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{"ops":[{"insert":"a) Find multiplier values \ud835\udc5b1 and \ud835\udc5b2 in a indirect WBFM generator (the Armstrong method) "},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"using two step multiplier where the message signal \ud835\udc5a(\ud835\udc61) has bandwidth 500 Hz and "},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"narrowband modulator has a modulation index 0.2 and carrier frequency 120 KHz."},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"The output frequency is to be 120 MHz with the modulation index of 720."},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"b) The output WBFM signal in (a) can also be generated by a variant of the Armstrong "},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"method, as shown below, where carrier frequency of \ud835\udc633(\ud835\udc61) is lowered by amount of \ud835\udf142. "},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"In other words, two multipliers are separated by mixer. Find multiplier values \ud835\udc5a1 and \ud835\udc5a2"},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"with \ud835\udf141 = 100 \ud835\udc58\ud835\udc3b\ud835\udc67 and \ud835\udf142 = 4 \ud835\udc40\ud835\udc3b\ud835\udc67 .(Note: Here two BPFs that follow the frequency "},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"multiplier are not shown)"},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":""},{"insert":"\n"},{"insert":"c) Comment your results. Which generator is more practical? Justify your conclusion."},{"insert":"\n"}]}
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