<?xml version="1.0"?>
<feed xmlns="http://www.w3.org/2005/Atom" xml:lang="zh">
	<id>https://md5.pw/api.php?action=feedcontributions&amp;feedformat=atom&amp;user=Sdo888</id>
	<title>md5.pw - 用户贡献 [zh]</title>
	<link rel="self" type="application/atom+xml" href="https://md5.pw/api.php?action=feedcontributions&amp;feedformat=atom&amp;user=Sdo888"/>
	<link rel="alternate" type="text/html" href="https://md5.pw/index.php?title=Special:%E7%94%A8%E6%88%B7%E8%B4%A1%E7%8C%AE/Sdo888"/>
	<updated>2026-10-11T00:34:17Z</updated>
	<subtitle>用户贡献</subtitle>
	<generator>MediaWiki 1.43.9</generator>
	<entry>
		<id>https://md5.pw/index.php?title=BandwagonHOST_%E6%90%AC%E7%93%A6%E5%B7%A5_SPECIAL_20G_KVM_PROMO_V5_-_CN2_GIA_ECOMMERCE_%E6%9C%BA%E6%88%BF%E7%BD%91%E7%BB%9C%E4%B8%8E%E7%A1%AC%E4%BB%B6%E7%BB%BC%E5%90%88%E6%A8%AA%E5%90%91%E8%AF%84%E6%B5%8B&amp;diff=3599</id>
		<title>BandwagonHOST 搬瓦工 SPECIAL 20G KVM PROMO V5 - CN2 GIA ECOMMERCE 机房网络与硬件综合横向评测</title>
		<link rel="alternate" type="text/html" href="https://md5.pw/index.php?title=BandwagonHOST_%E6%90%AC%E7%93%A6%E5%B7%A5_SPECIAL_20G_KVM_PROMO_V5_-_CN2_GIA_ECOMMERCE_%E6%9C%BA%E6%88%BF%E7%BD%91%E7%BB%9C%E4%B8%8E%E7%A1%AC%E4%BB%B6%E7%BB%BC%E5%90%88%E6%A8%AA%E5%90%91%E8%AF%84%E6%B5%8B&amp;diff=3599"/>
		<updated>2026-09-22T04:14:43Z</updated>

		<summary type="html">&lt;p&gt;Sdo888：​创建页面，内容为“= SPECIAL 20G KVM PROMO V5 - CN2 GIA ECOMMERCE 机房网络与硬件综合横向评测 =  &amp;#039;&amp;#039;&amp;#039;测试套餐&amp;#039;&amp;#039;&amp;#039;：SPECIAL 20G KVM PROMO V5 - CN2 GIA ECOMMERCE &amp;#039;&amp;#039;&amp;#039;配置规格&amp;#039;&amp;#039;&amp;#039;：2 核 CPU / 1.0 GB 内存 / 19 GB SSD 硬盘 &amp;#039;&amp;#039;&amp;#039;覆盖机房&amp;#039;&amp;#039;&amp;#039;：洛杉矶 DC6 [USCA_6]、圣何塞 SJC5 [USCA_SJC5]、温哥华 CABC_6 [CABC_6]、纽约 USNY_8 [USNY_8]、大阪 JPOS_1 [JPOS_1]、东京 JPTY_1 [JPTY_1]  == 评测概览与选机建议 == * &amp;#039;&amp;#039;&amp;#039;三网均衡与建站首选…”&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;= SPECIAL 20G KVM PROMO V5 - CN2 GIA ECOMMERCE 机房网络与硬件综合横向评测 =&lt;br /&gt;
&lt;br /&gt;
&#039;&#039;&#039;测试套餐&#039;&#039;&#039;：SPECIAL 20G KVM PROMO V5 - CN2 GIA ECOMMERCE&lt;br /&gt;
&#039;&#039;&#039;配置规格&#039;&#039;&#039;：2 核 CPU / 1.0 GB 内存 / 19 GB SSD 硬盘&lt;br /&gt;
&#039;&#039;&#039;覆盖机房&#039;&#039;&#039;：洛杉矶 DC6 [USCA_6]、圣何塞 SJC5 [USCA_SJC5]、温哥华 CABC_6 [CABC_6]、纽约 USNY_8 [USNY_8]、大阪 JPOS_1 [JPOS_1]、东京 JPTY_1 [JPTY_1]&lt;br /&gt;
&lt;br /&gt;
== 评测概览与选机建议 ==&lt;br /&gt;
* &#039;&#039;&#039;三网均衡与建站首选&#039;&#039;&#039;：&#039;&#039;&#039;洛杉矶 DC6 [USCA_6]&#039;&#039;&#039; 与 &#039;&#039;&#039;圣何塞 SJC5 [USCA_SJC5]&#039;&#039;&#039;，三网全优化链路（CN2 GIA-E + CMIN2 + 9929/CUP），全国零丢包率极高，单线程均可轰至 300~390Mbps；SJC5 搭载的 SierraForest 处理器性能（单核 828）较 DC6（单核 599）更胜一筹。&lt;br /&gt;
