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  • Quantum Security Awareness (Payments Edition): Payments Are Cryptography – PQC Under Millisecond SLAs

    Quantum Security Awareness – Industry Editions
    Virtual Event

    This complimentary webcast is designed for payments security leaders who need a clear, no‑nonsense view of the quantum threat - and what to do about it now, without fluff. Co‑hosted by QSECDEF and Applied Quantum, this session cuts through generic PQC talk and focuses on what makes payments different: crypto everywhere, many independent parties, and millisecond operational envelopes that you can’t break. We focus on the real blockers in payments: interdependencies, performance budgets, and vendor/partner sequencing. Payments are unusually crypto‑dense and time‑dense: a single authorization spans parties that don’t share one change calendar, and the chain must complete inside strict timeout/retry behavior. We’ll use an interbank cryptography stack mapping as a concrete illustration of how many trust boundaries exist before you even introduce PQC - and why “just upgrade the algorithm” is not a plan. 

    Free
  • Quantum Security Awareness (Banking Edition): Trust Anchors at Bank Scale – PKI, Signing, and Long‑Lived Evidence

    Quantum Security Awareness – Industry Editions
    Virtual Event

    This complimentary webcast is designed for banking security leaders who need a clear, no‑nonsense understanding of the quantum threat - and what to do about it now.  The session avoids generic “PQC 101” and goes straight to what makes banking different: institutional identity and long‑lived evidence are the real blast radius. In a bank, cryptography isn’t just protecting data in transit - it is the foundation of trust at scale: CA hierarchies, enterprise PKI, service‑to‑service mTLS, customer and workforce authentication, signed tokens (e.g., OAuth/JWT ecosystems), document and transaction signing, code‑signing in CI/CD, and the regulated archives that prove what happened, when, and under which authorization. The uncomfortable banking‑specific reality is that “confidentiality later” is only half the story: if signatures and PKI trust anchors become forgeable in the future, the bank’s ability to prove integrity, provenance, and non‑repudiation comes under pressure.

    Free
  • Quantum Security Awareness (Banking Edition): Trust Anchors at Bank Scale – PKI, Signing, and Long‑Lived Evidence

    Quantum Security Awareness – Industry Editions
    Virtual Event

    This complimentary webcast is designed for banking security leaders who need a clear, no‑nonsense understanding of the quantum threat - and what to do about it now.  The session avoids generic “PQC 101” and goes straight to what makes banking different: institutional identity and long‑lived evidence are the real blast radius. In a bank, cryptography isn’t just protecting data in transit - it is the foundation of trust at scale: CA hierarchies, enterprise PKI, service‑to‑service mTLS, customer and workforce authentication, signed tokens (e.g., OAuth/JWT ecosystems), document and transaction signing, code‑signing in CI/CD, and the regulated archives that prove what happened, when, and under which authorization. The uncomfortable banking‑specific reality is that “confidentiality later” is only half the story: if signatures and PKI trust anchors become forgeable in the future, the bank’s ability to prove integrity, provenance, and non‑repudiation comes under pressure.

    Free
  • Quantum Security Awareness (Banking Edition): Trust Anchors at Bank Scale – PKI, Signing, and Long‑Lived Evidence

    Quantum Security Awareness – Industry Editions
    Virtual Event

    This complimentary webcast is designed for banking security leaders who need a clear, no‑nonsense understanding of the quantum threat - and what to do about it now.  The session avoids generic “PQC 101” and goes straight to what makes banking different: institutional identity and long‑lived evidence are the real blast radius. In a bank, cryptography isn’t just protecting data in transit - it is the foundation of trust at scale: CA hierarchies, enterprise PKI, service‑to‑service mTLS, customer and workforce authentication, signed tokens (e.g., OAuth/JWT ecosystems), document and transaction signing, code‑signing in CI/CD, and the regulated archives that prove what happened, when, and under which authorization. The uncomfortable banking‑specific reality is that “confidentiality later” is only half the story: if signatures and PKI trust anchors become forgeable in the future, the bank’s ability to prove integrity, provenance, and non‑repudiation comes under pressure.

    Free

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