WO2023241487A1 - 隐形眼镜 - Google Patents

隐形眼镜 Download PDF

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Publication number
WO2023241487A1
WO2023241487A1 PCT/CN2023/099458 CN2023099458W WO2023241487A1 WO 2023241487 A1 WO2023241487 A1 WO 2023241487A1 CN 2023099458 W CN2023099458 W CN 2023099458W WO 2023241487 A1 WO2023241487 A1 WO 2023241487A1
Authority
WO
WIPO (PCT)
Prior art keywords
contact lens
support ring
circuit structure
electronic component
annular wearing
Prior art date
Application number
PCT/CN2023/099458
Other languages
English (en)
French (fr)
Other versions
WO2023241487A9 (zh
Inventor
黄逸芳
林士翔
陈博钧
Original Assignee
晶硕光学股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 晶硕光学股份有限公司 filed Critical 晶硕光学股份有限公司
Publication of WO2023241487A1 publication Critical patent/WO2023241487A1/zh
Publication of WO2023241487A9 publication Critical patent/WO2023241487A9/zh

Links

Classifications

    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • G02C11/10Electronic devices other than hearing aids
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/04Contact lenses for the eyes
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B1/00Optical elements characterised by the material of which they are made; Optical coatings for optical elements
    • G02B1/04Optical elements characterised by the material of which they are made; Optical coatings for optical elements made of organic materials, e.g. plastics
    • G02B1/041Lenses
    • G02B1/043Contact lenses
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/04Contact lenses for the eyes
    • G02C7/047Contact lens fitting; Contact lenses for orthokeratology; Contact lenses for specially shaped corneae
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/04Contact lenses for the eyes
    • G02C7/049Contact lenses having special fitting or structural features achieved by special materials or material structures
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D11/00Producing optical elements, e.g. lenses or prisms
    • B29D11/00009Production of simple or compound lenses
    • B29D11/00038Production of contact lenses
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D11/00Producing optical elements, e.g. lenses or prisms
    • B29D11/0074Production of other optical elements not provided for in B29D11/00009- B29D11/0073
    • B29D11/00807Producing lenses combined with electronics, e.g. chips
    • B29D11/00817Producing electro-active lenses or lenses with energy receptors, e.g. batteries or antennas
    • B29D11/00826Producing electro-active lenses or lenses with energy receptors, e.g. batteries or antennas with energy receptors for wireless energy transmission
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • G02C7/02Lenses; Lens systems ; Methods of designing lenses
    • G02C7/04Contact lenses for the eyes
    • G02C7/046Contact lenses having an iris pattern

Definitions

  • the present invention relates to a contact lens, in particular to a smart contact lens.
  • the purpose of embodiments of the present invention is to provide a contact lens that can effectively improve the possible defects of existing smart contact lenses.
  • An embodiment of the present invention discloses a contact lens, which includes: a glasses body, including an optical part and an annular wearing part surrounding the optical part; wherein, the glasses body has a rear surface and a rear surface respectively located on opposite sides. A front surface; and an embedded module, which is embedded in the annular wearing part, and the embedded module includes: a front support ring, which is made of natural material; wherein, the front support ring surrounds the outside of the optical part , and the front support ring has a front curved surface and a rear bearing surface; the front curved surface is flush with the front surface of the glasses body; a rear support ring is made of natural material; wherein, the rear support ring surrounds the outside of the optical part , and the rear support ring has a rear curved surface and a front bearing surface; the rear curved surface is flush with the rear surface of the glasses body, so that it can be worn on the eyes of a user; and a circuit structure, which is clamped and positioned Between the rear bearing surface of the front support
  • the material of the spectacle body and the eye-friendly material of the front support ring and the back support ring each include hydrogel or silicone hydrogel, and no grooves are formed on the outer surface of the contact lens.
  • At least one of the front support ring and the rear support ring covers the entire circuit structure; the side edges of the circuit structure are connected to the annular wearing part without gaps.
  • the contact lens includes an electronic component connected to the circuit structure, and the electronic component is clamped between the rear bearing surface of the front support ring and the front bearing surface of the rear support ring; wherein, the side edges of the electronic component are without gaps. Connected to the ring-shaped wearing part.
  • the circuit structure includes a circuit connected to the electronic component, and the circuit is not formed on any carrier board.
  • the circuit structure includes a carrier board and a circuit formed on the carrier board, and the circuit is connected to the electronic component.
  • the carrier plate includes: a C-shaped section formed with at least one through hole, and the annular wearing portion fills the at least one through hole; and a connecting section connected between two end edges of the C-shaped section; Wherein, in the top view of the contact lens, the area of at least one through hole occupies 1% to 85% of the area enclosed by the outer contour of the C-shaped segment.
  • the optical part defines a central axis.
  • the central axis is defined as an origin and sequentially divides a first quadrant, a second quadrant, a third quadrant and a first quadrant in a counterclockwise direction.
  • Four quadrants, and multiple locations of at least one through hole are respectively distributed in the first, second, third and fourth quadrants, and the area difference between any two locations is not greater than 50%.
  • the optical portion defines a central axis
  • the carrier plate is formed with a plurality of radial cuts from its outer edge toward the central axis, so that the carrier plate has a certain shape of curvature; wherein the annular wearing portion fills the plurality of radial incisions. Toward the cut mark.
  • the rear surface of the spectacle body and the rear curved surface of the rear support ring jointly form a preset curvature suitable for being worn on the eyes
  • the front surface has a visible surface corresponding to the optical part
  • the front surface and the front curved surface jointly form Corresponding to a free-form surface of the annular wearing part; wherein the visible surface has a first curvature that is different from a second curvature of the free-form surface, so that the thickness distribution of the annular wearing part gradually increases toward the electronic component.
  • the annular wearing part has a C-shaped layout area and a lower eyelid area located between two ends of the layout area, and the side edge of the electronic component is joined to the lower eyelid. Area; wherein, when the contact lens is worn on the eye, the part with the maximum thickness of the annular wearing part is located correspondingly within the lower eyelid of the eye, and the annular wearing part has the minimum thickness
  • the site is located within the upper eyelid of the eye.
  • a contact lens which includes: the lens body has a rear surface and a front surface respectively located on opposite sides, and the rear surface is suitable for wearing on a user's eyes; and an embedded module , which is embedded in the annular wearing part, and the embedded module includes: a front support ring, which is made of natural material; wherein the front support ring surrounds the outside of the optical part, and the front support ring has a front curved surface and a rear bearing surface; the front curved surface is flush with the front surface of the glasses body; and a circuit structure, which is combined with the rear bearing surface of the front support ring, so that the circuit structure is completely embedded in the annular wearing part.
  • the contact lens includes an electronic component connected to the circuit structure, and the electronic component is combined with the rear bearing surface of the front support ring; wherein, the front support ring covers the entire circuit structure and the entire electronic component, and the circuit structure and the electronic component have no Connected to the annular wearing part with a gap.
  • the circuit structure includes a carrier board and a circuit formed on the carrier board, and the circuit is connected to the electronic component;
  • the carrier plate includes: a C-shaped section formed with at least one through hole, and the annular wearing part fills at least one through hole; and a connecting section connected between two end edges of the C-shaped section; wherein , in the top view of the contact lens, the area of at least one through hole occupies 1% to 85% of the area enclosed by the outer contour of the C-shaped segment.
  • the rear surface of the spectacle body has a preset curvature suitable for being worn on the eye
  • the front surface has a visible surface corresponding to the optical part
  • the front surface is The front curved surfaces together form a free-form surface corresponding to the annular wearing part; wherein the visible surface has a first curvature that is different from a second curvature of the free-form surface, so that the annular The thickness distribution of the wearing part gradually increases toward the electronic component.
  • An embodiment of the present invention also discloses a contact lens, which includes: a lens body having a rear surface and a front surface respectively located on opposite sides; and an embedded module, which is embedded in an annular wearing part, and the embedded module It includes: a rear support ring, which is made of natural material; wherein, the rear support ring surrounds the outside of the optical part, and the rear support ring has a rear curved surface and a front bearing surface; the rear curved surface is flush with the glasses body The rear surface is adapted to be worn over the eyes of a user; and a circuit structure is combined between the front load-bearing surfaces of the rear support ring so that the circuit structure is completely embedded within the annular wearing part. .
  • the material of the spectacle body and the eye-friendly material of the back support ring each include hydrogel or silicone hydrogel, and no grooves are formed on the outer surface of the contact lens; wherein, the contact lens includes a An electronic component, and the electronic component is combined with the front bearing surface of the rear support ring; wherein, the rear support ring covers the entire circuit structure and the entire electronic component, and the circuit structure and the electronic component are connected to the annular wearing part without gaps.
  • the circuit structure includes a carrier board and a circuit formed on the carrier board, and the circuit is connected to the electronic component; wherein the carrier board includes: a C-shaped section formed with at least one through hole, and the annular wearing portion is filled with Filling at least one through hole; and a connecting section connected between the two end edges of the C-shaped section; wherein, in a top view of the contact lens, the area of at least one through hole occupies the area surrounded by the outer contour of the C-shaped section 1% to 85% of the area.
  • the rear surface of the spectacle body and the rear curved surface of the rear support ring jointly form a preset curvature suitable for being worn on the eyes, and the front surface has a visible surface corresponding to the optical part and a front surface corresponding to the annular wearing part.
  • An embodiment of the present invention also discloses a contact lens, which includes: a glasses body, including an optical part and an annular wearing part surrounding the optical part; wherein the glasses body has a rear lens located on opposite sides respectively. surface and a front surface; and an embedded module, which is embedded in the annular wearing part, and the embedded module includes: a rear support ring, which is made of natural material; wherein, the rear A support ring surrounds the outside of the optical part, and the posterior branch
  • the support ring has a rear curved surface and a front bearing surface; the rear curved surface is flush with the rear surface of the glasses body, so that they are suitable for wearing on a user's eyes; and a circuit structure, which Combined between the front bearing surfaces of the rear support ring, the circuit structure is completely embedded within the annular wearing part.
  • the contact lens disclosed in the embodiment of the present invention has the front support ring, the rear support ring and a plurality of support bodies made of the eye-friendly material through planning. At least one of them is used to position the circuit structure, so as to facilitate the high-precision positioning of the circuit structure during the manufacturing process of the contact lens, so that the contact lens can maintain a high degree of consistency during mass production.
