PROFIBUS PA / FOUNDATION Fieldbus Transmitter. No. 6350V103-UK From ser. no

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1 6350 PROFIBUS PA / FOUNDATION Fieldbus Transmitter No. 6350V103UK From ser. no

2 DK UK FR DE PR electronics A/S tilbyder et bredt program af analoge og digitale signalbehandlingsmoduler til industriel automation. Programmet består af Isolatorer, Displays, Exbarrierer, Temperaturtransmittere, Universaltransmittere mfl. Vi har modulerne, du kan stole på i selv barske miljøer med elektrisk støj, vibrationer og temperaturudsving, og alle produkter opfylder de strengeste internationale standarder. Vores motto»signals the Best«er indbegrebet af denne filosofi og din garanti for kvalitet. PR electronics A/S offers a wide range of analog and digital signal conditioning devices for industrial automation. The product range includes Isolators, Displays, Ex Interfaces, Temperature Transmitters, and Universal Modules. You can trust our products in the most extreme environments with electrical noise, vibrations and temperature fluctuations, and all products comply with the most exacting international standards.»signals the Best«is the epitome of our philosophy and your guarantee for quality. PR electronics A/S offre une large gamme de produits pour le traite ment des signaux analogiques et numériques dans tous les domaines industriels. La gamme de produits s étend des transmetteurs de température aux afficheurs, des isolateurs aux interfaces SI, jusqu aux modules universels. Vous pouvez compter sur nos produits même dans les conditions d utilisation sévères, p.ex. bruit électrique, vibrations et fluctuations de température. Tous nos produits sont conformes aux normes internationales les plus strictes. Notre devise»signals the BEST«c est notre ligne de conduite et pour vous l assurance de la meilleure qualité. PR electronics A/S verfügt über ein breites Produktprogramm an analogen und digitalen Signalverarbeitungsgeräte für die industrielle Automatisierung. Dieses Programm umfasst Displays, Temperaturtransmitter, Ex und galvanische Signaltrenner, und Universalgeräte. Sie können unsere Geräte auch unter extremen Einsatzbedingungen wie elektrisches Rauschen, Erschütterungen und Temperaturschwingungen vertrauen, und alle Produkte von PR electronics werden in Überein stimmung mit den strengsten internationalen Normen produziert.»signals the Best«ist Ihre Garantie für Qualität! 31

3 PROFIBUS PA / FOUNDATION FIELDBUS TRANSMITTER PRetrans 6350 Contents Application... 2 Technical characteristics... 2 Mounting / installation... 2 Applications... 3 Order: Electrical specifications... 4 Connections... 8 Block diagram Bus installation Appendix ATEX Installation Drawing 6350A... ATEX Installation Drawing 6350B FM / CSA Installation Drawing V103UK 1

4 PROFIBUS PA / FOUNDATION FIELDBUS TRANSMITTER PRetrans 6350 PROFIBUS PA ver. 3.0 FOUNDATION Fieldbus ver. ITK 4.6 Automatic switch between protocols FISCOcertified 1 or 2channel version Application Linearised temperature measurement with RTD or TC sensor. Converts analogue ma signals into digital values on the bus communication. Difference, average or redundancy temperature measurement with RTD or TC sensor. Linear resistance, potentiometer and bipolar mv measurement. Technical characteristics Bus transmitter with both Profibus PA and Foundation Fieldbus communication. A unique switch function ensures automatic shift between the two protocols. Setup for Profibus PA can be done via Siemens Simatic PDM, ABB Melody / Harmony and Metso DNA software and for FOUNDATION Fieldbus via Emerson DeltaV, Yokogawa CS 1000 / CS 3000, ABB Melody / Harmony and Honeywell Experion software. Builtin simulation mode function. Polarityindependent bus connection. bit A/D converter ensures high resolution. Profibus PA function blocks: 2 analogue. Foundation Fieldbus function blocks: 2 analogue and 1 PID. Foundation Fieldbus capability: LAS or Basic. Mounting / installation Mounted vertically or horizontally on a DIN rail. Using the 2channel version up to 84 channels per metre can be mounted V103UK

5 Applications RTD and resistance to bus communication or TC to bus communication Conversion of ma to bus communication mv to bus communication Difference, redundancy or average; RTD, TC or mv V103UK 3

