H.Y.P.R. (hackerdemic) is a cyber capability architect who designs and validates integrated defenses through threat emulation, detection engineering, and AI-driven telemetry.
After retraining from munitions systems to cyber warfare in 2016, he has spent nearly a decade advancing red-blue integration to strengthen enterprise detection and operator readiness.
He builds systems and teams that hold up under pressure and applying his philosophy, High-Yield Performance & Results (H.Y.P.R.), which guides how he leads, learns, and lives.
Actively maintained credentials supporting adversary-informed defense, detection validation, and enterprise cyber operations
Validates the ability to counter advanced, campaign-level adversaries by integrating threat tradecraft, detection engineering, and defensive assessment.
Applied offensive methodology used to emulate realistic adversary behavior, stress defensive controls, and inform detection design.
Integrates adversary tradecraft with defensive validation to evaluate detection fidelity and mission readiness.
Applies offensive methodology to design realistic adversary emulation scenarios and improve detection pipelines.
Builds custom exploits and post-exploitation chains for advanced validation campaigns.
Conducts controlled exploitation and network assessments to expose and measure defensive gaps.
Evaluates web and application attack surfaces to inform secure design and detection coverage.
Enterprise-scale incident response, forensic reconstruction, and malware analysis supporting high-fidelity detection and response operations.
Leads deep-dive forensic investigations and digital evidence reconstruction across enterprise environments.
Performs rapid triage and incident response at scale, correlating host and network artifacts.
Dissects malicious code to derive detection signatures and adversary TTP intelligence.
Automates data analysis and detection logic using Python for SOC and validation workflows.
Architecture-level understanding of security governance, risk, and enterprise defense integration.
Validates enterprise-level understanding of security architecture, governance, and risk management.
Computer Science (AI & Machine Learning)
Cybersecurity & Information Assurance
Information Sciences & Technology
Security & Risk Analysis
Cybersecurity
Munitions Systems Technology
Resilience is defined as how one “deals effectively with pressure, ambiguous and emerging conditions, and multiple tasks; remains optimistic and persistent, even under adversity or uncertainty. Recovers quickly from setbacks. Anticipates changes and learns from mistakes.”