ATWINC1510B-MU-Y042 Wi-Fi Module with Integrated TCP/IP Stack, QFN Package

  • Provides Wi-Fi connectivity enabling seamless wireless communication for embedded systems and IoT devices.
  • Supports standard wireless protocols to ensure compatibility and reliable network performance in various environments.
  • Features a compact LFCSP package, allowing efficient use of board space in size-constrained applications.
  • Ideal for smart home or industrial automation, enhancing device interconnectivity and remote control capabilities.
  • Manufactured with stringent quality controls to maintain consistent operation and long-term reliability under typical conditions.
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产品上方询盘

ATWINC1510B-MU-Y042 Overview

The ATWINC1510B-MU-Y042 is a highly integrated Wi-Fi module designed for seamless wireless connectivity in embedded systems. It combines a compact form factor with low power consumption, making it ideal for industrial and IoT applications where reliable communication and energy efficiency are critical. Supporting IEEE 802.11 b/g/n standards, this module offers robust performance with built-in security protocols and flexible interfaces for easy integration. Engineers and sourcing specialists will find it well-suited for devices requiring stable Wi-Fi connectivity and straightforward implementation. More details are available through IC Manufacturer.

ATWINC1510B-MU-Y042 Technical Specifications

Parameter Specification
Wi-Fi Standard IEEE 802.11 b/g/n (2.4 GHz)
Operating Voltage 3.3 V ?? 10%
Transmit Power Up to +18 dBm (typical)
Receiver Sensitivity -92 dBm @ 1 Mbps (802.11b)
Security Protocols WPA, WPA2, WEP, TKIP, AES
Interfaces SPI, UART, I2C
Operating Temperature Range -40??C to +85??C
Dimensions 14.0 mm ?? 14.0 mm ?? 1.8 mm
Power Consumption Transmit: 190 mA (max), Receive: 60 mA (typical)
Certifications FCC, CE, IC

ATWINC1510B-MU-Y042 Key Features

  • Integrated Wi-Fi Stack: Enables simplified network connectivity by embedding a full TCP/IP stack, reducing host processor load and accelerating development time.
  • Low Power Consumption: Optimized for battery-powered applications, the module??s efficient power profile extends device operational life without compromising performance.
  • Multiple Communication Interfaces: Supports SPI, UART, and I2C, providing flexible integration options for diverse embedded system architectures.
  • Robust Security Support: Incorporates advanced Wi-Fi security protocols including WPA2 and AES encryption to ensure secure wireless communication.
  • Compact and Rugged Package: Its small footprint and wide temperature range make it suitable for industrial-grade applications requiring high reliability.
  • High Receiver Sensitivity: Enhances wireless range and connection stability even in challenging RF environments, improving overall system reliability.
  • Regulatory Certifications: Pre-certified for global markets (FCC, CE, IC), facilitating faster time-to-market by minimizing approval delays.

ATWINC1510B-MU-Y042 Advantages vs Typical Alternatives

This module offers superior integration by combining a complete Wi-Fi solution and embedded TCP/IP stack, reducing external component requirements versus typical discrete modules. Its enhanced receiver sensitivity and optimized power consumption deliver better wireless range and longer battery life. The broad interface support ensures versatile compatibility, while industrial-grade temperature tolerance and global certifications provide reliable performance in demanding environments.

Typical Applications

  • Industrial IoT Gateways: Facilitates robust wireless communication for data aggregation and control in factory automation and monitoring systems, ensuring reliable connectivity in harsh industrial settings.
  • Smart Home Devices: Enables secure and efficient Wi-Fi connectivity for appliances, lighting, and security products requiring low power consumption and easy integration.
  • Wireless Sensor Networks: Ideal for battery-powered sensors that need stable wireless links and extended operational lifetime in remote locations.
  • Embedded Wireless Modules: Suitable for OEM designs requiring compact, certified Wi-Fi solutions that reduce development complexity and accelerate product time-to-market.

ATWINC1510B-MU-Y042 Brand Info

The ATWINC1510B-MU-Y042 is part of the ATWINC family of wireless modules offered by a leading semiconductor provider specializing in embedded connectivity solutions. This product line is renowned for its balance of performance, low power consumption, and ease of integration. Designed to meet industrial and commercial requirements, the module supports comprehensive security protocols and global certifications, underscoring the brand??s commitment to delivering high-quality, reliable wireless components for embedded applications.

FAQ

What Wi-Fi standards does this module support?

The device supports IEEE 802.11 b/g/n standards operating in the 2.4 GHz frequency band. This ensures compatibility with most existing Wi-Fi networks and devices, allowing flexible deployment in various wireless environments.

Which communication interfaces are available for integration?

It offers multiple interfaces, including SPI, UART, and I2C, providing engineers with versatile options for connecting to microcontrollers or processors depending on system requirements and design constraints.

What power consumption can be expected during operation?

Typical power consumption under transmit mode can reach up to 190 mA, while receive mode typically draws around 60 mA. These figures support efficient operation in battery-powered or energy-sensitive applications.

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Is the module suitable for industrial temperature ranges?

Yes, the module is rated for an operating temperature range from -40??C to +85??C, making it reliable for use in harsh industrial environments and outdoor applications where temperature extremes are common.

Are security features included in the module?

The module integrates advanced security protocols such as WPA, WPA2, WEP, TKIP, and AES encryption. This ensures secure wireless communication, protecting data integrity and preventing unauthorized access in connected systems.

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