6 Order: 6350 Type Version Galvanic isolation Channels 6350 Standard : A CSA, FM & ATEX : B 1500 VAC : 2 Single : A Double : B *NB! Please remember to order CJC connectors type 5910 / 5910Ex (channel 1) and 5913 / 5913Ex (channel 2) for TC inputs with an internal CJC. Electrical specifications Specifications range: 40 C to 60 C Common specifications: Supply voltage, DC Standard V CSA, FM & ATEX V Internal consumption per channel... < 11 ma Isolation voltage, test kvac for 60 s Isolation voltge, operation VRMS / 75 VDC Warmup time s Signal / noise ratio... Min. 60 db Response time (programmable) s Response time (bus communication) ms Signal dynamics, input... bit Calibration temperature C Accuracy, the greater of general and basic values: General values Absolute Temperature Input type accuracy coefficient ma ±0.05% of reading ±0.003% of reading / C Other types ±0.05% of reading ±0.002% of reading / C V103UK

7 Basic values Input type Basic accuracy Temperature coefficient Pt100 and Pt1000 ±0.1 C ±0.002 C / C Ni100 ±0.15 C ±0.002 C / C Cu10 ±1.3 C ±0.02 C / C Lin. R ±0.05 Ω ±0.002 Ω / C ma ±1 µa ±0.06 µa / C Volt ±10 µv ±0.2 µv / C TC type: E, J, K, L, N, T, U ±0.5 C ±0.010 C / C TC type: B, R, S, W3, W5 ±1 C ±0.025 C / C EMC immunity influence... < ±0.1% of reading Extended EMC immunity: NAMUR NE 21, A criterion, burst... < ±1% of reading Effect of supply voltage variation... < 0.005% of reading / VDC Max. wire size... 1 x 2.5 mm 2 stranded wire Screw terminal torque Nm Humidity... < 95% RH (non cond.) Dimensions (H x B x D) x 23.5 x 104 mm DIN rail type... DIN Protection degree... IP20 Weight (1 / 2 channels)... 5 / 185 g Electrical specifications, input: RTD and linear resistance input: RTD Min. Max. type value value Standard Pt25...Pt C 850 C IEC / JIS C 1604 Ni25...Ni C 250 C DIN Cu10...Cu C 200 C α = Lin. resistance 0 Ω 10 kω Potentiometer 0 Ω 100 kω Cable resistance per wire Ω 6350V103UK 5

8 Sensor current... nom. 0.2 ma Effect of sensor cable resistance (3 / 4wire)... < Ω / Ω Sensor error detection... Yes Short circuit detection... < 15 Ω Bipolar current input: Measurement range ma Input resistance Ω PTC < 20 Ω Cable breakage detection ( ma)... < 0,3 ma Bipolar mv input: Measurement range mv Min. measurement range (span) mv Input resistance MΩ Short circuit detection... < 3 mv TC input: Type B E J K L N R S T U W3 W5 Ext. CJC Min. value 400 C 100 C 100 C 180 C 200 C 180 C 50 C 50 C 200 C 200 C 0 C 0 C 40 C Max. value 1820 C 1000 C 1200 C 1372 C 900 C 1300 C 1760 C 1760 C 400 C 600 C 2300 C 2300 C 135 C Cold junction compensation (CJC)... < ±0.5 C Sensor error detection... Yes Sensor error current: when detecting... nom. 2 μa else... 0 μa Short circuit detection... < 3 mv Output: PROFIBUS PA connection: PROFIBUS PA protocol... Profile A&B, ver. 3.0 PROFIBUS PA protocol standard... EN vol. 2 PROFIBUS PA address (at delivery) PROFIBUS PA function blocks... 2 analogue V103UK Standard IEC 6058 IEC 6058 IEC 6058 IEC 6058 DIN IEC 6058 IEC 6058 IEC 6058 IEC 6058 DIN ASTM E98890 ASTM E98890 IEC60751

