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<dc:date>2026-04-14T13:03:29Z</dc:date>
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<title>Device for reducing irrational-base codes to minimal form</title>
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<description>Device for reducing irrational-base codes to minimal form
Stakhov, Alexei P.; Kozak, Andrei A.; Solyanichenko, Nikolai A.; Kuzmin, Ivan V.; Azarov, Alexei D.; Стахов, Олексій Петрович; Козак, Андрій Андрійович; Соляніченко, Микола Олександрович; Кузьмін, Іван Васильович; Азаров, Олексій Дмитрович; Стахов, Алексей Петрович; Козак, Андрей Андреевич; Соляниченко, Николай Александрович; Кузьмин, Иван Васильевич; Азаров, Алексей Дмитриевич
A device for reducing irrational-base codes to a minimal form, comprising "n" identical functional cells whereof each Bth cell incorporates a flip-flop with a count input and an AND convolution element intended to evaluate the possibility of performing the operation of convoluting the (B-1)th and (B-p-1)th code digits to the Bth code digit. One of the inputs of the AND convolution element is connected to an inverting output of the flip-flop whose direct output serves as an information output of the Bth functional cell. The flip-flop has its set, reset and count inputs connected to an information input, a convolution set input and an inversion signal input, respectively, of the Bth functional cell, the inversion signal input being connected to an information output of the (B-1)th functional cell. The remaining inputs of the AND convolution element are a first convolution signal input, a second convolution signal input and a convolution control input of the Bth functional cell. An output of the AND convolution element is a convolution signal output of the Bth functional cell, which output is respectively connected to a first convolution signal input and a second convolution signal input of the (B-1)th and (B-p-1)th functional cells.
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