  • Figure 1 is a schematic three-dimensional view of a contact lens according to Embodiment 1 of the present invention.
  • Figure 2 is a schematic top view of Figure 1.
  • Figure 3 is a schematic plan view of the contact lens of Figure 1 being worn on a user's eyes.
  • FIG. 4 is a schematic cross-sectional view along section line IV-IV in FIG. 1 .
  • FIG. 5 is an enlarged schematic diagram of area V in FIG. 4 .
  • FIG. 6 is a schematic cross-sectional view along line VI-VI in FIG. 1 .
  • FIG. 7 is a schematic three-dimensional view of another contact lens according to Embodiment 1 of the present invention.
  • FIG. 8 is a schematic top view of FIG. 7 .
  • FIG. 9 is a schematic cross-sectional view along the section line IX-IX of FIG. 7 .
  • Figure 10 is a schematic three-dimensional view of a contact lens according to Embodiment 2 of the present invention.
  • FIG. 11 is a schematic top view of FIG. 10 .
  • FIG. 12 is a schematic cross-sectional view along section line XII-XII of FIG. 10 .
  • Figure 13 is a schematic cross-sectional view of a contact lens according to Embodiment 3 of the present invention.
  • FIG. 14 is an enlarged schematic diagram of area XIV in FIG. 13 .
  • Figure 15 is a schematic cross-sectional view of the contact lens in another direction according to Embodiment 3 of the present invention.
  • Figure 16 is a schematic cross-sectional view of a contact lens according to Embodiment 4 of the present invention.
  • FIG. 17 is an enlarged schematic diagram of area XVII in FIG. 16 .
  • Figure 18 is a schematic cross-sectional view of the contact lens in another direction according to Embodiment 4 of the present invention.
  • FIG. 1 to FIG. 9 is Embodiment 1 of the present invention.
  • this embodiment discloses a contact lens 100 (or called a smart contact lens).
  • the contact lens 100 can be worn on the user's eye 200 (eg, FIG. 3 ) or embedded in the eye 200 (not shown in the figure) according to design requirements.
  • the contact lens 100 in this embodiment may have the function of correcting refractive errors, and the refractive errors include hyperopia, myopia, astigmatism, and presbyopia. presbyopia), or astigmatism-presbyopia; or, the contact lens 100 may be a makeup lens without correction function.
  • the contact lens 100 includes a spectacle body 1 and an embedded module 10 embedded in the spectacle body 1 .
  • the embedded module 10 includes a front support ring 4, a rear support ring 5 facing the front support ring 4, and an electronic device clamped between the front support ring 4 and the rear support ring 5.
  • the component 2 and a circuit structure 3 are sandwiched between the front support ring 4 and the rear support ring 5 and electrically coupled to the electronic component 2, but the invention is not limited thereto.
  • the embedded module 10 may also include only the front support ring 4, the rear support ring 5 and the circuit structure 3, according to design requirements.
  • the electronic component 2 is omitted.
  • the front support ring 4 and the rear support ring 5 can each be regarded as a kind of support body.
  • the glasses body 1 is made of hydrogel or silicone hydrogel. It is formed by solidification, and the above-mentioned hydrocolloid is, for example, p-HEMA, but is not limited to this.
  • the spectacle body 1 includes an optical part 11 and an annular wearing part 12 surrounding the optical part 11.
  • the optical part 11 may or may not be configured to correct the refractive error according to design requirements. Function. It should be noted that although the optical part 11 is not embedded with any components in this embodiment, it can be configured according to design requirements (for example, the contact lens 100 is used in a digital zoom device). 11
  • the embedded components are not limited by the above description of this embodiment.
  • the optical part 11 defines a central axis L, and the center of the optical part 11 and the center of the annular wearing part 12 are both located on the central axis L.
  • the annular wearing part 12 is connected to the outer edge of the optical part 11 and is generally annular in shape, and the embedded module 10 is embedded in the annular wearing part 12 .
  • the production method of embedding the embedded module 10 in the annular wearing part 12 (or the manufacturing method of the contact lens 100) can be adjusted and changed according to design requirements, and is not included in the present invention. limit.
  • the embedded module 10 is embedded in the annular wearing part 12, and the front support ring 4 and the rear support ring 5 each surround the outside of the optical part and their centers are located on above the central axis L.
  • the front support ring 4 has a front curved surface 41 and a rear bearing surface 42
  • the rear support ring 5 has a rear curved surface 51 and a front bearing surface 52 facing the rear bearing surface 41 .
  • the electronic component 2 and the circuit structure 3 are sandwiched and positioned between the rear bearing surface 42 of the front support ring 4 and the front bearing surface 52 of the rear support ring 5 , so that the electronic component 2 and the circuit structure 3 are completely embedded in the annular wearing part 12 .
  • at least one of the front support ring 4 and the rear support ring 5 covers the entire electronic component 2 and the entire circuit structure 3, but does not This is the limit.
  • the side edges of the electronic component 2 and the side edges of the circuit structure 3 are connected to the annular wearing part 12 (such as the lower eyelid area 122 described below) without gaps.
  • the front support ring 4 and the rear support ring 5 are each made of eye-friendly material in this embodiment, and the eye-friendly material may include hydrogel (such as: p-HEMA ) or silicone hydrogel.
  • the material used for the front support ring 4 and the rear support ring 5 has properties (such as oxygen permeability) that are preferably similar to the material properties of the glasses body 1 , but the front support ring 4
  • the rear support ring 5 can also be made of a material different from the glasses body 1 according to design requirements, and the present invention is not limited here.
  • the contact lens 100 disclosed in the embodiment of the present invention is designed and formed with the front support ring 4 and the rear support ring 5 made of the eye-friendly material to clamp and position the contact lens 100 .
  • the circuit structure 3 (and the electronic component 2) is used to facilitate the high-precision positioning of the circuit structure 3 (and the electronic component 2) during the manufacturing process of the contact lens 100, so that all The contact lens 100 maintains a high degree of consistency during mass production.
  • the ring-shaped wearing part 12 has a C-shaped layout area 121 and a lower eyelid area 122 located between two ends of the layout area 121, and the electronic component 2 is embedded therein. Within the lower eyelid area 122.
  • the positions of the lower eyelid area 122 and the electronic component 2 correspond to the relatively insensitive lower eyelid 201 of the eye 200. Accordingly, Effectively reduce the user's foreign body sensation.
  • the surface of the glasses body 1 includes a rear surface 1b and a front surface 1a located on the opposite side of the rear surface 1b.
  • the rear curved surface 51 of the rear support ring 5 is flush with the rear surface 1b of the glasses body 1 to jointly form a preset curvature and is suitable for wearing on the user's eyes. 200; that is to say, the value of the preset curvature is only related to the eye 200.
  • the rear curved surface 51 of the rear support ring 5 and the rear surface 1b of the glasses body 1 are preferably not formed with any grooves (or holes), but the present invention is not limited thereto.
  • the front surface 1 a has a visible surface 11 a corresponding to the optical part 11 , and the front curved surface 41 is flush with the front surface 1 a to jointly form a visible surface 11 a corresponding to the annular wearing part 12 A free curved surface 12a; wherein, the front curved surface 41 of the front support ring 4 and the front surface 1a of the glasses body 1 are preferably not formed with any grooves (or holes), but the present invention does not Limited by this. That is to say, no grooves (or holes) are formed on the outer surface of the contact lens 100 .
  • the visible surface 11a has a first curvature, which is related to the optical design required to correct the refractive error; or, the first curvature of the visible surface 11a can also be the same as the back curvature.
  • Surfaces 1b together form a structure without degrees.
  • the first curvature of the visible surface 11a is different from a second curvature of the free-form surface 12a, so that the thickness distribution of the annular wearing part 12 is toward the electronic component 2 (such as : The lower eyelid area 122) shows a gradually increasing shape, but the present invention is not limited to this.
  • the first curvature may be substantially equal to the second curvature, and the thicknesses of the annular wearing part 12 may be substantially equal.
  • the contact lens 100 can be installed at any part of the annular wearing part 12 according to design requirements.
  • At least one electronic component 2 is embedded through the front support ring 4 and the rear support ring 5; for example, in other embodiments not shown in the present invention, the annular wearing portion 12
  • At least one electronic component 2 is embedded on both sides of the horizontal side through the front support ring 4 and the rear support ring 5, so that the thickness of the annular wearing part 12 is thickest at the eye level. , and gradually becomes thinner in the plumb direction toward the eye; accordingly, this arrangement can accommodate at least two sets of the electronic components 2 and can reduce the foreign body feeling of the contact lens 100 when worn.
  • the contact lens 100 disclosed in the embodiment of the present invention is formed by the front surface 1a of the lens body 1 and the front curved surface 41 of the front support ring 4.
  • the free-curved surface 12a prevents the thickness of the layout area 121 from completely adapting to the thickness of the lower eyelid area 122, thereby achieving a thinner layout area 121, thereby effectively increasing the oxygen permeability of the layout area 121. , and reduce the foreign body feeling of the contact lens 100 when worn.
  • the contact lens 100 is preferably formed by the second curvature of the free-form surface 12a. It is configured to have at least one of the features in the following paragraphs, but the invention is not limited thereto.
  • the maximum thickness Tmax of the annular wearing part 12 (and/or the embedded module 10) falls in the area where the electronic component 2 is located (such as the lower eyelid area 122), and the annular wearing part
  • the minimum thickness Tmin of the portion 12 (and/or the embedded module 10) falls in a part of the layout area 121 away from the lower eyelid area 122 (such as the top of the layout area 121 in Figure 4 ).
  • the portion of the annular wearing portion 12 (and/or the embedded module 10) with the maximum thickness Tmax is located corresponding to the Within the lower eyelid 201 of the eye 200
  • the part where the annular wearing part 12 (and/or the embedded module 10 ) has the minimum thickness Tmin is located corresponding to the upper part of the eye 200 Within 202 eyelids.
  • the maximum thickness Tmax and the minimum thickness Tmin correspond to the user's lower eyelids 201 and upper eyelids 202 in this embodiment, the present invention does not limit the thickness of the contact lens 100 to the user's eyelids 201, 202. relative positional relationship between them.