* &#039;&#039;&#039;算力巅峰与全能兼顾&#039;&#039;&#039;：&#039;&#039;&#039;温哥华 CABC_6 [CABC_6]&#039;&#039;&#039; 搭载顶配 AMD EPYC-Genoa（GB5 单核 1165，硬件总分 38604 全场第一），三网同样走 CN2 GIA 优化回程，单线程实测破 325Mbps，是追求强劲算力与高质量建站的终极选择。&lt;br /&gt;
* &#039;&#039;&#039;美东跨洋外贸主力&#039;&#039;&#039;：&#039;&#039;&#039;纽约 USNY_8 [USNY_8]&#039;&#039;&#039; 同样搭载 AMD EPYC-Genoa（GB5 单核 1137），欧洲互联 70-90ms 极佳，回国配备 CN2 GIA + 9929 + CMIN2 顶级优化，实现全网零丢包与 200Mbps+ 单线程满速。&lt;br /&gt;
* &#039;&#039;&#039;亚太超低延迟取舍&#039;&#039;&#039;：&#039;&#039;&#039;大阪 JPOS_1 [JPOS_1]&#039;&#039;&#039; 走 Softbank 软银优化，联通与移动表现惊艳（单线程突破 350Mbps，延迟 40-70ms），但 CPU 为老款 Cascadelake（GB5 单核仅 478）；&#039;&#039;&#039;东京 JPTY_1 [JPTY_1]&#039;&#039;&#039; 虽有 Genoa 架构与 1ms 本地互联，但回国走普通直连易出现拥塞与重传，亚太优先推荐大阪。&lt;br /&gt;
&lt;br /&gt;
=== 6 大机房核心参数与硬件性能横向速查表 ===&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot; style=&amp;quot;text-align:center; width:100%; font-size:92%;&amp;quot;&lt;br /&gt;
! 机房代号 !! 处理器型号 !! Geekbench 5 (单核/多核) !! NQ硬件加权总分 !! 三网回程方案 !! 上海平均延迟 !! 单线程测速峰值 !! 推荐指数&lt;br /&gt;
|-&lt;br /&gt;
| &#039;&#039;&#039;CABC_6&#039;&#039;&#039; || AMD EPYC-Genoa (2.94GHz) || &#039;&#039;&#039;1165 / 2111&#039;&#039;&#039; || &#039;&#039;&#039;38604&#039;&#039;&#039; || 三网全线 CN2 GIA || 150ms || 325.6 Mbps (电信) || ★★★★★&lt;br /&gt;
|-&lt;br /&gt;
| &#039;&#039;&#039;USNY_8&#039;&#039;&#039; || AMD EPYC-Genoa (2.94GHz) || &#039;&#039;&#039;1137 / 2073&#039;&#039;&#039; || &#039;&#039;&#039;38086&#039;&#039;&#039; || CN2 GIA + 9929 + CMIN2 || 185ms || 246.2 Mbps (电信) || ★★★★☆&lt;br /&gt;
|-&lt;br /&gt;
| &#039;&#039;&#039;USCA_SJC5&#039;&#039;&#039; || Intel Xeon (SierraForest) || 828 / 1558 || 28468 || 三网全线 CN2 GIA || 128ms || &#039;&#039;&#039;393.4 Mbps&#039;&#039;&#039; (电信) || ★★★★★&lt;br /&gt;
|-&lt;br /&gt;
| &#039;&#039;&#039;JPTY_1&#039;&#039;&#039; || AMD EPYC-Genoa (2.44GHz) || 804 / 1455 || 28179 || 普通直连 (China Direct) || 36ms || 418.0 Mbps (移动) || ★★★☆☆&lt;br /&gt;
|-&lt;br /&gt;
| &#039;&#039;&#039;USCA_6&#039;&#039;&#039; || Intel Xeon (SierraForest) || 599 / 1135 || 21050 || CN2 GIA + 9929 + CMIN2 || 128ms || 372.6 Mbps (电信) || ★★★★★&lt;br /&gt;
|-&lt;br /&gt;
| &#039;&#039;&#039;JPOS_1&#039;&#039;&#039; || Intel Xeon (Cascadelake) || 478 / 841 || 17265 || 联通 4837 / 移动 CMI / 电信 163 || 40ms || 357.8 Mbps (联通) || ★★★★☆&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
== 美洲机房深度评测 ==&lt;br /&gt;
&lt;br /&gt;
=== 1️⃣ 洛杉矶 DC6 [USCA_6] (DC6 CT CN2GIA-E, CMIN2, CUP) ===&lt;br /&gt;
* &#039;&#039;&#039;硬件测试 (NodeQuality 实测)&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;CPU 性能&#039;&#039;&#039;：搭载 Intel Xeon (SierraForest) 步进 0（2核2线程，2.70GHz），Geekbench 5 单核 &#039;&#039;&#039;599&#039;&#039;&#039; / 多核 &#039;&#039;&#039;1135&#039;&#039;&#039;，Sysbench 单线程 803.70 / 多线程 1546.86。&lt;br /&gt;
