Wi-Fi 7 Technology| TSN Powe to IPQ9574 IPQ9557 QCN6274 On 2*2 2.4G 5G Wifi Board

Wi-Fi7引入了Time-SensitiveNetworking(TSN),提升数据传输速度、减少延迟并支持工业自动化等低延迟应用。TSN确保网络的可靠性和一致性,推动Wi-Fi7在多个行业如工业自动化、自动驾驶等领域发挥关键作用。

Introduction

In an increasingly interconnected world, Wi-Fi technology has become an indispensable part of our lives. From smartphones to laptops, smart homes to industrial automation, Wi-Fi has revolutionized the way we connect and communicate. With the ever-growing demand for faster, more reliable, and low-latency wireless connectivity, the development of Wi-Fi 7 is poised to take the technology to the next level. One of the key innovations driving this evolution is Time-Sensitive Networking (TSN). In this post, we will explore how TSN is powering Wi-Fi 7 technology.

Understanding Wi-Fi 7

Wi-Fi 7, also known as 802.11be, is the upcoming generation of Wi-Fi technology set to bring a host of improvements over its predecessor, Wi-Fi 6. These improvements include faster data transfer rates, reduced latency, increased capacity, and better performance in crowded network environments. Wi-Fi 7 is expected to support data rates of up to 30 Gbps, making it a game-changer for various applications, from streaming 8K video to powering smart factories.

The Role of Time-Sensitive Networking (TSN)

Time-Sensitive Networking, or TSN, is a set of standards within the IEEE 802.1 working group designed to enable deterministic, low-latency, and highly reliable communication in Ethernet networks. TSN accomplishes this by introducing precise timing mechanisms and traffic shaping capabilities that are essential for applications requiring strict quality of service (QoS) and low-latency performance, such as industrial automation, autonomous vehicles, and real-time video streaming.

The integration of TSN into Wi-Fi 7 is crucial for several reasons:

1. Low Latency: TSN allows Wi-Fi 7 to guarantee low-latency communication, making it suitable for applications that require instant responses, such as industrial automation and augmented reality/virtual reality (AR/VR).

2. Reliable Performance: With TSN, Wi-Fi 7 can provide deterministic performance, ensuring that time-critical data gets the priority it needs without being subject to the unpredictability of network congestion.

3. Seamless Integration: TSN facilitates the convergence of different networking technologies, including wired and wireless connections, into a single, unified network. This makes it easier for devices to communicate and ensures a consistent quality of service across the network.

Applcations of TSN-Powered Wi-Fi 7

The marriage of TSN and Wi-Fi 7 holds immense potential across various sectors:

1. Industrial Automation: In factories and manufacturing plants, TSN-powered Wi-Fi 7 ensures that machines can communicate reliably, enabling precise control and coordination, reducing downtime, and improving overall productivity.

2. Autonomous Vehicles: TSN-powered Wi-Fi 7 can support the ultra-low latency required for safe and efficient vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication in autonomous driving.

3. Healthcare: Telemedicine and remote surgery applications benefit from TSN's low latency, ensuring that doctors can perform surgeries remotely with confidence.

4. Entertainment and Gaming: TSN-powered Wi-Fi 7 offers seamless 8K video streaming and online gaming experiences without lag or buffering.

5. Smart Cities: In smart city deployments, TSN ensures efficient and real-time communication between various IoT devices and sensors, enhancing urban management and public services.

Conclusion

Wi-Fi 7, powered by Time-Sensitive Networking, is set to revolutionize the wireless connectivity landscape. With its incredible speed, low latency, and deterministic performance, TSN-powered Wi-Fi 7 will enable a wide range of applications across industries, from industrial automation to healthcare, autonomous vehicles, and more. As this technology continues to evolve, it promises to unlock new possibilities for a connected, data-driven world.

Wallys WiFi 7 Routerboard: DR9574:

Website:PRODUCTS_Wallys Communications (Suzhou ) Co., LTD

Qualcomm IPQ9574 supports 2.4G and offers more radio options through the network card.

Based on QCN9274 QCN6274 Network Card selection:

4x 4   5Hz

4x4   6GHz

2x2 2.4GHz + 2x2  5 GHz

2x2  5GHz   +2x2   6GHz

Are you excited about the possibilities that WiFi 7 brings? Share your thoughts and expectations for the future of wireless networking.

Wallys routerboard support 2.4Ghz & 5Ghz
network card version: Single band & Dual band & Triband
frequency band:
5Ghz 6E
2.4Ghz & 5Ghz DBDC
2.4Ghz & 5Ghz (optional)
5Ghz & 6Ghz (optional)
2.4Ghz & 5Ghz & 6Ghz(optional)

If you are looking for a powerful Mfg to do OEM for a large project in wireless industry at reasonable and affordable cost, welcome to reach out us and what our teams can bring you !

More information visit :https://www.wallystech.com/ 

Connect with Wallys at sales4@wallystech.com

### 5G Wi-Fi Frequency Range Standards Wi-Fi技术在不同的标准下运作于多个频段,其中5G Wi-Fi特指工作在5GHz频段下的Wi-Fi网络。此频段提供了更宽广的带宽以及较少的干扰源,从而能够提供更快的数据传输速度和更好的连接质量[^4]。 具体来说,5GHz频段被细分为若干个子频段,在不同国家和地区可能有所差异。通常情况下,这些子频段覆盖了从大约5.0到5.9GHz之间的频率范围。为了适应更多样化的应用场景并提高效率,IEEE定义了一系列的标准来规定如何有效利用这一频谱资源: - **802.11a**: 这是最早期支持5GHz频段的技术之一,其运行范围大致位于5.15至5.825GHz之间。 - **802.11n (5GHz)**: 扩展了可用信道数量,并引入了MIMO(多输入多输出)技术支持更高的吞吐量。 - **802.11ac**: 主要集中在5GHz频段上,进一步增加了数据速率上限;它还优化了MU-MIMO功能以改善多客户端环境中的表现。 - **802.11ax/Wi-Fi 6E**: 不仅涵盖了传统的5GHz频段,还包括了新的6GHz频段(5.925–7.125 GHz),这为未来的无线通信带来了更大的灵活性和发展空间。 值得注意的是,随着Wi-Fi 7的到来,TSN(时间敏感网络)等功能将进一步增强用户体验,特别是在低延迟方面的要求得到更好满足的同时也扩展了对更高频率的支持能力。 ```python # Python code snippet demonstrating how to check available WiFi channels on Linux systems. import os def get_wifi_channels(): result = os.popen('iwlist wlan0 channel').read() print(result) get_wifi_channels() ```
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