R61/2017-A-DK2-22.01 Rev. 2
OIML Certificate No.
R61/2017-A-DK2-22.01 Revision 2
OIML CERTIFICATE ISSUED UNDER SCHEME A
| OIML Issuing Authority | |
| Name: | FORCE Certification A/S |
| Address: | Park Allé 345, 2605 Brøndby, Denmark |
| Person responsible: | Per Rafn Crety |
| Applicant | |
| Name: | Flintec UK Ltd. |
| Address: | Caxton House, Caxton Place, Pentwyn Cardiff CF23 8HG, United Kingdom |
| Manufacturer | Flintec UK Ltd. |
| Identification of the certified type(the detailed characteristics will be defined in the additional pages)ER500-F | |
| Designation of the module(if applicable)Weighing transmitter for automatic gravimetric filling instruments | |
| This OIML Certificate attests the conformity of the above identified type(represented by the sample(s) identified in the OIML type evaluation report)with the requirements of the following Recommendation of the International Organization of Legal Metrology(OIML): | |
| OIML R 61-1, Edition(year):2017For accuracy class(if applicable):Ref(0.5) | |
| OIML Certificate No.R61/2017-A-DK2-22.01 Revision 2 | ||
| This OIML Certificate relates only to metrological and technical characteristics of the type of measuring instrument covered by the relevant OIML Recommendation identified aboveThis OIML Certificate does not bestow any form of legal international approval. | ||
| The conformity was established by the results of tests and examinations provided in the associated OIML reports:Type examination report:No.121-24186.10-2, dated04October2021,that includes55 pagesType evaluation report:No.124-29471.90.70,dated06August2024,that includes24 pagesType evaluation report:No.126-23411.60,dated06August2024,that includes24 pages | ||
| The technical documentation relating to the identified type is contained in documentation file:121-24186OIML Certificate History | ||
| Revision No. | Date | Description of the modification |
| Initial version | 17June2022 | - |
| Revision 1 | 24October2024 | New software version added. |
| Revision 2 | 05May2026 | New software version added. |
| Identification, signature and stampThe OIML Issuing AuthorityFORCE Certification A/SDate:05May2026Michael Lang Sørensen2026-05-06Digitally signed by Michael Lang Sørensenmls@forcetechnology.comProject ManagerMichael Lang SørensenCertification Manager | ||
| Important note: Apart from the mention of the Certificate's reference number and the name of theOIML Member State in which the Certificate is issued,partial quotation of theCertificate and of the associated OIML type evaluation report(s) is not permitted,although either may be reproduced in full. | ||
Descriptive annex
| Characteristics | |
| Type: | ER500-F |
| Reference class: | Ref(0.5) |
| Accuracy class: | 0.5,1 or 2 |
| Single-interval, multi-range or multi-interval | |
| Maximum number of verification scale intervals(ni): | ≤3×10000 |
| Maximum tare effect: | -Max |
| Fractional factor: | p'i=0.5 |
| Minimum input-voltage per VSI: | 0.2μV |
| MinFill: | See tables below |
| Extra warm-up time: | 3 minutes |
| Maximum time between automatic zero-setting: | 120 minutes |
| Excitation voltage: | 5 VDC |
| Load cell interface: | 4-wire or 6-wire |
| Minimum input-impedance: | 43 ohm |
| Maximum input-impedance: | 1200 ohm |
| Mains power supply: | 9-32 VDC- not to be supplied from DC mains. |
| Operational temperature: | -15℃ to +55℃ |
| Maximum cable length between ER500-F and junction box | 1533m/mm2 |
MinFill for 0.2 $ \mu\mathrm{V} \leq\mathrm{d} < 0. 4 \ \mu\mathrm{V} $
| d | X(0.5) | X(1) | X(2) | |||
| [g] | d | [g] | d | [g] | d | [g] |
| 0,1 | 281 | 28,1 | 70 | 7 | 18 | 1,8 |
| 0,2 | 561 | 112,2 | 70 | 14 | 18 | 3,6 |
