CYW20835PB1KML1GGFT Overview
The CYW20835PB1KML1GGFT is a highly integrated Bluetooth 5.0 wireless microcontroller designed for industrial and commercial applications requiring reliable, low-power connectivity. Featuring a robust RF transceiver and an ARM Cortex-M4 processor core, this component delivers advanced wireless protocol support and efficient processing in a compact QFN-40 package. Its combination of low energy consumption, versatile interface integration, and adaptable performance makes it a trusted solution for demanding wireless communication projects. Learn more at IC Manufacturer.
CYW20835PB1KML1GGFT Technical Specifications
| Parameter | Value |
|---|---|
| Bluetooth Version | Bluetooth 5.0 |
| Processor Core | ARM Cortex-M4 |
| Operating Voltage | 1.71V ÿ 3.63V |
| Package Type | QFN-40 |
| RF Transceiver | Integrated |
| Interface Options | UART, SPI, I2C, PWM, ADC |
| Temperature Range | -40??C to +85??C |
| Pin Count | 40 |
CYW20835PB1KML1GGFT Key Features
- Integrated Bluetooth 5.0 support ensures robust wireless connectivity, increasing data throughput and extending transmission range for industrial IoT devices.
- ARM Cortex-M4 processing core offers efficient computation and real-time control, optimizing performance for embedded applications and minimizing latency.
- Low power design significantly extends battery life, making it ideal for portable and energy-sensitive designs where operational longevity is critical.
- Versatile peripheral interfaces??including UART, SPI, I2C, PWM, and ADC??enable seamless integration with a wide range of sensors and external devices, simplifying system development.
CYW20835PB1KML1GGFT Advantages vs Typical Alternatives
This device stands out with its advanced Bluetooth 5.0 capabilities, which provide improved range and higher data rates compared to older Bluetooth modules. The combination of an ARM Cortex-M4 core and integrated RF transceiver enhances processing efficiency and wireless performance, while the low power profile supports extended operation in battery-powered applications. Its compact QFN-40 package further facilitates dense PCB layouts and space-constrained designs, all while delivering reliable industrial-grade operation.
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Typical Applications
- Industrial wireless sensor nodes: The microcontroller??s robust Bluetooth 5.0 connectivity and industrial temperature range make it suitable for distributed sensor networks requiring reliable, low-power communication in harsh environments.
- Wearable health and fitness devices: Its low energy consumption and small package are ideal for compact, battery-operated medical monitoring products where wireless data transmission is essential.
- Asset tracking and logistics: Utilization in asset tags and tracking beacons benefits from the device??s extended range and energy efficiency, enabling continuous operation and precise location reporting.
- Smart home controllers and automation: The component??s versatile interface options and real-time processing support seamless integration into home automation hubs, remote controls, and wireless appliance modules.
CYW20835PB1KML1GGFT Brand Info
CYW20835PB1KML1GGFT is a part of a proven wireless microcontroller lineup recognized for its balance of performance, integration, and reliability. This specific model embodies advanced Bluetooth technology and efficient ARM processing, targeting industrial, consumer, and IoT sectors. Its robust design and comprehensive interface support provide engineers and designers with a flexible, future-ready platform for next-generation wireless applications, ensuring compatibility and long-term availability in demanding environments.
FAQ
What are the primary benefits of using the CYW20835PB1KML1GGFT in industrial applications?
The main benefits include reliable Bluetooth 5.0 connectivity, wide temperature range support, and low power operation. These features combine to deliver robust wireless communication and long-term stability in challenging industrial environments.
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Which interfaces are available for integrating external devices?
This device supports multiple standard interfaces such as UART, SPI, I2C, PWM, and ADC. These interfaces simplify the connection of various sensors, actuators, and external modules, making the component highly adaptable to diverse application requirements.
How does the low power design impact battery-operated products?
The low power architecture is engineered to maximize energy efficiency, significantly extending battery life in portable and wireless devices. This characteristic is essential for applications where frequent battery replacement or recharging is impractical.
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What package type and pin count are offered, and how does this influence PCB design?
The QFN-40 package provides a compact footprint with 40 pins, facilitating high-density PCB layouts. This form factor is especially valuable in designs with limited board space, supporting advanced functionality without increasing overall device size.
Can the CYW20835PB1KML1GGFT operate in harsh environmental conditions?
Yes, the component operates across a temperature range of -40??C to +85??C, making it suitable for both industrial and outdoor applications where temperature extremes are common. Its robust construction ensures dependable performance under demanding conditions.





