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The AES (standard modes) product from Helion offers a robust encryption solution featuring the Advanced Encryption Standard (AES) algorithm, a 128-bit block cipher known for its efficiency and security. With key sizes of 128, 192, and 256 bits, the AES algorithm complies with NIST standards and is recognized globally for securing sensitive information. This product caters to applications necessitating rapid data processing and heightened security, such as in IPsec, wireless communication, and storage encryption. Helion's AES cores are crafted to deliver optimal performance across a vast array of settings, including both ASIC and FPGA implementations. The cores are designed with scalability in mind, accommodating applications from minimal data rates up to multi-gigabit transmission speeds. Thanks to their architecture, these cores maintain high usability, enabling easy adoption and integration into user systems without excessive resource allocation. Helion's AES suite includes numerous versions tailored to meet varying data transmission needs, ensuring adaptability in resource-constrained environments. Users benefit from the choice of low-power, space-efficient, and high-speed solutions, supporting a wide range of encryption requirements. These cores are also compatible with an array of programmable technologies, reaffirming their utility across diverse platforms, from commercial applications to government-level data protection setups.
Helion's SHA hashing cores offer powerful solutions for secure data verification needs, featuring implementation of widely recognized hash functions such as SHA-1 and the SHA-2 family, which includes SHA-224, SHA-256, SHA-384, and SHA-512. These one-way cryptographic functions generate fixed-length message digests for data verification, ensuring data integrity and authentication in digital signatures, security protocols like IPsec, and TLS/SSL. These cores are built to cater to different processing demands, providing both high-performance and resource-efficient options. For applications that require rapid processing with minimal area impact, Helion's FAST hashing core family achieves data rates up to 4Gbps. Alternatively, their TINY hashing core family is designed to handle low power and data rate applications, making it suitable for less demanding environments with space constraints. Helion's SHA hashing solutions are versatile, supporting various platforms including Xilinx, Altera, and Microsemi FPGAs, as well as ASIC implementations. Their efficient architecture ensures ease of integration without compromising on performance, catering to a range of applications from simple data integrity checks to complex cryptographic procedures.
Helion's Lossless Data Compression Technology offers cutting-edge solutions for efficient data management in scenarios where storage and bandwidth are constraints. By employing algorithms such as LZRW, this technology excels in scenarios requiring rapid data compression and decompression without any loss of information, making it ideal for both storage and transmission applications. Helion's compression cores are designed to deliver high throughput performance, catering to needs ranging from moderate traffic management in communications networks to high-demand data center environments. Their adaptability makes them suitable for both wired and wireless communication, ensuring seamless data handling in various technological frameworks. The LZRW family of compression engines provided by Helion offers general-purpose solutions that cater to diverse throughput and resource requirements, making them flexible to integrate into existing systems. With a commitment to delivering power-efficient and resource-conscious designs, this IP ensures optimal performance and integration for a wide range of modern technological applications.
The AES-XTS solution by Helion is tailored for disk encryption, leveraging the Tweakable block cipher algorithm to provide enhanced data security at the sector level on storage devices. The AES-XTS mode is designed to prevent threats like copy-and-paste or dictionary attacks and can independently encrypt and decrypt data in sector-sized blocks. This encryption core is crucial for safeguarding sensitive data on storage arrays, ensuring that identical plaintext blocks placed at different sectors result in distinct ciphertext. Helion offers a variety of AES-XTS cores to address differing data throughput needs, with capabilities ranging from less than 1Gbps to over 64Gbps, making it suitable for singular hard disks to large server arrays. Helion's AES-XTS solutions can be deployed on both ASIC and FPGA platforms, ensuring maximum performance and resource efficiency across varied technological landscapes. They support key sizes of 128-bit and 256-bit, with options for Ciphertext Stealing, adapting to diverse encryption protocols and operational environments.
Helion's AES-GCM core provides a high-performance implementation of the AES in Galois Counter Mode (GCM), which is renowned for offering both encryption and authentication functionalities. This mode is specifically engineered to achieve high throughput rates while maintaining robust security, suitable for applications such as secure networking and high-speed data transfers. The GCM mode allows pipelining and parallelism, making it ideal for environments where latency and throughput are critical. Helion's AES-GCM implementations support a wide range of processing requirements, with throughput options from less than 50Mbps up to over 40Gbps, thus accommodating both lightweight applications and those demanding extensive data handling capabilities. Available for various technologies like ASICs and FPGAs, including platforms from Xilinx and Altera, Helion's AES-GCM cores are designed to deliver fast, efficient encryption and authentication. Its adaptability and performance efficiency make the Helion AES-GCM solution a strong candidate for any system requiring secure data encryption combined with swift response times.
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