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Impedance Matching (1). Smith Chart Construction (The center line represents an axis where X=0.) (+) (-)

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Presentation on theme: "Impedance Matching (1). Smith Chart Construction (The center line represents an axis where X=0.) (+) (-)"— Presentation transcript:

1 Impedance Matching (1)

2 Smith Chart Construction (The center line represents an axis where X=0.) (+) (-)

3 z L =1±j

4 Adding a Series Capacitance to an Impedance

5 Adding an Inductor in Series Insertion of a series inductor to an impedance moves the impedance upward, causing a rotation clockwise along a constant circle of resistance

6 Series Inductance Neg L High LLow L fixed frequency Insertion of a series inductor to an impedance moves the impedance upward, causing a rotation clockwise along a constant circle of resistance

7 Adding a Capacitor in Series Insertion of a series capacitor to an impedance move impedance downward, causes a rotation counter clockwise along a constant circle of resistance

8 Series Capacitance High C Low L Neg C fixed frequency Insertion of a series capacitor to an impedance move impedance downward, causes a rotation counter clockwise along a constant circle of resistance

9 Admittance

10 Admittance Example

11 Method 1

12 Method 2 1. Find the Z. 2. Rotate Smith Chart 180 degrees

13 Smith Chart Construction (The center line represents an axis where X=0.) (+) (-) Conductance circle Inductive susceptance Rotate the impedance chart by 180 degrees Capacitive susceptance

14 Adding a Shunt Capacitance Insertion of a shunt capacitor causes a rotation clockwise along a constant circle of admittance

15 Adding a Shunt Capacitance High C Low C Neg C fixed frequency Insertion of a shunt capacitor causes a rotation clockwise along a constant circle of admittance

16 Adding a Shunt Inductance Insertion of a shunt inductor causes a rotation counter clockwise along a constant circle of admittance

17 Shunt Inductance Neg Ind High L Low L fixed frequency Insertion of a shunt inductor causes a rotation counter clockwise along a constant circle of admittance

18 WBAN Matching Example

19

20 Input impedance (100k,Cc1)

21 Input Admittance (100k,Cc1)

22

23 Adding a Shunt Inductance Insertion of a shunt inductor causes a rotation counter clockwise along a constant circle of admittance

24 Effect of Adding L1 With L1

25 Adding a Capacitor in Series Insertion of a series capacitor to an impedance move impedance downward, causes a rotation counter clockwise along a constant circle of resistance

26 Effect of C2

27 Adding a Shunt Capacitance Insertion of a shunt capacitor causes a rotation clockwise along a constant circle of admittance

28 Effect of C1

29 S11 at 1GHz Cc=1pF Rbias=100 k L1=40 nH C2=695 fF C1=5.5 pF


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