EU-TYPE EXAMINATION CERTIFICATE

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1 Wayne Global Star, Global Century and self-service devices Issued to: Wayne Fueling Systems Sweden AB, P O Box 50559, SE Malmö, Sweden In respect of (type of instrument) A family of fuel dispensers, Global Star and Global Century, for petrol, kerosene, diesel, ethanol or FAME/RME fuel, including ATC conversion device (optional). Self-service device including outdoor payment terminal Wayne ixpay (optional) and forecourt controller and Point-of-sale system, Wayne Fusion (optional) or as listed in the appendix, chapter 1. The instrument (measuring system) includes at minimum a fuel dispenser (stand alone) and at maximum also one or more outdoor payment terminals Wayne ixpay (Evaluation Certificate, EC, ) and a forecourt controller and Point-of-sale system, Wayne Fusion (EC and ) or as listed in the appendix, chapter 1. In accordance with The products fulfil module B (Annex II) of directive 2014/32/EU on measuring instruments (MID), implemented in Swedish law by SWEDAC (The Swedish Board for Accreditation and Conformity Assessment) through - STAFS 2016:1 The Measuring Instruments Regulations and - STAFS 2016:6 The Regulations and Guidelines concerning Measuring Systems for the Continuous and Dynamic Measurement of Quantities other than Water. RISE Certification Rules SPCR 302 were applied. Applicable essential requirements of Directive 2014/32/EU - Annex I Essential requirements - Annex VII (MI-005) MI-005 Measuring systems for the continuous and dynamic measurement of quantities of liquids other than water Harmonised standards and normative documents used Applicable parts of the following normative documents referred to in the Official Journal of the European Union 2006/C 269/01 and 2011/C 33/01: - OIML R 117 Edition 1995 (E), Measuring systems for liquids other than water - OIML R Edition 2007 (E), Dynamic measuring systems for liquids other than water Further applied documents WELMEC 7.2, Software Guide (Issue 5) OIML D 11 Edition 2004 (E), General requirements for electronic measuring instruments Rated operating conditions Measurand: Volume of fuel Mechanic environment class: M1 Accuracy class: 0,5 Climatic environment class: -40/-25 to +55 C Measurement range: 0,2 130 l/min Electromagnetic environment class: E1 Box 857, SE Borås, Sweden Phone: certifiering@ri.se During 2017 SP changed name to RISE Research Institutes of Sweden. This certificate was earlier issued by SP, Sweden P05745 This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 1 (32) Accred. no Certification of Products ISO/IEC 17065

2 Validity Originally issued: (by SP) Expiry date: This extended certificate replaces earlier issues, the latest The principal characteristics, approval conditions are set out in this document. The plans, schematic diagrams and documentations are recorded under reference files SP MTvP604682, 3P02051, 4P01640, 4P03558, 4P07843, 5P01817, 6P00239 and RISE 8P The evaluation report MTvP A has been issued in accordance with Directive 2014/32/EU Annex B paragraph 5. Issued by Notified body 0402 RISE Research Institutes of Sweden Martin Tillander Kerstin Mattiasson This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 2 (32)

3 The instruments / measuring systems must correspond with the following specifications: 1 Design of the instrument The instrument (measuring system) includes at minimum a fuel dispenser (stand alone). The fuel dispenser may (optional) display volume at base condition (15 C). The fuel dispenser may (optional) also be part of any self-service arrangement under conditions that the connected self-service device/devices: has any Part Certificate issued by a test institute that also can act as a notified body under module B of MID for measuring instrument for liquids other than water (MI-005) or is covered by an Evaluation Certificate listed in table 1 and the self-service arrangement fulfils the communication requirements in chapter 3 of this certificate. Trade mark Evaluation certificate Wayne ixpay TM secure payment platform SP Wayne ixpay TM secure payment platform SP Gilbarco Autotank NC3/NP3 SP and Additional information referred to in the EC Wayne Fusion forecourt system. Forecourt SP controller and Point-of-sale system Wayne Fusion forecourt system. Forecourt SP controller and Point-of-sale system Wayne Nucleus 9. Forecourt controller and SP Point-of-sale system S&B TMS30. Self-service device NMi TC7596 Documentation folder TC (via the contact form on Bachmann.com) Tokheim FuelPOS. Self-service device NMi TC7346 Documentation folder TC and TC (via the contact form on RAP Sustain. Self-service device NMi TC7657 Documentation folder TC SYST-1 to 11 (via liquid@nmi.nl) LAFON ELYS. Self service device LNE Gilbarco Veeder-Root, Passport Europe NMi TC7581 Documentation folder TC7581-2, number 7481/1-01 (via flr.reg@gilbarco.com) Hectronic, HECONOMY BEV A0445/4225/2012 Hectronic, HECSTAR and HECFLEET NT Nordic Card CRIP for GS/SK, Nordic Card stand alone OPT, Nordic Pay OPT, CRIND SQUARE M3 Q500T, Flex Pay B2B M3, Flex Pay SPOT OPT M7 BEV A0445/1168/2013 Inspecta, FIT.10.A.01 This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 3 (32)

