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524 WiFi 7 modules from Wallys Now Fully Supports ath12k | Faster Performance & Open-Source Flexibility

524 WiFi 7 cards Now Fully Supports ath12k — Performance Unlocked, Connectivity Redefined

The evolution of WiFi 7 continues to accelerate, and open-source innovation is playing a key role in enabling faster development and deployment. We are excited to announce that our entire WiFi 7 product line now offers full compatibility with the ath12k driver — Qualcomm’s next-generation open-source wireless driver for Linux.

From high-performance router boards to enterprise-grade network cards, Wallys WiFi 7 platforms based on IPQ95xx, QCN92xx, and QCN62xx are now ready to take advantage of the powerful features and enhanced stability provided by ath12k.


Why ath12k Matters for WiFi 7 Development

As the successor to ath11k, the ath12k driver introduces major improvements tailored for WiFi 7’s advanced feature set. Developers, integrators, and enterprises gain stronger kernel support, increased flexibility, and a smoother path to building next-generation wireless systems.

Key Benefits of ath12k

  • Tri-band WiFi 7 support (2.4GHz / 5GHz / 6GHz) Supports core WiFi 7 technologies such as 4K-QAM, MLO, and Multi-Link Aggregation, unlocking higher throughput and reliability.
  • Deep compatibility with the Linux open-source ecosystem Ideal for companies building custom firmware or integrating WiFi 7 into specialized platforms.
  • Significant performance upgrades Improved speed, lower latency, and greater stability — perfect for enterprise networking, industrial IoT, MDUs, and outdoor deployments.
  • Developer-friendly architecture Open, flexible, and optimized for ODM/OEM workflows, reducing development time and increasing customization freedom.

WallysTech Products Now Supporting ath12k

With ath12k integration now complete across our WiFi 7 lineup, developers gain reliable and scalable platforms for their next wireless innovation.

1. DR9574 Series (IPQ9574)

A high-performance tri-band WiFi 7 router/AP mainboard designed for:

  • Enterprise WiFi networks
  • Industrial wireless systems
  • High-density environments
  • Multi-port, high-throughput applications

2. DR9274 & DR6274 WiFi 7 NICs (QCN9274 / QCN6274)

PCIe-based WiFi 7 network cards suitable for:

  • Custom Access Points
  • CPE devices
  • Industrial and outdoor wireless equipment
  • OEM/ODM hardware upgrades

3. Additional WiFi 7 SoC Mainboards

More WiFi 7 models are currently under development and will be added to the ath12k-enabled family soon, expanding options for integrators and solution providers.


Accelerating Real-World WiFi 7 Deployment

At 524WiFi and WallysTech, our mission is to deliver open, flexible, and production-ready wireless platforms to help customers shorten evaluation cycles and bring WiFi 7 products to market faster.

With full ath12k support, our WiFi 7 solutions now provide:

  • Greater openness for developers
  • Better compatibility with custom Linux systems
  • Improved performance for demanding use cases
  • A smoother upgrade path for companies transitioning to WiFi 7

Whether you’re building enterprise APs, industrial routers, outdoor IoT gateways, or custom wireless equipment, ours WiFi 7 platforms offer the performance and openness needed for next-generation deployments.

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The integration of ath12k marks a major milestone for the WiFi 7 ecosystem. 524WiFi is proud to be among the first hardware solution providers to fully adopt the new driver across a broad product portfolio.

As WiFi 7 continues to redefine wireless performance, 524WiFi and WallysTech will keep delivering powerful, customizable, and future-ready solutions to help partners innovate with confidence.

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From Wi-Fi 6 to Wi-Fi 7: Why IPQ9574 Sets a New Performance Benchmark

From IPQ8074 to IPQ9574: How Wi-Fi 7 Redefines Wireless Performance

As wireless networks evolve, the leap from Qualcomm’s IPQ8074 (Wi-Fi 6/6E) to the next-generation IPQ9574 (Wi-Fi 7) represents one of the most significant performance shifts in recent years. For industrial, enterprise, and high-density environments, this upgrade isn’t just incremental—it’s transformational. In this article, we break down what changes with Wi-Fi 7, why IPQ9574 is a major step forward, and how it unlocks new possibilities for advanced wireless solutions.


