PS [bar] PN 0 PN PN 1 PN DIN-Flange Steel to DN 00 (") PS [bar] CL00 CL10 0 PN 0 PN PN 1 PN [ C] [ F] [ C] [ F] [ C] [ F] TS TS TS Fig. 9
7 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 ASME flange carbon steel to DN 00 (1") (CL10/00) to DN 00 (0") (CL10) PS [bar] Fig CL00 CL [ C] [ F] TS DIN-Flange carbon steel DN 700 (") to DN 00 (0") PS [bar] Fig DN 700 ( ) PN 1 DN 900 ( ) PN 1 DN 00 ( ) PN 1 DN 00 (0 ) PN 1 DN 900 ( ) PN DN 00 ( ) PN DN 700 ( ) PN DN 00 (0 ) PN [ C] [ F] TS DIN-Flange SS 1.71 DN 700 (") to DN 00 (0") PS [bar] Fig DN 700 ( ) PN 1 DN 900 ( ) PN 1 DN 00 ( ) PN 1 DN 00 (0 ) PN 1 DN 900 ( ) PN DN 00 ( ) PN DN 700 ( ) PN DN 00 (0 ) PN [ C] [ F] TS
8 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Dimensional Drawing Flowmeter Primary, DN 10 to DN 0, DIN-flanges Screw-Type Conduit Fittings PG 1. Screw-Type Conduit Fittings PG 1 E E G A L b d D H All Dimensions in mm Flange Dimensions Instrument Dimensions Weight approx. kg DN PN D d b A L L 1) L ) G E F H ) Standard with one grounding plate SS No Other materials and DN 00 and up upon request. See Note section 9.1 and Footnote Ordering Information Primary. For hard rubber liners + mm for gasket. ) With protection flange: Protection flanges provide the ground function, grounding plate not required. For hard rubber liners + mm for gasket Fig. 1 Flowmeter Primary DN 10 to DN 0, DIN-flanges 7
9 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Dimensional Drawing Flowmeter Primary, DN 00 to DN 00, DIN-flanges Screw-Type Conduit Fittings PG 1. Screw-Type Conduit Fittings PG 1 F E G b A L d D All Dimensions in mm Flange Dimensions Instrument Dimensions Weight Protection Flange approx. kg without ) with ) DN PN D d b A L L G E F ) > DN 00 upon request ) Grounding plate DN 00 and up upon request. See Note Grounding section 9.1 and Footnote Ordering Information Flowmeter Primary ) Protection flanges for PTFE-Liners provide the ground function, grounding plate not required Upon request Fig. 1 Flowmeter Primary DN 00 to DN 00, DIN-flanges
10 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Dimensional Drawing Flowmeter Primary, DN 10 to DN 900, ASME-flanges Screw-Type Conduit Fittings PG 1. Screw-Type Conduit Fittings PG 1 F E G b A L d D All Dimensions in mm Meter Size Instrument Dimensions Flange Dimensions ASME CL 10 DN Inch A L 1) ) E F G D d b ISO 19 Old inst. lenght Weight approx. kg ) If a grounding disk is installed (attached by one side to the flange), the dimension L is increased by mm. See Note Grounding section 9.1 and Footnote Ordering Information Primary ) If protective plates are installed (attached on both sides of the flange), the dimension L is increased by mm Comments Drawings < DN 0 upon request Fig. 1 Flowmeter Primary DN 10 to DN 900, ASME-flanges 9
11 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Installation Requirements and Grounding Flowmeter Primary Electrode Axis The electromagnetic flowmeter for metering in partially full pipelines is to be installed axisymmetrically so that the upper electrode pair is exactly horizontal. An ideal installation with horizontal electrodes is shown in Fig. 1. A level has been installed in the customer connection box on the flowmeter primary. It is an additional aid in assuring that the flowmeter primary is correctly leveled. x DN x DN Electrode Axis Upper Electrode Pair Fig. 17 In- and Outlet Sections Pipeline Transitions Transitions from other pipeline sizes or geometries should be made so that the in- and outlet section requirements mentioned previously are maintained. Steps in the bottom of the pipeline are to be avoided. Fig. 1 Electrode Axis In- and Outlet Sections The flow profile within the meter must be axisymmetric when the pipe is full. The flow stream must be free of swirl and pulsations. No standing eddies should exist within the meter, such as may occur after elbows or tangential entries. A hydraulic jump is to be avoided in the metering section. The max. allowable pipeline slope is %. Slope changes within the in- and outlet sections are to be avoided. The optimal gradient lies in a range between 0. to 1. %. Note The following installation requirements are to be observed: A straight section with the same diameter as the flowmeter and a length of at least times