9 FOUNDATION TM Fieldbus connection: FOUNDATION TM Fieldbus protocol... FF protocol FOUNDATION TM Fieldbus protocol standard... FF design specifications FOUNDATION TM Fieldbus capability... LAS or Basic FOUNDATION TM Fieldbus version... ITK 4.6 FOUNDATION TM Fieldbus function blocks... 2 analogue and 1 PID Ex approval 6350A: KEMA 03ATEX1013 X... II 3 G Ex na [nl] IIC T4...T6 or II 3 G Ex nl IIC T4...T6 or II 3 G Ex na [ic] IIC T4...T6 or II 3 G Ex ic IIC T4...T6 ATEX Installation Drawing No QA02 FM and CSA... IS, Class I, Div. 2, Group A, B, C, D IS, Class I, Zone 2, Group IIC Ex / I.S. approval 6350B: KEMA 03ATEX II 1 G Ex ia IIC T4...T6 or II 2 (1) G Ex ib [ia] IIC T4...T6 II 1 D Ex iad Applicable in zone... 0, 1, 2, 20, 21 or 22 ATEX Installation Drawing No QA01 FM and CSA... IS, Class I, Div. 1, Group A, B, C, D IS, Class I, Zone 0/1, Group IIC IS, Class I, Div. 2, Group A, B, C, D FM and CSA Installation Drawing No QE02 GOST R approval: VNIIM & VNIIFTRI, Cert. no... See Observed authority requirements: Standard: EMC 2004/108/EC... EN ATEX 94/9/EC... EN , EN , EN , EN , EN , EN 6120 and EN FM , 3610, 3611 CSA, CAN / CSA... C22.2 No. 2, No. 157, No. 213, CAN / CSA... E600790, 11, 15 ANSI / UL... UL , 11, V103UK 7

10 Connections Channel 1 Inputs: RTD, 2wire RTD, 3wire RTD, 4wire Connections with two sensors can be configured for twomeasurements, difference, average or redundancy 2 x RTD, 2wire Channel 2 Channel 1 Channel 2 RTD, 2wire RTD, 3wire RTD, 4wire x RTD, 2 / 3wire x RTD, 2 / 3wire x RTD, 2wire Resistance, 2wire Resistance, 3wire Resistance, 4wire Resistance, 2wire Resistance, 3wire Resistance, 4wire V103UK

11 Connections Channel 1 2 x resistance, 2wire Inputs: 2 x resistance, 2 / 3wire Connections with two sensors can be configured for two measurements, difference, average or redundancy Potmeter, 3wire Potmeter, cable compensation Channel 2 Channel 1 Channel 2 2 x resistance, 2wire x resistance, 2 / 3wire Bipolar ma Bipolar ma Potmeter, 3wire Bipolar mv Bipolar mv Potmeter, cable compensation x bipolar mv x bipolar mv V103UK 9

12 Connections Channel 1 TC, internal CJC 42 CJC 44 Inputs: TC, 2wire external CJC Connections with two sensors can be configured for two measurements, difference, average or redundancy TC, 3wire external CJC x TC, internal CJC * 42 CJC Channel 2 Channel 1 Channel 2 TC, internal CJC CJC 2 x TC, 2wire CJC x TC, 2wire CJC TC, 2wire external CJC TC, 3wire external CJC Outputs: Bus installation Bus installation x TC, internal CJC * CJC V103UK

13 Block diagram CH 1 Function blocks AI1, AI2 PID LAS Foundation Fieldbus Protocol UserSelectable Inputs: Galvanic isolation Analogue to Digital converter C PU FOUNDATION PROFIBUS EEPROM Complete configuration Correction coefficients Factory settings Function blocks AI1, AI2 PROFIBUS Protocol CH Automatic communication switch Ex circuit, only 6350B Transducer Block Input 1 Input 2 Difference Average Redundancy Internal temperature Engineering units Diagnostics Table linearisation Polynomial linearisation Process calibration RTD Thermcouple Bipolar ma Bipolar mv Ohm Potentiometer Internal temp. Bus connection Bipolar ma input 6350V103UK 11

14 Bus installation Segment coupler PR6350A Power supply and and DP PA Bus termination FOUNDATION max. 16 PROFIBUS max. 32 Safe area Segment coupler, Ex Hazardous area PR6350B To additional segment couplers Power supply, Ex Bus termination FOUNDATION max. 10 PROFIBUS max V103UK

15 Appendix ATEX Installation Drawings 6350A ATEX Installation Drawings 6350B FM & CSA Installation Drawing No. 6350QE V103UK 13