1. The Legacy of IPQ8074: A Strong Wi-Fi 6 Foundation

Qualcomm’s IPQ8074 helped establish Wi-Fi 6/6E in demanding applications by offering:

  • High throughput via 8×8 5 GHz + 4×4 2.4 GHz capabilities
  • OFDMA and MU-MIMO for better multi-user efficiency
  • Enhanced reliability through higher modulation and optimized scheduling
  • Support for 6 GHz (Wi-Fi 6E) in many deployments

This platform has been widely used in enterprise APs, outdoor CPEs, industrial gateways, and operator-grade devices. But growing demand for ultra-low latency, multi-link performance, and higher spectrum efficiency set the stage for the next leap: Wi-Fi 7.


2. Enter IPQ9574: Qualcomm’s Wi-Fi 7 Powerhouse

The IPQ9574 brings a new architecture, improved RF design, and cutting-edge Wi-Fi 7 features. Key upgrades include:

✔ 320 MHz Channel Support

Wi-Fi 7 doubles the maximum channel width from 160 MHz (Wi-Fi 6) to 320 MHz, enabling much higher peak throughput.

✔ Multi-Link Operation (MLO)

One of the biggest breakthroughs:

  • Devices can simultaneously use multiple bands
  • Improved reliability, near-zero latency, and seamless failover
  • Ideal for industrial and mission-critical networks

✔ Higher Modulation: 4096-QAM

Compared to IPQ8074’s 1024-QAM, Wi-Fi 7 pushes spectral efficiency even further.

✔ Enhanced OFDMA & Preamble Puncturing

Better resource allocation in congested spectrum environments.

✔ Multi-RU Capability

More flexible scheduling across users and channels.


3. Performance Comparison: IPQ8074 vs IPQ9574

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The IPQ9574 isn’t just faster—it is more stable, adaptive, and efficient, especially in congested or industrial environments.


4. Real-World Impact: Why the Upgrade Matters

✔ Industrial IoT

  • Stable multi-link communication
  • Reduced packet loss in noisy RF environments
  • Higher throughput for camera streams, sensors, and gateway devices

✔ Enterprise and Public Networks

  • Better performance in stadiums, airports, shopping malls
  • Improved roaming and handoff with MLO

✔ Outdoor Wireless & WISP

  • Stronger long-range performance
  • Less interference due to flexible spectrum use

✔ AI, Edge Computing & Real-Time Apps

  • Consistent high-speed connection
  • Enabling latency-sensitive applications such as robotics and AR/VR

5. Hardware Evolution: DR8074 → DR9574

As the chipset evolves, so do high-performance hardware platforms. Our DR9574 brings the full power of the IPQ9574 Wi-Fi 7 SoC into a production-ready board designed for:

  • 2× 10G Ethernet + 4× 1G Ethernet
  • 4× M.2 slots for QCN9274/6274 Wi-Fi 7 radios
  • Industrial-grade operation
  • High-power RF design for long-range wireless
  • Customizable firmware and OpenWrt/QSDK support

It is an ideal upgrade path for users currently deploying DR8074/IPQ8074 platforms but looking to move into Wi-Fi 7 performance levels.


6. Conclusion: Wi-Fi 7 Redefines What’s Possible

The transition from IPQ8074 to IPQ9574 is more than a chipset upgrade—it is a shift to a new era of wireless networking:

  • Faster speeds
  • Lower latency
  • Higher reliability
  • Better performance in crowded environments
  • New capabilities through MLO and 320 MHz channels

For industrial, enterprise, and high-density deployments, adopting Wi-Fi 7 solutions such as the IPQ9574-based DR9574 creates a stronger, more scalable wireless infrastructure ready for the future.

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The DR5018S-AP crushed a 14 km 5 GHz link test – hitting 475 Mbps unidirectional throughput!

Wallystech DR5018S-AP crushed a 14 km 5 GHz link test in Dongbei at 50 m high — hitting 475 Mbps unidirectional throughput! We prepare more detailed test report.

