An audio signal needs to be split into two components; a low frequency com- ponent (f < 2 kHz) that will be sent to a low frequency speaker (a woofer), and a high frequency component (f > 2 kHz) that will be sent to a high frequency speaker (a tweeter). Design an RL low pass filter and an RC high pass filter that will achieve this. 1. Your design should use a capacitor value somewhere in the range between 0.1 nF and 100 nF and an inductor value somewhere in the range 1 µH and 100 µH. (These are readily available values that work well for audio signals.)

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An audio signal needs to be split into two components; a low frequency com-
ponent (f < 2 kHz) that will be sent to a low frequency speaker (a woofer), and a
high frequency component (f > 2 kHz) that will be sent to a high frequency speaker (a
tweeter). Design an RL low pass filter and an RC high pass filter that will achieve this.
1.
Your design should use a capacitor value somewhere in the range between 0.1 nF and
100 nF and an inductor value somewhere in the range 1 µH and 100 µH. (These are
readily available values that work well for audio signals.)
Transcribed Image Text:An audio signal needs to be split into two components; a low frequency com- ponent (f < 2 kHz) that will be sent to a low frequency speaker (a woofer), and a high frequency component (f > 2 kHz) that will be sent to a high frequency speaker (a tweeter). Design an RL low pass filter and an RC high pass filter that will achieve this. 1. Your design should use a capacitor value somewhere in the range between 0.1 nF and 100 nF and an inductor value somewhere in the range 1 µH and 100 µH. (These are readily available values that work well for audio signals.)
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