16 ATEX Installation Drawing 6350A LERBAKKEN 10, 80 RØNDE DENMARK. 6350QA02 ATEX Installation drawing. For safe installation of 6350A the following must be observed. The module shall only be Installed by qualified personnel who are familiar with the national and international laws, directives and standards that apply to this area. Year of manufacture can be taken from the first two digits in the serial number. ATEX Certificate Marking KEMA 03ATEX 1013X II 3 G Ex na [nl] IIC T4..T6 or II 3 G Ex nl IIC T4..T6 II 3 G Ex na [ic] IIC T4..T6 or II 3 G Ex ic IIC T4..T6 Standards: EN : 2006, EN : 2007, EN : 2005, EN : 2006 Terminal: 44 and 51 Ex na [ic] or Ex na [nl] Uo=5,7V Io=8,4mA Po=12 mw Co=40μF Lo=200mH Terminal : 13, and 23, Ex nl or Ex ic: Ii = ±100mA ma Sensor Sensor ma ma Sensor Sensor ma CH A CH A Termination (max): 32V T5: 40ºC to 60 ºC T6: 40ºC to 40 ºC Terminal: 11,12 and 21,22 Ex na U = 32Vdc Ex nl or Ex ic: Ui = 32Vdc Ci=2nF, Li=1μH FNICO : 17,5V Ci=2nF, Li=1μH Special conditions for safe use. For use in a potentially explosive atmosphere of flammable gasses, vapours or mists, the transmitter shall be mounted in an enclosure providing a degree of protection of at least IP in accordance to EN Revision date: Version Revision V1R0 Page: 1/1 6350V103UK

17 ATEX Installation Drawing 6350B LERBAKKEN 10, 80 RØNDE DENMARK. 6350QA01 ATEX Installation drawing For safe installation of 6350B the following must be observed. The module shall only be Installed by qualified personnel who are familiar with the national and international laws, directives and standards that apply to this area. Year of manufacture can be taken from the first two digits in the serial number. ATEX Certificate KEMA 03ATEX 1012 Marking II 1 G Ex ia IIC T4..T6 or II 2 (1) G Ex ib [ia] IIC T4..T6 II 1 D Ex iad Standards EN : 2006, EN : 2007, EN : 2007, EN 6120 : 2006, EN : 2006, EN : 2008 Installation notes. 6350B The sensor circuit is not infallibly galvanic isolated from the input circuit. However, the galvanic isolation between the circuits is capable of withstanding a test voltage of 500Vac during 1 minute. If the transmitter is installed in an explosive atmosphere requiring the use of equipment of category 1G and if the enclosure is made of aluminium, it must be installed such, that even in the event of rare incidents, ignition sources due to impact and friction, sparks are excluded; if the enclosure is made of nonmetallic materials, electrostatic charging shall be avoided. For installation in a potentially explosive dust atmosphere, the following instructions apply: The Profibus PA/Foundation Fieldbus Transmitter may only be installed in a potentially explosive atmosphere caused by the presence of combustible dust it it is mounted in an enclosure that is providing a degree of protection of at least IP 6X according to EN60529, that is suitable for the application and is correctly installed. Cable entries and blanking elements shall be used that are suitable for the application and correctly installed. For an ambient temperature 60ºC, heat resistant cables shall be used with a rating of at least 20 K above the ambient temperature. The surface temperature of the enclosure is equal to the ambient temperature plus 20 K, for a dust layer with a thickness up to 5 mm Revision date: Version Revision V3R0 Page: 1/3 6350V103UK 15

18 LERBAKKEN 10, 80 RØNDE DENMARK. 6350QA01 Hazardous Location Zone 0 Non Hazardous Location ma Sensor Sensor ma ma Sensor Sensor ma ma Sensor Sensor ma CH B CH B CH B Termination Terminal 1112, 2122 T4 60ºC 60ºC 60ºC 60ºC T6 60ºC 45ºC 45ºC 45ºC Ui 30V 30V 17.5V 15V Ii 120 ma 300 ma 250 ma any Pi 0.84 W 1.3 W 2.0 W Any Ci 2 nf 2 nf 2 nf 2 nf Li 1 μh 1 μh 1 μh 1 μh Terminal 44, 51 Terminal 13, 23 Uo 5.71 V Ui 30 V Io 8.4 ma Ii 0 ma Po 12 mw Pi 1 W Co 40 μf Ci 0 Lo 200 mh Li 0 Revision date: Version Revision V3R0 Page: 2/ V103UK

