^^^V 1 P Karloveska 63. 842 55 Bratislava 4, Slovenska republika - MID_SMU_cert AMT...Slovensky...

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Slovensky metrologicky ustav ^^^V 1 P ^H^V Karloveska 63. 842 55 Bratislava 4, Slovenska republika Cislo dokumentu: Document number: V sulade s: In accordance with: ZiadatelW yrobca: Issued to (Manufacturer): Dmh meradla: Type of instrument: Oznaccnie typu: Type designation: Zakladne poziadavky: Essential requirements: Platnosf do: Valid until: Notifikovana osoba: Notified body: Datum vydania: Dale of issue: ES CERTIFIKAT TYPU EC - Type-examination certificate SK 08-MI003-SMU003 Revizia 9 naliradza certifikat zo dna 14. januara 2015 Revision 9 replaces the certificate issued by July 14, 2015 Revision 9 nariadenim vlady Slovenskej republiky c. 294/2005 Z. z. o meradlach v zneni nariadenia vlady SR c. 445/2010 Z. z., ktorym sa prebera smernica Europskelio parlamentu a rady 2004/22/ES v zneni smemice 2009/137/ES Government Ordinance of the Slovak Republic No. 294/2005 Coll., on measuring instruments as amended by Government Ordinance of the Slovak Republic No. 445/2010 Coll. which implemented the Directive 2004/22/EC on measuring instruments as amended by Directive 2009/137/EC of the European Parliament and Council Applied Meters, a.s. Budovatel'ska 50, 080 01 Presov, Slovenska republika Elektromer/ trojfazovy staticky elektromer Active electricity energy meters I three-phase static electricity meter AMTBl Priloha c. 1 apriloha MI -003 knariadeniu vlady SR c. 294/2005 Z. z. v zneni nariadenia vlady SR c. 445/2010 Z. z. Annex No. I and Annex MI-003 of the Government Ordinance of SR No. 294/2005 Coll as amended by Government Ordinance ofSR No. 445/2010 Coll. 19, decembra 2018 December 19, 2018 Slovensky metrologicky ustav 1781 Slovak Institute of Metrology 1781 15. aprila 2016 April 15, 2016 Zakladne charakteristiky, popis meradla a podmienky schvalenia sii uvedene v prilohe, ktoraje sucast'ou tohto certifikatu. Certifikat vratane prilohy ma spolu 17 stran. Essential characteristics, instrument description and approval conditions are set out in the appendix hereto, which forms the part of the certificate. The certificate including the appendix which contains 17 pages. Ing. Emanuel Godal zastupca nrftifikovanej osoby representative of notified body Poznamka: ES certifikat typu je bez peciatky a podpisu neplatny. Tenlo ES certifikat typu moze byt rozmnozovany len cely a nezmencny, Rozmnozovat'jelio Casti je mozne len s pisomnym sulilasom Slovenskeho metrologickelio ustavu. Note: EC-type exaimnalion certificate without signature and stamp is not valid. This EC-lype examination certificate may not be reproduced otiier tlian in full. Extracts may be taken only with the written permission of tlie Slovak Institute of .Metrology.

Transcript of ^^^V 1 P Karloveska 63. 842 55 Bratislava 4, Slovenska republika - MID_SMU_cert AMT...Slovensky...

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Slovensky metrologicky ustav ^ ^ ^ V 1 P ^ H ^ V Karloveska 63. 842 55 Bratislava 4, Slovenska republika

Cislo dokumentu: Document number:

V sulade s: In accordance with:

Z i a d a t e l W yrobca: Issued to (Manufacturer):

D m h meradla: Type of instrument:

Oznaccnie typu : Type designation:

Zakladne poziadavky: Essential requirements:

Platnosf do: Valid until:

Not i f ikovana osoba: Notified body:

Datum vydania: Dale of issue:

ES C E R T I F I K A T T Y P U EC - Type-examination certificate

S K 0 8 - M I 0 0 3 - S M U 0 0 3

Revizia 9 naliradza certifikat zo dna 14. januara 2015 Revision 9 replaces the certificate issued by July 14, 2015

Revision 9

nariadenim vlady Slovenskej republiky c. 294/2005 Z. z. o meradlach v zneni nariadenia vlady SR c. 445/2010 Z. z., ktorym sa prebera smernica Europskelio parlamentu a rady 2004/22/ES v zneni smemice 2009/137/ES Government Ordinance of the Slovak Republic No. 294/2005 Coll., on measuring instruments as amended by Government Ordinance of the Slovak Republic No. 445/2010 Coll. which implemented the Directive 2004/22/EC on measuring instruments as amended by Directive 2009/137/EC of the European Parliament and Council

Applied Meters, a.s. Budovatel'ska 50, 080 01 Presov, Slovenska republika

Elektromer/ trojfazovy staticky elektromer Active electricity energy meters I three-phase static electricity meter

A M T B l

Priloha c. 1 apriloha MI-003 knariadeniu vlady SR c. 294/2005 Z. z. v zneni nariadenia vlady SR c. 445/2010 Z. z. Annex No. I and Annex MI-003 of the Government Ordinance of SR No. 294/2005 Coll as amended by Government Ordinance ofSR No. 445/2010 Coll.

19, decembra 2018 December 19, 2018

Slovensky metrologicky ustav 1781 Slovak Institute of Metrology 1781

15. apr i la 2016 April 15, 2016

Zakladne charakteristiky, popis meradla a podmienky schvalenia sii uvedene v prilohe, ktoraje sucast'ou tohto certifikatu. Certifikat vratane prilohy ma spolu 17 stran. Essential characteristics, instrument description and approval conditions are set out in the appendix hereto, which forms the part of the certificate. The certificate including the appendix which contains 17 pages.

