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A high-performance digital signal processor (DSP) or microcontroller is used to achieve rapid acquisition and processing of nuclear magnetic resonance signals to obtain accurate imaging results.
It supports data acquisition and control of multiple channels, and can process multiple slices or imaging parameters at the same time to improve imaging efficiency.
Built-in timing control logic ensures stable control of pulse sequence generation, gradient field and radio frequency signals, and ensures high quality of imaging signals.
Integrates multiple interface protocols such as USB, Ethernet and CAN, and the bus supports data exchange with host computers, displays, storage devices and other medical devices.
The PCB design is compact and uses highly integrated components to reduce the size of the device and facilitate integration into the overall structure of the MRI scanner.
Through reasonable circuit layout and design, the anti-interference ability of the PCB is enhanced to ensure stable and reliable operation in various electromagnetic environments.
Adopt an excellent heat dissipation solution to ensure that the temperature of the PCB is controlled within a safe range during long-term operation, thereby improving the reliability of the equipment.
A high-performance digital signal processor (DSP) or microcontroller is used to achieve rapid acquisition and processing of nuclear magnetic resonance signals to obtain accurate imaging results.
It supports data acquisition and control of multiple channels, and can process multiple slices or imaging parameters at the same time to improve imaging efficiency.
Built-in timing control logic ensures stable control of pulse sequence generation, gradient field and radio frequency signals, and ensures high quality of imaging signals.
Integrates multiple interface protocols such as USB, Ethernet and CAN, and the bus supports data exchange with host computers, displays, storage devices and other medical devices.
The PCB design is compact and uses highly integrated components to reduce the size of the device and facilitate integration into the overall structure of the MRI scanner.
Through reasonable circuit layout and design, the anti-interference ability of the PCB is enhanced to ensure stable and reliable operation in various electromagnetic environments.
Adopt an excellent heat dissipation solution to ensure that the temperature of the PCB is controlled within a safe range during long-term operation, thereby improving the reliability of the equipment.