19 LERBAKKEN 10, 80 RØNDE DENMARK. 6350QA01 Hazardous area: Zone 0 Hazardous area: Zone 1 T6: 40ºC < Ta < 60 ºC Non Hazardous area ma Sensor Sensor ma ma Sensor Sensor ma ma Sensor Sensor ma CH B CH B CH B Termination Terminal 11 12, Ui 30 V 17.5 V Ii 250 ma any Pi 5.32 W any Ci 2 nf 2 nf Li 1 μh 1 μh Terminal 13, 23 Ui 30 V Ii 0 ma Pi 1 W Ci 0 Li 0 Terminal 44, 51 Uo 5.71 V Io 8.4 ma Po 12 mw Co 40 μf Lo 200 mh Revision date: Version Revision V3R0 Page: 3/3 6350V103UK 17

20 FM / CSA Installation Drawing Installation Drawing 6350QE02 Non Hazardous Location Hazardous (Classified) Location Class I, Division 1, Group A, B, C, D Class I, Zone 0 and Zone 1 AEx ia IIC Class I, Division 2, Groups A, B, C, D See Installation notes. Terminal 44 and 51 Vt or Uo 5.71 V It or Io 8.4 ma Pt or Po 12 mw Ca or Co 40µF La or Lo 200 mh Terminal 13, and 23, Vmax or Ui 30 V Imax or Ii 0 ma Pmax or Pi 1 W Ci 0 Li 0 Associated Apparatus Barrier or FISCO Supply With entity Parameters UM < 250V Voc or Uo < Vmax or Ui Isc or Io < Imax or Ii Po < Pi Ca or Co > Ci Ccable La or Lo > Li Lcable This device must not be connected to any associated apparatus that uses or generates more than 250V CH B CH B CH B ma Sensor Sensor ma ma Sensor Sensor ma ma Sensor Sensor ma Approved Termination Terminal IS, Class I, Division 1, Group A,B,C,D Class I,Zone 0 AEx ia IIC Entity,Fisco Class I, Division 2, Group A,B,C,D Class I, Zone 1 AEx ib IIC T1..T5 Ta 60 C Ta 60 C Ta 60 C Ta 60 C Ta 60 C Ta 60 C T6 Ta 60 C Ta 45 C Ta 45 C Ta 45 C Ta 60 C Ta 60 C Vmax or Ui 30 V 30 V 17.5 V 15 V 30 V 17.5 V Imax or Ii 120 ma 300 ma 250 ma any 250 ma any Pmax or Pi 0.84 W 1.3 W 2.0 W any 5.32 W any Ci 2 nf 2 nf 2 nf 2 nf 2 nf 2 nf Li 1 µh 1 µh 1 µh 1 µh 1 µh 1 µh 6350QE02revAB.doc Rev. AB 1/ V103UK

21 Non Hazardous Location Hazardous (Classified) Location In each segment only one active device, normally the associated apparatus is allowed to provide the necessary energy for the fieldbus system. All other equipment connected to the bus are not allowed to provide energy to the system. Separately powered equipment needs a galvanic insulation to assure that the intrinsic safe fieldbus circuit remanis passive. See Installation notes Associated Apparatus Barrier or FISCO Supply With entity Parameters UM < 250V Voc or Uo < Vmax or Ui Isc or Io < Imax or Ii Po < Pi Ca or Co > Ci Ccable La or Lo > Li Lcable Class I, Division 2, Group A,B,C,D Class I, Zone 1, AEx ib IIC CH B CH B CH B Class I, Division 1, Group A,B,C,D Class I, Zone 0, AEx ia IIC ma Sensor Sensor ma ma Sensor Sensor ma ma Sensor Sensor ma Approved Termination Terminal 13, and 23, Terminal 11,12 and 21,22 Vmax (Ui) 30 V 30 V 17,5V Imax (Ii) 0 ma 250 ma any Pmax (Pi) 1 W 5.32 W any Ci 0 2 nf 2 nf Li 0 1 µh 1 µh Terminal 44 and 51 Vt or Uo 5.71 V It or Io 8.4 ma Pt or Po 12 mw Ca or Co 40µF La or Lo 200 mh 6350QE02revAB.doc Rev. AB 2/7 6350V103UK 19

