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United States Patent n9]

Pearce et al.

US005636041A til] Patent Number: [45] Date of Patent:

5,636,041 Jun. 3, 1997

[blocks in formation]

59-208528 11/1984 Japan 345/102

62-145222 6/1987 Japan 359/48

2-18520 1/1990 Japan 345/102

2-124530 5/1990 Japan 345/89

4-106520 4/1992 Japan 359/48

4-174819 6/1992 Japan 359/48

4- 264489 9/1992 Japan 345/102

5- 127635 5/1993 Japan 345/77

6- 130363 5/1994 Japan 345/102

94/12971 6/1994 WIPO 345/147

Primary Examiner—William L. Sikes
Assistant Examiner—Tiep H. Nguyen
Attorney, Agent, or Firm—Haynes and Boone, L.L.P.

[57] ABSTRACT

Method and apparatus for automatically increasing the visibility of an LCD during warm-up thereof is disclosed. In a preferred embodiment, the system of the present invention comprises brightness control circuitry electrically connected to an LCD panel of a portable personal computer (PC) or other battery operated electronic device for controlling the brightness level of the LCD. The brightness control circuitry is also electrically connected to receive a signal indicative of a brightness control level selected by a user using a usersettable control means, such as a brightness control knob located on the device. In operation, on power up of the LCD, the brightness control circuitry increases the LCD brightness to a maximum level, regardless of the brightness level selected by the user. Once the LCD has warmed up, the brightness control circuitry decreases the brightness level of the LCD to the level selected by the user. In one aspect of the invention, the brightness level is decreased incrementally such that its occurrence is virtually undetectable by the user.

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TECHNIQUE FOR INCREASING THE
VISIBILITY OF AN LCD PANEL DURING
WARM-UP THEREOF

TECHNICAL FIELD

The invention relates generally to liquid crystal displays (LCDs) and, more particularly, to a system for increasing the visibility of an LCD of a computer during a warm-up period thereof.

BACKGROUND OF THE INVENTION

Liquid crystal displays (LCDs) are used in portable computers and other electronic devices to display information. LCDs modulate light to create images using selectively transmissive and opaque portions of the display, the selection being controlled by passing electric current through the liquid crystal material. Transmissive-type LCDs are illuminated by an artificial backlight positioned behind the LCD glass to provide the contrast between the light transmissive and opaque portions of the display. An undesirable characteristic of such LCDs is that they typically take a long time to warm up. During its warm-up period, the visibility of an LCD is usually inadequate, due to the low contrast ratio between the light transmissive and opaque portions thereof.

To remedy the visibility problem encountered during LCD warm-up, users will often attempt to counteract the problem by manually increasing the brightness level of the LCD, using a brightness control knob, for example, to a maximum level. Although this does substantially increase the visibility of the LCD, this solution is deficient in that the user will often neglect to return the brightness back to a normal level once the LCD has completely warmed up. Continuous use of the PC with the LCD at maximum brightness consumes a large amount of power and results in the battery of the PC being depleted much more quickly than desired. For example, in a particular portable PC in which the LCD has sixteen different "brightness" levels, operating the PC with the LCD brightness control set to level sixteen consumes twice as much power than if the PC were operated with he LCD brightness control set to level fourteen.

Therefore, what is needed is a system for automatically increasing the visibility of an LCD during warm-up thereof without substantially increasing the amount of power consumed by the LCD after it has warmed up.

SUMMARY OF THE INVENTION

The foregoing problems are solved and a technical advance is achieved by method and apparatus for automatically increasing the visibility of an LCD during warm-up thereof. In a departure from the art, brightness control circuitry of the present invention automatically increases the brightness level of an LCD to a maximum level on power up of the LCD and subsequently incrementally decreases the LCD brightness level to a user-selected level once the LCD has completely warmed up.

In a preferred embodiment, the system of the present invention comprises brightness control circuitry electrically connected to an LCD panel of a portable personal computer (PC) or other battery operated electronic device for controlling the brightness level of the LCD. The brightness control circuitry is also electrically connected to receive a signal indicative of a brightness control level selected by a user using a user-settable control means, such as a brightness control knob, associated with the LCD 12 and located on the device in a user-accessible location.

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In operation, on power up of the LCD, the brightness control circuitry increases the LCD brightness to a maximum level, regardless of the brightness level selected by the user. Once the LCD has warmed up, the brightness control circuitry decreases the brightness level of the LCD to the level selected by the user. In one aspect of the invention, the LCD brightness level is decreased incrementally such that its occurrence is virtually undetectable by the user.

A technical advantage achieved with the invention is that it provides increased LCD visibility on power-up of the LCD automatically and without user intervention.

Another technical advantage achieved with the invention is that it aids in reducing the power consumption of a battery operated device having an LCD-type display by automatically maximizing the brightness of the LCD immediately on power up thereof, thereby deterring a user from manually increasing the brightness to a maximum level and then subsequently neglecting to decrease the brightness to a normal level once the LCD has completely warmed up.

BRIEF DESCRIPTION OF THE DRAWINGS

FIG. 1 is a perspective view of a portable personal computer (PC) embodying features of the present invention.

FIG. 2 is a system block diagram of the portable PC of FIG. 2.

FIG. 3 is a flowchart of the method of the present invention for maximizing the brightness of an LCD panel during warm-up thereof.

DETAILED DESCRIPTION OF THE
PREFERRED EMBODIMENT

FIG. 1 illustrates a portable personal computer (PC) 10 embodying features of the present invention and comprising a keyboard 11, liquid crystal display panel (LCD) 12 and a brightness control knob 14 for enabling the user to adjust the brightness of the LCD 12. As will be described in detail below, in accordance with a feature of the present invention, during a warm-up period of the LCD 12, the brightness of the LCD 12 is maximized, regardless of the brightness level selected by the user via the control knob 14. Subsequent to the warm-up period, the brightness of the LCD is incrementally decreased until it is at the brightness level selected by the user with the brightness control knot 14.

FIG. 2 is a system block diagram of the PC 10 of FIG. 1. In a preferred embodiment, the PC 10 comprises a CPU 200, system RAM 202, brightness control circuitry 204 and other I/O devices 206, including keyboard 11 (FIG. 1) electrically interconnected via a bus 208. The brightness control circuitry is further connected to the LCD 12 via a plurality of control lines, collectively designated by a reference numeral 210. As will be described, a signal indicative of the brightness level selected by the user using the brightness control knob 14 (FIG. 1) (hereinafter "user brightness level signal" or "UBL signal") is transmitted to the brightness control circuitry 204 via the control lines 210. As will be described, on power up of the LCD 12, the brightness control circuitry 204 causes the LCD 12 to operate at its maximum brightness level, regardless of the brightness level selected by the user, as indicated by the UBL signal. Once the LCD 12 has sufficiently warmed-up, as determined by the brightness control circuitry 204 via control lines 210, the brightness control circuitry 204 incrementally decreases the brightness level of the LCD 12 until it reaches the level selected by the user using the knob 14, as described in detail below with reference to FIG. 3.

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