I n g . Emanuel Godal zastupca nrftifikovanej osoby

representative of notified body

Poznamka: ES certifikat typu je bez peciatky a podpisu neplatny. Tenlo ES certifikat typu moze byt rozmnozovany len cely a nezmencny, Rozmnozovat'jelio Casti je mozne len s pisomnym sulilasom Slovenskeho metrologickelio ustavu. Note: EC-type exaimnalion certificate without signature and stamp is not valid. This EC-lype examination certificate may not be reproduced otiier tlian in full. Extracts may be taken only with the written permission of tlie Slovak Institute of .Metrology.

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9 I Slovensky metrologicky ustav Karloveska 63, 842 55 Bratislava 4, Slovenska republika

Annex to the EC-type examination certificate No. SK 08-MI003-SMU003, Revision 9 dated April 15, 2016 Page 2 irom 17 pages

1 Instructions and standards used within assessment

1.1 General ly binding instructions

The mentioned type o f measuring instruments has been assessed in compliance wi th requirements for the given measuring instrument type established by the Slovak Republic Government Ordinance No. 294/2005 Coll . on measuring instruments as amended by Government Ordinance o f the Slovak Republic No. 445/2010 Coll . (hereafter as ^Government Ordinance"), which transposes the Directive 2004/22/EC on measuring instruments as amended by Directive 2009/137/EC o f the European Parliament and Council.

Essential requirements for the given measuring instrument type are specified in the Annex N o . l "Essential requirements" and in the Annex No.MI-003 "Active electrical energy meters" o f the Government Ordinance.

1.2 Harmonised standards and normative documents used:

EN 50470-1 Electricity metering equipment (a.e.) - Part 1: General requirements, tests and test conditions - Metering equipment (class indexes A , B and C) (2008).

EN 50470-3 Electricity metering equipment (a.c.) - Part 3: Particular requirements - Static meters for active energy (class indexes A , B and C) (2008).

1.3 Other related standards:

EN 62052-11 Electricity measuring equipment (a.c.) - General requirements, tests and test conditions - Part 11: Metering equipment (2003)

EN 62053-21 Electr ici ty measuring equipment (a.c.) Particular requirements Part 2 1 : Static meters for active energy (class indexes 1 a 2) (2003)

EN 62053-22 Electr ici ty measuring equipment (a.c.) Particular requirements Part 22: Static meters for active energy (class indexes 0,2 S a 0,5 S) (2003)

T y p e m a r k i n g Three—phase static electricity meter

T y p e A M T B l

Accuracy class: A ; B or C

Mechanical environment class: M l

Electromagnetic environment class; E2

3 Measur ing instrument description

The static electricity meters o f the type A M T B l are designed for use in three phase AC systems with frequency 50Hz or 60 Hz in households, light industiy and similar operation units. The electricity meters can be used also for single-phase measurements in single-phase two-wire network in any phase and for two-phase measurements in two-phase three-wire network. The electricity meter detects through input circuits the input voltage and current, which are subsequently processed in the measuring circuit. The output is the digital signal, which is proportional to measured energy.

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3.1 Description of construction

„Vers ions of electricity meters of the A M T Bltype and their marking"

A M T B 1 X5 - X6 X7 X8 X9 X l l Xl2 1 2 3 4 5 6 7 8 9 10 11 12

Electricity meters marking: A M T B l

X 5 : current ranges - Direct:

4 400%; 5 500%; 6 600 %; 8 800 %; A 1000%; B 1200%; D 1600%; E 2000%; F 2400%;

- Semi-direct: 1 120%; 2 150%; 3 200%;

x^: basic executions: 5 with mechanical register - one-tariff-rate D wi th mechanical register - two-tariff-rate O with LCD, without RTC F wi th LCD and RTC multi-functional

X 7 : measured energy: A active energy; F active energy + Ferraris regime R active energy + reactive energy

Xg: connection to the net^vork: 2 two-phase three-wires; 4 three-phase four-wires;

X9: type of input current converter: T current measuring transformer

Xio: construction of package: D to 80 A E to 100 A 9 to 120 A

Xii: applied (used) processor: N NEC I T l I I 2xTI I S S T M and T I

X12: special modules: R radio module - transmitter T radio module - transmitter and receiver 2 interface - RS 232 4 interface - RS 485 C communication IR remote-control interface M communication module Mesh — wireless / v NB 1781 Y auxiliary relay controlled according to the tariff rate or time ' ^ / W emitting output for consumption and supply (u//// E external control o f the second rate \Ji I I C J \

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Note: x l 2 position can include more characters, i f the meter has muhiple modules simultaneously

Visualisation of basic executions of electricity meter, type A M T B l

Electricity meter with electromechanical register in package to 80 A wi th one tariff-rate

Electricity meter with LCD display in package to 80 A

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Electricity meter with LCD display in package to ICQ A

Electricity meter with electromechanical register in package to 100 A, two-tar iff-rate

P.I II > n . « M . I •tmr, 1

I h 0 n 0 n n

AMT a i A . D A 4 £ IIDIIII No 10000717011

'I n (1 0 0 (1 P

I _ C € M11 1781 / B l ^

/

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C S ^ ^ ^ I Slovensky metrologicky ustav I p ^ H ^ P Karloveska 63, 842 55 Bratislava 4, Slovenska republika

