14 bit digital output CMOS voltage, temperature sensor in 110nm
TSENS1KPS110 is an IP for voltage, temperature sensing of the silicon chip die.
- Temperature Sensor
- GDS available
- 2023
Temperature Sensor IP cores measure on-chip or nearby temperature for control and protection in modern SoC and ASIC designs.
These IP cores support thermal monitoring, dynamic power management, safety supervision, and calibration across digital and mixed-signal systems
This catalog allows you to compare Temperature Sensor IP cores from leading vendors based on accuracy, response time, power consumption, and process node compatibility.
Whether you are designing processors and accelerators, automotive electronics, power management systems, or industrial controllers, you can find the right Temperature Sensor IP for your application.
14 bit digital output CMOS voltage, temperature sensor in 110nm
TSENS1KPS110 is an IP for voltage, temperature sensing of the silicon chip die.
A high precision low power junction temperature sensor that has been developed to be easily embedded into digital ASIC designs.
The Catastrophic Trip Sensor has been specifically designed to protect against thermal runaway and comprises a central hub and a …
Thermal Diode with Base Pin, TSMC N3
Thermal diodes provide a useful means for monitoring junction temperature on die and are typically independently powered from the…
Distributed Thermal Sensor (DTS) Non-Deep NWELL, TSMC N3
The granular DTS offers a significant area reduction in comparison to some standard in-chip thermal sensor solutions and supports…
Distributed Thermal Sensor (DTS) Deep NWELL, TSMC N3
The granular DTS offers a significant area reduction in comparison to some standard in-chip thermal sensor solutions and supports…
Temperature Sensor Non-Deep NWELL, TSMC N3
A high precision low power junction temperature sensor that has been developed to be easily embedded into digital ASIC designs.
Temperature Sensor Deep NWELL, TSMC N3
A high precision low power junction temperature sensor that has been developed to be easily embedded into digital ASIC designs.
The Catastrophic Trip Sensor has been specifically designed to protect against thermal runaway and comprises a central hub and a …
Thermal Diode with Base Pin, TSMC N5
Thermal diodes provide a useful means for monitoring junction temperature on die and are typically independently powered from the…
Distributed Thermal Sensor (DTS) Non-Deep NWELL, TSMC N5
The granular DTS offers a significant area reduction in comparison to some standard in-chip thermal sensor solutions and supports…
Distributed Thermal Sensor (DTS) Deep NWELL, TSMC N5
The granular DTS offers a significant area reduction in comparison to some standard in-chip thermal sensor solutions and supports…
Temperature Sensor Non-Deep NWELL, TSMC N5
A high precision low power junction temperature sensor that has been developed to be easily embedded into digital ASIC designs.
Temperature Sensor Deep NWELL, TSMC N5
A high precision low power junction temperature sensor that has been developed to be easily embedded into digital ASIC designs.
CM6217co is a low-power general purpose Temperature Sensor IP featuring 12-bit parallel digital readout (2’s complement 8-bit int…
12 bit digital output CMOS temperature sensor in 28nm
TSENU28HPCP is an IP for temperature sensing of the silicon chip die.
Temperature sensor consists of built-in 10-bit R-2R DAC, diode and own reference voltage former.
Temperature Sensor (with analog output buffer) on TSMC 40nm
The Renesas Temperature Sensor IP including Analog Buffer outputs an analog voltage which corresponds to the detected temperature of LSI on TSMC 40nm
Temperature Sensor (with analog output buffer) on TSMC 28nm
The Renesas Temperature Sensor IP including Analog Buffer outputs an analog voltage which corresponds to the detected temperature of LSI on TSMC 28nm
Temperature Sensor (with analog output buffer) on TSMC 22nm
The Renesas Temperature Sensor IP including Analog Buffer outputs an analog voltage which corresponds to the detected temperature of LSI on TSMC 22nm