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AT86RF212-ZU
+物料清單IC RF TXRX+MCU 802.15.4 32VFQFN
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製造商微芯片科技
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製造商部分 #AT86RF212-ZU
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有存貨3995
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90-日售後保障
正品保證
規格
| 屬性 | 價值 |
| Package | Tray |
| ProductStatus | Obsolete |
| Type | TxRx + MCU |
| RFFamily/Standard | 802.15.4, General ISM < 1GHz |
| Protocol | 6LoWPAN, Zigbee® |
| Modulation | DSSS, BPSK, O-QPSK |
| Frequency | 769MHz ~ 935MHz |
| DataRate(Max) | 1Mbps |
| Power-Output | 10dBm |
| Sensitivity | -110dBm |
| MemorySize | 128B SRAM |
| SerialInterfaces | SPI |
| Voltage-Supply | 1.8V ~ 3.6V |
| Current-Receiving | 8.7mA ~ 9.2mA |
| Current-Transmitting | 13mA ~ 25mA |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 32-VFQFN Exposed Pad |
概述
Description
Key features of the AT86RF212-ZU include support for various data rates up to 100 kbps, adjustable output power up to 10 dBm, and a high receiver sensitivity, enhancing both range and reliability. The transceiver offers robust features like enhanced link budget, AES-128 encryption for secure data transmissions, and multiple modes of operation to optimize power consumption.
The device is typically integrated with microcontrollers to form complete wireless solutions. It provides an SPI interface for configuration and data exchange, enabling seamless integration with various microcontrollers. The AT86RF212-ZU is designed to deliver efficient, reliable, and secure wireless communication for a wide range of low-power applications.
Equivalent
1. Texas Instruments CC1120: Offers similar performance for sub-GHz applications.
2. Silicon Labs Si4463: Provides a flexible, low-power transceiver for various sub-GHz bands.
3. Semtech SX1276: Supports long-range communication in the sub-GHz frequency range.
4. TI CC1101: A low-power RF transceiver for sub-1 GHz ISM bands.
These alternatives provide similar functionalities for wireless communication in sub-GHz frequencies.
Features
1. Frequency Range: Operates in the 700-1000 MHz range, supporting various regional standards.
2. Modulation: Supports BPSK and O-QPSK modulation schemes, providing flexibility for different data rate requirements.
3. Data Rates: Capable of data rates up to 100 kbps for BPSK and 250 kbps for O-QPSK.
4. Low Power Consumption: Designed for minimal power usage, suitable for battery-operated devices and energy-efficient applications.
5. Range: Offers extended range capabilities due to its sub-GHz frequency operation, useful for applications requiring longer transmission distances.
6. Integrated Features: Includes features like an antenna diversity mechanism, link quality indicator (LQI), and clear channel assessment (CCA) for improved communication performance.
7. Interfaces: Provides an SPI interface for easy integration with microcontrollers.
8. Robust Design: Built for reliable performance in various environmental conditions, making it ideal for industrial and commercial applications.
These features make the AT86RF212-ZU suitable for applications like smart metering, home automation, and industrial monitoring.
Pinout
Key features and pin functions include:
- Power and Ground Pins: Supply voltage (VCC) and ground (GND) pins provide the necessary power for the transceiver.
- RF Pins: These are connected to an antenna for wireless transmission and reception.
- SPI Interface Pins: Standard SPI (Serial Peripheral Interface) pins (MOSI, MISO, SCK, CS) are used for communication with the microcontroller.
- Control Pins: Include RESET, and other control signals for device configuration and operation.
- Clock Input: A pin for an external clock source if needed.
- Miscellaneous Pins: Additional pins for test, debugging, and specific configuration purposes.
The AT86RF212-ZU is optimized for low power consumption and supports various modulation schemes, making it suitable for applications in long-range wireless communication systems.
Manufacturer
Application
1. Industrial Automation: Facilitating wireless sensor networks and remote control systems.
2. Smart Metering: Enabling communication for utility meters in smart grid applications.
3. Home and Building Automation: Supporting systems like HVAC control, lighting, and security.
4. Agricultural Monitoring: Providing connectivity for sensors in precision agriculture.
5. Wireless Sensor Networks: Offering low-power connectivity for various IoT applications.
6. Health Monitoring: Used in medical devices for wireless data transmission.
Its low power consumption and robust performance make it suitable for long-range, battery-operated devices.