4 These self-service arrangements are then part of the measuring system and this EU-type examination certificate. The self-service modes (optional) includes attended pre-payment, attended post-payment including sale stacking, unattended pre-payment and unattended delayed-payment, for an interruptible system and direct sales. This chapter describes the fuel dispenser. For other parts of a self-service arrangements see above. 1.1 Construction Product names Global Star Cio-hn An B X i number of products in X B2B = additional back-to-back module o number of products out HH = high hose h number of hydraulic modules or LHR = low hose retraction hydraulics positions in use S = option, single sided n A number of nozzles at each side, or D = dispenser (central pump) T= ATC number of nozzles side A if model is asymmetric SAT = option satellite n B number of nozzle side B if model is asymmetric SIM = maintained flowrate for 130 l/min with two customers Global Star V Cio-hn An B X i number of products in X B2B = additional back-to-back module o number of products out HH = high hose h number of hydraulic modules or HHR = high hose retraction hydraulics positions in use D = dispenser (central pump) T= ATC n A number of nozzles at each side, or SAT = option satellite number of nozzles side A if model is asymmetric SIM = maintained flowrate for 130 l/min n B number of nozzle side B if model is asymmetric with two customers Global Star Hio-hn An B X Y1/Y2/Y3/Y4 // Z1/Z2/Z3/Z4 i number of products in X D = dispenser (central pump) T= ATC o number of products out S = single sided h number of hydraulic modules or SAT= option satellite hydraulics positions in use Y1 to Y4 = nozzle definition side A n A number of nozzles at each side, or Z1 to Z4 = nozzle definition side B number of nozzles side A if model is asymmetric Nozzle definition: n B number of nozzle side B if model is asymmetric xx = flow in litre per minute Global Star (Epsilon) Eio-hn An B X i number of products in X S = option, single sided o number of products out D = dispenser (central pump) h number of hydraulic modules or T= ATC hydraulics positions in use SAT = option satellite n A number of nozzles, or number of nozzles side A if model is asymmetric n B number of nozzle side B if model is asymmetric This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 4 (32)

5 Global Star Flexi Cio-hn An B X i number of products in X L = Lane o number of products out I = Island h number of hydraulic modules or D = dispenser (central pump) hydraulics positions in use T= ATC n A number of nozzles, or number of nozzles side A if model is asymmetric n B number of nozzle side B if model is asymmetric Global Century Sio-hn An B X Y/Z i number of products in X P = Pump (suction pump hydraulic) or o number of products out D = Dispenser (remote pump hydraulic) h number of hydraulic modules or T= ATC hydraulics positions in use Y Nozzle definition side A (maximum n A number of nozzles side A flowrate(s), SAT = satellite outlet) n B number of nozzles side B Z Nozzle definition side B (maximum flowrate(s), SAT = satellite outlet) Measuring system (fuel dispenser) description A complete measuring system consists of one electronic module and one to six hydraulic modules in the same housing. If one pump and air separator is serving more than one nozzle simultaneously the total maximum flowrate through these nozzles is limited by the air separator (90 l/min per air separator) and the volume sensor (according to Volume sensor flowrate range under Technical data ). For higher flowrate another hydraulic module has to serve the same nozzle. For further information see block diagram, later in this chapter. Module function description For further information about components included see chapter 1.2. Electronic module function (igem) is an electronic subsystem and it consists mainly of: calculator, indicating device, and keyboard with preset. This module can handle up to 6 motors, 6 pulse transmitters (each handling a single equipped or a duplex volume sensor), 12 nozzles and 14 solenoid valves and in case of ATC one temperature compensation module. The electronic module is able to serve up to two customers at a time. Hydraulic function modules Measurement transducer function is a hydraulic subsystem and it consists mainly of: volume sensor (single equipped side A, single equipped side B or duplex) and pulse transmitter. In case of ATC (automatic temperature compensation) each volume sensor (imeter, imeter 2 Xflo TM ) is equipped with a temperature sensor, all connected to one temperature compensation module. Pump and air separator function is a hydraulic subsystem and it consists mainly of: Compact Pumping Unit (CPU) including air separator, motor and non-return valve. This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 5 (32)

