Continue to Site

Welcome to EDAboard.com

Welcome to our site! EDAboard.com is an international Electronics Discussion Forum focused on EDA software, circuits, schematics, books, theory, papers, asic, pld, 8051, DSP, Network, RF, Analog Design, PCB, Service Manuals... and a whole lot more! To participate you need to register. Registration is free. Click here to register now.

Distributed band-pass filter below 1 GHz

Status
Not open for further replies.

Joatt

Junior Member level 1
Junior Member level 1
Joined
Apr 22, 2009
Messages
17
Helped
4
Reputation
8
Reaction score
0
Trophy points
1,281
Activity points
1,397
fr4 dielectric constant below 1 ghz

Hi.

Is it possible to design a band-pass filter filter (on a substrate with dielectric constant of 4.5) of passband below 1 GHz using distributed components. If yes, are there any special procedures to do it?

Thanks in advance
 

bandpassfilter 1ghz

Now depends how below 1GHz you want to go.
Between 500MHz and 1GHz the dimensions of the distributed elements on FR4 are large, but not impossible to make. You can try a Hairpin topology.
 

    Joatt

    Points: 2
    Helpful Answer Positive Rating
1 ghz bandpass filter

vfone said:
Now depends how below 1GHz you want to go.
Between 500MHz and 1GHz the dimensions of the distributed elements on FR4 are large, but not impossible to make. You can try a Hairpin topology.

Hairpin filters are generally good choice, but from what I see they are narrow-band below 1 GHz.

What I am designing is a band-pass filter from 300 to 800 MHz. I've succeeded to design it using different impedance lines and stubs, but at the cost of the relatively large size, as you have mentioned.

I wonder if there is any other approach to minimize the size.

Regards
 

1ghz bandpass filter

This is too wideband, and cannot be done with distributed elements having decent dimensions and number of poles.
 

1 ghz band

This is an easy filter with LC design! No need and no advantage to make it as distributed component.
 

high ass filter using distribured elements

You can do it, if you use very high dielectric constant substrates (er>38 )

You can do a quasi distributed, where the inductors are made up of high impedance tranmission lines, or spiral coils. The easier to procure capacitors are either lumped element chips, or interdigital fingers.
 

    Joatt

    Points: 2
    Helpful Answer Positive Rating
detailed dimensions hairpin filter

Typical coupled line filters, lumped or distributed, would need very high inter resonator coupling values for such large bandwidths which would make interdigital fingers hard to realize. You might have to switch to lumped surface mount components then.

Another approach to this problem is to look at your wide bandpass filter as a combination of a low-pass and high pass filter connected in cascade. This might actually be easier to implement.
 

    Joatt

    Points: 2
    Helpful Answer Positive Rating
Status
Not open for further replies.

Part and Inventory Search

Welcome to EDABoard.com

Sponsor

Back
Top