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ECE 333 Linear Electronics

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1 ECE 333 Linear Electronics
Chapter 3 Semiconductors Β§3.6 Capacitive Effects in the pn Junction

2 Two Charge-storage mechanisms in pn Junction
Depletion or Junction capacitance - associtated with charge stored in the depletion region Diffusion Capacitance - associated with the minority-carrier charge stored in the n and p materials as a result of the concentration profiles established by carrier injection

3 3.6.1 Depletion or Junction Capacitance
The charge stored in either side of the depletion region 𝑄 𝐽 =𝐴 2 πœ– 𝑠 π‘ž 𝑁 𝐴 𝑁 𝐷 𝑁 𝐴 + 𝑁 𝐷 ( 𝑉 0 + 𝑉 𝑅 ) We can write it as 𝑄 𝐽 =𝛼 ( 𝑉 0 + 𝑉 𝑅 ) 𝛼=𝐴 2 πœ– 𝑠 π‘ž 𝑁 𝐴 𝑁 𝐷 𝑁 𝐴 + 𝑁 𝐷 where

4 or graded junction (m=1/3)
Junction Capacitance CJ relates the change in charge QJ to a change in the voltage VR That is: 𝐢 𝐽 = 𝑑 𝑄 𝐽 𝑑 𝑉 𝑅 | 𝑉 𝑅 = 𝑉 𝑄 because 𝑄 𝐽 =𝛼 ( 𝑉 0 + 𝑉 𝑅 ) 𝐢 𝐽 = 𝛼 2 ( 𝑉 0 + 𝑉 𝑅 ) 𝐢 𝐽0 = 𝛼 2 𝑉 0 If let 𝐢 𝐽 = 𝐢 𝐽0 (1+ 𝑉 𝑅 𝑉 0 ) For abrupt (m=1/2) or graded junction (m=1/3) 𝐢 𝐽 = 𝐢 𝐽0 (1+ 𝑉 𝑅 𝑉 0 ) π‘š

5 Another approach to determine CJ
Use the parallel plate capacitor equation: 𝐢 𝐽 = πœ– 𝑠 𝐴 π‘Š where A is area and W is depletion width Remember Eq. (3.31) W= 2 πœ– 𝑠 π‘ž 𝑁 𝐴 + 𝑁 𝐷 𝑁 𝐴 𝑁 𝐷 ( 𝑉 0 + 𝑉 𝑅 ) 𝐢 𝐽 =𝐴 πœ– 𝑠 π‘ž 2 𝑁 𝐴 𝑁 𝐷 𝑁 𝐴 + 𝑁 𝐷 1 ( 𝑉 0 + 𝑉 𝑅 )

6 3.6.2 Diffusion Capacitance
It is due to the minority-carrier charges stored in p and n bulk regions (outside the depletion region). 𝑄 𝑝 =π΄π‘žΓ—π‘ β„Žπ‘Žπ‘‘π‘’π‘‘ π‘Žπ‘Ÿπ‘’π‘Ž π‘’π‘›π‘‘π‘’π‘Ÿ π‘‘β„Žπ‘’ 𝑝 𝑛 π‘₯ π‘π‘’π‘Ÿπ‘£π‘’π‘ =π΄π‘ž 𝑝 𝑛 π‘₯ 𝑛 βˆ’ 𝑝 𝑛0

7 3.6.2 Diffusion Capacitance
From Eq. (3.33) 𝑝 𝑛( π‘₯ 𝑛 ) = 𝑝 𝑛0 𝑒 𝑉/ 𝑉 𝑇 And Eq. (3.37) 𝐽 𝑝( π‘₯ 𝑛 ) = π‘ž( 𝐷 𝑝 𝐿 𝑝 )𝑝 𝑛0 (𝑒 𝑉/ 𝑉 𝑇 βˆ’1) so The minority carrier life time 𝑄 𝑝 = 𝐿 𝑝 2 𝐷 𝑝 𝐼 𝑝 𝜏 𝑝 = 𝐿 𝑝 2 𝐷 𝑝 𝜏 𝑛 = 𝐿 𝑛 2 𝐷 𝑛 𝑄= 𝜏 𝑝 𝐼 𝑝 + 𝜏 𝑛 𝐼 𝑛 = 𝜏 𝑇 𝐼 Ο„T is the mean transit time π‘ π‘œ: 𝐢 𝑑 = 𝑑𝑄 𝑑𝑉 = 𝜏 𝑇 𝑉 𝑇 𝐼


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