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公开(公告)号:KR850000393B1
公开(公告)日:1985-03-25
申请号:KR800000420
申请日:1980-02-02
Applicant: ESSILOR INT
Inventor: DEROODE JEAN ROBERT
IPC: B44C1/17
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公开(公告)号:KR20180057627A
公开(公告)日:2018-05-30
申请号:KR20187008331
申请日:2016-09-08
Applicant: ESSILOR INT
Inventor: JOUARD LUDOVIC , PATIN ERIC
CPC classification number: G02C5/2209 , G02C7/083 , G02C11/10
Abstract: 본발명은적어도하나의렌즈를하우징하도록의도되는표면요소(2), 및힌지축(X)을갖는힌지(7)에의해상기표면요소(2)에연결되는단부(16)를갖는적어도하나의사이드피스(6)를포함하는전자프레임들(1)에관한것으로, 상기전자프레임들(1)은구부러질수 있고표면요소(2)와상기힌지(7)의영역에서의상기적어도하나의사이드피스(6) 사이에서연장되는전도체(10)를포함한다. 전자프레임들은표면요소(2)와상기적어도하나의사이드피스(6)의단부(16) 사이에위치되는적어도하나의본체(15)를포함하며, 상기본체(15)는상기전자프레임들(1)에움직임가능하게장착되고상기전도체(10)가통과하는것을가능하게하는관통개구부(19)를갖는다.
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公开(公告)号:KR840001332B1
公开(公告)日:1984-09-17
申请号:KR800004017
申请日:1980-10-20
Applicant: ESSILOR INT
Inventor: LHOSPICE BERNARD
IPC: G02C1/04
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公开(公告)号:KR20200135970A
公开(公告)日:2020-12-04
申请号:KR20207027967
申请日:2019-03-28
Applicant: ESSILOR INT
Inventor: CALIXTE LAURENT , GUILLOT MATTHIEU , REGO CARLOS
IPC: G02C7/02
Abstract: 단초점안구렌즈를결정하기위한컴퓨터수단에의해구현되는방법으로서, 단초점안구렌즈는착용자에맞춰지고, 방법은, - 적어도착용자의처방된광 굴절력을나타내는착용자처방데이터가제공되는착용자처방데이터제공단계; - 착용자에의한단초점안구렌즈의착용파라미터를나타내는착용데이터가제공되는착용데이터제공단계; - 착용파라미터에해당하는착용조건에서, 단초점안구렌즈가제1 거리를응시하는경우적어도제1 시선방향으로그리고제2 거리를응시하는경우제2 시선방향으로처방된광 굴절력을착용자에게제공하도록, 단초점안구렌즈가결정되는단초점안구렌즈결정단계를포함하며, 제1 및제2 거리는상이하고, 제1 및제2 시선방향은상이하다.
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公开(公告)号:KR20180069013A
公开(公告)日:2018-06-22
申请号:KR20187013359
申请日:2016-10-14
Applicant: ESSILOR INT
Inventor: ESCALIER GUILHEM , POULAIN ISABELLE , DEBIEUVRE AMANDINE , PAILLE DAMIEN , TRANVOUEZ BERNARDIN DELPHINE , BARANTON KONOGAN , ROUSSEAU BENJAMIN
CPC classification number: A61B3/113 , A61B3/032 , G02C7/025 , G02C13/005
Abstract: 본발명은사람의적어도하나의시각적거동매개변수를결정하기위한방법에관한것이다. 그러한방법은이하의단계를포함한다: 사람이적어도하나의표적위치(30)를관찰하는동안사람이시각적테스트를실시하게하는단계, 시각적테스트중에사람의적어도하나의응시방향(DR)을나타내는데이터의항목을측정하는단계, 측정된, 응시방향(DR)을나타내는데이터를기초로기준응시방향(DRM)을결정하는단계, 및시각적테스트중에측정된사람의응시방향을나타내는데이터를기초로, 결정된적어도하나의측정된표적위치(50)를, 기준응시방향에대해서, 사람의머리와연관된기준마커(R) 내에배치하는단계.
