This paper presents the state-of-the-art in polymer-based 3-D printing of metal-pipe rectangular waveguides (MPRWGs) with the first reported terahertz filters, all operating within the WR-2.2 band (325 to 500 GHz): a 5 mm-long thru line, two 399 GHz single-cavity resonators and two 403 GHz bandpass filters (BPFs). Our thru line exhibits a measured average insertion loss of only 0.9 dB, with a worst-case return loss of 13.3 dB, across the band. The single-cavity resonators, without and with corner rounding compensation (CRC) are investigated with the use of an RLC equivalent circuit model. The uncompensated resonator exhibits a 2.3% frequency downshift and an increase of 10.8 GHz in its 3 dB bandwidth. The compensated resonator exhibi...
This paper presents a comprehensive study of a groove gap waveguide (also known as a waffle-iron) ba...
Additive and hybrid manufactured waveguide resonators and bandpass filters for mm-wave applications ...
As frequency increases the wavelength gets smaller and therefore the size of waveguides shrink. At t...
Abstract: For the first time, 3D printed metal-pipe rectangular waveguides (MPRWGs) have been demons...
This paper first reviews manufacturing technologies for realizing air-filled metal-pipe rectangular ...
Abstract — This paper first reviews manufacturing technologies for realizing air-filled metal-pipe r...
In recent years, additive manufacturing has experienced rapid growth, due to its inherent capabiliti...
Polymer-based additive manufacturing using 3-D printing for upper-millimeter-wave ( ca. 100 to 300 G...
Three-dimensional-printing technologies have been receiving great attention for a wide variety of ap...
This paper investigates physical dimension limits associated with the low-cost, polymer-based masked...
This thesis presents the design of microwave and terahertz filters, fabricated using different types...
The advances in the Terahertz (THz) technology drive the needs for the design and manufacture of wav...
This work explores a rapid design and manufacturing approach to realize complex 3D pillar type filte...
This paper presents two W-band waveguide bandpass filters, one fabricated using laser micromachining...
In this research, we present the design, fabrication, and experimental validation of 3D printed band...
This paper presents a comprehensive study of a groove gap waveguide (also known as a waffle-iron) ba...
Additive and hybrid manufactured waveguide resonators and bandpass filters for mm-wave applications ...
As frequency increases the wavelength gets smaller and therefore the size of waveguides shrink. At t...
Abstract: For the first time, 3D printed metal-pipe rectangular waveguides (MPRWGs) have been demons...
This paper first reviews manufacturing technologies for realizing air-filled metal-pipe rectangular ...
Abstract — This paper first reviews manufacturing technologies for realizing air-filled metal-pipe r...
In recent years, additive manufacturing has experienced rapid growth, due to its inherent capabiliti...
Polymer-based additive manufacturing using 3-D printing for upper-millimeter-wave ( ca. 100 to 300 G...
Three-dimensional-printing technologies have been receiving great attention for a wide variety of ap...
This paper investigates physical dimension limits associated with the low-cost, polymer-based masked...
This thesis presents the design of microwave and terahertz filters, fabricated using different types...
The advances in the Terahertz (THz) technology drive the needs for the design and manufacture of wav...
This work explores a rapid design and manufacturing approach to realize complex 3D pillar type filte...
This paper presents two W-band waveguide bandpass filters, one fabricated using laser micromachining...
In this research, we present the design, fabrication, and experimental validation of 3D printed band...
This paper presents a comprehensive study of a groove gap waveguide (also known as a waffle-iron) ba...
Additive and hybrid manufactured waveguide resonators and bandpass filters for mm-wave applications ...
As frequency increases the wavelength gets smaller and therefore the size of waveguides shrink. At t...