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Transcription:

EC type Examination Certificate 0402-MID-51 65 02 Issued to Structab AB, Slottsmöllan 14B, 302 31 HALMSTAD, Sweden In respect of (type of instrument) Taximeter MegTax 350 and MegTax 310 In accordance with The Measuring Instruments Regulations STAFS 2006:4 and The Regulations and Guidelines concerning Taximeters STAFS 2006:11 dated 2006-07-21, implementing in the NB s country law the Directive 2004/22/EC of 31 March 2004 on measuring instruments (MID). Harmonised standards and normative documents used OIML R21 Taximeters Metrological and technical requirements, test procedures and test report format (applied partly) Further applied documents WELMEC 7.2, Software Guide (Issue 3) OIML D 11 Edition 2004 (E), General requirements for electronic measuring instruments Information regarding applied environmental testing is evident from clause 9 of the appendix. Rated operating conditions Measurand: Time and or distance Mechanic environment class: Measurement Maximum 6 digits on the display range: (corresponding to the fare to be paid) Accuracy: - Time elapsed: ± 0,1 % - Distance travelled: ± 0,2 % - Calculation of the fare: ± 0,1 % - Measuring range: 1 000-100 000 pulses/km Electromagnetic environment class: Climatic environment: M3 E3-25 to +55 C Condensing Closed (installed in a car) Miscellaneous Valid until June 3, 2019. This certificate is the sixth edition with this number and replaces the earlier edition dated February 13, 2012. The principal characteristics, approval conditions are set out in the appendix hereto, which forms part of the approval documents and consists of 9 pages. All the plans, schematic diagrams and documentations are recorded under reference files ELe P804595, PX03215, PX11908, PX17328, PX20944 and 5P05553. 2015-10-30 Certification - Notified Body No. 0402 Lennart Aronsson Product Certification Manager Anders Nilsson Certification Officer The certificate, including appendices consists of 11 pages where this is page 1.

The instruments / measuring systems must correspond with the following specifications: 1 Design of the instrument 1.1 Construction Product names MegTax 350 consists of MTME350 (Central processor unit with display) MTKB300 (Connecting box) MTPR200 (Printer) can be connected to the system, but is not a requirement according to directive 2004/22/EC. MegTax 310 (MT 310) consists of MTME300 (Central processor unit with display) MTKB300 (Connecting box) MTPR200 (Printer) can be connected to the system, but is not a requirement according to directive 2004/22/EC. Measuring system description The taximeter is designed to measure time and receive information to calculate distance. Time is measured by its internal real time clock and distance is calculated by the number of pulses received from the pulse generator of the car (Vägpuls) in relation to the given pulse constant. The supply voltage is taken from the battery of the vehicle. For connections see the schematic picture below. Picture 1: Taximeter connections (instead of MTME350, MTME300 can be used) The certificate, including appendices consists of 11 pages where this is page 2.

Picture 2: Central Processor Unit with display MTME350 Picture 3: Central Processor Unit with display MTME300 Picture 4: Connection box MTKB300 Picture 5: Printer MTPR200 Supply voltage Taximeter and printer: 10-18 V Connection to pulse generator of the vehicle The pulse from the pulse generator of the car is to fulfil the following the requirements according to the manufacturer: The pulse input can be of the following types: Open-collector, Push-pull or Sinus. The pulse interval is 1000.100000 pulses/km State Sensor type Recommended value for pulses/km 0 Manual adjustment Manual adjustment 1 Sinus Up to 18000 2 Sinus Between 18000 and 100000 3 Push-pull Up to 18000 The certificate, including appendices consists of 11 pages where this is page 3.

