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Extract from the Register of European Patents

EP About this file: EP3622560

EP3622560 - METHOD FOR DETERMINING A DELAY IN THE CRYSTALLISATION OF A THERMOPLASTIC POLYMER, USE OF SUCH A POLYMER FOR COATING OR ENCAPSULATING AN ELECTRONIC COMPONENT, AND ASSOCIATED METHOD [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  29.04.2022
Database last updated on 09.09.2024
FormerThe patent has been granted
Status updated on  21.05.2021
FormerGrant of patent is intended
Status updated on  25.01.2021
FormerRequest for examination was made
Status updated on  15.12.2020
FormerGrant of patent is intended
Status updated on  02.09.2020
FormerRequest for examination was made
Status updated on  14.02.2020
FormerThe international publication has been made
Status updated on  17.11.2018
Formerunknown
Status updated on  30.06.2018
Most recent event   Tooltip14.06.2024Lapse of the patent in a contracting state
New state(s): TR
published on 17.07.2024  [2024/29]
Applicant(s)For all designated states
Commissariat à l'énergie atomique et aux énergies alternatives
Bat le Ponant
25 rue Leblanc
75015 Paris / FR
For all designated states
Arkema France
420, rue d'Estienne d'Orves
92700 Colombes / FR
[2020/40]
Former [2020/12]For all designated states
Commissariat à l'énergie atomique et aux énergies alternatives
Bâtiment le Ponant
25, rue Leblanc
75015 Paris / FR
For all designated states
Arkema France
420, rue d'Estienne d'Orves
92700 Colombes / FR
Inventor(s)01 / MATHERON, Muriel
60, rue Lucien Rose
73000 Chambery / FR
02 / HIDALGO, Manuel
8, chemin de la Lande
69530 Brignais / FR
03 / VITE, Marion
30, rue du Chaney
73000 Chambery / FR
 [2020/12]
Representative(s)Brevalex
Tour Trinity
1 B Place de la Défense
92400 Courbevoie / FR
[N/P]
Former [2020/12]Brevalex
95, rue d'Amsterdam
75378 Paris Cedex 8 / FR
Application number, filing date18732140.109.05.2018
[2020/12]
WO2018FR51152
Priority number, dateFR2017005405609.05.2017         Original published format: FR 1754056
[2020/12]
Filing languageFR
Procedural languageFR
PublicationType: A2 Application without search report
No.:WO2018206897
Date:15.11.2018
Language:FR
[2018/46]
Type: A2 Application without search report 
No.:EP3622560
Date:18.03.2020
Language:FR
The application published by WIPO in one of the EPO official languages on 15.11.2018 takes the place of the publication of the European patent application.
[2020/12]
Type: B1 Patent specification 
No.:EP3622560
Date:23.06.2021
Language:FR
[2021/25]
Search report(s)International search report - published on:EP24.01.2019
ClassificationIPC:H01L31/048, H01L51/44, H01L23/29, G01N25/48
[2020/12]
CPC:
G01N25/4866 (EP); H01L31/0481 (EP); H10K30/88 (EP);
H10K71/70 (EP); H10K10/88 (EP); H10K50/844 (EP);
Y02E10/549 (EP); Y02P70/50 (EP) (-)
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 [2020/12]
Extension statesBANot yet paid
MENot yet paid
Validation statesKHNot yet paid
MANot yet paid
MDNot yet paid
TNNot yet paid
TitleGerman:VERFAHREN ZUR BESTIMMUNG EINER VERZÖGERUNG BEI DER KRISTALLISATION EINES THERMOPLASTISCHEN POLYMERS, VERWENDUNG EINES DERARTIGEN POLYMERS ZUR BESCHICHTUNG ODER VERKAPSELUNG EINES ELEKTRONISCHEN BAUTEILS UND ZUGEHÖRIGES VERFAHREN[2020/12]
English:METHOD FOR DETERMINING A DELAY IN THE CRYSTALLISATION OF A THERMOPLASTIC POLYMER, USE OF SUCH A POLYMER FOR COATING OR ENCAPSULATING AN ELECTRONIC COMPONENT, AND ASSOCIATED METHOD[2020/12]
French:PROCÉDÉ DE DÉTERMINATION D'UN RETARD DE CRISTALLISATION D'UN POLYMÈRE THERMOPLASTIQUE, UTILISATION D'UN TEL POLYMÈRE POUR REVÊTIR OU ENCAPSULER UN COMPOSANT ÉLECTRONIQUE ET PROCÉDÉ ASSOCIÉ[2020/12]
Entry into regional phase19.11.2019National basic fee paid 
19.11.2019Designation fee(s) paid 
19.11.2019Examination fee paid 
Examination procedure28.02.2019Request for preliminary examination filed
International Preliminary Examining Authority: EP
19.11.2019Amendment by applicant (claims and/or description)
19.11.2019Examination requested  [2020/12]
19.11.2019Date on which the examining division has become responsible
03.09.2020Communication of intention to grant the patent
14.12.2020Disapproval of the communication of intention to grant the patent by the applicant or resumption of examination proceedings by the EPO
26.01.2021Communication of intention to grant the patent
11.05.2021Fee for grant paid
11.05.2021Fee for publishing/printing paid
11.05.2021Receipt of the translation of the claim(s)
Opposition(s)24.03.2022No opposition filed within time limit [2022/22]
Fees paidRenewal fee
29.04.2020Renewal fee patent year 03
28.04.2021Renewal fee patent year 04
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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  TooltipHU09.05.2018
AL23.06.2021
AT23.06.2021
CY23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
IT23.06.2021
LT23.06.2021
LV23.06.2021
MC23.06.2021
MK23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SI23.06.2021
SK23.06.2021
