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AMD 100-100000723WOF 32-Core Threadripper PRO Workstation CPU
The AMD 100-100000723WOF is a Ryzen Threadripper PRO 9975WX processor built for workstation loads that outgrow desktop-class silicon — video ingest servers, VMS analytics hosts, CAD and simulation rigs, and multi-GPU AI development boxes. With 32 cores and 64 threads on the Zen 5 architecture, this chip is a fit for shops running heavily threaded workloads where core count translates directly into throughput, not just benchmark bragging rights.
Overview
Built on TSMC's 4nm process for the CPU cores (6nm for the I/O die, across a 5-die package), the 9975WX lands in the Threadripper PRO 9000 WX-Series and drops into the sTR5 socket on WRX90, TRX50, or Pro 695 chipset boards. Base clock is 4 GHz with a boost up to 5.4 GHz, backed by 2.5MB of L1, 32MB of L2, and 128MB of L3 cache. For teams speccing out a rendering node, an NVR/VMS analytics server, or a dense virtualization host, this is the part where the core-and-cache math actually changes what you can run concurrently.
Key Features
- 32 Cores / 64 Threads: Simultaneous multithreading doubles the schedulable work units, so parallel encode jobs, multi-stream VMS analytics, or containerized workloads don't queue behind each other the way they would on an 8 or 16-core desktop chip.
- 128MB L3 Cache: A large last-level cache keeps more of the working data set close to the cores, cutting trips to system memory — a real factor when you're running multiple large applications or VMs side by side rather than one clean benchmark.
- Up to 5.4GHz Boost Clock: Single-thread bursts hit 5.4GHz even with 32 cores populated, so latency-sensitive steps in a mixed workload (UI response, single-threaded pre/post-processing) don't bottleneck the rest of the pipeline.
- 8-Channel DDR5 Memory: Eight memory channels multiply available bandwidth versus a dual or quad-channel desktop platform — critical when 32 cores are all pulling data at once, which is exactly the scenario where narrower memory subsystems choke.
- 148 Native PCIe 5.0 Lanes: That lane count supports multiple GPUs, NVMe RAID arrays, and high-speed NICs simultaneously without falling back to lane-sharing switches — relevant for AI development rigs or storage-heavy servers that need direct, uncontended PCIe paths.
- NVMe RAID 0/1/5/10 + Boot Support: Native RAID across NVMe drives (including boot) lets you build fast, redundant local storage without a separate RAID controller card — one less component to source, cool, and fail.
- 350W TDP: A 350W thermal envelope reflects the core count and clock headroom on tap; plan chassis airflow and a socket sTR5-rated cooler sized for that load rather than reusing a mainstream-desktop cooling solution.
- 95°C Max Operating Temperature: The rated ceiling gives integrators a known thermal design target for workstation and rackmount chassis validation instead of guessing at throttle points.
- AMD EXPO Memory Overclocking + Precision Boost Overdrive: EXPO simplifies pushing DDR5 kits to their rated speeds, while Precision Boost Overdrive and Curve Optimizer voltage offsets give tuners headroom to extract more sustained clock without a full manual overclock.
- No Integrated Graphics: This is a compute-focused die with no onboard GPU, so a discrete graphics card is mandatory for display output — factor that into the build sheet if you're not already speccing a GPU for compute.
Integration & Compatibility
The 100-100000723WOF requires a socket sTR5 motherboard on the WRX90, TRX50, or Pro 695 chipset — verify board choice before ordering, since Threadripper PRO does not drop into standard AM5 or older TRX40 boards. It supports the x86-64 instruction set with AES, AVX, AVX2, AVX-512, FMA3, and SHA extensions, and is validated for Windows 11. For teams building out surveillance or video analytics infrastructure around this CPU, pairing it with adequate storage and network throughput matters as much as the chip itself — see the network video recorders category for purpose-built recording hardware, or review a VMS architecture guide when scoping a server around a specific channel count and retention target. This part is sold independently of any brand's finished PC catalog; check the full AMD product line for compatible platform components, and browse PC components and parts for motherboards, memory, and cooling to complete the build. A PoE switch and appropriate storage and retention planning round out a full recording-server build if this CPU is going into a VMS host rather than a general workstation.
Frequently Asked Questions
Q: What socket does the AMD 100-100000723WOF use?
A: Socket sTR5, supported on WRX90, TRX50, and Pro 695 chipset motherboards.
Q: Does the 100-100000723WOF include integrated graphics?
A: No. It has no onboard GPU, so a discrete graphics card is required for video output.
Q: What's the warranty on the 100-100000723WOF?
A: This processor carries a 3-year manufacturer warranty.
Q: How many PCIe lanes does the 9975WX provide?
A: 148 native PCIe 5.0 lanes, enough for multiple GPUs, NVMe RAID arrays, and high-speed NICs without lane-sharing.
Q: What memory does the 100-100000723WOF support?
A: 8-channel DDR5 memory, with AMD EXPO overclocking support for pushing rated kit speeds.
Q: What cooling should I plan for this CPU?
A: Plan for a 350W TDP cooling solution rated for socket sTR5, with a max operating temperature of 95°C (203°F).

When I spec a workstation-class build around the 100-100000723WOF, the number that jumps out first isn't the 5.4GHz boost — it's the 148 native PCIe 5.0 lanes. That's enough to run multiple GPUs and NVMe RAID at full bandwidth without contention, which is where a lot of high-core-count builds quietly bottleneck.
Technical Highlights:
- 32 Cores / 64 Threads on Zen 5: With SMT enabled, 64 schedulable threads keep heavily parallel jobs — multi-stream analytics, batch encoding, containerized workloads — moving concurrently instead of queuing.
- 128MB L3 / 8-Channel DDR5: That cache-to-bandwidth pairing is what keeps 32 cores fed; on narrower memory platforms, core count this high just waits on RAM more often.
- 350W TDP at 95°C Tjmax: This isn't a chip you cool with a stock desktop tower cooler — budget chassis airflow and an sTR5-rated cooling solution sized to the full 350W envelope up front.
Deployment Considerations:
- Motherboard choice is non-negotiable: sTR5 socket only, on WRX90, TRX50, or Pro 695 boards — it will not fit a standard AM5 or last-gen TRX40 platform.
- No integrated graphics — a discrete GPU is mandatory even for a headless server build, purely to get a display signal during setup and BIOS work.
This is the right chip for a multi-GPU AI development workstation or a heavily-threaded render/analytics server where 148 PCIe lanes and 8-channel DDR5 bandwidth are the actual constraint — not for a single-GPU editing box where a lower core-count Threadripper or Ryzen part would be cheaper and just as fast in practice.
Compare with similar
AMD Ryzen Threadripper PRO 9975WX 32-CORE Processor - 100-100000723WOF
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