1. Field of the Invention
The instant disclosure relates to a projection system and a method of using the same, and more particularly, to a projection system and a method for alternately outputting different polarized image light sources.
2. Description of Related Art
Due to the advancement in optical and projection display technology, digital projection devices with high pixel resolution are widely employed for briefings, meetings, conferences or trainings. They are also becoming popular for family entertainment. Potential consumers look for lightweight digital projection apparatuses with high image quality and brightness at reasonable prices.
A projector is an apparatus that projects images onto an external screen by optical projection. A projector can be classified into four categories: CRT projector, liquid crystal display (LCD) projector, digital light processing (DLP) projector, and liquid crystal on silicon (LCOS) projector, basing on the type of light valve onboard. Moreover, the LCD projector is a transmission type projector because the onboard LCD panel is pervious to light. The LCOS and the DLP projectors are reflection type projectors because their image formation bases on light reflection principles.
The LCOS projector and the LCD projector are based on similar principles. However, unlike the LCD projector in which the light source is mounted behind the LCD panel
Traditionally, to generate 3D images, two projectors are required in a special arrangement to provide separate light sources of S and P polarizations. However, the conventional setup not only the costs more due to the concurrent use of two projectors but also occupies a large space.
One particular aspect of the instant disclosure is to provide a projection system for alternately outputting different polarized image light sources without using two projectors at the same time.
Another particular aspect of the instant disclosure is to provide a method for alternately outputting different polarized image light sources without using two projectors at the same time.
To achieve the above-mentioned aspects, the instant disclosure provides a projection system for alternately outputting different polarized image light sources, including: a polarizing beam splitting module, an image display module and a light polarization switch module. The polarizing beam splitting module has at least one polarizing beam splitting element
To achieve the above-mentioned aspects, the instant disclosure provides a method for alternately outputting different polarized image light sources, including the steps of: intermittently generating a plurality of first light sources with P polarization to sequentially pass through at least one polarizing beam splitting element according to different time sequences; sequentially reflecting and transforming the first light sources with P polarization into a plurality of second light sources with S polarization via the at least one reflective image display panel, wherein the at least one reflective image display panel is disposed beside a first side of the at least one polarizing beam splitting element; sequentially reflecting and transmitting the second light sources with S polarization to at least one transmission LCD light valve via the at least one polarizing beam splitting element, wherein the at least one transmission LCD light valve is disposed beside a second side of the at least one polarizing beam splitting element; and sequentially transmitting the second light sources with S polarization to pass through the at least one transmission LCD light valve to intermittently and alternatively output image light sources with P polarization and image light sources with S polarization.
To achieve the above-mentioned aspects, the instant disclosure provides a method for alternately outputting different polarized image light sources, including the steps of: intermittently transmitting a plurality of first light sources with S polarization to at least one
To achieve the above-mentioned aspects, the instant disclosure provides a projection system for alternately outputting different polarized image light sources, including: a prism module, an image display module and a light polarization switch module. The prism module has at least one total internal reflection prism for intermittently receiving a plurality of input light sources according to different time sequences. The image display module has at least one reflective image display panel disposed beside a first side of the at least one total internal reflection prism. The light polarization switch module has at least one transmission LCD light valve disposed beside a second side of the at least one total internal reflection prism.
Therefore, the image light sources with P polarization and the image light sources with S polarization can be intermittently and alternatively projected from the projection lens onto the surface of the object by switching the transmission LCD light valve to ON/OFF state
In order to further understand the techniques, means and effects the instant disclosure takes for achieving the prescribed objectives, the following detailed descriptions and appended drawings are hereby referred, such that, through which, the purposes, features and aspects of the instant disclosure can be thoroughly and concretely appreciated; however, the appended drawings are provided solely for reference and illustration, without any intention that they be used for limiting the instant disclosure.
Referring to
The polarizing beam splitting module 1 has at least one polarizing beam splitting element such as polarizing beam splitter (PBS) for intermittently receiving a plurality of input light sources according to different time sequences. The image display module 2 has at least one reflective image display panel 20 disposed beside (or corresponding to) a first side 101 of the polarizing beam splitting element 10. The light polarization switch module 3 has at least one transmission LCD (Liquid Crystal Display) light valve 30 disposed beside a second side 102 of the polarizing beam splitting element 10, and the first side 101 is adjacent to the second side 102. The image projecting module 4 has at least one projection lens 40 disposed beside one side of the
Referring to
For example, referring to
Hence, the first light sources L1 with P polarization sequentially can pass through the polarizing beam splitting element 10 and are sequentially transformed into a plurality of second light sources L2 with S polarization (shown as “” and letter “S” in
Referring to
The step S100 is that: intermittently generating a plurality of first light sources L1 with P polarization (shown as “−” and letter “P” in
The step S102 is that: sequentially reflecting and transforming the first light sources L1 with P polarization into a plurality of second light sources L2 with S polarization (shown as “” and letter “S” in
The step S104 is that: sequentially reflecting and transmitting the second light sources L2 with S polarization to at least one transmission LCD light valve 30 via the polarizing beam splitting element 10; wherein the transmission LCD light valve 30 is disposed beside a second side 102 of the polarizing beam splitting element 10.
The step S106 is that: sequentially transmitting the second light sources L2 with S polarization to pass through the transmission LCD light valve 30 to intermittently and alternatively output image light sources L3 with P polarization and image light sources L3 with S polarization.