State Sensor type Recommended value for pulses/km 4 Push-pull Between 18000 and 100000 5 Open-collector (1kΩ pull-up) Up to 18000 6 Open-collector (1kΩ pull-up) Between 18000 and 100000 7 Open-collector (10kΩ pull-up) Up to 18000 8 Open-collector (10kΩ pull-up) Between 18000 and 100000 9 Open-collector (100kΩ pull-up) Up to 18000 10 Open-collector (100kΩ pull-up) Between 18000 and 100000 Table 1: Connection to pulse generator of the vehicle. State number 0 is only to be used if recommended directly from the manufacturer. The signal is never to exceed the supply voltage of the taximeter or be below -6V. At Sinus type AC-pulses with an amplitude down to and including 200mV will be detected. At Push-pull and Open-collector the low level must be lower than 1V and the high level must be higher than 2V. 1.2 Software The validation of software was based on the essential requirements given in MID and WELMEC Guide 7.2. A report with number P804595-02, dated April 15, 2009 was issued and is held by SP. Supplementary evaluation was carried out in accordance with report PX11908-04. Software version The following program versions are approved: Type of program Program version with checksum in brackets Taximeter program MegTax 350 01.02B(21f2) 02.01C(76c9) 03.01B(4251) 04.01A (dd1f) Taximeter program MegTax 310 01.02B(1cf3) 02.01C(7e7c) 03.01B(2cd8) 04.01A (88bf) Table 2: Program versions where the values (hexadecimal) in brackets are the checksums. The software identification numbers are to be interpreted in the following way: Example: Complete program version: 01.02B(21f2) 01 is the main version and is changed at bigger changes 02 is the part version and is changed at smaller changes B is the bug fix version (21f2) is the checksum The certificate, including appendices consists of 11 pages where this is page 4.

The software identification number and the checksum can be seen in the following way: choose MENY, RAPPORTER, VERSIONER, and TAXAMETERVERSION. Alternatively if a printer is connected the number and the checksum can be read by making a Taxameterkontroll * choose MENY, RAPPORTER and TAXAMETERKONTROLL or press the PK button and choose TAXAMETERKONTROLL. The mode Taxameterkontroll is a print-out intended for the police or other authority in order to check e.g. the totalisers, the date of securing and the tariff values. 1.3 Components included for electronic function The following documentation is stating the components Product Documentation Revision Note Megtax 350 UB 2008:27 F MT310 UB 2010:46 D MT310 UB 2010:83 B Change of hardware Megtax 350 UR 2011:51 A Change of hardware Table 3: Documentations that stating the components. 1.4 Optional equipment and functions subject to MID requirements None identified 1.5 Technical documentation For market surveillance the construction, software and included components are described in 1.1, 1.2 and 1.3. 1.6 Integrated equipment and functions not subject to MID Software to fulfil national requirements, to communicate with booking central or card reader must not influence the accuracy of measurements such that the maximum permissible error is exceeded or the required functions are changed. 2 Technical data 2.1 Rated operating conditions Measurand Time and or distance. Measurement range Total Memory: Total distance: 420*10 6 km Total distance in taxi traffic (driver logged in): 420*10 6 km Number of hirings: 420*10 6 km Total amount of money: 21*10 6 monetary units The certificate, including appendices consists of 11 pages where this is page 5.

Total amount of supplementary charge: 21*10 6 monetary units Total Memory for taximeters with programversion 04.01A with checksums (dd1f) and (88bf): Total distance: 1,8*10 18 km Total distance in taxi traffic (driver logged in): 1,8*10 18 km Number of hirings: 4200*10 6 km Total amount of money: 92*10 15 monetary units Total amount of supplementary charge: 92*10 15 monetary units The limitation is the maximum fare that can be displayed. The amount is limited to five digits e.g. SEK 99 999. Accuracy - Time elapsed: ± 0,1 % - Distance travelled: ± 0,2 % - Calculation of the fare: ± 0,1 % - Pulse range: 1000-100 000 pulses/km Environments classes / influence quantities Mechanic: class M3 Electromagnetic: class E3 Ambient temperature limits: -25 C to +55 C Humidity: condensing Location: closed (inside a car) 2.2 Other operating conditions Not applicable. 3 Interfaces and compatibility conditions See clause 1.1 4 Requirements on production, putting into use and utilisation The requirements of the installation manual are to be followed when installed in a car and put into use. 4.1 Requirements on production No special requirements identified. 4.2 Requirements on putting into use The taximeter must be adapted to the vehicle. 4.3 Requirements for consistent utilisations No special requirements identified. The certificate, including appendices consists of 11 pages where this is page 6.

