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Extract from the Register of European Patents

EP About this file: EP3203269

EP3203269 - MULTI-STACK (BROADBAND) SEISMIC WAVELET ESTIMATION METHOD [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  05.04.2024
Database last updated on 19.10.2024
FormerThe patent has been granted
Status updated on  28.04.2023
FormerGrant of patent is intended
Status updated on  23.10.2022
FormerExamination is in progress
Status updated on  17.06.2020
FormerRequest for examination was made
Status updated on  16.02.2018
FormerThe application has been published
Status updated on  07.07.2017
Most recent event   Tooltip18.10.2024Lapse of the patent in a contracting state
New state(s): BE
published on 20.11.2024 [2024/47]
Applicant(s)For all designated states
CGG Services SAS
27, Avenue Carnot
91300 Massy / FR
[2017/32]
Inventor(s)01 / NURIJANYAN, Shavarsh
C/O CGG SERVICES SAS
27, Avenue Carnot
91300 Massy / FR
02 / DEBEYE, Harry
C/O CGG SERVICES SAS
27, Avenue Carnot
91300 Massy / FR
03 / MESDAG, Peter
C/O CGG SERVICES SAS
27, Avenue Carnot
91300 Massy / FR
04 / SCHAKEL, Menne
C/O CGG SERVICES SAS
27, Avenue Carnot
91300 Massy / FR
 [2017/32]
Representative(s)Ipsilon
Le Centralis
63, avenue du Général Leclerc
92340 Bourg-la-Reine / FR
[2023/22]
Former [2017/32]Petit, Maxime
Ipsilon
Le Centralis
63, avenue du Général Leclerc
92340 Bourg-la-Reine / FR
Application number, filing date17305080.825.01.2017
[2017/32]
Priority number, dateUS201662290472P03.02.2016         Original published format: US 201662290472 P
[2017/32]
Filing languageEN
Procedural languageEN
PublicationType: A1 Application with search report 
No.:EP3203269
Date:09.08.2017
Language:EN
[2017/32]
Type: B1 Patent specification 
No.:EP3203269
Date:31.05.2023
Language:EN
[2023/22]
Search report(s)(Supplementary) European search report - dispatched on:EP23.06.2017
ClassificationIPC:G01V1/30, G01V1/28
[2017/32]
CPC:
G01V1/282 (EP,US); G01V1/30 (US); G01V1/306 (EP,US);
G01V1/307 (US); G01V1/362 (US); G01V2210/614 (EP,US);
G01V2210/6169 (EP,US); G01V2210/624 (EP,US); G01V2210/6242 (US);
G01V2210/63 (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 [2018/12]
Former [2017/32]AL,  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 
TitleGerman:PROCÉDÉ D'ESTIMATION MULTI-EMPILEMENTS D'ONDELETTES SISMIQUES (À LARGE BANDE)[2022/42]
English:MULTI-STACK (BROADBAND) SEISMIC WAVELET ESTIMATION METHOD[2017/32]
French:MEHRSTAPEL SCHÄTZVERFAHREN FÜR (BREITBANDIGES) SEISMISCHES WAVELET[2017/32]
Former [2017/32]PROCÉDÉ D'ESTIMATION MULTI-PILE D'ONDELETTES SISMIQUES (À LARGE BANDE)
Examination procedure25.01.2017Date on which the examining division has become responsible
09.02.2018Amendment by applicant (claims and/or description)
09.02.2018Examination requested  [2018/12]
19.06.2020Despatch of a communication from the examining division (Time limit: M06)
23.12.2020Reply to a communication from the examining division
24.10.2022Communication of intention to grant the patent
23.02.2023Fee for grant paid
23.02.2023Fee for publishing/printing paid
23.02.2023Receipt of the translation of the claim(s)
Opposition(s)01.03.2024No opposition filed within time limit [2024/19]
Fees paidRenewal fee
22.01.2019Renewal fee patent year 03
23.01.2020Renewal fee patent year 04
25.01.2021Renewal fee patent year 05
25.01.2022Renewal fee patent year 06
24.02.2023Renewal fee patent year 07
Penalty fee
Additional fee for renewal fee
31.01.202307   M06   Fee paid on   24.02.2023
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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  TooltipAT31.05.2023
CZ31.05.2023
