IP Library Granted Patent US 10,073,667
Granted Patent B2
US 10,073,667 · App. 14/786,131 · Granted Sep 11, 2018

Multi-monitor and display method for multi-monitor

Inventor: Hiromi Hosokawa (Tokyo, JP)
Assignee: NEC DISPLAY SOLUTIONS, LTD.
G06F3/1446G06F3/1415G06F3/1423G06F3/1454G09G2340/045G09G2340/0464G09G2354/00G09G2356/00G09G2370/042G09G2370/16
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Quick Facts
Patent No.
US 10,073,667
App. No.
14/786,131
Granted
Sep 11, 2018
Kind
B2
Abstract

A monitor device is one of a plurality of monitors connected in series. The monitor device includes: an acquisition unit that acquires the number of the monitors; a calculation unit that calculates a region to be displayed by the monitor device, of an image corresponding to an image signal, and a display size of an image corresponding to the region, based on the acquired number of the monitors and arrangement of the monitor device in the serial connection; a display unit that displays the image corresponding to the region according to the display size; and a communication unit that outputs the acquired number of the monitors to one of the monitors when the one of the monitors is arranged at a subsequent stage of the monitor device.

Claims (48)

1. A multi-monitor comprising a plurality of monitors connected in series, the monitors including first, second, and third monitors,

wherein the monitors collectively display one image by displaying mutually different regions of the one image, respectively,

wherein the first monitor includes:

a first acquisition unit that acquires a number of the monitors, an image signal including all of the one image, and a position of a pointer, from outside;

a first calculation unit that calculates a first region to be displayed by the first monitor, of the one image included in the image signal, and a first zoom factor of a first image corresponding to the first region, based on the number of the monitors, arrangement of the first monitor in the serial connection, and the position of the pointer;

a first display unit that displays the first image according to the first zoom factor such that the monitors display the one image with the position of the pointer being a center; and

a first communication unit that outputs the number of the monitors, the image signal including all of the one image, and the position of the pointer to the second monitor arranged at a subsequent stage of the first monitor, and

wherein the second monitor includes:

a second acquisition unit that acquires the number of the monitors, the image signal including all of the one image, and the position of the pointer output by the first communication unit of the first monitor;

a second calculation unit that calculates a second region to be displayed by the second monitor, of the one image included in the image signal, and a second zoom factor of a second image corresponding to the second region, based on the number of the monitors, arrangement of the second monitor in the serial connection, and the position of the pointer;

a second display unit that displays the second image according to the second zoom factor such that the monitors display the one image with the position of the pointer being the center; and

a second communication unit that outputs the number of the monitors, the image signal including all of the one image, and the position of the pointer to the third monitor arranged at a subsequent stage of the second monitor.

2. The multi-monitor according to claim 1 , wherein the monitors form a multi-monitor screen,

wherein the first monitor receives a change instruction indicating change of a display size of the one image when the multi-monitor screen displays an On-Screen Display (OSD) screen and the one image, and

wherein the monitors change the display size of the one image, according to the change instruction.

3. The multi-monitor according to claim 1 , wherein the monitors form a multi-monitor screen,

wherein the first monitor receives a change instruction indicating change of a display size of the one image when the multi-monitor screen displays the one image and only the first monitor displays an On-Screen Display (OSD) screen, and

wherein the monitors change the display size of the one image, according to the change instruction.

4. The multi-monitor according to claim 1 , wherein the first monitor further includes a storage unit that stores the first region and the first zoom factor calculated based on the number of the monitors and the arrangement of the first monitor, and

wherein the second monitor further includes a storage unit that stores the second region and the second zoom factor calculated based on the number of the monitors and the arrangement of the second monitor.

5. The multi-monitor according to claim 1 , wherein the first display unit displays the first image scaled up according to the first zoom factor, and

wherein the second display unit displays the second image scaled up according to the second zoom factor.

6. The multi-monitor according to claim 1 , wherein each of the first and second zoom factors corresponds to the number of the monitors.