** &#039;&#039;&#039;内存与磁盘 I/O&#039;&#039;&#039;：Sysbench 内存读取 17858 MB/s、写入 15992 MB/s、延迟 198ns；FIO 4K 随机读 13.8 MB/s (3.5k IOPS)、写 16.4 MB/s (4.2k IOPS)，顺序读 740 MB/s、写 1158 MB/s；NQ 硬件加权总分 &#039;&#039;&#039;21050&#039;&#039;&#039;。&lt;br /&gt;
* &#039;&#039;&#039;线路定位与路由特性&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;三网普通 IPv4 回程&#039;&#039;&#039;：旗舰级优化阵容。电信全境走 &#039;&#039;&#039;CN2 GIA&#039;&#039;&#039;（上海 128ms，全国 135-175ms）；联通绝大部分省份走 &#039;&#039;&#039;10099→9929&#039;&#039;&#039;（部分走 CN2 GIA，133-185ms）；移动全线走高端 &#039;&#039;&#039;CMIN2&#039;&#039;&#039;（上海 129ms，普遍 130-170ms）。87 个监控节点 0 丢包。&lt;br /&gt;
** &#039;&#039;&#039;IPv4 大包回程抗压&#039;&#039;&#039;：大包测试下零重传节点达 91 个；电信 CN2 GIA、联通 9929 及移动 CMIN2 在几乎所有省份均保持 0% 重传，承载冗余极高。&lt;br /&gt;
** &#039;&#039;&#039;教育网回程 (CERNET)&#039;&#039;&#039;：全线走 &#039;&#039;&#039;CTGGIA&#039;&#039;&#039; 优化链路回国，上海低至 128ms，江浙 134-137ms，京津冀 147-157ms，28 个节点 0 丢包。&lt;br /&gt;
* &#039;&#039;&#039;国内三网单线程测速实测&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;电信&#039;&#039;&#039;：上海回程高达 &#039;&#039;&#039;372.6 Mbps&#039;&#039;&#039;（0% 重传，148ms）、北京 &#039;&#039;&#039;327.9 Mbps&#039;&#039;&#039;（0% 重传，164ms）、广东 &#039;&#039;&#039;289.2 Mbps&#039;&#039;&#039;（0% 重传，179ms），单线程全线拉满且零重传。&lt;br /&gt;
** &#039;&#039;&#039;联通&#039;&#039;&#039;：上海回程高达 &#039;&#039;&#039;355.0 Mbps&#039;&#039;&#039;（0% 重传，153ms）、北京 &#039;&#039;&#039;309.8 Mbps&#039;&#039;&#039;（0.01% 重传，172ms）、广东 &#039;&#039;&#039;293.9 Mbps&#039;&#039;&#039;（0% 重传，178ms）。&lt;br /&gt;
** &#039;&#039;&#039;移动&#039;&#039;&#039;：上海 &#039;&#039;&#039;249.0 Mbps&#039;&#039;&#039;（0.27% 重传，154ms）、广东 &#039;&#039;&#039;158.8 Mbps&#039;&#039;&#039;（0.63% 重传，174ms）、北京 &#039;&#039;&#039;120.5 Mbps&#039;&#039;&#039;（1.21% 重传，159ms）。&lt;br /&gt;
* &#039;&#039;&#039;国际互联与常用服务&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;本地网络&#039;&#039;&#039;：美西（洛杉矶本土）延迟低至 &#039;&#039;&#039;1ms&#039;&#039;&#039;，达拉斯 31ms，芝加哥 55ms，香港 139ms，日本 107ms。&lt;br /&gt;
** &#039;&#039;&#039;API &amp;amp; 服务响应&#039;&#039;&#039;：Google、Amazon、Apple 响应在 0.5ms - 1.1ms；OpenAI / ChatGPT / Claude 响应在 1.2ms - 1.6ms；Cloudflare 边缘仅 1.39ms。&lt;br /&gt;
* &#039;&#039;&#039;综合结论&#039;&#039;&#039;：搬瓦工最具代表性的招牌机房，三网高端精品网齐备（CN2 GIA + 9929 + CMIN2），电信与联通单线程普遍突破 300~370Mbps 且 0 重传；虽硬件算力在六大机房中不占优势，但极佳的网络 QoS 使其依然稳坐生产级主力建站的首选交椅。&lt;br /&gt;
&lt;br /&gt;
[https://nodequality.com/r/6HVXlMtQKConF7jM8rIbCu183M4TjDN6 洛杉矶 DC6 USCA_6 NodeQuality 链接]&lt;br /&gt;
&lt;br /&gt;
[https://tcpquality.ibsgss.uk/r/eb2tK10xc0 洛杉矶 DC6 USCA_6 TQ 报告链接]&lt;br /&gt;
&lt;br /&gt;
=== 2️⃣ 圣何塞 SJC5 [USCA_SJC5] (CT CN2GIA-E, CMIN2, CUP) ===&lt;br /&gt;
* &#039;&#039;&#039;硬件测试 (NodeQuality 实测)&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;CPU 性能&#039;&#039;&#039;：搭载 Intel Xeon (SierraForest) 步进 0（2核2线程，2.60GHz），Geekbench 5 单核 &#039;&#039;&#039;828&#039;&#039;&#039; / 多核 &#039;&#039;&#039;1558&#039;&#039;&#039;（明显优于 DC6），Sysbench 单线程 1025.46 / 多线程 1965.40。&lt;br /&gt;
