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FortiCrypt offers a robust and secure cryptographic framework specifically designed to thwart side-channel and fault injection attacks. This suite of cryptographic IP includes advanced protection mechanisms that ensure both high security and performance across various platforms. The IP core is meticulously engineered to deliver ultra-low power consumption, making it ideal for battery-operated and IoT devices. The FortiCrypt product line is versatile, supporting a wide array of cryptographic algorithms, including both classical and post-quantum variations. It integrates seamlessly with existing systems, requiring minimal integration overhead, and is validated to withstand real-world attacks. Its high bandwidth capacity, achieved through multi-pipeline architecture, makes FortiCrypt suitable for high-performance applications, ensuring rapid data throughput without compromising security. Furthermore, FortiCrypt's compliance with the highest industry standards, such as FIPS 140-3 and SESIP, assures its usage in applications requiring stringent security measures. Whether used for secure communication, data protection, or hardware defense, FortiCrypt establishes a fortress against unauthorized access and data breaches, demonstrating unparalleled resilience and efficiency.
FortiPKA-RISC-V is a powerful public key algorithm coprocessor designed to enhance cryptographic operations through streamlined modular multiplication techniques. This IP core offers robust protection against side-channel and fault injection attacks, ensuring high performance by eliminating Montgomery domain transformations. Engineered to maximize efficiency, FortiPKA-RISC-V supports a variety of cryptographic protocols, making it suitable for applications demanding high-speed data processing with minimal latency. Its architecture ensures seamless integration into systems requiring secure key exchanges and digital signature verifications, showcasing versatility across different computational platforms. Additionally, this coprocessor is built with a focus on reducing hardware footprint, making it ideal for space and power-conscious applications such as embedded systems and mobile devices. By aligning with industry-standard cryptographic requirements, FortiPKA-RISC-V provides an effective solution for environments requiring elevated security without compromising on computational speed or area efficiency.
Side-channel Attack Resistance technology by FortifyIQ focuses on defending cryptographic systems against unauthorized data breaches through physical observation. This protection suite is essential for devices targeted by side-channel metrics like power usage, electromagnetic emissions, or timing discrepancies, ensuring that sensitive data remains secure from spillover attacks. Developed with a keen understanding of modern attack vectors, this technology employs advanced countermeasures crafted from algorithmic optimizations and hardware-level enhancements. Each design component is thoroughly tested to close any vulnerabilities, protecting cryptographic keys and operations even under intense scrutiny from external attackers. FortifyIQ's Side-channel Attack Resistance solutions are a staple for environments with stringent security requirements, such as government, financial institutions, and defense sectors. By integrating these defenses, manufacturers can prevent leakage of critical information during cryptographic processes, maintaining a high level of trustworthiness and cyber resilience.
FortifyIQ's Fault Injection Attack Countermeasures are designed to shield cryptographic devices from manipulations that cause malfunctions and data breaches. These techniques form a core part of security architectures that need to withstand sophisticated hacking attempts aimed at faulting the operational framework of hardware systems. These countermeasures incorporate multilayered protections at both the hardware and software level. They detect and neutralize inconsistencies introduced by fault injection methods, ensuring continued security and reliable operation regardless of the attack sophistication. All solutions are rigorously analyzed to validate their efficacy against diverse fault models. Crucial for high-security contexts like data centers and financial systems, the implementation of Fault Injection Attack Countermeasures guarantees operational integrity and prevents attackers from exploiting hardware weaknesses. FortifyIQ’s offerings emphasize robustness without compromising performance or elevating complexity, essential for environments where reliability is paramount.
The FortiMac suite provides advanced cryptographic solutions specifically designed for rigorous protection against differential power analysis and fault injection attacks. This IP core specializes in HMAC SHA2-based applications, offering state-of-the-art security features that ensure both reliability and compactness. FortiMac's strength lies in its use of algorithmic defenses that are resistant to advanced side-channel attacks. The IP is highly adaptable, suitable for integration in both new and existing security systems. By minimizing power usage and gate count, FortiMac is an optimal choice for devices with stringent power and area constraints, delivering efficient performance without sacrificing security integrity. This product supports all major SHA2 hash functions, providing flexibility for developers and ensuring comprehensive protection for various cryptographic operations. Additionally, the IP is crafted to align with the highest security certifications, making it a trusted choice for secure communication and data integrity in sensitive sectors such as finance, telecommunications, and defense.
