Sensor / Monitor IP

Sensor and Monitor IP cores enable efficient integration of sensor data acquisition and monitoring functions into embedded systems. These IP cores support a wide range of sensors, including temperature, pressure, motion, and environmental sensors, allowing real-time data collection and analysis. With built-in features for signal conditioning, data processing, and communication, Sensor and Monitor IP cores enhance system reliability and accuracy in applications such as IoT, automotive, industrial automation, and healthcare.

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Compare 262 Sensor / Monitor IP from 40 vendors (1 - 10)
  • 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
  • Dual Saturation Detector
    • The WEASD18NI18RO41M22G is a baseband saturation detector that outputs a logic signal when the input voltage swing surpasses a programmable threshold, which can be digitally programmed
    • The circuit is able to detect 9 different reference values
    • The absolute accuracy is 16.47 mV
    • The system is capable of detecting signals from DC to 2.5 GHz
    Block Diagram -- Dual Saturation Detector
  • Saturation Detector
    • The WEASD18NI18RO21M22G is a baseband saturation detector that outputs a logic signal when the input voltage swing surpasses a programmable threshold, which can be digitally programmed
    • The circuit is able to detect 9 different reference values
    • The absolute accuracy is 16.47 mV
    • The system is capable of detecting signals from DC to 2.5GHz
    Block Diagram -- Saturation Detector
  • Temperature Sensor 1.8 V
    • The WEA10TS45 temperature sensor operates from -40 oC to 140 oC and produces an output voltage from 0 to 1.2 V
    • The core of the sensor can be detached from the processing unit and placed to the silicon area of interest
    • The sensor has an absolute accuracy of +/- 5oC and after offset and gain calibration the maximum residual error is below +/-1.25 oC
    • The control is done through two 16 digital control signal bus in a linear way
    Block Diagram -- Temperature Sensor 1.8 V
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