| 0,5 | 842 | 421 | 70 | 35 | 18 | 9 |
| 1 | 1683 | 1683 | 140 | 140 | 18 | 18 |
| 2 | 1683 | 3366 | 210 | 420 | 18 | 36 |
| 5 | 1683 | 8415 | 420 | 2100 | 35 | 175 |
| 10 | 2525 | 25250 | 420 | 4200 | 105 | 1050 |
| 20 | 2525 | 50500 | 420 | 8400 | 105 | 2100 |
| 50 | 2525 | 126250 | 630 | 31500 | 105 | 5250 |
| 100 | 2525 | 252500 | 630 | 63000 | 158 | 15800 |
| 200 | 2525 | 505000 | 630 | 126000 | 158 | 31600 |
| 500 | 2525 | 1262500 | 630 | 315000 | 158 | 79000 |
MinFill for 0.4 $ \mu\mathrm{V} \leq\mathrm{d} < 0. 8 \ \mu\mathrm{V} $
| d | X(0.5) | X(1) | X(2) | |||
| [g] | d | [g] | d | [g] | d | [g] |
| 0,1 | 141 | 14,1 | 35 | 3,5 | 9 | 0,9 |
| 0,2 | 141 | 28,2 | 35 | 7 | 9 | 1,8 |
| 0,5 | 281 | 140,5 | 35 | 17,5 | 9 | 4,5 |
| 1 | 421 | 421 | 35 | 35 | 9 | 9 |
| 2 | 842 | 1684 | 70 | 140 | 9 | 18 |
| 5 | 842 | 4210 | 210 | 1050 | 9 | 45 |
| 10 | 842 | 8420 | 210 | 2100 | 18 | 180 |
| 20 | 1263 | 25260 | 210 | 4200 | 53 | 1060 |
| 50 | 1263 | 63150 | 315 | 15750 | 53 | 2650 |
| 100 | 1263 | 126300 | 315 | 31500 | 53 | 5300 |
| 200 | 1263 | 252600 | 315 | 63000 | 79 | 15800 |
| 500 | 1263 | 631500 | 315 | 157500 | 79 | 39500 |
MinFill for 0.8 $ \mu\mathrm{V} \leq\mathrm{d} $
| d | X(0.5) | X(1) | X(2) | |||
| [g] | d | [g] | d | [g] | d | [g] |
| 0,1 | 71 | 7,1 | 18 | 1,8 | 6 | 0,6 |
| 0,2 | 71 | 14,2 | 18 | 3,6 | 6 | 1,2 |
| 0,5 | 71 | 35,5 | 18 | 9 | 6 | 3 |
| 1 | 141 | 141 | 18 | 18 | 6 | 6 |
| 2 | 211 | 422 | 18 | 36 | 6 | 12 |
| 5 | 421 | 2105 | 35 | 175 | 6 | 30 |
| 10 | 421 | 4210 | 105 | 1050 | 11 | 110 |
| 20 | 421 | 8420 | 105 | 2100 | 17 | 340 |
| 50 | 632 | 31600 | 105 | 5250 | 33 | 1650 |
| 100 | 632 | 63200 | 158 | 15800 | 33 | 3300 |
| 200 | 632 | 126400 | 158 | 31600 | 33 | 6600 |
| 500 | 632 | 316000 | 158 | 79000 | 50 | 25000 |
Software
The software version is displayed during the start-up of the indicator. (Alternating with the TAC number). The version format is xx.yy.zz, where xx denotes the version of the legally relevant code, while yy is the version numbers for major non-legally relevant changes and zz is the version numbers for minor non-legally relevant changes.
The approved software versions are:
Main firmware: 01.yy.zz
Main firmware: 02.yy.zz
or
Main firmware: 03.yy.zz
Display firmware: 03.yy.zz
TAC number
The non-resettable Traceable Access Code is displayed during the start-up of the indicator in the format: xxxxx. (Alternating with the software version).
Devices
Initial zero setting device ( $ \leq 20% $ of Max)
Semi-automatic zero setting device ( $ \leq 4 % $ of Max)
Zero tracking device ( $ \leq 4 % $ of Max)
Semi-automatic subtractive tare balancing device
Units (Allowed units are g, kg and t.)
Stable equilibrium, Zero and Net indicators.
Display and buttoms
If the ER500-F is equipped with a display and buttoms these are are for set-up and service purpose only.
Interfaces
- RS232
RS-485/RS-422
USB
Ethernet
3 logical inputs
3 logical outputs
Analogue Output
The interfaces do not have to be secured.
Sealing
Access to the set-up and calibration facility requires that a calibration jumper is removed from the main board. The jumper can be accessed from the outside, top part of the housing.
The indicator also has a Traceable Access Counter, which increment each time the calibration or legal part of the set-up has been changed.
The sealing of the calibration jumper, which also prevents the housing from being dismantled - is accomplished with a brittle plastic sticker. The sticker is placed across the opening designated 30 behind which the calibration jumper is located.
Figure 2 Front panel display with LED indicators and buttoms.
Figure 3 Top side label of ER500-F.