Laptop and temperature display method thereof
Patent Information
- Authority / Receiving Office
- TW · TW
- Patent Type
- Patents
- Current Assignee / Owner
- ACER INC
- Filing Date
- 2025-07-07
- Publication Date
- 2026-08-01
Smart Images

Figure TWG2TB001904050_001 
Figure TWG2TB001904050_002 
Figure TWG2TB001904050_003
Abstract
Claims
1. A method for displaying temperature in a notebook computer, comprising: A coordinate system is established for a keyboard backlight unit, the keyboard backlight unit including a plurality of light-emitting points; in the coordinate system, a heat source position and a heat source range of at least one heat source are defined; the temperature of one of the heat sources is measured; based on the heat source temperature and position, a temperature distribution map of the keyboard backlight unit is analyzed, the temperature distribution map covering the keyboard backlight unit and showing different temperatures at different positions; based on the temperature distribution map, a color distribution map of the keyboard backlight unit is generated; and based on the color distribution map, the light-emitting points are controlled.
2. The temperature display method for a notebook computer as described in claim 1, wherein the heat source range is smaller than the backlight range of one of the keyboard backlight units.
3. The method for displaying the temperature of a notebook computer as described in claim 1, wherein the step of analyzing the temperature distribution map includes: Obtain the location, range, temperature, and thermal diffusion radius of the heat source; And based on the location of the heat source, the range of the heat source, the temperature of the heat source, and the thermal diffusion radius, the temperature distribution map is analyzed using a Gaussian diffusion algorithm.
4. The method for displaying the temperature of a notebook computer as described in claim 1, wherein the step of analyzing the temperature distribution map includes: Input the location, range, and temperature of the heat source into a temperature inference model; And the temperature distribution map of the heat source is inferred from the temperature inference model.
5. The method for displaying temperature on a notebook computer as described in claim 1, wherein the step of generating the color distribution map includes: Input the temperature distribution map into a color inference model; And the color distribution map is inferred from the color inference model.
6. The temperature display method for a notebook computer as described in claim 1, wherein the steps of measuring the temperature of the heat source, analyzing the temperature distribution map, generating the color distribution map, and controlling the light-emitting points are repeatedly performed to reflect changes in the temperature of the heat source.
7. A notebook computer, comprising: A keyboard backlight unit has a coordinate system, the keyboard backlight unit includes: a plurality of light-emitting points; and a control unit for controlling the light-emitting points; at least one heat source, the heat source position and heat source range of which are defined in the coordinate system; at least one measurement unit for measuring the heat source temperature; a temperature distribution analysis unit for analyzing a temperature distribution map of the keyboard backlight unit based on the heat source temperature, the temperature distribution map covering the keyboard backlight unit; and a color distribution generation unit for generating a color distribution map of the keyboard backlight unit based on the temperature distribution map, the control unit controlling the light-emitting points based on the color distribution map.
8. The notebook computer as described in claim 7, wherein the heat source range is smaller than the backlight range of one of the keyboard backlight units.
9. The notebook computer as described in claim 7, wherein the temperature distribution analysis unit analyzes the temperature distribution map based on the location of the heat source, the range of the heat source, the temperature of the heat source, and a heat diffusion radius using a Gaussian diffusion algorithm.
10. The notebook computer as claimed in claim 7, wherein the temperature distribution analysis unit analyzes the location of the heat source, the range of the heat source, and the temperature of the heat source input into a temperature inference model, and infers the temperature distribution map using the temperature inference model.
11. The notebook computer as claimed in claim 7, wherein the color distribution generation unit inputs the temperature distribution map into a color inference model and infers the color distribution map using the color inference model.
12. The notebook computer as described in claim 7, wherein the measurement unit measures the temperature of the heat source, the temperature distribution analysis unit analyzes the temperature distribution map, the color distribution generation unit generates the color distribution map, and the control unit controls the actions of the light-emitting points to reflect changes in the temperature of the heat source.