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---
layout: container-breadcrumb
title: Boards
permalink: /boards/
---
<!-- Snippet about the boards in LKFT -->
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<h3>The following boards are used to test Linux kernels in LKFT.</h3>
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<!-- HiSilicon HiKey 6220 Board -->
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<img src="/assets/images/hikey-6220.jpg" alt="Hikey 6220 Image" class="img-responsive" />
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<header>
<h2> HiKey </h2>
<span class="label label-info">ARM 64bit</span>
</header>
<p>The <a href="https://www.96boards.org/product/hikey/">HiKey 620</a>
was the first board to be certified 96Boards Consumer Edition compatible,
1GB and 2GB variants are available from LeMaker. The board is based
around the HiSilicon Kirin 620 SoC and also delivers high performance 3D
graphics support, Wi-Fi, and Bluetooth connectivity, all packed into a
board the size of a credit card.
</p>
<h3>Specs</h3>
<ul>
<li>CPU: ARM® CortexTM-A53 Octa-core 64-bit up to 1.2GHz (ARM v8
instruction set)</li>
<li>RAM: 2GB LPDDR3 SDRAM @ 800MHz</li>
<li>Storage: 8GB eMMC on board storage MicroSD card slot</li>
<li>Ethernet Port: USB2.0 expansion</li>
<li>USB: 2 x USB2.0 Host 1 x USB 2.0 OTG</li>
</ul>
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</div>
<hr>
<!-- TI Beagle Bone X15 -->
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<img src="/assets/images/bb_x15.png" alt="Beagle Bone X15 Image" class="img-responsive" />
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<header>
<h2> X15 </h2>
<span class="label label-info">ARM 32bit</span>
</header>
<p>
<a href="https://beagleboard.org/x15">BeagleBoard-X15</a> is the top
performing, mainline Linux enabled, power-users’ dream board with a core
tailored for every computing task and a highspeed interface for every
connectivity need.
</p>
<h3>Specs</h3>
<ul>
<li>CPU: TI AM5728 2×1.5-GHz ARM® Cortex-A15</li>
<li>RAM: 2GB DDR3 RAM</li>
<li>Storage: 4GB 8-bit eMMC on-board flash storage</li>
<li>Ethernet Port: 2×Gigabit Ethernet</li>
<li>USB: 3 x USB3.0 Host 1 x USB 2.0 OTG</li>
</ul>
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</div>
<hr>
<!-- Arm Juno r2 Board -->
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<img src="/assets/images/juno_r2.jpg" alt="Juno r2.jpg" class="img-responsive" />
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<header>
<h2> Juno r2 </h2>
<span class="label label-info">ARM 64bit</span>
</header>
<p>
The <a
href="https://developer.arm.com/products/system-design/development-boards/juno-development-board">Juno
Arm Development Platform</a> is a software development platform for
Armv8-A which includes the Arm Versatile Express Juno development board
and an Armv8-A reference software port available through Linaro.
</p>
<h3>Specs</h3>
<ul>
<li>CPU: Cortex® A72 and A53 MPCore™ for PCIExpress
development with ARMv8-A</li>
<li>RAM: 8GB 1600MHz DDR</li>
<li>Storage: SATA</li>
<li>Ethernet Port: 1×10/100 Ethernet</li>
<li>USB: 4 x USB2.0 Host</li>
</ul>
</div>
</div>
<hr>
<!-- Dragonboard 410-c Board -->
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<img src="/assets/images/db410c.png" alt="Dragonboard 410c" class="img-responsive" />
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<header>
<h2>DragonBoard™ 410c</h2>
<span class="label label-info">ARM 64bit</span>
</header>
<p>
The <a
href="https://www.96boards.org/product/dragonboard410c/">DragonBoard
410c</a>, a product of Arrow Electronics, is the development board based
on the mid-tier Qualcomm® Snapdragon™ 410E processor. It features
advanced processing power, Wi-Fi, Bluetooth connectivity, and GPS, all
packed into a board the size of a credit card.
</p>
<h3>Specs</h3>
<ul>
<li>CPU: ARM Cortex-A53 Quad-core up to 1.2 GHz per core</li>
<li>RAM: 1GB LPDDR3 SDRAM @ 533MHz</li>
<li>Storage: 8GB eMMC 4.51 on board storage and MicroSD card slot</li>
<li>Ethernet Port: USB2.0 expansion</li>
<li>USB: 2 x USB 2.0 Host 1 x USB 2.0 OTG</li>
</ul>
</div>
</div>
<hr>
<!-- SynQuacer Developer Box -->
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<img src="/assets/images/developerbox-front-sd.png" alt="Socionext Developerbox SynQuacer" class="img-responsive" />
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<header>
<h2>SynQuacer™ Developerbox</h2>
<span class="label label-info">KVM ARM 64bit</span>
<span class="label label-info">KVM ARM 32bit</span>
</header>
<p>
<a href="https://www.96boards.org/product/developerbox/">SynQuacer™
E-Series</a> is a software development environment compliant with
Linaro’s 96Boards open hardware specification. This has been built
jointly by Socionext Inc., Linaro and GIGABYTE. It contains one “SC2A11”.
“SC2A11” is a multi-core chip with 24 cores of ARM® Cortex-A53.
</p><p>
This system is used to host 2GB and 1GB QEMU/KVM hosts running ARM on
ARM.
</p>
</div>
</div>
<hr>
<!-- QEMU -->
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<img src="/assets/images/Qemu-logo.png" alt="QEMU logo" class="img-responsive" />
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<header>
<h2>QEMU</h2>
<span class="label label-info">KVM x86 64bit</span>
<span class="label label-info">KVM x86 32bit</span>
</header>
<p>
All tests are also run under KVM using <a
href="https://www.qemu.org/">QEMU</a> on all supported architectures.
QEMU is nice for troubleshooting without needing local hardware, as well
as providing another data set to help determine when problems are board
specific or architecture specific.
</p>
</div>
</div>
<hr>
<!-- x86_64 Board -->
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<img src="/assets/images/x86.png" alt="x86 Logo" class="img-responsive" />
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<header>
<h2>x86_64 Server</h2>
<span class="label label-info">x86 64bit</span>
<span class="label label-info">x86 32bit</span>
</header>
<p>
Tests are also run in both 64bit and 32bit mode on a typical x86_64
server for the purposes of providing a baseline for comparison.
</p>
</div>
</div>