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Medical Infrared Thermal Imaging Systems!

Revolutionary Infrared Visualization

A revolutionary breakthrough in medical infrared imagery.

The Max110 radiometric auto-focus camera is a revolutionary breakthrough in medical infrared imaging quality. A digital photo-realistic sharpness and distinct imagery that is unknown in the medical field. With 110,592 pixel resolution, the Max110 renders simply stunning image quality with unprecedented temperature sensitivity and accuracy .

Radiometric is the gold standard demanded by medical infrared experts. The Max110 delivers on the standard by identifying the minute temperature variations to accurately reveal physiological activity in the human body. Only the Max110 achieves the highest level of temperature variation detection through radiometric technology.

The auto-focus capability of the Max110 ensures a quality, well-defined professional level imagery every time. Ease-of-use auto-focus functionality has been a long sought-after capability in the medical thermography industry.

Proprietary TotalVision Medical Software is user-friendly and designed to encourage immediate thermographer proficiency in performing medical quality images. Combined with auto-focus, we can assure maximum imaging performance required for clinical interpretation.

The Med-Hot Max110 represents a new vision in Medical Thermography. You can depend on Med-Hot to deliver on technological innovations for advancement of infrared modalities in patient healthcare.

The Max110 is appropriate for practitioner and clinical applications as well as medical research requirements.

Key Feature Highlights

New Standard - The Max110 raises the bar setting a new standard in the Medical Thermography Industry

Fully Radiometric - Maximum temperature accuracy achieved through camera calibration, not software.

High Resolution - 110,592 pixels (384 x 288) imagery. An industry improvement of 44% in resolution quality.

Sensitivity -<60mK thermal sensitivity to detect minute temperature changes.

Refresh - 60 frames per second true refresh rate for enhanced stability.

Auto-Focus - The first auto-focus ease-of-use camera in medical thermography. Preferred by thermographers everywhere.

Medical Software - Proprietary Medical-specific software to simplify and guarantee optimal medical imaging guidance

Microbolometer Technology with Amorphous Silicone Sensor Material
Specifications

Detector
384X288 Uncooled FPA
Pixel size 23.5 microns
Spectral Range 7.5 – 14 microns
Thermal Sensitivity .06 C @ 30 C
Accuracy +/- 2 O C or +/ – 2% of range
Sensor frame rate 60 Hz
Digital Output 16 bit raw data
Focus Automatic

As a fully radiometric device, the Max110 detector provides calibrated images to read truly
accurate pixel temperatures, which is not possible with non-radiometric cameras.

Array Size
An array size of 384x288, or an impressive 110,592 pixels per image is a major improvement in medical thermal imaging technology that renders significant and obvious improvement in image quality compared to other cameras with fewer pixels.
7.5-14 um Spectral Response Expected temperature of human body is optimized at this range
Thermal Sensitivity: <60 mK
(<50mK w/ noise reduction )
The thermal sensitivity is an incremental ability to detect minute temperature changes and is measured by NETD (Noise Equivalent Temperature Difference). The detector can sense a temperature change and can distinguish that change from the electronic noise inherent in all electronic devices. The detector senses a temperature change at .06°C (<60mK)
FireWire Output Data
Firewire data output, the standard today in quality imaging devices. Similar to USB, but provides greater bandwidth and does not require a converter.
Refresh Rate: 60 fps The refresh data rate of the digital video signal is fast at a true rate of 60 frames per second.
Pitch Size Pitch size of 35 um is an improvement in the 48um commonly seen in other cameras. The smaller the pitch size the better the image quality.
Focus Designed for automatic focus. This is a tremendous improvement that eliminates a common user error that can affect the quality of the study.

 

 

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