Overview
The ADF7030-1BSTZN-RL is a highly integrated, high-performance radio transceiver IC produced by Analog Devices Inc. This device is designed to operate in various frequency bands, including 169.4 MHz to 169.6 MHz, 426 MHz to 470 MHz, and 863 MHz to 960 MHz, making it versatile for a range of wireless communication applications. The ADF7030-1 integrates an ARM® Cortex®-M0 processor, which handles radio control, calibration, and packet management, thereby reducing the processing burden on the host processor. This integration of the lower layers of the communication protocol stack enhances the overall efficiency and performance of the system.
Key Specifications
Parameter | Min | Typ | Max | Unit | Comments |
---|---|---|---|---|---|
Supply Voltage | 2.2 | 3.6 | V | ||
Frequency Range | 169.4 MHz | 960 MHz | MHz | Multiple bands: 169.4 MHz to 169.6 MHz, 426 MHz to 470 MHz, 863 MHz to 960 MHz | |
Data Rates | 0.1 kbps | 360 kbps | kbps | 2FSK/2GFSK: 0.1 kbps to 300 kbps, 4FSK/4GFSK: 1 kbps to 360 kbps (transmit only) | |
Receiver Channel Bandwidth | 2.6 kHz | 406 kHz | kHz | Narrow-Band Mode: 2.6 kHz to 20 kHz, Wideband Mode: 77.38 kHz to 406.25 kHz | |
Output Power | -20 dBm | +17 dBm | dBm | Two independent PAs with ultrafine power adjustment (0.1 dB steps) | |
Current Consumption | 25 mA | 65 mA | mA | Receive and transmit modes respectively | |
Package Type | 48-LQFP |
Key Features
- Highly Configurable Receiver: Supports a wide range of receiver channel bandwidths from 2.6 kHz to 406 kHz, enabling ultranarrow-band, narrow-band, and wideband channel spacing.
- Dual Independent Power Amplifiers (PAs): With output power ranges of −20 dBm to +13 dBm and −20 dBm to +17 dBm, and ultrafine power adjustment steps of 0.1 dB.
- ARM® Cortex®-M0 Processor: Integrates radio control, radio calibration, and packet management, reducing the processing burden on the host processor.
- Automatic Power Ramp Control: Limits spectral splatter to meet regulatory standards.
- Robust Performance Over Temperature and Voltage: Ensures reliable operation across various environmental conditions.
- Multiple Modulation Schemes: Supports 2FSK, 2GFSK, 4FSK, and 4GFSK modulation schemes.
Applications
- Wireless Sensor Networks: Ideal for low-power, high-performance wireless sensor networks.
- Industrial Automation: Suitable for industrial automation applications requiring reliable and efficient wireless communication.
- Smart Metering: Used in smart metering systems for remote data collection and transmission.
- Medical Devices: Applicable in medical devices that require low-power and reliable wireless communication.
- IoT Devices: Suitable for various IoT applications that need efficient and reliable wireless connectivity.
Q & A
- What are the operating frequency ranges of the ADF7030-1?
The ADF7030-1 operates in the frequency ranges of 169.4 MHz to 169.6 MHz, 426 MHz to 470 MHz, and 863 MHz to 960 MHz.
- What modulation schemes does the ADF7030-1 support?
The ADF7030-1 supports 2FSK, 2GFSK, 4FSK, and 4GFSK modulation schemes.
- What is the supply voltage range for the ADF7030-1?
The supply voltage range is from 2.2 V to 3.6 V.
- What is the maximum data rate supported by the ADF7030-1?
The maximum data rate is up to 360 kbps for 4FSK/4GFSK (transmit only) and up to 300 kbps for 2FSK/2GFSK.
- What type of processor is integrated into the ADF7030-1?
The ADF7030-1 integrates an ARM® Cortex®-M0 processor.
- What is the current consumption in receive and transmit modes?
The current consumption is approximately 25 mA in receive mode and 65 mA in transmit mode.
- What is the package type of the ADF7030-1BSTZN-RL?
The package type is 48-LQFP.
- What are the key features of the power amplifiers in the ADF7030-1?
The power amplifiers have output power ranges of −20 dBm to +13 dBm and −20 dBm to +17 dBm, with ultrafine power adjustment steps of 0.1 dB.
- How does the ADF7030-1 manage spectral splatter?
The ADF7030-1 features automatic power ramp control to limit spectral splatter and meet regulatory standards.
- What are some typical applications of the ADF7030-1?
Typical applications include wireless sensor networks, industrial automation, smart metering, medical devices, and various IoT devices.