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Hot Chips: A Symposium on High Performance Chips | Conference Sponsor IEEE Technical Committee on Microprocessors and Microcomputers.
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#content | Skip to primary content |
hotchips.org/ | HC31 (2019) |
hotchips.org/archives/ | Archives |
hotchips.org/archives/2010s/ | 2019-2010 |
hotchips.org/archives/2010s/hc30/ | HC30 (2018) |
hotchips.org/archives/2010s/hc29/ | HC29 (2017) |
hotchips.org/archives/2010s/hc28/ | HC28 (2016) |
hotchips.org/archives/2010s/hc27/ | HC27 (2015) |
hotchips.org/archives/2010s/hc26/ | HC26 (2014) |
hotchips.org/archives/2010s/hc25/ | HC25 (2013) |
hotchips.org/archives/2010s/hc24/ | HC24 (2012) |
hotchips.org/archives/2010s/hc23/ | HC23 (2011) |
hotchips.org/archives/2010s/hc22/ | HC22 (2010) |
hotchips.org/archives/2000s/ | 2009-2000 |
hotchips.org/archives/2000s/hc21/ | HC21 (2009) |
hotchips.org/archives/2000s/hc20/ | HC20 (2008) |
hotchips.org/archives/2000s/hc19/ | HC19 (2007) |
hotchips.org/archives/2000s/hc18/ | HC18 (2006) |
hotchips.org/archives/2000s/hc17/ | HC17 (2005) |
hotchips.org/archives/2000s/hc16/ | HC16 (2004) |
hotchips.org/archives/2000s/hc15/ | HC15 (2003) |
hotchips.org/archives/2000s/hc14/ | HC14 (2002) |
hotchips.org/archives/2000s/hc13/ | HC13 (2001) |
hotchips.org/archives/2000s/hc12/ | HC12 (2000) |
hotchips.org/archives/1990s/ | 1999-1990 |
hotchips.org/archives/1990s/hc11/ | HC11 (1999) |
hotchips.org/archives/1990s/hc10/ | HC10 (1998) |
hotchips.org/archives/1990s/hc09/ | HC09 (1997) |
hotchips.org/archives/1990s/hc08/ | HC08 (1996) |
hotchips.org/archives/1990s/hc07/ | HC07 (1995) |
hotchips.org/archives/1990s/hc06/ | HC06 (1994) |
hotchips.org/archives/1990s/hc05/ | HC05 (1993) |
hotchips.org/archives/1990s/hc04/ | HC04 (1992) |
hotchips.org/archives/1990s/hc03/ | HC03 (1991) |
hotchips.org/archives/1990s/hc02/ | HC02 (1990) |
hotchips.org/archives/hc01/ | HC01 (1989) |
hotchips.org/in-the-news/ | In The News |
hotchips.org/corporate_sponsors/ | Corporate Sponsors |
hotchips.org/corporate_sponsors/sponsorship-guidelines/ | Sponsorship Guidelines |
hotchips.org/blog/ | Blog |
hotchips.org/about/ | About |
hotchips.org/about/hc31-committees/ | HC31 Committees |
hotchips.org/about/past-committees/ | Past Committees |
hotchips.org/about/past-committees/hc30_committees/ | HC30 Committees |
hotchips.org/about/past-committees/hc29-committees/ | HC29 Committees |
hotchips.org/about/past-committees/hc28-committees/ | HC28 Committees |
hotchips.org/about/past-committees/hc27-committees/ | HC27 Committees |
hotchips.org/about/past-committees/hc26-committees/ | HC26 Committees |
hotchips.org/about/past-committees/hc25-committees/ | HC25 Committees |
hotchips.org/about/past-committees/hc24-committees/ | HC24 Committees |
hotchips.org/contact-us/ | Contact Us |
/hc31/hc31_20190820.zip | Full Proceedings Zipfile |
/hc31/HC31_T1_AWS_Nitro_Hot_Chips_20190818-2.pdf | The Nitro Project |
/hc31/HC31_T2_Microsoft_CarrieChiouChung.pdf | Acceleration at Microsoft |
/hc31/HC31_T3_Cloud_TPU_Codesign.pdf | TPU V3 in Google Cloud |
/hc31/HC31_T4_RISCV-20190818-HotChips.pdf | Part I Overview of RISC-V ISA |
/hc31/HC31_T5_Part_II_Overview_of_RISC-V_SW_Ecosystem-3.pdf | Part II Overview of RISC-V SW Ecosystem |
/hc31/HC31_T6_Rocket.pdf | Rocket/BOOM |
/hc31/HC31_T7_Pulp.pdf | Pulp |
/hc31/Hot_Chips_2019_DrLisaSu_AMD_0819.pdf | Delivering the Future of High-Performance Computing |
/hc31/HC31_2.7_Plenary_2_-_HS_Philip_Wong_-_TSMC_-_What_Will... | What Will the Next Node Offer Us? |
/hc31/HC31_Welcome_v4.pdf | Opening Remarks |
/hc31/HC31_1.1_AMD_ZEN2.pdf | Zen2 |
/hc31/HC31_1.2_20190816_Arm_Neoverse_N1_CPU.pdf | A Next-Gen Cloud-to-Edge Infrastructure SoC Using the ARM Neoverse N1 CPU and System Products |
/hc31/HC31_1.3_IBM.v12.pdf | IBM’s Next Generation POWER Processor |
/hc31/HC31_1.4_UPMEM.FabriceDevaux.v2_1.pdf | True Processing In Memory with DRAM accelerator |
/hc31/HC31_1.5_Princeton.HongyangJia.v09.NS.pdf | A Programmable Embedded Microprocessor for Bit-scalable In-memory Computing |
