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Leaf Cell Phone Concept

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Leaf has a unique natural design reminiscent of a leaf in spring.

The eco plastics provide sensational haptics and substantial convenience. The invisible OLED display is embedded in a translucent lens encasement, giving the phone a futuristic touch. [link]

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Bend Cell Phone Concept

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Why bother with one screen when you can have two for probably double the price?

Designer Andy Kurovets presents his “Bend Mobile” concept. He thinks turning on a device and having it grow to nearly double its size will really be attractive to some people. [link]

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Sky Cell Phone Concept

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“Sleek & Slim” concept phone with luminous blue touchpad. [link]

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Maple Cell Phone Concept

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Hyun Jin Yoon and Eun Hak Lee created a camera phone concept covered in thin wooden film,

with touch sensitive buttons that light up through the housing when you touch the phone. [link]

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The Scroll Cell Phone Concept

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his concept cell phone comes with multimedia player, Wi-Fi connectivity, built-in camera/camcorder, computer functions, Bluetooth and e-paper display to deliver high-end functions.

The Scroll would use Windows XP or Vista as the operating system and would allow the user to capture 10MP pictures or use the 1080p camcorder function. [link]

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Ply Cell Phone Concept

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Ply’s name is taken from the design of multilayered plywood,
and each layer has its own very distinct function, ranging from a photo printer to game controller to mini digital projector. [link]

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LINC “Green” Cell Phone Concept

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LINC (The Lifecycle Concept Phone) is a typical touch screen smart phone with all the connectivity and features you come to expect. Its got a cell phone, a media player, a web browser, GPS, downloadable content, Bluetooth, wifi, the latest 3G network. But here’s the catch.

LINC is leased to the user as a service, not a product. The user holds on to the device for about a year, and when the next generation of hardware comes along, the user receives a new LINC in the mail. The LINCs inform the user of their hardware upgrade, wirelessly transfer the digital account, and before being shipped back to the manufacturer, LINC informs the user of the next part of its journey. [link]

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Nokia 888 Cell Phone Concept

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Created by Tamer Nakisci, a Turkish student,

for the Nokia Benelux Open Design Awards, this phone offers a malleable interface that can be bent, twisted and wrapped into different shapes like a wristband. [link]

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Nokia Morph Cellphone Concept Using Nanotechnology

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Nokia Research Center (NRC) and the University of Cambridge (UK) have jointly developed the Morph cellphone using nanotechnology, delivering the ultimate functionality including flexible materials, transparent electronics as well as self-cleaning surfaces. It’s the concept phone which has been designed to demonstrate how future mobile devices might be stretchable and flexible.

“We hope that this combination of art and science will showcase the potential of nanoscience to a wider audience. The techniques we are developing might one day mean new possibilities in terms of the design and function of mobile devices,” said Dr. Tapani Ryhanen, Head of the NRC Cambridge UK laboratory, Nokia. “The research we are carrying out is fundamental to this as we seek a safe and controlled way to develop and use new materials.”

Fantastic Opportunities For The Morph Concept:

* Newly-enabled flexible and transparent materials blend more seamlessly with the way we live
* Devices become self-cleaning and self-preserving
* Transparent electronics offering an entirely new aesthetic dimension
* Built-in solar absorption might charge a device, whilst batteries become smaller, longer lasting and faster to charge
* Integrated sensors might allow us to learn more about the environment around us, empowering us to make better choices

“Developing the Morph concept with Nokia has provided us with a focus that is both artistically inspirational but, more importantly, sets the technology agenda for our joint nanoscience research that will stimulate our future work together,” said Professor Mark Welland, Head of the Department of Engineering’s Nanoscience Group at the University of Cambridge and University Director of Nokia-Cambridge collaboration.

According to the company, “Elements of Morph might be available to integrate into handheld devices within 7 years, though initially only at the high-end.”

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