Manufacturer Part Number
WL1835MODGBMOCT
Manufacturer
Texas Instruments
Introduction
The WL1835MODGBMOCT is a highly integrated, low-power RF transceiver module that supports both Bluetooth and Wi-Fi connectivity. It is designed to enable wireless communication in a wide range of applications.
Product Features and Performance
Supports Bluetooth 4.2 and Wi-Fi 802.11b/g/n
Operating frequency of 2.4GHz
Transmit power up to 17.3dBm
Receive sensitivity up to -96.3dBm
Data rates up to 54Mbps
Modulation schemes: CCK, DSSS, GFSK, OFDM
Operates on a supply voltage of 2.9V to 4.8V
Transmit current consumption: 238mA to 420mA
Receive current consumption: 49mA to 85mA
Operating temperature range: -20°C to 70°C
Product Advantages
Highly integrated design for reduced system complexity
Low power consumption for extended battery life
Robust wireless connectivity with support for multiple standards
Flexible interface options with SDIO and UART support
Key Technical Parameters
Frequency: 2.4GHz
Supply Voltage: 2.9V to 4.8V
Transmit Power: 17.3dBm
Receive Sensitivity: -96.3dBm
Data Rate: Up to 54Mbps
Modulation: CCK, DSSS, GFSK, OFDM
Quality and Safety Features
RoHS3 compliant
Tape and reel packaging for Surface Mount assembly
Compatibility
Supports Bluetooth 4.2 and Wi-Fi 802.11b/g/n
Application Areas
Wireless communication in consumer electronics
Industrial automation and control systems
Smart home and IoT devices
Medical and healthcare equipment
Automotive infotainment systems
Product Lifecycle
The WL1835MODGBMOCT is an active product, and Texas Instruments continues to provide support and availability.
Replacement or upgrade options may be available, but specific details should be checked with the manufacturer.
Key Reasons to Choose This Product
Robust wireless connectivity with support for both Bluetooth and Wi-Fi
Low power consumption for improved battery life
Flexible interface options for easy integration into various systems
Compact and integrated design for reduced system complexity
RoHS3 compliance for environmental sustainability