kopia lustrzana https://github.com/miguelvaca/vk3cpu
Updated SRF notes.
rodzic
47854f9d2b
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@ -63,8 +63,7 @@
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<li>L : Inductance is calculated using Nagaoka's equation incorporating his coefficient.</li>
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<li>C : Capacitance is calculated using Knight's 2016 paper on self-resonance and self-capacitance of solenoid coils.</li>
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<li>Rdc : DC resistance is calculated using conductor length divided by the conductor cross-sectional area, assuming a copper conductor.</li>
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<li>SRF : Self-resonant frequency (MHz) for the unloaded coil. Currently using a lumped reactances model. (Looking into modifying the model to
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use the conductor length and velocity factor as described by Knight (2016).</li>
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<li>SRF : Self-resonant frequency (MHz) for the unloaded coil. </li>
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<li>Xₗ : Inductive reactance at the given frequency. (Ω)</li>
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<li>|Z| : Impedance at the given frequency. (Ω)</li>
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<li>δ : Skin depth due to skin effect (μm)</li>
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@ -65,8 +65,7 @@
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<li>L : Inductance is calculated using Nagaoka's equation incorporating his coefficient.</li>
|
||||
<li>C : Capacitance is calculated using Knight's 2016 paper on self-resonance and self-capacitance of solenoid coils.</li>
|
||||
<li>Rdc : DC resistance is calculated using conductor length divided by the conductor cross-sectional area, assuming a copper conductor.</li>
|
||||
<li>SRF : Self-resonant frequency (MHz) for the unloaded coil. Currently using a lumped reactances model. (Looking into modifying the model to
|
||||
use the conductor length and velocity factor as described by Knight (2016).</li>
|
||||
<li>SRF : Self-resonant frequency (MHz) for the unloaded coil. </li>
|
||||
<li>Xₗ : Inductive reactance at the given frequency. (Ω)</li>
|
||||
<li>|Z| : Impedance at the given frequency. (Ω)</li>
|
||||
<li>δ : Skin depth due to skin effect (μm)</li>
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||||
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@ -63,8 +63,7 @@
|
|||
<li>L : Inductance is calculated using Nagaoka's equation incorporating his coefficient.</li>
|
||||
<li>C : Capacitance is calculated using Knight's 2016 paper on self-resonance and self-capacitance of solenoid coils.</li>
|
||||
<li>Rdc : DC resistance is calculated using conductor length divided by the conductor cross-sectional area, assuming a copper conductor.</li>
|
||||
<li>SRF : Self-resonant frequency (MHz) for the unloaded coil. Currently using a lumped reactances model. (Looking into modifying the model to
|
||||
use the conductor length and velocity factor as described by Knight (2016).</li>
|
||||
<li>SRF : Self-resonant frequency (MHz) for the unloaded coil. </li>
|
||||
<li>Xₗ : Inductive reactance at the given frequency. (Ω)</li>
|
||||
<li>|Z| : Impedance at the given frequency. (Ω)</li>
|
||||
<li>δ : Skin depth due to skin effect (μm)</li>
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||||
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