6 Regulation function is a hydraulic subsystem and it consists mainly of: solenoid valves for flow rate regulation, blending and on/off. Delivery function is a hydraulic subsystem and it consists mainly of: hoses, nozzles and nozzle switch, this includes also satellite function. Central pump function is a hydraulic subsystem and it consists mainly of: delivery of air free liquid according to OIML R117, item and security valve. If the measuring system is equipped with a central pump (an additional D ) an external (central) pump is used instead of an internal pump. The external system must comply with OIML 117, item (i.e. it shall be equipped with an arrangement that prevents air to come into the system). This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 6 (32)

7 Liquid quality 2 Liquid quality 1 EU-TYPE EXAMINATION During verification it shall be possible to verify each volume sensor separately. Block diagram describing permitted ways, and some restrictions, to produce one delivery product for one customer. Each such configuration shall be a subset of the diagram. To produce multiple delivery products for a customer the block diagram is used several times. max 2 M R M D P/A R P/A R M R R M D P/A R P/A R M R P/A = pressurizing and air separation CPU, (dispenser bottom,) cover, motor, non-return valve (and security valve) M = measuring volume sensor and pulse transmitter R = regulating solenoid valve D = delivering hose, nozzle and nozzle switch This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 7 (32)

8 Picture 1: Global Star C33-33 HH Picture 2: Global Star C22-22 LHR Picture 3: Global Star C33-33 B2B LHR Picture 4: Global Star V C44-44 HH Picture 5: Global Star V C44-44 HHR This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 8 (32)

9 Picture 6: Global Star H44-44 Picture 7: Global Star (Epsilon) E Picture 8: Global Star Flexi C L Picture 9: Global Century S P 40/40 This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 9 (32)

10 1.2 Components included for hydraulic function modules When numbers are stated in the list below, these numbers are valid for all measuring systems. When numbers are not stated in the list below then the numbers are limited by the measuring system description and the electronic module function on page 4 5. in chapter 1.1. Measurement transducer function Volume sensor (petrol, petrol/ethanol mixtures, kerosene, diesel or diesel/fame/rme mixtures) Wayne imeter Duplex (DM2-2) or Wayne imeter Single equipped side A (DM2-1) or Wayne imeter Single equipped side B (DM2-1) or Wayne imeter 2 Duplex (DM2-2) or Wayne imeter 2 Single equipped side A (DM2-1) or Wayne imeter 2 Single equipped side B (DM2-1) or Wayne Xflo TM Duplex (magenta or silver id label) or Wayne Xflo TM Single sided A (yellow id label) or Wayne Xflo TM Single sided B (cyan id label) Pulse transmitter Wayne PNo i-meter i-meter2 Xflo TM LPG WM NFC NFC NFC WM NFC NFC NFC WM FC WM FCI WM FCI NFC= Not Flow Compensating (WIP) NFC= Not Flow Compensating (WIP), FC=Flow Compensating, FCI = Flow Compensating Individual (XWIP) Board temperature module, phase 2, 0-1 pc*** Software Board temperature module, 0-1 pc*** Temperature sensor, 0-10 pcs*** Pump and air separator function Compact Pumping Unit (CPU) * Cover (between CPU and meter) ** Wayne WM X W&M checksum EB6A or 7EA9 Wayne WM Wayne i-meter i-meter 2 Xflo TM WM D D WM P, K, E P, K, E WM P, K, D, E, F P, K, D, E,F P, K, D, E, F WM P, K, D, E, 40 l/min WM P, K, D, 70 l/min P = petrol, K = kerosene, D = diesel, E = ethanol, F=FAME/RME Wayne or Wayne WM or Wayne WM or Wayne WM or Wayne WM or Wayne WM X or Wayne WM X This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 10 (32)

