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Supplier: Sofradir - EC, Inc.
Description: Uncooled detectors from 1024x768 down to 160x120 pixel arrays and smaller for both high performance and commercial applications. Ideal for integration into military, commercial and industrial thermal imaging products.
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Supplier: SPIE - Education
Description: an in-depth look at important technologies. The course describes the fundamentals of uncooled IR imaging arrays, emphasizing resistive bolometric and ferroelectric/pyroelectric detectors, but also including a number of innovative technologies such as thermally activated cantilevers,
- Industry: Aerospace / Defense
- Type: Course
- Technology / Subject Expertise: Design / Engineering Methods (ESDU, DFx, etc.), Photonics / Optics
- Delivery: On-site / In Plant
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Supplier: SPIE - Education
Description: Within the infrared community, it is widely held that uncooled sensors are incapable of doing accurate quantitative work. This course aims to show that quantitative imaging is actually possible with uncooled systems by demonstrating the steps to achieve radiometric calibration in
- Type: Course
- Delivery: On-site / In Plant
- Technology / Subject Expertise: Photonics / Optics
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Supplier: Fluke
Description: Fluke Ti450 SF6 Gas Leak Detector. Thermal Imager with MultiSharp™ Focus and the added feature of SF6 gas detection. Get the analysis you need anytime, anywhere. Detects and pinpoints the exact location of the SF6 leak – without shutting down equipment Quick entry/exit button allowing quick
- Measurement Range: -20 to 1,200 C
- Portable: Battery Powered
- Features & Options: Built-in Color / Visual Camera
- Detector Type: Flying Spot
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Supplier: SPIE
Description: qualifying them for use in uncooled infrared detectors. Infrared detectors are encountered in a vast number of applications in both war and peace—many of their uses are routine to us in everyday life. With the advent of new technologies, thermal sensing and imaging have become
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Supplier: InfraTec GmbH
Description: Thermal infrared camera system for security and surveillance applications Uncooled FPA detector with (1,024 × 768) IR pixels Noiseless long-term observations Personnel detection range up to 6.1 km Vehicle detection range up to 10.7 km
- Measurement Range: -40 to 2,000 C
- Spectral Range: 7.5 to 14 microns
- Accuracy: 1 ±% Full Scale
- Temperature Resolution: 0.019999999999999997 C
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Supplier: Optris Infrared Sensing, LLC
Description: The PI 400i infrared camera measures surface temperatures with a broad temperature range from -20 up to 1500 °C. Utilizing uncooled detector technology, it offers high reliability and a rapid 80 Hz frame rate for motion blur-free imaging. Its 17 µm pixel pitch enables precise
- Measurement Range: -20 to 1,500 C
- Spectral Range: 8 to 14 microns
- Maximum Frame Rate: 27 to 80 frames per second
- Horizontal: 382 lines
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Description: radiations. The focal length of the thermal lens modules and the dimension of the sensor/detector determine the FOV. For a given dimension of the detector, FOV is only dependent upon the focal length of the lenses. Unlike a set of double FOV lenses which has two switchable focal
- Wavelength: 17,000 to 14,000 nm
- Working Distance: 15,000.000000000002 mm
- Focal Length: 0.15 to 0.02 m
- Type: Specialty / Other
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Description: radiations. The focal length of the thermal lens modules and the dimension of the sensor/detector determine the FOV. For a given dimension of the detector, FOV is only dependent upon the focal length of the lenses. Unlike a set of double FOV lenses which has two switchable focal
- Wavelength: 12,000 nm
- Focal Length: 0.035 m
- Type: Specialty / Other
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Description: radiations. The focal length of the thermal lens modules and the dimension of the sensor/detector determine the FOV. For a given dimension of the detector, FOV is only dependent upon the focal length of the lenses. Unlike a set of double FOV lenses which has two switchable focal
- Wavelength: 7,700.000000000001 to 9,600 nm
- Focal Length: 0.275 m
