H05G1/12

Power supply apparatus for X-ray imaging system and mobile x-ray imaging system having same
11399424 · 2022-07-26 · ·

A power supply apparatus for an X-ray imaging system. A capacitor unit including a plurality of capacitor cells is connected in series to a single cell battery, such that the capacitor unit is charged using the single cell battery. Only when respective capacitor cells of the capacitor unit are charged, respective balance circuits corresponding to the respective capacitor cells are controlled to be turned on. When the balancing of the respective capacitor cells is completed, the balance circuits are opened. Accordingly, the power consumption of the capacitor cells is minimized.

Power supply apparatus for X-ray imaging system and mobile x-ray imaging system having same
11399424 · 2022-07-26 · ·

A power supply apparatus for an X-ray imaging system. A capacitor unit including a plurality of capacitor cells is connected in series to a single cell battery, such that the capacitor unit is charged using the single cell battery. Only when respective capacitor cells of the capacitor unit are charged, respective balance circuits corresponding to the respective capacitor cells are controlled to be turned on. When the balancing of the respective capacitor cells is completed, the balance circuits are opened. Accordingly, the power consumption of the capacitor cells is minimized.

X-Ray Machine Head And Image Device
20210400795 · 2021-12-23 ·

The present invention discloses an X-ray machine head and an image device, and relates to the field of X-ray image devices. The X-ray machine head comprises a high-voltage DC power supply unit, a low-voltage DC power supply unit, one or more first switch units, one or more second switch units, a central information processing unit, a housing, one or more filament power supply units, a communication unit, one or more X-ray tubes, and an insulating medium which is contained in the housing. The X-ray machine head is small in volume, which is conducive to portable applications. By directly controlling a gate of a gate-controlled X-ray tube to control the occurrence and termination of X-rays, the imaging quality is high and the radiation damage is small.

X-Ray Machine Head And Image Device
20210400795 · 2021-12-23 ·

The present invention discloses an X-ray machine head and an image device, and relates to the field of X-ray image devices. The X-ray machine head comprises a high-voltage DC power supply unit, a low-voltage DC power supply unit, one or more first switch units, one or more second switch units, a central information processing unit, a housing, one or more filament power supply units, a communication unit, one or more X-ray tubes, and an insulating medium which is contained in the housing. The X-ray machine head is small in volume, which is conducive to portable applications. By directly controlling a gate of a gate-controlled X-ray tube to control the occurrence and termination of X-rays, the imaging quality is high and the radiation damage is small.

Scanning X-Ray System
20210385931 · 2021-12-09 ·

A raster scanning x-ray source can be light and small, and can have high resolution. A raster-assembly can be attached directly to and can encircle an x-ray tube. The raster-assembly can adjoin or can be very close to the x-ray tube, resulting in a small and lightweight scanning x-ray source. X-rays can backscatter back into the x-ray tube instead of into a detector, thus improving resolution of the resulting image. A voltage-multiplier, which can be used with the x-ray source, can include separate voltage-multiplier-stages in a stack,

Systems and methods for powering an imaging system

Methods and systems are provided for powering an imaging system. In one embodiment, a system comprises a direct current (DC) bus, an x-ray source coupled to the DC bus, a power distribution unit (PDU) with an input coupled to a three-phase alternating current (AC) source and an output coupled to the DC bus, and an energy storage apparatus comprising a supercapacitor, the energy storage apparatus coupled to the DC bus and configured to store electrical energy output by the PDU in the supercapacitor, and output the stored electrical energy directly to the DC bus for powering the x-ray source. In this way, an x-ray source of an imaging system may be adequately powered beyond the limitations of a PDU without upgrading the electrical utilities of a hospital and without upgrading the PDU. The supercapacitor is protected by FPGA by measuring input current, voltage, temperature, and voltage balance.

Systems and methods for high voltage generation

The present disclosure relates to a high voltage generator including multiple high voltage generating modules configured to provide a total voltage. Each of the multiple high voltage generating modules may be configured to receive a driving pulse and generate a voltage component of the total voltage according to the driving pulse. The multiple high voltage generating modules may be in a series connection. Time points when the multiple high voltage generating modules receive driving pulses may be different, and waveforms of the driving pulses may be the same.

MULTILEVEL RESONANT DC-DC CONVERTER
20210351713 · 2021-11-11 ·

Resonant DC-DC converters use a switching network to step a single DC voltage up to a working DC level using a resonant tank. However, high voltage DC power supply systems, for example, those used to power X-ray sources, are increasingly being integrated into smaller form factors, and it is becoming attractive to be able to make use of multiple DC-DC power supplies to power such X-ray sources. The present invention provides a topology for a resonant DC-DC converter, a DC electrical supply system, and method of operating a DC-DC resonant converter. The proposed topology uses a switching network to connect multiple DC power supplies to the resonant tank, to enable a more flexible provision of input power.

MULTILEVEL RESONANT DC-DC CONVERTER
20210351713 · 2021-11-11 ·

Resonant DC-DC converters use a switching network to step a single DC voltage up to a working DC level using a resonant tank. However, high voltage DC power supply systems, for example, those used to power X-ray sources, are increasingly being integrated into smaller form factors, and it is becoming attractive to be able to make use of multiple DC-DC power supplies to power such X-ray sources. The present invention provides a topology for a resonant DC-DC converter, a DC electrical supply system, and method of operating a DC-DC resonant converter. The proposed topology uses a switching network to connect multiple DC power supplies to the resonant tank, to enable a more flexible provision of input power.

X-ray generator

The X-ray generator includes a booster for boosting a first DC voltage supplied from a voltage source to a second DC voltage higher than the first DC voltage, at least one capacitor for receiving the second DC voltage and generating a charging voltage on the basis of the second DC voltage, a converter for converting the charging voltage into a driving voltage, an X-ray source for receiving the driving voltage and emitting X-rays according to the driving voltage, and a controller for controlling the booster, the converter, and the X-ray source. The controller calculates a cooling time required for cooling the X-ray source to a predetermined temperature or lower, determines the magnitude of the second DC voltage according to the cooling time, and applies the second DC voltage to the capacitor for the cooling time.