Annex to the EC-type examination certificate No. SK 08-MI003-SMU003, Revision 9 dated April 15, 2016 Page 6 from 17 pages

Electricity meter A M T B1F-FA4T9ISE without terminal cover in package to 120 A

Electricity meter A M T B1E-FA4TEISY with terminal cover

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3.1.1 Construction

The static electricity meters o f type A M T B l are intended for measuring active energy related payments in households, light industry and similar establishments. Electricity meters can be used to measure as:

- Three systems in the three-phase four-wire network; - Two systems in the two-phase three-wire network; - One system in the single-phase two-wire network at any stage;

The electricity meters depending up the type o f construction can have the following functions: measurement o f the active and reactive electric energy, measurement o f the actual (instantaneous) active power, o f the current average active and reactive value o f demand, o f the active and reactive last average demand, o f the maximum active and reactive demand; historical records o f the measurements o f the active and reactive energy and the measurements o f the maximal average active and reactive power measurement o f the instantaneous effective values o f voltages and currents, power factors and frequency o f selected phase Record o f data profile and operation incidents.

The output information o f measured energy can be displayed on electromechanical dial or electronic LCD display. The meter can be connected to the circuit directly or through semi-direct measuring current transformers or indirectly by measuring current and voltage transfomiers.

Construction o f the three-phase static electricity meter o f A M T B l type is composed of the following parts:

- Input converters o f voltage and current for analogue signal detection. Voltage converters are realised by resistant dividers. Current converters are special current transformers, which provide the insulating separation o f current and voltage circuits,

- The measuring system o f electricity meter is realised at the printed circuit plate. The base is client integrated circuit (converter o f electrical power - frequency), which processes analogue signals, whereby the output is the digital signal proportional to measured energy. Other information like reverse energy flow, feeding voltage condition (presence of phase, reverse sequence phase) can form the output,

- Display circuit for displaying o f output information. It can be electromechanical dial (meter with electromechanical counter), or microprocessor subsystem (meter wi th the LCD display).

The electricity meter assembly is placed in the plastic case, installation o f which is done by screws, or at the DIN 35 bar. The construction o f package is consistent wi th the insulating class I I and meets the requirements for 1P54 degree o f protection provided by enclosure. The case is composed of the bottom, terminal block and its cover, lid and lid filler. The lid filler is made o f clear polycarbonate and it is put into the l id. In the l id filler there are optical fibre links permitting visualisation o f indicating LEDs, made by SMD technology and optical interface. Between the l id and filler there is embedded the capacity card. Brass connectors o f bushing type are suitable for connection o f copper and aluminium conductors. The lid o f electricity meter is possible to be provided by two verification seals and the cover o f terminal block by two assembly seals as well .

3.1.2 Measurement value processing - hardware, software

The meters, depending on their constructions can be equipped by the following output elements for monitoring or control o f their functions:

Testing output (TO) is placed in the electricity meter cover (red LED diode) and it transmits testing light signals, which are used for setting and verification o f electricity meters. Number o f output impulses is equal to the electricity meter constant ( imp/kWh or Wh/imp). The meter can be equipped by extra testing output for reactive energy (imp/kvarh or varh/imp).

Transmitting output (SO) is realised as passive output o f the SO type (open collector), with peripheral power supply (24V, 30mA). Normally the electricity meter is equipped by one

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transmitting output for active energy. According to the construction it can be equipped by other transmitting outputs (e.g. for the active energy import and active energy).

Indication output o f network conditions ( L 1 , L2, L3) allows monitoring the network conditions and presence of particular phases.

Indication output o f the reverse energy flow is located on the electricity meter Hd (LED diode with marking and indicates the conditions o f on-line o f current and voltage inputs. Controlling mode input for LCD visualization is located in the lid o f the electricity meter (marking ,,step"). It can be performed by mechanical button or by contact less IR sensor. Infrared (IR) communication interface is accessible from the front side o f the electricity meter l id . Through the interface it is possible according to access rights to readout electricity meter parameters (objects), write parameters or execute direct orders. Infrared (IR) remote-control communication interface is accessible from the front side o f the electricity meter l id. It serves for electricity meter readout up to distance o f several meters. Through the interface it is possible according to access rights to readout electricity meter parameters write parameters or execute direct orders. The communication interface RS 485 is accessible through the terminal board o f electricity meter. It serves for electricity meter readout in A M R systems. Through the RS485 it is possible according to access rights to readout electricity meter parameters write parameters or execute direct orders. Note: For the communication interface there is used protocol lEC 62056-21, mode C. The objects are identified according to OBIS lEC 62056-61. External communication modules represent additional issue, which covers external DPS with several different modifications: MBUS - wireless (868 MHz) , Mesh (867 MHz) , radio module A M based on C H I P K O M (433 MHz) , RS232 (3 conductors) or other optional modules, which meet condition, that dynamic consumption is maximum 100 mA and are equipped by UART interface with auxiliary signals. Externa! input o f tariff rates control is accessible through the terminal board. The electricity meter can be equipped by maximum 2 inputs for tariff rates control. The control signal o f external input is equal to supply voltage. The auxiliary relay is located on the external DPS. The relay contacts are accessible through the terminal board and are controlled according to tariff rates or electricity meter timer.

To measure the electrical energy electricity meters are equipped by measuring circuit (MC) , which evaluates and converts input analogue signals to digital and it provides them for subsequent processing. From the M C , according to type o f electricity meter, it is possible to get information on value o f energy measured and other information.

To construct the electricity meter with electromechanical dial, output signals from the MC control directly the stepping motor o f mechanical counter, testing output (TO), transmitting output (SO), indicators o f reverse energy flow and presence of phase voltage.

