Wang et al., 2009 - Google Patents
A radix-8 complex divider for FPGA implementationWang et al., 2009
- Document ID
- 15031610529753873348
- Author
- Wang D
- Zheng N
- Ercegovac M
- Publication year
- Publication venue
- 2009 International Conference on Field Programmable Logic and Applications
External Links
Snippet
We present a design of a radix-8 complex division for fixed-point operands suitable for FPGA implementation. The design, consisting of operands' prescaling and digit recurrence, shares logic resources and optimizes the use of 6-input LUTs of FPGA devices for efficient design …
- 241001442055 Vipera berus 0 description 4
Classifications
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- G06F7/38—Methods or arrangements for performing computations using exclusively denominational number representation, e.g. using binary, ternary, decimal representation
- G06F7/48—Methods or arrangements for performing computations using exclusively denominational number representation, e.g. using binary, ternary, decimal representation using non-contact-making devices, e.g. tube, solid state device; using unspecified devices
- G06F7/52—Multiplying; Dividing
- G06F7/523—Multiplying only
- G06F7/53—Multiplying only in parallel-parallel fashion, i.e. both operands being entered in parallel
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- G06F7/52—Multiplying; Dividing
- G06F7/523—Multiplying only
- G06F7/533—Reduction of the number of iteration steps or stages, e.g. using the Booth algorithm, log-sum, odd-even
- G06F7/5334—Reduction of the number of iteration steps or stages, e.g. using the Booth algorithm, log-sum, odd-even by using multiple bit scanning, i.e. by decoding groups of successive multiplier bits in order to select an appropriate precalculated multiple of the multiplicand as a partial product
- G06F7/5336—Reduction of the number of iteration steps or stages, e.g. using the Booth algorithm, log-sum, odd-even by using multiple bit scanning, i.e. by decoding groups of successive multiplier bits in order to select an appropriate precalculated multiple of the multiplicand as a partial product overlapped, i.e. with successive bitgroups sharing one or more bits being recoded into signed digit representation, e.g. using the Modified Booth Algorithm
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