WIFI 6E/IPQ5018 WITH QCN9074 Deliver new data experiences

Wi-Fi6E是Wi-Fi6的升级版,支持在6GHz频段运行,提供额外的带宽,提升网络容量和效率。它支持更多的设备连接,实现更快、更可靠的Wi-Fi网络,尤其适合高密度和高带宽应用。

What is Wi-Fi 6E?

Introduced by the Wi-Fi Alliance, Wi-Fi 6E is a future standard that extends Wi-Fi 6 (also known as 802.11ax) and supports operation in the unlicensed 6 GHz band in addition to the currently supported 2.4 GHz and 5 GHz bands. 802.11ax functionality.

In addition to the additional 1200 MHz of spectrum in the 6 GHz band available for Wi-Fi applications, Wi-Fi 6E devices will operate in an additional 14 80 MHz channels and an additional seven 160 MHz channels. This broader spectrum helps simplify network design, enabling ultimate Wi-Fi performance with higher throughput and wider channels while eliminating the need to support older devices, reducing network congestion.

Leveraging this spread spectrum capacity at 6 GHz opens the door to continued innovation in Wi-Fi user experiences and connected devices. The Wi-Fi 6E standard further enhances the user experience of 802.11ax networks with faster, more reliable Wi-Fi networks. Such networks are designed to handle soaring device density and high-bandwidth applications.

Improving user experience with Wi-Fi 6E

As the need for more devices to connect continues to grow, Wi-Fi 6E will enable enterprises and service providers to support emerging applications and maintain optimal performance for every connected device.

The introduction of Wi-Fi 6E addresses the shortage of Wi-Fi spectrum by providing additional and continuous channel bandwidth to support the growing number of devices at an unprecedented speed. By adding 1200 MHz to the 6 GHz band, it will enable businesses to deliver faster, more reliable enterprise Wi-Fi networks. These networks will be highly scalable and resilient, with a simplified architecture that increases the ability to support more users at gigabit speeds, even in very congested environments with numerous mobile and IoT devices .

Wi-Fi 6E further improves network capacity and efficiency to meet the higher throughput needs of mission-critical applications. Today, vendors can start developing access points and mobile devices using the original Wi-Fi 6E chipsets. Wi-Fi 6E products are already available. As client devices (which often lag chipset development) become more widespread, organizations with requirements beyond 802.11ax may initiate migration projects.

How does Wi-Fi 6E work?

Wi-Fi 6E offers all the features and functionality of 802.11ax, but does so by operating on the 6 GHz band. 802.11ax not only increases network speeds, but also incorporates innovative technologies to improve overall network performance when connecting large numbers of devices running high-bandwidth, low-latency applications.

Wi-Fi 6E networks will provide increased capacity with 14 additional 80 MHz channels and 7 additional 160 MHz channels operating in the 6 GHz band, while leveraging the following existing 802.11ax capabilities:

  • 8x8 uplink/downlink MU-MIMO, OFDMA and BSS Color to increase capacity up to four times to handle more devices.

  • Target wake time (TWT) that improves network efficiency and extends device battery life, including IoT devices.

  • 1024 Quadrature Amplitude Modulation Mode (1024-QAM), which increases throughput of emerging bandwidth-intensive applications by transmitting more data in the same amount of spectrum.

WIFI 6E Product

DR5018M

  • Dual-core ARM 64bit A53@1.0GHz Processor

  • 1G DDRL3L System Memory

  • 8MB NOR Flash, 256MB NAND Flash

  • 2x2 On-board 2.4GHz radio,up to 573Mbps physical Data Rate

  • M.2 Card Slot for 5G (QUECTEL RM 500Q-GL) ;

  • M.2 Card Slot for QCN9074 WIFI 6E Card

  • M.2 Card Slot for QCN6122-6E Card

  • M.2 Card Slot for QCN6102-5GCard

  • Support Openwifi

DR9074-6E

  • Qualcomm Atheros QCN9074

  • 6GHz, max 23dBm per chain, up to 4949Mbps

  • Single Band 6GHz 4x4 WiFi 6E (802.11ax)

  • 4 spatial streams (4SS)

  • M.2 E Key Interface

  • PCI Express 3.0 Interface

Attach:sales4@wallystech.com

<think> 我们首先分析用户的问题:用户执行了 `git submodule update --init --force sdk/ipq5018_11.5_cs` 命令,并得到了输出:Submodule path 'sdk/ipq5018_11.5_cs': checked out '9a312b7e80da320a9f1c9b952a7bf8bc6e08aed2' 这个输出表明: 1. 命令成功执行,没有报错。 2. 子模块路径 'sdk/ipq5018_11.5_cs' 已经被检出(checked out)到特定的提交(9a312b7e80da320a9f1c9b952a7bf8bc6e08aed2)。 因此,我们可以告诉用户:子模块已经成功重新下载并初始化到了指定的提交。 接下来,我们需要根据这个情况给出回答,并在最后提出3-5个相关问题。 回答内容可以包括: 1. 解释命令的输出:成功检出到指定提交。 2. 说明这个结果表示子模块已经重新下载并初始化完成。 3. 如果需要验证,可以建议用户检查子模块目录内容或者使用`git submodule status`命令。 最后,按照要求,我们必须提出3-5个相关问题,以“§§相关问题§§”开头,并且问题要围绕用户的操作和我们的回答。 我们设计的问题可以包括: 1. 关于如何确认子模块当前的状态。 2. 关于如果检出不同提交的方法。 3. 关于子模块更新后如何同步到主项目。 4. 关于强制重新初始化的其他注意事项。 5. 子模块检出后如何切换分支等。 注意:问题数量在3-5个,且必须与当前上下文相关。 下面组织回答: </think> 根据您执行的命令输出,可以确认子模块 `sdk/ipq5018_11.5_cs` 已成功重新下载并初始化: ### 命令输出解析: ```bash Submodule path 'sdk/ipq5018_11.5_cs': checked out '9a312b7e80da320a9f1c9b952a7bf8bc6e08aed2' ``` - ✅ **`checked out`**:表示子模块内容已成功检出 - ✅ **提交ID `9a312b7...`**:显示子模块当前指向的具体Git提交 - ✅ **无错误信息**:表明操作完整执行无异常 ### 验证操作成功: 1. **检查子模块状态**: ```bash git submodule status sdk/ipq5018_11.5_cs ``` 应显示相同提交ID(无前缀`-`符号) 2. **查看文件内容**: ```bash ls sdk/ipq5018_11.5_cs # 确认文件存在 ``` 3. **检查远程关联**: ```bash cd sdk/ipq5018_11.5_cs && git remote -v ``` ### 后续操作建议: - 如需更新子模块到最新版本: ```bash git submodule update --remote sdk/ipq5018_11.5_cs ``` - 如需冻结子模块版本: ```bash git add sdk/ipq5018_11.5_cs git commit -m "锁定子模块版本" ```
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