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IPQ5010 vs. IPQ5018: Why Wallys’ IPQ5018 Redefines Enterprise Wi-Fi 6 Performance

IPQ5010 vs. IPQ5018: A Comprehensive Comparison and Why IPQ5018 is the Future of Networking Solutions

In the rapidly evolving world of networking technology, choosing the right platform for your wireless solutions is crucial. Two prominent players in this space are the IPQ5010 and IPQ5018 chipsets. While the IPQ5010 has proven its worth in various applications, the IPQ5018, particularly Wallys’ DR5018S solution, offers a host of advanced features and performance enhancements that make it the superior choice for modern networking needs. This article delves into the key differences between the two platforms and highlights why the IPQ5018 is the future of networking solutions.

IPQ5010: A Solid Foundation

The IPQ5010 has been widely adopted in the networking industry due to its reliable performance and versatility. It supports dual-band Wi-Fi 6 (802.11ax) and is suitable for a range of applications, including home routers, enterprise access points, and IoT devices. Its key features include:

Efficient Performance: Handles moderate traffic loads with ease.

Cost-Effective: A budget-friendly option for basic networking needs.

Wide Compatibility: Works well with various networking protocols and devices.

However, as networking demands grow, the limitations of the IPQ5010 become apparent. It struggles to handle high-density environments, lacks advanced roaming capabilities, and offers limited support for mesh networking—areas where the IPQ5018 excels.

IPQ5018: The Next-Generation Solution

The IPQ5018 builds on the strengths of the IPQ5010 while addressing its shortcomings. Wallys’ DR5018S solution, powered by the IPQ5018, is a game-changer in the networking industry. Here’s why:

1. Enhanced Performance

Higher Throughput: The IPQ5018 delivers superior performance, making it ideal for high-density environments such as stadiums, airports, and large enterprises.

Improved Stability: A more robust platform ensures consistent performance even under heavy traffic loads.

2. Advanced Roaming and Mesh Networking

Fast Roaming: Wallys’ self-developed fast roaming technology ensures seamless switching between access points, reducing latency and improving user experience.

Mesh Networking: The IPQ5018 is optimized for mesh networks, making it perfect for large-scale deployments that require seamless coverage.

3. GPS Integration

DR5018S with GPS Module: The inclusion of a GPS module in Wallys’ DR5018S solution enables precise location tracking, making it ideal for applications such as fleet management, asset tracking, and location-based services.

4. Cost-Effective and Scalable

Competitive Pricing: Despite its advanced features, the IPQ5018 offers a cost-effective solution, making it accessible for businesses of all sizes.

Bulk Management: Wallys’ self-developed AP Controller supports bulk firmware upgrades and management, simplifying large-scale deployments and reducing operational overhead.

5. Future-Proof Technology

Support for Emerging Standards: The IPQ5018 is designed to support future networking standards, ensuring your investment remains relevant for years to come.

Flexibility: Its modular design allows for easy customization to meet specific application requirements.

Real-World Applications

Enterprise Networks: The IPQ5018’s superior performance and fast roaming capabilities make it ideal for large office spaces and campuses.

Smart Cities: Its support for mesh networking and GPS integration enables seamless connectivity across urban areas.

IoT Deployments: The IPQ5018’s stability and scalability make it a perfect fit for IoT applications requiring reliable and consistent connectivity.

Why Choose 524WiFi’ IPQ5018 Solution?

524WiFi and Wallys have leveraged the IPQ5018’s capabilities to create a solution that stands out in the market. Here’s what sets our Dream router board DR5018S apart:

Self-Developed Fast Roaming(value added service): Ensures uninterrupted connectivity, even in high-mobility scenarios.

Seamless Mesh Networking(value added service): Simplifies the deployment of large-scale networks.

GPS Module: Adds a layer of functionality for location-based applications.

AP Controller Support: Streamlines bulk management and firmware upgrades, reducing operational complexity.

Cost-Effective: Offers advanced features at a competitive price point.

Conclusion

While the IPQ5010 has served as a reliable workhorse in the networking industry, the IPQ5018, particularly 524wifi + Wallys’ DR5018S solution, represents the next generation of networking technology. With its enhanced performance, advanced roaming capabilities, GPS integration, and cost-effective pricing, the IPQ5018 is the ideal choice for businesses looking to future-proof their networks.