11 Motor **, one per CPU Non-return valve, inlet ** Elnor, 0,75 kw, 3-phase 400 V, 1400 rpm or Elnor, 0,75 kw, 3-phase 230 V, 1400 rpm or Elnor, 0,75 kw, 1-phase 230 V, 1400 rpm or Elnor, 1,1 kw, 3-phase 400 V, 1400 rpm or Elnor, 1,1 kw, 3-phase 230 V, 1400 rpm or Elnor, 1,1 kw, 1-phase 230 V, 1400 rpm Wayne WM Regulating function, solenoid valve Function Asco code Wayne code Asco code Wayne code Proportional JV Proportional JV WM JV WM Proportional JV X WM JV WM Proportional duplex JV WM JV WM Proportional duplex JV WM JV WM On/off JV On/off JV WM JV WM On/off duplex JV WM JV WM Delivery function Hose and nozzles Hose dim Max length mmq Hose 16 mm (5/8 ) 10 m Elaflex Conti-Slimline 16 MPD Elaflex Conti-Slimline 16 BIO Elaflex Conti-Slimline 16 LT Goodyear EN 1360, type 3, 16 bar 19 mm (3/4 ) 10 m Goodyear Hardwall Petrol Hose B.S. 3395/1989 type 3 10 m Elaflex Conti-Slimline 21 MPD 6 m Elaflex Conti-Slimline 21 MPD - COAX (vapour recovery) 10 m 5,0 l Elaflex Conti-Slimline 21 MPD - COAX (vapour recovery) 21 mm (7/8 ) 10 m Elaflex Conti-Slimline 21 BIO 10 m Elaflex Conti-Slimline 21 LT 6 m Elaflex Conti-Slimline 21 LT (vapour recovery) 10 m 5,0 l Elaflex Conti-Slimline 21 LT (vapour recovery) 6 m Elaflex Conti-Slimline 25 LT 25 mm (1 ) 10 m 5,0 l Elaflex Conti-Slimline 25 LT 10 m Goodyear EN 1360, type 3, 16 bar This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 11 (32)

12 Flow rate mmq Nozzle l/min Elaflex ZVA slimline or equivalent 5,0 l Elaflex ZVA slimline TMV DRIP-STOP or equivalent 40 l/min 5,0 l OPW ACN or AVN or equivalent Nozzle l/min Elaflex ZVA 25, 1 or equivalent Nozzle switch Secatec type MKF19XSAKX or Secatec type MKF19XOAKX or Bartec , or Components included for electronic function, igem CPU-board, 1 pc Software CPU board, 1 pc Expansion board, 0-1 pc Isolated communication interface, 0-1 pc Communications interface, 0-1 pc SINP communication board/ NPCL serial board, 0-1 pc igem-isb board (pulse transmitter), 1-2 pcs ISB with integrated TTL/CAN converter, 0-1 pc*** Software TTL/CAN converter, 0-1 pc*** Wayne WM or Wayne WM or Wayne WM W&M checksum 0BE5 or 555F or 62D1 Wayne WM (Line filter must be used) Wayne WM (must be used for communication directly with CPU-board with RS485, RS422) Wayne WM (IFSF-LON) Wayne WM Wayne WM Wayne WM W&M checksum 3FAO Display board (volume, price, Wayne WM or 1 unit price), 0-2 pcs Wayne WM Display board (volume, price, Wayne WM or 2 unit prices), 0-2 pcs Wayne WM Display board (volume, price, Wayne WM or 3 unit prices), 0-2 pcs Wayne WM Display board (volume, price, Wayne WM or 4 unit prices), 0-2 pcs Wayne WM Display board (volume, price), 0-2 pcs Display board (unit prices), 0-2 pcs (in box under electronic enclosure) Nozzle Switch Converter Nozzle Switch Interface Wayne WM Wayne WU X Wayne WU Wayne WU Preset keyboard 5 or 12 buttons, 0-2 pcs Wayne WM This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 12 (32)

