Claims
- 1. A projection-type display apparatus having a light source, at least one liquid crystal light valve for modulating a light beam emitted by said light source based on input video signals, and a projection lens for enlarging and projecting said modulated light beam onto a screen, comprising:
- a digital gamma correction circuit for applying digital gamma correction to said input video signals based on a relationship between transmissivity of said at least one liquid crystal light valve and applied voltage to said at least one liquid crystal light valve to produce digitally corrected input video signals;
- and an analog gamma correction circuit for applying analog gamma correction to certain of said digitally corrected input video signals in a specific gray scale range where an applied voltage difference per unit level of gray scale is larger than that of other gray scale ranges.
- 2. A projection-type display apparatus claimed in claim 1,
- wherein said analog gamma correction is applied to said digitally corrected input video signals corresponding to a gray scale which is located in the range of low transmissivity.
- 3. A projection-type display apparatus claimed in claim 1,
- wherein said analog gamma correction is applied to said digitally corrected input video signals corresponding to a gray scale which is located in the range of high transmissivity.
- 4. A projection-type display apparatus claimed in claim 1, further comprising:
- recognition means for recognizing at least one type of input video signal format; and
- a write controller for controlling writing of said input video signals of each scanning line into pixels of a row in said at least one light valve based on a recognized type of input video signal format.
- 5. A projection-type display apparatus claimed in claim 4, wherein:
- said write controller receives input video signals based on the NTSC format and writes said input video signals of one line into pixels of two rows in said at least one liquid crystal light valve when video signals in one of odd and even fields are written into said at least one light valve; and further said write controller shifts said input video signals of one line in a vertical direction and writes said input video signals of another line into pixels of two rows in said at least one liquid crystal light valve when video signals in another of odd and even fields are written into said at least one light valve.
- 6. A projection-type display apparatus claimed in claim 4, wherein:
- said write controller receives input video signals based on PAL/SECAM format and writes said input video signals of each of two lines among three continuous scanning lines into pixels of two rows in said at least one liquid crystal light valve and the remaining one of the three lines into another row in said at least one liquid crystal light valve when video signals in one of odd and even fields are written into said at least one light valve; and
- said write controller shifts said input video signals of the first line in a vertical direction and writes said input video signals of each of two lines among another three continuous scanning lines into pixels of two rows in said at least one liquid crystal light valve and the remaining one of the three lines into another row in said at least one liquid crystal light valve when video signals in another of odd and even fields are written into said at least one light valve.
- 7. A projection-type display apparatus claimed in claim 6,
- wherein said write controller writes said input video signals of each of two lines among three continuous scanning lines into pixels of two rows in said at least one liquid crystal light valve with double speed conversion on each said even and odd field.
- 8. A method of operating a projection-type display apparatus having a light source, at least one liquid crystal light valve for modulating a light beam emitted by said light source based on input video signals, and a projection lens for enlarging and projecting said modulated light beam onto a screen, comprising the steps of:
- applying digital gamma correction to said input video signals based on a relationship between transmissivity of said at least one liquid crystal light valve and applied voltage to said at least one liquid crystal light valve to produce digitally corrected input video signals;
- and applying analog gamma correction to certain of said digitally corrected input video signals in a specific gray scale range where an applied voltage difference per unit level of gray scale is larger than that of other gray scale ranges.
- 9. A method as in claim 8,
- wherein said analog gamma correction is applied to said digitally corrected input video signals corresponding to a gray scale which is located in the range of low transmissivity.
- 10. A method as in claim 8,
- wherein said analog gamma correction is applied to said digitally corrected input video signals corresponding to a gray scale which is located in the range of high transmissivity.
- 11. A method as in claim 8, further comprising the steps of:
- recognizing at least one type of input video signal format; and
- controlling writing of said input video signals of each scanning line into pixels of a row in said at least one light valve based on a recognized type of input video signal format.
- 12. A method as in claim 1, further comprising the steps of:
- receiving input video signals based on the NTSC format and writing said input video signals of one line into pixels of two rows in said at least one liquid crystal light valve when video signals in one of odd and even fields are written into said at least one light valve; and further shifting said input video signals of one line in a vertical direction and writing said input video signals of another line into pixels of two rows in said at least one liquid crystal light valve when video signals in another of odd and even fields are written into said at least one light valve.
- 13. A method as in claim 11, further comprising the steps of:
- receiving input video signals based on PAL/SECAM format and writing said input video signals of each of two lines among three continuous scanning lines into pixels of two rows in said at least one liquid crystal light valve and the remaining one of the three lines into another row in said at least one liquid crystal light valve when video signals in one of odd and even fields are written into said at least one light valve; and
- shifting said input video signals of the first line in a vertical direction and writing said input video signals of each of two lines among another three continuous scanning lines into pixels of two rows in said at least one liquid crystal light valve and the remaining one of the three lines into another row in said at least one liquid crystal light valve when video signals in another of odd and even fields are written into said at least one light valve.
- 14. A method as in claim 13, further comprising,
- writing said input video signals of each of two lines among three continuous scanning lines into pixels of two rows in said at least one liquid crystal light valve with double speed conversion on each said even and odd field.
Priority Claims (3)
Number |
Date |
Country |
Kind |
6-326499 |
Dec 1994 |
JPX |
|
6-326809 |
Dec 1994 |
JPX |
|
6-326810 |
Dec 1994 |
JPX |
|
RELATED APPLICATIONS
This application is a continuation-in-part of PCT international application PCT/JP95/02697, filed Dec. 26, 1995, designating the United States. This application is also related to U.S. application Ser. No.08/697,707, now U.S. Pat. No. 5,743,610 entitled "Projection-Type Display Apparatus", Attorney's docket No. P2237b, filed on the same day as the present application and commonly assigned herewith to the Seiko Epson Corporation of Tokyo, Japan
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
PCT/JP95/02697 |
Dec 1995 |
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