
The CIP (Computer In Package) Ti OMAP4430/4460 series are ARM-based system-on-chip (SoC) solutions developed by Texas Instruments. These SoCs are specifically designed for high-performance mobile applications, such as smartphones, tablets, and embedded systems.
In this article, we will explore the history, architecture, and capabilities of the OMAP4430/4460 series, as well as their applications and impact on the industry.
History of CIP Ti OMAP4430/4460
Texas Instruments introduced the OMAP (Open Multimedia Application Platform) family of SoCs in the early 2000s.
The OMAP4430/4460 series, released in 2011, represents a significant advancement in the OMAP family, offering increased processing power, improved multimedia capabilities, and better energy efficiency.
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OMAP4430/4460 Architecture
The OMAP4430/4460 series is built on a dual-core ARM Cortex-A9 architecture, which provides a high level of performance while maintaining power efficiency.
The SoCs also include several other components, such as a dual-channel memory controller, a PowerVR SGX540 GPU, and various connectivity options.
OMAP4430/4460 CPU and GPU Capabilities

Dual-Channel Memory Controller
The OMAP4430/4460 SoCs feature a dual-channel LPDDR2 memory controller, which supports up to 1GB of RAM. This allows for fast data access and improved multitasking capabilities, making these chips ideal for mobile devices that require rapid processing.
PowerVR SGX540 GPU
The PowerVR SGX540 GPU included in the OMAP4430/4460 series provides impressive 3D graphics capabilities. This GPU supports OpenGL ES 2.0 and delivers a smooth, high-quality gaming experience on mobile devices.
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Connectivity Features
USB Connectivity
The OMAP4430/4460 series supports USB 2.0 OTG (On-The-Go), allowing for fast data transfer and the ability to connect to a wide range of USB peripherals, such as keyboards, mice, and storage devices.
HDMI Support
These SoCs also offer HDMI support, enabling high-definition video output to external displays. This feature allows users to stream HD content from their mobile devices to larger screens, providing a versatile multimedia experience.
Multimedia Capabilities
Image Signal Processor
The OMAP4430/4460 SoCs include an advanced image signal processor (ISP) that supports up to 20-megapixel image sensors. This enables high-quality photography and video recording capabilities on devices powered by these chips.
Video Playback and Recording
The OMAP4430/4460 series supports full HD video playback and recording at 1080p resolution, providing a rich multimedia experience. The SoCs also support various video codecs, such as H.264, MPEG-4, and VC-1, ensuring compatibility with a wide range of content.
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Energy Efficiency
One of the key advantages of the OMAP4430/4460 series is its energy efficiency. The SoCs are designed to provide high-performance processing while minimizing power consumption, making them ideal for battery-powered mobile devices.
This is achieved through features such as dynamic voltage and frequency scaling, which adjusts the chipโs performance based on the deviceโs workload, and an integrated power management system.
Applications
The OMAP4430/4460 series is versatile and well-suited for various applications, including:
Mobile Devices
These SoCs have been widely used in smartphones and tablets, providing high-performance processing, impressive graphics capabilities, and extended battery life.
Devices such as the Samsung Galaxy Nexus and Motorola Droid RAZR are powered by OMAP4430/4460 chips.
Embedded Systems
The OMAP4430/4460 series is also suitable for embedded systems, such as automotive infotainment systems, industrial control panels, and digital signage. Their energy efficiency and robust multimedia capabilities make them an excellent choice for these applications.
Conclusion
The CIP Ti OMAP4430/4460 Computer In Package series is a powerful and efficient SoC solution for mobile and embedded applications.
With its advanced architecture, impressive multimedia capabilities, and energy-saving features, it has become a popular choice for many high-performance devices.