Course ID: BSS101 | Credits: 8 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Examines next-generation sensor technologies that extend beyond traditional human senses, focusing on emerging detection modalities, signal processing approaches, system integration challenges, and engineering applications across advanced monitoring environments.
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Examines next-generation sensor technologies that extend beyond traditional human senses, focusing on emerging detection modalities, signal processing approaches, system integration challenges, and engineering applications across advanced monitoring environments.
Course ID: OPT101 | Credits: 4 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Covers the hybrid field of optofluidics, where microfluidics and photonics intersect to enable sensing, switching, and lab-on-a-chip applications with precision optical control.
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Covers the hybrid field of optofluidics, where microfluidics and photonics intersect to enable sensing, switching, and lab-on-a-chip applications with precision optical control.
Course ID: SFD101 | Credits: 2 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Introduces quantum-phase matter types including supersolids and superfluids, explaining their behavior at near-zero temperatures and their relevance to fundamental physics and engineering research.
Course ID: MOT101 | Credits: 6 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Introduces micro-optic technologies, addressing miniaturized optical components, fabrication methods, light manipulation techniques, and applications in sensing, imaging, and communications systems.
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Introduces micro-optic technologies, addressing miniaturized optical components, fabrication methods, light manipulation techniques, and applications in sensing, imaging, and communications systems.
Course ID: BIO101 | Credits: 8 PDH | Format: Desktop-Tablet-Mobile-friendly PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Explores biometric identification systems using fingerprints, facial features, iris scanning, and voice recognition, with a focus on accuracy, security, and integration challenges.
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Explores biometric identification systems using fingerprints, facial features, iris scanning, and voice recognition, with a focus on accuracy, security, and integration challenges.
Course ID: DRO101 | Credits: 8 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Examines coordinated aerial systems and swarm drone concepts in engineering practice, focusing on swarm architectures, communication and control methods, mission planning, sensing integration, and operational risk considerations.
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Examines coordinated aerial systems and swarm drone concepts in engineering practice, focusing on swarm architectures, communication and control methods, mission planning, sensing integration, and operational risk considerations.
Course ID: MPC101 | Credits: 6 PDH | Format: Desktop-Tablet-Mobile-friendly PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Covers the design and calibration of sensors for detecting pressure, temperature, humidity, motion, and other physical phenomena essential in automation and process control.
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Covers the design and calibration of sensors for detecting pressure, temperature, humidity, motion, and other physical phenomena essential in automation and process control.
Course ID: BTE101 | Credits: 2 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Reviews the use of blockchain technology in engineering applications, focusing on data integrity, secure transactions, distributed ledgers, and potential use cases in infrastructure management and engineering workflows.
Publication Source: Originally developed content from Cadistics Courseware
Course Overview: Reviews the use of blockchain technology in engineering applications, focusing on data integrity, secure transactions, distributed ledgers, and potential use cases in infrastructure management and engineering workflows.
Course ID: RFD101 | Credits: 6 PDH | Format: Desktop-Tablet-Mobile-friendly PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Discusses RFID systems for inventory, asset tracking, and secure identification, covering passive and active tags, reader design, frequency bands, and integration into modern logistics.
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Discusses RFID systems for inventory, asset tracking, and secure identification, covering passive and active tags, reader design, frequency bands, and integration into modern logistics.
Course ID: MSA101 | Credits: 6 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Reviews the types and characteristics of actuators integrated with sensors in electromechanical systems, including piezoelectric, pneumatic, and servo-based mechanisms.
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Reviews the types and characteristics of actuators integrated with sensors in electromechanical systems, including piezoelectric, pneumatic, and servo-based mechanisms.
Course ID: RFT101 | Credits: 8 PDH | Format: PDF
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Explains RF wave propagation, antenna theory, frequency allocation, and the design considerations required for RF systems in communications, radar, and telemetry.
Publication Source: Originally developed content from Cadistics Courseware
Course Description: Explains RF wave propagation, antenna theory, frequency allocation, and the design considerations required for RF systems in communications, radar, and telemetry.
Course ID: SNR101 | Credits: 6 PDH | Format: Slideshow PDF
Original Courseware: Original publication written by Donald W. Parnell, PE
Course Description: Provides a comprehensive overview of modern sensing devices, detection mechanisms, sensor integration in control systems, and emerging trends in IoT and real-time data acquisition.
Original Courseware: Original publication written by Donald W. Parnell, PE
Course Description: Provides a comprehensive overview of modern sensing devices, detection mechanisms, sensor integration in control systems, and emerging trends in IoT and real-time data acquisition.