Claims
- 1. A carrier chrominance signal forming device comprising:
- a) input means for receiving a plurality of kinds of video complementary color signals;
- b) color-difference signal forming means for forming a first color-difference signal and a second color-difference signal by performing a coefficient multiplying process to respectively multiply by coefficients the plurality of kinds of complementary color signals received by said input means and performing an adding process to add together the plurality of kinds of complementary color signals which have been subjected to the coefficient multiplying process;
- c) color-burst-flag signal adding means for adding color-burst flag signals to the first color-difference signal and the second color-difference signal formed by said color-difference signal forming means;
- d) inverted color-difference signal forming means for forming an inverted first color-difference signal having a phase which differs 180 degrees from a phase of the first color-difference signal to which the color-burst flag signal has been added by said color-burst-flag signal adding means and an inverted second color-difference signal having a phase which differs 180 degrees from a phase of the second color-difference signal to which the color-burst flag signal has been added by said color-burst-flag signal adding means; and
- e) selective output Means for serially outputting, in a sequence and at an interval according to a color subcarrier, the first color-difference signal and the second color-difference signal to which the color-burst-flag signals have been added by said color-burst-flag signal adding means and the inverted first color-difference signal and the inverted second color-difference signal which have been formed by said inverted color-difference signal forming means.
- 2. A device according to claim 1, wherein said input means is arranged to receive complementary color signals of yellow, cyan and magenta.
- 3. A device according to claim 1, wherein said input means is arranged to receive the plurality of kinds of complementary color signals outputted from an image pickup system.
- 4. A device according to claim 1, wherein said selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the color subcarrier, the first color-difference signal and the second color-difference signal to which the color-burst flag signals have been added by said color-burst-flag signal adding means and the inverted first color-difference signal and the inverted second color-difference signal which have been formed by said inverted color-difference signal forming means.
- 5. A carrier chrominance signal forming device comprising:
- a) input means for receiving a plurality of kinds of video com plementary color signals;
- b) color-difference signal forming means for forming a first color-difference signal and a second color-difference signal by performing a coefficient multiplying process to respectively multiply by coefficients the plurality of kinds of complementary color signals received by said input means and performing an adding process to add together the plurality of kinds of complementary color signals which have been subjected to the coefficient multiplying process;
- c) color-burst-flag signal adding means for adding color-burst flag signals to the first color-difference signal and the second color-difference signal formed by said color-difference signal forming means;
- d) inverted color-difference signal forming means for forming an inverted first color-difference signal having a phase which differs 180 degrees from a phase of the first color-difference signal to which the color-burst flag signal has been added by said color-burst-flag signal adding means and an inverted second color-difference signal having a phase which differs 180 degrees from a phase of the second color-difference signal to which the color-burst flag signal has been added by said color-burst-flag signal adding means; and
- e) selective output means for serially outputting, in a sequence and at an interval according to a low-band color subcarrier, the first color-difference signal and the second color-difference signal to which the color-burst flag signals have been added by said color-burst-flag signal adding means and the inverted first color-difference signal and the inverted second color-difference signal which have been formed by said inverted color-difference signal forming means.
- 6. A device according to claim 5, wherein said selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the low-band color subcarrier, the first color-difference signal and the second color-difference signal to which the color-burst flag signals have been added by said color-burst-flag signal adding means and the inverted first color-difference signal and the inverted second color-difference signal which have been formed by said inverted color-difference signal forming means.
- 7. A carrier chromiinance signal forming device comprising:
- a) data input means for receiving a plurality of kinds of digital video complementary color signals;
- b) digital color-difference data forming means for forming a first digital color-difference data and a second digital color-difference data by performing a coefficient multiplying process to respectively multiply by coefficients the plurality of kinds of complementary color data received by said data input means and performing an adding process to add together the plurality of kinds of complementary color data which have been subjected to the coefficient multiplying process;
- c) color-burst flag data adding means for adding color-burst flag data to the first digital color-difference data and the second digital color-difference data formed by said digital color-difference data forming means;
- d) inverted digital color-difference data forming means for forming an inverted first digital color-difference data having a phase which differs 180 degrees from a phase of the-first digital color-difference data to which the color-burst flag data has been added by said color-burst-flag data adding means and an inverted second color-difference data having a phase which differs 180 degrees from a phase of the second digital color-difference data to which the color-burst flag data has been added by said color-burst-flag data adding means;
- e) data selective output means for serially outputting in a sequence and at an interval according to a color subcarrier, the first digital color-difference data and the second digital color-difference data to which the color-burst-flag data have been added by said color-burst-flag data adding means and the inverted first digital color-difference data and the inverted second digital color-difference data which have been formed by said inverted digital color-difference data forming means; and
- f) digital-to-analog converting means for digital-to-analog converting and outputting data outputted from said data selective output means.