5 Control of the measuring tasks of the instrument in use 5.1 Documentation of the procedure The procedure to control the accuracy after installation in a car is described in the user s manual. 5.2 Special equipment or software, if applicable A stop watch or other time measure equipment is needed. 5.3 Calibration-/adjustment procedure The taximeter can be controlled after installation in a car in the following way. Accuracy of distance measurement To check the accuracy of distance measurement the following procedure is to be followed: Choose Anpassningskontroll (MENY, RAPPORTER, ANPASSNINGSKONTROLL). Press OK when the verified distance starts and press OK again when 1000m is passed. The taximeter is showing the pulse constant, the number of pulses received when driving the distance and the deviation. If a printer is connected a print-out will be given. The speed is required to be at least 20km/h during the complete distance. Use a verified distance of 1000m to carry out the control. To change the taximeter constant the sealing must be broken and using SERVICEMENY in accordance with the installation manual. Accuracy of time measurement To check the accuracy of the time measurement the following procedure is to be followed: Choose Tidmätning (MENY, RAPPORTER, TIDMÄTNING). Start by pressing OK and start a calibrated stop watch at the same time. Wait at least 60 min. Stop both stop watch and taximeter counting OK at the same time. Start time, stop time and measured time are shown on the display. If a printer is connected, a print-out will be given. Use a calibrated stop watch to carry out the control. 6 Security measures 6.1 Sealing The taximeter is sealed according to page 7 and 8. MTKB300 (connection box) is to be fastened to the vehicle by four screws. Cables for supply voltage and pulses are connected inside the connection box. When the connection box has been fastened to the vehicle the lid of the box is sealed with a screw (electronic sealing when the lid is pressed down) and a sealing wire through the screw. The certificate, including appendices consists of 11 pages where this is page 7.

The display and CPU MTME350 or MTME300 is electronically sealed to MTKB300 in the way that if the lid of the display and CPU part is opened the sealing is shown as broken on the display as well as on the connection box. If the lid of the connection box is opened the sealing will also be shown to be broken. The status of the electronic sealing is shown by the diodes of MTKB by a period of 5s in the following way: Number of twinkles (during 5s) Meaning 1 The system is sealed 2 The electronic sealing has not been reset after being broken 3 The sealing of MTME300/350 is broken 4 The sealing of MTKB300 is broken 5 The sealing of both MTME300/350 and MTKB300 are broken Table 4: Status of the electronic sealing. If the sealing has been broken the lid of MTKB must be opened and then sealed again. Picture 6: Mechanical sealing (indicator regarding electronic sealing marked) 6.2 Data logger The totalisers are stored in memory of FRAM type. Change of program version will be stored in Versionshistorik (MENY, RAPPORTER, VERSIONER, VERSIONSHISTORIK). Change of taximeter constant Txm.konst historic can be seen by choosing MENY, RAPPORTER, TXM.KONST. HISTORIK. The certificate, including appendices consists of 11 pages where this is page 8.

