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iPhone 16: Innovative Cooling System to Tackle Excessive Heat

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Apple intends to unveil the iPhone 16 series next year, promising robust performance, astonishing features, and artificial intelligence-related functionalities. This heralds an increased thermal load for the new iPhone. Consequently, the company has opted to employ a novel thermal system designed to dissipate such heat. Let us delve into this system and how it addresses the issue of excess heat.



 iPhone 16 Series



Elevated temperatures pose a substantial challenge for iPhone devices, leading to performance bottlenecks, diminished battery life, and even internal component damage. In the case of the iPhone 16, the new A18 chip within the device may generate excess heat while undertaking demanding tasks such as introducing new features and running resource-intensive games or video editing.

To counteract the excessive heat in the iPhone 16, the leaker Kosutami, via their X account, elucidated that Apple is contemplating the use of graphene. Graphene, a material composed of a single layer of carbon atoms arranged in a hexagonal lattice, possesses exceptional heat dissipation capabilities along with high thermal conductivity. This makes it superior to the currently utilized copper in iPhone heat sinks, rendering it the more suitable choice for mitigating any elevated heat in the device.

Graphene and iPhone Cooling



Apple had previously patented its discovery of the substance necessary for heat dissipation in portable devices. The company now plans to integrate graphene into the iPhone's thermal system. Graphene will be placed in proximity to the processor, effectively diverting and preventing heat buildup.

In conclusion, if this approach is implemented, graphene cooling could significantly impact the design of the iPhone 16. The exceptional thermal conductivity of graphene may allow the iPhone 16 to be thinner and lighter. Furthermore, Apple may explore leveraging the flexibility of graphene to integrate it into various components of the device, enhancing cooling efficiency.

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