The function of a large X-ray machine


High-frequency inverter technology achieves high-definition imaging with low-dose exposure. High-power, high-kV, high-mA load output meets the needs of whole-body photography.

High-frequency inversion technology achieves high-definition imaging with low-dose exposure. High-power, high-kV, high-mA load output meets the needs of whole-body photography. Short-time transient exposure eliminates motion artifacts, easily capturing image information. The APR function facilitates easy selection of photography conditions for different anatomical parts, and the optional ionization chamber AEC function enables automatic control of photography exposure.
Stable radiation output
High-slope, low-ripple output voltage enables high-power, high-kV, short-time photography, effectively reducing image blurring caused by internal organ movement and significantly improving image quality.
High-quality X-rays
High DC component, short imaging time; high exposure accuracy, good imaging repeatability, obtaining clear clinical images and rich diagnostic information with the minimum dose.
Effectively reduces radiation damage
Significantly reduces scattered radiation, lowering radiation intensity for both patients and operators. Under the same irradiation conditions, skin dose is reduced by 60% compared to power-frequency machines.
Computer-controlled
High degree of automation, expanded automatic control functions, easier operation, strong system expansion and upgrade capabilities, smaller size, higher efficiency, and significantly reduced ineffective radiation compared to traditional power-frequency generators.

Reduce imaging exposure to achieve photographic functionality and significantly reduce radiation

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The discovery of X-rays

In 1895, while studying the phenomenon of gas discharge in a cathode ray tube, German physicist Wilhelm Conrad Röntgen discovered that a screen coated with barium platinocyanide


The nature of X-rays

Penetration ability refers to the ability of X-rays to pass through matter without being absorbed. X-rays can penetrate substances that are opaque to visible light.


The application of X-rays in medicine

X-rays are used in medical diagnosis, primarily based on their penetrating power, differential absorption, photosensitivity, and fluorescence.


The function of a large X-ray machine

High-frequency inverter technology achieves high-definition imaging with low-dose exposure. High-power, high-kV, high-mA load output meets the needs of whole-body photography.


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