DK31.05.2023
EE31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
IT31.05.2023
LT31.05.2023
LV31.05.2023
MC31.05.2023
PL31.05.2023
RO31.05.2023
RS31.05.2023
SE31.05.2023
SI31.05.2023
SK31.05.2023
SM31.05.2023
GR01.09.2023
IS30.09.2023
PT02.10.2023
LU25.01.2024
BE31.01.2024
[2024/47]
Former [2024/43]AT31.05.2023
CZ31.05.2023
DK31.05.2023
EE31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
IT31.05.2023
LT31.05.2023
LV31.05.2023
MC31.05.2023
PL31.05.2023
RO31.05.2023
RS31.05.2023
SE31.05.2023
SI31.05.2023
SK31.05.2023
SM31.05.2023
GR01.09.2023
IS30.09.2023
PT02.10.2023
LU25.01.2024
Former [2024/40]AT31.05.2023
CZ31.05.2023
DK31.05.2023
EE31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
IT31.05.2023
LT31.05.2023
LV31.05.2023
MC31.05.2023
PL31.05.2023
RO31.05.2023
RS31.05.2023
SE31.05.2023
SI31.05.2023
SK31.05.2023
SM31.05.2023
GR01.09.2023
IS30.09.2023
PT02.10.2023
Former [2024/26]AT31.05.2023
CZ31.05.2023
DK31.05.2023
EE31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
IT31.05.2023
LT31.05.2023
LV31.05.2023
PL31.05.2023
RO31.05.2023
RS31.05.2023
SE31.05.2023
SI31.05.2023
SK31.05.2023
SM31.05.2023
GR01.09.2023
IS30.09.2023
PT02.10.2023
Former [2024/24]AT31.05.2023
CZ31.05.2023
DK31.05.2023
EE31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
LT31.05.2023
LV31.05.2023
PL31.05.2023
RO31.05.2023
RS31.05.2023
SE31.05.2023
SI31.05.2023
SK31.05.2023
SM31.05.2023
GR01.09.2023
IS30.09.2023
PT02.10.2023
Former [2024/10]AT31.05.2023
CZ31.05.2023
DK31.05.2023
EE31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
LT31.05.2023
LV31.05.2023
PL31.05.2023
RO31.05.2023
RS31.05.2023
SE31.05.2023
SK31.05.2023
SM31.05.2023
GR01.09.2023
IS30.09.2023
PT02.10.2023
Former [2024/08]AT31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
LT31.05.2023
LV31.05.2023
PL31.05.2023
RS31.05.2023
SE31.05.2023
SK31.05.2023
SM31.05.2023
GR01.09.2023
IS30.09.2023
Former [2024/03]AT31.05.2023
ES31.05.2023
FI31.05.2023
HR31.05.2023
LT31.05.2023
LV31.05.2023
PL31.05.2023
RS31.05.2023
SE31.05.2023
GR01.09.2023
IS30.09.2023
Former [2024/01]AT31.05.2023
ES31.05.2023
HR31.05.2023
LT31.05.2023
LV31.05.2023
PL31.05.2023
RS31.05.2023
SE31.05.2023
GR01.09.2023
IS30.09.2023
Former [2023/51]AT31.05.2023
ES31.05.2023
HR31.05.2023
PL31.05.2023
RS31.05.2023
SE31.05.2023
GR01.09.2023
IS30.09.2023
Former [2023/50]AT31.05.2023
ES31.05.2023
PL31.05.2023
SE31.05.2023
GR01.09.2023
IS30.09.2023
Former [2023/48]AT31.05.2023
ES31.05.2023
SE31.05.2023
Former [2023/46]ES31.05.2023
Documents cited:Search[A]US2004199330  (ROUTH PARTHA SARATHI [US], et al) [A] 1-15 * figures 3-7 ** paragraphs [0034] - [0036] - [0046] - [0088] - [0098] , [0101] - [0107] *;
 [A]  - M. D. SCHAKEL* ET AL, "Fully data-driven quantitative reservoir characterization by broadband seismic", SEG TECHNICAL PROGRAM EXPANDED ABSTRACTS 2014, (20140805), doi:10.1190/segam2014-0671.1, pages 2502 - 2506, XP055380438 [A] 1-15 * page 2502 - page 2505 *

DOI:   http://dx.doi.org/10.1190/segam2014-0671.1
 [A]  - GUANGHE LIANG ET AL, "Using high-order cumulants to extrapolate spatially variant seismic wavelets", GEOPHYSICS, US, (20021130), vol. 67, no. 6, doi:10.1190/1.1527086, ISSN 0016-8033, pages 1869 - 1876, XP055381660 [A] 1-15 * page 1869 - page 1873 * * page 1875 - page 1876 *

DOI:   http://dx.doi.org/10.1190/1.1527086
by applicant   - WHITE, R.E., "Partial coherence matching of synthetic seismograms with seismic traces", GEOPHYSICAL PROSPECTING, (1980), vol. 28, doi:doi:10.1111/j.1365-2478.1980.tb01230.x, pages 333 - 358, XP055380097

DOI:   http://dx.doi.org/10.1111/j.1365-2478.1980.tb01230.x
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