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Description

AMD 100-000000076E Concise Descriptor

The AMD 100-000000076E is a 96-core, 192-thread EPYC 7552 embedded processor built for high-density, throughput-critical surveillance infrastructure. This socket-based processor delivers 2.40 GHz base frequency with 3.7 GHz peak boost — the right choice when you need dense compute per rack unit for NVR stacks, video transcoding farms, or large-scale analytics platforms that cannot afford single-threaded bottlenecks.

Key Features

  • 96 Cores / 192 Threads: Massive parallelism for simultaneous camera streams, on-box video re-encoding, and object detection on dozens of concurrent feeds. One physical processor replaces multiple single-socket systems, cutting cooling and power supply complexity in the rack.
  • 3.7 GHz Max Boost / 3.55 GHz All-Core Boost: Single-thread performance sufficient for real-time frame grabbing and light analytics, while all-core boost ensures consistent throughput when all 96 cores are under load. This means predictable performance during peak recording windows rather than clock throttling surprises.
  • 12-Channel DDR5 with 460.8 GB/s Memory Bandwidth: Support for DDR5-4800 memory (when paired with compatible DDR5-capable platform) eliminates DRAM as a bottleneck on large metadata buffers, ML model parameters, and frame caches. 460.8 GB/s per socket means you can move video frames between memory and compute without stalling the processor.
  • 128 PCIe Gen5 Lanes: Abundant I/O for direct-attach storage controllers, network adapters, and GPU accelerators. Gen5 doubles bandwidth versus Gen4, critical when offloading codec work to discrete silicon or pulling video from ultra-high-speed storage arrays.
  • 384 MB L3 Cache: Reduces memory latency for frame-processing loops and ML inference weights. Larger caches mean fewer stalls when context-switching between surveillance threads and keeping working sets in fast memory.
  • 360 W Default TDP: Thermal Design Power is manageable in rack enclosures with standard 2-socket mounting hardware and conventional cooling. Not a power-hog processor, making it viable for redundant dual-socket builds without exotic liquid cooling.

Integration & Compatibility

The 100-000000076E is a socket-based EPYC processor intended for embedded / OEM surveillance platforms, meaning it ships as a bare die for integration into larger system boards rather than retail retail-boxed CPUs. Confirm your OEM platform supports EPYC 7552 socket compatibility and DDR5 memory before specifying. This processor pairs with compatible single-socket or dual-socket server-class mainboards designed for surveillance, transcoding, or edge-analytics workloads — typical deployments stack two or four of these processors per 2U or 4U appliance frame.

Pair with enterprise-grade power supplies rated for sustained 360W per socket (or higher for dual-socket redundancy), server-class DDR5 ECC memory, and NVMe or SAS storage controllers to realize the full I/O and bandwidth advantages. Organizations deploying large NVR clusters, AI-powered forensic search, or real-time multi-codec transcoding across 50+ IP cameras will see per-unit cost savings and rack density improvements versus traditional multi-appliance deployments.

What's in the Box

The 100-000000076E ships as a processor die for OEM integration — no accessories, mounting hardware, or documentation included. Contact your OEM platform manufacturer or system integrator for motherboard compatibility documentation, thermal solution recommendations, and processor installation procedures specific to your surveillance platform.

Frequently Asked Questions

Q: Is the 100-000000076E compatible with my existing single-socket EPYC platform?

A: The 100-000000076E is socket-compatible with EPYC platforms supporting the EPYC 7002-series (Rome) or later socket. Verify your OEM motherboard BIOS revision supports this processor — older builds may require a firmware update. Contact your system vendor for compatibility confirmation.

Q: What is the warranty on the 100-000000076E?

A: AMD standard processor warranty terms apply. Consult the retailer or your OEM platform vendor for the specific warranty duration and coverage terms applicable to this embedded processor.

Q: Can the 100-000000076E handle real-time transcoding for 100+ IP cameras?

A: With 96 cores and 192 threads, one processor can manage transcoding for 50–100+ streams depending on codec complexity, target bitrate, and frame rate. Pair two processors in a dual-socket platform for guaranteed headroom in enterprise deployments with hundreds of concurrent streams.

Q: Does the 100-000000076E require special cooling?

A: At 360W TDP, this processor works with standard server-class heatsinks and liquid-cooled retention modules. Check with your OEM platform for approved thermal solutions — passive or low-noise active cooling is typically sufficient for surveillance workloads that do not maximize all-core boost constantly.

Q: What memory specification does the 100-000000076E require?

A: The processor supports 12-channel DDR5 at up to 4800 MHz. Your platform must provide DDR5-capable memory slots and a DDR5-compatible motherboard. Check your OEM documentation for supported DIMM types, ECC requirements, and recommended capacity per socket.

Marty Allison
Marty Allison

I spec the 100-000000076E into large-format NVR appliances and edge transcoding clusters. The 96-core / 192-thread layout with 3.7 GHz boost clock is the real differentiator — you get dense compute without the thermal or power scaling penalties of older generation EPYC chips. For surveillance, that means one physical processor handles what used to require two or three separate server nodes.

Technical Highlights:

  • 12-Channel DDR5 with 460.8 GB/s Bandwidth: Video frame processing is memory-bound on multi-codec stacks. 460.8 GB/s per socket eliminates memory as the bottleneck — you can pull raw frames, apply color space conversion, and push re-encoded output without stalling the cores. Compare that to older DDR4-based processors with ~90 GB/s, and you see why this matters for sub-100ms latency analytics.
  • 128 PCIe Gen5 Lanes: A modern surveillance NVR needs multiple 25GbE network adapters, direct-attach NVMe controllers, and sometimes discrete GPUs for inference. 128 lanes of Gen5 (each lane ~4 GB/s) gives you 512 GB/s aggregate I/O — enough to move video without codec work blocking on external bus latency. Gen4 predecessors max out at 256 GB/s, which gets tight on high-throughput deployments.
  • 360W TDP, 3.55 GHz All-Core Boost: The all-core boost clock is conservative — it means you can sustain full 96-core utilization without thermal throttling. In a dual-socket platform pulling 720W sustained, standard server cooling handles it. No liquid nitrogen or exotic solutions needed for a commercial surveillance rack.

Deployment Considerations:

  • This is a socket processor only — you need an OEM platform motherboard compatible with EPYC 7002-series or later. Verify BIOS support before ordering; some legacy boards require firmware updates to recognize the 7552.
  • 12-channel DDR5 is a hard requirement. Older platforms with DDR4 slots will not work. Budget for DDR5 DIMM pricing, which is still higher per-GB than DDR4 in 2024. For surveillance, go with ECC memory — the reliability benefit is worth the small cost delta on a processor this expensive.

Deploy the 100-000000076E in dual-socket appliances targeting 500+ concurrent IP camera streams with on-box H.265 transcoding and real-time object analytics. Single-socket builds work for smaller clusters (50–150 cameras), but dual-socket is where you see the ROI on processor cost versus datacenter footprint savings.

Specifications
Mount Type: Rack
Processor Model: 100-000000076E
Core Count: 96
Thread Count: 192
Base Frequency: 2.40 GHz
Max Boost Frequency: 3.70 GHz
All-Core Boost: 3.55 GHz
Default TDP: 360 W
L3 Cache: 384 MB
DDR5 Channels: 12
Max DDR5 Frequency: 4800 MHz
Per-Socket Memory Bandwidth: 460.8 GB/s
PCIe Gen 5 Lanes: 128
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AMD 100-000000076E Epyc Model 7552 Embedded

$6,039.99

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