  • the circuit structure 3 can exist alone in the embedded module 10 (not shown in the figure) or be matched with the electronic component 2, and then be driven by electricity or physically to achieve energy reception and wireless signals. At least one of multiple functions such as transmission, digital calculation, sensing and monitoring, pressure application, current release, image projection, optical zoom, and power storage, but the invention is not limited thereto.
  • the circuit structure 3 in this embodiment includes a carrier board 31 and a circuit 32 (such as a metal circuit) formed on the carrier board 31, and the The circuit 32 is connected to the electronic component 2 and electrically coupled to each other, but the invention is not limited thereto.
  • the circuit structure 3 It may include a circuit 32 connected to the electronic component 2, and the circuit 32 is not formed on any carrier board; that is, the embedded module 10 is connected to the rear through the front support ring 4.
  • the support ring 5 provides a predetermined positioning of the line 32 to prevent the line 32 from moving or deforming when the spectacle body 1 is formed.
  • the carrier plate 31 can be shaped into a preset curved structure through normal temperature pressure or high temperature pressure of the lamination mold, so that the carrier plate 31 can be shaped into a preset curved structure.
  • 31 has a certain shaped curvature that is different from the second curvature, and the shaped curvature is preferably close to the preset curvature formed by the rear surface 1b and the rear curved surface 51 (such as the shaped curvature 100% to 110% of the preset curvature), but the present invention is not limited to the above.
  • the carrier board 31 is illustrated as a flexible printed circuit board (FPCB) with a thickness ranging from 10 microns to 300 microns, and the thickness of the carrier board 31 is relatively small. Preferably, it is between 40 microns and 80 microns, and the polymer material of the carrier 31 can include polyimide (PI), liquid crystal polymer (Liquid-crystal polymer, LCP), polyterephthalene Polyethylene terephthalate (PET), or poly(ethylene 2,6-naphthalene dicarboxylate) (PEN), but not limited to the above.
  • PI polyimide
  • LCP liquid crystal polymer
  • PET polyterephthalene Polyethylene terephthalate
  • PEN poly(ethylene 2,6-naphthalene dicarboxylate)
  • the carrier board 31 has a C-shaped section 311 embedded in the layout area 121 and a connecting section 312 embedded in the lower eyelid area 122, and the connecting section 312 is connected to the between the two end edges of the C-shaped section 311.
  • the electronic component 2 may be installed on the connecting section 312 , and the circuit 32 is formed on the C-shaped section 311 and extends to the connecting section 312 to connect to the electronic component 2 .
  • the C-shaped section 311 is formed with at least one through hole 3111, and the glasses body 1 (such as: The annular wearing part 12) fills at least one of the through holes 3111.
  • the area of at least one of the through holes 3111 needs to be surrounded by the outer contour of the C-shaped segment 311 1% to 85% of the area (preferably 10% to 40%), thereby effectively reducing wrinkles or stress concentration on the carrier plate 31, and can be matched with the free-form surface 12a to further improve Oxygen permeability of the contact lens 100 .
  • the carrier plate 31 may also be formed with a plurality of radial cuts 313 from its outer edge toward the central axis L to facilitate the carrier plate 31 to form the shaped curvature, and thereby further reduce the
  • the carrier plate 31 is wrinkled or has stress concentration.
  • the annular wearing part 12 is filled with a plurality of radial cuts 313, and in this embodiment, the plurality of radial cuts 313 are respectively formed on the C-shaped section 311 and the connection. The junction of segment 312, but the invention is not limited thereto.
  • the area of at least one through hole 3111 occupies 1% to 75% of the area of the annular wearing part 12, and is formed in the C
  • the number of at least one through hole 3111 of the shape segment 311 is multiple, but the invention is not limited thereto.
  • the C-shaped section 311 of the carrier plate 31 may not be formed with any through holes 3111 .
  • the line 32 is surrounded by at least one closed loop, and the plurality of through holes 3111 of the C-shaped section 311 are located within the at least one closed loop of the line 32 .
  • the number of at least one closed loop is expressed as multiple, and the plurality of through holes 3111 are respectively located within the multiple closed loops of the line 32, but The present invention is not limited to this.
  • each of the through holes 3111 is in a curve shape, and the width of any of the through holes 3111 is gradually increasing from its two ends toward the center (for example: the through holes 3111 are roughly in the shape of a crescent moon in this embodiment. shape).
  • any of the through holes 3111 has an inner hole edge 3112 and an outer hole edge 3113, and the two ends of the inner hole edge 3112 are respectively connected to the two ends of the outer hole edge 3113, so that The two ends of at least one through hole 3111 are respectively formed.
  • the inner hole edge 3112 and the outer hole edge 3113 are both arc-shaped, and the radius of the inner hole edge 3112 is smaller than the radius of the outer hole edge 3113, and the center of the inner hole edge 3112 and The center of the outer hole edge 3113 is respectively located on two different planes perpendicular to the central axis L; that is to say, each of the through holes 3111 is along the carrier plate 31 in this embodiment.
  • the shaped curvature configuration is not flat.
  • the central axis L is defined as an origin, and according to the definition of the origin, there are The origin and an X-axis and a Y-axis that are perpendicular to each other divide a first quadrant Q1, a second quadrant Q2, a third quadrant Q3 and a fourth quadrant Q4 in order in the counterclockwise direction.
  • the lower eyelid area 122 is located in the third quadrant Q3 and the fourth quadrant Q4 , and the Y-axis is approximately the middle of the lower eyelid area 122 line, and the lower eyelid area 122 corresponds to a central angle ⁇ 122 of the origin, which is preferably between 30 degrees and 180 degrees, and the value of the central angle ⁇ 122 can be determined according to design requirements.
  • the invention is not limited thereto.
  • a plurality of the through holes 3111 are distributed in the first quadrant Q1, the second quadrant Q2, the third quadrant Q3 and the fourth quadrant Q3.
  • Quadrant Q4 and are distributed in multiple parts of the plurality of through holes 3111 in the first quadrant Q1, the second quadrant Q2, the third quadrant Q3 and the fourth quadrant Q4, any two of which The area difference between the locations is not greater than 50%.
  • any of the through holes 3111 spans at least two quadrants (for example: any of the through holes 3111 is located between the first quadrant Q1 and Q1). Within the fourth quadrant Q4, or within the second quadrant Q2 and the third quadrant Q3), and any of the through holes 3111 may be mirror symmetrical to the X-axis, but the present invention Not limited to this.
  • the plurality of through holes 3111 includes at least one first through hole 3111a and at least one second through hole 3111b, and the number of at least one first through hole 3111a and the number of at least one second through hole 3111b is equal to In this embodiment, multiple numbers are used for each description, but the invention is not limited thereto.
  • the plurality of first through holes 3111a are respectively located inside the plurality of second through holes 3111b; that is to say, the radius of each second through hole 3111b is different from (eg, greater than) any one of the second through holes 3111b. The radius of the first through hole 3111a.
  • each of the first through-holes 3111a is arc-shaped and has a center located on the central axis L, and a plurality of the first through-holes 3111a are spaced apart from each other.
  • the two through holes 3111b are arc-shaped and have a center located on the central axis L, and a plurality of the second through holes 3111b are spaced apart from each other.
  • any one of the first through holes 3111a is located within the central angle range corresponding to the second through hole 3111b, and the interval between any two adjacent first through holes 3111a is The distance between any two adjacent second through holes 3111b is located in the same radial direction of the contact lens 100 .
  • the contact lens 100 in this embodiment can be used with various devices.
  • the contact lens 100 can be wirelessly connected to any wearable device worn on the user (such as a reader installed on glasses, or a neck-mounted device). reader), and the above-mentioned wearable device (or reader) can use common wireless transmission technology RFID, such as 13.56MHz or 860-960MHz bandwidth, or other wireless induction power, signal transmission and other technologies, according to which the contact lens 100 Power supply, sensing, or feedback signals to achieve intelligent monitoring (such as full-time intraocular pressure value collection and warning), intelligent treatment (such as dry eye drug sustained release control), AR services (such as image projection), or other Smart applications.
  • intelligent monitoring such as full-time intraocular pressure value collection and warning
  • intelligent treatment such as dry eye drug sustained release control
  • AR services such as image projection
  • each of the front support ring 4 and the rear support ring 5 may be a plurality of supports arranged in an annular shape; that is to say, the front support ring Part of the ring 4 (or the rear support ring 5 ) can be removed to form a plurality of support bodies spaced apart from each other.
  • each support body has a curved surface and a bearing surface, and the curved surface of each support body is aligned with The front surface of the glasses body 1 One of 1a and the rear surface 1b, and the circuit structure 3 (and the electronic component 2) is combined with the load-bearing surfaces of a plurality of the supports.
  • each of the through holes 3111 is elongated and has a substantially constant width shape, and the carrier plate 31 is formed with a plurality of radial cuts 313 from its outer edge toward the central axis L.
  • the areas of the plurality of through holes 3111 distributed in the first quadrant Q1 and the second quadrant Q2 may be larger than those distributed in the first quadrant Q1 and the second quadrant Q2.
  • the areas of the plurality of through holes 3111 in the third quadrant Q3 and the fourth quadrant Q4, and the areas of the plurality of through holes 3111 need to occupy the area surrounded by the outer contour of the C-shaped segment 311 1% to 85% (preferably 10% to 40%).
  • the plurality of through holes 3111 include a plurality of first through holes 3111a and a plurality of second through holes 3111b.
  • the plurality of first through holes 3111a are respectively located inside the plurality of second through holes 3111b; that is to say, the radius of each second through hole 3111b is different from (eg, greater than) any one of the second through holes 3111b.
  • the radius of the first through hole 3111a is to say, the radius of each second through hole 3111b is different from (eg, greater than) any one of the second through holes 3111b.
  • each of the first through-holes 3111a is arc-shaped and has a center located on the central axis L, and a plurality of the first through-holes 3111a are spaced apart from each other.
  • the two through holes 3111b are arc-shaped and have a center located on the central axis L, and a plurality of the second through holes 3111b are spaced apart from each other.
  • the embedded module 10 does not include the rear support ring 5 of the first embodiment, and the rear surface 1b of the glasses body 1 has the preset curvature, which is suitable for Worn on the user's eye 200 .
