Manufacturer Part Number
OMAP2530CZAC330
Manufacturer
texas-instruments
Introduction
The OMAP2530CZAC330 is a high-performance, power-efficient embedded microprocessor from Texas Instruments. It is a member of the OMAP2 series, designed for a wide range of multimedia applications, including smartphones, tablets, and mobile gaming devices.
Product Features and Performance
ARM® Cortex®-A8 core operating at 330MHz
1 core, 32-bit architecture
Multimedia co-processors and NEON™ SIMD for enhanced multimedia performance
LPDDR RAM controllers for low-power memory support
Graphics acceleration capabilities
LCD display and interface controllers
USB OTG (1) interface
Product Advantages
Powerful ARM Cortex-A8 core for high-performance computing
Optimized for multimedia applications with dedicated co-processors
Low-power design for extended battery life in mobile devices
Comprehensive set of integrated peripherals and interfaces
Key Reasons to Choose This Product
Proven performance and reliability from the OMAP2 series
Extensive ecosystem and support from Texas Instruments
Versatile design suitable for a wide range of embedded applications
Cost-effective solution for mainstream mobile and consumer devices
Quality and Safety Features
Boot security and secure JTAG support for enhanced system security
Extended operating temperature range of 0°C to 70°C
Compatibility
Supports additional interfaces such as 1-Wire®, I2C, McASP, McSPI, and MMC/SD/SDIO
Application Areas
Smartphones and tablets
Mobile gaming and multimedia devices
Industrial and automotive embedded systems
Product Lifecycle
The OMAP2530CZAC330 is an active product, and Texas Instruments continues to offer support and development tools for this microprocessor. While there may be newer and more advanced OMAP models available, the OMAP2530 series remains a viable option for many embedded applications. Customers are advised to contact our website's sales team for information on equivalent or alternative models, as well as for any updates on the product's lifecycle and availability.