Intel Core i3-13100 processor
CM8071505092202 - 5054444518893
Intel Core i3 13100 - 3.4 GHz - 4 cores - 8 threads - 12 MB cache - FCLGA1700 Socket - OEM
- Brand
- Intel
- Product Family
- Core
- Product series
- i3
- Product code
- CM8071505092202
- SKU
- XB421AHP8F08I
- EAN/GTIN
- 5054444518893
- Intel® Core™ i3 i3-13100
- 12 MB Smart Cache LGA 1700
- Processor cores: 4 64-bit
- Maximum internal memory supported by processor: 192 GB DDR4-SDRAM, DDR5-SDRAM
- On-board graphics card Intel UHD Graphics 730
Product Info
Intel® Gaussian & Neural Accelerator
Intel® Gaussian & Neural Accelerator (GNA) is an ultra-low power accelerator block designed to run audio and speed-centric AI workloads. Intel® GNA is designed to run audio based neural networks at ultra-low power, while simultaneously relieving the CPU of this workload.
Intel® Deep Learning Boost (Intel® DL Boost)
A new set of embedded processor technologies designed to accelerate AI deep learning use cases. It extends Intel AVX-512 with a new Vector Neural Network Instruction (VNNI) that significantly increases deep learning inference performance over previous generations.
Intel® Turbo Boost Technology
Intel® Turbo Boost Technology dynamically increases the processor's frequency as needed by taking advantage of thermal and power headroom to give you a burst of speed when you need it, and increased energy efficiency when you don’t.
Intel® Hyper-Threading Technology
Intel® Hyper-Threading Technology (Intel® HT Technology) delivers two processing threads per physical core. Highly threaded applications can get more work done in parallel, completing tasks sooner.
Intel® Standard Manageability (ISM)
Intel® Standard Manageability is the manageability solution for Intel vPro® Essentials platforms and is a subset of Intel® AMT with out-of-band management over Ethernet and Wi-Fi, but no KVM or new life cycle management features.
Intel® Control-Flow Enforcement Technology
CET - Intel Control-flow Enforcement Technology (CET) helps protect against the misuse of legitimate code snippets through return-oriented programming (ROP) control-flow hijacking attacks.