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The Measuring Instruments (Non-Prescribed Instruments) Regulations 2006

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3.—(1) Under rated operating conditions and in the absence of a disturbance, the error of measurement shall not exceed the maximum permissible error (MPE) value as set out in the appropriate instrument-specific requirements.

(2) Unless stated otherwise in the instrument-specific provisions, MPE is expressed as a bilateral value of the deviation from the true measurement value.

(3) Under rated operating conditions and in the presence of a disturbance, the performance requirement shall be as set out in the appropriate instrument specific requirements.

(4) Where the instrument is intended to be used in a specified permanent continuous electromagnetic field the permitted performance during the radiated electromagnetic field-amplitude modulated test shall be within MPE.

(5) The manufacturer shall specify the climatic, mechanical and electromagnetic environments in which the instrument is intended to be used, power supply and other influence quantities likely to affect its accuracy, taking account of the instrument-specific requirements.

(a)Climatic environments—

The manufacturer shall specify the upper temperature limit and the lower temperature limit from any of the values in Table 1 unless otherwise specified in Parts A to G in Part 2 of this Schedule, and indicate whether the instrument is designed for condensing or non-condensing humidity as well as the intended location for the instrument, i.e. open or closed.

Table 1
Temperature Limits
Upper temperature limit30°C40°C55°C70°C
Lower temperature limit5°C-10°C-25°C-40°C

(b)Mechanical environments are classified into classes M1 to M3 as follows—

(i)M1: This class applies to instruments used in locations with vibration and shocks of low significance, e.g. for instruments fastened to light supporting structures subject to negligible vibrations and shocks transmitted from local blasting or pile-driving activities, slamming doors.

  • M2: This class applies to instruments used in locations with significant or high levels of vibration and shock, e.g. transmitted from machines and passing vehicles in the vicinity or adjacent to heavy machines, conveyor belts.

  • M3: This class applies to instruments used in locations where the level of vibration and shock is high and very high, e.g. for instruments mounted directly on machines, conveyor belts.

(ii)The following influence quantities shall be considered in relation with mechanical environments—

(aa)vibration;

(bb)mechanical shock.

(c)Electromagnetic environments are classified into classes E1, E2 or E3, unless otherwise laid down in the appropriate instrument-specific provisions in Part 2 of this Schedule—

(i)E1: This class applies to instruments used in locations with electromagnetic disturbances corresponding to those likely to be found in residential, commercial and light industrial buildings.

  • E2: This class applies to instruments used in locations with electromagnetic disturbances corresponding to those likely to be found in other industrial buildings.

  • E3: This class applies to instruments supplied by the battery of a vehicle. Such instruments shall comply with the requirements of E2 and the following additional requirements—

    (aa)

    voltage reductions caused by energising the starter-motor circuits of internal combustion engines,

    (bb)

    load dump transients occurring in the event of a discharged battery being disconnected while the engine is running.

(ii)The following influence quantities shall be considered in relation with electromagnetic environments—

(aa)voltage interruptions;

(bb)short voltage reductions;

(cc)voltage transients on supply lines and/or signal lines;

(dd)electrostatic discharges;

(ee)radio frequency electromagnetic fields;

(ff)conducted radio frequency electromagnetic fields on supply lines and/or signal lines;

(gg)surges on supply lines and/or signal lines.

(6) Other influence quantities to be considered, where appropriate, are—

(a)voltage variation;

(b)mains frequency variation;

(c)power frequency magnetic fields;

(d)any other quantity likely to influence in a significant way the accuracy of the instrument.

(7) When carrying out the tests as envisaged in this Schedule, the following paragraphs apply—

(a)Basic rules for testing and the determination of errors—

(i)Essential requirements specified in sub-paragraphs (1) to (4) shall be verified for each relevant influence quantity. Unless otherwise specified, these essential requirements apply when each influence quantity is applied and its effect evaluated separately, all other influence quantities being kept relatively constant at their reference value.

(ii)Metrological tests shall be carried out during or after the application of the influence quantity, whichever condition corresponds to the normal operational status of the instrument when that influence quantity is likely to occur.

(b)Ambient humidity—

(i)According to the climatic operating environment in which the instrument is intended to be used either the damp heat-steady state (non-condensing) or damp heat cyclic (condensing) test may be appropriate.

(ii)The damp heat cyclic test is appropriate where condensation is important or when penetration of vapour will be accelerated by the effect of breathing. In conditions where non-condensing humidity is a factor the damp-heat steady state is appropriate.

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