- 8. A device according to claim 7, wherein said data input means is arranged to input digital complementary color data of yellow, cyan and magenta.
- 9. A device according to claim 7, wherein said data input means is arranged to input the plurality of kinds of complementary color data outputted from an image pickup system.
- 10. A device according to claim 7, wherein said data selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the color subcarrier, the first digital color-difference data and the second digital color-difference data to which the color-burst flag data have been added by said color-burst-flag data adding means and the inverted first digital color-difference data and the inverted second digital color-difference data which have been formed by said inverted digital color-difference data forming means.
- 11. A device according to claim 10, wherein said digital-to-analog converting means is arranged to digital-to-analog convert and output data outputted from said data selective output means in synchronism with the clock signal of the frequency which is four times as high as the frequency of the color subcarrier.
- 12. A carrier chrominance signal forming device comprising:
- a) data input means for receiving a plurality of kinds of digital video complementary color signals;
- b) digital color-difference data forming means for forming a first digital color-difference data and a second digital color-difference data by performing a coefficient multiplying process to respectively multiply by coefficients the plurality of kinds-of complementary color data received by said data input means and performing by adding process to add together the plurality of kinds of complementary color data which have been subjected to the coefficient multiplying process;
- c) color-burst-flag data adding means for adding color-burst flag data to the first digital color-difference data and the second digital color-difference data formed by said digital color-difference data forming means;
- d) inverted digital color-difference data forming means for forming an inverted first digital color-difference data having a phase which differs 180 degrees from a phase of the first digital color-difference data to which the color-burst flag data has been added by said color-burst-flag data adding means and an inverted second digital color-difference data having a phase which differs 180 degrees from a phase of the Second digital color-difference data to which the color-burst flag data has been added by said color-burst-flag data adding means;
- e) data selective output means for serially outputting, in a sequence and at an interval according to a low-band color subcarrier, the first digital color-difference data and the second digital color-difference data to which the color-burst flag data have been added by said color-burst-flag data adding means and the inverted first digital color-difference data and the inverted second digital color-difference data which have been formed by said inverted digital color-difference data forming means; and
- f) digital-to-analog converting means for digital-to-analog converting and outputting data outputted from said data selective output means.
- 13. A device according to claim 12, wherein said data selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the low-band color subcarrier, the first digital color-difference data and the second digital color-difference data to which the color-burst flag data have been added by said color-burst-flag data adding means and the inverted first digital color-difference data and the inverted second digital color-difference data which have been formed by said inverted digital color-difference data forming means.
- 14. A carrier chrominance signal forming device comprising:
- a) first input means for receiving a first complementary color signal;
- b) second input means for receiving a second complementary color signal;
- c) third input means for receiving a third complementary color signal;
- d) first coefficient multiplying process means for multiplying by a first coefficient the first complementary color signal received by said first input means;
- e) second coefficient multiplying process means for multiplying by a second coefficient the second complementary color signal received by said second input means;
- f) third coefficient multiplying process means for multiplying by a third coefficient the third complementary color signal received by said third input means;
- g) fourth coefficient multiplying process means for multiplying by a fourth coefficient the first complementary color signal received by said first input means;
- h) fifth coefficient multiplying process means for multiplying by a fifth coefficient the second complementary color signal received by said second input means;
- i) sixth coefficient multiplying process means for multiplying by a sixth coefficient the third complementary color signal received by said third input means;
- j) first color-difference signal forming means for forming a first color-difference signal by performing an adding process to add together the first complementary color signal coefficient-multiplied by said first coefficient multiplying process means, the second complementary color signal coefficient-multiplied by said second coefficient multiplying process means and the third complementary color signal coefficient-multiplied by said third coefficient multiplying process means;
- k) second color-difference signal forming means for forming a second color-difference signal by performing an adding process to add together the first complementary color signal coefficient-multiplied by said fourth coefficient multiplying process means, the second complementary color signal coefficient-multiplied by said fifth coefficient multiplying process means and the third complementary color signal coefficient-multiplied by said sixth coefficient multiplying process means;
- l) first color-burst-flag signal adding means for adding a color-burst flag signal to the first color-difference signal formed by said first color-difference signal forming means;
- m) second color-burst-flag signal adding means for adding a color-burst flag signal to the second color-difference signal formed by said second color-difference signal forming means;
- n) inverted first color-difference signal forming means for forming an inverted first color-difference signal having a phase which differs 180 degrees from a phase of the first color-difference signal to which the color-burst flag signal has been added by said first color-burst-flag signal adding means;
- o) inverted second color-difference signal forming means for forming an inverted second color-difference signal having a phase which differs 180 degrees from the phase of the second color-difference signal to which the color-burst flag signal has been added by said second color-burst-flag signal adding means; and
- p) selective output means for serially outputting, in a sequence and at an interval according to a color subcarrier, the first color-difference signal to which the color-burst flag signal has been added by said first color-burst-flag signal adding means, the second color-difference signal to which the color-burst flag signal has been added by said second color-burst-flag signal adding means, the inverted first color-difference signal formed by said inverted first color-difference signal forming means and the inverted second color-difference signal formed by said inverted second color-difference signal forming means.
