QN9090THN/001Z Bluetooth 5.0 SoC Module ?C Wireless MCU in QFN Package

  • This device provides wireless connectivity enabling efficient data transmission for embedded applications.
  • Operates within a specified frequency range, ensuring compatibility with common communication standards.
  • The compact LFCSP package minimizes board space, supporting dense circuit designs and easy integration.
  • Ideal for IoT sensor nodes, enhancing remote monitoring with low latency and dependable signal quality.
  • Manufactured with stringent process controls to maintain consistent performance and long-term reliability.
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QN9090THN/001Z Overview

The QN9090THN/001Z is a highly integrated Bluetooth Low Energy (BLE) System-on-Chip (SoC) designed for industrial-grade wireless applications. It combines a low-power ARM Cortex-M4F microcontroller with advanced RF capabilities, enabling robust and energy-efficient short-range communication. This device supports Bluetooth 5.0 features, ensuring improved data throughput and extended range for complex IoT and sensor network deployments. Ideal for engineers and sourcing specialists, the QN9090THN/001Z delivers a compact solution with rich peripheral sets and flexible power modes to optimize both performance and battery life. For further details, visit IC Manufacturer.

QN9090THN/001Z Technical Specifications

Parameter Specification
Core Processor ARM Cortex-M4F, 48 MHz
Bluetooth Version Bluetooth 5.0 Low Energy
Operating Voltage 1.8 V to 3.6 V
Flash Memory 512 KB Embedded Flash
RAM 192 KB SRAM
RF Output Power Up to +8 dBm
Receiver Sensitivity -95 dBm at 1 Mbps
Package Thin QFN, 32-pin
Temperature Range -40??C to +85??C Industrial Grade

QN9090THN/001Z Key Features

  • ARM Cortex-M4F Core: Enables efficient processing with floating-point support, enhancing application performance and reducing power consumption.
  • Bluetooth 5.0 Support: Provides improved data throughput and extended range, critical for reliable wireless communication in complex industrial environments.
  • Low Power Consumption: Multiple power modes and optimized RF design allow long battery life in portable and remote applications.
  • Integrated Memory: 512 KB flash and 192 KB SRAM deliver ample storage for firmware and application data, supporting feature-rich embedded designs.
  • Robust RF Performance: Up to +8 dBm output power combined with -95 dBm sensitivity ensures strong signal penetration and reliable connectivity.
  • Industrial Temperature Range: Qualified for -40??C to +85??C operation, suitable for harsh environments and industrial-grade applications.
  • Compact Package: Thin QFN 32-pin package allows for space-efficient PCB layouts in compact devices.

QN9090THN/001Z Advantages vs Typical Alternatives

This device offers a compelling combination of high RF output power and excellent receiver sensitivity, surpassing many typical BLE SoCs that trade off range for power consumption. The integrated Cortex-M4F core with floating-point unit enhances computational capabilities, making it more efficient for advanced algorithms. Its industrial temperature rating ensures reliability under harsh conditions, a key advantage over consumer-grade alternatives. Additionally, extensive memory integration reduces external component count, simplifying design and boosting system reliability.

Typical Applications

  • Industrial IoT sensors and actuators requiring robust, low-power wireless connectivity with extended range and reliable data transfer in factory and process automation environments.
  • Wearable devices demanding compact size, low latency, and extended battery life for continuous health monitoring.
  • Smart home devices, including lighting and security systems, benefiting from Bluetooth 5.0??s improved throughput and range.
  • Asset tracking and inventory management systems that require accurate location data and long operating times on battery power.

QN9090THN/001Z Brand Info

The QN9090THN/001Z is brought to market by a leading semiconductor manufacturer renowned for high-quality, reliable wireless SoCs tailored for industrial and IoT applications. This product exemplifies the brand??s commitment to innovation in Bluetooth Low Energy technology, combining advanced RF design with powerful processing capabilities. The brand supports extensive development resources, including software stacks and evaluation kits, enabling rapid implementation and integration into diverse industrial systems.

FAQ

What is the maximum communication range supported by this BLE SoC?

The device supports Bluetooth 5.0, which includes features such as long-range mode. With an RF output power of up to +8 dBm and receiver sensitivity of -95 dBm, it can achieve extended communication ranges suitable for industrial and IoT applications, often surpassing standard BLE modules.

How does the ARM Cortex-M4F core benefit embedded system performance?

The ARM Cortex-M4F core incorporates a floating-point unit that accelerates mathematical computations, which is particularly beneficial for signal processing and control algorithms. This results in faster execution and lower power consumption compared to cores without floating-point support, improving overall system efficiency.

Is this chip suitable for battery-powered applications?

Yes, the chip includes multiple power-saving modes and an optimized RF design that minimize current consumption during both active and sleep states. These features extend battery life, making it well-suited for portable and remote sensor applications.

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产品中间询盘

What temperature range can the device reliably operate within?

The component is rated for industrial-grade operation, supporting temperatures from -40??C to +85??C. This ensures stable performance and reliability in harsh environmental conditions common in industrial and outdoor deployments.

Does the QN9090THN/001Z require external memory components?

The SoC integrates 512 KB of embedded flash memory and 192 KB of SRAM, providing ample on-chip storage for complex firmware and application data. This reduces the need for external memory components, simplifying PCB design and enhancing system reliability.

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