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The AES-XTS standard, as outlined by NIST and IEEE, provides a critical security layer for disk-level data encryption. Through its unique 'tweakable' cipher design, AES-XTS is particularly effective in securing data at rest on disk drives. Helion's AES-XTS solutions are tailored for applications ranging from single drives to extensive storage arrays, offering configurations that balance speed and hardware resource use. With throughput capacities exceeding 64 Gbps, these cores can support both high and low-speed storage applications. Benefiting from Helion's dedication to flexible and efficient designs, these cores ensure consistent data protection across various environments, making them suitable for use in both commercial and industrial sectors. They are available for implementation in leading FPGA and ASIC technologies, ensuring adaptability and integration ease.
Secure Hash Algorithms (SHA) play a critical role in data integrity and security. The SHA family, including SHA-1, SHA-2, and the widely used SHA-256, provides a method for verifying data through unique hash values that represent original content. Helion Technology designs high-performance and resource-efficient hash cores that cater to both high-speed and low-power applications. Hash functions are integral in digital signatures, message authentication, and integrity verification, ensuring that transmitted or stored data remains unchanged and secure. By aligning the hashing capabilities with robust FPGA and ASIC technologies, Helion offers solutions that enhance data security without imposing hefty resource demands. These cores are engineered for low area and power consumption, making them ideal for compact and energy-sensitive applications.
AES-GCM, or AES Galois Counter Mode, combines encryption with authentication to provide both data confidentiality and integrity. Originally developed for high-throughput applications, it can efficiently use pipelining and parallel processing to achieve exceptional speeds. Helion's AES-GCM solutions are tailored to meet diverse data rate requirements, ranging from several megabits to over 40 Gbps. The solutions are versatile across various technologies, offering unparalleled flexibility and performance. Beyond speed, Helion's AES-GCM cores are noted for their compact design, ensuring minimal resource utilization in both FPGA and ASIC implementations. Designed to fit scalable applications, these cores ensure robust data protection in high-demand environments, like networking and data storage.
The Advanced Encryption Standard (AES) provides robust encryption for data security applications. Originally chosen by the National Institute of Standards and Technology (NIST) in the late 1990s, AES became the standard for encryption, replacing the older DES system. Helion Technology was at the forefront of this shift, offering a variety of AES IP cores suitable for ASIC and FPGA technologies. Helion's range of AES solutions can address different application needs from minimal area to high-speed data processing. This allows customization and scalability to fit specific encryption requirements. AES includes multiple operational modes, such as CBC, CTR, OFB, and more, enabling users to choose based on throughput and security priorities. With core offerings that cover ultra-low gate count applications to high throughput scenarios, Helion's AES cores are designed to fit seamlessly into a wide range of systems. Furthermore, by embracing process nodes from leading foundry groups, these cores ensure efficient implementation in diverse commercial settings.
In the realm of data management, lossless compression is a technique used to minimize storage space and transmission bandwidth without sacrificing the original data's integrity. Helion's solutions, based on the LZRW algorithm family, provide effective compression suitable for modern data-intensive applications. Helion's compression IP cores are optimized for both low-speed communications and high-throughput networks, making them a valuable asset in environments ranging from mobile backhaul to general data storage. By applying innovative designs, these cores maintain high compression rates while ensuring minimal resource usage. By deploying their solutions across multiple technologies, including FPGA and ASIC, Helion ensures a broad applicability of its compression technologies. These cores are particularly valuable for bandwidth-constrained environments, providing essential functionality in ensuring data efficiency and speed.
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