  • the electronic component 2 and the circuit structure 3 are combined with the rear bearing surface 42 of the front support ring 4 so that the electronic component 2 and the circuit structure 3 are completely embedded therein.
  • the annular wearing portion 12 for example: the embedded module 10 is not in contact with and is spaced apart from the rear surface 1b. That is to say, the front support ring 4 (along the The central axis L) covers the entire circuit structure 3 and the entire electronic component 2, and the electronic component 2 and the circuit structure 3 are connected to the annular wearing part 12 without gaps.
  • the circuit structure 2 is described as including the carrier board 31 and the circuit 32.
  • the structure of the carrier board 31 is as shown in Figures 1 and 2 of the first embodiment. Take as an example, but the present invention is not limited thereto.
  • the structure of the carrier board 31 can also be as shown in Figures 10 and 11 of the second embodiment according to design requirements; or, the circuit structure 2 contains only said line 32.
  • the embedded module 10 in this embodiment uses the front support ring 4 to combine the circuit structure 3 and the electronic component 2 for illustration, the present invention is not limited to this.
  • the front support ring 4 may be a plurality of supports arranged in an annular shape; that is to say, part of the front support ring 4 may be removed A plurality of the supporting bodies are arranged spaced apart from each other.
  • a plurality of support bodies are distributed outside the optical part 11, and each support body has a curved surface and a bearing surface, and the curved surface of each support body is aligned with The front surface 1a of the glasses body 1, and the circuit structure 3 (and the electronic component 2) are combined with the bearing surfaces of the plurality of supports.
  • the embedded module 10 does not include the front support ring 4 described in Embodiment 1, and the front surface 1a has a visible surface 11a corresponding to the optical part 11 and a corresponding On a free curved surface 12a of the annular wearing part 12.
  • the electronic component 2 and the circuit structure 3 are combined with the front bearing surface 52 of the rear support ring 5 so that the electronic component 2 and the circuit structure 3 are completely embedded therein.
  • the annular wearing part 12 for example: the embedded module 10 is not in contact with and is spaced apart from the front surface 1a). That is to say, the rear support ring 5 (along the central axis L) covers the entire circuit structure 3 and the entire electronic component 2, and the electronic component 2 and the circuit structure 3 are connected without gaps. on the annular wearing part 12.
  • the circuit structure 2 is described as including the carrier board 31 and the circuit 32.
  • the structure of the carrier board 31 is as shown in Figures 1 and 2 of the first embodiment. Take as an example, but the present invention is not limited thereto.
  • the structure of the carrier board 31 can also be as shown in Figures 10 and 11 of the second embodiment according to design requirements; or, the circuit structure 2 contains only said line 32.
  • the embedded module 10 in this embodiment uses the rear support ring 5 to clamp the circuit structure 3 and the electronic component 2 for illustration, the present invention is not limited to this.
  • the rear support ring 5 may be a plurality of supports arranged in an annular shape; that is to say, part of the rear support ring 5 may be removed A plurality of the supporting bodies are arranged spaced apart from each other.
  • a plurality of support bodies are distributed outside the optical part 11, and each support body has a curved surface and a bearing surface, and the curved surface of each support body is aligned with The rear surface 1b of the glasses body 1, and the circuit structure 3 (and the electronic component 2) are combined with the bearing surfaces of the plurality of supports.
  • the contact lens disclosed in the embodiment of the present invention has the front support ring, the rear support ring, and a plurality of support bodies made of the eye-friendly material through planning. At least one of them is used to position the circuit structure (and the electronic component), so as to facilitate the high-precision positioning of the circuit structure (and the electronic component) during the manufacturing process of the contact lens. According to This enables the contact lenses to maintain a high degree of consistency during mass production.
  • the free curved surface is formed by the front surface of the lens body (together with the front curved surface of the front support ring), so that the layout
