The goal of this paper is twofold: first to add together all different causes that can alter the offset of a differential temperature sensor and, second, to present a new differential temperature sensor architecture that can digitally compensate for this behavior and therefore extends the sensor dynamic range. Measurements performed on a 65 nm CMOS differential temperature sensor are presented to illustrate the discussion. As evolution of the state of the art, an automatic calibration procedure and the new sensor topology is presented. With this new topology, not only the thermal offset can be digitally calibrated, but the application field of differential temperature sensors is widened, being now suitable for use in measurements where both...
A smart temperature sensor based on 0.35um ASMC CMOS process with an inaccuracy of ??1??C from -55??...
Differential temperature sensors can be placed in integrated circuits to extract a signature ofthe p...
[[abstract]]In this paper, we propose a high-resolution all-digital complementary metal–oxide semico...
The goal of this paper is twofold: first to add together all different causes that can alter the off...
The goal of the PFC is to do a step forward in the state of the art of differential temperture senso...
This paper presents a dynamic temperature sensor in 65nm CMOS with on-chip analog gain and offset co...
In this paper, a Time Domain CMOS Temperature Sensor with Differential Temperature Sensing Circuit a...
A CMOS digital temperature measurement technique is reported, which doesn't require an explicit refe...
Measurements of the thermal profile evolution obtained by built-in temperature sensors at the surfac...
The paper addresses sensor bias calibration when only differential bias is of interest as in relativ...
Measurements of the thermal profile evolution obtained by built-in temperature sensors at the surfac...
Abstract — A novel fully digital CMOS smart temperature sensor with auto-calibration circuit in 65nm...
This paper describes a temperature sensor realized in a 65nm CMOS process with a batch-calibrated in...
This letter presents a dynamic resistive temperature sensor for IoT ambient temperature monitoring a...
Abstract—This brief presents an autocalibrated all-digital tem-perature sensor circuit for use with ...
A smart temperature sensor based on 0.35um ASMC CMOS process with an inaccuracy of ??1??C from -55??...
Differential temperature sensors can be placed in integrated circuits to extract a signature ofthe p...
[[abstract]]In this paper, we propose a high-resolution all-digital complementary metal–oxide semico...
The goal of this paper is twofold: first to add together all different causes that can alter the off...
The goal of the PFC is to do a step forward in the state of the art of differential temperture senso...
This paper presents a dynamic temperature sensor in 65nm CMOS with on-chip analog gain and offset co...
In this paper, a Time Domain CMOS Temperature Sensor with Differential Temperature Sensing Circuit a...
A CMOS digital temperature measurement technique is reported, which doesn't require an explicit refe...
Measurements of the thermal profile evolution obtained by built-in temperature sensors at the surfac...
The paper addresses sensor bias calibration when only differential bias is of interest as in relativ...
Measurements of the thermal profile evolution obtained by built-in temperature sensors at the surfac...
Abstract — A novel fully digital CMOS smart temperature sensor with auto-calibration circuit in 65nm...
This paper describes a temperature sensor realized in a 65nm CMOS process with a batch-calibrated in...
This letter presents a dynamic resistive temperature sensor for IoT ambient temperature monitoring a...
Abstract—This brief presents an autocalibrated all-digital tem-perature sensor circuit for use with ...
A smart temperature sensor based on 0.35um ASMC CMOS process with an inaccuracy of ??1??C from -55??...
Differential temperature sensors can be placed in integrated circuits to extract a signature ofthe p...
[[abstract]]In this paper, we propose a high-resolution all-digital complementary metal–oxide semico...