To construct the electricity meter wi th LCD display, the output signals from M C electricity meter are input signals for circuit o f electronic tariff rate equipment (ESZ) with the microprocessor. The ESZ circuit provides all the functions o f electricity meter, it processes output signals from M C , it evaluates the inputs, and controls outputs o f electricity meter and LCD visualisation.

The electricity meter type without real time clock (RTC) can measure: active, reactive energy, in whole or in two externally controlled rates, voltage, current, frequency, power factor.

The electricity meter type with real time clock (RTC), ESZ in connection with RTC can have other functions:

calculation o f instantaneous (actual) active power calculation o f the current average active and reactive value o f demand, calculation o f active and reactive last average demand, calculation o f the maximum active and reactive demand for selected measuring

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formation o f the historical records o f active and maximum active demands for elapsed deduction period (maximal 15 records), calculation o f the cumulative maximum - sum of maximum demands for the recent deductive periods, data profile record formation according to selection and options o f electricity meter (energy, power, voltage, current, frequency, power factor), formation o f the electricity meter operation incidents record (vohage failure o f all phases, voltage failure o f one phase, removal o f the cover o f terminal block, removal o f the meter cover, measurement violation by magnetic field, reverse energy f low).

Electricity meter based on type can save total energy (according to selection: active energy import, energy supply, sum o f import and supply, measurement in ferraris mode), maximum in four registers. For each of total energy it is possible to select four different tariff rates, it means maximal number o f tariff registers can be 16.

Electricity meters based on type can be equipped by software, which creates one functional unit and enables performance o f all functions o f electricity meter which are connected with input measured impulses controlling, calculation and archiving o f measured energy and power, data visualization, communication interface operation etc. Electricity meter has all parameters, constants connected with energy measurement, power or service functions saved in non-volatile store. Change o f parameters is possible through the communication interface, through the manufacturer's communication program. The program enables the access to the electricity meter parameters maximum in six levels.

In order to ensure the access to firmware parameters there is used firmware (un-coded or coded password) and hardware means (switches - jumpers under electricity meter l id, which are sealed by manufacturer). After sealing o f electricity meter l id there is impossible to change relevant metrology parameters or used software version (firmware).

Different versions o f the meter A M T B l use the following firmware versions:

Meier: marking software: checksum: AMTBlx-xA4T 012.02 -AMT B13-XA4T (semi-direct) 047.0J -AMTBLx-Fx 082.00 0x7013

083.00 0x23E2 084.00 0x1113 082.04 0xDCF4 082.11 0x7A32 082.12 0xCBB5 083.02 0x6E07 083.03 0x03BD

AmBl3-OA4TEI (indirect) 068.00 OxSEEC AA'fT BJ3-Fx (semi-direct) 075.08 0xD0C4

75.08 OxD0C4 75.13 0x826C

AmB}3-OA4TEI 111.00 0x8CB5 AhfTB13-OA4TEI 112.00 0xD81F AMTBIX-0A4TEI 035.07 0x60AC AMT BIX-0A4TEI 086.01 0x555F AMTB1X-0A4TEI 086.03 0xFA36 AMTBJX-OA4TEI 113.00. 0x3DD7 AMTBlx-()A4TEI 114.00 0x9474 AMTB1X-OR4TI 086.04 0xAEF4

086.05 0xFC9B 086.06 0x4A9 3

NB 1781

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AMTB1X-OA4TI 086.07 0x0B89

AMTB1X-OR2TI 038.05 0x48A1 038.07 0xEB5D 087.03 0x9014 087.04 OxFA64 087.05 0x022E

AMTBIx-Fx (LCDD9) 098.00 0x6F7A AMT Blx-Fx (LCD D9, uo power nieasnrementj

101.00 0x6378 Checksum: CRCI6

Polynom: 0x11021

Labelling SW meters is defined as Numeric Code: X X X . Y Y

Where: X X X type designation SW is in the range o f 000-999 Type designation is assigned to a specific meter hardware (printed circuit board - PCB), which is defined by the principle o f measuring energy and power, displaying, handling input and output peripheral devices, interfaces and so on.

Y Y SW version is in the range 00-99 This part o f software designation represents changes and firmware upgrades which do not affect the measurement principle and operation input and output peripherals and are made based on customer requirements (e.g. redistribution tariff power registers, displaying o f the required data) or practical experience o f the operation o f meters (e.g. improving o f visibil i ty o f L C D segments, acceleration of communication with peripherals).

NB 1781

Identification number o f SW in the form X X X . Y Y (or X X X _ Y Y ) can be read through communication interface (or can be displayed on the LCD) with OBIS code 0.2.0. Checksum has OBIS C.50.1 and can be displayed on the L C D and read through the communication interface.

3.1.3 Indication of the measurement results

Depending on the particular meter version the measured data and technical information can be displayed at:

electromechanical calculating machine with 6 digits and one decimal position; LCD display with using o f dynamic changing display.

On the LCD display it is possible to visualize:

L C D version for A M T B l x - x x x T x I x and A M T B l x - x x x T x I I x : measured and calculated values; value identifiers (OBIS codes); indicators o f energy flow (4 quadrants; consumption and supply o f active energy; consumption and supply o f reactive energy); indicators for tariff rates T l , T2, T3, T4; presence of phases L I , L2, L3;; indicators for units kW, kWh, kvar, kvarh, indicator o f communication running over optic interface, indicator o f visualization mode (step, test).

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indicator o f violation (e.g. measurement violation by magnetic field or removal o f the tenninal block cover).