The step S108 is that: intermittently and alternatively transmitting the image light sources L3 with P polarization and the image light sources L3 with S polarization to pass through an image projecting module 4 for intermittently and alternatively projecting the image light sources L3 with P polarization and the image light sources L3 with S polarization onto a surface 50 of an object 5; wherein the image projecting module 4 has at least one projection lens 40 disposed beside one side of the transmission LCD light valve 30, thus the transmission LCD light valve 30 is disposed between the polarizing beam splitting element 10 and the projection lens 40.
Hence, the image light sources L3 with P polarization and the image light sources L3 with S polarization can be intermittently and alternatively projected from the projection lens 40 onto the surface 50 of the object 5 by switching the transmission LCD light valve 30 to ON/OFF state according to different time sequences, thus a viewer can receive 3D images from the surface 50 such as a screen by wearing a 3D glasses, which can receive S polarized light and P polarized light simultaneously (for example, a left lens of the glasses can receive S polarized light while a right lens receive P polarized light). Therefore, the generation of 3D images can be achieved by using only a single projector unit in the first embodiment.
Of course, in the first embodiment, each first light source L1 (each continuous RGB source) with P polarization can be replaced by a continuous white source and the reflective image display panel 20 (the reflective LCOS panel with the reflective mirrors 201) can be
Referring to
The polarizing beam splitting module 1 has at least one polarizing beam splitting element such as polarizing beam splitter (PBS) for intermittently receiving a plurality of input light sources according to different time sequences. The image display module 2 has at least one reflective image display panel 20 disposed beside a first side 101 of the polarizing beam splitting element 10. The light polarization switch module 3 has at least one transmission LCD (Liquid Crystal Display) light valve 30 disposed beside a second side 102 of the polarizing beam splitting element 10, and the first side 101 and the second side 102 are two opposite sides. The image projecting module 4 has at least one projection lens 40 disposed beside one side of the transmission LCD light valve 30, thus the transmission LCD light valve 30 is disposed between the polarizing beam splitting element 10 and the projection lens 40.
For example, referring to
Hence, the first light sources L1 with S polarization are sequentially transformed into a plurality of second light sources L2 with P polarization (shown as “−” and letter “P” in
Referring to
The step S200 is that: intermittently transmitting a plurality of first light sources L1 with S polarization (shown as “” and letter “S” in
The step S202 is that: sequentially reflecting and transforming the first light sources L1 with S polarization into a plurality of second light sources L2 with P polarization (shown as “−” and letter “P” in
The step S204 is that: sequentially transmitting the second light sources L2 with P polarization to at least one transmission LCD light valve 30 through the polarizing beam splitting element 10; wherein the transmission LCD light valve 30 is disposed beside a second side 102 of the polarizing beam splitting element 10.
The step S206 is that: sequentially transmitting the second light sources L2 with P polarization to pass through the transmission LCD light valve 30 to intermittently and alternatively output image light sources L3 with S polarization and image light sources L3 with P polarization.
The step S208 is that: intermittently and alternatively transmitting the image light sources L3 with S polarization and the image light sources L3 with P polarization to pass through an image projecting module 4 for intermittently and alternatively projecting the image light sources L3 with S polarization and the image light sources L3 with P polarization onto a surface 50 of an object 5; wherein the image projecting module 4 has at least one projection lens 40 disposed beside one side of the transmission LCD light valve 30, thus the transmission LCD light valve 30 is disposed between the polarizing beam splitting element 10 and the projection lens 40.
Hence, the image light sources L3 with S polarization and the image light sources L3 with P polarization can be intermittently and alternatively projected from the projection lens 40 onto the surface 50 of the object 5 by switching the transmission LCD light valve 30 to ON/OFF state according to different time sequences, thus a viewer can receive 3D images from the surface 50 such as a screen by wearing a 3D glasses, which can receive S polarized light and
Of course, in the second embodiment, each first light source L1 (each continuous RGB source) with P polarization can be replaced by a continuous white source and the reflective image display panel 20 (the reflective LCOS panel with the reflective mirrors 201) can be replaced by a reflective LCOS panel that has a plurality of RGB filters 202, according to different requirements. In other words, either the continuous RGB sources mated with the reflective LCOS panel having the reflective mirrors 201 or the continuous white sources mated with the reflective LCOS panel having the RGB filters 202 can be applied to the instant disclosure.
Referring to
Hence, the image light sources L3 with P polarization and the image light sources L3 with S polarization can be intermittently and alternatively projected from the projection lens 40 onto the surface 50 of the object 5 by switching the transmission LCD light valve 30 to ON/OFF state according to different time sequences, thus a viewer can receive 3D images from the surface 50 such as a screen by wearing a 3D glasses, which can receive S polarized light and P polarized light simultaneously (for example, a left lens of the glasses can receive S polarized light while a right lens receive P polarized light). Therefore, the generation of 3D images can be achieved by using only a single projector unit in the third embodiment.
Referring to
Hence, the image light sources L3 with P polarization and the image light sources L3 with S polarization can be intermittently and alternatively projected from the projection lens 40 onto the surface 50 of the object 5 by switching the transmission LCD light valve 30 to
Of course, the polarizing beam splitting module (not shown) of the fourth embodiment can be omitted. In other words, either the projection system composed of the polarizing beam splitting module 1 (as shown in
The above-mentioned descriptions merely represent solely the preferred embodiments of the instant disclosure, without any intention or ability to limit the scope of the instant disclosure which is fully described only within the following claims. Various equivalent changes, alterations or modifications based on the claims of instant disclosure are all, consequently, viewed as being embraced by the scope of the instant disclosure.
Number | Date | Country | Kind |
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99114621 | May 2010 | TW | national |