Title :
PCB substrate integrated waveguide-filter using via fences at millimeter-wave
Author :
Kim, Bong S. ; Lee, Jae W. ; Kim, Kwang S. ; Song, Myung S.
Author_Institution :
Adv. Radio Technol. Dept., Electron. Telecommun. Res. Inst., Daejeon, South Korea
Abstract :
In this paper, the implementation and the embedding method of the existing air-filled waveguide-filters at millimeter-wave on general Printed Circuit Board(PCB) substrate are introduced by systematically inserting the vias inside waveguide and mathematically manipulating the simple equations obtained from the classical circular-post waveguide the wave propagation. Because the mass production on PCB is possible without fabricating a large-scaled metal waveguide of WR-22 as input/output ports at millimeter-wave, th Bandpass-Filter(BPF) design procedure. Side walls and poles inside the waveguide are realized by placing two series array of via and tuning the via diameters. The each length of x, y, and z axes is reduced in proportion to root square of employed substrate dielectric constant and, especially, the length of z-axis can be more reduced due to the characteristics of e manufacturing cost can be reduced considerably. Finally, when using multi-layer process like low temperature cofired ceramic(LTCC) for small-sized module, it is one of advantages to use only one layer for the filter fabrication. To evaluate the validity of this novel technique, order-3 Chebyshev BPF centered at 40 GHz-band with a 2.5% Fractional Bandwidth(FBW) was used. The employed substrate has relative dielectric constant of 2.2 and thickness of 10 mils of Rogers RT/Duroid 5880. According to design and measurement results, a good performance of insertion loss of 2 dB and return loss of -30 dB is achieved at full input/output ports.
Keywords :
band-pass filters; circular waveguides; microstrip lines; millimetre wave filters; millimetre wave propagation; permittivity; poles and zeros; printed circuits; waveguide filters; -30 dB; 10 mil; 2 dB; 40 GHz; LTCC; PCB substrate; WR-22 large-scaled metal waveguide; air-filled waveguide-filters; bandpass-filter; circular-post waveguide; dielectric constant; embedding method; filter fabrication; fractional bandwidth; input-output ports; insertion loss; integrated waveguide filter; low temperature cofired ceramics; mass production; millimeter-wave; multilayer process; poles; printed circuit board substrate; wave propagation; Dielectric constant; Dielectric loss measurement; Dielectric substrates; Equations; Mass production; Millimeter wave circuits; Millimeter wave integrated circuits; Millimeter wave propagation; Millimeter wave technology; Printed circuits;
Conference_Titel :
Microwave Symposium Digest, 2004 IEEE MTT-S International
Print_ISBN :
0-7803-8331-1
DOI :
10.1109/MWSYM.2004.1339176