Industry News

AMD Threadripper 7000/PRO processors released: up to 96 cores 5nm process

Views : 139
Update time : 2023-10-27 10:39:25
        AMD officially released AMD Riptide Threadripper 7000/PRO series workstation processors on October 19th, built with the latest Zen 4 architecture, using TSMC's 5nm process, supporting Windows 11, RHEL, Ubuntu operating systems, up to 96 cores and 192 threads.
 
 
 
        AMD Riptide Threadripper 7000/PRO series processors utilize the sTR5 interface with 8~12 Zen 4 architecture CPU wafers packaged inside. The processors are categorized into the TRX50 platform and the higher-end WRX90 platform, which features superior PCIe 5.0 expansion, 8-channel DDR5 memory support, and enterprise-grade manageability and security features. 
        The AMD Riptide Threadripper 7000 (non-PRO) series is divided into three models: the 64-core 7980X, 32-core 7970X, and 24-core 7960X, all of which have a CPU frequency of up to over 5.0GHz and a TDP of 350W. The built-in total cache capacity is up to 320MB, 160MB, and 152MB, respectively. these three processors support up to 4-channel DDR5-5200 memory and up to 96/88 total/available PCIe lanes. 
        The higher-end Threadripper 7000 PRO series covers the TRX50 and WRX90 platforms, covering 6 models from 7945WX to 7995WX, with CPU core counts offering 12, 16, 24, 32, 64, and 96 cores, and all with a maximum clock speed of more than 5.0GHz and support for 8-channel DDR5-5200 memory.The PRO series has a PCIe lane count is even higher, featuring 148 PCIe lanes, 144 available lanes, and 128 PCIe 5.0 lanes. 
        The flagship model, AMD RuiLong Threadripper PRO 7995WX, has a base clock frequency of 2.5GHz, a maximum acceleration frequency of 5.1GHz, 6MB of L1 cache, 96MB of L2 cache, 384MB of L3 cache, and support for up to 2TB of memory, with a single unit priced at 73,000 RMB.
        In terms of performance, a number of score data show that AMD RuiLong Threadripper 7000 series processors, in scientific computing, multimedia processing, design rendering, engineering modeling and other areas of performance, are better than the previous generation of the flagship Threadripper 5995WX. In addition, compared with the Intel Xeon w9-3495X, 3475X, there is also a significant improvement.

 
Related News
Read More >>
LDK220 LDO Voltage Regulators Specifications, Features, Pinout, and Applications LDK220 LDO Voltage Regulators Specifications, Features, Pinout, and Applications
Feb .02.2026
The LDK220 series of low-dropout linear regulators (LDOs) is a high-performance device designed specifically for low-power consumption and high-precision voltage regulation, widely used in scenarios such as consumer electronics, industrial control, and po
Xilinx Spartan®-7 FPGA Family: A High-Performance and Energy-Efficient Solution for Mid-Range FPGAs Xilinx Spartan®-7 FPGA Family: A High-Performance and Energy-Efficient Solution for Mid-Range FPGAs
Jan .20.2026
Xilinx Spartan®-7 FPGA Family stands as a defining solution in the mid-range FPGA landscape, blending high performance, energy efficiency, and cost-effectiveness to redefine versatility for industrial, IoT, and consumer electronics applications. Built on
Altera FLEX Series: Architecture, Innovation, and Application Across Four Generations Altera FLEX Series: Architecture, Innovation, and Application Across Four Generations
Jan .07.2026
The Altera FLEX series was more than a lineup of FPGAs—it was a blueprint for how programmable logic devices could evolve to meet diverse market needs. The FLEX 8000 laid the architectural groundwork, the FLEX 10K redefined functionality with embedded mem
LM4765 vs. LM4766: A Comprehensive Comparison of Dual-Channel Audio Power Amplifiers LM4765 vs. LM4766: A Comprehensive Comparison of Dual-Channel Audio Power Amplifiers
Dec .16.2025
Among TI standout offerings, the LM4765 and LM4766 are dual-channel amplifiers designed to cater to diverse audio needs—from compact setups to high-fidelity systems. While sharing the same product lineage, these chips differ significantly in power output,