Parallel Plate Capacitor Design

AI Thread Summary
The discussion focuses on designing a parallel plate capacitor and the confusion surrounding the impact of distance on capacitance. It highlights that while the capacitance equation suggests infinite capacitance with an infinitesimally small distance, practical limitations exist due to the charge-holding capacity of materials. The relationship between charge, voltage, and capacitance (Q = CV) is emphasized, along with the importance of dielectric strength in determining maximum voltage specifications. The physical volume of the capacitor is primarily influenced by the required thickness of the dielectric to ensure reliable insulation between the plates. Understanding these factors is crucial for effective capacitor design.
decaf14
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How to design a parallel plate capacitor.
Hello,

A question came up in my head that I couldn't think of a way to math out.

Say I want to design a parallel plate capacitor. The equation for capacitance is quite simple:
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Everything in this equation makes sense, besides for the distance. This is saying that an infinitely small length of material would have infinite capacitance. This doesn't seem right, as a material can only hold so much charge/electric field. How would I go about factoring in the amount of charge a material can hold when designing a parallel plate capacitor?

I'm going through an exercise of designing a silicon dioxide capacitor (dielectric constant = ~4).
 
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The solution to the problem lies in the relation between charge, voltage and capacitance. Q = CV and the dielectric strength of the insulator.
 
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gleem said:
The solution to the problem lies in the relation between charge, voltage and capacitance. Q = CV and the dielectric strength of the insulator.

Thanks, that makes sense. This probably gives rise to those "maximum voltage" specifications we see in capacitor datasheets?
 
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The critical thing that determines capacitor physical volume is the thickness of the dielectric needed to separate and reliably insulate the plates. That thickness will be determined by the breakdown voltage, a function of dielectric strength in volts / metre.
 
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