QN9030HN/001Y Overview
The QN9030HN/001Y is a high-performance Bluetooth Low Energy (BLE) system-on-chip (SoC) designed for advanced wireless connectivity applications. It integrates a powerful ARM Cortex-M33 processor with comprehensive radio features, enabling robust and efficient communication in industrial and consumer environments. This device supports Bluetooth 5.1 standard, offering enhanced range, data throughput, and improved coexistence with other wireless technologies. With low power consumption and flexible peripheral interfaces, it is ideal for battery-powered devices requiring reliable connectivity and advanced security features. For detailed technical support and purchasing options, visit IC Manufacturer.
QN9030HN/001Y Technical Specifications
| Parameter | Specification |
|---|---|
| Processor Core | ARM Cortex-M33, 64 MHz |
| Bluetooth Version | Bluetooth 5.1 Low Energy |
| Memory | 512 KB Flash, 192 KB RAM |
| Radio Frequency | 2.4 GHz ISM Band |
| Transmit Power | Up to +8 dBm |
| Receiver Sensitivity | -95 dBm (1 Mbps) |
| Power Supply | 1.8 V to 3.6 V |
| Package | QFN 7×7 mm, 48 pins |
QN9030HN/001Y Key Features
- High-efficiency ARM Cortex-M33 core: Enables fast processing with low energy consumption, supporting complex applications with minimal power usage.
- Bluetooth 5.1 support: Provides improved data throughput, extended range, and enhanced device location accuracy, critical for modern wireless systems.
- Integrated radio with high sensitivity: Ensures reliable wireless communication even in noisy industrial environments, reducing data loss and retransmissions.
- Ample memory resources: 512 KB Flash and 192 KB RAM allow for sophisticated firmware, over-the-air updates, and secure application development.
- Low power operation modes: Multiple sleep states help maximize battery life in portable and IoT devices.
- Flexible peripheral interfaces: Support for SPI, I2C, UART, and ADC facilitates easy integration with a variety of sensors and external components.
- Robust security features: Hardware-based encryption and secure boot protect intellectual property and ensure data integrity.
QN9030HN/001Y Advantages vs Typical Alternatives
This device offers superior radio sensitivity and processing power compared to typical BLE chips, enabling longer range and more reliable connections. Its low power consumption and extensive memory resources allow for advanced application development without sacrificing battery life. The integration of multiple flexible interfaces and robust security measures make it an excellent choice over standard alternatives for industrial-grade wireless solutions.
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Typical Applications
- Industrial IoT sensor networks requiring secure, low-latency wireless communication with extended battery life and robust interference immunity.
- Wearable health devices demanding compact size, low power consumption, and reliable Bluetooth data transfer.
- Smart home automation systems benefiting from long-range connectivity and secure device pairing.
- Asset tracking solutions leveraging Bluetooth 5.1 location features for accurate positioning and monitoring.
QN9030HN/001Y Brand Info
This product is part of a leading semiconductor manufacturer??s portfolio focused on cutting-edge wireless connectivity solutions. It embodies the company??s commitment to delivering high-quality, energy-efficient Bluetooth SoCs tailored for demanding industrial and consumer applications. The chip benefits from a well-established ecosystem, including comprehensive software development kits, reference designs, and technical support, enabling rapid product development and deployment.
FAQ
What wireless standards does this SoC support?
The device supports Bluetooth Low Energy according to the Bluetooth 5.1 specification. This includes features such as improved data throughput, extended range, and enhanced location services suitable for modern wireless applications.
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How does the processor core impact device performance?
The integrated ARM Cortex-M33 running at 64 MHz provides a balance of high computational power and low energy consumption. This allows developers to implement complex algorithms and run multiple tasks efficiently while preserving battery life.
What are the power supply requirements for this chip?
It operates on a supply voltage ranging from 1.8 V to 3.6 V, making it suitable for various battery-powered and embedded systems. This voltage flexibility aids in integration with different power management schemes.
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Which peripheral interfaces are available for integration?
The chip includes multiple interfaces such as SPI, I2C, UART, and ADC. These allow seamless connection to sensors, memory, user interfaces, and other external devices, facilitating versatile application development.
What security features are implemented in this wireless SoC?
The device incorporates hardware-based encryption engines and supports secure boot mechanisms. These features safeguard firmware integrity and prevent unauthorized access, which is essential for secure IoT and industrial applications.





