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Christian Jacobi 0002
Person information
- affiliation: IBM Germany
- affiliation (PhD 2002): Saarland University, Saarbrücken, Germany
Other persons with the same name
- Christian Jacobi — disambiguation page
- Christian Jacobi 0001 (aka: Christian P. Jacobi) — Swiss Federal Institute of Technology, Zürich, Switzerland
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2020 – today
- 2023
- [j14]Deanna Postles Dunn Berger, Christian Jacobi, Craig R. Walters, Robert J. Sonnelitter, Mike Cadigan, Matthias Klein:
Enterprise-Class Multilevel Cache Design: Low Latency, Huge Capacity, and High Reliability. IEEE Micro 43(1): 58-66 (2023) - 2022
- [c17]Cédric Lichtenau, Alper Buyuktosunoglu, Ramon Bertran, Peter Figuli, Christian Jacobi, Nikolaos Papandreou, Haris Pozidis, Anthony Saporito, Andrew Sica, Elpida Tzortzatos:
AI accelerator on IBM telum processor: industrial product. ISCA 2022: 1012-1028 - 2021
- [c16]Christian Jacobi:
Real-time AI for Enterprise Workloads: the IBM Telum Processor. HCS 2021: 1-22 - 2020
- [j13]Anthony Saporito, Martin Recktenwald, Christian Jacobi, Gerrit Koch, Deanna Postles Dunn Berger, Robert J. Sonnelitter, Craig R. Walters, Jang-Soo Lee, Cédric Lichtenau, Ulrich Mayer, Eduard Herkel, Stefan Payer, Silvia M. Müller, Vesselina K. Papazova, Ekaterina M. Ambroladze, Timothy C. Bronson:
Design of the IBM z15 microprocessor. IBM J. Res. Dev. 64(5/6): 7:1-7:18 (2020) - [j12]Christian Jacobi, Charles F. Webb:
History of IBM Z Mainframe Processors. IEEE Micro 40(6): 50-58 (2020) - [c15]Bülent Abali, Bart Blaner, John J. Reilly, Matthias Klein, Ashutosh Mishra, Craig B. Agricola, Bedri Sendir, Alper Buyuktosunoglu, Christian Jacobi, William J. Starke, Haren Myneni, Charlie Wang:
Data Compression Accelerator on IBM POWER9 and z15 Processors : Industrial Product. ISCA 2020: 1-14
2010 – 2019
- 2019
- [j11]Christopher J. Berry, David Wolpert, Christos Vezyrtzis, Richard F. Rizzolo, Sean M. Carey, Yaniv Maroz, Hunter F. Shi, Dureseti Chidambarrao, Christian Jacobi, Anthony Saporito, Thomas Strach, Alper Buyuktosunoglu, Preetham Lobo, Pierce Chuang, Pawel Owczarczyk, Ramon Bertran, Tobias Webel, Phillip J. Restle:
IBM z14: Processor Characterization and Power Management for High-Reliability Mainframe Systems. IEEE J. Solid State Circuits 54(1): 121-132 (2019) - 2018
- [j10]Craig R. Walters, David S. Hutton, Edward W. Chencinski, Christine Axnix, Ralf Winkelmann, Michael F. Fee, Anthony Saporito, Christian Jacobi:
Performance innovations in the IBM z14 platform. IBM J. Res. Dev. 62(2/3): 7:1-7:11 (2018) - [j9]Christian Jacobi, Anthony Saporito, Martin Recktenwald, Aaron Tsai, Ulrich Mayer, Markus M. Helms, Adam Collura, Pak-kin Mak, Robert J. Sonnelitter, Michael A. Blake, Tim Bronson, Arthur O'neill, Vesselina K. Papazova:
Design of the IBM z14 microprocessor. IBM J. Res. Dev. 62(2/3): 8:1-8:11 (2018) - [j8]Christian G. Zoellin, Oliver Draese, Jonathan D. Bradbury, Christian Jacobi, Aditya Puranik, Peter Sutton, Robert Tokumaru:
New database compression assists in the IBM z14 processor. IBM J. Res. Dev. 62(2/3): 12:1-12:11 (2018) - [c14]Christopher J. Berry, James D. Warnock, John Isakson, John Badar, Brian Bell, Frank Malgioglio, Guenter Mayer, Dina Hamid, Jesse Surprise, David Wolpert, Ofer Geva, Bill Huott, Leon J. Sigal, Sean M. Carey, Richard F. Rizzolo, Ricardo Nigaglioni, Mark Cichanowski, Dureseti Chidambarrao, Christian Jacobi, Anthony Saporito, Arthur O'neill, Robert J. Sonnelitter, Christian G. Zoellin, Michael H. Wood, José Neves:
IBM z14™: 14nm microprocessor for the next-generation mainframe. ISSCC 2018: 36-38 - 2015
- [j7]Brian W. Curran, Christian Jacobi, J. J. Bonanno, D. A. Schroter, K. J. Alexander, A. Puranik, Markus M. Helms:
The IBM z13 multithreaded microprocessor. IBM J. Res. Dev. 59(4/5) (2015) - 2013
- [j6]C. Kevin Shum, Fadi Busaba, Christian Jacobi:
