Thermal Sticker For Cooling Hot Spots In Cellular Phones
20200146175 ยท 2020-05-07
Inventors
Cpc classification
H01L23/34
ELECTRICITY
H05K7/2029
ELECTRICITY
International classification
Abstract
A removable thermal sticker secured to the surface of a cellular phone for extraction of heat from the cellular phone. The thermal sticker is thin and sized to be conveniently carried. The thermal sticker is adhered to the cellular phone at its hot spot for maximum efficiency. An optional feature employs thermal strips that indicate when the electronic device is exceeding a temperature threshold.
Claims
1. A detachable thermal sticker for cellular phones, comprising: a detachable thermal sticker sized to fit a hotspot on an cellular phone, such that when the thermal sticker is in contact with the hot spot, heat is transferred from the hotspot to the thermal sticker, the thermal sticker further comprising: an insulation layer facing away from the cellular phone and attached to a core layer, the insulation layer comprised of insulating material and prevents heat external to the cellular phone from entering the thermal sticker; the core layer comprised of heat absorbing material; a heat transfer layer attached to the core layer, the heat transfer layer having thermal conductivity to transfer heat from the cellular phone to the core layer; an attachment layer attached to heat transfer layer, the attachment layer removably secures the thermal sticker to the cellular phone; whereby the core layer transfers excessive heat away from the hotspot on the cellular phone to the core layer.
2. A thermal sticker, as in claim 1, wherein: the core layer is comprised of phase change material.
3. A thermal sticker, as in claim 2, wherein: the insulation layer secured to the core layer prevents heat external to the cellular phone from warming the core layer.
4. A thermal sticker, as in claim 2, further comprising: a heat transfer layer secured to the surface of the core layer is comprised of material having thermal conductivity.
5. A thermal sticker, as in claim 4, wherein: the heat transfer layer is substantially comprised of metalized Mylar.
6. A thermal sticker, as in claim 3, wherein: the insulation layer is substantially comprised of Lumira Aerogel.
7. A thermal sticker, as in claim 2, wherein: the phase change material in the core layer is substantially comprised of graphine nano-platelets and polyaniline material.
8. A thermal sticker, as in claim 1, wherein: the attachment layer on the proximal surface of the thermal sticker is an adhesive.
9. A method of extracting heat from a hotspot on cellular phones, including the steps of: detachably attaching a thermal sticker over a hotspot on a cellular phone; and using phase change material in the thermal sticker as an active heat extraction material such that when the thermal sticker is in contact with the hot spot, heat is transferred from the hotspot into the phase change material in the thermal sticker; whereby the phase change material transfers heat from the hotspot on the cellular phone to the thermal sticker.
10. A method, as in claim 9, including the additional step of: using graphine nano-platelets and polyaniline material as the phase change material.
11. A method, as in claim 10, including the additional step of: using a layer of material having a high thermal conductivity as an intermediary layer between the phase change material and the cellular telephone.
12. A method, as in claim 11, including the additional step of: using metalized Mylar as the layer of material having thermal conductivity.
13. A method, as in claim 11, including the additional step of: using an adhesive attachment layer between the intermediary layer and the cellular phone such that the thermal sticker is removably attached to a cellular phone.
14. A method, as in claim 11, including the additional step of: using Lumira Aerogel to insulate the surface of the thermal sticker that does not come in contact with the cellular phone.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0015] Prior to a discussion of the figures, a general overview of the invention will be provided. The invention provides thermal stickers that can be secured to the surface of a cellular phone much like a Band-Aid secures to an individual's skin. The thermal stickers are thin and lightweight which allows multiple thermal stickers to be carried for use as needed. When a user determines that the cellular phone in use is running hot or beginning to overheat, the thermal sticker is secured to the electronic device for the purpose of transferring heat out of the device. Likewise, an optional thermal strip can be attached to the cellular phone to indicate its temperature. Thermal strips are well known in the art.
[0016] An additional advantage of using thermal stickers that are adhered to the surface of the cellular phone is that the thermal sticker can be applied to the surface at the precise point where heat is greatest rather than applying the pad to the entire device such that it covers areas that do not need cooling. The thermal stickers provide an extended period of time to prevent electronic devices from overheating. This can be important when the device is in a hostile environment, such as outdoors in hot weather.