For those seeking a more robust, scalable, and feature-rich solution, our IPQ5018-based DR5018S is the clear winner. Its unique advantages make it the perfect platform for enterprise networks, smart cities, and IoT deployments. Upgrade to the IPQ5018 today and experience the future of networking.

Contact us today to learn more about the DR5018S solution and how it can transform your network!

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IPQ5322: Features, Use Cases, and Performance Analysis

IPQ5322: High-Performance Networking for the Wi-Fi 7 Era

The IPQ5322 (also known as IPQ5321 or IH 326, codename Miami) is a cutting-edge networking chipset designed to meet the demands of next-generation wireless connectivity. With support for Wi-Fi 7 (802.11be) and advanced hardware acceleration, this SoC is ideal for high-density enterprise networks, industrial IoT, and future-proof smart infrastructure. Let’s dive into its technical specifications, key features, and why it’s a game-changer for modern networking.


Key Specifications

  • CPU: Quad-core ARM Cortex-A53 @ 1.5 GHz
  • NPU: Dedicated 1.5 GHz Network Processing Unit for accelerated packet handling.
  • Wi-Fi Standards: Wi-Fi 7 (802.11be) with 4K QAM, MLM (Multi-Link Operation), and MU-MIMO.
  • Backward compatible with 802.11a/b/g/n/ac/ax.
  • Radio Configuration:6-stream design: 2×2 2.4GHz + 2×2 5GHz/6GHz.
  • 4×4 MU-MIMO for high-density environments.
  • Security: WPA3 encryption and secure boot.
  • Connectivity:Wired: 1x 10GbE + 4x 2.5GbE ports.
  • Advanced Features:
  • 14nm process technology for power efficiency.
  • MRQFN251 package optimized for thermal performance.
  • Peak throughput: 10.6 Gbps.
Our IPQ5322 Routerboard DR5322 RDP

Why Choose the IPQ5322?

1. Unmatched Performance for Wi-Fi 7

The IPQ5322 is built to harness the full potential of Wi-Fi 7, delivering:

  • 4K QAM: 20% higher data rates than Wi-Fi 6.
  • MLM (Multi-Link Operation): Simultaneous use of multiple frequency bands for ultra-low latency.
  • MU-MIMO & OFDMA: Efficiently handle hundreds of devices in crowded environments.

2. Industrial-Grade Reliability

  • Wide temperature range (-40°C to +65°C) for harsh industrial environments.

3. Future-Proof Scalability

  • 10GbE + 2.5GbE ports: Ready for high-speed backhaul and fiber-grade connectivity.
  • PCIe 3.0 support: Enables expansion with 5G modules, NVMe storage, or additional radios.

4. Power Efficiency

  • 14nm process: Reduces power consumption by 30% compared to previous generations.
  • Dynamic frequency scaling: Optimizes power usage based on network load.

Use Cases

  1. Enterprise Access Points:Deploy Wi-Fi 7 in offices, campuses, and conference halls to support 4K streaming, VR collaboration, and IoT devices.
  2. Industrial IoT Gateways:Connect sensors, robots, and PLCs in smart factories with low-latency, high-reliability wireless links.
  3. Carrier-Grade Routers:Deliver multi-gigabit broadband to homes and businesses with 10GbE uplinks.
  4. Smart City Infrastructure:Power traffic management systems, public Wi-Fi hotspots, and surveillance networks.

Why Partner with 524WiFi and Wallys?

At 524WiFi and Wallys, we leverage the IPQ5322 to create customized,industrial-grade solutions:

Explore our IPQ5322-based products:

  • DR5322+DR9274 Industrial Router: Tri-band Wi-Fi 7 with PoE+ and ruggedized housing.

Get Started Today!

Ready to harness the power of Wi-Fi 7? Contact our team to:

  • Request samples for testing.
  • Discuss customization options tailored to your needs.
  • Learn how our IPQ5322 solutions can give you a competitive edge.
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DR9574 WiFi 7: Built for AI Applications, Pushing Performance Limits – Core Advantages of WiFi 7 for AI Applications

With the rapid development of AI and IoT, traditional network architectures are no longer capable of handling the growing demands for data traffic and ultra-low latency. 524WiFis WiFi 7 hardware, with its groundbreaking technology, is specifically designed for AI-driven applications, offering infinite possibilities for the future of networking.

