PORTABLE ELECTRONIC DEVICE
20170220081 ยท 2017-08-03
Inventors
- Yung-Hsiang Wang (Taoyuan City, TW)
- LI-HSUN CHANG (Taoyuan City, TW)
- Ting-An Kuo (Taoyuan City, TW)
- Cheng-Te Chen (Taoyuan City, TW)
Cpc classification
G06F1/1635
PHYSICS
International classification
Abstract
A portable electronic device including a shell, a cover plate, a battery module, a heat generating element and a heat pipe. The shell includes an arc-shaped surface. The cover plate and the shell jointly define an accommodating space. The battery module is disposed in the accommodating space, and the battery module and the arc-shaped surface have a gap therebetween. The heat generating element is disposed in the accommodating space. The heat pipe is disposed in the gap and thermally coupled to the heat generating element. Moreover, the battery module also includes a stepped groove, and the heat pipe is disposed in the stepped groove.
Claims
1. A portable electronic device, comprising: a shell, comprising an arc-shaped surface; a cover plate, jointly defining an accommodating space with the shell; a battery module, disposed in the accommodating space, wherein a gap exists between the battery module and the arc-shaped surface; a heat generating element, disposed in the accommodating space; a heat pipe, disposed in the gap, and thermally coupled to the heat generating element; and a circuit board, disposed in the accommodating space, wherein the heat generating element is disposed on the circuit board, and the heat pipe is extended between the circuit board and the heat generating element.
2. (canceled)
3. The portable electronic device as claimed in claim 1, wherein the circuit board is disposed between the battery module and the heat pipe.
4. The portable electronic device as claimed in claim 1, wherein the circuit board is disposed adjacent to a side surface of the battery module.
5. The portable electronic device as claimed in claim 1, wherein the battery module leans against the shell, wherein an upper surface of the battery module and the arc-shaped surface define the gap.
6. The portable electronic device as claimed in claim 1, further comprising: a display module, disposed in the accommodating space and located between the cover plate and the battery module.
7. The portable electronic device as claimed in claim 1, wherein the battery module comprises an extending portion protruding from an upper surface of the battery module, wherein a top surface of the extending portion and the arc-shaped surface define the gap.
8. A portable electronic device, comprising: a shell; a cover plate, jointly defining an accommodating space with the shell; a battery module, comprising an extending portion protruding from a surface of the battery module for jointly defining a stepped groove with the surface; a heat generating element, disposed in the accommodating space; and a heat pipe, disposed in the stepped groove and thermally coupled to the heat generating element.
9. The portable electronic device as claimed in claim 8, wherein the surface and the stepped groove face the cover plate.
10. The portable electronic device as claimed in claim 8, wherein the shell comprises an arc-shaped surface.
11. The portable electronic device as claimed in claim 10, wherein the surface and the stepped groove face the arc-shaped surface, and a top surface of the extending potion leans against the arc-shaped surface.
12. The portable electronic device as claimed in claim 8, further comprising: a circuit board, disposed in the accommodating space, wherein the heat generating element is disposed on the circuit board.
13. The portable electronic device as claimed in claim 12, wherein the circuit board is disposed adjacent to a side surface of the battery module.
14. The portable electronic device as claimed in claim 8, further comprising: a display module, disposed in the accommodating space and located between the cover plate and the battery module.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
DESCRIPTION OF EMBODIMENTS
[0015] Referring to
[0016] Based on such configuration, since the shell 110 of the present embodiment is the arc-shaped shell, and the inner surface thereof is the arc-shaped surface 112, and an upper surface of the battery module 130 is a plane, the gap G1 as shown in
[0017] Furthermore, the portable electronic device 100 may further include a circuit board 160 and a display module 170, where the circuit board 160 is disposed in the accommodating space S1, and the heat generating element 140 is, for example, a central processing unit (CPU) of the portable electronic device 100, and is disposed on the circuit board 160. The number of the heat generating element 140 can be plural, which are all disposed on the circuit board 160 and are thermally coupled to the heat pipe 150. The display module 170 is disposed in the accommodating space S1 and is located between the cover plate 120 and the battery module 130. In the present embodiment, the cover plate 120 is, for example, a transparent cover glass, which may have a touch-control function, and cover the display module 170 to provide protection, and a user may see images displayed by the display module 170 through the transparent cover plate 120.
[0018] In the present embodiment, the circuit board 160 and the heat generating element 140 disposed thereon can also be disposed in the gap G1 between the shell 110 and the battery module 130. To be specific, the circuit board 160 can be disposed between the battery module 130 and the heat pipe 150 as shown in
[0019] Referring to
[0020] With such configuration, since the circuit board 160 is disposed adjacent to the side surface of the battery module 130 instead of being stacked on top of the battery module, the battery module 130 can be configured with the extending portion 132 extending towards the arc-shaped circuit 112, such that a volume of the battery module 130 can be increased without increasing an overall thickness of the portable electronic device 100a, so as to improve the battery capacity and endurance of the probable electronic device 100a. Moreover, in the present embodiment, the heat pipe 150 can be disposed in the gap G1 between the arc-shaped surface 112 of the shell 110 and the top surface 138 of the extending portion 132. In this way, the portable electronic device 100a of the present embodiment may be configured with the heat pipe 150 without additionally increasing the overall thickness, by which the heat dissipation efficiency of the portable electronic device 100a is improved, and an internal space usage of the portable electronic device 100a can be more compact.
[0021] Besides, in the present embodiment, the stepped groove 134 of the battery module 130 can be symmetrically disposed as shown in
[0022] Referring to
[0023] In the present embodiment, configuration of the circuit board can be similar to the configuration method of
[0024] According to such configuration, based on the stepped design of the battery module 130, the heat pipe 150 is disposed in the stepped groove 134 of the battery module 130. Therefore, the portable electronic device 100b of the present embodiment may be configured with the heat pipe 150 without additionally increasing the overall thickness thereof, by which heat dissipation efficiency of the portable electronic device 100b is improved, and an internal space usage of the portable electronic device 100b can be more compact.
[0025] Referring to
[0026] In the present embodiment, configuration of the circuit board can be similar to the configuration of
[0027] With such configuration, the battery module 130 of the present embodiment is configured with the extending portion 132 extending towards the arc-shaped circuit 112 of the shell 110, such that a volume of the battery module 130 can be increased without increasing an overall thickness of the portable electronic device 100c, so as to improve the battery capacity and endurance of the probable electronic device 100c. Moreover, the portable electronic device 100c of the present embodiment may be configured with the heat pipe 150 without additionally increasing the overall thickness thereof, by which heat dissipation efficiency of the portable electronic device 100c is improved, and an internal space usage of the portable electronic device 100c can be more compact.
[0028] Besides, in the present embodiment, the stepped groove 134 of the battery module 130 can be symmetrically disposed as shown in
[0029] In summary, the shell of the portable electronic device of the invention has an arc-shaped surface, so that the arc-shaped surface of the shell and an upper surface of the battery module form a gap therebetween, and the heat pipe is disposed in the gap. Moreover, the battery module of the portable electronic device may also adopt a stepped-shaped design, and the heat pipe is disposed in the stepped groove of the battery module. In this way, the portable electronic device of the invention may be configured with the heat pipe without additionally increasing an overall thickness thereof, by which the heat dissipation efficiency of the portable electronic device is improved, and the internal space usage of the portable electronic device can be more compact.
[0030] It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.