Holger Eisenreich

dblp:70/8189 · DBLP profile ↗
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8ranked-venue papers
0as first author
0since 2021 · last 2019
—ORCID · none

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

Systems, architecture and hardware · 8Software engineering, systems software and programming languages · 1

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
2 papers
Hardware accelerators and domain-specific architectures · 77% Interconnection networks and networks-on-chip · 16% Memory systems · 7%
Computer networks
1 paper
Physical-layer communications · 100%

Topics — the 4 heaviest of 6, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Hardware accelerators and domain-specific architectures
database accelerator
0.212016
An MPSoC for energy-efficient database query processing · DAC 2016
Hardware accelerators and domain-specific architectures › query processing
energy-efficient query processing
0.212016
An MPSoC for energy-efficient database query processing · DAC 2016
Physical-layer communications
MIMO
0.112017
A Heterogeneous SDR MPSoC in 28 nm CMOS for Low-Latency Wireless Applications · DAC 2017
Memory systems
processing-in-memory
0.112016
An MPSoC for energy-efficient database query processing · DAC 2016

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

heterogeneous MPSoC design · 0.6dynamic data flow mapping · 0.6runtime task scheduling · 0.2instruction set extension · 0.2dynamic voltage and frequency scaling · 0.2
YearPublicationVenuePosition
2019 A Fast Lock-In Ultra Low-Voltage ADPLL Clock Generator with Adaptive Body Biasing in 22nm FDSOI Technology
abstract
Systems on Chip for the Internet of Things require fast-locking and robust clock generators to maximize the effectiveness of power management techniques such as Dynamic Voltage and Frequency Scaling and duty-cycling. We present an ADPLL clock generator based on a fully digital DCO architecture with an inherently linear and offset-free tuning characteristic that allows fast lock-in within three and frequency changes during operation within two reference cycles. Measurements from a testchip in 22nm FDSOI CMOS technology show operation from 0.4 to 0.8 V and 20 to 790 MHz. At 0.5 V, only 107 μW are consumed to generate a 100 MHz clock with 59 ps RMS period jitter. Adaptive Body Biasing improves the jitter performance by up to 40% through compensation of PVT variation.
Florian Schraut, Holger Eisenreich, Sebastian Höppner, Christian Mayr 0001
ISCAS2
2017 A Heterogeneous SDR MPSoC in 28 nm CMOS for Low-Latency Wireless Applications
abstract
Current and future applications impose high demands on software-defined radio (SDR) platforms in terms of latency, reliability, and flexibility. This paper presents a heterogeneous SDR MPSoC with a hexagonal network-on-chip to address these issues. It features four data processing modules and a baseband processing engine for iterative multiple-input multiple-output (MIMO) receiving. Integrated memory controllers enable dynamic data flow mapping and application isolation. In a 4 x 4 MIMO application scenario, the MPSoC achieves a throughput of 232 Mbit/s with a latency of 20 μs while consuming 414 mW. It outperforms state-of-the-art platforms in terms of throughput by a factor of 4.
Sebastian Haas, Tobias Seifert, Benedikt Noethen, Stefan Scholze, Sebastian Höppner, Andreas Dixius, Esther P. Adeva, Thomas R. Augustin, Friedrich Pauls, Sadia Moriam, Mattis Hasler, Erik Fischer, Yong Chen 0014, Emil Matús, Georg Ellguth, Stephan Hartmann 0002, Stefan Schiefer, Love Cederstroem, Dennis Walter, Stephan Henker, Stefan Hänzsche, Johannes Uhlig, Holger Eisenreich, Stefan Weithoffer, Norbert Wehn, René Schüffny, Christian Mayr 0001, Gerhard P. Fettweis
DAC23
2016 An MPSoC for energy-efficient database query processing
abstract
This paper presents a heterogeneous database hardware accelerator MPSoC manufactured in 28 nm SLP CMOS. The 18 mm2 chip integrates a runtime task scheduling unit for energy-efficient query processing and hierarchical power management supported by an ultra-fast dynamic voltage and frequency scaling. Four processing elements, connected by a star-mesh network-on-chip, are accelerated by an instruction set extension tailored to fundamental data-intensive applications. We evaluate the MPSoC with typical database benchmarks focusing on scans and bitmap operations. When the processing elements operate on data stored in local memories, the chip consumes 250 mW and shows a 96x energy efficiency improvement compared to state-of-the-art platforms.