- 15. A device according to claim 14, wherein the first complementary color signal includes a signal indicating yellow, the second complementary color signal includes a signal indicating cyan, and the third complementary color signal includes a signal indicating magenta.
- 16. A device according to claim 14, wherein said selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the color subcarrier, the first color-difference signal to which the color-burst flag signal has been added by said first color-burst-flag signal adding means, the second color-difference signal to which the color-burst flag signal has been added by said second color-burst-flag signal adding means, the inverted first color-difference signal formed by said inverted first color-difference signal forming means and the inverted second color-difference signal formed by said inverted second color-difference signal forming means.
- 17. A device according to claim 14, wherein the first coefficient includes "-0.65625", the second coefficient includes "0.0625", the third coefficient includes "0.59375", the fourth coefficient includes "-0.28125", the fifth coefficient includes "1.0", and the sixth coefficient includes "-0.71875".
- 18. A low-band converted carrier chrominance signal forming device comprising:
- a) first input means for receiving a first complementary color signal;
- b) second input means for receiving a second complementary color signal;
- c) third input means for receiving a third complementary color signal;
- d) first coefficient multiplying process means for multiplying by a first coefficient the first complementary color signal received by said first input means;
- e) second coefficient multiplying process means for multiplying by a second coefficient the second complementary color signal received by said second input means;
- f) third coefficient multiplying process means for multiplying by a third coefficient the third complementary color signal received by said third input means;
- g) fourth coefficient multiplying process means for multiplying by a fourth coefficient the first complementary color signal received by said first input means;
- h) fifth coefficient multiplying process means for multiplying by a fifth coefficient the second complementary color signal received by said second input means;
- i) sixth coefficient multiplying process means for multiplying by a sixth coefficient the third complementary color signal received by said third input means;
- j) first color-difference signal forming means for forming a first color-difference signal by performing an adding process to add together the first complementary color signal coefficient-multiplied by said first coefficient multiplying process means, the second complementary color signal coefficient-multiplied by said second coefficient multiplying process means and the third complementary color signal coefficient-multiplied by said third coefficient multiplying process means;
- k) second color-difference signal forming means for forming a second color-difference signal by performing an adding process to add together the first complementary color signal coefficient-multiplied by said fourth coefficient multiplying process means, the second complementary color signal coefficient-multiplied by said fifth coefficient multiplying process means and the third complementary color signal coefficient-multiplied by said sixth coefficient multiplying process means;
- l) first color-burst-flag signal adding means for adding a color-burst flag signal to the first color-difference signal formed by said first color-difference signal forming means;
- m) second color-burst-flag signal adding means for adding a color-burst flag signal to the second color-difference signal formed by said second color-difference signal forming means;
- n) inverted first color-difference signal forming means for forming an inverted first color-difference signal having a phase which differs 180 degrees from a phase of the first color-difference signal to which the color-burst flag signal has been added by said first color-burst-flag signal adding means;
- o) inverted second color-difference signal forming means for forming an inverted second color-difference signal having a phase which differs 180 degrees from the phase of the second color-difference signal to which the color-burst flag signal has been added by said second color-burst-flag signal adding means; and
- p) selective output means for serially outputting, in a sequence and at an interval according to a low-band color subcarrier, the first color-difference signal to which the color-burst flag signal has been added by said first color-burst-flag signal adding means, the second color-difference signal to which the color-burst flag signal has been added by said second color-burst-flag signal adding means, the inverted first color-difference signal formed by said inverted first color-difference signal forming means and the inverted second color-difference signal formed by said inverted second color-difference signal forming means.
