AT86RF215IQ-ZUR Overview
The AT86RF215IQ-ZUR is a highly integrated dual-band transceiver designed to support IEEE 802.15.4g and proprietary protocols in the sub-1 GHz and 2.4 GHz frequency bands. Featuring a single-chip architecture, it enables robust wireless communication with low power consumption and enhanced sensitivity. This device is optimized for industrial, scientific, and medical applications requiring reliable long-range connectivity and multi-standard support. Its advanced RF front-end and digital baseband processing capabilities ensure efficient modulation and demodulation, making it an ideal choice for engineers and sourcing specialists seeking a versatile wireless solution. For more details, visit IC Manufacturer.
AT86RF215IQ-ZUR Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Bands | Sub-1 GHz (169, 315, 433, 868, 915 MHz) and 2.4 GHz ISM bands |
| Modulation Support | O-QPSK, OFDM (802.15.4g), BPSK, ASK, FSK |
| Maximum Data Rate | Up to 2 Mbps (2.4 GHz), 800 kbps (Sub-1 GHz) |
| Receiver Sensitivity | -105 dBm (typical at 50 kbps) |
| Transmit Power | Up to +12 dBm output power |
| Power Supply | 1.8 V to 3.6 V |
| Interface | SPI up to 10 MHz, digital control pins |
| Package | QFN 7×7 mm, 48-pin |
| Operating Temperature | -40??C to +85??C |
AT86RF215IQ-ZUR Key Features
- Dual-band transceiver: Supports simultaneous operation in sub-1 GHz and 2.4 GHz ISM bands, providing flexibility for multi-protocol wireless applications.
- Advanced modulation schemes: Enables robust communication with O-QPSK and OFDM for compliance with IEEE 802.15.4g standards, improving data integrity in noisy environments.
- Low power operation: Optimized design reduces current consumption during transmit and receive modes, extending battery life in portable and remote devices.
- Integrated RF front-end: Minimizes external components and PCB footprint, facilitating compact designs and reducing overall system cost.
AT86RF215IQ-ZUR Advantages vs Typical Alternatives
This device offers superior receiver sensitivity and dual-band capability compared to typical single-band transceivers, enabling longer communication ranges and enhanced network reliability. Its integrated RF front-end and flexible modulation support reduce design complexity and power consumption, making it more efficient and reliable for industrial and IoT applications.
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Typical Applications
- Smart grid and metering infrastructure: Enables reliable wireless communication over long distances in challenging industrial environments, supporting smart energy management systems.
- Wireless sensor networks: Suitable for multi-protocol sensor nodes requiring low power and robust connectivity in both sub-1 GHz and 2.4 GHz bands.
- Home and building automation: Facilitates seamless device interconnection with secure and efficient wireless links.
- Industrial monitoring and control: Supports real-time data transmission and remote device management in factory automation settings.
AT86RF215IQ-ZUR Brand Info
Produced by a leading semiconductor manufacturer specializing in wireless connectivity solutions, this transceiver is part of a comprehensive portfolio targeting industrial IoT and smart infrastructure markets. The product combines cutting-edge RF technology with extensive protocol support to meet evolving wireless communication demands. Its design emphasizes reliability, low power consumption, and ease of integration, aligning with the company??s commitment to enabling next-generation connected systems.
FAQ
What frequency bands does this transceiver support?
It supports dual-band operation in the sub-1 GHz (169, 315, 433, 868, 915 MHz) and 2.4 GHz ISM frequency bands, enabling flexible deployment across various regional and application-specific wireless standards.
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Which modulation schemes are compatible with this device?
This transceiver supports multiple modulation types including O-QPSK and OFDM compliant with IEEE 802.15.4g, as well as BPSK, ASK, and FSK, allowing for robust communication in diverse wireless network environments.
What is the typical receiver sensitivity of the transceiver?
The device achieves a receiver sensitivity down to -105 dBm at 50 kbps, which ensures reliable signal reception even in low signal strength scenarios, enhancing communication range and network stability.
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How does the device manage power consumption?
It incorporates design optimizations that minimize current draw during both transmit and receive operations, supporting battery-powered and energy-efficient applications by extending operational lifetime.
What package options are available for this transceiver?
The product is available in a compact 48-pin QFN package measuring 7×7 mm, suitable for space-constrained designs and facilitating high-density PCB layouts.






