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Extract from the Register of European Patents

EP About this file: EP3488193

EP3488193 - METHOD AND METER ELECTRONICS FOR PERFORMING TEMPERATURE COMPENSATION OF A TEST TONE AMPLITUDE DURING METER VERIFICATION IN A FLOW METER [Right-click to bookmark this link]
Former [2019/22]METHOD FOR PERFORMING TEMPERATURE COMPENSATION OF MAXIMUM SENSOR CURRENT AND TEST TONE AMPLITUDE DURING METER VERIFICATION
[2021/26]
StatusNo opposition filed within time limit
Status updated on  23.09.2022
Database last updated on 07.10.2024
FormerThe patent has been granted
Status updated on  18.10.2021
FormerGrant of patent is intended
Status updated on  17.06.2021
FormerRequest for examination was made
Status updated on  26.04.2019
FormerThe international publication has been made
Status updated on  26.01.2018
Most recent event   Tooltip13.09.2024Lapse of the patent in a contracting state
New state(s): MT
published on 16.10.2024 [2024/42]
Applicant(s)For all designated states
Micro Motion, Inc.
7070 Winchester Circle
Boulder, CO 80301 / US
[2019/22]
Inventor(s)01 / CUNNINGHAM, Timothy J.
613 Maxwell Avenue
Boulder, Colorado 80304 / US
02 / KEENEY-RITCHIE, Miles
665 Manhattan Drive
Apt. 214
Boulder, Colorado 80303 / US
 [2019/22]
Representative(s)Ellis, Christopher Paul
Ollila Law Limited
Unit 7 The Courtyard
Timothys Bridge Road
Stratford upon Avon CV37 9NP / GB
[2021/46]
Former [2019/22]Ellis, Christopher Paul
Ollila Law Limited
Warwick Innovation Centre
Warwick Technology Park
Gallows Hill
Warwick CV34 6UW / GB
Application number, filing date16745024.620.07.2016
[2019/22]
WO2016US43180
Filing languageEN
Procedural languageEN
PublicationType: A1 Application with search report
No.:WO2018017080
Date:25.01.2018
Language:EN
[2018/04]
Type: A1 Application with search report 
No.:EP3488193
Date:29.05.2019
Language:EN
The application published by WIPO in one of the EPO official languages on 25.01.2018 takes the place of the publication of the European patent application.
[2019/22]
Type: B1 Patent specification 
No.:EP3488193
Date:17.11.2021
Language:EN
[2021/46]
Search report(s)International search report - published on:EP25.01.2018
ClassificationIPC:G01F1/84, G01F15/02
[2019/22]
CPC:
G01F1/8422 (EP,US); G01F1/8436 (EP,US); G01F1/8431 (EP,US);
G01F15/022 (EP,US)
Designated contracting statesAL,   AT,   BE,   BG,   CH,   CY,   CZ,   DE,   DK,   EE,   ES,   FI,   FR,   GB,   GR,   HR,   HU,   IE,   IS,   IT,   LI,   LT,   LU,   LV,   MC,   MK,   MT,   NL,   NO,   PL,   PT,   RO,   RS,   SE,   SI,   SK,   SM,   TR [2019/22]
Extension statesBANot yet paid
MENot yet paid
Validation statesMANot yet paid
MDNot yet paid
TitleGerman:VERFAHREN UND MESSGERÄTELEKTRONIK ZUR TEMPERATURKOMPENSATION EINER TESTTONAMPLITUDE BEI DER MESSGERÄTEVERIFIZIERUNG IN EINEM DURCHFLUSSMESSGERÄT[2021/26]
English:METHOD AND METER ELECTRONICS FOR PERFORMING TEMPERATURE COMPENSATION OF A TEST TONE AMPLITUDE DURING METER VERIFICATION IN A FLOW METER[2021/26]
French:PROCÉDÉ ET ÉLECTRONIQUE DE MESURE POUR EFFECTUER UNE COMPENSATION DE TEMPÉRATURE D'UNE AMPLITUDE TONALE DE TEST PENDANT UNE VÉRIFICATION DE DÉBITMÈTRE[2021/26]
Former [2019/22]VERFAHREN ZUR DURCHFÜHRUNG EINER TEMPERATURKOMPENSATION DES MAXIMALEN SENSORSTROMS UND DER PRÜFTONAMPLITUDE WÄHREND DER MESSGERÄTEVERIFIZIERUNG
Former [2019/22]METHOD FOR PERFORMING TEMPERATURE COMPENSATION OF MAXIMUM SENSOR CURRENT AND TEST TONE AMPLITUDE DURING METER VERIFICATION
Former [2019/22]PROCÉDÉ POUR EFFECTUER UNE COMPENSATION DE TEMPÉRATURE DE COURANT DE CAPTEUR MAXIMUM ET D'AMPLITUDE DE TONALITÉ D'ESSAI DURANT UNE VÉRIFICATION D'APPAREIL DE MESURE
Entry into regional phase15.02.2019National basic fee paid 
15.02.2019Designation fee(s) paid 
15.02.2019Examination fee paid 
Examination procedure15.02.2019Examination requested  [2019/22]
15.02.2019Date on which the examining division has become responsible
09.09.2019Amendment by applicant (claims and/or description)
18.06.2021Communication of intention to grant the patent
12.10.2021Fee for grant paid
12.10.2021Fee for publishing/printing paid
12.10.2021Receipt of the translation of the claim(s)
Opposition(s)18.08.2022No opposition filed within time limit [2022/43]
Fees paidRenewal fee
15.02.2019Renewal fee patent year 03
29.07.2019Renewal fee patent year 04
22.07.2020Renewal fee patent year 05
20.07.2021Renewal fee patent year 06
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See the Register of the Unified Patent Court for opt-out data
Responsibility for the accuracy, completeness or quality of the data displayed under the link provided lies entirely with the Unified Patent Court.
Lapses during opposition  TooltipHU20.07.2016
AL17.11.2021
AT17.11.2021
CY17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
IT17.11.2021
LT17.11.2021
LV17.11.2021
MC17.11.2021
MK17.11.2021
MT17.11.2021
NL17.11.2021
PL17.11.2021
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SI17.11.2021
SK17.11.2021
SM17.11.2021
TR17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
IE20.07.2022
LU20.07.2022
BE31.07.2022
FR31.07.2022
[2024/42]
Former [2024/29]HU20.07.2016
AL17.11.2021
AT17.11.2021
CY17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
IT17.11.2021
LT17.11.2021
LV17.11.2021
MC17.11.2021
MK17.11.2021
NL17.11.2021
PL17.11.2021
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RS17.11.2021
SE17.11.2021
SI17.11.2021
SK17.11.2021
SM17.11.2021