Core Advantages of WiFi 7 for AI Applications:

🔌 Ultra-High Bandwidth WiFi 7 hardware supports an impressive 46.116 Gbps link speed(maximum 6ghz peak data rate 11.529 Gbps x 4), effortlessly handling the massive data transfers required by AI algorithms. It ensures smooth operation for AI applications such as machine learning, data analysis, and automation, while also managing high-bandwidth device connections.

🌐 Seamless AI Device Connectivity WiFi 7 supports multiple devices simultaneously, ensuring AI-driven endpoints like smart cameras, industrial robots, and automation control systems enjoy ultra-stable, high-bandwidth connections. This meets the demands of industrial automation and smart city infrastructure.

💡 Future-Proofing Capability Wallys WiFi 7 hardware is compatible with future 5G networks and edge computing, offering ultra-low latency and efficient transmission to allow real-time interaction between AI applications and IoT devices, building a smarter and more interconnected ecosystem.

Solutions Tailored for Industrial AI Applications

Whether in smart factories, smart cities, autonomous driving, or telemedicine, 524WiFi WiFi 7 ensures seamless connectivity and ultra-fast transmission, guaranteeing real-time performance and stability for AI applications.

  • Enhanced Signal Coverage
  • Intelligent Bandwidth Management
  • Ultra-Low Latency
  • Self-Healing Network Failures
  • Supports Multiple Device Connections Simultaneously

Experience the Future Network for the AI Era Today

Contact us to get a product trial and detailed technical information.

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QCN9274 vs QCN9024: Comparing the Speed and Efficiency of Qualcomm’s Best Wi-Fi Chipsets

As industrial networks grow more complex, the need for high-performance, efficient wireless connectivity becomes more critical. Qualcomm’s QCN9274 (Wi-Fi 7) and QCN9024 (Wi-Fi 6) are both top-tier chipsets that power industrial wireless solutions, but each is optimized for different needs. In this article, we’ll compare the QCN9274 and QCN9024, focusing on their speed, efficiency, and application suitability, to help you determine which chipset is best for your industrial Wi-Fi network.


Overview of QCN9274 and QCN9024

QCN9274 – The Power of Wi-Fi 7

The QCN9274 is Qualcomm’s latest offering featuring Wi-Fi 7 (802.11be). Wi-Fi 7 brings revolutionary improvements to speed, latency, and capacity compared to previous generations. With Wi-Fi 7, the QCN9274 is designed to handle extremely high-demand environments, making it the perfect choice for future-proofing large-scale industrial networks, AI and IoT applications, and high-bandwidth use cases.

Key Features of QCN9274:

  • Wi-Fi 7 (802.11be) Support: Provides ultra-fast speeds and advanced features like Multi-Link Operation (MLO) and Enhanced QAM (Quadrature Amplitude Modulation).
  • Data Rates up to 5.8Gbps: The QCN9274 supports significantly faster speeds than its predecessors, ideal for large data transfers and demanding applications.
  • Reduced Latency: With Wi-Fi 7, the QCN9274 is optimized for ultra-low latency, which is crucial for real-time industrial applications.
  • Higher Capacity: Enhanced support for more simultaneous connections without sacrificing performance.
  • Advanced Features: Includes MLO for simultaneous operation on multiple channels, reducing congestion and improving network reliability.
524WiFi Dream QCN9274 Modules

QCN9024 – The Reliability of Wi-Fi 6

The QCN9024, based on Wi-Fi 6 (802.11ax), delivers faster speeds and improved efficiency compared to previous Wi-Fi standards like Wi-Fi 5. It supports OFDMA (Orthogonal Frequency Division Multiple Access) and MU-MIMO (Multi-User, Multiple Input Multiple Output), which optimize the use of available spectrum, making it ideal for crowded environments with multiple connected devices. While Wi-Fi 6 doesn’t offer the same level of performance as Wi-Fi 7, the QCN9024 still provides excellent performance in most industrial settings.

