<?xml version="1.0" encoding="utf-8" standalone="yes"?>
<rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom">
  <channel>
    <title>AMD on 琴音的博客</title>
    <link>https://ab10303.github.io/tags/amd/</link>
    <description>Recent content from 琴音的博客</description>
    <generator>Hugo</generator>
    <language>zh-cn</language>
    
    <managingEditor>my@email.ab10303.dpdns.org (琴音)</managingEditor>
    <webMaster>my@email.ab10303.dpdns.org (琴音)</webMaster>
    
    <copyright>本博客所有文章除特别声明外，均采用 BY-NC-SA 许可协议。转载请注明出处！</copyright>
    
    <lastBuildDate>Tue, 07 Apr 2026 21:12:52 +0800</lastBuildDate>
    
    
    <atom:link href="https://ab10303.github.io/tags/amd/index.xml" rel="self" type="application/rss&#43;xml" />
    

    
    

    <item>
      <title>AMD内存超频</title>
      <link>https://ab10303.github.io/post/amdddr5/</link>
      <pubDate>Mon, 06 Apr 2026 20:12:52 &#43;0800</pubDate>
      <author>my@email.ab10303.dpdns.org (琴音)</author>
      <guid>https://ab10303.github.io/post/amdddr5/</guid>
      <description>
        <![CDATA[<h1>AMD内存超频</h1><p>作者：琴音（my@email.ab10303.dpdns.org）</p>
        
          <h2 id="一电压安全范围">
<a class="header-anchor" href="#%e4%b8%80%e7%94%b5%e5%8e%8b%e5%ae%89%e5%85%a8%e8%8c%83%e5%9b%b4"></a>
一、电压安全范围
</h2><h3 id="vddio">
<a class="header-anchor" href="#vddio"></a>
VDDIO
</h3><p>不超过1.45，日常1.4即可（对于电压激进的微星和华硕，建议不超过1.42，日常1.37），具体电压值请通过hwinfo或bios显示的值判断。</p>
        
        <hr><p>本文2026-04-06首发于<a href='https://ab10303.github.io/'>琴音的博客</a>，最后修改于2026-04-07</p>]]>
      </description>
      
        <category>Windows优化</category>
      
    </item>
    
    

    <item>
      <title>AMD 9850X3D 综合设置记录</title>
      <link>https://ab10303.github.io/post/amdyes/</link>
      <pubDate>Sat, 23 May 2026 22:12:52 &#43;0800</pubDate>
      <author>my@email.ab10303.dpdns.org (琴音)</author>
      <guid>https://ab10303.github.io/post/amdyes/</guid>
      <description>
        <![CDATA[<h1>AMD 9850X3D 综合设置记录</h1><p>作者：琴音（my@email.ab10303.dpdns.org）</p>
        
          <h2 id="9850x3d-低温配置">
<a class="header-anchor" href="#9850x3d-%e4%bd%8e%e6%b8%a9%e9%85%8d%e7%bd%ae"></a>
9850X3D 低温配置
</h2><p><img src="https://ab10303.github.io/images/windows/amd9850.webp" alt="image"></p>
<p>VDDIO填1.26v实际为1.28v~1.296v</p>
<p>SOC最终填入0.90500v</p>
<p>VDD和VDDQ填1.37v实际为1.365v~1.38v(多数偏向1.38v)</p>
        
        <hr><p>本文2026-05-23首发于<a href='https://ab10303.github.io/'>琴音的博客</a>，最后修改于2026-04-05</p>]]>
      </description>
      
        <category>Windows优化</category>
      
    </item>
    
    

    <item>
      <title>AMD PBO设置</title>
      <link>https://ab10303.github.io/post/amd/</link>
      <pubDate>Sun, 05 Apr 2026 20:12:52 &#43;0800</pubDate>
      <author>my@email.ab10303.dpdns.org (琴音)</author>
      <guid>https://ab10303.github.io/post/amd/</guid>
      <description>
        <![CDATA[<h1>AMD PBO设置</h1><p>作者：琴音（my@email.ab10303.dpdns.org）</p>
        