  • the thickness of the area does not need to completely accommodate the thickness of the lower eyelid area (for example: the thickness distribution of the annular wearing portion gradually increases toward the lower eyelid area), thereby achieving the thinning of the layout area.
  • the oxygen permeability of the structure area is effectively improved and the foreign body feeling of the contact lens is reduced.
  • the contact lens disclosed in the embodiments of the present invention at least one through-hole occupying a specific area is formed on the C-shaped section through the lens body (for example: the area of at least one through-hole needs to occupy 1% to 85% of the area enclosed by the outer contour of the C-shaped segment), thereby effectively reducing wrinkles or stress concentration on the carrier plate.
  • the contact lens disclosed in the embodiment of the present invention can further improve the oxygen permeability of the contact lens by configuring at least one through hole to match the free-form surface.

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Abstract

一种隐形眼镜(100)。隐形眼镜(100)包含一眼镜本体(1)及一内埋模块(10)。眼镜本体(1)包含一光学部(11)及围绕于光学部(11)的一环形配戴部(12)。内埋模块(10)埋置于环形配戴部(12),并且内埋模块(10)包含一前支撑环(4)、一后支撑环(5)及夹持定位于前支撑环(4)与后支撑环(5)之间的一线路结构(3)。前支撑环(4)与后支撑环(5)皆由亲眼材质所制成且围绕于光学部(11)的外侧。前支撑环(4)的一前曲面(41)切齐于眼镜本体(1)的前表面(1a)。后支撑环(5)的一后曲面(51)切齐于眼镜本体(1)的后表面(1b),以使其共同适用于配戴在一使用者的眼睛(200)。

Description

隐形眼镜 技术领域
本发明涉及一种隐形眼镜,尤其涉及一种智能隐形眼镜。
背景技术
现有智能隐形眼镜的内部埋置有线路结构,但所述线路结构的具体位置难以实现高精度定位,因而使得现有智能隐形眼镜于量产时难以具备高度一致性。于是,本发明人认为上述缺陷可改善,乃特潜心研究并配合科学原理的运用,终于提出一种设计合理且有效改善上述缺陷的本发明。
发明内容
本发明实施例的目的在于提供一种隐形眼镜,其能有效地改善现有智能隐形眼镜所可能产生的缺陷。
本发明实施例公开一种隐形眼镜,其包括:一眼镜本体,包含有一光学部及围绕于光学部的一环形配戴部;其中,其中,眼镜本体具有分别位于相反两侧的一后表面与一前表面;以及一内埋模块,其埋置于环形配戴部,并且内埋模块包含有:一前支撑环,其由亲眼材质所制成;其中,前支撑环围绕于光学部的外侧,并且前支撑环具有一前曲面及一后承载面;前曲面切齐于眼镜本体的前表面;一后支撑环,其由亲眼材质所制成;其中,后支撑环围绕于光学部的外侧,并且后支撑环具有一后曲面及一前承载面;后曲面切齐于眼镜本体的后表面,以使其共同适用于配戴在一使用者的眼睛;及一线路结构,其夹持定位于前支撑环的后承载面与后支撑环的前承载面之间,以使线路结构完全埋置于环形配戴部之内。
优选地,眼镜本体的材质及制成前支撑环与后支撑环的亲眼材质各包含有水胶或硅水胶,并且隐形眼镜的外表面未形成有任何凹槽。
优选地,前支撑环与后支撑环的至少其中之一覆盖整个线路结构;线路结构的侧边缘无间隙地相接于环形配戴部。
优选地,隐形眼镜包含有连接于线路结构的一电子构件,并且电子构件夹持于前支撑环的后承载面与后支撑环的前承载面之间;其中,电子构件的侧边缘无间隙地相接于环形配戴部。
优选地,线路结构包含有连接于电子构件的一线路,并且线路未形成任何载板之上。
优选地,线路结构包含有一载板及形成于载板的一线路,并且线路连接于电子构件。
优选地,载板包含有:一C形段,形成有至少一个贯穿孔,并且环形配戴部填满至少一个贯穿孔;及一连接段,相连于C形段的两个末端缘之间;其中,在隐形眼镜的俯视图之中,至少一个贯穿孔的面积占据C形段的外轮廓所包围的面积的1%~85%。
优选地,光学部定义有一中心轴线,在隐形眼镜的俯视图之中,中心轴线定义为一原点并且沿逆时针方向依序划分出一第一象限、一第二象限、一第三象限及一第四象限,并且至少一个贯穿孔的多个部位分别分布于第一象限、第二象限、第三象限及第四象限,而任两个部位之间的面积差异不大于50%。
优选地,光学部定义有一中心轴线,并且载板自其外边缘朝向中心轴线形成有多个径向切痕,以使载板形成有一定型曲率;其中,环形配戴部填满多个径向切痕。
优选地,眼镜本体的后表面及后支撑环的后曲面共同形成适于配戴在眼睛的一预设曲率,前表面具有对应于光学部的一可视面,并且前表面与前曲面共同形成对应于环形配戴部的一自由曲面;其中,可视面具有一第一曲率,其不同于自由曲面的一第二曲率,以使环形配戴部的厚度分布是朝向电子构件呈现逐渐递增状。
优选地,所述环形配戴部具有呈C字形的一布局区及位于所述布局区的两个末端之间的一下眼睑区,并且所述电子组件的所述侧边缘接合于所述下眼睑区;其中,当所述隐形眼镜配戴于所述眼睛时,所述环形配戴部具有最大厚度的部位是对应位于所述眼睛的下眼睑之内,而所述环形配戴部具有最小厚度的部位是对应位于所述眼睛的上眼睑之内。
本发明实施例另公开一种隐形眼镜,其包括:眼镜本体具有分别位于相反两侧的一后表面与一前表面,并且后表面适用于配戴在一使用者的眼睛;以及一内埋模块,其埋置于环形配戴部,并且内埋模块包含有:一前支撑环,其由亲眼材质所制成;其中,前支撑环围绕于光学部的外侧,并且前支撑环具有一前曲面及一后承载面;前曲面切齐于眼镜本体的前表面;及一线路结构,其结合于前支撑环的后承载面,以使线路结构完全埋置于环形配戴部之内。
优选地,隐形眼镜包含有连接于线路结构的一电子构件,并且电子构件结合于前支撑环的后承载面;其中,前支撑环覆盖整个线路结构与整个电子构件,并且线路结构及电子构件无间隙地相接于环形配戴部。
优选地,线路结构包含有一载板及形成于载板的一线路,并且线路连接于电子构件; 其中,载板包含有:一C形段,形成有至少一个贯穿孔,并且环形配戴部填满至少一个贯穿孔;及一连接段,相连于C形段的两个末端缘之间;其中,在隐形眼镜的俯视图之中,至少一个贯穿孔的面积占据C形段的外轮廓所包围的面积的1%~85%。
优选地,所述眼镜本体的所述后表面具有适于配戴在所述眼睛的一预设曲率,所述前表面具有对应于所述光学部的一可视面,并且所述前表面与所述前曲面共同形成对应于所述环形配戴部的一自由曲面;其中,所述可视面具有一第一曲率,其不同于所述自由曲面的一第二曲率,以使所述环形配戴部的厚度分布是朝向所述电子组件呈现逐渐递增状。本发明实施例也公开一种隐形眼镜,其包括:眼镜本体具有分别位于相反两侧的一后表面与一前表面;以及一内埋模块,其埋置于环形配戴部,并且内埋模块包含有:一后支撑环,其由亲眼材质所制成;其中,后支撑环围绕于光学部的外侧,并且后支撑环具有一后曲面及一前承载面;后曲面切齐于眼镜本体的后表面,以使其共同适用于配戴在一使用者的眼睛;及一线路结构,其结合于后支撑环的前承载面之间,以使线路结构完全埋置于环形配戴部之内。
优选地,眼镜本体的材质及制成后支撑环的亲眼材质各包含有水胶或硅水胶,并且隐形眼镜的外表面未形成有任何凹槽;其中,隐形眼镜包含有连接于线路结构的一电子构件,并且电子构件结合于后支撑环的前承载面;其中,后支撑环覆盖整个线路结构与整个电子构件,并且线路结构及电子构件无间隙地相接于环形配戴部。
优选地,线路结构包含有一载板及形成于载板的一线路,并且线路连接于电子构件;其中,载板包含有:一C形段,形成有至少一个贯穿孔,并且环形配戴部填满至少一个贯穿孔;及一连接段,相连于C形段的两个末端缘之间;其中,在隐形眼镜的俯视图之中,至少一个贯穿孔的面积占据C形段的外轮廓所包围的面积的1%~85%。
优选地,眼镜本体的后表面及后支撑环的后曲面共同形成具有适于配戴在眼睛的一预设曲率,前表面具有对应于光学部的一可视面及对应于环形配戴部的一自由曲面;其中,可视面具有一第一曲率,其不同于自由曲面的一第二曲率,以使环形配戴部的厚度分布是朝向电子构件呈现逐渐递增状。
本发明实施例还公开一种隐形眼镜,其包括:一眼镜本体,包含有一光学部及围绕于所述光学部的一环形配戴部;其中所述眼镜本体具有分别位于相反两侧的一后表面与一前表面;以及一内埋模块,其埋置于所述环形配戴部,并且所述内埋模块包含有:一后支撑环,其由亲眼材质所制成;其中,所述后支撑环围绕于所述光学部的外侧,并且所述后支 撑环具有一后曲面及一前承载面;所述后曲面切齐于所述眼镜本体的所述后表面,以使其共同适用于配戴在一使用者的眼睛;及一线路结构,其结合于所述后支撑环的所述前承载面之间,以使所述线路结构完全埋置于所述环形配戴部之内。
综上所述,本发明实施例所公开的所述隐形眼镜,其通过规划形成有由所述亲眼材质所制成的所述前支撑环、所述后支撑环及多个所述支撑体的至少其中之一来定位所述线路结构,以利于所述隐形眼镜在生产制造的过程中能实现所述线路结构的高精度定位,据以使得所述隐形眼镜于量产时保有高度一致性。
为能更进一步了解本发明的特征及技术内容,请参阅以下有关本发明的详细说明与附图,但是此等说明与附图仅用来说明本发明,而非对本发明的保护范围作任何的限制。
附图说明
图1为本发明实施例一的隐形眼镜的立体示意图。
图2为图1的俯视示意图。
图3为图1的隐形眼镜配戴于使用者眼睛的平面示意图。
图4为图1沿剖线IV-IV的剖视示意图。
图5为图4的区域V的放大示意图。
图6为图1沿剖线VI-VI的剖视示意图。
图7为本发明实施例一的隐形眼镜另一方式的立体示意图。
图8为图7的俯视示意图。
图9为图7沿剖线IX-IX的剖视示意图。
图10为本发明实施例二的隐形眼镜的立体示意图。