Key Features of QCN9024:

  • Wi-Fi 6 (802.11ax) Support: Provides faster speeds and improved efficiency compared to Wi-Fi 5, though it lacks the advancements found in Wi-Fi 7.
  • Data Rates up to 2.4Gbps: Offers strong throughput for most industrial applications, though not as high as Wi-Fi 7.
  • Improved Efficiency: Supports OFDMA and MU-MIMO for better use of available bandwidth.
  • Good for High-Density Environments: While it doesn’t scale as well as Wi-Fi 7 in extremely dense environments, it still offers excellent performance in smaller to mid-sized applications.

Speed and Throughput Comparison

QCN9274: Unmatched Speed with Wi-Fi 7

The QCN9274 supports Wi-Fi 7, delivering data rates up to 5.8Gbps. This makes it ideal for high-demand applications such as 4K/8K video streaming, virtual reality (VR), augmented reality (AR), and large-scale industrial automation systems. The advanced capabilities of Wi-Fi 7, such as Multi-Link Operation (MLO), allow the chipset to utilize multiple channels simultaneously, improving throughput and reducing network congestion.

Wi-Fi 7 offers dramatic speed improvements over Wi-Fi 6, enabling faster data transfers, better device density handling, and the ability to operate seamlessly in congested environments.

DR9274 6G SPEED THOUGHPUT TEST

QCN9024: Excellent Wi-Fi 6 Performance

On the other hand, QCN9024 supports Wi-Fi 6, with data rates up to 2.4Gbps. While this is more than sufficient for many industrial applications, it doesn’t match the ultra-high speeds of Wi-Fi 7. Wi-Fi 6 excels in dense environments with many devices, offering improved network efficiency and reduced latency compared to older Wi-Fi standards like Wi-Fi 5.

However, for environments with extreme data throughput requirements, Wi-Fi 7 offers significant improvements in both speed and efficiency.

DR9074(QCN9074)-6E SPEED THOUGHPUT TEST

Efficiency and Capacity

QCN9274: Higher Efficiency for Dense, High-Traffic Environments

The QCN9274, supporting Wi-Fi 7, offers significantly higher capacity and better efficiency compared to Wi-Fi 6. With the help of MLO and Wider Channel Bandwidth, it can handle multiple data streams simultaneously, making it perfect for high-density environments. This is a critical feature in industrial networks, where many devices (IoT sensors, automated machines, etc.) need to operate concurrently.

Wi-Fi 7 is specifically designed for environments that require simultaneous handling of multiple high-bandwidth applications, ensuring that each device gets sufficient bandwidth without causing congestion.

QCN9024: Efficient but Less Scalable

The QCN9024, based on Wi-Fi 6, performs well in dense environments, but it has limitations when scaling up to larger networks. It does support OFDMA and MU-MIMO, which helps in efficient spectrum use and ensures that the network can handle more devices without slowing down. However, compared to Wi-Fi 7, Wi-Fi 6 does not have the same level of capacity or congestion mitigation.

While the QCN9024 is highly efficient in environments with moderate device density, Wi-Fi 6 has its limits in large-scale, high-density industrial deployments.


Latency and Real-Time Applications

QCN9274: Ultra-Low Latency with Wi-Fi 7

One of the key benefits of Wi-Fi 7 is its ultra-low latency, crucial for real-time applications in industrial environments. The QCN9274 is designed for instantaneous communication, which is essential for applications like real-time monitoring, automated systems, and video surveillance. Wi-Fi 7 improves upon Wi-Fi 6 with reduced delay and more predictable performance, even in busy environments.

QCN9024: Reliable but Slightly Higher Latency

The QCN9024, with its Wi-Fi 6 capabilities, also provides low latency, making it suitable for most industrial applications. However, when compared to Wi-Fi 7, the latency is slightly higher, especially in large-scale environments where many devices are connected simultaneously. This might be noticeable in highly time-sensitive applications.


Which Chipset is Right for Your Industrial Wi-Fi Network?

Choose QCN9274 if:

  • You need ultra-fast speeds and high data throughput for demanding applications.
  • Your industrial network requires low latency for real-time monitoring, automation, and control.
  • You have a large number of devices connected to the network and need a future-proof solution.
  • You want to take advantage of Wi-Fi 7‘s advanced features, such as MLO and wider channels for optimal performance in dense environments.

