EPYC-038: Based on AMD internal testing as of 09/19/2022, geomean performance improvement at the same fixed-frequency on a 4th Gen AMD EPYC™ 9554 CPU compared to a 3rd Gen AMD EPYC™ 7763 CPU using a select set of workloads (33) including est. SPECrate®2017_int_base, est. SPECrate®2017_fp_base, and representative server workloads. SPEC®, SPEC CPU®, and SPECrate® are registered trademarks of the Standard Performance Evaluation Corporation. See www.spec.org for more information.

Reference [3] AVX2 vs. AVX-512 effective frequency increase based on internal testing as of 09/01/2022 on 2 socket AMD EPYC 9654 96C with SMT off, NPS4, 1.5 TB DDR4-4800 using an internal build of Virginia HPL 2.3 with AVX2 (92.0 % HLP efficiency) against an internal build of Virginia HPL 2.3 with AVX-512 (92.2% HPL efficiency).

Reference [4] "Zen 3" vs. "Zen 4" estimated SPECrate® 2017 Integer SMT uplift determined using top-of-stack AMD EPYC 7763 ("Milan") at 2.5 GHz fixed frequency, Memory: 3200-DDR4, 32GB x 8 channels, NPS1 and top of stack AMD EPYC 9654 ("Genoa") at 2.5 GHz fixed frequency, Memory: 4800-DDR5, 64GB x12 Channels, NPS1. SPECint® 2017 benchmark compiled with GCC 10.2 -O3. 2 copies run on the same core with SMT off and SMT on.

SP5-013D: SPECrate®2017_int_base comparison based on published scores from www.spec.org as of 05/31/2023. Comparison of published 2P AMD EPYC 9654 (1800 SPECrate®2017_int_base, 720 Total TDP W, $23,610 total 1Ku, 192 Total Cores, 2.500 Perf/W, 0.076 Perf/CPU$, http://spec.org/cpu2017/results/res2023q2/cpu2017-20230424-36017.html) is 1.80x the performance of published 2P Intel Xeon Platinum 8490H (1000 SPECrate®2017_int_base, 700 Total TDP W, $34,000 total 1Ku, 120 Total Cores, 1.429 Perf/W, 0.029 Perf/CPU$, http://spec.org/cpu2017/results/res2023q1/cpu2017-20230310-34562.html) [at 1.75x the performance/W] [at 2.59x the performance/CPU$]. Published 2P AMD EPYC 7763 (861 SPECrate®2017_int_base, 560 Total TDP W, $15,780 total 1Ku, 128 Total Cores, 1.538 Perf/W, 0.055 Perf/CPU$, http://spec.org/cpu2017/results/res2021q4/cpu2017-20211121-30148.html) is shown for reference at 0.86x the performance [at 1.08x the performance/W] [at 1.86x the performance/CPU$]. AMD 1Ku pricing and Intel ARK.intel.com specifications and pricing as of 6/13/23. SPEC®, SPEC CPU®, and SPECrate® are registered trademarks of the Standard Performance Evaluation Corporation. See www.spec.org for more information.

SP5-049C: VMmark® 3.1.1 matched pair comparison based on published results as of 6/13/2023. Configurations: 2-node, 2P 96-core EPYC 9654 powered server running VMware ESXi 8.0b (40.66 @ 42 tiles/798 VMs, https://www.vmware.com/content/dam/digitalmarketing/vmware/en/pdf/vmmark/2023-06-13-Lenovo-ThinkSystem-SR665V3.pdf) versus 2-node, 2P 60-core Xeon Platinum 8490H running VMware ESXi 8.0 GA (23.38 @ 23 tiles/437 VMs, https://www.vmware.com/content/dam/digitalmarketing/vmware/en/pdf/vmmark/2023-03-21-Fujitsu-PRIMERGY-RX2540M7.pdf) for 1.74x the score and 1.75x the tile (VM) capacity. 2-node, 2P EPYC 7763-powered server (23.33 @ 24 tiles/456 VMs, https://www.vmware.com/content/dam/digitalmarketing/vmware/en/pdf/vmmark/2022-02-08-Fujitsu-RX2450M1.pdf) shown at 0.98x performance for reference. VMmark is a registered trademark of VMware in the US or other countries.

SP5-056B: SAP® SD 2-tier comparison based on published results as of 6/13/2023. Configurations: 2P 96-core EPYC 9654 powered server (148,000 benchmark users, https://www.sap.com/dmc/benchmark/2022/Cert22029.pdf) versus 2P 60-core Xeon Platinum 8480+ (77,105 benchmark users, https://www.sap.com/dmc/benchmark/2023/Cert23021.pdf) for 1.92x the number of SAP SD benchmark users. 2P EPYC 7763 powered server (75,000 benchmark users, https://www.sap.com/dmc/benchmark/2021/Cert21021.pdf) shown at 0.98x the performance for reference. For more details see http://www.sap.com/benchmark. SAP and SAP logo are the trademarks or registered trademarks of SAP SE (or an SAP affiliate company) in Germany and in several other countries.