** &#039;&#039;&#039;内存与磁盘 I/O&#039;&#039;&#039;：Sysbench 内存读取 23432 MB/s、写入 18215 MB/s、延迟 160ns；FIO 4K 随机读 23.7 MB/s (6.1k IOPS)、写 27.3 MB/s (7.0k IOPS)，顺序读高达 1743 MB/s、写 1767 MB/s；NQ 硬件加权总分 &#039;&#039;&#039;28468&#039;&#039;&#039;。&lt;br /&gt;
* &#039;&#039;&#039;线路定位与路由特性&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;三网普通 IPv4 回程&#039;&#039;&#039;：三网全线强制走 &#039;&#039;&#039;CN2 GIA&#039;&#039;&#039; 高端路由回国；全国 93 个测试节点中 91 个达到零丢包；上海回程延迟低至 &#039;&#039;&#039;128-135ms&#039;&#039;&#039;，江浙沪 133-146ms，北京/华北 150-170ms，华南 165-176ms。&lt;br /&gt;
** &#039;&#039;&#039;IPv4 大包回程抗压&#039;&#039;&#039;：大包抗压表现优越，零重传节点达 90 个；三网大部分省份均维持 CN2 GIA 链路，抗压稳定性极佳。&lt;br /&gt;
** &#039;&#039;&#039;教育网回程 (CERNET)&#039;&#039;&#039;：教育网绝大多数省份走 &#039;&#039;&#039;CTGGIA&#039;&#039;&#039; 链路优化回程，29 个省份达成 0 丢包；上海实测延迟低至 &#039;&#039;&#039;127ms&#039;&#039;&#039;，江浙鲁豫平均延迟仅 135-165ms。&lt;br /&gt;
* &#039;&#039;&#039;国内三网单线程测速实测&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;电信&#039;&#039;&#039;：上海回程飙至 &#039;&#039;&#039;393.4 Mbps&#039;&#039;&#039;（0% 重传，142ms）、北京高达 &#039;&#039;&#039;349.3 Mbps&#039;&#039;&#039;（0% 重传，157ms）、广东达到 &#039;&#039;&#039;302.5 Mbps&#039;&#039;&#039;（0% 重传，175ms），全线突破 300Mbps 且 0 重传。&lt;br /&gt;
** &#039;&#039;&#039;移动&#039;&#039;&#039;：上海 &#039;&#039;&#039;363.8 Mbps&#039;&#039;&#039;（0% 重传，151ms）、北京 &#039;&#039;&#039;313.1 Mbps&#039;&#039;&#039;（0% 重传，170ms）、广东 &#039;&#039;&#039;294.0 Mbps&#039;&#039;&#039;（0% 重传，179ms），移动吞吐全场最强。&lt;br /&gt;
** &#039;&#039;&#039;联通&#039;&#039;&#039;：北京 &#039;&#039;&#039;339.9 Mbps&#039;&#039;&#039;（0% 重传，162ms）、广东 &#039;&#039;&#039;278.4 Mbps&#039;&#039;&#039;（0% 重传，187ms）、上海 &#039;&#039;&#039;165.6 Mbps&#039;&#039;&#039;（1.24% 重传，156ms）。&lt;br /&gt;
* &#039;&#039;&#039;国际互联与常用服务&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;北美本地网络&#039;&#039;&#039;：美西洛杉矶仅 &#039;&#039;&#039;12-13ms&#039;&#039;&#039;，达拉斯 43ms，芝加哥 49ms，日本 105ms。&lt;br /&gt;
** &#039;&#039;&#039;API 响应&#039;&#039;&#039;：OpenAI / ChatGPT / Claude / Google 等核心服务响应延迟在 &#039;&#039;&#039;1.1ms - 2.9ms&#039;&#039;&#039; 之间。&lt;br /&gt;
* &#039;&#039;&#039;综合结论&#039;&#039;&#039;：美西综合体验极度亮眼的节点，硬件跑分（GB5 828分）与磁盘 I/O 相比 DC6 均有可感知的领先；三网全走 CN2 GIA，国内单线程测速甚至飙出近 400Mbps 的顶格表现，兼具高硬件素质与网络优势。&lt;br /&gt;
&lt;br /&gt;
[https://nodequality.com/r/dr6028cBgOWDlmlAI16UlSZ5xlFTDR6q 圣何塞 SJC5 NodeQuality 链接]&lt;br /&gt;
&lt;br /&gt;
[https://tcpquality.ibsgss.uk/r/pGM07RU7Rv 圣何塞 SJC5 TQ 报告链接]&lt;br /&gt;
&lt;br /&gt;
=== 3️⃣ 温哥华 CABC_6 [CABC_6] (AMD-F+NVMe, CN2GIA-E, CMIN2, CUP) ===&lt;br /&gt;
* &#039;&#039;&#039;硬件测试 (NodeQuality 实测)&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;CPU 性能&#039;&#039;&#039;：搭载 AMD EPYC-Genoa Processor 步进 0（2核2线程，2.94GHz），Geekbench 5 单核 &#039;&#039;&#039;1165&#039;&#039;&#039; / 多核 &#039;&#039;&#039;2111&#039;&#039;&#039;（全场单多核最高分），Sysbench 单线程高达 4269.48 / 多线程 8193.13。&lt;br /&gt;
