Thermal imaging devices based on Complementary Metal-Oxide-Semiconductor (CMOS) and Micro-Electro-Mechanical System (MEMS) technology are widely used across consumer and industrial applications. The combination of CMOS and MEMS technologies allows for the production of devices with high performance, good reliability and consistent reproducibility. Additionally, these technologies allow devices to be manufactured at low cost and a high volume. There are several types of thermal sensing technologies, however, this thesis mainly focuses on 8×8 thermopile based Focal Plane Arrays (FPAs). The core principles governing the function of thermopiles are based on the Seebeck effect. In this thesis, the structure and fabrication process of thermopile...
We present a novel single-chip thermopile sensor array for mid-infrared room temperature imaging. Th...
This work presents the simulation results and design rules of a new sensor for IR-detection using th...
AFRL/MLPJE had developed a novel thermal sensing material termed protein-impregnated-polymer (PIP). ...
We present a new experimental technique to characterise the crosstalk of a thermopile-based thermal ...
This paper presents a detailed analysis of a micromachined thermopile detector featuring high respon...
We present a novel thermopile-based infrared (IR) sensor array fabricated on a single CMOS dielectri...
The spectral resolution of a MEMS-based IR microspectrometer critically depends on the thermal cross...
[[abstract]]This paper describes the CMOS circuit design of two different kinds of fast infrared tra...
A thermopile-based detector array for use in a miniaturized Infrared (IR) spectrometer has been desi...
The miniaturized IR spectrometer discussed in this paper is comprised of: slit, planar imaging diffr...
A thermopile-based detector array for use in a miniaturized Infrared (IR) spectrometer has been desi...
Abstract The advent of high quality factor (Q) microphotonic-resonators has led to the demonstration...
Thermal sensors, exploiting the relation between the thermal radiation emitted by an object and its ...
We present a novel single-chip thermopile sensor array for mid-infrared room temperature imaging. Th...
The miniaturized IR spectrometer discussed in this paper is comprised of: slit, planar imaging diffr...
We present a novel single-chip thermopile sensor array for mid-infrared room temperature imaging. Th...
This work presents the simulation results and design rules of a new sensor for IR-detection using th...
AFRL/MLPJE had developed a novel thermal sensing material termed protein-impregnated-polymer (PIP). ...
We present a new experimental technique to characterise the crosstalk of a thermopile-based thermal ...
This paper presents a detailed analysis of a micromachined thermopile detector featuring high respon...
We present a novel thermopile-based infrared (IR) sensor array fabricated on a single CMOS dielectri...
The spectral resolution of a MEMS-based IR microspectrometer critically depends on the thermal cross...
[[abstract]]This paper describes the CMOS circuit design of two different kinds of fast infrared tra...
A thermopile-based detector array for use in a miniaturized Infrared (IR) spectrometer has been desi...
The miniaturized IR spectrometer discussed in this paper is comprised of: slit, planar imaging diffr...
A thermopile-based detector array for use in a miniaturized Infrared (IR) spectrometer has been desi...
Abstract The advent of high quality factor (Q) microphotonic-resonators has led to the demonstration...
Thermal sensors, exploiting the relation between the thermal radiation emitted by an object and its ...
We present a novel single-chip thermopile sensor array for mid-infrared room temperature imaging. Th...
The miniaturized IR spectrometer discussed in this paper is comprised of: slit, planar imaging diffr...
We present a novel single-chip thermopile sensor array for mid-infrared room temperature imaging. Th...
This work presents the simulation results and design rules of a new sensor for IR-detection using th...
AFRL/MLPJE had developed a novel thermal sensing material termed protein-impregnated-polymer (PIP). ...