LCD version for A M T Blx-xxxTxISx : measured / calculated values are shown in a field with 8 characters (size 9 x 5.5 mm); OBIS codes are displayed in a field with 7 characters (size 5 x 3 mm); direction o f energy fiow, quadrant o f measuring energy, consumption o f active energy ( • +

P), the active energy supply or reverse connection o f conductors (-P-^)-Condition under voltage or condition o f the electricity meter, when is not registered energy (current is less than starting current o f electricity meter) is indicated by a continuous and simultaneous running liehts o f the four arrows for the direcfion o f energy fiow.

units o f measurement o f the displayed data: Hz, W, k, h, M , V , A currently active tar iff : ranging from T I to T l 8 The segments for notification:

R l - status indication o f the internal relay 1, R 2 - status indication o f the internal relay 2, TC - indication o f the removed terminal cover o f the electricity meter, MC - indication o f the removed cover o f the electricity meter, n - indication o f the influence o f magnetic field,

• segments for the battery level indicator, alarm, over-limit,

• currently active communication [ = indicators o f presence of phases and the correct phase sequence L I L2 L3 (N unused) indicators o f the direction o f current in phases: I I 12 13 ( IN : unused) bar graph ^lll: indicates the current total power. Field cursors: • indication display mode

• unused • unused • unused

NB 1781

mi/

Detailed infonnation on symbols visualised on the display are presented in manufacturer's documentation.

3.1.4 Optional equipment and functions, which is subject to requirements of the Government Ordinance

Fundamental functions o f the measuring instrument which has to meet requirements o f the Government Ordinance are as follows:

measurement o f active energy; measurement o f consumption and supply o f active energy maximal in four tariff rates.

3.1.5 Integra! equipment and functions, which are not subject to requirements of the Government Ordinance

Additional functions integrated in the measuring instrument which are not subject to requirements o f the Government Ordinance and do not influence the measurement o f active energy, are:

reactive energy measurement. instantaneous active power calculation, current average active and reactive value o f demand calculation,

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Slovensky metrologicky ustav Karloveska 63, 842 55 Bratislava 4, Slovenska republika

Annex to tlie EC-type examination certificate No. SK 08-MI003-SMU003, Revision 9 dated April 15, 2016 Page 12 from 17 pages

active last average demand calculation, maximum active demand for selected measuring period calculation, formation o f the historical records o f active energy and maximum active demands for elapsed deduction period (maximal 15 records), calculation o f the cumulative maximum - sum o f maximum demand for the previous billing periods, data profile record formation according to selection and options o f electricity meter (energy, power, voltage, cun'ent, frequency, power factor), formation o f the electricity meter operation incidents record (voltage failure o f all phases, voltage failure o f one phase; removal o f the cover o f temiinal board, removal o f the meter cover, measurement violation by magnetic field, reverse energy flow), visualization o f date and time, instantaneous voltage, current, frequency, power factor measurement.

Depending on a version the meter can be equipped by additional equipments which are not subject to the requirements o f the Government Ordinance and do not influence the measurement o f active energy. These are the following equipments:

real time clock (RTC), infrared (IR) communication interface, infrared (IR) remote-control communication interface, communication interfaces RS 485 or RS 242, external radio communication modules (Mesh, radio module A M ) , auxiliaiy switch-over relay controlled according to tariff rates or time, external tariff rates control inputs, transmitting outputs SO for the active energy, reactive energy, the active energy consumption and supply.

3.2 Technical documentation

Software

Execution o f electricity meter, type A M T B l with electromechanical register COMPONENTS B O T T O M AMT-S - 21107603 COMPONENTS TOP AMT-S -21107603 B i l l o f materials A M T B I D - SA4T /5-80A/, No. 21107606 Vyhotovenie elektromera, typ A M T B l s LCD displejom COMPONENTS B O T T O M A M T - F - 21010802 COMPONENTS TOP A M T - F - 21010802 Bi l l o f materials A M T B I D - FA4T /5-80A/, No. 21010806 COMPONENTS B O T T O M A M T B1E-OR4T1; No. 21014011 COMPONENTS TOP A M T BIE-OR4TI ; No. 21014011 Bi l l o f materials A M T B l E-0R4TI ; No. 21014011 COMPONENTS B O T T O M A M T B l x - O A 4 T E I ; No. 21014051 COMPONENTS TOP A M T B l x - O A 4 T E I ; No. 21014051 Bi l l o f materials A M T B l x - O A 4 T E I ; No. 21014051 COMPONENTS B O T T O M A M T B1E-OR4TI; No. 21014052 COMPONENTS TOP A M T B1E-OR4TI; No. 21014052 Bi l l o f materials A M T B1E-OR4TI; No. 21014051 COMPONENTS B O T T O M A M T B1E-OR2TI; No. 21014012 COMPONENTS TOP A M T B1E-OR2TI; No. 21014012 Bi l l o f materials A M T B1E-OR2TI; No. 21014012 COMPONENTS B O T T O M A M T B1E-0R2TI : No. 21014053 COMPONENTS TOP A M T B1E-OR2TI; No. 21014053 Bi l l o f materials A M T B i E - 0 R 2 T I ; No. 21014053 Bi l l o f materials A M T B13-OR4TEI; No. 21014013 (3x57,7/100 V ) COMPONENTS B O T T O M A M T Blx-FR4TEII4 ; No. 21018902

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Slovensky metrologicky ustav ^ • • P 1 P ^ H ^ V Karloveska 63, 842 55 Bratislava 4, Slovenska republika

