THE
SUPERB PROCESSOR ENGINEERED FOR SUPERLATIVE MOBILE EXPERIENCES.
The Exynos 8 Octa (8890) is Samsung’s premium application processor built on 14nm Fin FET LPP process technology for unmatched performance and power efficiency. The Exynos 8890 features company’s first custom designed CPU based on 64-bit. ARM v8 architecture to break through the performance limitation from conventional CPU technology . The Exynos 8890 integrates LTE-advanced modem that supports latest LTE specifications up to Category 12/13 for faster and seamless mobile communication.
CUSTOM CPU CORE:- REDESIGNED BRAIN TO REDEFINE
THE SPEED.
The
Exynos 8890 has eight CPU cores including Samsung custom-designed CPU core
based on 64-bit ARM v8 architecture. It provides over 30 percent improvement in
performance and 10 percent in power efficiency compared to the Exynos 7 Octa.
With Samsung’s own SCI (Samsung Coherent Interconnect) technology, which
provides cache-coherency between Samsung’s custom CPU and Cortex-A53 cores, the
processor fully utilizes benefits of big. LITTLE processing for offering perfect
balance of performance and efficiency.
ADVANCED GPU, MFC AND ISP:- SOPHISTICATED
TECHNOLOGIES TO APPRECIATE LIFELIKE CONTENT.
Exynos 8890 employs ARM‘s latest GPU, Mali-T880, for graphic-intensive
user interface, 3D gaming and life-like virtual reality experience. With 4K UHD
video recording and playback capabilities thanks to the advanced MFC
(Multi-Format Codec), and up to 4K UHD (4096x2160) & WQUXGA (3840x2400)
display resolution support, users can enjoy life like visual experience.
Furthermore, Exynos 8890 with advanced ISP enables smartphone camera to
maximize its capabilities for great quality of photo and video.
2ND GENERATION 14NM FINFET PROCESS:- MORE
POWER. MORE PLAY.
Exynos 8890 is built on 2nd generation 14nm
FinFET LPP (Low-Power Plus) process for best-in-class performance and
efficiency. In FinFET transistor, the gate is placed on multiple sides of each
source and drain, controlling the current leakage more effectively. And
carriers can move across the many surfaces of fins-shaped 3d structure in
transistor resulting in fast speed of computing calculation.
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