Product description
The MTK MT6186W/B is an advanced RF transceiver that combines precision, efficiency, and versatility in a single package. Designed with a focus on minimizing system complexity, it reduces the need for additional components, enabling designers to create compact and lightweight products.
The transceiver features a highly linear RF front-end architecture, ensuring superior performance in noise-prone environments. Its integrated synthesizer offers rapid frequency switching, which is crucial for applications requiring dynamic channel hopping.
Moreover, the MT6186W/B’s high selectivity filters ensure minimal interference from adjacent channels, making it ideal for crowded frequency bands. The low power design extends battery life in portable devices, a key requirement in wearable technologies, smart meters, and handheld communication devices.
Another standout aspect is its compatibility with multiple communication protocols, simplifying its deployment in varied ecosystems. It is highly programmable, with software-configurable parameters allowing precise tuning and optimization for application-specific requirements.
In summary, the MTK MT6186W/B is a cutting-edge solution for developers seeking a cost-effective, high-performance RF transceiver for modern wireless communication devices. Its features and capabilities position it as a preferred choice for next-generation wireless applications.
Specification parameters
Frequency Range: 88 MHz to 108 MHz (FM band support)
Modulation Support: FM, AM
Input Sensitivity: High sensitivity, typically < -110 dBm
Channel Selectivity: > 60 dB
Output Power: Configurable output levels to suit application-specific needs
Supply Voltage: Operates efficiently between 2.7V to 3.6V
Current Consumption: Ultra-low standby current (< 1 mA) and active operation current < 50 mA
Package Type: Compact QFN package for space-constrained applications
Temperature Range: -40°C to +85°C, suitable for industrial-grade applications
Interface Options: SPI, I2C for seamless integration with microcontrollers and processors