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TABLE XVII MULTIPLE-OUTPUT PARITY BIT SIGNATURE

in unknown title
by unknown authors 2003
Cited by 1

Table 2. Sampling for multiple output circuits

in Improving BDD variable ordering using abstract BDDs and sampling
by Yuan Lu, Jawahar Jain, Edmund Clarke, Masahiro Fujita 1999
"... In PAGE 5: ... c3540 (402) c1908(72) 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 11 0 0 0 0 0 1 1 1 1 1 0 0 0 0 0 0 0 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 2 4 5 1 3 6 EX3 abdd abdd abdd abdd cube cube cube cube EX5 abdd cube EX6 Figure 3: Dynamic ordering with aBDD vs. cube based method Experiment 3 ( Table2 ): We performed another set of experiments to show the efficacy of window based methods on multiple output functions. It is known that sifting works very well for ISCAS85 cir- cuits [12] and for many circuits, there may not be scope for significant improvement.... ..."
Cited by 1

Table 1.1: Comparison of Reconfigurable Realizations for Multiple-output Functions. Performance Design time Chip area

in Realization of Multiple-Output Functions by Reconfigurable Cascades
by Yukihiro Iguchi , Tsutomu Sasao, Munehiro Matsuura 2001
Cited by 6

Table 2.1. Behavior of faulty multiple-output circuits Inputs Fault-free

in Techniques For Estimation Of Design Diversity For Combinational Logic Circuits
by Subhasish Mitra, Nirmal R. Saxena, Edward J. McCluskey

Table 7. The QSD representation of a single-digit multiplication output.

in Abstract Quaternary Arithmetic Logic Unit on a Programmable Logic Device
by Songpol Ongwattanakul, Phaisit Chewputtanagul, David J. Jackson, Kenneth G. Ricks
"... In PAGE 4: ... Gathering all the outputs to produce a partial product result presents a small challenge. The QSD representation of a single digit multiplication output, shown in Table7 , contains a carry-out of magnitude 2 when the output is either -9 or 9. This prohibits the use of the second step QSD adder alone as a gatherer.... ..."

Table 2: Algorithm for Synthesizing single input, multiple output mechanisms

in Kinematic Synthesis with Configuration Spaces
by Devika Subramanian, Cheuk-San (Edward) Wang 1993
"... In PAGE 38: ...Table 2: Algorithm for Synthesizing single input, multiple output mechanisms The SIMO synthesis problem can be solved by a series of calls to SISO Synthesize as in ( Table2 ). Calls to SISO Synthesize produce a tree with isolated paths from i to each oj.... In PAGE 38: ...Table 2). Calls to SISO Synthesize produce a tree with isolated paths from i to each oj. However, this introduces a lot of redundancy in the form of common intermediate motions along these paths. The optimization algorithm in Table2 merges common motions in the paths: if the inputs I1 and I2 to two abstract mechanisms in two di erent branches of the initial tree are equivalent, we eliminate the path to I2 and connect I1 in place of I2. This eliminates repeated transformation of i to I2.... ..."
Cited by 14

Table D.4. Health, Multiple Inputs and Multiple Outputs

in Abstract
by Santiago Herrera, Gaobo Pang 2005

Table 2.1. Behavior of faulty multiple output circuits Inputs

in A Design Diversity Metric and Reliability Analysis for Redundant Systems
by Subhasish Mitra, Subhasish Mitra, Nirmal R. Saxena, Nirmal R. Saxena, Edward J. Mccluskey, Edward J. Mccluskey

Table D.4. Health, Multiple Inputs and Multiple Outputs

in Public Disclosure Authorized Public Disclosure Authorized Public Disclosure Authorized Public Disclosure Authorized Efficiency of Public Spending in Developing Countries: An Efficiency Frontier Approach 1
by Santiago Herrera, Gaobo Pang

Table 2.1. Behaviors of faulty multiple output circuits Inputs Fault-free

in A Design Diversity Metric and Reliability Analysis for Redundant Systems
by Subhasish Mitra, Nirmal R. Saxena, Edward J. Mccluskey 1999
Cited by 19
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