** &#039;&#039;&#039;内存与磁盘 I/O&#039;&#039;&#039;：Sysbench 内存读取高达 53565 MB/s、写入 29588 MB/s、延迟仅 135ns；FIO 4K 随机写 43.7 MB/s (11k IOPS)，顺序读 799 MB/s、写 3465 MB/s；NQ 硬件加权总分 &#039;&#039;&#039;38604&#039;&#039;&#039;（全场第一，硬件性能天花板）。&lt;br /&gt;
* &#039;&#039;&#039;线路定位与路由特性&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;三网普通 IPv4 回程&#039;&#039;&#039;：三网绝大部分省份走 &#039;&#039;&#039;CN2 GIA&#039;&#039;&#039; 回国（全国 91 个节点零丢包）；上海最低 150-160ms，华东/华北主流在 160-185ms，华南/西南约 190-210ms。&lt;br /&gt;
** &#039;&#039;&#039;IPv4 大包回程抗压&#039;&#039;&#039;：大包测试下零重传节点达 89 个；三网大部分省份保持 CN2 GIA，仅个别省份联通/移动走 163 或 4837 兜底。&lt;br /&gt;
** &#039;&#039;&#039;教育网回程 (CERNET)&#039;&#039;&#039;：全线通过 &#039;&#039;&#039;CTGGIA&#039;&#039;&#039; 优化回程，29 个省份 0 丢包，上海仅 149ms、浙江 158ms、江苏 157ms。&lt;br /&gt;
* &#039;&#039;&#039;国内三网单线程测速实测&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;电信&#039;&#039;&#039;：上海回程高达 &#039;&#039;&#039;325.6 Mbps&#039;&#039;&#039;（0% 重传，164ms）、北京 &#039;&#039;&#039;284.1 Mbps&#039;&#039;&#039;（0% 重传，183ms）、广东 &#039;&#039;&#039;259.5 Mbps&#039;&#039;&#039;（0% 重传，196ms）。&lt;br /&gt;
** &#039;&#039;&#039;联通&#039;&#039;&#039;：北京 &#039;&#039;&#039;266.9 Mbps&#039;&#039;&#039;（0% 重传，192ms）、广东 &#039;&#039;&#039;244.8 Mbps&#039;&#039;&#039;（0% 重传）、上海 &#039;&#039;&#039;225.3 Mbps&#039;&#039;&#039;（0.32% 重传，180ms）。&lt;br /&gt;
** &#039;&#039;&#039;移动&#039;&#039;&#039;：上海 &#039;&#039;&#039;303.4 Mbps&#039;&#039;&#039;（0% 重传，174ms）、广东 &#039;&#039;&#039;246.6 Mbps&#039;&#039;&#039;（0% 重传，202ms）、北京 &#039;&#039;&#039;119.2 Mbps&#039;&#039;&#039;（1.22% 重传，218ms）。&lt;br /&gt;
* &#039;&#039;&#039;国际互联与常用服务&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;北美本地网络&#039;&#039;&#039;：美西（洛杉矶）30ms，美东（芝加哥）52ms，加拿大蒙特利尔 59ms，日本 108ms。&lt;br /&gt;
** &#039;&#039;&#039;API 响应&#039;&#039;&#039;：OpenAI / ChatGPT / Claude / Google 等服务均处于 &#039;&#039;&#039;0.7ms - 1.2ms&#039;&#039;&#039; 极速响应级别。&lt;br /&gt;
* &#039;&#039;&#039;综合结论&#039;&#039;&#039;：全场算力怪兽，EPYC-Genoa 高频核心跑出 GB5 单核 1165 与多核 2111 的统治级跑分，内存带宽超过 53000 MB/s。虽然因加拿大地理位置绝对延迟比加州高 20-30ms，但三网 CN2 GIA 回程质量极高，单线程全线轰出 250~325Mbps 且 0% 重传，非常适合计算密集型、多任务编译以及高性能建站需求。&lt;br /&gt;
&lt;br /&gt;
[https://nodequality.com/r/UcWnxIlvnoO1QV0spkzPYgbjbGEMS7MM 温哥华 CABC_6 NodeQuality 链接]&lt;br /&gt;
&lt;br /&gt;
[https://tcpquality.ibsgss.uk/r/bJogJyCgNp 温哥华 CABC_6 TQ 报告链接]&lt;br /&gt;
&lt;br /&gt;
=== 4️⃣ 纽约 USNY_8 [USNY_8] (Coresite NY1 CN2GIA-E, CMIN2, CUP) ===&lt;br /&gt;
* &#039;&#039;&#039;硬件测试 (NodeQuality 实测)&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;CPU 性能&#039;&#039;&#039;：搭载 AMD EPYC-Genoa Processor 步进 0（2核2线程，2.94GHz），Geekbench 5 单核 &#039;&#039;&#039;1137&#039;&#039;&#039; / 多核 &#039;&#039;&#039;2073&#039;&#039;&#039;，Sysbench 单线程 4113.72 / 多线程 7869.41，与温哥华同属顶尖水准。&lt;br /&gt;
