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A pulsed current-mode class-D low-voltage high-bandwidth power amplifier for portable NMR systems
David Ariando1, Soumyajit Mandal2
1University of Florida, 1064 Center Drive, Gainesville, FL 32611, USA.
This study presents a novel pulsed current-mode class-D power transmitter for low-field Nuclear Magnetic Resonance (NMR) applications. The design enhances signal-to-noise ratio (SNR) and reduces echo times for portable NMR systems.
Area of Science:
- Nuclear Magnetic Resonance (NMR) spectroscopy
- Radio Frequency (RF) electronics
- Portable sensing technologies
Background:
- Low-field NMR systems are gaining traction for portable applications.
- Low magnet homogeneity necessitates short RF pulses for adequate excitation bandwidth and short echo times.
- High-Q coils, while improving SNR, can prolong RF pulse transients, limiting measurement bandwidth at low Larmor frequencies.
Purpose of the Study:
- To design a novel pulsed current-mode class-D power (PCMCD) transmitter for low-field NMR.
- To address the limitations of pulse transients and transmit bandwidth in portable NMR systems.
- To improve power efficiency and reduce echo times in RF excitation trains.
Main Methods:
- Design and implementation of a pulsed current-mode class-D power (PCMCD) transmitter.
- Incorporation of a charge recycling mechanism for enhanced power efficiency.
- Tuning the transmitter to a sample coil for high power output.
Main Results:
- The PCMCD transmitter achieves a peak RF power of 240 W into a 9.16 μH coil at 4 MHz from a single 12 V supply.
- Short pulse transients and high output bandwidth were maintained.
- Minimum achievable echo times of 70 μs and 25 μs were demonstrated, depending on the operating mode.
Conclusions:
- The developed PCMCD transmitter effectively overcomes bandwidth limitations in low-field NMR.
- The design enables high power transmission with improved efficiency for portable NMR applications.
- This technology facilitates faster measurements and reduced echo times, enhancing NMR system performance.
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