图11为图10的俯视示意图。
图12为图10沿剖线XII-XII的剖视示意图。
图13为本发明实施例三的隐形眼镜的剖视示意图。
图14为图13的区域XIV的放大示意图。
图15为本发明实施例三的隐形眼镜的另一方向剖视示意图。
图16为本发明实施例四的隐形眼镜的剖视示意图。
图17为图16的区域XVII的放大示意图。
图18为本发明实施例四的隐形眼镜的另一方向剖视示意图。
具体实施方式
以下是通过特定的具体实施例来说明本发明所公开有关“隐形眼镜”的实施方式,本领域技术人员可由本说明书所公开的内容了解本发明的优点与效果。本发明可通过其他不同的具体实施例加以施行或应用,本说明书中的各项细节也可基于不同观点与应用,在不悖离本发明的构思下进行各种修改与变更。另外,本发明的附图仅为简单示意说明,并非依实际尺寸的描绘,事先声明。以下的实施方式将进一步详细说明本发明的相关技术内容,但所公开的内容并非用以限制本发明的保护范围。
应当可以理解的是,虽然本文中可能会使用到“第一”、“第二”、“第三”等术语来描述各种组件或者信号,但这些组件或者信号不应受这些术语的限制。这些术语主要是用以区分一组件与另一组件,或者一信号与另一信号。另外,本文中所使用的术语“或”,应视实际情况可能包括相关联的列出项目中的任一个或者多个的组合。
[实施例一]
请参阅图1至图9所示,其为本发明的实施例一。如图1至图6所示,本实施例公开一种隐形眼镜100(或称为智能隐形眼镜)。其中,所述隐形眼镜100可以依据设计需求而配戴于使用者的眼睛200上(如:图3)或是埋置于所述眼睛200内(图中未示出)。
再者,所述隐形眼镜100于本实施例中可以具有矫正屈光不正(refractive error)的功能,并且所述屈光不正包含远视(hyperopia)、近视(myopia)、散光(astigmatism)、老花眼(presbyopia)、或散光老花眼(astigmatism-presbyopia);或者,所述隐形眼镜100可以是没有矫正功能的化妆(makeup)镜片。
所述隐形眼镜100于本实施例中包含有一眼镜本体1及埋置于所述眼镜本体1内的一内埋模块10。其中,所述内埋模块10包含有一前支撑环4、面向所述前支撑环4的一后支撑环5、夹持于所述前支撑环4与所述后支撑环5之间的一电子构件2及夹持于所述前支撑环4与所述后支撑环5之间且电性耦接于所述电子构件2的一线路结构3,但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述内埋模块10也可以依据设计需求而仅包含所述前支撑环4、所述后支撑环5及所述线路结构3、而省略所述电子构件2。此外,所述前支撑环4与所述后支撑环5也可以各视为一种支撑体。以下将依序说明本实施例的所述隐形眼镜100的各个构件,并适时介绍多个构件之间的连接关系。
所述眼镜本体1于本实施例中是经由水胶(hydrogel)或硅水胶(silicone hydrogel) 固化而形成,并且上述水胶例如是p-HEMA,但不以此为限。其中,所述眼镜本体1包含有一光学部11及围绕于所述光学部11的一环形配戴部12,所述光学部11可以依据设计需求而构成具备或不具备矫正所述屈光不正的功能。需说明的是,所述光学部11于本实施例中虽不埋置有任何组件,但其可根据设计需求(例如:所述隐形眼镜100应用在数字变焦装置),而在所述光学部11内埋置组件,不受本实施例上述记载所限制。
再者,所述光学部11定义有一中心轴线L,并且所述光学部11的中心与所述环形配戴部12的中心皆坐落在所述中心轴线L之上。其中,所述环形配戴部12是相连于所述光学部11的外边缘且大致呈圆环状,并且所述环形配戴部12的内部埋置有所述内埋模块10。此外,有关将所述内埋模块10埋置于所述环形配戴部12的生产方式(或是所述隐形眼镜100的制造方法)可以依据设计需求而加以调整变化,本发明在此不加以限制。
进一步地说,所述内埋模块10埋置于所述环形配戴部12,并且所述前支撑环4与所述后支撑环5各围绕于所述光学部的外侧且其中心皆坐落在所述中心轴线L之上。其中,所述前支撑环4具有一前曲面41及一后承载面42,并且所述后支撑环5具有一后曲面51及面向所述后承载面41的一前承载面52。
更详细地说,所述电子构件2与所述线路结构3皆夹持定位于所述前支撑环4的所述后承载面42与所述后支撑环5的所述前承载面52之间,以使所述电子构件2与所述线路结构3完全埋置于所述环形配戴部12之内。于本实施例中,所述前支撑环4与所述后支撑环5的至少其中之一(沿所述中心轴线L)覆盖整个所述电子构件2与整个所述线路结构3,但不以此为限。再者,所述电子构件2的侧边缘与所述线路结构3的侧边缘皆是无间隙地相接于所述环形配戴部12(如:以下所述的下眼睑区122)。
此外,所述前支撑环4与所述后支撑环5于本实施例中各是由亲眼(eye-friendly)材质所制成,并且所述亲眼材质可以包含有水胶(如:p-HEMA)或硅水胶。其中,所述前支撑环4与所述后支撑环5所采用的材质,其特性(如:透氧率)较佳是类似于所述眼镜本体1的材质特性,但所述前支撑环4与所述后支撑环5也可以依据设计需求而采用不同于所述眼镜本体1的材质所制成,本发明在此不加以限制。
依上所述,本发明实施例所公开的所述隐形眼镜100,其通过规划形成有由所述亲眼材质所制成的所述前支撑环4与所述后支撑环5来夹持定位所述线路结构3(与所述电子构件2),以利于所述隐形眼镜100在生产制造的过程中能实现所述线路结构3(与所述电子构件2)的高精度定位,据以使得所述隐形眼镜100于量产时保有高度一致性。
更详细地说,当所述线路结构3(及所述电子构件2)设置于一成型模具(图中未示出)之内时,所述成型模具的多个定位结构抵靠于所述前支撑环4与所述后支撑环5,以精准地定位所述线路结构3(及所述电子构件2)至一预定位置,进而利于在所述成型模具内灌注且固化形成包覆所述内埋模块10的所述眼镜本体1。其中,所述隐形眼镜100在自所述成型模具取出之后,先前抵靠于多个所述定位结构的所述前支撑环4与所述后支撑环5则分别形成有所述前曲面41与所述后曲面51。
更详细地说,所述环形配戴部12具有呈C字形的一布局区121及位于所述布局区121的两个末端之间的一下眼睑区122,并且所述电子构件2埋置于所述下眼睑区122之内。其中,当所述隐形眼镜100配戴于所述眼睛200时,所述下眼睑区122与所述电子构件2的位置是对应于所述眼睛200较为不敏感的下眼睑201之内,据以有效地降低所述使用者的异物感。
换个角度来说,如图2至图6所示,所述眼镜本体1的表面包含有一后表面1b及位于所述后表面1b相反侧的一前表面1a。其中,所述后支撑环5的所述后曲面51切齐于所述眼镜本体1的所述后表面1b,以共同形成一预设曲率且适于配戴在所述使用者的所述眼睛200;也就是说,所述预设曲率的数值仅相关于所述眼睛200。此外,所述后支撑环5的所述后曲面51与所述眼镜本体1的所述后表面1b较佳是未形成有任何凹槽(或孔洞),但本发明不受限于此。
再者,所述前表面1a具有对应于所述光学部11的一可视面11a,并且所述前曲面41切齐于所述前表面1a,以共同形成对应于所述环形配戴部12的一自由曲面12a;其中,所述前支撑环4的所述前曲面41与所述眼镜本体1的所述前表面1a较佳是未形成有任何凹槽(或孔洞),但本发明不受限于此。也就是说,所述隐形眼镜100的外表面未形成任何凹槽(或孔洞)。再者,所述可视面11a具有一第一曲率,其相关于矫正所述屈光不正所需要的光学设计;或者,所述可视面11a的所述第一曲率也可以和所述后表面1b共同构成没有度数的构造。
进一步地说,所述可视面11a的所述第一曲率不同于所述自由曲面12a的一第二曲率,以使所述环形配戴部12的厚度分布是朝向所述电子构件2(如:所述下眼睑区122)呈现逐渐递增状,但本发明不以此为限。举例来说,在本发明未示出的其他实施例中,所述第一曲率可以大致等同于所述第二曲率,并且所述环形配戴部12的所述厚度大致相等。
换个角度来说,所述隐形眼镜100可根据设计需求而在所述环形配戴部12的任意部 位通过所述前支撑环4与所述后支撑环5而埋置有至少一个所述电子构件2;举例来说,在本发明未示出的其他实施例中,所述环形配戴部12于其水平两侧通过所述前支撑环4与所述后支撑环5而各埋置有至少一个所述电子构件2,以使所述环形配戴部12的厚度在眼睛的水平方位最厚,且其朝向眼睛的铅锤方位逐渐地变薄;据此,此设置方式可容纳至少两组所述电子构件2,并可降低所述隐形眼镜100的配戴异物感。
依上所述,本发明实施例所公开的所述隐形眼镜100,其通过所述眼镜本体1的所述前表面1a及所述前支撑环4的所述前曲面41而共同形成有所述自由曲面12a,以使所述布局区121的厚度无须完全迁就所述下眼睑区122的厚度,进而实现所述布局区121的薄型化,据以有效地提升所述布局区121的透氧率、并降低所述隐形眼镜100的配戴异物感。
为了更有效地提升所述布局区121的所述透氧率、并降低所述隐形眼镜100的配戴异物感,所述隐形眼镜100较佳是通过所述自由曲面12a的所述第二曲率调配,以具备有下段内容中的多个特征的至少其中之一,但本发明不以此为限。
所述环形配戴部12(及/或所述内埋模块10)的最大厚度Tmax是落在所述电子构件2所在的区域(如:所述下眼睑区122),并且所述环形配戴部12(及/或所述内埋模块10)的最小厚度Tmin则是落在远离所述下眼睑区122的所述布局区121的一部位(如:图4中的所述布局区121顶部)。也就是说,当所述隐形眼镜100配戴于所述眼睛200时,所述环形配戴部12(及/或所述内埋模块10)具有所述最大厚度Tmax的部位是对应位于所述眼睛200的所述下眼睑201之内,而所述环形配戴部12(及/或所述内埋模块10)具有所述最小厚度Tmin的该部位是对应位于所述眼睛200的所述上眼睑202之内。所述最大厚度Tmax与最小厚度Tmin于本实施例中虽是对应于使用者的下眼睑201与上眼睑202,但本发明并不以此限制所述隐形镜片100厚度与使用者眼睑201、202之间的相对位置关系。
所述线路结构3可以于所述内埋模块10内单独地存在(图中未示出)或是搭配所述电子构件2,进而由通电驱动或是物理性驱动,以实现能量接收、无线信号传输、数字计算、感测监控、施加压力、电流释放、图像投射、光学变焦及储存电力等多个功能的至少其中之一,但本发明不以此为限。
需说明的是,如图1至图6所示,所述线路结构3于本实施例中包含一载板31及形成于所述载板31的一线路32(如:金属线路),并且所述线路32连接于所述电子构件2而彼此电性耦接,但本发明不受限于此。举例来说,如图7至图9所示,所述线路结构3 可以是包含有连接于所述电子构件2的一线路32,并且所述线路32未形成任何载板之上;也就是说,所述内埋模块10通过所述前支撑环4与所述后支撑环5来提供所述线路32的预定位,以避免所述线路32在成形所述眼镜本体1时产生移动或变形。
于本实施例中,如图1至图6所示,所述载板31可以通过压合模具的常温加压或高温加压,而定型为一预设曲形构造,以使所述载板31具有不同于所述第二曲率的一定型曲率,并且所述定型曲率较佳是相近于所述后表面1b与所述后曲面51所形成的所述预设曲率(如:所述定型曲率为所述预设曲率的100%~110%),但本发明不以上述为限。