- Type: Specialty / Other
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Supplier: InfraTec GmbH
Description: Designed for universal use, the compact camera TarisIR® mini with the corresponding IRBIS® software from InfraTec enables entry-level access to stationary thermography at an excellent price-performance ratio. The radiometrically calibrated infrared camera is based on an uncooled
- Measurement Range: -40 to 600 C
- Spectral Range: 8 to 14 microns
- Accuracy: 2 ±% Full Scale
- Temperature Resolution: 0.019999999999999997 C
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Description: radiations. The focal length of the thermal lens modules and the dimension of the sensor/detector determine the FOV. For a given dimension of the detector, FOV is only dependent upon the focal length of the lenses. Unlike a set of double FOV lenses which has two switchable focal
- Wavelength: 17,000 nm
- Focal Length: 0.049999999999999996 m
- Type: Specialty / Other
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Supplier: InfraTec GmbH
Description: The VarioCAM® HDx head S is a state-of-the-art and very compact radiometric thermographic camera designed for stationary use. High-performance detector in (640 × 480) IR pixels format GigE-Vision interface for camera control and data acquisition Precise and highly repeatable measurements with
- Measurement Range: -40 to 600 C
- Spectral Range: 7.5 to 14 microns
- Accuracy: 2 ±% Full Scale
- Temperature Resolution: 0 to 0.039999999999999994 C
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Supplier: InfraTec GmbH
Description: High-resolution, radiometrically calibrated infrared cameras with a very good price/performance ratio - these are the new SWIR cameras from the ImageIR® series. They are suitable for temperature measurements from 300 °C and operate in the short-wave infrared range. Detector operating in
- Measurement Range: 300 to 1,700 C
- Spectral Range: 0.9 to 1.7 microns
- Accuracy: 1 ±% Full Scale
- Temperature Resolution: 1 C
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Supplier: CHINO Works America Inc.
Description: TP-L series is a compact infrared thermal imaging sensor utilizing a thermopile array detector. This CHINO developed detector allows the sensor to measure real time temperature. Ethernet connectivity allows the sensor to communicate with PC running CHINO Imaging Software or customer's
- Measurement Range: -20 to 300 C
- Spectral Range: 10 microns
- Temperature Resolution: 0.5 C
- Maximum Frame Rate: 3 frames per second
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Supplier: OMEGA Engineering, Inc.
Description: The OSXL-101 is a compact infrared thermal imaging sensor utilizing a thermopile array detector. The OSXL-101 sensor measures realtime temperature and a thermal image up to 300°C (572°F). Ethernet connectivity allows the sensor to communicate with the PC running the application software or
- Measurement Range: -20 to 300 C
- Accuracy: 2 ±% Full Scale
- Temperature Resolution: 0.5 C
- Maximum Frame Rate: 3 frames per second
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Supplier: Qualitrol Company, LLC
Description: operator, unlike Ring Flux test which is potentially damaging to the uncooled core Faster test scanning (up to 120 mm/sec at 60 Hz) Easier excitation calculations Simpler testing with dual Chattocks (detection coils) User-friendly LCD display to guide user operation Can combine step-iron data
- Instrument Type: Condition Monitor / Fault Detector
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Description: Ranges between 800...3000 °C Uncooled, fully radiometric detector (UFPA) Spectral range: NIR (short wavelength), customer specific adaptation on request Display of temperature at 307.200 measurement points (640 x 480 pixel) Unique measurement accuracy of 0,5% of reading Display of
- Measurement Range: 600 to 3,000 C
- Spectral Range: 0.75 to 3 microns
- Accuracy: 0.5 ±% Full Scale
- Maximum Frame Rate: 60 frames per second
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Supplier: Synertron Technology, Inc.
Description: 80 x 62 Uncooled LWIR Thermal Camera 80 x 62 Uncooled LWIR Thermal Camera FM8062-V1 FOV@44° FM8062-V2 FOV@90° Features: Uncooled IR Detector Up to 6M Detection Range with accuracy of +/- 0.3℃ -40 ~ +500℃ Scene Temperature Range Multiple Temperature-taking Contactless,
- Maximum Frame Rate: 25 fps
- Camera Function: Still
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Supplier: JENOPTIK Optical Systems, Inc.
