Toshiba High Performance Microprocessor manual

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Toshiba Develops High Performance Microprocessor

Core

-‘MeP-h1’is the World’s First 1GHz Configurable Processor-

Toshiba Corporation has announced that it has developed a new high-end processor core, MeP-h1, the first configurable microprocessor to achieve a 1GHz clock speed. The MeP-h1 is based on Toshiba’s “Media embedded Processor” (MeP) architecture for digital consumer and other high performance SoCs. It gives designers the flexibility to customize processors at the design stage, including the ability to change processor configurations and add custom instructions to satisfy application requirements.

The performance of the new core was boosted by increasing the number of instruction execution pipeline stages to nine, from five in Toshiba’s previous processor core. The new core is also optimized for design of high-performance customized processors by integration of a reorder buffer circuit that manages and shortens waiting cycles for user extension instructions. The present implementation of the core was manufactured with 65nanometer (nm) process technology, and that too contributed to achieving the 1GHz clock speed. The new configurable processor core is designed with register transfer level description (RTL) and can be manufactured with other process technology, including 90nm technology.

Development background:

The market for digital equipment supporting images, audio and communications is growing fast. However, the required performance and type of data processing in system LSI differs by application, and the overall volume of handled data is rapidly increasing. As a result, there is growing demand for customizable

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High Performance Microprocessor specifications

Toshiba has established itself as a frontrunner in the semiconductor industry, particularly through its development of high-performance microprocessors. These processors are designed to cater to the demands of various applications, including consumer electronics, automotive systems, and industrial automation. Toshiba's high-performance microprocessors are characterized by several key features and technologies that set them apart in a competitive market.

One of the defining characteristics of Toshiba's microprocessors is their architecture, which is optimized for efficiency and speed. Many of these processors are built on advanced 32-bit and 64-bit architectures, enabling them to handle complex computations while consuming minimal power. This architecture supports multitasking and enhances overall system performance, making it ideal for applications that require high processing capabilities.

Another significant feature of Toshiba’s high-performance microprocessors is their integration of multi-core technology. By providing multiple cores within a single chip, Toshiba allows for parallel processing, which drastically improves performance in demanding applications. This is particularly crucial in today's computing environment, where applications often require concurrent processing to deliver smooth and responsive user experiences.

Toshiba employs cutting-edge fabrication technologies that enhance the performance of their microprocessors. The company utilizes advanced CMOS technology, ensuring that their processors are not only powerful but also energy-efficient. This focus on low power consumption is vital for portable devices and applications where battery life is a concern. Moreover, Toshiba’s innovative design processes result in chips that can operate reliably at high speeds while maintaining thermal stability.

In the realm of connectivity, Toshiba's microprocessors support various communication protocols, allowing seamless integration with modern networks. This versatility is essential for IoT applications, where devices need to communicate effectively and securely. Additionally, advanced security features are often embedded within these processors to protect sensitive data, addressing the growing concerns surrounding cyber threats.

Toshiba's commitment to enhancing user experience is evident in the performance metrics of its microprocessors. With features such as enhanced graphics processing capabilities and quick response times, Toshiba’s offerings are well-suited for both consumer and industrial applications. Furthermore, their robust support for software development through comprehensive toolsets simplifies the design process for developers.

In summary, Toshiba's high-performance microprocessors stand out due to their advanced architecture, multi-core technology, energy-efficient fabrication processes, and strong connectivity options. These characteristics enable them to meet the challenges of modern computing demands while ensuring reliability and performance across a spectrum of applications. As Toshiba continues to innovate, their microprocessors remain vital in powering the next generation of devices and systems.