Dates of sealing Plomberingshistorik can be seen by choosing MENY, RAPPORTER, PLOMBERINGSHISTORIK. Alternatively the date and time of the last electronic sealing can be read by Taxi-identitet (MENY, RAPPORTER, TAXI-IDENTITET). 7 Labelling and inscriptions 7.1 Information to be borne by the instrument The marking on the instrument shall contain the following information: - the name of the manufacturer - the serial number - the designation or type name (according to Product names Appendix page 1) - the EC-type examination certificate number, MID SC 51 65 02 - the accuracy class - markings regarding other approvals - marking regarding additional devices not being covered by MID Picture 7 and 8: Placement of marking on MTME350 (to the left) and MTME300 (to the right) Picture 9: Placement of marking on MTKB300 Picture 10: Information to be given on the marking. nn nn nn is to be replaced by the approval number TnnTX is national Swedish marking The certificate, including appendices consists of 11 pages where this is page 9.

7.2 Conformity marking in accordance to MID article 17 7 The instrument shall be marked in accordance to MID article 17 which e.g. describes the CE-marking together with M, year of marking and the notified body number. 7.3 Further inscriptions, if necessary Further inscriptions e.g. e-marking and national markings are necessary, but are not connected to this directive. 8 Manuals The following manuals are to accompany the different systems in the official language of the country of use (the manufacturer is responsible for the translation of approved documents). Program version (check sum) Title of manual Product Version number Date 01.02B(21f2) Manual MegTax MTME350 Taxameter MegTax 350 Language of examined version 1.0 090320 Swedish 01.02B(1cf3) Manual MegTax 310 MegTax 310 1.1 101011 Swedish 02.01C(7e7c) Manual MegTax 310 MegTax 310-110414 Swedish 02.01C(76c9) Manual MegTax 350 MegTax 350 PA16 111116 Swedish 03.01B(4251) Manual MegTax 350 MegTax 350 PA18 111223 Swedish 03.01B(2cd8) Manual MegTax 310 MegTax 310 PA9 120209 Swedish Table 5: List of manuals. For installation purposes the manual MegTax Servicemanual 310/350 revision 2.2 dated 2010/10/12 (examined in Swedish version) is to be followed for program version 01.02B, revision 2.4 dated 2011/04/14 is to be followed for program version 02.01C and revision 4.0 dated 2015-08-12 is to be followed for program version 04.01A. 9 Applied environmental testing Vibration IEC 68-2-64 revision 1, test Fh (this is a higher severity than Class M3 in accordance with OIML D11): 10-20 Hz: 0,05 g 2 /Hz 20-500Hz: -3 db/octave Testing was carried out in three mutually perpendicular axes for 0.5 hours in each direction and the taximeter was connected to power during testing. Dry Heat OIML D11 with testing according to IEC 60068-2-2 test Bd, but with the duration 16h and the highest temperature +70 C. The test object was connected to power during the test. The certificate, including appendices consists of 11 pages where this is page 10.

Cyclic damp heat/cold Testing of cold and damp heat was carried out in accordance with the climate sequence of IEC 60068-2-61. First one cycle damp heat was carried out according to IEC 60068-2-30 edition 2 revision 1. test Db. temperature: +55 C. The taximeter was not connected to power during testing. After recovery in controlled atmosphere during 1 h ±5 min cold test according to IEC 60068-2-2 edition 5 revision 2 test Ab at -40 C during 16 h was carried out. After finalisation of the cold test 5 cycles of damp heat was carried out according to IEC 60068-2-30. edition 2. revision 1. test Db. +55 C. The taximeter was not powered during testing. Emission EN 55022:2006, /A1:2007 class B Immunity OIML D11 12.2 Electrostatic discharged according to IEC61000-4-2, level 3 OIML D11 12.1.1/1 and 12.1.1/2 Radiated RF immunity according to IEC61000-4-3, level 3 OIML D11 12.1.1 Injected RF immunity according to IEC61000-4-6, level 3 OIML D11 14.2.1 Voltage variation according to ISO16750-2 OIML D11 14.2.2 Automotive voltage transient immunity according to ISO 7637-2, level 4 pulses 1, 2a, 2b, 3a, 3b, 4, 5 OIML D11 14.2.3 Automotive voltage transient immunity ISO 7637-3, level 4 The certificate, including appendices consists of 11 pages where this is page 11.