IP Library › Granted Patent US 11,070,776
Granted Patent B2
US 11,070,776 · App. 15/138,537 · Granted Jul 20, 2021

Light source drive device, light source drive method, and display apparatus

Inventors: Nobuki Nakajima (Yokohama, JP); Takatsugu Aizaki (Yokohama, JP)
Assignee: JVC KENWOOD Corporation
H04N9/3155G03B21/006H04N9/312H04N9/3161H04N9/3167
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 11,070,776
App. No.
15/138,537
Granted
Jul 20, 2021
Kind
B2
Abstract

Divided periods by dividing a frame of a video signal are produced. A display element is ON-OFF controlled on a pixel-by-pixel basis according to a video signal in accordance with the divided periods preassigned to each gradation. The light amount of a light source for emitting light to the display element is controlled so that a first light amount in a first divided period corresponding to the lowest gradation except black display becomes a light amount lower than a second light amount in a second divided period other than the first divided period.

Claims (39)

1. A light source drive device comprising:

a divided period production unit configured to produce divided periods as subframes by dividing a frame period of a video signal; and

a light source control unit configured to drive a light source for emitting light to display elements that are ON-OFF controlled in each of the subframes according to the video signal on a pixel-by-pixel basis to represent respective gradations of the video signal, wherein

a first subframe corresponding to a lowest gradation of the video signal except black display and second subframes being other than the first subframe, and

the light source control unit is further configured to control a first light amount emitted by the light source before being modulated by the display elements in the first subframe to become a light amount before being modulated by the display elements which is more than the light amount for black display and lower than a second light amount emitted by the light source before being modulated by the display elements in the second subframes, wherein

any gradation except the black display is generated by both of an ON-OFF control of the display elements in each of the subframes and a light amount control of the light amount emitted by the light source in each of the subframes such that the first light amount is emitted in all the subframes and the second light amount is emitted in the subframes except the first subframe, and which is controlled to be reduced uniformly at a predetermined reduction ratio in the first subframe, and

a minimum resolution at any gradation value except the black display is calculated by an expression:

L ′( n )=(( b×n −( b−a ))/( b×n ))× L ( n )

wherein a is the first light amount, b is the second light amount, n is a gradation value more than 0, and L(n) is the minimum resolution in a case in which the first light amount and the second light amount are the same and is assumed to be 1,

controlled to be less than 1 and to become smaller as the gradation value becomes smaller, and

controlled to change a range of the gradation value for which a predetermined improvement of a display quality in a darker image area can be obtained by changing a characteristic of a curve which shows a relationship between the gradation value and a rate L′(n)/L(n) by controlling the first light amount.

2. The light source drive device according to claim 1 ,

wherein the light source control unit is further configured to control the light amount of the light source to become the first light amount in one or more of the second subframes following the first subframe.

3. A light source drive method comprising:

producing divided periods as subframes by dividing a frame period of a video signal; and

driving a light source for emitting light to display elements that are ON-OFF controlled in each of the subframes according to the video signal on a pixel-by-pixel basis to represent respective gradations of the video signal, wherein

driving the light source, a first subframe corresponding to a lowest gradation except black display and second subframes being other than the first subframe, and controlling a first light amount emitted by the light source before being modulated by the display elements in at least the first subframe to become a light amount before being modulated by the display elements which is more than the light amount for black display and lower than a second light amount emitted by the light source before being modulated by the display elements in the second subframes, wherein

any gradation except the black display is generated by both of an ON-OFF control of the display elements in each of the subframes and a light amount control of the light amount modulated by the display elements in each of the subframes such that the first light amount is emitted in all the subframes and the second light amount is emitted except the first subframe, and which is controlled to be reduced uniformly at a predetermined reduction ratio in the first subframe, and

a minimum resolution at any gradation value except the black display is calculated by an expression:

L ′( n )=(( b×n −( b−a ))/( b×n ))× L ( n )

wherein a is the first light amount, b is the second light amount, n is a gradation value more than 0, and L(n) is the minimum resolution in a case in which the first light amount and the second light amount are the same and is assumed to be 1,

controlled to be less than 1 and to become smaller as the gradation value becomes smaller, and

controlled to change a range of the gradation value for which a predetermined improvement of a display quality in a darker image area can be obtained by changing a characteristic of a curve which shows a relationship between the gradation value and a rate L′(n)/L(n) by controlling the first light amount.

4. A display apparatus comprising:

a light source;

display elements configured to modulate light emitted from the light source according to a video signal;

a divided period production unit configured to produce divided periods as subframes by dividing a frame period of the video signal;

a drive unit configured to control ON and OFF states of each pixel of the display elements in each of the subframes according to the video signal to represent respective gradations of the video signal; and

a light source control unit configured to drive the light source, wherein

the light source control unit is further configured to control, a first subframe corresponding to a lowest gradation except black display and second subframes being other than the first subframe, a first light amount emitted by the light source before being modulated by the display elements in at least the first subframe to become a light amount before being modulated by the display elements which is more than the light amount for black display and lower than a second light amount emitted by the light source before being modulated by the display elements in the second subframes, wherein

any gradation except the black display is generated by both of an ON-OFF control of the display elements in each of the subframes and a light amount control of the light amount modulated by the display elements in each of the subframes such that the first light amount is emitted in all the subframes and the second light amount is emitted except the first subframe, and which is controlled to be reduced uniformly at a predetermined reduction ratio in the first subframe, and

a minimum resolution at any gradation value except the black display is calculated by an expression:

L ′( n )=(( b×n −( b−a ))/( b×n ))× L ( n )

wherein a is the first light amount, b is the second light amount, n is a gradation value more than 0, and L(n) is the minimum resolution in a case in which the first light amount and the second light amount are the same and is assumed to be 1,

controlled to be less than 1 and to become smaller as the gradation value becomes smaller, and

controlled to change a range of the gradation value for which a predetermined improvement of a display quality in a darker image area can be obtained by changing a characteristic of a curve which shows a relationship between the gradation value and a rate L′(n)/L(n) by controlling the first light amount.

5. The display apparatus according to claim 4 ,

wherein the light source control unit is further configured to control the light amount of the light source to become the first light amount in one or more of the second subframes following the first subframe.

6. The display apparatus according to claim 4 , wherein the drive unit is further configured to control the ON and OFF states of the pixels in units of blocks of the pixels for each of the gradations of the video signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2016
From: NAKAJIMA, NOBUKI; AIZAKI, TAKATSUGU
To: JVC KENWOOD CORPORATION
Reel/Frame 038383/0881 →
Priority Claims (1)
JP JP2015-094023 · May 1, 2015 · national
Continuity (1)
Related Publication 20160323549A1 · Nov 3, 2016