On-Demand Sessions

ON-DEMAND

Capturing all IVN traffic across the validation journey: Deterministic in vehicle network logging from bench to HIL, to fleet

Modern vehicle validation demands reliable visibility across distributed ECUs, mixed bus technologies, and increasingly complex architectures.

In this session, experts from Technica Engineering explain how deterministic, hardware‑based capture enables accurate correlation of CAN, LIN, and Ethernet traffic, ensuring critical startup, wake‑up, and intermittent-fault data are captured consistently across bench, HIL, and fleet environments.

TOPICS COVERED

How hardware timestamping enables deterministic logging and trustworthy analysis across distributed in vehicle networks
Techniques for multi bus correlation using time synchronization and cascading architectures
How to reliably capture ECU startup traffic, TC10 wake up events, and intermittent faults that are often missed by traditional setups
How the internal buffering feature of Capture Modules allows for the storage of early and transient data when downstream systems are not yet ready
ON-DEMAND

Secure. Synchronized. Easy. Modern IVN Validation with Technica Enhanced Ethernet Switches

Validate Automotive Ethernet when ECUs are encrypted and time synchronization is needed.

Learn how Technica Enhanced Ethernet Switches enable port segmentation for ECU connectivity, MACsec decrypt, encrypt, mirror, and log traffic, and advanced filtering to redirect selected frames to simulation, without rebuilding your bench.

TOPICS COVERED

A practical “one-use-case” IVN validation workflow: connect ECUs, time sync, log safely, and introduce simulation paths. All within one coherent bench storyline.
MACsec testing without going blind: how decrypt, encrypt, and authentification enables observation/diagnostics while maintaining security posture.
Traffic control that supports validation experiments: advanced filters and actions (mirror/drop/count/force‑route) for targeted inspection or redirection.
Simulation interaction without bench rework: redirect/select frames to a simulation PC and inject secure traffic back through the EES path.
What “simplification” looks like in reality: examples of reduced devices and improved scalability/control from real deployments.
ON-DEMAND

SerDes technologies in action: Enabling smarter sensor validation

SerDes (Serializer/Deserializer) technology is rapidly evolving in the automotive industry to manage the escalating data demands of advanced driver-assistance systems (ADAS) and high-resolution displays. Those applications require high-speed and low-latency asymmetric data transmission.

In this free webinar, Danyal Jalil Popalzai and Martí Cobos of Technica Engineering provide a technical overview of SerDes technologies fundamentals, focusing on sensor module applications.

The experts also examine practical aspects of data logging for this technology and demonstrate its application capturing sensor data in an automotive SerDes link.

TOPICS COVERED

Understand automotive sensor module applications
Explore different In-Vehicle SerDes Technologies for sensor data transmission
Experience a live demonstration with seamless data capture on an automotive sensor module SerDes link
ON-DEMAND

10BASE-T1S in action and its practical use cases in vehicle networks

10BASE-T1S is emerging as a low-speed in-vehicle communication technology with unique characteristics. Unlike traditional Ethernet, it operates on a single-pair, bus-based architecture, introducing new implementation challenges for modern vehicles.

In this webinar, experts from Technica Engineering will provide a technical overview of 10BASE-T1S fundamentals, including its method for managing network traffic on a multi-drop bus

The experts will also examine practical aspects of data logging for this technology and demonstrate its application in controlling low-speed sensors within an automotive environment.

TOPICS COVERED

Discover 10BASE-T1S handling multi-node communication
Understand how to combine data logging and physical layer events
Experience a live demonstration with Direct Sensor Connectivity