其中,所述载板31于本实施例中是以厚度介于10微米~300微米的一可挠性印刷电路板(flexible printed circuit board,FPCB)来说明,并且所述载板31的厚度较佳是介于40微米~80微米,而所述载板31具有的高分子材料可以包含有聚酰亚胺(Polyimide,PI)、液晶高分子(Liquid-crystal polymer,LCP)、聚对苯二甲酸乙二酯(Polyethylene terephthalate,PET)、或聚萘二甲酸乙二醇酯(Poly(ethylene 2,6-naphthalene dicarboxylate),PEN),但不以上述为限。
更详细地说,所述载板31具有埋置于所述布局区121的一C形段311及埋置于所述下眼睑区122的一连接段312,并且所述连接段312相连于所述C形段311的两个末端缘之间。其中,所述电子构件2可以是安装于所述连接段312,所述线路32则是形成于所述C形段311、并延伸至所述连接段312以连接于所述电子构件2。
再者,基于所述载板31容易在加压成形的过程中产生皱折或应力集中的情况,所述C形段311形成有至少一个贯穿孔3111,并且所述眼镜本体1(如:所述环形配戴部12)填满至少一个所述贯穿孔3111。需注意的是,在(沿着所述中心轴线L的)所述隐形眼镜100的俯视图之中,至少一个所述贯穿孔3111的面积需要是占据所述C形段311的外轮廓所包围的面积的1%~85%(较佳为10%~40%),据以有效地降低所述载板31产生皱折或应力集中的情况、并能与所述自由曲面12a相互搭配而进一步提升所述隐形眼镜100的透氧率。
此外,所述载板31也可以自其外边缘朝向所述中心轴线L形成有多个径向切痕313,以利于所述载板31形成有所述定型曲率,并据以进一步降低所述载板31产生皱折或应力集中的情况。其中,所述环形配戴部12填满多个所述径向切痕313,并且多个所述径向切痕313于本实施例中是分别形成于所述C形段311与所述连接段312的交界处,但本发明不受限于此。
再者,在所述隐形眼镜100的所述俯视图之中,至少一个所述贯穿孔3111的所述面积占据所述环形配戴部12的面积的1%~75%,而形成于所述C形段311的至少一个所述贯穿孔3111数量于本实施例中是以多个来说明,但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述载板31的所述C形段311也可以不形成有任何贯穿孔3111。
于本实施例中,所述线路32包围形成有至少一个封闭回路,并且所述C形段311的多个所述贯穿孔3111位于所述线路32的至少一个所述封闭回路之内。需说明的是,至少一个所述封闭回路的数量于本实施例中是以多个来说明,并且多个所述贯穿孔3111分别位于所述线路32的多个所述封闭回路之内,但本发明不以此为限。
其中,每个所述贯穿孔3111呈曲线状,并且任一个所述贯穿孔3111的宽度自其两端朝中央呈渐增状(如:所述贯穿孔3111于本实施例中大致呈弦月状)。更详细地说,任一个所述贯穿孔3111具有一内孔缘3112与一外孔缘3113,并且所述内孔缘3112的两端分别相接于所述外孔缘3113的两端,以分别构成至少一个所述贯穿孔3111的所述两端。
其中,所述内孔缘3112与所述外孔缘3113皆呈圆弧状,并且所述内孔缘3112的半径小于所述外孔缘3113的半径,而所述内孔缘3112的中央与所述外孔缘3113的中央分别位在垂直所述中心轴线L的不同两个平面之上;也就是说,每个所述贯穿孔3111于本实施例中是沿着所述载板31的所述定型曲率配置、而非为平面状。
为便于更为清楚地界定多个所述贯穿孔3111的分布情况,在所述隐形眼镜100的所述俯视图之中,所述中心轴线L定义为一原点,并且依据所述原点定义有交叉于所述原点且相互垂直的一X轴与一Y轴,据以沿逆时针方向依序划分出一第一象限Q1、一第二象限Q2、一第三象限Q3及一第四象限Q4。
在所述隐形眼镜100的所述俯视图之中,所述下眼睑区122位于所述第三象限Q3与所述第四象限Q4,并且所述Y轴大致是所述下眼睑区122的中分线,而所述下眼睑区122对应于所述原点的一圆心角σ122,其较佳是介于30度~180度之间,并且所述圆心角σ122的数值可依设计需求而定,本发明不受限于此。
再者,于所述隐形眼镜100的所述俯视图之中,多个所述贯穿孔3111分布于所述第一象限Q1、所述第二象限Q2、所述第三象限Q3及所述第四象限Q4,并且分布于所述第一象限Q1、所述第二象限Q2、所述第三象限Q3及所述第四象限Q4的多个所述贯穿孔3111的多个部位,其任两个所述部位之间的面积差异不大于50%。
更详细地说,于所述隐形眼镜100的所述俯视图之中,任一个所述贯穿孔3111是横跨至少两个象限(如:任一个所述贯穿孔3111位于所述第一象限Q1与所述第四象限Q4之内、或是位于所述第二象限Q2与所述第三象限Q3之内),并且任一个所述贯穿孔3111可以是镜像对称于所述X轴,但本发明不受限于此。
多个所述贯穿孔3111包含有至少一个第一贯穿孔3111a与至少一个第二贯穿孔3111b,并且至少一个所述第一贯穿孔3111a的数量与至少一个所述第二贯穿孔3111b的数量于本实施例中各以多个来说明,但本发明不受限于此。其中,多个所述第一贯穿孔3111a分别位于多个所述第二贯穿孔3111b的内侧;也就是说,每个所述第二贯穿孔3111b的半径不同于(如:大于)任一个所述第一贯穿孔3111a的半径。
于本实施例中,每个所述第一贯穿孔3111a呈圆弧状且圆心坐落于所述中心轴线L之上,并且多个所述第一贯穿孔3111a彼此间隔配置,每个所述第二贯穿孔3111b呈圆弧状且圆心坐落于所述中心轴线L之上,并且多个所述第二贯穿孔3111b彼此间隔配置。
再者,任一个所述第一贯穿孔3111a位于相对应所述第二贯穿孔3111b的圆心角范围之内,并且任两个相邻的所述第一贯穿孔3111a之间的间隔部位,其与任两个相邻的所述第二贯穿孔3111b之间的间隔部位是位于所述隐形眼镜100的同一径向之上。
需额外说明的是,所述隐形眼镜100于本实施例中可以进一步搭配于各式装置进行使用。举例来说,在本发明未示出的其他实施例中,所述隐形眼镜100可以无线连接于配戴在使用者身上的任何穿戴装置(如:安装于眼镜的读取器、或颈戴式读取器),并且上述穿戴装置(或读取器)可采用常见无线传输技术RFID,例如13.56MHz或860-960MHz带宽,或其他无线感应电能、信号传输等技术,据以为所述隐形眼镜100进行供电、感测、或回馈信号,进而达到其智能监控(例如全时眼压数值收集与警示)、智能治疗(例如干眼症药物缓释控制)、AR服务(例如图像投影)、或其他智能应用。
此外,所述内埋模块10于本实施例虽是以所述前支撑环4搭配所述后支撑环5来夹持所述线路结构3与所述电子构件2来作一说明,但本发明不以此为限。举例来说,在本发明未示出的其他实施例中,所述前支撑环4与所述后支撑环5各可以是呈环状排列的多个支撑体;也就是说,所述前支撑环4(或所述后支撑环5)可以移除部分区块而构成彼此间隔配置的多个所述支撑体。
更详细地说,多个所述支撑体是分布于所述光学部11的外侧,并且每个所述支撑体具有一曲面与一承载面,每个所述支撑体的所述曲面切齐于所述眼镜本体1的所述前表面 1a与所述后表面1b的其中之一,而所述线路结构3(及所述电子构件2)则是结合于多个所述支撑体的所述承载面。
[实施例二]
请参阅图10至图12所示,其为本发明的实施例二。由于本实施例类似于上述实施例一,所以两个实施例的相同处不再加以赘述,而本实施例相较于上述实施例一的差异大致说明如下:
于本实施例中,每个所述贯穿孔3111呈长条状且大致呈等宽度外形,并且所述载板31自其外边缘朝向所述中心轴线L形成有多个径向切痕313。
更详细地说,在所述隐形眼镜100的所述俯视图之中,分布于所述第一象限Q1与所述第二象限Q2的多个所述贯穿孔3111的面积,其可以是大于分布在所述第三象限Q3及所述第四象限Q4的多个所述贯穿孔3111的面积,并且多个所述贯穿孔3111的面积需要是占据所述C形段311的外轮廓所包围的面积的1%~85%(较佳是10%~40%)。
再者,多个所述贯穿孔3111包含有多个第一贯穿孔3111a与多个第二贯穿孔3111b。其中,多个所述第一贯穿孔3111a分别位于多个所述第二贯穿孔3111b的内侧;也就是说,每个所述第二贯穿孔3111b的半径不同于(如:大于)任一个所述第一贯穿孔3111a的半径。
于本实施例中,每个所述第一贯穿孔3111a呈圆弧状且圆心坐落于所述中心轴线L之上,并且多个所述第一贯穿孔3111a彼此间隔配置,每个所述第二贯穿孔3111b呈圆弧状且圆心坐落于所述中心轴线L之上,并且多个所述第二贯穿孔3111b彼此间隔配置。
[实施例三]
请参阅图13至图15所示,其为本发明的实施例三。由于本实施例类似于上述实施例一和二,所以上述多个实施例的相同处不再加以赘述,而本实施例相较于上述实施例一和二的差异大致说明如下:
于本实施例中,所述内埋模块10未包含有实施例一所载的所述后支撑环5,并且所述眼镜本体1的所述后表面1b具有所述预设曲率,其适于配戴在所述使用者的所述眼睛200。
进一步地说,所述电子构件2与所述线路结构3是结合于所述前支撑环4的所述后承载面42,以使所述电子构件2与所述线路结构3完全埋置于所述环形配戴部12之内(如:所述内埋模块10未接触且间隔于所述后表面1b)。也就是说,所述前支撑环4(沿所述 中心轴线L)覆盖整个所述线路结构3与整个所述电子构件2,并且所述电子构件2与所述线路结构3无间隙地相接于所述环形配戴部12。
此外,所述线路结构2于本实施例中是以包含有所述载板31与所述线路32来说明,所述载板31的构造是以如同实施例一的图1和图2所示为例,但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述载板31的构造也可以依据设计需求而如同实施例二的图10和图11所呈现的构造;或者,所述线路结构2仅包含有所述线路32。
此外,所述内埋模块10于本实施例虽是以所述前支撑环4来结合所述线路结构3与所述电子构件2来作一说明,但本发明不以此为限。举例来说,在本发明未示出的其他实施例中,所述前支撑环4可以是呈环状排列的多个支撑体;也就是说,所述前支撑环4可以移除部分区块而构成彼此间隔配置的多个所述支撑体。
更详细地说,多个所述支撑体是分布于所述光学部11的外侧,并且每个所述支撑体具有一曲面与一承载面,每个所述支撑体的所述曲面切齐于所述眼镜本体1的所述前表面1a,而所述线路结构3(及所述电子构件2)则是结合于多个所述支撑体的所述承载面。
[实施例四]
请参阅图16至图18所示,其为本发明的实施例四。由于本实施例类似于上述实施例一和二,所以上述多个实施例的相同处不再加以赘述,而本实施例相较于上述实施例一和二的差异大致说明如下:
于本实施例中,所述内埋模块10未包含有实施例一所载的所述前支撑环4,并且所述前表面1a具有对应于所述光学部11的一可视面11a及对应于所述环形配戴部12的一自由曲面12a。
