Samsung Unveils 'Flex Titanium' Display for Next-Gen Galaxy Foldable Phones

By KIM NA YOON Posted : July 15, 2026, 09:04 Updated : July 15, 2026, 09:04

Samsung Electronics introduced its new 'Flex Titanium' display technology on July 15, designed for the next generation of Galaxy foldable devices.

The Flex Titanium display is the culmination of Samsung's expertise in foldable technology, now in its seventh generation. The redesigned display structure enhances durability while improving the visual experience by reducing screen creases.

To achieve this, Samsung has developed a unique dual structure that combines an upgraded 'titanium plate' with a 'titanium alloy film' that features high elasticity and strength, replacing the traditional plastic film.

The 'titanium alloy film,' positioned beneath the organic light-emitting diode (OLED) panel, is crafted to be one-third the thickness of a human hair. This innovation allows the device to be thinner than its predecessors while providing approximately 20 times greater strength compared to conventional polymer films, thus enhancing both crease reduction and durability.

The 'titanium plate' located beneath it has been precisely engineered to minimize the size of micro-holes at the folding point, ensuring both support and flexibility.

Additionally, the display's power efficiency has been significantly improved through high-resolution design and the use of next-generation organic materials.

The new Galaxy foldable smartphone, featuring the Flex Titanium technology, is set to be officially unveiled at the 'Galaxy Unpacked' event in London on July 22 (local time).

Moon Sung-hoon, Vice President of Hardware at Samsung Electronics' MX Division, stated, "The next-generation Galaxy foldable, born from years of accumulated display technology expertise, will offer an unprecedented viewing experience."

Yoo Kyung-jin, Vice President of the Product Development Team at Samsung Display, also noted, "By processing the micro-holes at the folding section, we have achieved both flexibility and durability while maximizing power efficiency to enhance competitiveness."




* This article has been translated by AI.

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