IP Library › Granted Patent US 11,568,780
Granted Patent B2
US 11,568,780 · App. 17/534,583 · Granted Jan 31, 2023

Image dividing circuit and electro-optical apparatus

Inventor: Yasutoshi Akiba (Chino, JP)
G09G3/20G09G2310/0224G09G2310/061G09G2310/08G09G2340/0435
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,568,780
App. No.
17/534,583
Granted
Jan 31, 2023
Kind
B2
Abstract

An image dividing circuit includes an input interface circuit that receives input image data configured by a total number of horizontal pixels HT, an image data dividing circuit that divides the input image data into first to n-th output image data, and an output interface circuit that includes output circuits for first to n-th channels that output the first to n-th output image data. The parameter n is an integer greater than or equal to 3, and the parameter HT is not an integer multiple of the parameter n. An output circuit for an i-th channel outputs i-th output image data in which at least one of the total number of horizontal pixels and the total number of vertical lines in the i-th channel has been variably adjusted. The parameter i is an integer greater than or equal to 1 but smaller than or equal to n.

Claims (50)

1. An image dividing circuit comprising:

an input interface circuit that receives input image data configured by a total number of horizontal pixels HT and a total number of vertical lines VT;

an image data dividing circuit that divides the input image data into first to n-th output image data for first to n-th channels; and

an output interface circuit that includes output circuits for first to n-th channels that output the first to n-th output image data,

wherein the parameter n is an integer greater than or equal to 3, and the parameter HT is not an integer multiple of the parameter n,

an output circuit for an i-th channel (i is an integer greater than or equal to 1 but smaller than or equal to n) out of the output circuits for first to n-th channels outputs, out of the first to n-th output image data, i-th output image data in which at least one of the total number of horizontal pixels and the total number of vertical lines in the i-th channel out of the first to n-th channels is variably adjusted,

the input interface circuit outputs a first clock signal that is a pixel clock signal for the input image data and the received input image data, and

the output circuits for first to n-th channels output the first to n-th output image data by using a pixel clock signal that is a second clock signal having a frequency that is 1/n of a frequency of the first clock signal.

2. The image dividing circuit according to claim 1 ,

further comprising a frequency dividing circuit that divides the frequency of the first clock signal by n and outputs the resultant second clock signal.

3. An image dividing circuit comprising:

an input interface circuit that receives input image data configured by a total number of horizontal pixels HT and a total number of vertical lines VT;

an image data dividing circuit that divides the input image data into first to n-th output image data for first to n-th channels; and

an output interface circuit that includes output circuits for first to n-th channels that output the first to n-th output image data,

wherein the parameter n is an integer greater than or equal to 3, and the parameter HT is not an integer multiple of the parameter n,

an output circuit for an i-th channel (i is an integer greater than or equal to 1 but smaller than or equal to n) out of the output circuits for first to n-th channels outputs, out of the first to n-th output image data, i-th output image data in which at least one of the total number of horizontal pixels and the total number of vertical lines in the i-th channel out of the first to n-th channels is variably adjusted, and

the output circuit for an i-th channel outputs the i-th output image data in which at least one of the total number of horizontal pixels and the total number of vertical lines in the i-th channel is so variably adjusted that a time average of the total number of pixels including a blanking period in the i-th channel is (HT×VT/n).

4. An image dividing circuit comprising:

an input interface circuit that receives input image data configured by a total number of horizontal pixels HT and a total number of vertical lines VT;

an image data dividing circuit that divides the input image data into first to n-th output image data for first to n-th channels;

an output interface circuit that includes output circuits for first to n-th channels that output the first to n-th output image data; and

an adjustment circuit that variably adjusts at least one of the total number of horizontal pixels and the total number of vertical lines in the i-th channel,

wherein the parameter n is an integer greater than or equal to 3, and the parameter HT is not an integer multiple of the parameter n, and

an output circuit for an i-th channel (i is an integer greater than or equal to 1 but smaller than or equal to n) out of the output circuits for first to n-th channels outputs, out of the first to n-th output image data, i-th output image data in which at least one of the total number of horizontal pixels and the total number of vertical lines in the i-th channel out of the first to n-th channels is variably adjusted.

5. The image dividing circuit according to claim 4 ,

further comprising a speed difference absorbing buffer circuit that absorbs a difference between a data input rate at which data is inputted to the input interface circuit and a data output rate at which data is outputted from the output interface circuit.

6. The image dividing circuit according to claim 4 ,

wherein the adjustment circuit adjusts the total number of horizontal pixels in the i-th channel in such a way that the total number of horizontal pixels in a first line of one frame differs from the total number of horizontal pixels in a second line of the one frame.

7. The image dividing circuit according to claim 6 ,

wherein the adjustment circuit adjusts the total number of horizontal pixels in such a way that an average of the total numbers of horizontal pixels in n×k lines (k is an integer greater than or equal to 1) in the i-th channel is HT/n.

8. The image dividing circuit according to claim 6 ,

wherein the adjustment circuit sets the total numbers of horizontal pixels in VT−s lines (s is an integer greater than or equal to 1) in one frame at a common setting value and sets the total number of horizontal pixels in a specific s line at a value different from the setting value in the i-th channel.

9. The image dividing circuit according to claim 4 ,

wherein the adjustment circuit adjusts the total number of vertical lines in the i-th channel in such a way that the total number of vertical lines in a first frame differs from the total number of vertical lines in a second frame.

10. The image dividing circuit according to claim 4 ,

wherein the adjustment circuit sets the total number of horizontal pixels in a first frame at a first setting value and sets the total number of horizontal pixels in a second frame at a second setting value different from the first setting value in the i-th channel.

11. The image dividing circuit according to claim 10 ,

wherein the adjustment circuit adjusts the total number of horizontal pixels in such a way that an average of the total numbers of horizontal pixels in n×k frames (k is an integer greater than or equal to 1) in the i-th channel is HT/n.

12. An electro-optical apparatus comprising:

the image dividing circuit according to claim 1 ;

an electro-optical panel; and

first to n-th display drivers that drive the electro-optical panel based on the first to n-th output image data outputted by the image dividing circuit.

13. An electro-optical apparatus comprising:

the image dividing circuit according to claim 3 ;

an electro-optical panel; and

first to n-th display drivers that drive the electro-optical panel based on the first to n-th output image data outputted by the image dividing circuit.

14. An electro-optical apparatus comprising:

the image dividing circuit according to claim 4 ;

an electro-optical panel; and

first to n-th display drivers that drive the electro-optical panel based on the first to n-th output image data outputted by the image dividing circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2021
From: AKIBA, YASUTOSHI
To: SEIKO EPSON CORPORATION
Reel/Frame 058202/0971 →
Priority Claims (1)
JP JP2020-195825 · Nov 26, 2020 · national
Continuity (1)
Related Publication 20220165194A1 · May 26, 2022
Cited By (1)
US 12,587,610