Annex to the EC-type examination certificate No. SK 08-MI003-SMU003, Revision 9 dated April 15,2016 Page 13 from 17 pages

COMPONENTS TOP A M T Blx-FR4TEII4 ; No. 21018902 Bi l l o f materials A M T Blx-FR4TE114; No. 21018902 Components bottom PCB A M T , No.21019011 Components top PCB A M T , No.21019011 Bi l l o f materials - Full, No..21019010 B i l l o f m a t e r i a l s - A M T B l x , No.21019011 Scheme A M T B l x - O x x T x I x ; N o . 71014050 Scheme A M T B l x - F x x T x I I x ; N o . 71018900 Dimensional draft: Dimensioned Sketch A M T No.71104500-2 Dimensional draft: Dimensioned Sketch A M T 100 A-O (F) No.71 118500-2 Dimensional draft: Dimensioned Sketch A M T 60 A - 0 (F) No.71118600-2 Dimensional draft: Dimensioned Sketch A M T 120 A - 0(F)-9,5-D9, c.71121000-2 Dimensional draft: Dimensioned Sketch A M T 120 A - 0{F)-9,5, c.71120900-2

Software. Three-phase static electricity meter for active and reactive energy measurement with LCD and internal clock (No.71117703).

Software. Three-phase static electricity meter for active and reactive energy measurement whh LCD and internal clock, with sliding demand, wi th maximum current to 120 A (No.71117705). Software, Three-phase static electricity meter for active and reactive energy measurement, A M T B l x - O No.71113501 Test protocol No. OlT /AMT/14 ; Applied Meters, a. s., Presov, dated 6.2.2014

Annexes 1 and 2 o f 01T/AMT/14_WELMEC7.2: Checklists to support the selection o f the appropriate requirement

Annexes 3 and 4 o f 01T/AMT/14_WELMEC7.2: Hardware block diagram User's Manual; Three-phase static electricity meters for active and reactive energy wi th

LCD A M T B l x - O x x T l TEST REPORT No.:07/14/SL E M K ; 2014; Three-phase electricity meter o f type A M T . B1E-0R4TI (software version 086.04, checksum 0xAEF4); Serial number: 4601001404/2014 TEST REPORT No.:08/14/SL E M K ; 2014; Two-phase electricity meter o f type AMT.B1E-OR2TI (software version 087.04, checksum 0xFA64); Serial number: 4601001403/2014

TEST REPORT No.: 04T/AMT/14, Software validation Applied Meters, a.s., Presov, dated Apr i l 9, 2014

TEST REPORT No.: 07T/AMT/2014, Software validation Applied Meters, a.s.. Presov, dated 23.9.2014 TEST REPORT No.: 02T/AMT/14, Type test Applied Meters, a.s., Presov, dated 23.12.2014

Technical documentation is located at manufacturer's premises and at notified person in the file No. NO-048/08, NO-086/09, NO-172/12, NO-214/13, N0249/14, NO-261/14, NO-275/14 and NO-323/16

4 Techn ica l characteristics

Type: reference voltage U,,: (direct connection)

(indirect connection)

Currents for direct connection - starting current L, - minimum current Imm - transient current Lr

A M T B l

3x220/380V; 3x230/400V; 3x240/415V; 3xl20/208V; 2x220V; 2x230V; 2x240V; 2x120V; 220V; 230V; 240V; 120V 3x57,7/100 V

0,02<L, <0,04hr 0,25<l,„i, <0,5I„ 0,5A; l A

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Slovensky metrologicky ustav Karloveska 63, 842 55 Bratislava 4, Slovenska republika

Annex to the EC-type examination certificate No. SK 08-MI003-SMU003, Revision 9 dated April 15, 2016 Page 14 from 17 pages

- reference current Ii-ef. - maximum current Imax. - overload capacity

Currents for indirect connection: - starting current Lt - minimum current Imj,, - transient current I,r - nominal cuirent In - maximum current I,„ax, ~ overload capacity

Impulse constant - active energy (imp./kWh):

5A; IDA 25A; 30A; 40A; 50A; 60A; 80A; lOOA; 120 A 400%, 500%; 600%; 800%; 1000%; 1200%; 1600%; 2000%, 2400 % (maximum 120 A )

0,02h, <I„<0,04I ,r 0,05A (0,2 V ) 0,25A 5A 6A; 7,5A; lOA 120%; 150%; 200%;

- testing output kjo'-- transmitting output kso:

Climatic environment class:

Mechanical environment class:

Electromagnetic environment class;

from I to 6400; from I to 6400;

from - 4 0 X to +70°C (3K7);

M l

E2

from -25°C to +55°C (3K6)

5 Metrological characteristics

Accuracy class: A ; B or C (according to EN 50470-3) 0,5S; 1 and 2 (according to EN 62052-11, EN 62053-21)

6 Interfaces and compatibility conditions

The electricity meter is equipped by testing output TO (LED diode) for verification o f electricity meter accuracy and electromechanical counting unit or LCD display for visualization o f measured energy. Further on, it can be equipped by communication infrared interface (optical in-line interface), communication infrared remote-control interface, communication interface RS485 and RS232, radio communication interface Mesh, radio communication interface A M , circuits wi th external tariff rate controlling, output relay controlled according to tariff rate or time, transmitting outputs and internal clock (RTC).

