Search Results - "Bashagha, A.E."

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    Area-efficient nonrestoring radix- 2 k division by Bashagha, A.E.

    Published in Digital signal processing (2005)
    “…This paper presents an area-efficient twos complement high radix division algorithm and its architecture. The advantage of using high radix division is to…”
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    Journal Article
  3. 3

    Comments on "Comments on "A systematic approach for design of digit serial signal processing architectures by Bashagha, A.E.

    “…In the above paper, [see ibid., vol. 47, p. 369-70, 2000] the authors have modified the nonrestoring square root algorithm (Q=/spl radic/A) and its…”
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    Journal Article
  4. 4

    High-performance two's complement divider by Bashagha, A.E.

    “…This paper presents a novel area-efficient two's complement high radix divider without affecting the high speed of the radix- 2 k structure. In the proposed…”
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    Journal Article
  5. 5

    Pipelined area-efficient digit serial divider by Bashagha, A.E.

    Published in Signal processing (01-09-2003)
    “…In this paper, a new two's complement radix-2 n area-efficient digit serial divider is presented. The proposed digit serial divider is designed by cascading N…”
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    Journal Article
  6. 6

    VLSI generalised digit serial architecture for multiplication, division and square root by Bashagha, A.E

    Published in Signal processing (1999)
    “…A novel digit serial combined arithmetic unit for multiplication, division and square root which can be pipelined to the bit level is presented for the first…”
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    Journal Article
  7. 7

    Novel radix-2/sup k/ division algorithm by Bashagha, A.E.

    “…This paper presents an area-efficient 2's complement high radix division algorithm. Two techniques are used in the proposed radix-2/sup k/ division algorithm,…”
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    Conference Proceeding
  8. 8

    Two's complement high radix division by Bashagha, A.E., Ibrahim, M.K.

    “…The existing two's complement high radix division algorithms require a full wordlength addition per each possible value of the remainder. Therefore, a huge…”
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    Conference Proceeding