Search results for "octeon"
Converter from a MIPI20T to a MIPI60 connector, designed to connect a MIPI20T-HS Whisker (from a CombiProbe or MicroTrace) to a target with MIPI60 connector. Can be used for debugging with optional 4-bit trace if a MIPI60 connector is mounted on the target.
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Converter from a MIPI20T to a MICTOR38 connector with ETM pin-out, designed to connect a MIPI20T-HS Whisker (from a CombiProbe or MicroTrace) to a target with MICTOR38 connector. Can be used for debugging with optional 4-bit trace if a MICTOR38 connector with 4-bit ETM pin-out is mounted on the target.
PowerDebug is a powerful, modular, flexible debug system that provides the broadest coverage of supported chips and core architectures in the embedded industry.
Use our TRACE32 Trace Extensions to get full insights of your embedded system
Ensure Perfect Recordings for High-Speed Parallel Trace Ports.
Universal debug controller of the Extended Connectivity Line (Gen 4) with 1 Gbit Ethernet (via UDP/IP) and USB 3.x Gen 1 for Windows/Linux/macOS Requires a TRACE32 Debug Cable and CombiProbe. Can be extened via an optional PowerTrace trace module and PowerIntergrator logic analyzer. Requires TRACE32 software DVD 2015/02 or newer.
Converter from a MIPI20T to a TI-14 debug connector, designed to connect the debug lines of a MIPI20T-HS Whisker (from a CombiProbe or MicroTrace) to a target with TI-14 connector. Can be used for debugging if a TI-14 connector is mounted on the target, which is used on many targets with processors from Texas Instruments. There is a pin header to optionally receive trace signals from elsewhere.
Converter from a MIPI20T to an IDC20A debug connector, designed to connect the debug signals of a MIPI20T-HS Whisker (from a CombiProbe or MicroTrace) to a target with IDC20A connector. Can be used for debugging if an IDC20A connector is mounted on the target, which is used on many targets with Arm SoCs or Arm-compatible SoCs. There is a pin header to optionally receive trace signals from elsewhere.
Our debug and trace tools support both SMP systems (Symmetric Multiprocessing) and AMP systems (Asymmetric Multiprocessing).