A radix 4 division architecture is presented which partially overlaps the updating of the remainder with the digit selection procedure. It is obtained by separating the radix 4 digit selection process into two concurrent substeps. The proposed unit requires a simple selection table and involves a small extra expense for the additional hardware compared to the usual radix 4 division units. Four possible implementations are derived from the general model, with different types of substeps. The high level evaluation shows that the proposed architectures offer an efficient alternativ
A new implementation for minimally redundant radix-4 SRT division with the recurrence in the signed-...
A new implementation for minimally redundant radix-4 SRT division with the recurrence in the signed-...
An extension of the very-high radix division with prescaling and selection by rounding is presented....
A general approach is outlined for designing units for higher radix division, which are based on two...
A general approach for designing units for higher-radix division is outlined which is based on sever...
We present a radix-8 divider that uses an over-redundant digit set for the quotient in order to obta...
Abstract—Division and square root, based on the digit-recurrence algorithm, can be implemented in a ...
Over-redundant digit sets are defined as those ranging from -s to +s, with s⩾B, B being the radix. T...
The speed of high-radix digit-recurrence dividers is mainly determined by the hardware complexity of...
International audienceWe present a design and implementation of a radix-4 complex division unit with...
In this paper, we propose a class of division algorithms with the aim of reducing the delay of the s...
[[abstract]]A novel floating-point division architecture with IEEE 754-1985 standard is proposed in ...
Includes bibliographical references (page 143)This project details the theory and hardware implement...
ISBN: 0818669055The digit-recurrence division relies on a sequence of addition/subtraction and shift...
This paper presents a derivation of four radix-2 division algorithms by digit recurrence. Each divis...
A new implementation for minimally redundant radix-4 SRT division with the recurrence in the signed-...
A new implementation for minimally redundant radix-4 SRT division with the recurrence in the signed-...
An extension of the very-high radix division with prescaling and selection by rounding is presented....
A general approach is outlined for designing units for higher radix division, which are based on two...
A general approach for designing units for higher-radix division is outlined which is based on sever...
We present a radix-8 divider that uses an over-redundant digit set for the quotient in order to obta...
Abstract—Division and square root, based on the digit-recurrence algorithm, can be implemented in a ...
Over-redundant digit sets are defined as those ranging from -s to +s, with s⩾B, B being the radix. T...
The speed of high-radix digit-recurrence dividers is mainly determined by the hardware complexity of...
International audienceWe present a design and implementation of a radix-4 complex division unit with...
In this paper, we propose a class of division algorithms with the aim of reducing the delay of the s...
[[abstract]]A novel floating-point division architecture with IEEE 754-1985 standard is proposed in ...
Includes bibliographical references (page 143)This project details the theory and hardware implement...
ISBN: 0818669055The digit-recurrence division relies on a sequence of addition/subtraction and shift...
This paper presents a derivation of four radix-2 division algorithms by digit recurrence. Each divis...
A new implementation for minimally redundant radix-4 SRT division with the recurrence in the signed-...
A new implementation for minimally redundant radix-4 SRT division with the recurrence in the signed-...
An extension of the very-high radix division with prescaling and selection by rounding is presented....