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Page 1: Introduction to 3 terminal capacitor

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Page 2: Introduction to 3 terminal capacitor

Reference : [11] 2

Page 3: Introduction to 3 terminal capacitor

With decoupling capacitors, the voltage ripple and noise emission can

be reduced [10].3

Page 4: Introduction to 3 terminal capacitor

The lower ESL is, the wider capacitive range will be.

The lower ESR is, the better noise suppression will be [12].

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Page 5: Introduction to 3 terminal capacitor

The path the noise flows inside 3-terminal capacitor is shorter than

which inside 2-terminal capacitor. That’s to say, the 3-terminal

capacitor has lower ESL and ESR [12,13].

C = 10 uF 5

Page 6: Introduction to 3 terminal capacitor

With lower ESL and ESR, the 3-

terminal capacitor has wider

capacitive range and better noise

suppression than 2-terminal one [7,9]

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Page 7: Introduction to 3 terminal capacitor

Although signal must pass through the whole 3-terminal capacitor.

Nevertheless, as mentioned above, the ESR of 3-terminal capacitor

is extremely small. Thus, the loss is negligible.

Feed ThroughElectrode

GND Electrode

Signal Flow

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Page 8: Introduction to 3 terminal capacitor

Lower ESR => Lower Voltage Ripple.

Lower ESL => Smaller loop area =>

lower Noise Emission [10].

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Page 9: Introduction to 3 terminal capacitor

For noise reduction,

one 3-terminal capacitor is even better than

(1 bead + 2 * 2-terminal capacitor )[1].

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Page 10: Introduction to 3 terminal capacitor

For noise reduction,

one 1uF 3-terminal capacitor is even better than

(4 * 0.22 uF 2-terminal capacitor )[6].

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Page 11: Introduction to 3 terminal capacitor

For noise reduction,

one 10uF 3-terminal capacitor is even better than

(22uF + 10 nF x 5pcs + 100 pF x 5pcs)[4].11

Page 12: Introduction to 3 terminal capacitor

Compared to multiple capacitors, the 3-terminal capacitor

doesn’t have anti-resonance issue. Besides, the 3-terminal

capacitor can save PCB area due to less components[5,12].

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Page 13: Introduction to 3 terminal capacitor

In addition, the number of GND via is the more the better. By

doing this, the impedance of noise path can be reduced further,

which can lead to better noise suppression[7,8].

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