7 Results of conformity assessment

The test results, assessments and evaluations presented in Revision 9 o f the evaluation report No. 048/102/16 from A p r i l 14, 2016 implicate that the technical proposal o f the measuring instrument -three-phase static electricity meter, type A M T B l complies wi th technical requirements o f the Annex No . l and Annex MI-003 of the Government Ordinance o f the Slovak Republic No. 294/2005 Coll. on measuring instruments as amended by Government Ordinance of the Slovak Republic No. 445/2010 Coll., STN EN 50470-1, STN EN 50470-3.

A l l the drawings, schemes and technical documentation, used for evaluation o f the measuring instrument type are stored in the file No . N O - 048/08, N O - 086/09, N O - 172/12 , N O - 214/13, N O - 249/14 and NO-323/16, .

8 Data placed on the measuring instrument

In accordance with the Annex No. 1 o f Government Ordinance, EN 50470-1 and EN 50470-3, each of measuring devices must bear the following symbols and descriptions:

manufacturer mark or his/her name marking o f electricity meter type number o f EC - type examination certificate

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I Slovensky metrologicky ustav Karloveska 63. 842 55 Bratislava 4, Slovenska republika

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„CE" marking and supplementaiy metrology mark , . M " number o f phases and wires, what the meter is intended for (using o f graphical symbol) serial number and year o f manufacturing reference voltage current measuring range reference frequency meter constant unit o f measured energy accuracy class o f electricity meter working temperature range o f meter, or class o f environment symbol o f type o f insulation (using o f graphical symbol)

^ NB 1781 §^

mi/ ~ 9 Measures necessary for assurance of measuring instrument integrity

9.1 Identification

The measuring instrument has to comply wi th the description according to the point 3 and marking according to the point 8 o f this report. The number assigned to the EC certificate is placed at each piece o f the measuring instrument. Placing o f the conformity marking conforms to the Article 7 o f the Government Ordinance.

9.2 Assurance of measuring instrument

Measuring instrument is assured before conformity assessment according to the Annex D or F o f the Governmental Ordinance respectively as follows:

protection against the penetration into the measuring system of electricity meter is assured by sealing o f a position o f two screws, by which the cover o f electricit>' meter is screwed to the base. (Sealing is performed after the verification o f the electricity meter is performed), protection against the access to the electricity meter terminal board is assured by sealing o f terminal board cover in two points. (Sealing is perfonned after the electricity meter is plugged in the network).

10 Conditions for conformity assessment of manufactured measuring instruments with approved type.

The electricity meters placed in the market in accordance wi th procedures for conformity assessment according to the Annex D or F o f Governmental Ordinance has to correspond to technical descriptions mentioned in the point 3 o f this Annex and their tests results have to meet requirements o f the Annex No. 1 and MI-003 of the Governmental Ordinance, STN EN 50470-1 and STN EN 50470-3.

A metrological test may only be performed by a manufacturer according to the Annex D o f the Governmental Ordinance or a notified body respectively in compliance wi th the conformity assessment procedure according to the Annex F o f the Governmental Ordinance.

T h e max imum permissible error ( M P E ) of the meter A M T B l :

The total eiTor under certain load must be calculated by the f o l l o w i n g formula :

e^. = -yje^'il^costp) + S'{T,I,cos(p) + S^(0,Lcos(p) + S^(f,I,cos(p)

where:

s fl cos (p) meter error at a certain load; S (T, I, cos (p) additional error in % as a result o f changes in temperature at the same load; d (U, 1 cos (p) additional error in % as a result o f voltage changes at the same load;

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I Slovensky metrologicky ustav Karloveska 63, 842 55 Bratislava 4, Slovenska republika

Annex to the EC-type examination certificate No. SK 08-M1003-SMU003, Revision 9 dated April 15, 2016 Page 15 from 17 pages

number o f phases and wires, what the meter is intended for (using o f graphical symbol) serial number and year o f manufacturing reference voltage current measuring range reference frequency meter constant unit o f measured energy accuracy class o f electricity meter working temperature range of meter, or class o f environment symbol o f type o f insulation (using o f graphical symbol)

9 Measures necessary for assurance of measuring instrument integrity

9.1 Identification

The measuring instrument has to comply wi th the description according to the point 3 and marking according to the point 8 o f this report. The number assigned to the EC certificate is placed at each piece o f the measuring instrument. Placing o f the conformity marking conforms to the Article 7 o f the Government Ordinance.

9.2 Assurance of measuring instrument

Measuring instrument is assured before conformity assessment according to the Annex D or F o f the Governmental Ordinance respectively as follows:

protection against the penetration into the measuring system o f electricity meter is assured by sealing o f a position o f two screws, by which the cover o f electricity meter is screwed to the base. (Sealing is performed after the verification o f the electricity meter is performed), protection against the access to the electricity meter terminal board is assured by sealing o f terminal board cover in two points. (Sealing is perfonned after the electricity meter is plugged in the network).

10 Conditions for conformity assessment of manufactured measuring instruments with approved type.

The electricity meters placed in the market in accordance wi th procedures for conformity assessment according to the Annex D or F o f Governmental Ordinance has to correspond to technical descriptions mentioned in the point 3 o f this Annex and their tests results have to meet requirements of the Annex No. 1 and MI-003 of the Governmental Ordinance, STN EN 50470-1 and STN EN 50470-3.

A metrological test may only be performed by a manufacturer according to the Annex D o f the Governmental Ordinance or a notified body respectively in compliance with the conformity assessment procedure according to the Annex F o f the Governmental Ordinance.

