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Intel burn test tutorial
Intel burn test tutorial






intel burn test tutorial
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Intel Stratix-10 devices include up to 2.75M equivalent logic elements (LEs), up to 229 Mb of embedded memory, high-performance, variable-precision digital signal processing (DSP) blocks with up to 11,520 18x19 high-performance multipliers, and flexible I/Os for most popular interface standards.

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Intel Stratix-10 series FPGAs use a high-performance architecture that accelerates block-based designs for maximum system performance. These devices along with Intel’s extensive portfolio of IP cores give designers industry-leading development solutions for the next generation of communication tester equipment. These programmable device families give system designers flexibility, performance, integration, and design resources that are not available in any other device solution. The feature-rich architecture of the Intel Stratix-10 provides an excellent solution for communication tester equipment production needs. Once the data comes back from the DUT, the framer sends the data to the analyzer for bit-error rate (BER) testing, histogram, and various other test procedures.

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The generator generates the test pattern, which is sent to the framer for framing and then over to the device under test (DUT). There are three key functional blocks in a typical tester line card: a generator, a framer/media access control (MAC), and an analyzer. The Figure below illustrates the use of Intel® FPGAs and Intel® FPGA Intellectual Property (IP) functions in a multiport network/protocol analyzer. Programmability is both a business and design requirement, making FPGAs the ideal solution for these applications.

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The need to reduce board count through integration of high performanceĪs a result, designers need programmable solutions that provide the flexibility to upgrade and prolong the life of the tester equipment.The constant pressure to upgrade products that support emerging standards, new features, and new functionality.The need to support a variety of standards such as PCI Express* (PCIe-gen3 and PCIe-gen4*) and 10 Gigabit Ethernet (10GbE) well ahead of equipment manufacturers.These products include network/protocol analyzers, spectrum analyzers, bit-error rate testers (BERTs), voice over Internet protocol (VoIP) testers, SONET/SDH testers, and more.ĭesigning communication test products presents a three-fold challenge: Make sure to keep an eye on the temperatures as Linpack generates excessive amount of stress like never seen before.Communication test and monitoring equipment consists of various products in the wireline, wireless, optical, and telecommunication market segments. Nowadays OCCT and Prime95 are decent, and updated alternatives. LinX and IntelBurnTest use outdated Linpack binaries from 2012. This project was created because at the time Prime95 was no longer effective for stress testing like it used to be.

intel burn test tutorial

Linpack uses partial pivoting to assure the accuracy of the results. The generalization is in the number of equations (N) it can solve, which is not limited to 1000. Linpack solves a dense (real*8) system of linear equations (Ax=b), measures the amount of time it takes to factor and solve the system, converts that time into a performance rate, and tests the results for accuracy. Linpack Xtreme is a console front-end with the latest build of Linpack (Intel Math Kernel Library Benchmarks 2018.3.011).

intel burn test tutorial

Linpack tends to crash unstable PCs in a shorter period of time compared to other stress testing applications. Best used to test stability of overclocked PCs.

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Linpack is a benchmark and the most aggressive stress testing software available today.








Intel burn test tutorial