IBM zEC12: The Third-Generation High-Frequency Mainframe Microprocessor. IEEE Micro 33(2): 38-47 (2013) - 2012
- [j5]Fadi Busaba, Michael A. Blake, Brian W. Curran, Michael F. Fee, Christian Jacobi, Pak-kin Mak, Brian R. Prasky, Craig R. Walters:
IBM zEnterprise 196 microprocessor and cache subsystem. IBM J. Res. Dev. 56(1): 1 (2012) - [c13]Christian Jacobi, Timothy J. Slegel, Dan F. Greiner:
Transactional Memory Architecture and Implementation for IBM System Z. MICRO 2012: 25-36
2000 – 2009
- 2008
- [c12]Udo Krautz, Markus Wedler, Wolfgang Kunz, Kai Weber, Christian Jacobi, Matthias Pflanz:
Verifying full-custom multipliers by Boolean equivalence checking and an arithmetic bit level proof. ASP-DAC 2008: 398-403 - 2007
- [j4]Lee Eisen, John Wesley Ward III, Hans-Werner Tast, Nicolas Mäding, Jens Leenstra, Silvia M. Müller, Christian Jacobi, Jochen Preiss, Eric M. Schwarz, Steven R. Carlough:
IBM POWER6 accelerators: VMX and DFU. IBM J. Res. Dev. 51(6): 663-684 (2007) - 2006
- [j3]Hwa-Joon Oh, Silvia M. Müller, Christian Jacobi, Kevin D. Tran, Scott R. Cottier, Brad W. Michael, Hiroo Nishikawa, Yonetaro Totsuka, Tatsuya Namatame, Naoka Yano, Takashi Machida, Sang H. Dhong:
A fully pipelined single-precision floating-point unit in the synergistic processor element of a CELL processor. IEEE J. Solid State Circuits 41(4): 759-771 (2006) - [j2]Sven Beyer, Christian Jacobi, Daniel Kröning, Dirk Leinenbach, Wolfgang J. Paul:
Putting it all together - Formal verification of the VAMP. Int. J. Softw. Tools Technol. Transf. 8(4-5): 411-430 (2006) - [c11]Udo Krautz, Matthias Pflanz, Christian Jacobi, Hans-Werner Tast, Kai Weber, Heinrich Theodor Vierhaus:
Evaluating coverage of error detection logic for soft errors using formal methods. DATE 2006: 176-181 - 2005
- [j1]Christian Jacobi, Christoph Berg:
Formal Verification of the VAMP Floating Point Unit. Formal Methods Syst. Des. 26(3): 227-266 (2005) - [c10]Silvia M. Müller, Christian Jacobi, Hwa-Joon Oh, Kevin D. Tran, Scott R. Cottier, Brad W. Michael, Hiroo Nishikawa, Yonetaro Totsuka, Tatsuya Namatame, Naoka Yano, Takashi Machida, Sang H. Dhong:
The Vector Floating-Point Unit in a Synergistic Processor Element of a CELL Processor. IEEE Symposium on Computer Arithmetic 2005: 59-67 - [c9]Viresh Paruthi, Christian Jacobi, Kai Weber:
Efficient Symbolic Simulation via Dynamic Scheduling, Don't Caring, and Case Splitting. CHARME 2005: 114-128 - [c8]Christian Jacobi, Kai Weber, Viresh Paruthi, Jason Baumgartner:
Automatic Formal Verification of Fused-Multiply-Add FPUs. DATE 2005: 1298-1303 - 2003
- [c7]Sven Beyer, Christian Jacobi, Daniel Kroening, Dirk Leinenbach, Wolfgang J. Paul:
Instantiating Uninterpreted Functional Units and Memory System: Functional Verification of the VAMP. CHARME 2003: 51-65 - [c6]Michael Backes, Christian Jacobi:
Cryptographically Sound and Machine-Assisted Verification of Security Protocols. STACS 2003: 675-686 - 2002
- [b1]Christian Jacobi:
Formal verification of a fully IEEE compliant floating point unit. Saarland University, Saarbrücken, Germany, 2002, pp. 1-147 - [c5]Christian Jacobi:
Formal Verification of Complex Out-of-Order Pipelines by Combining Model-Checking and Theorem-Proving. CAV 2002: 309-323 - [c4]Michael Backes, Christian Jacobi, Birgit Pfitzmann:
Deriving Cryptographically Sound Implementations Using Composition and Formally Verified Bisimulation. FME 2002: 310-329 - 2001
- [c3]Christoph Berg, Christian Jacobi:
Formal Verification of the VAMP Floating Point Unit. CHARME 2001: 325-339 - 2000
- [c2]Christian Jacobi, Daniel Kroening:
Proving the Correctness of a Complete Microprocessor. GI Jahrestagung 2000: 293-303
1990 – 1999
- 1999
- [c1]Christian Jacobi, Cédric Lichtenau:
Highly Concurrent Locking in Shared Memory Database Systems. Euro-Par 1999: 477-481
Coauthor Index
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