PVT Sensor IP

Welcome to the ultimate PVT Sensor IP IP hub! Explore our vast directory of PVT Monitor IP.

Process, voltage, and temperature (PVT) monitors are semiconductor IP circuits that are typically embedded inside of system-on-chip (SoC) designs. Sensing the dynamic operating environment of the SoC (i.e., the voltage and temperature) as well as the static condition (i.e., process) provides a method to optimize the SoC’s performance based on the local conditions the chip is experiencing. Performance and power consumption can be optimized with this information. It is also possible to detect anomalies in chip performance that might stem from an SoC/system failure or a security breach.

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Compare 70 PVT Sensor IP from 13 vendors (1 - 10)
  • PVT Sensor on INTEL 16
    • The PVT Sensor is a highly integrated macro for monitoring process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
    • It consumes very little power even in operational mode, and leakage power only when measurement is complete.
    Block Diagram -- PVT Sensor on INTEL 16
  • Automotive Grade 1 – PVT Sensor on GLOBALFOUNDRIES 22FDX-AG1
    • The PVT Sensor is a highly integrated macro for monitoring process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
    • It consumes very little power even in operational mode, and leakage power only when temperature measurement is complete.
    • An additional voltage sample mode is included allowing for supply voltage monitoring, and process monitor mode to assess transistor performance.
    Block Diagram -- Automotive Grade 1 – PVT Sensor on GLOBALFOUNDRIES 22FDX-AG1
  • Automotive Grade PVT Sensor on TSMC CLN16FFC
    • The PVT Sensor is a highly integrated macro for monitoring process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
    • It consumes very little power even in operational mode, and leakage power only when temperature measurement is complete.
    • An additional voltage sample mode is included allowing for supply voltage monitoring, and process monitor mode to assess transistor performance
    Block Diagram -- Automotive Grade PVT Sensor on TSMC CLN16FFC
  • Core Powered PVT Sensor on TSMC CLN4P
    • The Core Powered PVT Sensor is an easy to integrate macro, requiring no analog power supply, and can be placed anywhere on a chip.
    • This highly integrated macro monitors process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
    • It consumes very little power even in operational mode, and leakage power only when measurement is complete.
    Block Diagram -- Core Powered PVT Sensor on TSMC CLN4P
  • Core Powered PVT Sensor on TSMC CLN5
    • The Core Powered PVT Sensor is an easy to integrate macro, requiring no analog power supply, and can be placed anywhere on a chip.
    • This highly integrated macro monitors process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
    • It consumes very little power even in operational mode, and leakage power only when measurement is complete.
    Block Diagram -- Core Powered PVT Sensor on TSMC CLN5
  • Core Powered PVT Sensor on TSMC CLN5A
    • The Core Powered PVT Sensor is an easy to integrate macro, requiring no analog power supply, and can be placed anywhere on a chip.
    • This highly integrated macro monitors process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
    Block Diagram -- Core Powered PVT Sensor on TSMC CLN5A
  • PVT Sensor on TSMC CLN2P
    • The PVT Sensor is a highly integrated macro for monitoring process, voltage, and temperature variation on-chip, allowing very high precision even in untrimmed usage.
    • It consumes very little power even in operational mode, and leakage power only when temperature measurement is complete.
    Block Diagram -- PVT Sensor on TSMC CLN2P
  • Process/Voltage/Temperature Sensor
    • The PVT Sensor IP is designed for on-chip monitoring of processes, voltage, and temperature variations
    • It is a critical component in modern SoC designs, enabling real-time measurement and monitoring of environmental and operational conditions
    • It offers a reliable solution for chip operating condition monitoring applications, such as power supply IR drop measurement, high temperature alert, and dynamic performance adjustment
    Block Diagram -- Process/Voltage/Temperature Sensor
  • Process/Voltage/Temperature Sensor (Supply voltage 1.8V/0.9V)
    • UMC 28nm HPC+ technology
    • Temperature measurement range -40°C ÷ +125°C
    • Core and IO Voltage measurement range: 0.58V÷0.92V, 1.0V÷2.0V, 1.5V÷3.63V and 0.8÷3.63V
    • High accuracy temperature and voltage measurements
    Block Diagram -- Process/Voltage/Temperature Sensor (Supply voltage 1.8V/0.9V)
  • TSMC 28HPC+ Process Monitor
    • Supply 0.9V
    • SVT, HVT and ULVT P and N devices
    Block Diagram -- TSMC 28HPC+ Process Monitor
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