Technical

Medical linear accelerators are the core equipment for tumor radiotherapy.

Medical linear accelerators are the core equipment for tumor radiotherapy. They deliver precise irradiation to tumor target areas by generating high‑energy X‑rays or electron beams, serving as the fundamental platform for advanced clinical technique…

Methodology for High-Precision Output & Temperature Stability of High-Voltage Drive Power Supplies for Ophthalmic OCT Devices

Optical Coherence Tomography (OCT) is the core device for current ophthalmic clinical diagnosis. Featuring non‑contact, non‑invasive, high‑resolution and real‑time tomographic imaging, it is widely applied in the early screening and diagnosis of g…

Methodology for High-Energy Output and Consistency Optimization of High-Voltage Pulse Power Supplies for Extracorporeal Shock Wave Lithotripsy Devices

Extracorporeal Shock Wave Lithotripsy (ESWL) is a core device in urology for the treatment of urinary calculi. With its advantages of non-invasiveness, trauma-free nature, low treatment cost, and rapid patient recovery, it has become the preferred cli…

Methodology for Low-Ripple Output and Bipolar Fast Switching of High-Voltage Power Supply for Digital Mammography System

Digital mammography X‑ray machines (molybdenum target machines) represent the gold‑standard equipment for early screening and diagnosis of breast cancer. Featuring high‑contrast imaging of breast soft tissue, they can accurately detect microcalcifi…

Methodology for Integrated Integration and Dose Stability of Compact High-Voltage Generators for Dental CBCT

Dental Cone Beam Computed Tomography (CBCT) is the core imaging device in clinical stomatology. With the advantages of three‑dimensional tomography, low radiation dose, high spatial resolution and compact size, it is widely applied in full clinical d…

Methodology for Low Crosstalk Design of Multichannel High-Voltage Bias Power Supplies for Chemiluminescence Immunoassay Analyzers

The chemiluminescence immunoassay analyzer is a core device in the in‑vitro diagnostic (IVD) field. Featuring high sensitivity, wide detection range, rapid testing and high automation, it is widely used in clinical scenarios such as tumor marker dete…

Methodology for Optimizing Low Noise and Dynamic Response of High-Voltage Power Supplies for NMR Gradient Amplifiers

Magnetic Resonance Imaging (MRI) is one of the most advanced diagnostic modalities in modern medical imaging. Featuring non‑ionizing radiation, superior soft‑tissue resolution, and multi‑planar multi‑parameter imaging, it is widely applied in neur…

Methodology for Dual-Energy Rapid Switching and Spectrum Stability Optimization of High-Voltage Generators

Spectral CT represents the core development direction of high-end medical imaging today. Featuring material decomposition, monoenergetic image reconstruction, virtual non-contrast scanning and other advanced clinical functions, it breaks the limitatio…

Methodology for Multi‑Mode Output and Safety Isolation Protection of High‑Voltage Power Supplies for High‑Frequency Electrosurgical Units

High‑frequency electrosurgical units (ESUs) are essential core devices in surgical operations. Featuring fast cutting, reliable hemostasis, flexible operation, and compatibility with both open and laparoscopic procedures, they are widely used in gene…

Methodology for Long‑Term Stability and Safety Interlock Protection of High‑Voltage Power Supplies in Radiotherapy Simulators

Radiation therapy simulators are critical front‑end devices in the full oncology radiotherapy workflow, performing core functions including precise tumor target localization before treatment, radiation field planning, patient positioning verification…