          <h2 id="cpu分核负压">
<a class="header-anchor" href="#cpu%e5%88%86%e6%a0%b8%e8%b4%9f%e5%8e%8b"></a>
CPU分核负压
</h2><h3 id="1观测频率电压">
<a class="header-anchor" href="#1%e8%a7%82%e6%b5%8b%e9%a2%91%e7%8e%87%e7%94%b5%e5%8e%8b"></a>
1、观测频率电压
</h3><p>从4700Mhz开始到pbo默认频率，观测金银核心和最差核心的电压差。</p>
<p>以我个人的9700X为例 (<del>有点雷</del></p>
<p>4700Mhz下</p>
<p>金核1.036v 银核1.039v 最差核1.082v，核心差距0.046v</p>
        
        <hr><p>本文2026-04-05首发于<a href='https://ab10303.github.io/'>琴音的博客</a>，最后修改于2026-04-05</p>]]>
      </description>
      
        <category>Windows优化</category>
      
    </item>
    
    

    <item>
      <title>AMD 电源选项设置</title>
      <link>https://ab10303.github.io/post/amdpower/</link>
      <pubDate>Sun, 24 May 2026 11:12:52 &#43;0800</pubDate>
      <author>my@email.ab10303.dpdns.org (琴音)</author>
      <guid>https://ab10303.github.io/post/amdpower/</guid>
      <description>
        <![CDATA[<h1>AMD 电源选项设置</h1><p>作者：琴音（my@email.ab10303.dpdns.org）</p>
        
          <h2 id="创建新的电源计划">
<a class="header-anchor" href="#%e5%88%9b%e5%bb%ba%e6%96%b0%e7%9a%84%e7%94%b5%e6%ba%90%e8%ae%a1%e5%88%92"></a>
创建新的电源计划
</h2><p><img src="https://ab10303.github.io/images/windows/amddy.webp" alt="image"></p>
<h3 id="1-创建一个基于平衡电源计划的计划">
<a class="header-anchor" href="#1-%e5%88%9b%e5%bb%ba%e4%b8%80%e4%b8%aa%e5%9f%ba%e4%ba%8e%e5%b9%b3%e8%a1%a1%e7%94%b5%e6%ba%90%e8%ae%a1%e5%88%92%e7%9a%84%e8%ae%a1%e5%88%92"></a>
1. 创建一个基于平衡电源计划的计划
</h3><p>打开cmd</p>
<div class="highlight"><pre tabindex="0" class="chroma"><code class="language-cmd" data-lang="cmd"><span class="line"><span class="cl">powercfg /list
</span></span></code></pre></div><p><img src="https://ab10303.github.io/images/windows/cmd1.webp" alt="image"></p>
<p>复制 电源方案 GUID: 381b4222-f694-41f0-9685-ff5bb260df2e  (平衡)</p>
<p>创建新的计划</p>
<div class="highlight"><pre tabindex="0" class="chroma"><code class="language-cmd" data-lang="cmd"><span class="line"><span class="cl">powercfg /duplicatescheme 381b4222-f694-41f0-9685-ff5bb260df2e
</span></span></code></pre></div><p><img src="https://ab10303.github.io/images/windows/cmd2.webp" alt="image"></p>
<p>复制新建电源方案 GUID: 08f811f8-925c-48e9-94bb-9c5a60537605</p>
<p>以下直接全部复制粘贴即可（改名＋启用）（name:&ldquo;Game26S1&rdquo;） （”SET GUID2的值“改为新建电源方案）</p>
        
        <hr><p>本文2026-05-24首发于<a href='https://ab10303.github.io/'>琴音的博客</a>，最后修改于2026-04-05</p>]]>
      </description>
      
        <category>Windows优化</category>
      
    </item>
    
  </channel>
</rss>
