FIELD: physics, optics.
SUBSTANCE: invention relates to detection of infrared radiation. The device for detecting infrared radiation includes: a substrate, an array (12) of elements for detecting said radiation, each having an image-forming resistive bolometer (14), wherein said array is formed over the substrate, a means (18) of reading bolometers of the array, a means (22) of measuring temperature in the substrate and a means (26) of correcting the signal generated from each bolometer (14) as a function of temperature measured in the substrate. The correction means (26) is configured to correct the signal generated from the image-forming bolometer (14) using a given physical model of the temperature behaviour of said signal.
EFFECT: easier and more accurate signal correction.
21 cl, 4 dwg
             
         
            
              
                | Title | 
                Year | 
                Author | 
                Number | 
              
							
              
                | DEVICE FOR DETECTING ELECTROMAGNETIC RADIATION HAVING RESISTIVE IMAGING BOLOMETER, SYSTEM HAVING ARRAY OF SAID DEVICES AND METHOD OF READING IMAGING BOLOMETER OF SAID SYSTEM | 
                2008 | 
                
									
										- Djupon Benua
 - Vilen Mishel'
 
									 
								 | 
                RU2486689C2 | 
              
							
              
                | DEVICE FOR DETECTING ELECTROMAGNETIC RADIATION, ESPECIALLY INFRARED RADIATION | 
                2008 | 
                
									
										- Djupon Benua
 - Vilen Mishel'
 
									 
								 | 
                RU2460977C2 | 
              
							
              
                | DEVICE FOR DETECTING INFRARED RADIATION, HAVING RESISTIVE IMAGING BOLOMETER, SYSTEM HAVING ARRAY OF SAID BOLOMETERS, AND METHOD OF READING IMAGING BOLOMETER INTEGRATED INTO SAID SYSTEM | 
                2008 | 
                
									
										- Djupon Benua
 - Vilen Mishel'
 
									 
								 | 
                RU2473059C2 | 
              
							
              
                | APPARATUS FOR DETECTING INFRARED RADIATION BASED ON BOLOMETRIC DETECTORS | 
                2008 | 
                
									
								 | 
                RU2454752C2 | 
              
							
              
                | METHOD FOR DETECTING AND CLASSIFYING SCENE EVENTS | 
                2015 | 
                
									
										- Midavaine, Thierry
 - Garin, Olivier
 
									 
								 | 
                RU2686566C2 | 
              
							
              
                | HIGH-SPEED BROADBAND INFRARED MICROBOLOMETRIC DETECTOR | 
                2014 | 
                
									
										- Demin Sergej Anatol'Evich
 - Troshin Bogdan Vasil'Evich
 - Zhukova Svetlana Aleksandrovna
 - Turkov Vladimir Evgen'Evich
 
									 
								 | 
                RU2574524C1 | 
              
							
              
                | DEVICE FOR REGISTRATION OF INFRARED RADIATION BASED ON MATRIX OF BOLOMETRIC DETECTORS WITH NONUNIFORMITY COMPENSATION SCHEME | 
                2018 | 
                
									
										- Turkov Vladimir Evgenevich
 - Zhukova Svetlana Aleksandrovna
 - Chetverov Yurij Stepanovich
 - Cherbov Andrej Dmitrievich
 - Koptsev Dmitrij Anatolevich
 
									 
								 | 
                RU2679272C1 | 
              
							
              
                | CORRECTION OF IMAGES PRODUCED BY DETECTOR WITHOUT TEMPERATURE ADJUSTMENT AND DETECTOR TO THIS END | 
                2010 | 
                
									
										- Minass'Jan Kristof
 - Pistr Klehr
 - Sh'Jappa Zhan-Mark
 
									 
								 | 
                RU2534432C2 | 
              
							
              
                | DEVICE FOR REGISTRATION OF INFRARED RADIATION BASED ON MATRIX OF BOLOMETRIC DETECTORS WITH CIRCUIT FOR INHOMOGENEITY COMPENSATION TAKING INTO ACCOUNT THE EFFECT OF SELF-HEATING | 
                2020 | 
                
									
										- Koptsev Dmitrij Anatolevich
 - Zhukova Svetlana Aleksandrovna
 - Turkov Vladimir Evgenevich
 
									 
								 | 
                RU2745484C1 | 
              
							
              
                | BOLOMETER, HEAT SENSOR, THERMAL VISOR, BOLOMETER OPERATION METHOD, HEAT SENSOR OPERATION METHOD | 
                2022 | 
                
									
										- Ryabko Maxim Vladimirovich
 - Koptyaev Sergey Nikolaevich
 - Sofronov Anton Nikolaevich
 
									 
								 | 
                RU2790003C1 |