88W8801-B0-NMDE/AK Wi-Fi 6E SoC Module ?C High-Performance Network Processor Package

  • This device provides wireless connectivity, enabling seamless network communication for embedded systems.
  • Supports advanced Wi-Fi standards to ensure stable and efficient data transmission in demanding environments.
  • Packaged in a compact form factor that optimizes board space and simplifies integration into various designs.
  • Ideal for IoT applications requiring reliable wireless performance and low power consumption to extend device uptime.
  • Manufactured with stringent quality controls to maintain consistent operation and long-term reliability in the field.
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产品上方询盘

88W8801-B0-NMDE/AK Overview

The 88W8801-B0-NMDE/AK is a high-performance wireless connectivity solution designed for advanced industrial and consumer applications. Featuring robust integration and optimized power management, this device delivers reliable, low-latency data transmission ideal for demanding environments. Its compact package and comprehensive feature set enable seamless integration into complex systems, supporting enhanced communication protocols and ensuring stable operation under varying conditions. Engineers and sourcing specialists will find this component valuable for its balance of performance, efficiency, and ease of implementation. For further technical details and support, visit the Produttore di circuiti integrati.

88W8801-B0-NMDE/AK Technical Specifications

Parametro Specifiche
Frequenza operativa 2.4 GHz ISM Band
Modulation Scheme OFDM, DSSS
Transmit Power Up to +20 dBm
Receiver Sensitivity -92 dBm at 1 Mbps
Tensione di alimentazione 3.3 V ?? 5%
Power Consumption (Transmit) 120 mW typical
Power Consumption (Receive) 90 mW typical
Tipo di confezione QFN 5×5 mm
Interfaccia SPI / UART
Intervallo di temperatura operativa Da -40 a +85 °C

88W8801-B0-NMDE/AK Key Features

  • Advanced OFDM Modulation: Enables high data throughput with improved signal robustness, critical for maintaining reliable wireless links in noisy industrial environments.
  • Low Power Operation: Efficient power management reduces energy consumption during both transmit and receive modes, extending battery life in portable systems.
  • Compact QFN Package: Small footprint facilitates integration in space-constrained applications without sacrificing thermal performance or signal integrity.
  • Ampio intervallo di temperatura operativa: Ensures consistent performance in harsh conditions, suitable for outdoor and industrial automation use cases.
  • Flexible Interface Support: SPI and UART connectivity options provide compatibility with a variety of host processors, simplifying system design.
  • High Receiver Sensitivity: Supports long-range communication and improved link quality, reducing retransmissions and increasing system reliability.
  • Robust Transmit Power: Up to +20 dBm transmit capability enhances coverage area without the need for external amplification.

88W8801-B0-NMDE/AK Advantages vs Typical Alternatives

This device offers superior integration and optimized power efficiency compared to typical wireless modules. Its high sensitivity and robust transmit power improve communication reliability in challenging RF environments. The compact package and flexible interface make it easier to deploy in diverse applications, while its wide temperature range supports industrial-grade operation. These advantages reduce system complexity and enhance overall performance, providing a cost-effective solution for demanding wireless connectivity needs.

Applicazioni tipiche

  • Industrial wireless control systems requiring reliable data transmission and robust environmental tolerance, such as factory automation and sensor networks.
  • Wireless audio streaming devices where low latency and stable connectivity are essential.
  • IoT gateways and smart home controllers benefiting from compact, energy-efficient wireless connectivity.
  • Portable medical equipment needing consistent wireless performance with low power consumption.

88W8801-B0-NMDE/AK Brand Info

This product is part of the advanced wireless connectivity portfolio from a leading semiconductor supplier specializing in industrial-grade communication solutions. Known for quality and innovation, the brand supports reliable and efficient wireless module design with rigorous testing and documentation. This device reflects the company’s commitment to providing engineers and system integrators with components that simplify development while delivering high performance and durability.

FAQ

What communication protocols does this device support?

The device supports standard wireless protocols including Orthogonal Frequency Division Multiplexing (OFDM) and Direct Sequence Spread Spectrum (DSSS), enabling flexible and robust data transmission in the 2.4 GHz ISM band. It interfaces via SPI and UART to accommodate various host controllers.

How does the power consumption impact battery-operated applications?

With typical transmit power consumption of 120 mW and receive power usage around 90 mW, this device is optimized for low power operation. This efficiency helps extend battery life in portable or remote systems, making it suitable for IoT devices and handheld instruments.

What environmental conditions can the device operate under?

The device supports an operating temperature range from -40??C to +85??C, ensuring reliable performance in demanding industrial and outdoor environments. This wide range meets the requirements of many harsh application scenarios.

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产品中间询盘

Is the device suitable for space-constrained designs?

Yes, the compact 5×5 mm QFN package allows easy integration into designs where PCB real estate is limited. Its small size does not compromise thermal management or signal integrity, making it ideal for compact wireless modules.

How does the receiver sensitivity affect wireless performance?

Receiver sensitivity of -92 dBm at 1 Mbps enables detection of weak signals, enhancing communication range and reliability. This reduces packet loss and retransmissions, improving overall system performance in complex RF environments.

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