Description: The VarioCAM® high resolution research 1.2 Mega (RE) model features and uncooled microbolometer detector and captures highly detailled thermographs with resolutions of up to 1280 x 960 Pixel. Included is an color camera working in the VIS spectrum as well as an high resolution (VGA)
- Spectral Range: 7.5 to 14 microns
- Accuracy: 2 ±% Full Scale
- Maximum Frame Rate: 50 to 60 frames per second
- Horizontal: 640 to 1,280 lines
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Supplier: OMEGA Engineering, Inc.
Description: available in a variety of pixel resolutions and can meet the spatial resolution requirements of most applications. Eliminate the guesswork, see heat patterns with the thermal imagery and extract temperature values from live or recorded imagery. This instrument has uncooled micro bolometer
- Measurement Range: -40 to 550 C
- Spectral Range: 7.5 to 13 microns
- Accuracy: 5 ±% Full Scale
- Horizontal: 80 to 320 lines
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Supplier: JENOPTIK Optical Systems, Inc.
Description: camera modules from Jenoptik warrant for exact meauring results of highest reliabilty and reproducibilty. This is why thermographic cameras from Jenoptik are setting market standards since years and worldwide. Especially the models equipped with high resolution microbolometer detector and
- Spectral Range: 7.5 microns
- Accuracy: 2 ±% Full Scale
- Maximum Frame Rate: 50 to 60 frames per second
- Horizontal: 640 lines
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Supplier: SPIE
Description: Advancing technology in detector arrays, flat panel displays, and digital image processing provides new opportunities to expand imaging applications and enhance system performance. Technical managers and design engineers are faced with evaluating the cost, weight, and performance of an
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Supplier: SPIE - Education
Description: cover a wide range of IR and UV applications, including: CCDs and CMOS detectors Infrared focal plane arrays Cooled and uncooled infrared sensors Infrared Radiometry Thermography Industrial inspection Research and Development applications Corona detection and shortwave UV imaging
- Industry: Aerospace / Defense
- Type: Course
- Technology / Subject Expertise: Design / Engineering Methods (ESDU, DFx, etc.), Photonics / Optics
- Delivery: On-site / In Plant
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Supplier: Vibration Specialty Corporation
Description: technology for static & dynamic resolution quadruplication, 384 x 288 uncooled microbolometer with a thermal range of -40 to 120 C NETD<80mk. • Never be annoyed again about washed-out, out-of-focus or pixilated thermograms. • In the future, you will also produce large-format printouts without
- Measurement Range: -40 to 1,200 C
- Spectral Range: 7.5 to 14 microns
- Temperature Resolution: 0.006 to 0.008 C
- Maximum Dimension: 6.3779562 inch
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Supplier: Transcat, Inc.
Description: IR detector Measurement Range -4°F to 1112°F (-20°C to +600°C ) Accuracy ± 2°C or 2% of reading Image Frequency 9Hz Detector 320 x 240 uncooled microbolometer Thermal Sensitivity/NETD 50mK Spectral Range 8µm to 14µm Field of View (FOV) 25° x 20.5° Spatial resolution (IFOV) 1.38
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Supplier: SPIE - Education
Description: temperature calibrations and measurements are then used as an illustration of these radiometric principles. Section 3 is devoted to fundamental background issues for optical detection-processes. It compares the characteristics of cooled and uncooled detectors with an emphasis on
- Industry: Aerospace / Defense
- Type: Course
- Technology / Subject Expertise: Design / Engineering Methods (ESDU, DFx, etc.), Photonics / Optics
- Delivery: On-site / In Plant
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Supplier: Andover Corporation
Description: today's advancing CubeSat and SmallSat markets. Mercury Cadmium Telluride (HgCdTe) detectors cover this range from 600nm to 5 microns. Applications for aircraft surveillance, satellite navigation, and mapping of the troposphere for weather monitoring are all growing industries. N band is the
- Application: Infrared (IR)
- Features: Other
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Supplier: Materion Corporation
Description: US defense companies initially developed thermal Imaging cameras for use in military applications. The initial technologies for thermal imaging relied on cryogenically cooled IR detectors, which were expensive. Over the past 10 years, commercial applications for thermal imaging cameras have
- Filter Type: Bandpass / Interference Filters, Long Pass Filters, Short Pass Filters
- Application: Infrared (IR)
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Supplier: ValueTronics International, Inc.