[0017] The physical size of the thermal sticker is an important advantage of the invention because it is very thin and lightweight. This allows multiple thermal stickers to be carried so that the cooling time can be extended for longer periods of time. The small size of the thermal stickers allows them to be conveniently carried in a computer bag, a phone cover, a briefcase, a wallet, a pocket, etc., until they are needed.
[0018] In a preferred embodiment, the thermal stickers are constructed of thermal-composites and insulation that serve to transfer excess heat from the cellular phone to bring the devices temperature into its thermal operating profile range.
[0019] A preferred embodiment uses chemical thermal stickers that the user activates when needed. The chemical reaction in the thermal stickers provides cooling to the cellular phone when they are attached to the cellular phone. An advantage of this embodiment is that it does not require any external power and requires a minimum amount of space. Preferably, the thermal sticker would be 1/16 of an inch thick. However, the thickness can vary based on the amount of cooling capacity desired.
[0020] Depending on the type of cellular phone being used, the surface area will vary. The size selected by the user would depend on the particular cellular phone in question. Of course, thermal stickers for smaller devices would require less surface area to be covered. The advantage of a chemical-based thermal sticker is that it does not require any external power source. Once the chemical reaction is complete, and the thermal sticker starts to decline in effectiveness, it can be peeled off of the surface of the cellular phone and replaced with a fresh thermal sticker. Being able to replace the thermal stickers at will allows a cellular phone to have an extended cooling period when traveling or in a hostile outdoor environment.
[0021] In a preferred embodiment, the thermal sticker is fabricated using phase change material (PCM) that changes from solid to liquid and then back for the purpose of storing and releasing large amounts of thermal energy. In addition, thermal composites can be used that combine PCMs with other solid structures, such as copper mesh immersed in paraffin. PCMs have a high heat of fusion. Because of that, they change from solid to liquid based on exposure to varying levels of heat. The process of melting and solidifying at a certain temperatures allows PCMs to store and release significant amounts of thermal energy. Heat is absorbed or released when the material changes between solid and liquid states.
[0022] The preferred embodiment envisions an optional insulation layer on the surface of the thermal sticker (the distal surface) that is opposite to the surface in contact with the device (the proximal surface). The preferred embodiment uses commercially available Lumira aerogel in particle or pellet form. The insulation layer is preferably fabricated with Lumira aerogel and insulates the thermal strip from the outside environment.
[0023] In addition, the proximal surface of the thermal sticker preferably has a metalized Mylar or other suitable foil material to maximize heat transfer from the cellular phone to the core layer of the thermal sticker. Preferably, the metalized Mylar or other suitable foil material is secured to the surface of the cellular phone with an adhesive material or other suitable means that allow the thermal sticker to be removably attached to the cellular phone.
[0024] The thermal sticker structure has a core layer of PCM material between the distal and proximal layers of the thermal sticker. The core layer is fabricated from lightweight polyaniline, commercially available from Sigma-Aldrich, and graphene nano-platelets, commercially available from xGnP.
[0025] The thermal sticker can be attached to a cellular phone by any suitable means, such as adhesive, double stick tape, etc.
[0026] An optional feature of the invention provides an integrated liquid crystal thermometer that provides the user with the visual indication of the current temperature of the electronic device. Liquid crystal thermometers are commercially available from a wide variety of sources, and are typically encased in a plastic strip that changes color to indicate different temperature ranges. They provide an advantage in that they are small, thin, and lightweight. They can be integrated with the thermal sticker or installed as a separate unit.
[0027] Having discussed the invention in general, we turn now to a detailed discussion of the figures.
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[0032] While specific embodiments have been discussed to illustrate the invention, it will be understood by those skilled in the art that variations in the embodiments can be made without departing from the scope and spirit of the invention. The types of materials used can vary, the method of attachment can vary, etc. For example, the phase change material can be any PCM material and does not have to be limited to the particular PCM material used above. The material used to fabricate the insulating layer and the heat transfer layer can vary. Therefore, the invention shall be limited solely to the scope of the claims.