7. The multi-monitor according to claim 1 , wherein the first display unit displays the first image whose size is scaled according to the first zoom factor, and

wherein the second display unit displays the second image whose size is scaled according to the second zoom factor.

8. The multi-monitor according to claim 1 , further comprising:

an On-Screen Display (OSD) function unit that displays an OSD screen on the first display unit, an OSD function of the OSD function unit displaying the pointer on the monitors.

9. The multi-monitor according to claim 8 , wherein a region displayed by each of the monitors is determined by an arbitrary coordinate that is specified by the pointer.

10. The multi-monitor according to claim 1 , wherein the mutually different regions of the one image are determined by an arbitrary coordinate that is specified by the pointer.

11. A monitor device that is one of a plurality of monitors connected in series, the monitors collectively displaying one image by displaying mutually different regions of the one image, respectively, the monitor device comprising:

an acquisition unit that acquires a number of the monitors, an image signal including all of the one image, and a position of a pointer;

a calculation unit that calculates a region to be displayed by the monitor device, of the one image included in the image signal, and a zoom factor of an image corresponding to the region, based on the number of the monitors, arrangement of the monitor device in the serial connection, and the position of the pointer;

a display unit that displays the image corresponding to the region according to the zoom factor such that the monitors display the one image with the position of the pointer being a center; and

a communication unit that outputs the number of the monitors, the image signal including all of the one image, and the position of the pointer to one of the monitors when the one of the monitors is arranged at a subsequent stage of the monitor device.

12. The monitor device according to claim 11 , wherein the monitor device further includes a storage unit that stores the region and the zoom factor calculated based on the number of the monitors and the arrangement of the monitor device in the serial connection.

13. The monitor device according to claim 11 , wherein the display unit displays the image scaled up according to the zoom factor.

14. The monitor device according to claim 11 , wherein the display unit displays the image whose size is scaled according to the zoom factor.

15. A display method for a multi-monitor, the multi-monitor including a plurality of monitors connected in series, the monitors collectively displaying one image by displaying mutually different regions of the one image, respectively, the monitors including first, second, and third monitors, the display method comprising:

acquiring, by the first monitor, a number of the monitors, an image signal including all of the one image, and a position of a pointer, from outside;

calculating, by the first monitor, a first region to be displayed by the first monitor, of the one image included in the an image signal, and a first zoom factor of a first image corresponding to the first region, based on the number of the monitors, arrangement of the first monitor in the serial connection, and the position of the pointer;

displaying, by the first monitor, the first image according to the first zoom factor such that the monitors display the one image with the position of the pointer being a center;

outputting, by the first monitor, the number of the monitors, the image signal including all of the one image, and the position of the pointer to the second monitor arranged at a subsequent stage of the first monitor;

acquiring, by the second monitor, the number of the monitors, the image signal including all of the one image, and the position of the pointer output by the first monitor;

calculating, by the second monitor, a second region to be displayed by the second monitor, of the one image included in the image signal, and a second zoom factor of a second image corresponding to the second region, based on the number of the monitors, arrangement of the second monitor in the serial connection, and the position of the pointer;

displaying, by the second monitor, the second image according to the second zoom factor such that the monitors display the one image with the position of the pointer being the center; and

outputting, by the second monitor, the number of the monitors, the image signal including all of the one image, and the position of the pointer to the third monitor arranged at a subsequent stage of the second monitor.

16. The display method according to claim 15 , wherein the first monitor displays the first image whose size is scaled according to the first zoom factor, and

wherein the second monitor displays the second image whose size is scaled according to the second zoom factor.

Assignments (2)
CHANGE OF NAME Recorded Feb 8, 2021
From: NEC DISPLAY SOLUTIONS, LTD.
To: SHARP NEC DISPLAY SOLUTIONS, LTD.
Reel/Frame 055256/0755 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2015
From: HOSOKAWA, HIROMI
To: NEC DISPLAY SOLUTIONS, LTD.
Reel/Frame 036859/0595 →
Continuity (1)
Related Publication 20160077787A1 · Mar 17, 2016