This paper demonstrates a two-layer SU8 photoresist micromachining technology that has similar performance to conventionally machined metal. The technology is demonstrated in the WR-3 band (220-325 GHz). Three different WR-3 band circuits, namely a WR-3 band straight through waveguide, a bandpass filter and a dual-band filter are demonstrated. For the measurements, a conventionally precision machined metal block was used for the WR-3 band waveguide and the bandpass filter to achieve good calibration and accurate interconnection with standard waveguide flanges; whereas, for the dual-band filter, two back-to-back right-angle bends are added in order to achieve accurate, reliable waveguide interconnection without using the metal block. A measu...
This paper presents the fabrication processes for micromachined millimetre-wave devices, on two diff...
In this paper, we present a microfabricated fourth-order sub-THz WR-3.4 bandpass waveguide filter ba...
A 300 GHz waveguide filter, designed to block the unwanted upper sideband from reaching a heterodyne...
A WR-1.5 band (500-750 GHz) waveguide 3rd order bandpass filter has been designed, fabricated, using...
Presented is a micromachined WR-3 waveguide filter with two embedded H-plane back-to-back bends fab...
This paper presents two WR-3 band (220-325 GHz) filters, one fabricated in metal using high precisio...
Presented is a WR-3 band (220–325 GHz) waveguide bandpass filter, which is constructed from three of...
This paper presents two WR-3 band (220-325 GHz) filters, one fabricated in metal using high precisio...
Rectangular waveguides are fundamental structures for the transmission of signals at millimetre and ...
This paper presents two W-band waveguide bandpass filters, one fabricated using laser micromachining...
In this paper two calibrated measurement methods for submillimeter circuits are presented and microm...
This paper presents two W-band waveguide bandpass filters, one fabricated using laser micromachining...
This paper presents the fabrication processes for micromachined millimetre-wave devices, on two diff...
In this paper, we present a microfabricated fourth-order sub-THz WR-3.4 bandpass waveguide filter ba...
A 300 GHz waveguide filter, designed to block the unwanted upper sideband from reaching a heterodyne...
A WR-1.5 band (500-750 GHz) waveguide 3rd order bandpass filter has been designed, fabricated, using...
Presented is a micromachined WR-3 waveguide filter with two embedded H-plane back-to-back bends fab...
This paper presents two WR-3 band (220-325 GHz) filters, one fabricated in metal using high precisio...
Presented is a WR-3 band (220–325 GHz) waveguide bandpass filter, which is constructed from three of...
This paper presents two WR-3 band (220-325 GHz) filters, one fabricated in metal using high precisio...
Rectangular waveguides are fundamental structures for the transmission of signals at millimetre and ...
This paper presents two W-band waveguide bandpass filters, one fabricated using laser micromachining...
In this paper two calibrated measurement methods for submillimeter circuits are presented and microm...
This paper presents two W-band waveguide bandpass filters, one fabricated using laser micromachining...
This paper presents the fabrication processes for micromachined millimetre-wave devices, on two diff...
In this paper, we present a microfabricated fourth-order sub-THz WR-3.4 bandpass waveguide filter ba...
A 300 GHz waveguide filter, designed to block the unwanted upper sideband from reaching a heterodyne...