Skip to main content

Wallys DR5018-IPQ5018 router supports 2.4G/5G/6G band customization -DIY to meet the needs of different projects

 Exciting news from Wallys Communication! 🎉 We are thrilled to introduce our latest hardware platform, the DR5018S – a cutting-edge 802.11ax 2.4G, 5G, and 6G 3-band PCBA. Here's a closer look at this powerful new addition to our lineup:

Please contact:sales@wallyetch.com



🔧 Hardware Specs:

The DR5018S is powered by Qualcomm's IPQ5018 Dual-core ARM 64-bit A53 @ 1.0GHz Processor, delivering high-performance efficiency.

It features an integrated QCN6102 for 5G radio, QCN6122 for 6G radio, and includes a u-blox NEO-M8M-0-10 GPS module.

With 512MB DDRL3L system memory, 8MB NOR flash, and 256MB NAND flash, it also supports BT5.1 (optional).

Connectivity is robust with one 1G and one 2.5G Ethernet port, both POE-enabled.

📏 Compact Design:

Sized at just 12 x 10.5 cm, the DR5018S offers incredible performance in a compact form factor, making it ideal for a wide range of deployments.

💻 Software Flexibility:

Supporting QSDK, OpenWrt, and OpenWifi, the DR5018S is designed to meet diverse software needs.

We also provide custom software development tailored to your project requirements, offering features like Easy Mesh, GPS Sync, Captive Portal, and more.

📡 Versatile Frequency Solutions:

Our standard version includes a 2x2 2.4G, 2x2 5G, and 2x2 6G tri-band configuration, but we offer several variants to suit different application scenarios and cost optimization goals:

Single 5G radio with 1G Ethernet:

Ideal for low-hardware requirement applications.

Dual 5G radio:

Perfect for dual-band roaming scenarios.

2.4G + 5G or 2.4G + 6G:

Well-suited for PTP and PTMP outdoor applications.

Using the IPQ5018 motherboard, which integrates 2.4 GHz, 5 GHz, and 6 GHz frequency bands and allows for DIY customization, offers several benefits:

1. Flexibility in Application: Users can tailor the motherboard to specific use cases by selecting the frequency bands that best suit their needs. For example, 2.4 GHz might be preferred for long-range, lower-speed applications, while 5 GHz and 6 GHz are ideal for high-speed, lower-latency connections.

2. Cost-Effectiveness: By only including the necessary frequency bands, users can reduce costs associated with unused hardware, making the solution more economical.

3. Optimized Performance: Customizing the frequency bands allows for optimized performance in various environments. Users can minimize interference and maximize throughput by choosing the most suitable frequency band for their specific situation.

4. Future-Proofing: With support for the 6 GHz band, the IPQ5018 motherboard is prepared for future Wi-Fi 6E/7 standards, providing an upgrade path for users as new technologies emerge.

5. Simplified Inventory Management: A single motherboard design that can be customized for different frequency bands reduces the need for multiple product variants, simplifying inventory management and reducing production complexity.

The DR5018S is the ultimate solution for businesses seeking high-performance, flexible, and scalable wireless hardware. Want to learn more or customize a solution for your needs? Contact us today!

sales@wallystech.com

https://www.wallystech.com/Routerboard/DR5018S-wifi6-IPQ5018-2.4G-5G-6G-triband-11ax-MU-MIMO-OFDMA-QCN6122-QCN6102.html

Comments

Popular posts from this blog

Qualcomm's IPQ53XX Series: IPQ5300, IPQ5332, IPQ5322 Comprehensive Analysis

  As wireless networking technology continues to evolve, Qualcomm has introduced the IPQ53XX series chipsets to meet the market’s demand for high-speed, stable, and versatile network devices. This series includes several notable models, with IPQ5300, IPQ5332, and IPQ5322 being key highlights. This article will provide a comprehensive overview of these three chips and their advantages in various networking applications. 1. IPQ5300: The Efficient Mid-Range Choice The IPQ5300 is designed for mid-range network devices and boasts the following key features: Multi-Core Architecture : Equipped with a quad-core CPU, the IPQ5300 is capable of handling network data and multitasking efficiently. WiFi 6 Support : This chip supports the 802.11ax (WiFi 6) standard, offering faster transmission speeds and lower latency, ideal for homes and small offices. Network Acceleration : Includes a built-in network acceleration engine to optimize traffic handling and device performance, ensuring a smooth us...

IPQ4018 vs IPQ5018: Comprehensive Performance Comparison

 ## IPQ4018 vs IPQ5018: Comprehensive Performance Comparison ### Introduction The IPQ4018 and IPQ5018 are both high-performance system-on-chip (SoC) solutions from Qualcomm, designed for wireless networking applications. This article provides a detailed comparison of these two SoCs, examining their performance, features, and suitability for different applications. ### Architecture and Processing Power #### IPQ4018 - **CPU**: Quad-core ARM Cortex-A7 - **Frequency**: Up to 717 MHz - **Process**: 28nm - **Cache**: L2 cache support #### IPQ5018 - **CPU**: Quad-core ARM Cortex-A53 - **Frequency**: Up to 1.0 GHz - **Process**: 28nm - **Cache**: Larger L2 cache compared to IPQ4018 **Comparison**: The IPQ5018 features a more advanced ARM Cortex-A53 architecture, providing better performance per clock cycle and higher overall processing power due to its increased frequency. ### Wireless Capabilities #### IPQ4018 - **Wi-Fi Standards**: 802.11ac Wave 2 - **Bands**: Dual-band (2.4GHz and 5GHz)...

Efficient application of DBDC MT7915+MT7916 in IPQ4019/IPQ4029wifi router|Wallys

  Efficient application of DBDC MT7915+MT7916 in IPQ4019/IPQ4029wifi router|Wallys The difference between MT7915 and MT7916 MT7915 and MT7916 are two Wi-Fi 6 chips launched by MediaTek. Their main difference lies in the process and functional characteristics. First of all, MT7916 adopts a more advanced 6nm process, compared with MT7915 adopts 12nm process, so MT7916 has certain advantages in terms of power consumption and performance. Secondly, in terms of functional characteristics, MT7916 has the following advantages over MT7915: 1. Higher maximum rate: The maximum rate of MT7916 can reach 4.8Gbps, which is higher than 3.6Gbps of MT7915. 2. More spatial streams: MT7916 supports 8x8 MU-MIMO, while MT7915 only supports 4x4 MU-MIMO, so MT7916 has better performance when multiple users transmit data at the same time. 3. More advanced scheduling algorithm: MT7916 supports OFDMA, which can make more effective use of spectrum resources and improve network capacity and throughput. Overal...