/hc31/HC31_1.6_OptaneDCPMM_2019_FinalSlides_v4b.pdf | Intel Optane |
/hc31/HC31_1.8_MethodologyAndMLSystem-Stanford-rev-b.pdf | Creating An Agile Hardware Flow |
/hc31/HC31_1.9_MethodologyAndMLSystem-MLPerf-rev-b.pdf | MLPerf: A Benchmark Suite for Machine Learning from an Academic-Industry Cooperative |
/hc31/HC31_1.10_MethodologyAndMLSystem-Facebook-rev-d.pdf | Zion: Facebook Next-Generation Large-memory Unified Training Platform |
/hc31/HC31_1.11_Huawei.Davinci.HengLiao_v4.0.pdf | A Scalable unified architecture for Neural Network computing from Nano-level to high performance computing |
/hc31/HC31_1.12_Intel_Intel.AndrewYang.v0.92.pdf | Deep Learning Training at Scale – Spring Crest Deep Learning Accelerator |
/hc31/HC31_1.13_Cerebras.SeanLie.v02.pdf | Wafer Scale Deep Learning |
/hc31/HC31_1.14_HabanaLabs.Eitan_Medina.v9.pdf | Habana Labs Approach to Scaling AI Training |
/hc31/HC31_2.1_Cypress_HotChips31-89459-final.pdf | CYW89459: High Performance and Low Power Wi-Fi and Bluetooth 5.1 Combo Chip for IoT and Automotive |
/hc31/HC31_2.2_Ouroboros_Wavenet_Accelerator_v5.0.pdf | Ouroboros: A WaveNet Inference Engine for TTS Applications on Embedded Devices |
/hc31/HC31_2.3_Tesla_Hotchips_ppt_Final_0817.pdf | Compute and redundancy solution for Tesla’s Full Self driving computer |
/hc31/HC31_2.4_Nvidia_HotChips_RC18_final.pdf | A 0.11 pJ/Op, 0.32-128 TOPS, Scalable Multi-Chip-Module-based Deep Neural Network Accelerator Designed with a High-Productivity ... |
/hc31/HC31_2.5_Xilinx_Versal_Hotchips31_Final_v2.pdf | Xilinx Versal/AI Engine |
/hc31/HC31_2.6_Intel_SPH_2019_v3.pdf | Spring Hill – Intel’s Data Center Inference Chip |
/hc31/HC31_2.8_HPE.pdf | A Gen-Z Chipset for Exascale Fabrics |
/hc31/HC31_2.9_AyarLabs_20190820_HC_FINAL.pdf | TeraPHY: A Chiplet Technology for Low-Power, High-Bandwidth Optical I/O |
/hc31/HC31_2.10_LKF_HC_2019_Final_v7.pdf | Lakefield: Hybrid Cores in a Three Dimensional Package |
/hc31/HC31_2.11_Jintide_Server_CPU_final_r6.0.pdf | Jintide®: A Hardware Security Enhanced Server CPU with Xeon® Cores under Runtime Surveillance by an In-Package Dynamically Recon... |
/hc31/HC31_2.12_NVIDIA_final.pdf | RTX ON: The NVIDIA Turing GPU Architecture |
/hc31/HC31_2.13_AMD_final.pdf | 7nm “Navi” GPU |
/hc31/HC31_2.14_Terry_Microsoft_Aug20.pdf | The Silicon at the Heart of Hololens 2.0 |
/hc31/Thinker-IM.pdf | Thinker-IM: An Energy Efficient Mixed Signal RNN Engine with Computing-in-Memory and Predictive Execution |
/hc31/HC31.KULeuven.NimishShah.v01.pdf | PRU: Probabilistic Reasoning processing Unit for resource-efficient AI |
/hc31/ntx_hotchips2019.pdf | NTX: A 260 Gflop/sW Streaming Accelerator for Oblivious Floating-Point Algorithms in 22nm FD-SOI |
/hc31/HC31.UCSD.SoroushGhodrati.v01.pdf | BIHiwe: Mixed-Signal Charge-Domain Acceleration of Deep Neural Networks |
/hc31/Bigstream-Poster-v.2.2.pdf | Hyper-Acceleration With Samsung SmartSSD |
/hc31/HC31.GrayResearch.JanGray.v01.pdf | 2GRVI-HBM-Phalanx: Towards a Massively Parallel RISC-V FPGA Accelerator Kit |
/hc31/HC31.SKTelecom.SeokJoongHwang.v01.pdf | AIX v2: Flexible High Performance AI Inference Accelerator for Datacenters |
/hc31/HC31.UIUC.ChengLi.v01.pdf | MLModelScope: Evaluate and Measure ML Models within AI Pipelines |
/hc31/HC31.KAIST.JinsuLee.v01.pdf | LNPU: An Energy-Efficient Deep-Neural-Network Training Processor with Fine-Grained Mixed Precision |
/hc31/HC31.ChungbukNationalUniversity.DucNhanLe.v02.pdf | An Area Optimization and Power Efficient Method for HMAC-PHOTON Lightweight Cryptography |
/hc31/HC31.ChungbukNationalUniversity.SeungbumBaek.v02.pdf | A Reconfigurable Challenge-Response Generating SRAM PUF in 65nm CMOS |
hotchips.org/hc31-keynotes-available-to-all/ | HC31 Keynotes Available to All |
hotchips.org/hot-chips-31-is-here-kicks-off-sunday-with-tuto... | Hot Chips 31 is Here! Kicks off Sunday with Tutorials, Sponsor Demos, and More |
hotchips.org/hot-chips-sneak-peek-at-more-sponsors-intel-ama... | Hot Chips Sneak Peek at more Sponsors: Intel, Amazon, and Hailo |
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