** &#039;&#039;&#039;内存与磁盘 I/O&#039;&#039;&#039;：Sysbench 内存读取 53160 MB/s、写入 29941 MB/s、延迟 139ns；FIO 4K 随机写 38.2 MB/s (9.8k IOPS)，顺序读高达 1718 MB/s、写 2938 MB/s；NQ 硬件加权总分 &#039;&#039;&#039;38086&#039;&#039;&#039;。&lt;br /&gt;
* &#039;&#039;&#039;线路定位与路由特性&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;三网普通 IPv4 回程&#039;&#039;&#039;：93 个监控节点达成 &#039;&#039;&#039;全网 0 丢包&#039;&#039;&#039;！电信走 &#039;&#039;&#039;CN2 GIA&#039;&#039;&#039;（185-226ms），联通走 &#039;&#039;&#039;10099→9929&#039;&#039;&#039;（192-246ms），移动主流走 &#039;&#039;&#039;CMIN2&#039;&#039;&#039;（185-248ms）。&lt;br /&gt;
** &#039;&#039;&#039;IPv4 大包回程抗压&#039;&#039;&#039;：大包抗压实测中，92 个节点实现零重传；电信 CN2 GIA 与联通 9929 表现极致稳定（全境 0% 重传）；移动 CMIN2 除海南外全省份 0% 重传。&lt;br /&gt;
** &#039;&#039;&#039;教育网回程 (CERNET)&#039;&#039;&#039;：教育网绝大多数省份强制走 &#039;&#039;&#039;10099→9929 联通高端网&#039;&#039;&#039;，28 个节点零丢包，上海 189ms、江浙皖 193-196ms。&lt;br /&gt;
* &#039;&#039;&#039;国内三网单线程测速实测&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;电信&#039;&#039;&#039;：上海回程高达 &#039;&#039;&#039;246.2 Mbps&#039;&#039;&#039;（0% 重传，203ms）、北京 &#039;&#039;&#039;225.0 Mbps&#039;&#039;&#039;（0% 重传，218ms）、广东 &#039;&#039;&#039;219.8 Mbps&#039;&#039;&#039;（0% 重传，221ms）。&lt;br /&gt;
** &#039;&#039;&#039;联通&#039;&#039;&#039;：上海 &#039;&#039;&#039;224.2 Mbps&#039;&#039;&#039;（0.05% 重传，209ms）、北京 &#039;&#039;&#039;199.9 Mbps&#039;&#039;&#039;（0.02% 重传，231ms）、广东 &#039;&#039;&#039;149.5 Mbps&#039;&#039;&#039;（0.09% 重传，263ms）。&lt;br /&gt;
** &#039;&#039;&#039;移动&#039;&#039;&#039;：上海 &#039;&#039;&#039;240.8 Mbps&#039;&#039;&#039;（0% 重传，206ms）、广东 &#039;&#039;&#039;203.4 Mbps&#039;&#039;&#039;（0% 重传，229ms）、北京 &#039;&#039;&#039;187.6 Mbps&#039;&#039;&#039;（0% 重传，248ms）。&lt;br /&gt;
* &#039;&#039;&#039;国际互联与常用服务&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;北美与跨大西洋优势&#039;&#039;&#039;：加拿大（蒙特利尔）仅 &#039;&#039;&#039;8ms&#039;&#039;&#039;，芝加哥 18ms；英国（伦敦）仅 &#039;&#039;&#039;71-77ms&#039;&#039;&#039;，荷兰 76ms，德国 85-90ms。&lt;br /&gt;
** &#039;&#039;&#039;API 响应&#039;&#039;&#039;：ChatGPT、Claude、Google 响应在 0.9ms - 1.8ms 级别；Telegram DC 互联 75ms。&lt;br /&gt;
* &#039;&#039;&#039;综合结论&#039;&#039;&#039;：美东机房中不可多得的性能与网络兼备之作，同样搭载强悍的 EPYC-Genoa 处理器（GB5 单核 1137 分）。虽然物理延迟偏高（185~240ms），但通过顶级的三网优化（CN2 GIA + 9929 + CMIN2），实现了全网 0 丢包与 200Mbps+ 的稳定单线程吞吐。欧洲互联延迟极低，特别适合欧美跨洋外贸兼国内维护。&lt;br /&gt;
&lt;br /&gt;
[https://nodequality.com/r/VJURb4e75q9sDkEBmuHZDT0wVTbxEFYQ 纽约 USNY_8 NodeQuality 链接]&lt;br /&gt;
&lt;br /&gt;
[https://tcpquality.ibsgss.uk/r/xZTS5bAHKl 纽约 USNY_8 TQ 报告链接]&lt;br /&gt;
&lt;br /&gt;
== 亚太机房深度评测 ==&lt;br /&gt;
&lt;br /&gt;
=== 5️⃣ 大阪 JPOS_1 [JPOS_1] (Softbank) ===&lt;br /&gt;
