Air-core inductors are key components in power converters and measurement equipment. To optimally design inductors, their self-resonant frequency (SRF) as a result of inherent stray capacitance should be accurately estimated. This paper presents optimal design procedures for air-core inductors, considering constraints such as SRF and inductor volume. To this end, a methodology is proposed to estimate the variability of stray capacitances, accounting for various uncertainty factors. Specifically, for single-layer air-core inductors, an empirical expression is adopted and experimentally verified to provide better predictions compared to the commonly used physical-based approach. For multi-layer air-core inductors, an enhanced analytical appro...
A method for modeling inductors at high-frequency operation is presented. The method is based on ana...
Power electronics is an enabler for the low-carbon economy, delivering flexible and efficient contro...
Thesis: M. Eng., Massachusetts Institute of Technology, Department of Electrical Engineering and Com...
Air-core inductors are key components in power converters and measurement equipment. To optimally de...
A new analytic method for predicting the stray capacitance of a double layer coil with conducting sh...
A method for predicting stray capacitances of HF inductors dependent on their geometry is presented....
This paper proposes an improved analytical stray capacitance model for inductors. It considers the c...
A new method for predicting the stray capacitance of inductors is presented. The method is based on ...
This paper presents a method for predicting parasitic capacitances of solenoid NF inductors made of ...
Inductive devices are extensively employed in power electronic systems due to their magnetic energy ...
This paper deals with the optimized design of single-layer solenoid air-core inductors for HF applic...
Abstract: A novel optimization strategy for planar inductor design, based on a per-layer approach fo...
Abstract Inductive devices are extensively employed in power electronic systems due to their magneti...
The work in this report has consisted in the design of three different inductors to verify how condu...
This paper presents a design procedure for inductors based on low-permeability magnetic materials, f...
A method for modeling inductors at high-frequency operation is presented. The method is based on ana...
Power electronics is an enabler for the low-carbon economy, delivering flexible and efficient contro...
Thesis: M. Eng., Massachusetts Institute of Technology, Department of Electrical Engineering and Com...
Air-core inductors are key components in power converters and measurement equipment. To optimally de...
A new analytic method for predicting the stray capacitance of a double layer coil with conducting sh...
A method for predicting stray capacitances of HF inductors dependent on their geometry is presented....
This paper proposes an improved analytical stray capacitance model for inductors. It considers the c...
A new method for predicting the stray capacitance of inductors is presented. The method is based on ...
This paper presents a method for predicting parasitic capacitances of solenoid NF inductors made of ...
Inductive devices are extensively employed in power electronic systems due to their magnetic energy ...
This paper deals with the optimized design of single-layer solenoid air-core inductors for HF applic...
Abstract: A novel optimization strategy for planar inductor design, based on a per-layer approach fo...
Abstract Inductive devices are extensively employed in power electronic systems due to their magneti...
The work in this report has consisted in the design of three different inductors to verify how condu...
This paper presents a design procedure for inductors based on low-permeability magnetic materials, f...
A method for modeling inductors at high-frequency operation is presented. The method is based on ana...
Power electronics is an enabler for the low-carbon economy, delivering flexible and efficient contro...
Thesis: M. Eng., Massachusetts Institute of Technology, Department of Electrical Engineering and Com...