the diameter is to be installed upstream and one times the diameter downstream (Fig. 17). Sharp edges in the vicinity of the flowmeter are to be avoided. No additional inlets or outlets are to exist in the inlet section. For cleaning and examination purposes a inspection opening is recommended (see Fig. 17). Grounding For satisfactory operation of an electromagnetic flowmeter grounding is essential. The ground screws on the flowmeter primary are to connected to the protection ground in accordance with VDE 00, Part 0. For technical reasons this potential should be identical to that of the fluid. For plastic pipes or pipes with electrically insulating liners the ground connection is made using grounding rings or ground electrodes. Flowmeters with hard or soft rubber liners include in the flange area a conductive element for grounding. Therefore additional grounding rings or grounding electrodes are not required (see Note: Ordering Information Page 11). When stray currents are present in the fluid and a PTFE or PFA lined flowmeter primary is installed grounding rings or grounding electrodes at the in- and outlet ends of the meter are recommended. With model DP (Ex-design), grounding terminals and primary flanges have to be connected to Potential Equalization. Sizing Information For selecting the optimum meter size a sizing program is available on a 1/ disc. All required calculation values are integrated in the program. It is recommended that a plan of the installation site be provided to ABB Automation Products during the planning phase for evaluation.
12 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Technical Data Converter 0XP000 Fig. 1 Converter Field Mount Housing and 19 -Rack Mount Housing Electrical Connections Screw terminals x Cable connectors Pg 1. 1 x Cable connector Pg 1/1 for signal cable Weight Field mount housing approx. 9. kg 19"-Insert cassette approx.. kg Signal Cable/Excitation Cable The max. cable length between the flowmeter primary and the converter is 0 m. Signal and excitation cable are preassembled and connected to the converter prior to shipment (field mount housing). Ordering Number see Page 1. Display x 1 character dot-matrix display in Super-twisted technology with LED background lighting. The flow direction is indicated in the 1 st line and the instantaneous flowrate in % of the selected flow range or in engineering units. In the nd line the value of the integrated flow is displayed in engineering units. Separate totalizer values for each flow direction, 7 digit plus overflow counter. Flow Range Continuous, 0. m/s to m/s Conductivity 0 μs/cm Response Time 0-99 % Step function (equiv. to τ ) > s Damping Settings to 00 s Supply Power 11/0 V AC ± % V AC ± % 0/0 Hz ± % Ripple < 1. Vp Magnetic Field Excitation 1/ Hz, 7 1/ Hz (0/0 Hz Power supply) Power Consumption DN 10 to DN 000 (... 0 ) < 0 VA (primary including converter) Ambient Temperature C ( F) Protection Class per EN 09 IP for field mount housing IP 00 for 19" rack mount design Design Stainless steel wall mount housing 19"-Insert, 17 mm deep, TE, HE V % V 0 m Parameter Settings Entry is made from the keypad, menu controlled in clear text dialog. All parameter settings, including totalizer values are stored for a year period in EEPROMs. The meter location parameters can be uploaded by pressing a button after a converter exchange. Forward/Reverse Metering The direction is indicated in the display by arrows and over a contact output, optocoupler design, for an external alarm. Input Signals External Zero Return Passive or active over operating contact (closer). When the pipeline empties all output signals can be turned off. External Totalizer Reset Passive or active over operating contact (closer). The internal totalizer values can be reset. Optocoupler: 1 V U CE 0 V DC, R i = 000 Ohm. 1
