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20 "Monitoring and Debugging" Solutions

1
Corvette-F1 N25
Corvette-F1 N25 is an Amazon FreeRTOS-qualified, Arduino-compatible and FPGA-based evaluation platform.

2
In-Chip Monitoring Subsystem for Process, Voltage & Temperature (PVT) Monitoring, TSMC 12FFC
A full suite of embedded monitoring IP managed by a PVT controller with standard interfaces, creates a complete subsystem dedicated to maximizing performance, optimizing power, reliability and enablin...

3
In-Chip Monitoring Subsystem for Process, Voltage & Temperature (PVT) Monitoring, TSMC 16FFC
A full suite of embedded monitoring IP managed by a PVT controller with standard interfaces, creates a complete subsystem dedicated to maximizing performance, optimizing power, reliability and enablin...

4
In-Chip Monitoring Subsystem for Process, Voltage & Temperature (PVT) Monitoring, TSMC 28HPC+
A full suite of embedded monitoring IP managed by a PVT controller with standard interfaces, creates a complete subsystem dedicated to maximizing performance, optimizing power, reliability and enablin...

5
In-Chip Monitoring Subsystem for Process, Voltage & Temperature (PVT) Monitoring, TSMC N5
A full suite of embedded monitoring IP managed by a PVT controller with standard interfaces, creates a complete subsystem dedicated to maximizing performance, optimizing power, reliability and enablin...

6
In-Chip Monitoring Subsystem for Process, Voltage & Temperature (PVT) Monitoring, TSMC N6
A full suite of embedded monitoring IP managed by a PVT controller with standard interfaces, creates a complete subsystem dedicated to maximizing performance, optimizing power, reliability and enablin...

7
In-Chip Monitoring Subsystem for Process, Voltage & Temperature (PVT) Monitoring, TSMC N7
A full suite of embedded monitoring IP managed by a PVT controller with standard interfaces, creates a complete subsystem dedicated to maximizing performance, optimizing power, reliability and enablin...

8
PVT Controller (Series 3+), TSMC 12FFC
The PVT Controller provides a standard digital interface to the embedded Process, Voltage and Temperature (PVT) sensing Sub-System used to increase System on Chip performance and reliability. On-chip ...

9
PVT Controller (Series 3+), TSMC 16FFC
The PVT Controller provides a standard digital interface to the embedded Process, Voltage and Temperature (PVT) sensing Sub-System used to increase System on Chip performance and reliability. On-chip ...

10
PVT Controller (Series 3+), TSMC N7
The PVT Controller provides a standard digital interface to the embedded Process, Voltage and Temperature (PVT) sensing Sub-System used to increase System on Chip performance and reliability. On-chip ...

11
PVT Controller (Series 4) (Sub-system for complete PVT monitoring), TSMC N5
The PVT Controller provides a standard digital interface to the embedded Process, Voltage and Temperature (PVT) sensing Sub-System used to increase System on Chip performance and reliability. On-chip ...

12
PVT Controller (Series 4), TSMC N6
The PVT Controller provides a standard digital interface to the embedded Process, Voltage and Temperature (PVT) sensing Sub-System used to increase System on Chip performance and reliability. On-chip ...

13
PVT Controller, TSMC 28HPC+
The PVT Controller provides a standard digital interface to the embedded Process, Voltage and Temperature (PVT) sensing Sub-System used to increase System on Chip performance and reliability. On-chip ...

14
SHS is an automated hierarchical test solution for efficiently testing system-on-chips (SoCs) or designs using multiple IP/cores

The DesignWare® STAR Hierarchical System is an automated hierarchical test solution for efficiently testing system-on-chips (SoCs) or designs using multiple IP/cores, including analog/ mixed-si...


15
SMS is a comprehensive, integrated test, repair and diagnostics solution
The DesignWare® Self-Test and Repair (STAR) Memory System™ is a comprehensive, integrated test, repair and diagnostics solution that supports repairable or nonrepairable embedded memories across any f...

16
Analytics and optimization
By integrating fit-for-purpose non-intrusive monitoring and profiling blocks into the hardware design, the engineering team can obtain actionable intelligence from the real silicon, that they can use to tune performance parameters.

17
Deep capture / high visibility Debug IP for Intel FPGA
The customizable IP core is a logic analyzer core that can be used to monitor the internal signals of an FPGA design without having to store the full trace data in the FPGA.

18
Deep capture / high visibility Debug IP for Xilinx FPGA
The customizable IP core is a logic analyzer core that can be used to monitor the internal signals of an FPGA design without having to store the full trace data in the FPGA.

19
In-field
Use of on-chip processing allow the system manufacturer to enable development and optimization to be performed on the finished system, even after the device is shipped.

20
SoC Debug
The average SoC now has more than 100 IP blocks. Such devices are powerful, but there is a problem: they are so complex that it is effectively impossible to understand how they operate in every circumstance.

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