The FortiCrypt Library is a sophisticated suite of cryptographic tools engineered to provide secure software implementations resistant to power and fault analysis. With an emphasis on flexibility and efficiency, it facilitates secure cryptographic operations without specialized hardware. The library is adaptable to a variety of environments, from embedded systems to high-capacity servers. By focusing on ultra-low power consumption and streamlined integration, it offers an excellent solution for developers looking to bolster their software against potential vulnerabilities without redesigning existing hardware. This toolset is designed to enable secure data processing across a multitude of applications, particularly where the implementation of physical security measures is impractical. With its robustness firmly grounded in industry standards, the FortiCrypt Library is especially suited for deployment in sectors like automotive and industrial automation, where reliable software security is critical.
AES XP-DPA-FIA is a highly refined encryption module designed by FortifyIQ to fortify against side-channel and fault injection attacks. This core is particularly notable for delivering ultra-high bandwidth, making it a superior choice for applications requiring rapid and secure data processing. The IP leverages a multi-pipeline architecture, which allows it to sustain high throughput rates while maintaining robustness against unauthorized access. Its architecture enhances encryption efficiency, delivering optimal security for sensitive data transfers in high-performance computing environments. Certified by rigorous security standards, AES XP-DPA-FIA is tailored to meet the demands of modern electronic security needs. It is an invaluable component in sectors such as telecommunications and government operations, where data integrity and speed are critical.
AES ULP-DPA-FIA offers ultra-low power encryption capabilities fortified against differential power analysis and fault injection. This core design maintains exceptional energy efficiency while providing robust security, making it ideal for devices with limited power resources. Its architectural efficiency supports high throughput performance, ensuring secure data handling without significant power draw. The core is designed for easy integration into existing systems, preserving existing infrastructure while upgrading security measures comprehensively. With a focus on battery-operated and minimally powered environments, AES ULP-DPA-FIA is perfect for IoT applications and portable electronics needing dependable, long-lasting security. Compliance with top industry security benchmarks further validates its applicability in sensitive sectors demanding unwavering data protection.
HMAC-SHA2-DPA-FIA by FortifyIQ provides an innovative solution for message authentication, with hardened protection against side-channel and fault injection attacks. Tailored to safeguard HMAC SHA2 operations, this IP remains an essential part of systems aiming to maintain high levels of security integrity. Designed to adapt to various computational environments, HMAC-SHA2-DPA-FIA guarantees that HMAC processing remains secure and efficient, regardless of external attempts to compromise system integrity. Its development is based on sophisticated algorithmic countermeasures that ensure operational resilience without impacting system performance. By aligning with stringent certification requirements, HMAC-SHA2-DPA-FIA is positioned as a reliable choice for industries needing assurances against data tampering and leakage during message authentication. This makes it particularly suitable for secure communications in sensitive fields like defense and finance.
AES SX-DPA-FIA is engineered for balanced encryption solutions, offering formidable defense against side-channel and fault injection attacks while balancing high performance with efficient resource usage. This IP core is optimized for applications requiring both high security and a modest gate count. It provides a mid-range solution in FortifyIQ's extensive IP catalog, serving devices that need a compromise between full feature sets and efficiency. AES SX-DPA-FIA integrates seamlessly into a wide variety of devices, from consumer electronics to industrial control systems, offering consistent protection without compromising on speed or durability. With validation against industry-leading standards and certifications, AES SX-DPA-FIA is equipped for deployment across sectors requiring cost-effective security solutions. Its versatile design is adept at maintaining data integrity across networked environments, safeguarding information against unauthorized access and breaches.
The AES UC-DPA-FIA core from FortifyIQ excels in delivering ultra-compact security solutions that guard against side-channel and fault injection attacks. Tailored for environments with space limitations, it ensures minimalistic footprint while retaining high security assurances against exploitable vulnerabilities. By minimizing gate count without sacrificing security performance, AES UC-DPA-FIA stands as a preferred choice for integrated circuits where every nanometer counts. Its application extends to compact electronic devices, providing cutting-edge cryptographic capabilities where space and efficiency are crucial. Occupying an essential niche in secure gadget design, AES UC-DPA-FIA adheres to the strictest security protocols, furnishing engineers with a reliable tool for protecting confidential information within sleek, space-efficient products. It delivers an optimal balance of resilience and compactness for advanced security applications.
FortiPKA serves as a high-efficiency Public Key Accelerator, catering to the need for swift and secure cryptographic operations in today's digital landscape. This versatile coprocessor supports a range of public-key algorithms, ensuring formidable protection against side-channel and fault injection threats. With improved modular arithmetic processing, FortiPKA enhances key exchange and digital signature verification processes, delivering performance boosts vital for maintaining security in communication protocols. Its architecture is adaptable to varied deployment scenarios, exemplifying flexibility and vigor in secure transaction environments. By supporting robust security measures required for sensitive data handling, FortiPKA is a fitting component for financial, governmental, and industrial sectors demanding high levels of cryptographic assurance. Its efficient and compact design maximizes performance per area, making it attractive for applications constrained by physical and operational limitations.
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