Core Offering 03

Quantum Security Training Programs

Specialized capacity-building programs designed across 4 distinct levels — empowering academic institutions, faculty, enterprise engineers, and deep-tech researchers.

Academic & Student Track
4 to 8 WeeksUndergraduate / Post-Graduate

Quantum Cryptography & Security for Higher Education

Curriculum-aligned course giving engineering and computer science students hands-on foundation in modern cryptography, post-quantum math, and practical coding of lattice algorithms.

Core Curriculum & Syllabus

Introduction to Post-Quantum Cryptography & Quantum Computing Threat Model
Lattice-Based Cryptography Math (Learning With Errors / ML-KEM)
Hands-On Implementation of NIST PQC (ML-KEM & ML-DSA in Python/C++)
Quantum Random Number Generation (QRNG) & Entropy Foundations

Target Outcomes & Certification

Industry-recognized Certification of Completion in PQC Fundamentals

Practical capstone project building a Quantum-Safe Encrypted Messaging tool

Preparation for deep-tech cybersecurity R&D and industry roles

Educator & Academic Leader Track
1 to 2 Weeks (Intensive)Faculty & Professors

Faculty Development Program (FDP) in Quantum Security

Empowering university faculty and department heads with state-of-the-art pedagogical frameworks, lab setup kits, and research methodology for post-quantum cybersecurity.

Core Curriculum & Syllabus

Advanced Post-Quantum Mathematical Foundations for Educators
Designing Hands-On Cyber & PQC Laboratory Experiments
Side-Channel Analysis & Hardware Security Demonstration Frameworks
Grant Writing & Research Collaborations in Quantum Security

Target Outcomes & Certification

Turnkey PQC laboratory curriculum and lab experiment workbooks

FDP Certification endorsed by deep-tech research partners

Access to SecQureD R&D datasets and benchmarking platforms

Professional & Corporate Track
3 to 5 Days (Bootcamp)Security Engineers & Architects

Enterprise PQC Engineering & Migration Workshop

Intensive hands-on training for software engineers, DevOps, and security architects to discover legacy crypto, generate CBOMs, and execute zero-downtime PQC migration.

Core Curriculum & Syllabus

Cryptographic Bill of Materials (CBOM) & Asset Discovery Techniques
Migrating SSL/TLS & IPsec Tunnels to Hybrid PQC (ML-KEM + X25519)
Hardware Security Module (HSM) & PKI Integration with ML-DSA
Crypto-Agility Architecture Patterns & Policy-Driven Hot-Swapping

Target Outcomes & Certification

Certified Post-Quantum Security Practitioner badge

Deployable hybrid TLS 1.3 & PQVPN reference codebase

Enterprise audit checklist for NIST PQC compliance

Advanced R&D Track
2 Weeks / Custom MasterclassResearchers & Ph.D. Scholars

Advanced Cryptographic Hardware & Side-Channel Diagnostics

Specialized masterclass focusing on physical side-channel analysis (DPA/EMA), laser fault injection (LFI), FPGA cryptographic acceleration, and hardware leakage scoring.

Core Curriculum & Syllabus

Differential Power Analysis (DPA) & Correlation Power Analysis (CPA)
Electromagnetic Analysis (EMA) & Near-Field Diagnostic Probing
Laser & Voltage Fault Injection Vulnerability Mapping
Silicon Microarchitectural Hardening & ISO/IEC 17025 Lab Testing

Target Outcomes & Certification

Mastery over physical leakage diagnostics tools & oscilloscopes

Publication-ready experimental methodology for academic research

Direct collaboration pathways with SecQureD R&D testing lab