22 Non Hazardous Location Hazardous (Classified) Location Class I, Zone 2 Class I, Division 2, Groups A, B, C, D This device must not be connected to any associated apparatus which uses or generates more than 250VRMS 32V Class 2 Power Supply CH A CH A CH A ma Sensor Sensor ma ma Sensor Sensor ma ma Sensor Sensor ma Termination Terminal: 11,12 and 21,22 Class I, Division 2, Group A,B,C,D Class I, Zone2 IIC Ta 60 C Vmax (Ui) 32 V 6350QE02revAB.doc Rev. AB 3/ V103UK

23 Installation notes: FM / CSA: For installation in the US the 6350 must be installed according to National Electrical Code (ANSINFPA 70). For installation in Canada the transmitter must be installed in a suitable enclosure to meet installation codes stipulated in the Canadian Electrical Code (CEC). For installation in Canada different intrinsically safe circuits need to be separated as outlined in the Canadian Electrical Code (CEC) The entity concept. Equipment that is FM / CSA approved for intrinsic safety may be connected to barriers based on the ENTITY CONCEPT. This concept permits interconnection of approved transmitters, meters and other devices in combinations which have not been specifically examined by FM / CSA, provided that the agency's criteria are met. The combination is intrinsically safe, if the entity concept is acceptable to the authority having jurisdiction over the installation. The entity concept criteria are as follows: The intrinsically safe devices, other than barriers, must not be a source of power. The maximum voltage Ui(VMAX) and current Ii(IMAX), and maximum power Pi(Pmax), which the device can receive and remain intrinsically safe, must be equal to or greater than the voltage (Uo or VOC or Vt) and current (Io or ISC or It) and the power Po which can be delivered by the barrier. The sum of the maximum unprotected capacitance (Ci) for each intrinsically device and the interconnecting wiring must be less than the capacitance (Ca) which can be safely connected to the barrier. The sum of the maximum unprotected inductance (Li) for each intrinsically device and the interconnecting wiring must be less than the inductance (La) which can be safely connected to the barrier. The entity parameters Uo,VOC or Vt and Io,ISC or It, and Ca and La for barriers are provided by the barrier manufacturer. FISCO rules The FISCO Concept allows the interconnection of intrinsically safe apparatus to associated apparatus not specifically examined in such combination. The criterion for such interconnection is that the voltage (Vmax), the current (Imax) and the power (Pi) which intrinsically safe apparatus can receive and remain intrinsically safe, considering faults, must be equal or greater than the voltage (Uo, Voc, Vt), the current (Io, Isc, It,) and the power (Po) which can be provided by the associated apparatus (supply unit). In addition, the maximum unprotected residual capacitance (Ci) and inductance (Li) of each apparatus (other than the terminators) connected to the Fieldbus must be less than or equal to 5 nf and 10 µh respectively. 6350QE02revAB.doc Rev. AB 4/7 6350V103UK 21

24 In each I.S. Fieldbus segment only one active source, normally the associated apparatus, is allowed to provide the necessary power for the Fieldbus system. The allowed voltage (Uo, Voc, Vt) of the associated apparatus used to supply the bus must be limited to the range of V d.c. to V d.c. All other equipment connected to the bus cable has to be passive, meaning that the apparatus is not allowed to provide energy to the system, except to a leakage current of 50 µa for each connected device. Separately powered equipment needs a galvanic isolation to insure that the intrinsically safe Fieldbus circuit remains passive. The cable used to interconnect the devices needs to comply with the following parameters: Loop resistance R': Ω/KM Inductance per unit length L': 0.4 1mH/km Capacitance per unit length C': nf/km C' = C' line/line 0.5 C' line/screen, if both lines are floating or C'= C' line/line C' line/screen, if the screen is connected to one line Length of spur Cable: max. 30m Length of trunk cable: max. 1Km Length of splice: max. 1m Terminators At each end of the trunk cable an approved line terminator with the following parameters is suitable: R = Ω C = µf. System evaluation The number of passive devices like transmitters, actuators, connected to a single bus segment is not limited due to I.S. reasons. Furthermore, if the above rules are respected, the inductance and capacitance of the cable need not to be considered and will not impair the intrinsic safety of the installation. The sensor circuit is not infallibly galvanic isolated from the Fieldbus input circuit. However, the galvanic isolation between the circuits is capable of withstanding a test voltage of 500Vac during 1 minute. 6350QE02revAB.doc Rev. AB 5/ V103UK