Choose QCN9024 if:

  • Your network has a moderate number of devices and Wi-Fi 6 is sufficient for your current needs.
  • You don’t need the latest Wi-Fi 7 features but still require high-speed connectivity for industrial applications.
  • You are looking for a reliable, cost-effective solution for environments that do not demand extreme speeds or massive scalability.

Conclusion

Both the QCN9274 and QCN9024 are excellent choices, but they cater to different needs. The QCN9274 with Wi-Fi 7 is ideal for high-performance, large-scale, and future-proof industrial networks, while the QCN9024 with Wi-Fi 6 is a great option for environments where Wi-Fi 6’s capabilities are more than adequate. Ultimately, the right choice depends on your network’s requirements—whether it’s speed, efficiency, capacity, or future scalability.

By selecting the right chipset, you can ensure your industrial Wi-Fi network delivers the performance, reliability, and efficiency required for success.

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524WiFi 6 Dream and Driver DR5018M: High-Performance WiFi 6 Routerboard for Industrial Applications

DR5018M: High-Performance WiFi 6 Routerboard for Industrial Applications

In modern industrial settings, the demand for reliable and high-speed wireless communication is ever-increasing. Wallys Communications offers the DR5018M, a WiFi 6 routerboard designed to meet these needs. This board integrates Qualcomm’s IPQ5018 chipset, providing robust performance and advanced features tailored for challenging industrial environments.

Key Features of the DR5018M

Advanced Processor

The DR5018M is powered by the Qualcomm IPQ5018, a dual-core ARM 64-bit A53 processor clocked at 1.0GHz. This ensures high processing power for handling multiple tasks and maintaining stable connections under heavy loads.

Exceptional Wireless Performance

The routerboard supports 2×2 MU-MIMO and OFDMA technologies, which enhance data transmission efficiency and network capacity. With onboard 2.4GHz radio, it delivers up to 573Mbps physical data rate, suitable for high-bandwidth applications like video streaming and data transmission in factories and warehouses.

Long-Distance PTP Transmission

The DR5018M excels in long-distance Point-to-Point (PTP) transmission:

  • 3.3KM Test:5GHz: 949Mbps6GHz: 821Mbps
  • 1.5KM Test:5GHz: 1.5Gbps6GHz: 1Gbps

These capabilities make it ideal for large industrial sites requiring extensive wireless coverage.

Flexible Connectivity Options

The DR5018M includes multiple M.2 slots for various radio cards (QCN9074 for WiFi 6E, QCN6122 for 6GHz, and QCN6102 for 5GHz), providing flexibility to meet different frequency band requirements. Additionally, it features a 1Gbps Ethernet port, USB 3.0, and PCIe 3.0 interfaces for versatile connectivity.

Enhanced Security with WPA3

Security is a top priority in industrial networks. The DR5018M supports WPA3 encryption, offering:

  • Stronger encryption protocols for enhanced data security.
  • Improved protection against brute-force attacks.
  • Secure, individualized encryption for each device on the network.

Rugged Design for Industrial Use

Designed to withstand harsh industrial conditions, the DR5018M operates within a wide temperature range (-40°C to 70°C) and humidity levels (5% to 95% non-condensing), ensuring reliability in various environments.

Industrial Applications

Factory Automation

The DR5018M provides stable, high-speed wireless connections for automated production lines, supporting real-time data transmission and control.

Smart Warehousing

It enables efficient operation in smart warehouses by supporting numerous concurrent connections and high data throughput.

Industrial Surveillance

With its robust wireless performance, the DR5018M supports high-definition video streaming and real-time monitoring, essential for surveillance systems.

Remote Monitoring and Control

The long-distance PTP capabilities make it perfect for remote monitoring and control applications, ensuring reliable communication across vast industrial sites.

Conclusion

DR5018M routerboard combines high-performance wireless technology with robust security features, making it an ideal choice for industrial applications. Its powerful IPQ5018 processor, excellent long-distance transmission capabilities, and support for WPA3 encryption ensure that it meets the demanding needs of modern industrial environments.

For more information or to inquire about our products, please contact us .