13 Line filter, 0-1 pc Schaffner FN /06 Power supply, 1 pc Heater, 0-1 pc Thermostat, 0-1 pc Omron S8PS-05024CD, 50 W (Line filter must be used) or Advanced Power Solutions APS65ID-S240025, 60 W or Omron S8PS-10024CD, 100 W (Line filter must be used) or Advanced Power Solutions RL0211E15-24, 150 W or Channel Well Technology, UAS150B, 150 W Max or Powerbox PBSE1071 Rev 1, 150 W Max DBK FGC /2 (300 W) or equivalent Honeywell Elmwood Sensors Ltd 2455RBV xxx xx L18C Components specific for Global Star V are specified below (no heating needed): Board Connection, Power 400/230 Pump Control Communication board, 0-1 pc (V01 serial board ATCL pump terminal) Display Preset key board, 0-2 pc * is replaced in dispenser variant ** is left out in dispenser variant *** is added for ATC Wayne WM X Wayne WM001827, Rev2 Wayne WM XXXX, depending on number of unit price displays Wayne WM or Wayne WM or Wayne WM Optional equipment and functions subject to MID requirements - ATC conversion device - Pre-set of volume or price - Volume totalizer - Blending (designation only e g 92, 95, 98 octane not 50/50, 70/30 etc) - Satellite (SAT and MASTER enable button in case of direct sales) 1.5 Technical documentation For market surveillance the construction and included components are described in 1.1, 1.2 and 1.3. The metrological software is identified by the checksum (W&M CRC value), which can be accessed according to Integrated equipment and functions not subject to MID Vapour recovery system with vapour pump, regulating proportional valves and an electronic board (for example VR Driver board WM ) connected to the igem CPU board. The vapour flow is controlled by the electronic board or the igem CPU board. Optionally also a vapour recovery monitoring system consisting of a Vapour meter and belonging Intrinsic safe barrier may be used. Means for vapour recovery must not influence the accuracy of measurements such that the maximum permissible error is exceeded. This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 13 (32)

14 2. Technical data This chapter describes the fuel dispenser. For self-service devices see their certificate and their additional documentation such as documentation folders, see chapter Rated operating conditions Measurand Volume of liquid fuel expressed in litre. If ATC conversion device is included, the volume at base condition (15 C) is displayed. The calculations are based on OIML R63 (API/ASTM 54B) except for petrol/ethanol mixtures where Verfahren 1 according to PTB dated April 11, 2011, is used. Measurement range Maximum flowrate (q max) Minimum flowrate (q min) Minimum measured quantity (mmq) Scale interval, volume display Maximum working pressure Minimum working pressure Liquid temperature range 40 to 130 l/min 0,2 l/min 2,0 l or 5,0 l (see specification of hoses and nozzles). As option, 5,0 l can be used on any configuration. 0,01 l 0,3 MPa 0,12 MPa -30 C to +55 C, -25 C to +55 C only for FAME/RME Type of liquids, volume sensor imeter, imeter 2 and Xflo TM Petrol, kerosene, diesel, ethanol or FAME/RME Viscosity range Volume sensor flowrate range, imeter Duplex (each meter) and Single imeter2 Duplex (each meter) and Single (Flow compensating Pulse Transmitter) 0,4-8,0 mpas 0,2 to 70 l/min 4 to 70 l/min only for FAME/RME 0,2 to 70 l/min 4 to 70 l/min only for FAME/RME imeter 2 Duplex (each meter) and Single 1,6 to 70 l/min (Not flow compensating Pulse Transmitter) 4 to 70 l/min only for FAME/RME 0,2 to 70 l/min only for Petrol Xflo TM Duplex (each meter) and Single 4 to 80 l/min 4 to 70 l/min only for FAME/RME Mixture conditions, two liquids 5% to 95% (designation only e g 92, 95, 98 octane not 50/50, 70/30 etc) The ratio between maximum and minimum flow rate should be at least 10 for single quality and 5 for blending quality. Accuracy class 0,5 This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 14 (32)