Sebastian Haas, Oliver Arnold, Benedikt Noethen, Stefan Scholze, Georg Ellguth, Andreas Dixius, Sebastian Höppner, Stefan Schiefer, Stephan Hartmann 0002, Stephan Henker, Thomas Hocker, Jörg Schreiter, Holger Eisenreich, Jens-Uwe Schluessler, Dennis Walter, Tobias Seifert, Friedrich Pauls, Mattis Hasler, Yong Chen 0014, Hermann Hensel, Sadia Moriam, Emil Matús, Christian Mayr 0001, René Schüffny, Gerhard P. Fettweis
DAC13
2014 A compact on-chip IR-drop measurement system in 28 nm CMOS technology
abstract
A sensor system for measuring the power-ground (PG) noise in very large scale integrated circuits is presented. The proposed system utilizes sensor elements with standard cell dimensions enabling high spatial resolution voltage measurements of power and ground rails. Asynchronous sub-sampling is used to directly convert the analog signals into the digital domain inside the sensors to ensure precise waveform acquisition. Timing signals are derived from a all-digital phase-locked-loop (ADPLL) which guarantees accurate low-noise sampling of the supply waveforms. The sensor system has been implemented in a 28nm CMOS test chip. Simultaneous acquisition of voltage drop and ground bounce at 300 probe points within a 120μm × 120μm macro at 62.5 ps time and up to 250μV voltage resolution shows the capabilities of both, high spatial and high temporal resolution measurement of PG noise.
Sebastian Dietel, Sebastian Höppner, Holger Eisenreich, Georg Ellguth, Stefan Hänzsche, Stephan Henker, René Schüffny, Tim Brauninger, Ulrich Fiedler
ISCAS3
2013 A Compact Clock Generator for Heterogeneous GALS MPSoCs in 65-nm CMOS Technology
abstract
This paper presents an all-digital phase-locked loop (ADPLL) clock generator for globally asynchronous locally synchronous (GALS) multiprocessor systems-on-chip (MPSoCs). With its low power consumption of 2.7 mW and ultra small chip area of 0.0078 mm2it can be instantiated per core for fine-grained power management like DVFS. It is based on an ADPLL providing a multiphase clock signal from which core frequencies from 83 to 666 MHz with 50% duty cycle are generated by phase rotation and frequency division. The clock meets the specification for DDR2/DDR3 memory interfaces. Additionally, it provides a dedicated high-speed clock up to 4 GHz for serial network-on-chip data links. Core frequencies can be changed arbitrarily within one clock cycle for fast dynamic frequency scaling applications. The performance including statistical analysis of mismatch has been verified by a prototype in 65-nm CMOS technology.
Sebastian Höppner, Holger Eisenreich, Stephan Henker, Dennis Walter, Georg Ellguth, René Schüffny
IEEE Trans. Very Large Scale Integr. Syst.2
2012 A power management architecture for fast per-core DVFS in heterogeneous MPSoCs
abstract
This paper presents a power management architecture for MPSoCs that allows fast switching between multiple onchip supply voltage levels per core. Operation is based on distinct scenarios for power-up and supply level change, with individual numbers of pre-charge switches for supply noise reduction. The power management controller is highly configurable for adaption to a wide range of supply network parasitics in heterogeneous MPSoCs. This architecture has been validated by measurements in 65nm CMOS technology. Power-up and DVFS level changes can be performed in less than 20ns with reduced parasitic voltage drop of active cores.
Sebastian Höppner, Chenming Shao, Holger Eisenreich, Georg Ellguth, Mario Ander, René Schüffny
ISCAS3
2012 A 32 GBit/s communication SoC for a waferscale neuromorphic system
Stefan Scholze, Holger Eisenreich, Sebastian Höppner, Georg Ellguth, Stephan Henker, Mario Ander, Stefan Hänzsche, Johannes Partzsch, Christian Mayr 0001, René Schüffny
Integr.2
2010 Low power design of the X-GOLD® SDR 20 baseband processor
abstract
The X-GOLD SDR 2x family of programmable baseband processors is designed for hosting multiple standards of mobile communication, connectivity, and reception of broadcast ser(R) vices. Processors from the X-GOLDw SDR 2x family obtain the necessary flexibility from a set of programmable SIMD (single-instruction, multiple-data) processor cores, which exchange data through shared on-chip memories. The processors are supported by few dedicated configurable hardware accelerators for those DSP tasks which require no or little flexibility, (R) by an ARMW core for the execution of the upper layers of the protocol stack and by standard IO-components.
Wolfgang Raab, Jörg Berthold, J. A. Ulrich Hachmann, Dominik Langen, Michael Schreiner, Holger Eisenreich, Jens-Uwe Schluessler, Georg Ellguth
DATE6