13 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Output Signals Isolation In/Output All in- and outputs are isolated from the signal circuit and each other. Current output 0-0 ma Configurable Contact Outputs The following functions can be software selected for the contact outputs: No function, Empty pipe, Forward/reverse flow direction signal Max. alarm or min. alarm for flowrate Optocoupler: 1 V < U CEH < 0 V; 0 V < U CEL <. V 0 ma < I CEH < 0. ma; ma < I CEL < 1 ma Current Output 0/-0 ma, load < 00 Ω 0/- ma, load < 000 Ω Can be switched by the software Current I max Current I max Serial Interface The serial interface is available in Rs configuration. RS V pp = V. input impedance: 1 kω, max. cable length 100 m. Baudrate Baud. Max. instruments in parallel on a single bus. A shielded data cable with individually twisted pairs is recommended. Terminals: V1, V, V, V; Function T-, T+, R-, R+. Reverse flow 0 % Forward flow 0 % Flowrate 0 % Current output (0- ma, 0- ma, 0-0 ma) I min Reverse flow 0 % Forward flow 0 % Flowrate 0 % Current output (0- ma, -0 ma) Nr. 1 RS Current 0 ma Current 0 ma ma Reverse flow 0 % Forward flow 0 % Flowrate 0 % Current output with elevated zero (0--0 ma) 1 ma ma Reverse flow 0 % Forward flow 0 % Flowrate 0 % Current output with elevated zero (-1-0 ma) Nr. RS Serielle Schnittstelle RS Scaled Pulse Output Scaled pulse output, separate for each flow direction, max. count frequency khz. The pulse factor can be set between and 00. Pulse width can be set between 0.1 and 000 ms. Active Voltage pulses V rectangular, load > 10 Ω. Option Passive, optocoupler: V < U CE < 0 V DC ma < I CE < 0 ma, f max khz Contact Output for System Monitoring During an error condition the internal system monitor displays a clear text error message and activates a contact output. Select optocoupler or relay (opens for alarm). Errors encountered are stored in an error register. Optocoupler: 1 V < U CEH < 0 V; 0 V < U CEL <. V 0 ma < I CEH < 0. ma; ma < I CEL < 1 ma Relay: max. W, max. 0 ma, max. 0 V DC Fig. 19 Communication with RS interface Communication via Modem If the converter is equipped with a serial data link it can be connected to a standard modem (Hayes compatibel). All parameters of the converter can be interrogged resp. changed. 1
14 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Dimensional Drawing Converter, Modell 0XP000 Screw-Type Conduit Fittings x PG 1, 1 x PG 1/1, ! Note The upper section of the converter housing hinges open to the right. The latching screw for the upper section is located on the left side of the housing.therefore space of at least 0 mm must be provided on the left side and 0 mm on the right side of the housing. All dimensions in mm Fig. 0 Field Mount Housing Converter 1, 1, 11, 7,1 1, 1, ,7,1 Min. space for cable entry All dimensions in mm Fig Rack Mount 1
15 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Interconnection Diagram for standard design, Primary DP1F with converter 0XP000 Converter Model 0XP000 ) ) 7 E9 C9 L+ L- PE R ) T- T+ R- R L11L PE L N PE G 1 U g Va Vb VcVd + g V1 V V V P1 P P P V V MONO MU NU 9E 9S E S 7E 7S E S E S E S E S S 1 1S 1) ) ) 7) ) ) 9) SE MONO MU NU 9E E 7E E E E E 1 SE Flowmeter primary DP1F 1) Supply Power, see Instrument Tag ) Contact Input (Optocoupler), 1 V < U < 0 V, R i = 000 Ω, Function software selectable for: a) External zero return b) External totalizer reset Optocoupler contact input control: passive, over operating contact (closer). Install jumper G/g for this mode active, over terminals G/ or G/1. Jumper is not to be installed. ) Scaled Pulse Output, active V DC, load > 10 Ω, f max < khz Terminals g and Va, Function 9 and 11 forward Terminals g and Vc, Function 9 and 11R reverse ) Scaled Pulse Output, passive, Optocoupler V < U CE V DC, ma < I CE < 00 ma; f max khz Terminals Va and Vb, Function and forward Terminals Vc and Vd, Function 7 and reverse ) Current Output, Terminals +/-, selectable a) 0/-0 ma, load < 00 Ω or b) 0/- ma, load < 000 Ω ) Interface RS 1), Terminals: g, V1, V, V, V; Function: Shield, T-, T+, R-, R+ 7) Two Contact Outputs (optocoupler), Function software selectable: Forward/reverse direction signal, min./max. alarm for flowrate, Optocoupler: 1 V < U CEH < 0 V; 0 V < U CEL <. V 0 ma < I CEH < 0. ma; ma < I CEL < 1 ma Terminals: P1, P, P, P; P1/P = emitter, P/P = collector ) Alarm Output, relay contact < W; < 0 ma; < 0 V DC, opens at alarm, Terminals V, V, Function 9/0 or Alarm output, optocoupler, same specifications as ), opens at alarm, Terminals V, V, Function E9/C9 9) Shielded signal cable, connected to converter when shipped ) Shielded excitation cable, connected to converter when shipped Note 1) When using data link RS a shielded data cable with individually twisted pairs is recommended. Colour-Code of signal and excitation cable 1 brown red E blue MO red E white Signal cable 9E violet Excitation cable MU blue E green White non connection 7E black Co-shield SE Stl-shield E orange E yellow Co-shield non connection SE Stl-shield Fig. Converter 0XP000 17