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公开(公告)号:KR20180066099A
公开(公告)日:2018-06-18
申请号:KR20187010520
申请日:2016-10-11
Applicant: ESSILOR INT
Inventor: HESLOUIS MELANIE , FRICKER SEBASTIEN , GUILLOUX CYRIL , ROUSSEAU BENJAMIN
IPC: G02C7/02
Abstract: 본발명은: · 국부적광학기준과임계값사이의조건이충족되는영역을계산하는단계; · 상기영역에따라안과용렌즈의 3차원효율을결정하는단계를포함하는안과용렌즈의 3차원효율을결정하는방법에관한것이다. 본발명은또한상기방법을포함하는안과용렌즈를계산하는방법에관한것이다.
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公开(公告)号:KR20200130861A
公开(公告)日:2020-11-20
申请号:KR20207030378
申请日:2019-06-03
Applicant: ESSILOR INT
Inventor: FEUILLADE MATHIEU , FROMENTIN PIERRE , HERVIEU GREGORY , MONTOYA DAVID , JALLOULI AREF
Abstract: 본발명은적어도하나의광학적기능을갖는안과용렌즈(40)의제조방법을제공하고, 그러한제조방법은 280 내지 2000 nm의파장범위내의투과스펙트럼을결정하는단계, 결정된투과스펙트럼과관련하여, 280 내지 2000 nm의파장을갖는광을흡수하는적어도 2개의화합물을포함하는매트릭스를결정하는단계, 및상기매트릭스를적층제조하는단계를포함한다.
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公开(公告)号:KR20180040142A
公开(公告)日:2018-04-19
申请号:KR20187003931
申请日:2016-07-05
Applicant: ESSILOR INT
Inventor: BALLET JEROME , ARCHAMBEAU SAMUEL , CANO JEAN PAUL , PERROT STEPHANE
Abstract: 본발명은통신네트워크(1)에광학소자(5), 예를들어안과용렌즈를연결시키는방법에관한것이며, 식별자는상기식별자에따라네트워크를통하여데이터를라우팅하기위해광학소자에할당된다.
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公开(公告)号:KR20180039636A
公开(公告)日:2018-04-18
申请号:KR20187003122
申请日:2016-08-04
Applicant: ESSILOR INT
Inventor: BOUTINON STEPHANE , NAUCHE MICHEL
CPC classification number: G02B3/14 , G02B3/06 , G02B26/004 , G02C7/085
Abstract: 본발명은가변광학배율의렌즈(100)에관한것으로: 투명가요성판(150); 원통형면에내접되는리지(115)를갖는본체(110); 만곡에의해판(150)을변형시키도록리지(115)와접촉하는판(150)의제2 부분과별개인판(150)의제1 부분을이동시킬수 있는요소(160); 및판(150)과본체(110) 사이에포함되는액체(190)를포함하는것을특징으로한다. 그러한렌즈를포함하는광학어셈블리및 그러한광학어셈블리를포함하는시력교정디바이스가또한제안된다.
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公开(公告)号:JPH08211339A
公开(公告)日:1996-08-20
申请号:JP28066495
申请日:1995-10-27
Applicant: ESSILOR INT
Inventor: FURANSOWAAZU ASUBASU , KUROODO PEDORON
Abstract: PROBLEM TO BE SOLVED: To provide spectacles in which wearing person can obtain a substantially constant of field of view of object in near visual acuity part regardless of non-emmetropia or power addition value of lens and without leading to the deterioration of lens characteristics. SOLUTION: The surface of the ophthalmic lens has a far visual acuity part VL containing a control point L for far visual acuity, a near visual acuity part VP containing a control point P for near visual acuity, an intermediate visual acuity part VI between the far visual acuity part VL and the near visual acuity part VP, and a progressive main diameter line MM' passing three parts of the far visual acuity part VL, the near visual acuity part VP and the intermediate visual acuity part VI. This ophthalmic lens has a power addition value defined as the deviation in the average spherical surface between the far visual acuity control point L and the near visual acuity control point P, and a base defined as the value of the average spherical surface in the far visual acuity control point L.
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