Imagine a new kind of flip-flop called a J N flip-flop which has two inputs J and N. Input J behaves like the J input of the J K flip-flop, and input N behaves like the complement of the K input of a J K flip-flop (N=K’). (a). Derive the characteristic table and excitation table of the J N flip-flop. (b). Show that a D flip-flop can be constructed from a J N flip-flop by connecting its two inputs (J and N) together.
Imagine a new kind of flip-flop called a J N flip-flop which has two inputs J and N. Input J behaves like the J input of the J K flip-flop, and input N behaves like the complement of the K input of a J K flip-flop (N=K’). (a). Derive the characteristic table and excitation table of the J N flip-flop. (b). Show that a D flip-flop can be constructed from a J N flip-flop by connecting its two inputs (J and N) together.
Chapter22: Sequence Control
Section: Chapter Questions
Problem 6SQ: Draw a symbol for a solid-state logic element AND.
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Imagine a new kind of flip-flop called a J N flip-flop which has two inputs
J and N. Input J behaves like the J input of the J K flip-flop, and input N behaves like the
complement of the K input of a J K flip-flop (N=K’).
(a). Derive the characteristic table and excitation table of the J N flip-flop.
(b). Show that a D flip-flop can be constructed from a J N flip-flop by connecting its two
inputs (J and N) together.
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