Description: point and shoot Extremely portable, self contained and battery operated Detector: Themoelectric uncooled with Sensitivity of 0.1°C Warm-up time: Less than 15 seconds Lens: Germanium (Gm) 20mm, f/0.8 , – OPTIONAL wide angle 35 degree Field of View (FOV) 10 mm lens, or Telephoto 8 degree
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Supplier: Sonel Test
Description: schools and other places with large flow of people to control and reduce the spread of diseases with fever symptom, such as Novel Coronavirus, Ebola, SARS or Zika. Features 400 x 300 px infrared uncooled Vox detector Automatic focus on a person's face Warning sound alarm when a person
- Features: Digital Front Panel
- Interface Options: Other Computer Interface
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Supplier: Larson Electronics LLC
Description: lens. Infrared detectors are then used to scan this focused radiation. The detectors create what is called a thermogram, or temperature map. The thermogram is then translated into electric impulses. The electric impulses are then sent to a signal-processing unit where they are
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corresponding IRBIS® software from InfraTec enables entry-level access to stationary thermography at an excellent price-performance ratio. The radiometrically calibrated infrared camera is based on an uncooled microbolometer FPA detector of the latest generation with (640 × 480) IR pixels and a (read more)
Browse Thermal Imagers Datasheets for InfraTec GmbH
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EETimes.com | Electronics Industry News for EEs & Engineering Managers
companies. Sarcon has developed an IR detector that works on the basis of a MEMS microcantilever beam technology and which can work uncooled, the companies said. Korean DRAM makers hike output Samsung Electronics Co. and Hynix Semiconductor Co. increased their unit production of DRAMs by 4%
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High-Operating-Temperature Infrared Photodetectors
The increase of absorption with doping levels used for device fabri- cation of uncooled detectors is quite significant (a factor of ≈2 for x ≈ 0.17 and Na = 2 × 1017 cm−3 ).
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THz and Security Applications
What is better for uncooled detectors and arrays: good antenna impedance matching with worse detector NEP or lower (better) detector NEP but worse antenna impedance matching?
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Functional Nanomaterials and Devices for Electronics, Sensors and Energy Harvesting
Uncooled Detector Challenges for mm/sub-mm Range . . . . . . . . . . . .
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Polycrystalline lead selenide: the resurgence of an old infrared detector
This work allocates polycrystalline PbSe in the current panorama of the uncooled IR detectors, underlining its potentiality in two areas of interest, i.e., very low cost imaging IR detectors and MWIR fast uncooled detec- tors for security and defence applications.
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Millimeter-wave narrow-gap uncooled hot-carrier detectors for active imaging
types of uncooled detectors with NEP > 10−10 to 10−11 W∕ .
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Uncooled infrared detectors and focal plane arrays
In addition, the uncooled infrared detector program at the Army Research Laboratory, that includes research facilities for and research efforts toward uncooled detectors and focal plane arrays is presented.
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A Low-Cost 128 × 128 Uncooled Infrared Detector Array in CMOS Process
Although this approach provides very uniform arrays with very good potential for low-cost high performance uncooled detectors , its fabrication is based on a dedicated in-house SOI CMOS process, where intra-CMOS MEMS process steps are included.
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A low-cost uncooled infrared microbolometer detector in standard CMOS technology
The most widely used uncooled detector approach is to im- plement microbolometers using surface micromachined bridges on CMOS processed wafers, where infrared radiation increases the temperature of a material formed on the thermally isolated and suspended bridge, causing a change in its …
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Measurement of radiation energy by spectrometric systems based on uncooled silicon detectors
The results of measurements of the CXR lines of calcium and titanium obtained with the uncooled detector with a preamplifier and resistive feedback are presented in Figs. 1 and 2.
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Simple fabrication of an uncooled Al/SiO2 microcantilever IR detector based on bulk micromachining
Pyroelectrics (Xu et al. 2012; Fujitsuka et al. 1998), Thermopiles (Szentpali et al. 2012; Schieferdecker et al. 1995), Bolometers (Wang et al. 2012; Dobrzafiski et al. 1997) and Microcantilevers (Cheng et al. 2013a) are among these types of uncooled detectors .
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