进一步地说,所述电子构件2与所述线路结构3是结合于所述后支撑环5的所述前承载面52,以使所述电子构件2与所述线路结构3完全埋置于所述环形配戴部12之内(如:所述内埋模块10未接触且间隔于所述前表面1a)。也就是说,所述后支撑环5(沿所述中心轴线L)覆盖整个所述线路结构3与整个所述电子构件2,并且所述电子构件2与所述线路结构3无间隙地相接于所述环形配戴部12。
此外,所述线路结构2于本实施例中是以包含有所述载板31与所述线路32来说明,所述载板31的构造是以如同实施例一的图1和图2所示为例,但本发明不受限于此。举例来说,在本发明未示出的其他实施例中,所述载板31的构造也可以依据设计需求而如同实施例二的图10和图11所呈现的构造;或者,所述线路结构2仅包含有所述线路32。
此外,所述内埋模块10于本实施例虽是以所述后支撑环5来夹持所述线路结构3与所述电子构件2来作一说明,但本发明不以此为限。举例来说,在本发明未示出的其他实施例中,所述后支撑环5可以是呈环状排列的多个支撑体;也就是说,所述后支撑环5可以移除部分区块而构成彼此间隔配置的多个所述支撑体。
更详细地说,多个所述支撑体是分布于所述光学部11的外侧,并且每个所述支撑体具有一曲面与一承载面,每个所述支撑体的所述曲面切齐于所述眼镜本体1的所述后表面1b,而所述线路结构3(及所述电子构件2)则是结合于多个所述支撑体的所述承载面。
[本发明实施例的技术效果]
综上所述,本发明实施例所公开的所述隐形眼镜,其通过规划形成有由所述亲眼材质所制成的所述前支撑环、所述后支撑环、及多个所述支撑体的至少其中之一来定位所述线路结构(与所述电子构件),以利于所述隐形眼镜在生产制造的过程中能实现所述线路结构(与所述电子构件)的高精度定位,据以使得所述隐形眼镜于量产时保有高度一致性。
再者,本发明实施例所公开的隐形眼镜,其通过所述眼镜本体的所述前表面(及所述前支撑环的所述前曲面共同)形成有所述自由曲面,以使所述布局区的厚度无须完全迁就所述下眼睑区的厚度(如:所述环形配戴部的厚度分布是朝向所述下眼睑区呈现逐渐递增状),进而实现所述布局区的薄型化,据以有效地提升所述布局区的透氧率、并降低所述隐形眼镜的配戴异物感。
此外,本发明实施例所公开的隐形眼镜,其通过所述眼镜本体在所述C形段形成有占据特定面积的至少一个所述贯穿孔(如:至少一个所述贯穿孔的面积需要是占据所述C形段的外轮廓所包围的面积的1%~85%),据以有效地降低所述载板产生皱折或应力集中的情况。此外,本发明实施例所公开的隐形眼镜,其还能通过至少一个所述贯穿孔的配置搭配所述自由曲面,据以进一步提升所述隐形眼镜的透氧率。
以上所公开的内容仅为本发明的优选可行实施例,并非因此局限本发明的专利范围,所以凡是运用本发明说明书及附图内容所做的等效技术变化,均包含于本发明的专利范围内。

Claims (20)

  1. 一种隐形眼镜,其特征在于,所述隐形眼镜包括:
    一眼镜本体,包含有一光学部及围绕于所述光学部的一环形配戴部;其中,所述眼镜本体具有分别位于相反两侧的一后表面与一前表面;以及
    一内埋模块,其埋置于所述环形配戴部,并且所述内埋模块包含有:
    一前支撑环,其由亲眼材质所制成;其中,所述前支撑环围绕于所述光学部的外侧,并且所述前支撑环具有一前曲面及一后承载面;所述前曲面切齐于所述眼镜本体的所述前表面;
    一后支撑环,其由亲眼材质所制成;其中,所述后支撑环围绕于所述光学部的外侧,并且所述后支撑环具有一后曲面及一前承载面;所述后曲面切齐于所述眼镜本体的所述后表面,以使其共同适用于配戴在一使用者的眼睛;及
    一线路结构,其夹持定位于所述前支撑环的所述后承载面与所述后支撑环的所述前承载面之间,以使所述线路结构完全埋置于所述环形配戴部之内。
  2. 依据权利要求1所述的隐形眼镜,其特征在于,所述眼镜本体的材质及制成所述前支撑环与所述后支撑环的所述亲眼材质各包含有水胶或硅水胶,并且所述隐形眼镜的外表面未形成有任何凹槽。
  3. 依据权利要求1所述的隐形眼镜,其特征在于,所述前支撑环与所述后支撑环的至少其中之一覆盖整个所述线路结构;所述线路结构的侧边缘无间隙地相接于所述环形配戴部。
  4. 依据权利要求1所述的隐形眼镜,其特征在于,所述隐形眼镜包含有连接于所述线路结构的一电子构件,并且所述电子构件夹持于所述前支撑环的所述后承载面与所述后支撑环的所述前承载面之间;其中,所述电子构件的侧边缘无间隙地相接于所述环形配戴部。
  5. 依据权利要求4所述的隐形眼镜,其特征在于,所述线路结构包含有连接于所述电子构件的一线路,并且所述线路未形成任何载板之上。
  6. 依据权利要求4所述的隐形眼镜,其特征在于,所述线路结构包含有一载板及形成于所述载板的一线路,并且所述线路连接于所述电子构件。
  7. 依据权利要求6所述的隐形眼镜,其特征在于,所述载板包含有:
    一C形段,形成有至少一个贯穿孔,并且所述环形配戴部填满至少一个所述贯穿孔;及
    一连接段,相连于所述C形段的两个末端缘之间;
    其中,在所述隐形眼镜的俯视图之中,至少一个所述贯穿孔的面积占据所述C形段的外轮廓所包围的面积的1%~85%。
  8. 依据权利要求7所述的隐形眼镜,其特征在于,所述光学部定义有一中心轴线,在所述隐形眼镜的所述俯视图之中,所述中心轴线定义为一原点并且沿逆时针方向依序划分出一第一象限、一第二象限、一第三象限及一第四象限,并且至少一个所述贯穿孔的多个部位分别分布于所述第一象限、所述第二象限、所述第三象限及所述第四象限,而任两个所述部位之间的面积差异不大于50%。
  9. 依据权利要求6所述的隐形眼镜,其特征在于,所述光学部定义有一中心轴线,并且所述载板自其外边缘朝向所述中心轴线形成有多个径向切痕,以使所述载板形成有一定型曲率;其中,所述环形配戴部填满多个所述径向切痕。
  10. 依据权利要求4所述的隐形眼镜,其特征在于,所述眼镜本体的所述后表面及所述后支撑环的所述后曲面共同形成适于配戴在所述眼睛的一预设曲率,所述前表面具有对应于所述光学部的一可视面,并且所述前表面与所述前曲面共同形成对应于所述环形配戴部的一自由曲面;其中,所述可视面具有一第一曲率,其不同于所述自由曲面的一第二曲率,以使所述环形配戴部的厚度分布是朝向所述电子构件呈现逐渐递增状。
  11. 依据权利要求10所述的隐形眼镜,其特征在于,所述环形配戴部具有呈C字形的一布局区及位于所述布局区的两个末端之间的一下眼睑区,并且所述电子构件的所述侧边缘接合于所述下眼睑区;其中,当所述隐形眼镜配戴于所述眼睛时,所述环形配戴部具有最大厚度的部位是对应位于所述眼睛的下眼睑之内,而所述环形配戴部具有最小厚度的部位是对应位于所述眼睛的上眼睑之内。
  12. 一种隐形眼镜,其特征在于,所述隐形眼镜包括:
    一眼镜本体,包含有一光学部及围绕于所述光学部的一环形配戴部;其中,所述眼镜本体具有分别位于相反两侧的一后表面与一前表面,并且所述后表面适用于配戴在一使用者的眼睛;以及
    一内埋模块,其埋置于所述环形配戴部,并且所述内埋模块包含有:
    一前支撑环,其由亲眼材质所制成;其中,所述前支撑环围绕于所述光学部的外侧,并且所述前支撑环具有一前曲面及一后承载面;所述前曲面切齐于所述眼镜本体的所述前表面;及
    一线路结构,其结合于所述前支撑环的所述后承载面,以使所述线路结构完全埋置于所述环形配戴部之内。
  13. 依据权利要求12所述的隐形眼镜,其特征在于,所述隐形眼镜包含有连接于所述线路结构的一电子构件,并且所述电子构件结合于所述前支撑环的所述后承载面;其中,所述前支撑环覆盖整个所述线路结构与整个所述电子构件,并且所述线路结构及所述电子构件无间隙地相接于所述环形配戴部。
  14. 依据权利要求13所述的隐形眼镜,其特征在于,所述线路结构包含有一载板及形成于所述载板的一线路,并且所述线路连接于所述电子构件;其中,所述载板包含有:
    一C形段,形成有至少一个贯穿孔,并且所述环形配戴部填满至少一个所述贯穿孔;及
    一连接段,相连于所述C形段的两个末端缘之间;
    其中,在所述隐形眼镜的俯视图之中,至少一个所述贯穿孔的面积占据所述C形段的外轮廓所包围的面积的1%~85%。
  15. 依据权利要求13所述的隐形眼镜,其特征在于,所述眼镜本体的所述后表面具有适于配戴在所述眼睛的一预设曲率,所述前表面具有对应于所述光学部的一可视面,并且所述前表面与所述前曲面共同形成对应于所述环形配戴部的一自由曲面;其中,所述可视面具有一第一曲率,其不同于所述自由曲面的一第二曲率,以使所述环形配戴部的厚度分布是朝向所述电子构件呈现逐渐递增状。
  16. 一种隐形眼镜,其特征在于,所述隐形眼镜包括:
    一眼镜本体,包含有一光学部及围绕于所述光学部的一环形配戴部;其中,所述眼镜本体具有分别位于相反两侧的一后表面与一前表面;以及
    一内埋模块,其埋置于所述环形配戴部,并且所述内埋模块包含有:
    一后支撑环,其由亲眼材质所制成;其中,所述后支撑环围绕于所述光学部的外侧,并且所述后支撑环具有一后曲面及一前承载面;所述后曲面切齐于所述眼镜本体的所述后表面,以使其共同适用于配戴在一使用者的眼睛;及
    一线路结构,其结合于所述后支撑环的所述前承载面之间,以使所述线路结构完全埋置于所述环形配戴部之内。
  17. 依据权利要求16所述的隐形眼镜,其特征在于,所述眼镜本体的材质及制成所述后支撑环的所述亲眼材质各包含有水胶或硅水胶,并且所述隐形眼镜的外表面未形成有任 何凹槽;其中,所述隐形眼镜包含有连接于所述线路结构的一电子构件,并且所述电子构件结合于所述后支撑环的所述前承载面;其中,所述后支撑环覆盖整个所述线路结构与整个所述电子构件,并且所述线路结构及所述电子构件无间隙地相接于所述环形配戴部。
  18. 依据权利要求17所述的隐形眼镜,其特征在于,所述线路结构包含有一载板及形成于所述载板的一线路,并且所述线路连接于所述电子构件;其中,所述载板包含有:
    一C形段,形成有至少一个贯穿孔,并且所述环形配戴部填满至少一个所述贯穿孔;及
    一连接段,相连于所述C形段的两个末端缘之间;
    其中,在所述隐形眼镜的俯视图之中,至少一个所述贯穿孔的面积占据所述C形段的外轮廓所包围的面积的1%~85%。
  19. 依据权利要求18所述的隐形眼镜,其特征在于,所述眼镜本体的所述后表面及所述后支撑环的所述后曲面共同形成具有适于配戴在所述眼睛的一预设曲率,所述前表面具有对应于所述光学部的一可视面及对应于所述环形配戴部的一自由曲面;其中,所述可视面具有一第一曲率,其不同于所述自由曲面的一第二曲率,以使所述环形配戴部的厚度分布是朝向所述电子构件呈现逐渐递增状。
  20. 一种隐形眼镜,其特征在于,所述隐形眼镜包括:
    一眼镜本体,包含有一光学部及围绕于所述光学部的一环形配戴部;其中所述眼镜本体具有分别位于相反两侧的一后表面与一前表面;以及
    一内埋模块,其埋置于所述环形配戴部,并且所述内埋模块包含有:
    多个支撑体,其由亲眼材质所制成;其中,多个所述支撑块位于所述光学部的外侧,并且每个所述支撑体具有一曲面及一承载面;每个所述支撑体的所述曲面切齐于所述眼镜本体的所述前表面与所述后表面的其中之一;及
    一线路结构,其结合于多个所述支撑体的所述承载面,以使所述线路结构完全埋置于所述环形配戴部之内。
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