BLUENRG-355AT

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BLUENRG-355AT

PROGRAMMABLE BLUETOOTH LE 5.2 WI

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Спецификации

Package Tape & Reel (TR),Cut Tape (CT)
Series BlueNRG
ProductStatus Active
Type TxRx + MCU
RFFamily/Standard Bluetooth
Protocol Bluetooth v5.2
Modulation GFSK
Frequency 2.4GHz ~ 2.4835GHz
DataRate(Max) 2Mbps
Power-Output 8dBm
Sensitivity -97dBm
MemorySize 256kB Flash, 64kB RAM
SerialInterfaces ADC, GPIO, I²C, I²S, PDM, SPI, USART
GPIO 32
Voltage-Supply 1.7V ~ 3.6V
Current-Receiving 3.4mA
Current-Transmitting 4.3mA
OperatingTemperature -40°C ~ 105°C (TA)
MountingType Surface Mount
Package/Case 32-VFQFN Exposed Pad

Обзор

Description

The BLUENRG-355AT is a Bluetooth Low Energy (BLE) module designed by STMicroelectronics for efficient wireless communication in various applications. It integrates the BlueNRG-2 system-on-chip, featuring a powerful Arm Cortex-M0 core, which supports Bluetooth 5.0 specifications. This module is tailored for low-power operations, making it ideal for battery-operated devices such as wearables, smart home products, and industrial sensors.
Key features of the BLUENRG-355AT include a high RF performance with an integrated antenna, robust security protocols, and flexible, easy-to-use software development tools. It supports a wide range of BLE profiles and custom services, which facilitates quick integration into IoT ecosystems. The module’s small form factor and pre-certification reduce development time and costs, enabling faster time-to-market.
Developers can benefit from the ST BlueNRG SDK, which provides a comprehensive environment for developing custom applications. Overall, the BLUENRG-355AT serves as an efficient solution for developers looking to implement reliable and energy-efficient Bluetooth connectivity in their products.

Features

The BLUENRG-355AT is a Bluetooth Low Energy (BLE) System-on-Chip (SoC) designed for wireless communication in IoT applications. Key features include:
1. Bluetooth 5.2 Support: Offers enhanced data rates and improved range, supporting LE Audio and other advanced BLE features.
2. Low Power Consumption: Optimized for energy efficiency, suitable for battery-operated devices.
3. Integrated MCU: Includes an ARM Cortex-M0+ processor, providing the capability to run user applications directly on the chip.
4. Configurable RF Output: Allows for flexible RF power settings, optimizing for either range or power consumption.
5. Security Features: Incorporates robust security protocols, including AES-128 bit encryption, ensuring secure communication.
6. Peripheral Support: Offers a variety of peripherals like UART, SPI, I2C, and GPIOs for interfacing with sensors and other components.
7. OTA Updates: Supports over-the-air firmware updates, facilitating easy maintenance and upgrades.
8. Small Form Factor: Designed to fit compactly into various applications, from wearables to industrial sensors.
9. Development Tools: Comes with a suite of tools for development, debugging, and testing, making integration straightforward for developers.
Overall, the BLUENRG-355AT is ideal for applications requiring reliable BLE connectivity with low power usage.

Package

The BLUENRG-355AT is typically available in a compact package designed for embedded wireless applications. It's part of STMicroelectronics' BlueNRG series, which are advanced Bluetooth Low Energy (BLE) solutions. The specific package type might vary, but it is generally designed to be small and efficient for integration in various IoT applications. For precise details, consulting the product's datasheet or manufacturer specifications is recommended.

Pinout

The BLUENRG-355AT is a Bluetooth Low Energy (BLE) system-on-chip (SoC) solution from STMicroelectronics. It typically comes in a compact package with a specific pin count and functions designed for wireless communication.
The BLUENRG-355AT is available in a QFN package with 32 pins. These pins provide various functionalities, including:
1. Power Supply Pins: For providing the necessary voltage to the chip.
2. Ground Pins: To ensure proper grounding.
3. RF Pins: For the radio frequency output/input necessary for Bluetooth communication.
4. GPIO Pins: General-purpose input/output pins that can be configured for various functions.
5. UART, SPI, and I2C Interfaces: For communication with other devices.
6. ADC Pins: For analog-to-digital conversion.
7. Reset Pin: To reset the device.
8. Clock Pins: For clock input/output.
These functionalities support the BLUENRG-355AT's role as a BLE solution, offering low power consumption and connectivity features suitable for IoT applications. For precise pin configurations and detailed functions, the datasheet or reference manual should be consulted.

Manufacturer

The BLUENRG-355AT is manufactured by STMicroelectronics. STMicroelectronics is a multinational electronics and semiconductor manufacturer headquartered in Geneva, Switzerland. The company is one of the world's leading semiconductor providers, known for designing and manufacturing a wide range of products, including microcontrollers, sensors, analog devices, and power management components. STMicroelectronics serves various industries such as automotive, industrial, personal electronics, and communications equipment, providing innovative solutions that enable smarter, more energy-efficient products.

Application

The BLUENRG-355AT is used in applications requiring Bluetooth Low Energy (BLE) connectivity. Key areas include smart home devices, health and fitness trackers, industrial automation, and wearable technology. It is also utilized in wireless sensors, remote controls, and beacons due to its low power consumption and robust wireless communication capabilities.

Equivalent

The BLUENRG-355AT is a Bluetooth Low Energy (BLE) system-on-chip (SoC) from STMicroelectronics. Equivalent products typically come from manufacturers like Nordic Semiconductor, Texas Instruments, and Dialog Semiconductor. Comparable options include Nordic Semiconductor's nRF52832, Texas Instruments' CC2640R2F, and Dialog Semiconductor's DA14531. These chips offer similar BLE functionality and are suited for applications like wearables, IoT devices, and wireless sensors. Consider each chip’s specific features, power consumption, and development support when choosing.

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