This application claims the benefit of Korean Patent Application Nos. 2003-075462, filed Oct. 28, 2003, and 2003-0036801, filed Jun. 9, 2003, in the Korean Intellectual Property Office, the disclosures of which are incorporated herein by reference.
1. Field of the Invention
The present invention relates to a display apparatus and a control method thereof, and more particularly to a display apparatus and a control method thereof improving internal heat circulation efficiency by operating ventilation fans when a display apparatus is installed at a predetermined angle relative to a normal installation position where a longitudinal direction of the display apparatus is perpendicular to a gravitational direction.
2. Description of the Related Art
An internal temperature of a display apparatus rises due to heat radiated from various components according to an operation thereof. Accordingly, heat circulation is required to prevent the components from being damaged due to rising internal temperature of the display apparatus.
As shown in
However, as shown in
Accordingly, it is an aspect of the present invention to provide a display apparatus and a control method of the display apparatus improving internal heat circulation by operating a ventilation fans when the display apparatus is installed at a predetermined angle relative to a normal installation position where a longitudinal direction of the display apparatus is perpendicular to a gravitational direction.
Additional aspects and/or advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
The foregoing and/or other aspects of the present invention are achieved by providing a display apparatus comprising a rear cover provided with air inflow holes and air outflow holes spaced from each other, including: ventilation fans circulating internal air of the display apparatus; a plurality of heat sinks which are thermal conductors of heat radiated from internal components of the display apparatus; a rotation position detector detecting a rotating position of the display apparatus; and a controller operating the ventilation fans on a basis of a detection signal of the rotation position detector when the display apparatus is installed at a predetermined angle relative to the normal installation position where a longitudinal direction of the display apparatus is perpendicular to a gravitational direction.
According to an aspect of the invention, the display apparatus further comprises a temperature detector detecting an internal temperature of the display apparatus, wherein the controller operates the ventilation fans on a basis of a detection signal of the temperature detector when the internal temperature of the display apparatus is greater than a predetermined temperature.
According to an aspect of the invention, the ventilation fans are provided between the plurality of heat sinks.
According to another aspect of the present invention, the above and/or other aspects may be also achieved by providing a control method of a display apparatus including a rear cover provided with air inflow holes and air outflow holes spaced from each other, including: detecting a position of the display apparatus; and operating the ventilation fans when the display apparatus is installed at a predetermined angle relative to a normal installation position where a longitudinal direction of the display apparatus is perpendicular to a gravitational direction.
According to an aspect of the invention, the control method of the display apparatus further includes: detecting an internal temperature of the display apparatus; and operating the ventilation fans if the internal temperature of the display apparatus is over a predetermined temperature, when the display apparatus is installed at a predetermined angle relative to the normal installation position where the longitudinal direction of the display apparatus is perpendicular to the gravitational direction.
The above and/or other aspects and advantages of the present invention will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompany drawings of which:
Reference will now be made in detail to the embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to like elements throughout. The embodiments are described below in order to explain the present invention by referring to the figures.
As shown in
As shown in
The heat sinks 39 are radiation plates or radiation fins made of aluminum or copper material absorbing and discharging heat radiated from components such as a chipset. Generally, when the display apparatus 3 is installed in a normal installation position where a longitudinal direction of the display apparatus 3 is perpendicular to a gravitational direction, the heat sinks 9 are provided along a vertical direction of the display apparatus 3. Herein, in a case that the display apparatus 3 is installed in the normal installation position, as the heat generated by the components of the display apparatus 3 is discharged into the air inside of the display apparatus 3 thus increasing an internal temperature, cold air outside the display apparatus 3 flows into the display apparatus 3 through the air inflow holes 33. Also, the heated air inside the display apparatus 3 is discharged out through the air outflow holes 35. Accordingly, the internal temperature of the display apparatus 3 is controlled by natural heat circulation according to convection.
However, as shown in
Herein, the ventilation fans 37 are used for artificial heat circulation. The ventilation fans 37 are provided on a proper position so that the heat radiated from the heat sinks 39 can be dissipated to the outside through the air outflow holes 35 and not confined within the heat sinks 39. As an example, the ventilation fans 37 are provided on the middle of the display apparatus 3 or on positions between the plurality of heat sinks 39, respectively. This way, the heat radiated from the components inside the display apparatus 3 can be dissipated to the outside by the artificial heat circulation created by the ventilation fans 37 without being confined within the heat sinks 39. Herein, the number of the ventilation fans 37 increases accordingly as the size of the display apparatus 3 increases.