15 Environments classes / influence quantities Mechanic: class M1 Electromagnetic: class E1 Ambient temperature limits: -25 C to +55 C -40 C to +55 C (Global Star V without heater for the calculator, all other models or ATC with heater for the calculator) Humidity: condensing Location: open 2.2 Other operating conditions Not applicable. 3. Interfaces and compatibility conditions Interface for vapour recovery systems. Communication between fuel dispenser and other parts of a measuring system (e g POS-systems) using one of the following non-reactive interfaces is evaluated and approved: Physical Interfaces: RS485 (integrated in igem CPU, no separate interface board required) RS422 " UKCL USCL " " NPCL (require separate interface board) LON ATCL " " Data Protocols: DART LJCL Ferranti SC-85 SINP IFSF ATCL (normally run on RS485 or RS422) (normally run on RS422) (normally run on UKCL) (normally run on USCL) (normally run on NPCL or RS485) (normally run on LON) (normally run on ATCL) Most protocols do not include unit, for example 15 C. Instead this has to be handled during set up of the station controller and dispensers. It must be possible for the measuring system to 15 C on the ticket. Any other part of the measuring system (e g POS or OPT) may be connected to these interfaces without disturbing or influencing the metrological data of the dispenser. The applied protocol must be stated in both certificates. This does however not imply that the connected equipment fulfils the requirements of MID. When the dispenser is a part of a self-service arrangement as described in the beginning of chapter 1 the following requirements have to be fulfilled, the self-service arrangement is then a part of this certificate. The communication between the dispenser and the self-service device/devices have to be through one of the interfaces/protocols listed above. The interface/protocol used have to be approved/listed also in the certificate for the self-service device/devices. The connection has to be verified by the installer so the metrolgical data are presented in a way, whether it is an indicated, printed or memorised result, that meets the essential requirements of the MID This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 15 (32)

16 4. Requirements on production, putting into use and utilisation This chapter describes the fuel dispenser. For other parts of a self-service arrangements see first part of chapter Requirements on production No special requirements identified. 4.2 Requirements on putting into use Initial verification may be performed in the factory (module D or F) with a test liquid and conditions as approved for module D. This procedure is applicable for all intended liquids (petrol, kersosene, diesel ethanol fuel or FAME/RME), up to 4 mpas for Xflo TM and without viscosity limits for imeter & imeter 2, i.e. no shift in the MPE is necessary. Follow installation instruction accompanying the equipment. 4.3 Requirements for consistent utilisations No special requirements identified. 5. Control of the measuring tasks of the instrument in use This chapter describes the fuel dispenser. For other parts of a self-service arrangements see first part of chapter Documentation of the procedure No special requirements identified, standard procedure. For dispensers with ATC the volume at base condition is displayed in normal working mode. Alternative 1: When verifying the dispenser as a black box, the delivered volume measured in a volume standard V t ref is converted to volume at base condition V 15 using V 15 ref = V t ref x VCF where VCF, volume correction factor, is based on the quality and temperature t of the liquid. Alternative 2: When the display is showing ATC Revison and CRCs press the CRC button and the W&Mmode is active for 30 minutes (or until next push on the CRC-button) displaying V t, V 15, temperature t, product and density. A test well (inner diameter 4 mm) can be used for the reference temperature sensor. Nozzle out: Amount display Product and density for primary meter Volume display: Product and density for secondary meter UPD: Blank In filling: Amount display Volume display: UPD: On nozzle return: Amount display Volume display: UPD: Uncompensated volume, V t Temperature for primary meter (momentary value) Temperature for secondary meter (momentary value) Volume at 15 C, V 15 altered with product and density for primary meter Uncompensated volume, V t altered with product and density for secondary meter Temperature t (mean value, volume weighted) 5.2 Special equipment or software, if applicable No special requirements identified. This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 16 (32)

17 5.3 Identification of - Hardware The construction and included components are described in 1.1, 1.2 and 1.3. Volume sensor(s), pulse(s), gas elimination device(s), board temperature module (ATC) and electronic calculator are identified in the data sheet accompanying the fuel dispenser. - Software The metrological software is identified by the checksum (W&M CRC value), which can be accessed by pressing the CRC button on the igem calculator CPU board. (Upon this also the program CRC values and software version number are indicated at the dispenser display.) P-AD67 555F Program CRC value (AD67) W & M CRC value (555F) SW version number (i.e ) CRC button and example of indication of software version on display For ATC this information is altered by Amount display Volume display: UPD: and Amount display Volume display: UPD: W&M CRC value on board temperature module Revision of board temperature module AtC W&M CRC value on TTL/CAN converter Revision of TTL/CAN converter CAn 5.4 Calibration-/adjustment procedure Dispensers with imeter & imeter 2 volume sensors are calibrated/adjusted according to Wayne manual (English version, other languages may be available). Dispensers with Xflo TM volume sensors are calibrated/adjusted according to Wayne manual WM (English version, other languages may be available). ATC is calibrated/adjusted according to Wayne manual WM (English version, other languages may be available, contact Wayne local technical support). This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 17 (32)

