Dariusz Czysz

dblp:72/721 · DBLP profile ↗
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12ranked-venue papers
9as first author
0since 2021 · last 2012
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 12 · 9 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer architecture, parallel and distributed computing, and storage systems
5 papers
Electronic design automation · 100%

Topics — the 6 heaviest of 6, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Electronic design automation
hardware verification and test
0.552011
Deterministic Clustering of Incompatible Test Cubes for Higher Power-Aware EDT Compression · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2011
On Compaction Utilizing Inter and Intra-Correlation of Unknown States · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2010
Low-Power Scan Operation in Test Compression Environment · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2009
Electronic design automation › hardware verification and test
low-power testing
0.442011
Deterministic Clustering of Incompatible Test Cubes for Higher Power-Aware EDT Compression · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2011
Low-Power Scan Operation in Test Compression Environment · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2009
Low-Power Test Data Application in EDT Environment Through Decompressor Freeze · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2008
Electronic design automation › hardware verification and test
test data compression
0.442011
Deterministic Clustering of Incompatible Test Cubes for Higher Power-Aware EDT Compression · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2011
Low-Power Scan Operation in Test Compression Environment · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2009
Low-Power Test Data Application in EDT Environment Through Decompressor Freeze · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2008
Electronic design automation › hardware verification and test › low-power testing
scan test power reduction
0.222009
Low-Power Scan Operation in Test Compression Environment · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2009
Low-Power Test Data Application in EDT Environment Through Decompressor Freeze · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2008
Electronic design automation › hardware verification and test
test response compaction
0.112010
On Compaction Utilizing Inter and Intra-Correlation of Unknown States · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2010
Electronic design automation › hardware verification and test › test response compaction
x-tolerant compaction
0.112010
On Compaction Utilizing Inter and Intra-Correlation of Unknown States · IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 2010