The ventilation fans 37 operate only when the display apparatus 3 is installed in the rotated installation position. In other words, when the display apparatus 3 is installed in the normal installation position, natural heat circulation occurs through the heat sinks 39 provided along the vertical direction of the display apparatus 3, the air inflow holes 33, and the air outflow holes 35. Further when the display apparatus 3 is installed in the rotated installation position, the artificial heat circulation occurs through the ventilation fans 37. Accordingly, as the operating duration of the ventilation fans 37 decreases, the time that the user is exposed to the noise of the ventilation fans 37 decreases too.
As shown in
The temperature detector 73 detects an internal temperature of the display apparatus 3 and transfers the internal temperature to the controller 75.
The rotation position detector 71 detects a position of the display apparatus 3 and transfers the position of the display apparatus 3 to the controller 75.
For example, the rotation position detector 71 comprises a pendulum provided along a gravitational direction to function as a switch and signal output pins provided in a transverse direction to generate a signal of high level or low level. If the rotation position detector 71 is tilted toward the left or right side of the gravitational direction past a predetermined angle, the pendulum contacts a signal output pin so that the signal output pin is connected to a grounding terminal of the rotation position detector 71. Herein, the rotation position detector 71 outputs a low level signal. If the display apparatus 3 returns to a normal installation position, the rotation position detector 71 outputs a high level signal as the signal output pin is detached from the grounding terminal.
Also, when the controller 75 receives a signal from the rotation position detector 71 notifying that the display apparatus 3 is in the rotated installation position, the controller 75 operates the ventilation fans 37 if the temperature detector 73 detects that the internal temperature of an internal space exceeds a predetermined temperature.
As shown in
The controller 75 comprises a micro-computer 87, a second BJT 83, and a third BJT 85. When the micro-computer 87 receives a signal from the rotation position detector 71 notifying that the display apparatus 3 is in the rotated installation position, and a signal from the temperature detector 73 notifying that the internal temperature of the internal space is greater than the predetermined temperature, the micro-computer 87 outputs the high level signal to the second BJT 83. Subsequently, as the second BJT 83 operates by the high level signal, the third BJT 85 operates with a base terminal of the third BJT 85 applied with the voltage. The ventilation fans 37 operate according to the operation of the third BJT 85.
Hereinbelow, a control flow of the embodiment of the present invention will be described in reference with
At operation S11, the rotation position detector 71 detects an installation status of the display apparatus 3. If the rotation position detector 71 detects that the display apparatus 3 is in the rotated installation position at operation S13, the rotation position detector 71 transfers a predetermined signal to the controller 75. The rotation position detector 71 includes the pendulum provided along the gravitational direction functioning as a switch and the signal output pins provided along the transverse direction generating high or low level signals. For example, if the rotation position detector 71 is tilted at a predetermined angle relative to the gravitational direction, the signal output pin provided along the tilted direction contacts the pendulum and gets connected to the grounding terminal of the rotation position detector 71 to output the low level signal.
The temperature detector 73 detects the internal temperature of the display apparatus 3 at operation S17, and transfers a predetermined signal to the controller 75 when the internal temperature is greater than a predetermined temperature.
At operation S19, the controller 75 turns on the ventilation fans 37 when the controller 75 receives a signal from the rotation position detector 71 notifying that the display apparatus 3 is in the rotated installation position and a signal from the temperature detector 73 notifying that the internal temperature of the display apparatus 3 is over the predetermined temperature.
Accordingly, when the display apparatus 3 is installed in the normal installation position, natural heat circulation occurs with the aid of the air inflow holes 33 and the air outflow holes 35. Meanwhile, when the display apparatus 3 is installed in the rotated installation position, artificial heat circulation is created by the ventilation fans 37. Accordingly, a time duration during which the user is exposed to the noise of the ventilation fans 37 decreases. Also, since the ventilation fans 37 are provided on the middle of the display apparatus 3 and on positions between the plurality of heat sinks 39, the heat radiated from the components inside the display apparatus 3 is discharged out by the artificial heat circulation created by the ventilation fans 37, and not confined within the heat sinks 39. Accordingly, overall heat circulation efficiency inside the display apparatus 3 is improved.
As described above, the embodiment of the present invention provides a display apparatus and a control method of the display apparatus operating the ventilation fans when the display apparatus is installed beyond a predetermined angle relative to the gravitational direction, and improving the internal heat circulation efficiency.
The aforementioned method of controlling air inflow in a display apparatus may be embodied as a computer program that can be run by a computer, which can be a general or special purpose computer. Thus, it is understood that the display apparatus can be such a computer. Computer programmers in the art can easily reason codes and code segments, which constitute the computer program. The program is stored in a computer readable medium readable by the computer. When the program is read and run by a computer, the method of controlling air inflow in the display apparatus is performed. Here, the computer-readable medium may be a magnetic recording medium, an optical recording medium, a carrier wave, firmware, or other recordable media.
Although a few embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Number | Date | Country | Kind |
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2003-36801 | Jun 2003 | KR | national |
2003-75462 | Oct 2003 | KR | national |