发明名称 Progressive-power spectacle lens design method
摘要 A progressive-power spectacle lens design method, the progressive-power spectacle lens including a distance portion, a near portion, and a progressive portion provided between the distance portion and the near portion, the method comprising: decreasing a distance along a principal meridian from a fitting point to a progression start point and increasing a length of a progressive corridor defined by the progression start point and a progression end point when addition power is large, whereas increasing the distance along the principal meridian from the fitting point to the progression start point and decreasing the length of the progressive corridor when the addition power is small, wherein the distance from the fitting point to the progression end point is fixed irrespective of the addition power.
申请公布号 US8833938(B2) 申请公布日期 2014.09.16
申请号 US201113230655 申请日期 2011.09.12
申请人 Hoya Lens Manufacturing Philippines Inc. 发明人 Wada Osamu;Kaga Tadashi
分类号 G02C7/02;G02C7/06 主分类号 G02C7/02
代理机构 DLA Piper LLP (US) 代理人 DLA Piper LLP (US)
主权项 1. A progressive-power spectacle lens design method, the progressive-power spectacle lens including a distance portion, a near portion, and a progressive portion provided between the distance portion and the near portion, a power of the lens changing along a principal meridian between a progression start point provided at a distance-portion-side end of the progressive portion and a progression end point provided at a near-portion-side end of the progressive portion, a position of the progression start point when an addition power is large and a position of the progression start point when the addition power is small being different, the method comprising: decreasing a distance along the principal meridian from a fitting point to the progression start point and increasing a length of a progressive corridor defined by the progression start point and the progression end point when the addition power is large; and increasing the distance along the principal meridian from the fitting point to the progression start point and decreasing the length of the progressive corridor when the addition power is small, wherein the distance from the fitting point to the progression end point is fixed irrespective of the addition power, and with a position of the fitting point being zero, a side where the distance portion being positive with respect to the fitting point, and a side where the near portion is present being negative with respect to the fitting point, the following relationships are satisfied: S mm=a×Add−b  (1)3≦a≦5  (2)8 mm≦b≦12 mm  (3) where S represents the position of the progression start point with respect to the fitting point along the principal meridian, Add represents the addition power, and “a” and “b” represent parameters.
地址 Cavite PH