* &#039;&#039;&#039;硬件测试 (NodeQuality 实测)&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;CPU 性能&#039;&#039;&#039;：搭载 Intel Xeon (Cascadelake) 步进 5（2核2线程，2.70GHz），Geekbench 5 单核 &#039;&#039;&#039;478&#039;&#039;&#039; / 多核 &#039;&#039;&#039;841&#039;&#039;&#039;，Sysbench 单线程 579.06 / 多线程 1228.78。&lt;br /&gt;
** &#039;&#039;&#039;内存与磁盘 I/O&#039;&#039;&#039;：Sysbench 内存读取 15248 MB/s、写入 13268 MB/s、延迟 235ns；FIO 4K 随机读 10.9 MB/s (2.8k IOPS)、写 10.7 MB/s (2.7k IOPS)，顺序读 930 MB/s、写 904 MB/s；NQ 硬件加权总分 &#039;&#039;&#039;17265&#039;&#039;&#039;。&lt;br /&gt;
* &#039;&#039;&#039;线路定位与路由特性&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;三网普通 IPv4 回程&#039;&#039;&#039;：物理距离短，江浙沪仅 &#039;&#039;&#039;40-54ms&#039;&#039;&#039;，北方各省 &#039;&#039;&#039;60-75ms&#039;&#039;&#039;。回程策略分工：联通全线走 &#039;&#039;&#039;4837 骨干直连&#039;&#039;&#039;；移动全线走 &#039;&#039;&#039;CMI 直连&#039;&#039;&#039;；电信走 &#039;&#039;&#039;163 骨干网&#039;&#039;&#039;。&lt;br /&gt;
** &#039;&#039;&#039;IPv4 大包回程抗压&#039;&#039;&#039;：大包零重传节点为 71 个；联通 4837 与移动 CMI 稳定性出众（移动除广东 4% 外其余全省 0% 重传）；电信 163 骨干网伴随 4-14% 的重传。&lt;br /&gt;
** &#039;&#039;&#039;教育网回程 (CERNET)&#039;&#039;&#039;：通过 &#039;&#039;&#039;4837 及 CNNIC&#039;&#039;&#039; 链路回国，绝大多数省份延迟在 97-135ms 之间。&lt;br /&gt;
* &#039;&#039;&#039;国内三网单线程测速实测&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;联通&#039;&#039;&#039;：发挥出色，上海回程飙至 &#039;&#039;&#039;357.8 Mbps&#039;&#039;&#039;（0% 重传，回程 94ms）；北京达到 &#039;&#039;&#039;139.0 Mbps&#039;&#039;&#039;（0.94% 重传，110ms）；广东达到 &#039;&#039;&#039;82.9 Mbps&#039;&#039;&#039;（3.77% 重传，136ms）。&lt;br /&gt;
** &#039;&#039;&#039;移动&#039;&#039;&#039;：极为稳健，北京高达 &#039;&#039;&#039;231.8 Mbps&#039;&#039;&#039;（0% 重传，128ms）；广东 &#039;&#039;&#039;185.2 Mbps&#039;&#039;&#039;（0% 重传，118ms）；上海 &#039;&#039;&#039;158.9 Mbps&#039;&#039;&#039;（0.02% 重传，124ms）。&lt;br /&gt;
** &#039;&#039;&#039;电信&#039;&#039;&#039;：上海 &#039;&#039;&#039;149.4 Mbps&#039;&#039;&#039;（1.77% 重传，92ms）；北京 &#039;&#039;&#039;107.2 Mbps&#039;&#039;&#039;（1.92% 重传，117ms）；广东 &#039;&#039;&#039;72.4 Mbps&#039;&#039;&#039;（4.97% 重传，87ms）。&lt;br /&gt;
* &#039;&#039;&#039;国际互联与常用服务&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;亚太超低延迟&#039;&#039;&#039;：日本本土仅 &#039;&#039;&#039;9-10ms&#039;&#039;&#039;；美西 119ms；本地 API（ChatGPT、Claude、Google）延迟在 &#039;&#039;&#039;1.5ms - 3.8ms&#039;&#039;&#039; 之间。&lt;br /&gt;
* &#039;&#039;&#039;综合结论&#039;&#039;&#039;：核心价值在于无可替代的超低物理延迟（江浙沪 40ms、北方 60ms 档位），联通与移动体验优异；但硬件为较早的 Cascadelake 平台（GB5 单核仅 478），硬件跑分排在末位，适合网络代理、轻量前端或纯转发等对 CPU 负载不敏感但追求极致低延迟的业务场景。&lt;br /&gt;
&lt;br /&gt;
[https://nodequality.com/r/zzduPA8FaVkqNF45H0myvRQOwDOIZwlA 大阪 JPOS_1 NodeQuality 链接]&lt;br /&gt;
&lt;br /&gt;
[https://tcpquality.ibsgss.uk/r/2czJ5JNXL0 大阪 JPOS_1 TQ 报告链接]&lt;br /&gt;
&lt;br /&gt;
=== 6️⃣ 东京 JPTY_1 [JPTY_1] (AMD+NVMe, China Direct) ===&lt;br /&gt;