18 6. Security measures 6.1 Sealing Only the fuel dispenser is sealed, not Wayne ixpay TM secure payment platform, Wayne HeliX Pay Freestanding, Wayne Fusion forecourt system and Wayne Nucleus 9. For other self-service devices see their certificate and their additional documentation such as documentation folders, see chapter 1. The dispenser is sealed according to page 18 to 30. Pages and describe alternative sealing for Xflo TM and 21 and alternative sealing of imeter and 28 describe alternative sealing of imeter 2. ATC: The board temperature module and temperature sensors are sealed according to pictures on page Name plate (aluminium or vinyl sticker) is sealed to the frame with a small "vandal proof" label. - Electromechanical totalizer is sealed if used as a basis for legal transaction (page 29-30). The following components are not sealed, but protected/identified in the following way: - The pulsers are uniquely electronically identified by the calculator, including a presence check. NOTE: When using wire through screws etc. to make seals, ensure that the wire is as short and taut as possible. The closing stamp must be placed such as it is within reach for pressing with intended pliers, without dismantle surrounding components with the help of tools. This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 18 (32)

19 Sealing of board temperature module Sealing of temperature sensors for imeter This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 19 (32)

20 Sealing of temperature sensors for Xflo TM Sealing of temperature sensors for imeter 2 This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 20 (32)

21 Sealing of hydraulic unit with imeter volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 21 (32)

22 Alternative 1 Sealing of hydraulic unit with Xflo TM volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 22 (32)

23 Alternative 2 Sealing of hydraulic unit with Xflo TM volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 23 (32)

24 Alternative 1 Sealing of dispenser variant (central pump) with imeter volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 24 (32)

25 Alternative 2 Sealing of dispenser variant (central pump) with imeter volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 25 (32)

26 Alternative 1 Sealing of dispenser variant (central pump) with Xflo TM volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 26 (32)

27 Alternative 2 Sealing of dispenser variant (central pump) with Xflo TM volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 27 (32)

28 Sealing of dispenser with imeter 2 volume sensor This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 28 (32)

29 Example of sealing of electromechanical totalizer (if used as a basis for legal transaction) for Global Star Sealing of the program load PRG LOAD switch for Global Star Sealing of the program load PRG LOAD switch for Global Century This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 29 (32)

30 Picture: Example of sealing of electromechanical totalizer (if used as a basis for legal transaction) and sealing of the program load PRG LOAD switch for Global Star V 6.2 Data logger A data storage device (included in Fusion, Nucleus 9, for other self-service devices see their certificate and their additional documentation such as documentation folders, see chapter 1) is only mandatory, when the measuring system includes attended post-payment including sale stacking or unattended delayed-payment. This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 30 (32)

31 7. Labelling and inscriptions This chapter describes the fuel dispenser. For self-service devices see their certificate and their additional documentation such as documentation folders, see chapter Information to be borne by and to accompany the instrument The name plate mounted on the instrument shall contain the following information: - the name or trademark of the manufacturer - the serial number and year of manufacture - the designation or type name (according to Product names see chapter 1.1) - the nature of the liquid to be measured and viscosity class - the EU-type examination certificate number, 0402-MID , where only is mandatory - the accuracy class - the ambient temperature range - the temperature range of the dispensed liquid - minimum measured quantity - max. flow rate Qmax - min. flow rate Qmin - max. pressure Pmax - mechanical class - electromagnetic class Volume sensor(s), pulser(s), board temperature module, gas elimination device(s) and electronic calculator are identified on the data sheet. This data sheet does not have to be sealed. 7.2 Conformity marking in accordance to MID article 21 The instrument shall be marked in accordance to MID 2014/32/EU article 21 which e.g. describes the CEmarking together with M, year of marking and the notified body number. 7.3 Further inscriptions, if necessary Minimum measured quantity shall be inscribed on the indicator face. If ATC is 15 C shall be marked adjacent to the volume display. Display for ATC 15 C This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 31 (32)

32 8. Revision history Issue Update with reference to MID 2014/32/EU (and Swedish STAFS 2016:1, 2016:6) - Addition of ATC temp board checksum 7EA9 (chapter 1.2) - Addition of Pulse transmitter WM (chapter 1.2) - Additional information about Measurement range (re Pulse transmitter (chapter 2.1) - Marking, reference to MID article 21 (chapter 7.2) This document may not be reproduced other than in full, except with the prior written approval by RISE Certification. Page 32 (32)

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