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RF Filter Design

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Design a Low-Pass Filter with cut-off frequency of 900 MHz and a stop band ... From the Butterworth Nomograph, Amax = 1 and Amin = 18. Amax = 1 since unity gain. ... – PowerPoint PPT presentation

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Title: RF Filter Design


1
ELEC 412 RF Microwave Engineering
Fall 2004 Lecture 12 Low and High Pass Filter
Examples
2
Low-Pass Filter Design Example
  • Design a Low-Pass Filter with cut-off frequency
    of 900 MHz and a stop band attenuation of 18 dB
    _at_1.8 GHz.
  • From the Butterworth Nomograph, Amax 1 and Amin
    18. Amax 1 since unity gain. And the order
    of the filter is N 3.
  • From Butterworth Tables, g1 g31.0 and g2
    2.

3
Transformation From Low-Pass Filter

4
Normalized Lumped Parameter values
  • What to do with the gk s

and
Where fc is the cutoff frequency and Lk_norm and
Ck_norm are normalized element values
5
P5.7 Low-Pass Filter Design
  • The normalized lumped element values
  • g01
  • g10.7654/(2?fc )
  • g21.8478/(2?fc )
  • g31.8478/(2?fc )
  • g40.7654/(2?fc )
  • g51.

6
Denormalized Lumped Parameter Values
and
For all filter configurations
7
Low-Pass Filter Design Example

8
Low- To High-Pass Transformation
  • Transform the Low-Pass Filter Normalized
    Component Values to the Normalized High-Pass
    Values
  • Inductors in Low-Pass Configuration Become
    Capacitors in High-Pass.
  • Capacitors in Low-Pass Configuration Become
    Inductors in High-Pass

9
Denormalized Lumped Parameter Values
and
Same as that for the Low-Pass Filter
10
De-Normalizing Filter Component Values
  • All Normalized Component Values Are De-Normalized
    Using the Following
  • and

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