* &#039;&#039;&#039;硬件测试 (NodeQuality 实测)&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;CPU 性能&#039;&#039;&#039;：搭载 AMD EPYC-Genoa Processor 步进 0（2核2线程，2.45GHz），Geekbench 5 单核 &#039;&#039;&#039;804&#039;&#039;&#039; / 多核 &#039;&#039;&#039;1455&#039;&#039;&#039;，Sysbench 单线程 2702.76 / 多线程 5062.04。&lt;br /&gt;
** &#039;&#039;&#039;内存与磁盘 I/O&#039;&#039;&#039;：Sysbench 内存读取 34765 MB/s、写入 20535 MB/s、延迟 214ns；FIO 4K 随机写 34.4 MB/s (8.8k IOPS)，顺序读高达 1209 MB/s、写 2138 MB/s；NQ 硬件加权总分 &#039;&#039;&#039;28179&#039;&#039;&#039;。&lt;br /&gt;
* &#039;&#039;&#039;线路定位与路由特性&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;三网普通 IPv4 回程&#039;&#039;&#039;：普通直连方案（China Direct）。联通绝大部分走 &#039;&#039;&#039;4837 直连&#039;&#039;&#039;（普遍 60-100ms）；移动走 &#039;&#039;&#039;CMI 直连&#039;&#039;&#039;（普遍 45-75ms）；电信在 &#039;&#039;&#039;163 与 CMI 之间混杂&#039;&#039;&#039;。零丢包节点仅 64 个，29 个节点存在丢包/重传。&lt;br /&gt;
** &#039;&#039;&#039;IPv4 大包回程抗压&#039;&#039;&#039;：大包零重传节点为 65 个。移动 CMI 相对平稳；联通 4837 北京重传 12%、云南 8%；电信 163 骨干网普遍伴随 4-8% 重传。&lt;br /&gt;
** &#039;&#039;&#039;教育网回程 (CERNET)&#039;&#039;&#039;：混走 &#039;&#039;&#039;NTT、Cogent 与 Arelion&#039;&#039;&#039;；走 NTT 延迟 70-85ms，走 Cogent 延迟飙升至 150-195ms，四川与云南测试超时。&lt;br /&gt;
* &#039;&#039;&#039;国内三网单线程测速实测&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;移动&#039;&#039;&#039;：得益于 CMI 链路加持，上海飙至 &#039;&#039;&#039;418.0 Mbps&#039;&#039;&#039;（0.09% 重传，72ms）、北京 &#039;&#039;&#039;295.9 Mbps&#039;&#039;&#039;（0.82% 重传，61ms）、广东 &#039;&#039;&#039;177.5 Mbps&#039;&#039;&#039;（3.77% 重传，78ms）。&lt;br /&gt;
** &#039;&#039;&#039;联通&#039;&#039;&#039;：上海达到 &#039;&#039;&#039;308.2 Mbps&#039;&#039;&#039;（0% 重传，56ms）、广东 &#039;&#039;&#039;231.2 Mbps&#039;&#039;&#039;（1.15% 重传，86ms）、北京 &#039;&#039;&#039;156.8 Mbps&#039;&#039;&#039;（1.82% 重传，118ms）。&lt;br /&gt;
** &#039;&#039;&#039;电信&#039;&#039;&#039;：稳定性两极分化；北京 &#039;&#039;&#039;332.2 Mbps&#039;&#039;&#039;、上海 &#039;&#039;&#039;223.0 Mbps&#039;&#039;&#039;，但广东电信仅跑出 &#039;&#039;&#039;56.9 Mbps&#039;&#039;&#039; 且重传达 2.79%。&lt;br /&gt;
* &#039;&#039;&#039;国际互联与常用服务&#039;&#039;&#039;：&lt;br /&gt;
** &#039;&#039;&#039;亚太互联极致&#039;&#039;&#039;：日本本土仅 &#039;&#039;&#039;1ms 极速响应&#039;&#039;&#039;；香港仅 43ms，新加坡 67ms；常用服务 API 响应仅 0.9ms - 1.5ms。&lt;br /&gt;
* &#039;&#039;&#039;综合结论&#039;&#039;&#039;：硬件采用了 EPYC-Genoa 架构，综合硬件得分高于大阪与 DC6；拥有 1ms 的日本本土与亚太超快网络互联；但在回国线路上缺少优质 QoS 优化，电信与部分联通骨干网重传率偏高，国内晚高峰体验不如大阪软银稳定。&lt;br /&gt;
&lt;br /&gt;
[https://nodequality.com/r/V5xbwlLqQ8ApfpO1lgfFTQBEeMuDfda4 东京 JPTY_1 NodeQuality 链接]&lt;br /&gt;
&lt;br /&gt;
[https://tcpquality.ibsgss.uk/r/P9eDjmuv1U 东京 JPTY_1 TQ 报告链接]&lt;br /&gt;
&lt;br /&gt;
[[Category:BandwagonHOST]]&lt;br /&gt;
[[Category:搬瓦工]]&lt;br /&gt;
[[Category:VPS评测]]&lt;/div&gt;</summary>
		<author><name>Sdo888</name></author>
	</entry>
</feed>