The present invention relates to projection lens assembly and projection apparatus using the same, and more particularly to a projection lens assembly and a projection apparatus using the same that are able to avoid the ghost images and light leakage.
In order to improve the image brightness, the conventional projector/projection apparatus is designed to have increased contrast ratio. However, the increased contrast ratio may cause the projection lens assembly to generate ghost image or light leakage on the screen. Please refer to
Therefore, one object of the present invention is to provide a projection lens assembly and a related projection apparatus able to overcome the aforementioned issues.
The present invention provides a projection lens assembly, which includes a first lens group and a second lens group. The first lens group has a negative dioptre and is disposed adjacent to an object side. The first lens group includes a first lens having the negative dioptre. The first lens has a first surface and a second surface opposite to each other. The first surface faces the object side. A curvature radius of the first surface is greater than or equal to 500 mm. The second lens group having a positive dioptre and is disposed adjacent to an image side. The second lens group has a third surface facing the object side. An effective focal length of the projection lens assembly is f, a distance between the second surface and the third surface is d, and a lens amount of the projection lens assembly is n, wherein d/f≧1.6 and 7≧n≧4.
The present invention further provides a projection apparatus for projecting an image onto a screen. The projection apparatus includes a light source, an imaging unit and a projection lens assembly. The light source is for providing a light. The imaging unit is for receiving the light. The projection lens assembly is disposed between the imaging unit and the screen and for projecting the light onto the screen. The projection lens assembly includes a first lens group and a second lens group. The first lens group has a negative dioptre and is disposed adjacent to the screen. The first lens group includes a first lens having the negative dioptre. The first lens has a first surface and a second surface. The first surface faces the screen. A curvature radius of the first surface is greater than or equal to 500 mm. The second lens group has a positive dioptre and is disposed adjacent to the image unit. The second lens group has a third surface facing the screen. An effective focal length of the projection lens assembly is f, a distance between the second surface and the third surface is d, and a lens amount of the projection lens assembly is n, wherein d/f≧1.6 and 7≧n≧4.
In summary, a plano-concave lens which is closest to the screen on the object side is disposed in the first lens group and adjacent to the object side in the present invention. Specifically, the first surface of the plano-concave lens faces the object side and is a flat surface or a surface with a curvature radius greater than or equal to 500 mm. Thus, the plano-concave lens can diverge the light emitting from the second lens group so as to prevent the light from being reflected back to the second lens group and the imaging unit. As a result, the ghost image or unexpected luminance is avoided. In addition, compared with the prior art, the projection lens assembly and the projection apparatus of the present invention can have ghost image/light leakage elimination effect by using less amount of lens and having relatively large distance between two lens groups.
For making the above and other purposes, features and benefits become more readily apparent to those ordinarily skilled in the art, the preferred embodiments and the detailed descriptions with accompanying drawings will be put forward in the following descriptions.
The present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only. It is not intended to be exhaustive or to be limited to the precise form disclosed.
Please refer to
As shown in
In a conventional projection lens assembly, it is understood that the probability of the appearance of ghost image or unexpected luminance increases with the fewer lens amount (the amount/number of lens in the projection lens assembly) or increases with the distance between two lens groups. However, in the present invention, because the first surface S1 of the first lens 28 is or closely approximates to a flat surface, the amount of light reflected back to the second lens group 26 from the first lens group 24 is reduced; consequentially, the projection lens assembly 18 in the present invention can have improved ghost image/light leakage elimination effect by using less amount/number of lens. In one configuration of the projection lens assembly 18, the lens amount/quantity of the projection lens assembly 18 is n and 7≧n≧4. In another configuration of the second lens group 26 having a third surface S3 facing the screen 12 as shown in
A plurality of preferred parameters of the lenses in the projection apparatus 10 of
In one preferred embodiment, the projection lens assembly 18 is a non-telemetric system. Specifically, the focal length of the first lens group 24 in the non-telemetric-system projection lens assembly 18 is f1 and
In one preferred embodiment, the effective focal length f of the projection lens assembly 18 is 21.9 mm and the focal length f1 of the first lens group 24 is −51.29 mm, as shown in Table 2. In the present invention, it is to be noted that
is required to be modulated within the aforementioned range. For example, if
is lower than a lower limit, then |f1| is relatively small and the first lens group 24 has a relatively high dioptre; as a result, the aberration issue may happen. In addition, if
is relatively small, then the projection lens assembly 18 includes more lenses and the light is hardly reflected back to the imaging unit 16 along the incident light path, which is not the issue the first lens 28 (a plano-concave lens) in the present invention applies for. Alternatively, if
is higher than an upper limit, then |f1| is relatively large and the first lens group 24 has a relatively low dioptre; as a result, the projection lens assembly 18 may have a relatively low magnification, which may not meet the needs or demand from user.
In a conventional projection lens assembly, because the lens disposed adjacent to the object side is a meniscus lens, a ghost image having the outline of the relating imaging unit (when the relating projection apparatus is a digital optical projection apparatus) or an unexpected luminance (when the relating projection apparatus is a liquid crystal display (LCD) panel) may occur on a screen. In the present invention, because the first lens 28, provided in the first lens group 24 and disposed closest to the screen on the object side, is a plano-concave lens, the ghost image or the unexpected luminance is effectively eliminated. In other words, not any ghost image having the outline of the imaging unit 16 will be formed and not any unexpected luminance will occur in the image projected on the screen 12 by the projection lens assembly 18.
In one embodiment, the second lens group 26 may selectively include a plurality of lenses, such as the third lens 32, fourth lens 34, the fifth lens 36 and the sixth lens 38, as shown in
In summary, a plano-concave lens is disposed in the first lens group and adjacent to the object side in the present invention. Specifically, the first surface of the plano-concave lens faces the object side and is a flat surface or a surface with a curvature radius greater than or equal to 500 mm. Thus, the plano-concave lens can diverge the light emitting from the second lens group so as to prevent the light from being reflected back to the second lens group and the imaging unit. As a result, the ghost image or unexpected luminance is avoided. In addition, compared with the prior art, the projection lens assembly and the projection apparatus of the present invention can have ghost image/light leakage elimination effect by using less amount of lens and having relatively large distance between two lens groups.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
---|---|---|---|
103105930 | Feb 2014 | TW | national |