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The Geon Secure Execution Processor is a sophisticated solution built upon the proven capabilities of the BA22 processor, achieving 1.79 DMIPS/MHz while reaching frequencies exceeding 450 MHz in 65 nm technology. This processor is engineered to isolate cryptographic operations, safeguarding sensitive data through robust hardware mechanisms. Suitable for a wide range of security applications, this processor demonstrates system-level verification, ensuring reliability in diverse deployment scenarios. The Geon Secure Execution Processor is a cornerstone for secure SoC designs, facilitating cryptographically isolated environments that shield critical operations from unauthorized access.
The AC97 Audio Controller is a refined implementation compliant with the AC97 Revision 2.3 standards, designed to provide seamless integration with contemporary and legacy audio systems. It offers high-fidelity audio processing capabilities that support a range of audio I/O operations, ensuring high-quality audio performance. This controller is perfect for applications where sound quality and reliability are crucial, including multimedia devices and automotive sound systems. Its design remains efficient, supporting various bus schemes like AHB and WISHBONE, contributing to flexible interconnect options for diverse system configurations.
The MAC 10/100/1000 Ethernet Controller is designed to adhere to the IEEE 802.3 and IEEE 802.3-2002 standards, providing a robust solution for Ethernet communications. This controller is capable of handling up to Gigabit Ethernet speeds, ensuring high data throughput and reliable network connectivity. Suitable for a variety of network applications, from small embedded devices to large-scale networking systems, it offers compatibility with different Ethernet protocols and supports seamless network integration. Its design focuses on optimizing network performance while being adaptable to varied networking infrastructures.
The DDR2/DDR SDRAM Memory Controller from Beyond Semiconductor is engineered for high performance, supporting both AHB and WISHBONE bus architectures. This controller ensures seamless data flow and efficient memory utilization, pivotal for high-speed computing tasks. It is crafted to handle various memory types, adapting to diverse system requirements while maintaining low latency and high throughput. The controller suits a wide array of applications, from embedded systems to general computing, supporting reliable memory management strategies. Its flexibility in integration makes it a valuable asset for developers needing adaptability in memory interfacing.
The SHA-3 Secure Hash Function Core provides a comprehensive set of cryptographic hashing options compliant with FIPS 180-4 and FIPS 202 standards, delivering up to 48 Mbit/s per MHz and utilizing as few as 28 K gates. This core supports all standard hash functions like SHA3-224, SHA3-256, SHA3-384, and SHA3-512, along with extendable output functions SHAKE-128 and SHAKE-256. Designed for efficiency and broad applicability, the SHA-3 core suits applications ranging from general data integrity checks to sophisticated cryptographic systems requiring robust data hashing. Its architecture ensures the confidentiality and integrity of data across numerous digital environments.
The BA22-AP Basic Application Processor is designed for foundational computing tasks, offering a balanced mix of performance and efficiency. Featuring 1.79 DMIPS/MHz performance and capable of operating up to 450 MHz at 65 nm technology, it has a relatively compact size with 35k gates and a power consumption of only 0.05 W/MHz on 90 nm processes. This processor is suited for general applications where reliable performance is necessary but without the excessive power draw. It provides tailored user instructions, optimal for baseline applications requiring a stable and efficient processing platform.
The GPIO (General Purpose Input Output) Controller is designed for user-programmable I/O operations, allowing flexible handling of digital signals across various devices. This controller is an ideal choice for systems demanding robust I/O management, offering a core solution that adapts easily to different operational environments. Its versatile architecture is suited for automation, industrial systems, and any application requiring extensive digital signal interfacing. The controller supports further customization, granting developers the latitude to tailor functionalities according to specific application requirements.
The BA22-CE Cache Enabled Processor is tailored for applications requiring enhanced processing speeds and improved code density. Operating at 1.79 DMIPS/MHz, it achieves frequencies up to 450 MHz using 65 nm technology. The design is highly efficient, requiring less than 20k gates and consuming as little as 0.05 W/MHz on 90 nm processes. It features a cache-enabled architecture, making it particularly suitable for high-performance computing tasks where data accessibility and processing speed are prioritized. This processor is designed to offer efficient performance enhancements in computing environments demanding rapid data processing capabilities.
The BA25 Advanced Application Processor exemplifies cutting-edge design for sophisticated computing needs, featuring independent functional units and out-of-order completion capabilities. Its performance is quantified at 1.51 DMIPS/MHz, delivering speeds up to 800 MHz on a 65 nm LP process. It boasts the highest code density among application processors, addressing the demands of complex software environments and capable of managing multiple concurrent threads with efficiency. The BA25 is ideal for high-level applications in scenarios where exceptional speed and efficiency come into play, providing a robust platform for intensive computing operations.
The BA21 Low-Power Embedded Processor is engineered for applications demanding extreme efficiency with minimal gate count. Operating at 1.49 DMIPS/MHz and capable of speeds up to 125 MHz on TSMC 65 nm processes, it features ultra-low power consumption, making it ideally suited for battery-sensitive applications. This processor addresses the need for high code density in compact packages and is particularly valuable in scenarios requiring efficient power management. Its architecture balances performance with energy efficiency, offering a compelling solution for industries striving for prolonged battery life in compact designs.
The BA22-DE Deeply Embedded Processor excels in scenarios where efficient code density and low power operation are crucial. It offers a performance of 1.79 DMIPS/MHz, leveraging technology to achieve low power consumption, with as few as 15k gates and power needs of 0.05 mW/MHz on 90 nm processes. It provides better code density than ARM Thumb-2, positioning it as a leading choice for device manufacturers looking to optimize processing efficiency and reduce power draw without compromising on speed. Its capabilities make it ideal for embedded applications where space and energy are at a premium.
The BA20 PipelineZero Embedded Processor stands out as one of the most energy-efficient 32-bit processors, delivering up to 2.17 DMIPS/MHz. With an incredibly low power budget (2uW/MHz) and a compact footprint (10K gates in 0.01mm² with 9-track 40G technology), it is designed for ultra-low-power applications. This processor is optimal for deeply embedded environments where power efficiency and performance must be balanced without sacrificing capability. The BA20 combines efficiency with robustness, supporting a wide variety of applications that demand minimal energy consumption alongside high performance.
The JTAG TAP (Test Access Port) Controller is an essential component for system debugging and test methodologies, offering full compliance with industry-standard IEEE 1149.1 protocols. It facilitates device programming, testing, and reconfiguration within integrated circuits, crucial for development and production lines requiring reliable debug interfaces. This controller is adaptable to various applications, providing robust testing options in complex systems. Its compatibility with multiple device types and architectures ensures comprehensive testing capabilities, supporting both developmental needs and finished product integrity checks.
Details about the USBDR product aren't fully available, but it's recognized as part of Beyond Semiconductor's offerings for USB connectivity in diverse applications. It likely supports interfaces that require reliable, fast, and secure data transfer through USB protocols, suitable for use in various consumer electronics, automotive, and industrial systems. The USBDR is engineered to provide efficient handling of USB data transactions, contributing to product versatility and interoperability in data transmission tasks. Its integration into systems promotes enhanced user experience with seamless USB communication capabilities.
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