- 19. A device according to claim 18, wherein the first complementary color signal includes a signal indicating yellow, the second complementary color signal includes a signal indicating cyan, and the third complementary color signal includes a signal indicating magenta.
- 20. A device according to claim 18, wherein said selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the low-band color subcarrier, the first color-difference signal to which the color-burst flag signal has been added by said first color-burst-flag signal adding means, the second color-difference signal to which the color-burst flag signal has been added by said second color-burst-flag signal adding means, the inverted first color-difference signal formed by said inverted first color-difference signal forming means and the inverted second color-difference signal formed by said inverted second color-difference signal forming means.
- 21. A device according to claim 18, wherein the first coefficient includes "-0.65625", the second coefficient includes "0.0625", the third coefficient includes "0.59375", the fourth coefficient includes "-0.28125", the fifth coefficient includes "1.0", and the sixth coefficient includes "-0.71875".
- 22. A carrier chrominance signal forming device comprising:
- a) first data input means for receiving first digital complementary color data;
- b) second data input means for receiving second digital complementary color data;
- c) third data input means for receiving third digital complementary color data;
- d) first coefficient multiplying process means for multiplying by a first coefficient the first digital complementary color data received by said first data input means;
- e) second coefficient multiplying process means for multiplying by a second coefficient the second digital complementary color data received by said second data input means;
- f) third coefficient multiplying process means for multiplying by a third coefficient the third digital complementary color data received by said third data input means;
- g) fourth coefficient multiplying process means for multiplying by a fourth coefficient the first digital complementary color data received by said first data input means;
- h) fifth coefficient multiplying process means for multiplying by a fifth coefficient the second digital complementary color data received by said second data input means;
- i) sixth coefficient multiplying process means for multiplying by a sixth coefficient the third digital complementary color signal received by said third data input means;
- j) first digital color-difference data forming means for forming first digital color-difference data by performing an adding process to add together the first digital complementary color data coefficient-multiplied by said first coefficient multiplying process means, the second digital complementary color data coefficient-multiplied by said second coefficient multiplying process means and the third digital complementary color data coefficient-multiplied by said third coefficient multiplying process means;
- k) second digital color-difference data forming means for forming second digital color-difference data by performing an adding process to add together the first digital complementary color data coefficient-multiplied by said fourth coefficient multiplying process means, the second digital complementary color data coefficient-multiplied by said fifth coefficient multiplying process means and the third digital complementary color data coefficient-multiplied by said sixth coefficient multiplying process means;
- l) first color-burst-flag data adding means for adding color-burst flag data to the first digital color-difference data formed by said first digital color-difference data forming means;
- m) second color-burst-flag data adding means for adding color-burst flag data to the second digital color-difference data formed by said second digital color-difference data forming means;
- n) inverted first digital color-difference data forming means for forming inverted first digital color-difference data having a phase which differs 180 degrees from a phase of the first digital color-difference data to which the color-burst flag data has been added by said first color-burst-flag data adding means;
- o) inverted second digital color-difference data forming means for forming inverted second digital color-difference data having a phase which differs 180 degrees from a phase of the second digital color-difference data to which the color-burst flag data has been added by said second color-burst-flag data adding means;
- p) data selective output means for serially outputting, in a sequence and at an interval according to a color subcarrier, the first digital color-difference data to which the color-burst flag data has been added by said first color-burst-flag data adding means, the second digital color-difference data to which the color-burst flag data has been added by said second color-burst-flag data adding means, the inverted first digital color-difference data formed by said inverted first digital color-difference data forming means and the inverted second digital color-difference data formed by said inverted second digital color-difference data forming means; and
- q) digital-to-analog converting means for digital-to-analog converting and outputting data outputted from said data selective output means.
- 23. A device according to claim 22, wherein the first digital complementary color data includes data indicating yellow, the second digital complementary color data includes data indicating cyan, and the third digital complementary color data includes data indicating magenta.
- 24. A device according to claim 22, wherein said data selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the color subcarrier, the first digital color-difference data to which the color-burst flag data has been added by said first color-burst-flag data adding means, the second digital color-difference data to which the color-burst flag data has been added by said second color-burst-flag data adding means, the inverted first digital color-difference data formed by said inverted first digital color-difference data forming means and the inverted second digital color-difference data formed by said inverted second digital color-difference data forming means.