Methods — techniques the papers use, named apart from their topics

continuous flow decompression · 0.3deterministic clustering · 0.1cube merging · 0.1x-state correlation exploitation · 0.1scan chain selection · 0.1power-aware scan control · 0.1decompressor freeze · 0.1test data decompression · 0.1
YearPublicationVenuePosition
2012 Low power test application with selective compaction in VLSI designs
abstract
The paper presents an extended summary of the PhD thesis that tackles a low power decompression of test cubes in EDT environment and compaction of test responses in the presence of unknown states. The proposed low power decompression schemes allow one to reduce the load and unload switching activity by more than 93% and capture transitions by 52%. The X-masking scheme introduced in the thesis offers up to 48,000 x compression of control data, and eliminates all unknown states from test responses.
Dariusz Czysz, Janusz Rajski, Jerzy Tyszer
ITC1
2011 Reduced ATE Interface for High Test Data Compression
abstract
This paper presents a study addressing the challenge of interfacing automatic test equipment (ATE) with on-chip decompression logic deployed by system-on-chip designs or modular decompression environments. The ability of the proposed scheme to improve the encoding bandwidth by reusing groups of scan chains for test data storage has been measured on industrial designs and is reported herein.
Dariusz Czysz, Grzegorz Mrugalski, Nilanjan Mukherjee 0001, Janusz Rajski, Jerzy Tyszer
ETS1
2011 Deterministic Clustering of Incompatible Test Cubes for Higher Power-Aware EDT Compression
abstract
The embedded deterministic test-based compression uses cube merging to reduce a pattern count, the amount of test data, and test time. It gradually expands a test pattern by incorporating compatible test cubes. This paper demonstrates that compression ratios can be order of magnitude higher, if the cube merging continues despite conflicts on certain positions. Our novel solution produces test clusters, each comprising a parent pattern and a number of its derivatives obtained by imposing extra bits on it. In order to load scan chains with patterns that feature original test cubes, only data necessary to recreate parent patterns as well as information regarding locations and values of the corresponding conflicting bits are required. A test controller can then deliver tests by repeatedly applying the same parent pattern, every time using a different control pattern to decide whether a given scan chain receives data from the parent pattern, or another pattern is used instead to recover content of the original test cube. Compression of incompatible test cubes preserves all benefits of continuous flow decompression and offers compression ratios of order 1000× with encoding efficiency much higher than 1.0. We also demonstrate that test clusters make it possible to deliver test patterns in a flexible power-aware fashion. This framework achieves significant reductions in switching activity during scan loading as well as additional test data volume reductions due to encoding algorithms employed to compress parent and control vectors.
Dariusz Czysz, Grzegorz Mrugalski, Nilanjan Mukherjee 0001, Janusz Rajski, Przemyslaw Szczerbicki, Jerzy Tyszer
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst.1
2010 Low power compression of incompatible test cubes
abstract
The paper presents a new power-aware test scheme compatible with a newly proposed test compression environment based on deterministic clustering of test cubes with conflicts. The key contribution is a flexible test application framework that achieves significant reductions in switching activity during scan loading by means of a tri-modal test data decompressor.
Dariusz Czysz, Grzegorz Mrugalski, Nilanjan Mukherjee 0001, Janusz Rajski, Przemyslaw Szczerbicki, Jerzy Tyszer
ITC1
2010 On Compaction Utilizing Inter and Intra-Correlation of Unknown States
abstract
Unknown (X) states are increasingly often identified as having potential for rendering semiconductor tests useless. One of the key requirements for a reliable test response compactor is, therefore, to preserve observability of any scan cell for a wide range of X-profiles while maintaining very high-compaction ratios, providing ability to detect a variety of failures found in real silicon, and assuring design simplicity. We have proposed a fully X-tolerant test response compaction scheme which is based on a flexible scan chain selection mechanism. This new approach delivers extremely high compression of test results by observing that X states are typically not randomly distributed in test responses. Identical or similar patterns of correlated X states let the proposed scheme reduce the size of a scan chain selector and the amount of test data used to control it. It handles, moreover, a wide range of unknown state profiles such that all X states, including those being clustered and of high density, are suppressed in a per-cycle mode without compromising the test quality.
Dariusz Czysz, Grzegorz Mrugalski, Nilanjan Mukherjee 0001, Janusz Rajski, Jerzy Tyszer
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst.1
2009 Compression based on deterministic vector clustering of incompatible test cubes
abstract
The presented compression scheme is a novel solution that is based on deterministic vector clustering and encompasses three data reduction features in one on-chip decoding system. The approach preserves all benefits of continuous flow decompression and offers compression ratios of order 1000x with encoding efficiency much higher than 1.00.
Grzegorz Mrugalski, Nilanjan Mukherjee 0001, Janusz Rajski, Dariusz Czysz, Jerzy Tyszer
ITC4
2009 Highly X-Tolerant Selective Compaction of Test Responses
abstract
The paper presents a new scan chain selection scheme for response compaction. The proposed solution performs selective masking of scan chains and handles a wide range of unknown state profiles, such that all X states can be eliminated in a per-cycle mode while preserving high observability of scan cells that capture errors.
Grzegorz Mrugalski, Nilanjan Mukherjee 0001, Janusz Rajski, Dariusz Czysz, Jerzy Tyszer
VTS4
2009 Low-Power Scan Operation in Test Compression Environment
abstract
This paper presents a new and comprehensive low-power test scheme compatible with a test compression environment. The key contribution of this paper is a flexible test-application framework that achieves significant reductions in switching activity during all phases of scan test: loading, capture, and unloading. In particular, we introduce a new on-chip continuous-flow decompressor. Its synergistic use with a power-aware scan controller allows a significant reduction of toggling rates when feeding scan chains with decompressed test patterns. While the proposed solution requires minimal modifications of the existing design for test logic, experiments indicate that its use results in a low switching activity which reduces power consumption to or below a level of a functional mode. It resolves problems related to power dissipation, voltage drop, and increased temperature. Our approach integrates seamlessly with test logic synthesis flow, and it does not compromise compression ratios. It fits well into various design paradigms, including modular design flow where blocks come with individual decompressors and compactors.
Dariusz Czysz, Mark Kassab, Xijiang Lin, Grzegorz Mrugalski, Janusz Rajski, Jerzy Tyszer
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst.1
2008 Low Power Scan Shift and Capture in the EDT Environment
abstract
This paper presents a new and comprehensive power-aware test scheme compatible with a test compression environment. The key contribution of the paper is a flexible test application framework that achieves significant reductions in switching activity during all phases of scan test: scan loading, unloading, and capture.
Dariusz Czysz, Mark Kassab, Xijiang Lin, Grzegorz Mrugalski, Janusz Rajski, Jerzy Tyszer
ITC1
2008 Low-Power Test Data Application in EDT Environment Through Decompressor Freeze
abstract
This paper presents a new low-power test scheme integrated with the embedded deterministic test environment. The key contribution of this paper is a flexible test cube encoding scheme, which, in conjunction with a continuous flow decompressor, allows one to significantly reduce toggling rates when test patterns are fed into scan chains. The proposed solution requires neither additional design for testability logic nor modifications to the circuit under test. Experimental results obtained for industrial designs indicate that using this nonintrusive technique reduces switching activity to such extent that the resultant scan-in power consumption is similar to that of the functional mode, thus alleviating problems that are related to average and peak power dissipation, overheating, and risk of reliability degradation. Our approach seamlessly integrates with test logic synthesis flow, and it does not compromise compression ratios. Moreover, it fits well into various design paradigms, including modular design flow where modules come with individual decompressors and compactors.
Dariusz Czysz, Grzegorz Mrugalski, Janusz Rajski, Jerzy Tyszer
IEEE Trans. Comput. Aided Des. Integr. Circuits Syst.1
2007 New Test Data Decompressor for Low Power Applications
abstract
The paper presents a novel low power test scheme integrated with the embedded deterministic test environment. It reduces significantly switching rates in scan chains with minimal hardware modification. Experimental results obtained for industrial circuits clearly indicate that switching activity can be reduced up to 150 times along with improved compression ratios.
Grzegorz Mrugalski, Janusz Rajski, Dariusz Czysz, Jerzy Tyszer
DAC3
2007 Low Power Embedded Deterministic Test
abstract
This paper presents a novel low power test scheme integrated with the embedded deterministic test environment. It reduces switching rates in scan chains with no hardware modification. Experimental results obtained for industrial circuits indicate that switching activity can be reduced up to 23 times.
Dariusz Czysz, Grzegorz Mrugalski, Janusz Rajski, Jerzy Tyszer
VTS1