SM23.06.2021
TR23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
[2024/29]
Former [2024/24]HU09.05.2018
AL23.06.2021
AT23.06.2021
CY23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
IT23.06.2021
LT23.06.2021
LV23.06.2021
MC23.06.2021
MK23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SI23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2024/23]AL23.06.2021
AT23.06.2021
CY23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
IT23.06.2021
LT23.06.2021
LV23.06.2021
MC23.06.2021
MK23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SI23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2024/20]AL23.06.2021
AT23.06.2021
CY23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
IT23.06.2021
LT23.06.2021
LV23.06.2021
MC23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SI23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2023/06]AL23.06.2021
AT23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
IT23.06.2021
LT23.06.2021
LV23.06.2021
MC23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SI23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2022/36]AL23.06.2021
AT23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
IT23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SI23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2022/29]AL23.06.2021
AT23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SI23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2022/26]AL23.06.2021
AT23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2022/21]AT23.06.2021
CZ23.06.2021
DK23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2022/11]AT23.06.2021
CZ23.06.2021
EE23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
PL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
IS23.10.2021
PT25.10.2021
Former [2022/09]AT23.06.2021
CZ23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
RO23.06.2021
RS23.06.2021
SE23.06.2021
SK23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
PT25.10.2021
Former [2022/08]AT23.06.2021
CZ23.06.2021
ES23.06.2021
FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
RS23.06.2021
SE23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
Former [2022/07]AT23.06.2021
FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
NL23.06.2021
RS23.06.2021
SE23.06.2021
SM23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
Former [2021/51]FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
RS23.06.2021
SE23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
Former [2021/49]FI23.06.2021
HR23.06.2021
LT23.06.2021
LV23.06.2021
SE23.06.2021
BG23.09.2021
NO23.09.2021
GR24.09.2021
Former [2021/46]FI23.06.2021
LT23.06.2021
BG23.09.2021
Cited inInternational search[A]FR2373385  (RHONE POULENC IND [FR]) [A] 1-3 * page 3, line 6 - line 15; figure 1 *;
 [XDI]US2011091707  (JOUSSET DOMINIQUE [FR], et al) [XD] 4,21 * abstract * [I] 5-20,22,23;
 [A]US2011088777  (BECKER HINNERK GORDON [DE], et al) [A] 4-23* paragraph [0067] - paragraph [0068] *;
 [A]US2015145168  (RODGERS LUKE M B [US], et al) [A] 1-3 * paragraphs [0109] , [0057] , [0058] , [0064]; figure 4 *;
 [X]  - Varun Ratta, "Chapter 8 - Crystallization and Multiple Melting Behavior of a New Semicrystalline Polyimide based on 1,3-bis (4-aminophenoxy) benzene (TPER) and 3,3', 4,4'-benzophenonetetracarboxylic dianhydride (BTDA)", CRYSTALLIZATION, MORPHOLOGY, THERMAL STABILITY AND ADHESIVE PROPERTIES OF NOVEL HIGH PERFORMANCE SEMICRYSTALLINE POLYIMIDES, Blackburg, Virginia, (19990401), pages 243 - 291, URL: https://theses.lib.vt.edu/theses/available/etd-051799-162256/unrestricted/polyimide8.pdf, (20171116), XP055425945 [X] 1-3 * the whole document *
by applicantUS2011036623
 US2011091707
    - DE L. LA NOTTE et al., "Influence of encapsulation materials on the optical properties and conversion efficiency of heat-sealed flexible polymer solar cells", Surface & Coatings Technology, (20140000), vol. 255, pages 69 - 73
    - DE F. YAN et al., "Semitransparent OPV modules pass environmental chamber test requirements", Solar Energy Materials & Solar Cells, (20130000), vol. 114, doi:doi:10.1016/j.solmat.2012.09.031, pages 214 - 218, XP028589931

DOI:   http://dx.doi.org/10.1016/j.solmat.2012.09.031
    - DE H.C. WEERASINGHE et al., "New barrier encapsulation and lifetime assessment of printed organic photovoltaic modules", Solar Energy Materials & Solar Cells, (20160000), vol. 155, doi:doi:10.1016/j.solmat.2016.04.051, pages 108 - 116, XP029654736

DOI:   http://dx.doi.org/10.1016/j.solmat.2016.04.051
    - L. LA NOTTE et al., Surface & Coatings Technology, (20140000), vol. 255, pages 69 - 73
    - F. YAN et al., Solar Energy Materials & Solar Cells, (20130000), vol. 114, pages 214 - 218
    - H.C. WEERASINGHE et al., Solar Energy Materials & Solar Cells, (20160000), vol. 155, pages 108 - 116
The EPO accepts no responsibility for the accuracy of data originating from other authorities; in particular, it does not guarantee that it is complete, up to date or fit for specific purposes.