TR17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
IE20.07.2022
LU20.07.2022
BE31.07.2022
FR31.07.2022
Former [2024/22]HU20.07.2016
AL17.11.2021
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DK17.11.2021
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SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
IE20.07.2022
LU20.07.2022
BE31.07.2022
FR31.07.2022
Former [2024/20]HU20.07.2016
AL17.11.2021
AT17.11.2021
CY17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
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IT17.11.2021
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SM17.11.2021
BG17.02.2022
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GR18.02.2022
IS17.03.2022
PT17.03.2022
IE20.07.2022
LU20.07.2022
BE31.07.2022
FR31.07.2022
Former [2024/18]HU20.07.2016
AL17.11.2021
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EE17.11.2021
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FI17.11.2021
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BG17.02.2022
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GR18.02.2022
IS17.03.2022
PT17.03.2022
IE20.07.2022
LU20.07.2022
BE31.07.2022
FR31.07.2022
Former [2023/33]AL17.11.2021
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DK17.11.2021
EE17.11.2021
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LT17.11.2021
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MC17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
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SE17.11.2021
SI17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
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GR18.02.2022
IS17.03.2022
PT17.03.2022
IE20.07.2022
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BE31.07.2022
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RO17.11.2021
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SI17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
LU20.07.2022
BE31.07.2022
FR31.07.2022
Former [2023/22]AL17.11.2021
AT17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
LT17.11.2021
LV17.11.2021
MC17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
RS17.11.2021
SE17.11.2021
SI17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
LU20.07.2022
FR31.07.2022
Former [2023/21]AL17.11.2021
AT17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
LT17.11.2021
LV17.11.2021
MC17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
RS17.11.2021
SE17.11.2021
SI17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
LU20.07.2022
Former [2023/11]AL17.11.2021
AT17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
LT17.11.2021
LV17.11.2021
MC17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
RS17.11.2021
SE17.11.2021
SI17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
Former [2023/01]AL17.11.2021
AT17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
LT17.11.2021
LV17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
RS17.11.2021
SE17.11.2021
SI17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
Former [2022/49]AL17.11.2021
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EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
LT17.11.2021
LV17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
RS17.11.2021
SE17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
Former [2022/35]AT17.11.2021
CZ17.11.2021
DK17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
LT17.11.2021
LV17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
RS17.11.2021
SE17.11.2021
SK17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
Former [2022/34]AT17.11.2021
EE17.11.2021
ES17.11.2021
FI17.11.2021
HR17.11.2021
LT17.11.2021
LV17.11.2021
NL17.11.2021
PL17.11.2021
RO17.11.2021
RS17.11.2021
SE17.11.2021
SM17.11.2021
BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
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FI17.11.2021
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PL17.11.2021
RS17.11.2021
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BG17.02.2022
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GR18.02.2022
IS17.03.2022
PT17.03.2022
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PL17.11.2021
RS17.11.2021
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BG17.02.2022
NO17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
Former [2022/24]AT17.11.2021
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FI17.11.2021
HR17.11.2021
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LV17.11.2021
NL17.11.2021
PL17.11.2021
RS17.11.2021
SE17.11.2021
BG17.02.2022
GR18.02.2022
IS17.03.2022
PT17.03.2022
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Former [2022/19]BG17.02.2022
Cited inInternational search[XI]WO2012018323  (MICRO MOTION INC [US], et al) [X] 17 * figures 3,5 * * page 18; table 1 * * eq 5; page 20 * * eq 4; page 17 * [I] 1-16,18-20;
 [A]WO2014200672  (MICRO MOTION INC [US]) [A] 1-20 * abstract *;
 [A]WO0192832  (MICRO MOTION INC [US]) [A] 1-20 * abstract *;
 [A]WO9917084  (MICRO MOTION INC [US]) [A] 1-20 * eqs 1-6 *
 [A]  - Matthew Rensing ET AL, "Coriolis Flowmeter Verification via Embedded Modal Analysis", MEMS and Nanotechnology, Volume 4, New York, NY, Springer New York, (2010), pages 851 - 860, doi:10.1007/978-1-4419-9834-7_75, ISSN 2191-5644, ISBN 978-1-46-140210-7, XP055132407 [A] 1-16,18-20 * page 6, paragraph last - page 7, paragraph first *

DOI:   http://dx.doi.org/10.1007/978-1-4419-9834-7_75
ExaminationUS2015082906
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