25 Installation Notes For FISCO and Entity Concepts: 1. The Intrinsic Safety Entity concept allows the interconnection of FM / CSA Approved Intrinsically safe devices (Div 1 or Zone 0 or Zone1) and non.incendive apparatus (Div 2 or Zone 2),with entity parameters not specifically examined in combination as a system when: Uo or Voc or Vt Vmax, Io or Isc or It Imax, Po Pi. Ca or Co ΣCi ΣCcable, La or Lo ΣLi ΣLcable, Po Pi. 2. The Intrinsic Safety FISCO concept allows the interconnection of FM / CSA Approved Intrinsically safe devices with FISCO parameters not specifically examined in combination as a system when: Uo or Voc or Vt Vmax, Io or Isc or It Imax, Po Pi. 3. Dusttight conduit seals must be used when installed in Class II and Class III environments. 4. Control equipment connected to the Associated Apparatus must not use or generate more than 250 Vrms or Vdc. 5. Installation should be in accordance with ANSI/ISA RP12.6 (except chapter 5 for FISCO Installations) Installation of Intrinsically Safe Systems for Hazardous (Classified) Locations and the National Electrical Code (ANSI/NFPA 70) Sections 504 and The configuration of associated Apparatus must be Factory Mutual Research or CSA Approved under the associated concept. 7. Associated Apparatus manufacturer s installation drawing must be followed when installing this equipment. 8. The 6350 Series are Approved for Class I, Zone 0, applications. If connecting AEx[ib] associated Apparatus or AEx ib I.S. Apparatus to the 6350 the I.S. circuit is only suitable for Class I, Zone 1, or Class I, Zone 2, and is not suitable for Class I, Zone 0 or Class I, Division 1, Hazardous (Classified) Locations.". 9. No revision to drawing without prior FM / CSA Approval. 10. Simple Apparatus is defined as a device that neither generates nor stores more than 1.2V, 0.1A 20uJ or 25mW. 11. The termination must be NRTL approved, and the resistor must be infallible. 12. Warning: For applications in Div2 or Zone 2 (Classified Locations) Explosion hazard: Except for field circuits, do not disconnect the apparatus unless the area is known to be non hazardous. 13 Warning: Substitution of Components May Impair Safety. 6350QE02revAB.doc Rev. AB 6/7 6350V103UK 23

26 ATEX: The sensor circuit is not infallibly galvanic isolated from the Fieldbus input circuit. However, the galvanic isolation between the circuits is capable of withstanding a test voltage of 500Vac during 1 minute. For Zone 2 installation EEx na IIC without barrier, provisions must be made to the supply to prevent transients from exceeding 40% of Vmax. Production year of 6350 can be taken from the first 2 digits of the serialnumber. There are no user serviceable parts inside the transmitter 6350QE02revAB.doc Rev. AB 7/7 6350V103UK

27 Displays Programmable displays with a wide selection of inputs and outputs for display of temperature, volume and weight, etc. Feature linearization, scaling, and difference measurement functions for programming via PReset software. Ex interfaces Interfaces for analog and digital signals as well as HART signals between sensors / I/P converters / frequency signals and control systems in Ex zone 0, 1 & 2 and for some devices in zone 20, 21 & 22. Isolation Galvanic isolators for analog and digital signals as well as HART signals. A wide product range with both looppowered and universal isolators featuring linearization, inversion, and scaling of output signals. Temperature A wide selection of transmitters for DIN form B mounting and DIN rail devices with analog and digital bus communication ranging from applicationspecific to universal transmitters. Universal PC or front programmable devices with universal options for input, output and supply. This range offers a number of advanced features such as process calibration, linearization and autodiagnosis.

28 Head office Denmark PR electronics A/S Lerbakken 10 tel DK80 Rønde fax

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