SP5-104A: SPECjbb® 2015-MultiJVM Critical based on published scores from www.spec.org as of 3/31/2023. Configurations: 2P AMD EPYC 9654 (664,375 SPECjbb®2015 MultiJVM max-jOPS, 622,315 SPECjbb®2015 MultiJVM critical-jOPS, 192 Total Cores, https://www.spec.org/jbb2015/results/res2022q4/jbb2015-20221019-00860.html) is 1.69x the critical-jOPS performance of published 2P Intel Xeon Platinum 8490H (458,295 SPECjbb®2015 MultiJVM max-jOPS, 368,979 SPECjbb®2015 MultiJVM critical-jOPS, 120 Total Cores, http://www.spec.org/jbb2015/results/res2023q1/jbb2015-20230119-01007.html). 2P AMD EPYC 7763 (339,338 SPECjbb®2015 MultiJVM max-jOPS, 313,824 SPECjbb®2015 MultiJVM critical-jOPS, 128 total cores, https://www.spec.org/jbb2015/results/res2021q3/jbb2015-20210701-00688.html) shown at 0.85x the performance and 2P Intel Xeon Platinum 8380 (269,094 SPECjbb®2015 MultiJVM max-jOPS, 213,195 SPECjbb®2015 MultiJVM critical-jOPS, 80 total cores, https://spec.org/jbb2015/results/res2021q3/jbb2015-20210810-00701.html) shown at 0.58x the performance for reference. SPEC® and SPECjbb® are registered trademarks of the Standard Performance Evaluation Corporation. See www.spec.org for more information.

Reference [5] ANSYS CFX https://www.amd.com/system/files/documents/amd-epyc-9004x-pb-ansys-cfx.pdf, ANSYS LS-DYNA https://www.amd.com/system/files/documents/amd-epyc-9004x-pb-ansys-ls-dyna.pdf

Reference [6] ANSYS Fluent https://www.amd.com/system/files/documents/amd-epyc-9004x-pb-ansys-fluent.pdf, OpenFOAM https://www.amd.com/system/files/documents/amd-epyc-9004x-pb-openfoam.pdf

Reference [7] See https://www.amd.com/content/dam/amd/en/documents/epyc-business-docs/performance-briefs/amd-epyc-9754-pb-spec-power.pdf

SP6-008: Server-side Java® overall operations/watt (SPECpower_ssj®2008) claim based on 1P published results at spec.org as of 9/18/2023. 1P servers: EPYC 8534P (64-core, 200W TDP, 27,342 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230830-01309.html); EPYC 8434P (48-core, 200W TDP, 20,100 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230829-01303.html); EPYC 8324P (32-core, 180W TDP, 16,711 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230829-01301.html); EPYC 8224P (24-core, 160W TDP, 14,128 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230829-01300.html); EPYC 8124P (16-core, 125W TDP, 10,433 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230829-01305.html); EPYC 8024P (8-core, 90W TDP, 6,399 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q1/power_ssj2008-20221205-01205.html) vs. Intel Xeon Platinum 8490H (60-core, 350W TDP, 14,537 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230822-01295.html); Intel Xeon Platinum 8471N (52-core, 300W TDP, 12,281 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230822-01294.html); and Intel Xeon Gold 6414U (32-core, 250W TDP, 10,322 overall ssj_ops/W, https://spec.org/power_ssj2008/results/res2023q3/power_ssj2008-20230822-01296.html). SPEC and SPECpower_ssj® are registered trademarks of the Standard Performance Evaluation Corporation.

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© 2024 Advanced Micro Devices, Inc. All rights reserved. AMD, the AMD Arrow logo, EPYC, Infinity Fabric, and combinations thereof are trademarks of Advanced Micro Devices, Inc. ANSYS, CFX, FLUENT, LS-DYNA and any and all ANSYS, Inc. brand, product, service and feature names, logos and slogans are registered trademarks or trademarks of ANSYS, Inc. or its subsidiaries in the United States or other countries. CXL is a trademark of Compute Express Link Consortium, Inc. OPENFOAM®  is a registered trademark of OpenCFD Limited, producer and distributor of the OpenFOAM software via www.openfoam.com. PCIe is a registered trademark of PCI-SIG Corporation. SAP and SAP logo are the trademarks or registered trademarks of SAP SE (or an SAP affiliate company) in Germany and in several other countries. SPEC®, SPEC CPU®, SPECjbb®, SPECpower® and SPECrate® are registered trademarks of the Standard Performance Evaluation Corporation. See www.spec.org for more information. VMmark is a registered trademark of VMware in the US or other countries. Other product names used in this publication are for identification purposes only and may be trademarks of their respective owners.