16 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Interconnection Diagram for ex-design, Primary DPF with converter 0XP000 Converter Model 0XP000 ) ) 7 E9 C9 L+ L R ) T- T+ R- R L11L L N G 1 U g Va Vb Vc Vd + g V1 V V V P1 P P P V V MONO MU NU 9E 9S E S 7E 7S E S E S E S E S S 1 1S 1) ) ) non hazardous area 7) ) ) 9) Function ground hazardous area Category G (zone 1) SE MONO MU NU 9E E 7E E E E E 1 SE PA Flowmeter Primary DPF Potential Equalization 1) Supply Power, see Instrument Tag ) Contact Input (Optocoupler), 1 V < U < 0 V, R i = 000 Ω, Function software selectable for: a) External zero return b) External totalizer reset Optocoupler contact input control: passive, over operating contact (closer). Install jumper G/g for this mode active, over terminals G/ or G/1. Jumper is not to be installed. ) Scaled Pulse Output, active V DC, load > 10 Ω, f max < khz Terminals g and Va, Function 9 and 11 forward Terminals g and Vc, Function 9 and 11R reverse ) Scaled Pulse Output, passive, Optocoupler V < U CE V DC, ma < I CE < 00 ma; f max khz Terminals Va and Vb, Function and forward Terminals Vc and Vd, Function 7 and reverse ) Current Output, Terminals +/-, selectable a) 0/-0 ma, load < 00 Ω or b) 0/- ma, load < 000 Ω ) Interface RS 1), Terminals: g, V1, V, V, V; Function: Shield, T-, T+, R-, R+ 7) Two Contact Outputs (optocoupler), Function software selectable: Forward/reverse direction signal, min./max. alarm for flowrate, Optocoupler: 1 V < U CEH < 0 V; 0 V < U CEL <. V 0 ma < I CEH < 0. ma; ma < I CEL < 1 ma Terminals: P1, P, P, P; P1/P = emitter, P/P = collector ) Alarm Output, relay contact < W; < 0 ma; < 0 V DC, opens at alarm, Terminals V, V, Function 9/0 or Alarm output, optocoupler, same specifications as ), opens at alarm, Terminals V, V, Function E9/C9 9) Shielded signal cable, connected to converter when shipped ) Shielded excitation cable, connected to converter when shipped Colour-Code of signal and excitation cable 1 brown red E blue MO red E white Signal cable 9E violet Excitation cable MU blue E green 7E black Co-shield SE Stl-shield E orange E yellow Co-shield non connection Note 1) When using data link RS a shielded data cable with individually twisted pairs is recommended. The rated voltage U M for the in- and outputs is 0 V! White non connection SE Stl-shield Fig. Converter 0XP000 1
17 Electromagnetic Flowmeter FXP000 (PARTI-MAG II) for Full and Partially Full Pipelines (Free and Surface Pipelines) Model DP1F and DPF D1S0U0 Interconnection Examples for Peripherals Scaled pulse output active Scaled pulse output passive, Optocoupler V+ internal Vc (11R) g (9) external internal Vd () Vc (7) external R B * V+ V+ Va (11) Vb () R B * V+ g (9) Va () internal 0/-0 ma/ 0/- ma Current output + external Configurable contact outputs internal external R B * +U P P R B * +U P P1 Closed when activated internal Alarm output Relay V (0) V (9) external Opens at alarm Alarm output Optocoupler internal V (C9) V (E9) external R B * +U U CE *R B I CE Opens at alarm Active control for external Totalizer reset, external zero return internal external Contact 1 1 Passive control for Totalizer reset, external zero return internal external g G Contact +U (- V) -U U 1 Contact 1 Contact 1: Contact : external zero return for example Switch for ext. Totalizer reset G Contact Fig. Interconnection Examples for Peripherals 19
18 Contactos/Contacts: Comercial/Commercial: Fernando Mena Costa Tel: (+1) 1 00 Fax: (+1) 1 09 Assistência/Service: Patricia Costa ppcosta@bhb.pt Tel: (+1) 1 00 Note: ABB the owner of this document, reserves the right to make technical changes or modify the contents of this document without prior notice. With regard to purchase orders, the agreed particulars shall prevail. ABB does not accept any responsibility whatsoever for potential errors or possible lack of information in this document. Copyright 011 ABB. All rights reserved
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