- 25. A device according to claim 22, wherein the first coefficient includes "-0.65625", the second coefficient includes "0.0625", the third coefficient includes "0.59375", the fourth coefficient includes "-0.28125", the fifth coefficient includes "1.0", and the sixth coefficient includes "-0.71875".
- 26. A low-band converted carrier chrominance signal forming device comprising:
- a) first data input means for receiving first digital complementary color data;
- b) second data input means for receiving second digital complementary color data;
- c) third data input means for receiving third digital complementary color data;
- d) first coefficient multiplying process means for multiplying by a first coefficient the first digital complementary color data received by said first data input means;
- e) second coefficient multiplying process means for multiplying by a second coefficient the second digital complementary color data received by said second data input means;
- f) third coefficient multiplying process means for multiplying by a third coefficient the third digital complementary color data received by said third data input means;
- g) fourth coefficient multiplying process means for multiplying by a fourth coefficient the first digital complementary color data received by said first data input means;
- h) fifth coefficient multiplying process means for multiplying by a fifth coefficient the second digital complementary color data received by said second data input means;
- i) sixth coefficient multiplying process means for multiplying by a sixth coefficient the third digital complementary color signal received by said third data input means;
- j) first digital color-difference data forming means for forming first digital color-difference data by performing an adding process to add together the first digital complementary color data coefficient-multiplied by said first coefficient multiplying process means, the second digital complementary color data coefficient-multiplied by said second coefficient multiplying process means and the third digital complementary color data coefficient-multiplied by said third coefficient multiplying process means;
- k) second digital color-difference data forming means for forming second digital color-difference data by performing an adding process to add together the first digital complementary color data coefficient-multiplied by said fourth coefficient multiplying process means, the second digital complementary color data coefficient-multiplied by said fifth coefficient multiplying process means and the third digital complementary color data coefficient-multiplied by said sixth coefficient multiplying process means;
- l) first color-burst-flag data adding means for adding color-burst flag data to the first digital color-difference data formed by said first digital color-difference data forming means;
- m) second color-burst-flag data adding means for adding color-burst flag data to the second digital color-difference data formed by said second digital color-difference data forming means;
- n) inverted first digital color-difference data forming means for forming inverted first digital color-difference data having a phase which differs 180 degrees from a phase of the first digital color-difference data to which the color-burst flag data has been added by said first color-burst-flag data adding means;
- o) inverted second digital color-difference data forming means for forming inverted second digital color-difference data having a phase which differs 180 degrees from a phase of the second digital color-difference data to which the color-burst flag data has been added by said second color-burst-flag data adding means;
- p) data selective output means for serially outputting, in a sequence and at an interval according to a low-band color subcarrier, the first digital color-difference data to which the color-burst flag data has been added by said first color-burst-flag data adding means, the second digital color-difference data to which the color-burst flag data has been added by said second color-burst-flag data adding means, the inverted first digital color-difference data formed by said inverted first digital color-difference data forming means and the inverted second digital color-difference data formed by said inverted second digital color-difference data forming means; and
- q) digital-to-analog converting means for digital-to-analog converting and outputting data outputted from said data selective output means.
- 27. A device according to claim 26, wherein the first digital complementary color data includes data indicating yellow, the second digital complementary color data includes data indicating cyan, and the third digital complementary color data includes data indicating magenta.
- 28. A device according to claim 26, wherein said data selective output means is arranged to serially switch and output, in synchronism with a clock signal of a frequency which is four times as high as a frequency of the low-band color subcarrier, the first digital color-difference data to which the color-burst flag data has been added by said first color-burst-flag data adding means, the second digital color-difference data to which the color-burst flag data has been added by said second color-burst-flag data adding means, the inverted first digital color-difference data formed by said inverted first digital color-difference data forming means and the inverted second digital color-difference data formed by said inverted second digital color-difference data forming means.
- 29. A device according to claim 26, wherein the first coefficient includes "-0.65625", the second coefficient includes "0.0625", the third coefficient includes "0.59375", the fourth coefficient includes "-0.28125", the fifth coefficient includes "1.0", and the sixth coefficient includes "-0.71875".
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-021318 |
Jan 1995 |
JPX |
|
7-243032 |
Sep 1995 |
JPX |
|
Parent Case Info
This is a continuation application under 37 CFR 1.62 of prior application Ser. No. 08/569,457 filed on Dec. 8, 1995 (abandoned).
US Referenced Citations (6)
Continuations (1)
|
Number |
Date |
Country |
Parent |
569457 |
Dec 1995 |
|