T h e max imum permissible error ( M P E ) of the meter A M T B l :

The total error under certain load must be calculated by the following formula:

^ -Je^iLcostp) + S'{T,I,cos(p) + S~{U,I,cos(p) + S^{f, I,cos(p)

where:

e (1 cos (p) meter error at a certain load; S fl] I cos (p) additional error in % as a result o f changes in temperature at the same load; S (U, 1 cos (p) additional error in % as a result o f voltage changes at the same load; S (f I, cos (p) additional eiror in % as a result o f frequency changes for the same load.

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d(T.U.f) = -J(5-(r./.coscp)+6-(L'.J.cosq>)+6-(/./.cos(p))

T h e total value of additional error in % for three-phase metering:

Load

(current, phase, power factor)

- 4 0 ° C - 2 5 ° C - 1 0 ° C 5 ° C 3 0 ° C 4 0 ° C 5 5 ° C 7 0 ° C

Imin L I L2 L3 PF=1 0.37 0.35 0.33 0.30 0.16 0.21 0.39 0.46

I,r L I L2 L3 PF=1 0.35 0.35 0.33 0.28 0.17 0.23 0.37 0.52

I,r L I L2 L3 PF=0.5ind 0.34 0.35 0.36 0.31 0.18 0.25 0.41 0.60

I,r L I L2 L3 PF=0.8k 0.36 0.34 0.32 0.27 0.16 0.22 0.33 0.51

I,r L I PF=1 0.36 0.33 0.30 0.27 0.17 0.22 0.31 0.51

I.r L2 PF=1 0.39 0.38 0.37 0.27 0.16 0.20 0.31 0.57

I t L3 PF=1 0.44 0.35 0.31 0.28 0.15 0.23 0.31 0.59

I,r L I PF=0.5ind 0.33 0.34 0.33 0.30 0.17 0.22 0.43 0.66

Itr L2 PF=0.5ind 0.36 0.39 0.40 0.31 0.17 0.21 0.47 0.75

I,r L3 PF=0.5ind 0.41 0.36 0.32 0.32 0.20 0.21 0.31 0.65

10I„ L1L2L3 P F = I 0.35 0.35 0.32 0.27 0.15 0.21 0.33 0.69

101, L1L2L3 PF=0.5ind 0.33 0.37 0.35 0.29 0.17 0.22 0.39 0.83

10I,r L1L2L3 PF^O.Sk 0.35 0.34 0.31 0.25 0.15 0.21 0.33 0.71

10I„ L I PF=1 0.39 0.32 0.28 0.26 0.15 0.21 0.33 0.73

io i„ L2 P F = I 0.38 0.38 0.38 0.27 0.15 0.18 0.38 0.78

10I„ L3 PF=1 0.42 0.33 0.27 0.24 0.16 0.23 0.37 0.77

10I„ L I PF=0.5ind 0.33 0.30 0.29 0.26 0.18 0.23 0.44 0.87

10I,r L2 PF=0.5ind 0.33 0.36 0.37 0.27 0.17 0.21 0.52 0.94

10I„ L3 PF=0.5ind 0.40 0.34 0.30 0.27 0.18 0.25 0.47 0.82

Imax L1L2L3 PF=1 0.28 0.28 0.25 0.22 0.13 0.13 0.25 0.42

Imax L1L2L3 PF=0.5ind 0.28 0.31 0.31 0.25 0.15 0.17 0.38 0.60

I max L1L2L3 PF=0.8k 0.29 0.27 0.24 0.20 0.14 0.14 0.23 0.36

Imax L I PF=1 0.33 0.25 0.22 0.20 0.14 0.15 0.26 0.42

Imax L2 PF=1 0.30 0.31 0.32 0.22 0.13 0.11 0.31 0.48

Imax L3 PF=1 0.37 0.27 0.22 0.21 0.15 0.17 0.29 0.45

Imax L I PF=0.5ind 0.31 0.32 0.29 0.27 0.15 0.17 0.39 0.60

Imax L2 PF=0.5ind 0.27 0.34 0.35 0.26 0.13 0.13 0.49 0.75

Imax L3 PF=0.5ind 0.37 0.30 0.25 0.21 0.16 0.19 0.41 0.64

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^ ^ ^ ^ ^ 1 Slovensky metrologicky ustav ^1^9 I P ^ H ^ P Karloveska 63. 842 55 Bratislava 4, Slovenska republika

Annex to the EC-type examination certificate No. SK 08-MI003-SMU003, Revision 9 dated April 15, 2016 Page 17 trom 17 pages

T h e total value of additional error in % for single-phase metering:

Load

(current, power factor)

-40°C -25°C -10°C 5°C 30'=C 40°C 55°C 10°C

Imiii PF=1 0.43 0.34 0.31 0.24 0.23 0.27 0.36 0.78

l.r PF=1 0.37 0.29 0.25 0.23 0.19 0.22 0.34 0.76

I,r PF=0.5ind 0.35 0.32 0.29 0.26 0.21 0.24 0.38 0.84

I.r PF=0.8k 0.38 0.30 0.26 0.23 0.19 0.22 0.45 0.70

10 PF=1 0.39 0.28 0.25 0.23 0.17 0.22 0.47 0.78

10 PF=0.5ind 0.33 0.29 0.27 0.25 0.18 0.23 0.53 0.89

10 PF=0.8k 0.42 0.29 0.24 0.23 0.16 0.21 0.42 0.76

Imax PF=1 0.34 0.23 0.21 0.20 0.14 0.15 0.26 0.45

Imax PF=0.5ind 0.31 0.26 0.25 0.24 0.16 0.18 0.38 0.65

Imax PF=0.8k 0.36 0.23 0.20 0.20 0.14 0.14 0.21 0.39

Assessment was performed by: Ing. Jan Ilanak