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MC13213
IC RF TXRX+MCU 802.15.4 71LGA
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規格
| Part Status | Obsolete |
| Base Product Number | MC132 |
| DigiKey Programmable | Not Verified |
| Type | TxRx + MCU |
| RF Family/Standard | 802.15.4 |
| Protocol | Zigbee® |
| Modulation | DSSS, O-QPSK |
| Frequency | 2.4GHz |
| Data Rate (Max) | 250kbps |
| Power - Output | 3dBm |
| Sensitivity | -92dBm |
| Memory Size | 60kB Flash, 4kB RAM |
| Serial Interfaces | I2C, SPI |
| Voltage - Supply | 2V ~ 3.4V |
| Current - Receiving | 37mA |
| Current - Transmitting | 30mA |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Surface Mount |
| Package | 71-VFLGA Exposed Pad |
| Supplier Device Package | 71-LGA (9x9) |
| Packaging | Tray |
| GPIO | 32 |
概述
Description
MC13213 is a highly integrated system-on-chip (SoC) designed for mobile applications, particularly in the field of wireless communications. It typically features a combination of microcontrollers, radio transceivers, and various peripherals that support a wide range of connectivity options, including Bluetooth, Zigbee, or other wireless protocols. The architecture is optimized for low power consumption, making it suitable for battery-operated devices.
One of the key advantages of MC13213 is its ability to facilitate rapid development of wireless applications, offering developers a robust platform for creating smart devices and IoT applications. It generally supports various development tools and environments, allowing for efficient programming and debugging.
The chip's versatile functionality, combined with its low-energy operation, makes it a popular choice for applications such as home automation, health monitoring, and industrial control systems. Overall, MC13213 serves as a foundational component in the growing landscape of connected devices.
One of the key advantages of MC13213 is its ability to facilitate rapid development of wireless applications, offering developers a robust platform for creating smart devices and IoT applications. It generally supports various development tools and environments, allowing for efficient programming and debugging.
The chip's versatile functionality, combined with its low-energy operation, makes it a popular choice for applications such as home automation, health monitoring, and industrial control systems. Overall, MC13213 serves as a foundational component in the growing landscape of connected devices.
Features
The MC13213 is a low-power, highly integrated microcontroller designed for wireless applications, particularly in the field of low-power radio frequency (RF) systems. Key features include:
1. Integrated Transceiver: Built-in 2.4 GHz RF transceiver for wireless communication, supporting protocols like IEEE 802.15.4.
2. Microcontroller Core: Based on an ARM Cortex-M3 architecture, offering efficient processing capabilities with low power consumption.
3. Memory: Flash memory for code storage and SRAM for data handling.
4. Analog Interfaces: Includes ADCs (Analog-to-Digital Converters) for sensor interfacing and similar applications.
5. Low Power Modes: Enhanced power management features allowing various low-power operating modes to extend battery life.
6. Peripheral Support: Multiple GPIOs, timers, and communication interfaces (UART, SPI, I2C) for hardware connectivity.
7. Development Support: Supported by development tools and software frameworks for rapid application development.
Overall, the MC13213 is well-suited for applications in home automation, industrial control, and other low-power wireless systems.
1. Integrated Transceiver: Built-in 2.4 GHz RF transceiver for wireless communication, supporting protocols like IEEE 802.15.4.
2. Microcontroller Core: Based on an ARM Cortex-M3 architecture, offering efficient processing capabilities with low power consumption.
3. Memory: Flash memory for code storage and SRAM for data handling.
4. Analog Interfaces: Includes ADCs (Analog-to-Digital Converters) for sensor interfacing and similar applications.
5. Low Power Modes: Enhanced power management features allowing various low-power operating modes to extend battery life.
6. Peripheral Support: Multiple GPIOs, timers, and communication interfaces (UART, SPI, I2C) for hardware connectivity.
7. Development Support: Supported by development tools and software frameworks for rapid application development.
Overall, the MC13213 is well-suited for applications in home automation, industrial control, and other low-power wireless systems.
Package
The MC13213 is typically available in a 48-pin LQFP (Low Profile Quad Flat Package) format. This package type features a low profile and multiple pins on all four sides, facilitating surface-mount technology (SMT) for compact design and efficient thermal performance.
Pinout
The MC13213 is a low-power, integrated circuit designed for wireless applications, particularly in the 2.4 GHz ISM band. It features a total of 32 pins.
Key functions of the pins include:
1. Power Supply: Pins for VDD and ground connection.
2. RF Transceiver: Pins for antenna connection and RF signal management.
3. Digital Interfaces: GPIO (General Purpose Input/Output) pins for interfacing with other components.
4. Serial Communication: SPI (Serial Peripheral Interface) pins for communication with microcontrollers or other devices.
5. Clock: Pins for connecting an external clock source.
6. Reset: A pin for resetting the device.
The MC13213 is designed for applications in sensor networks, home automation, and other low-power wireless communication scenarios. Its integrated features facilitate compact designs and efficient energy use.
Key functions of the pins include:
1. Power Supply: Pins for VDD and ground connection.
2. RF Transceiver: Pins for antenna connection and RF signal management.
3. Digital Interfaces: GPIO (General Purpose Input/Output) pins for interfacing with other components.
4. Serial Communication: SPI (Serial Peripheral Interface) pins for communication with microcontrollers or other devices.
5. Clock: Pins for connecting an external clock source.
6. Reset: A pin for resetting the device.
The MC13213 is designed for applications in sensor networks, home automation, and other low-power wireless communication scenarios. Its integrated features facilitate compact designs and efficient energy use.
Manufacturer
The MC13213 is manufactured by NXP Semiconductors, a global semiconductor company that specializes in embedded applications. NXP was formed in 2006 as a spin-off from Philips and has since become a prominent player in the field of automotive, industrial, and Internet of Things (IoT) solutions. The MC13213 is a low-power, highly integrated microcontroller that incorporates radio transceiver capabilities, particularly designed for wireless applications. NXP focuses on providing secure connectivity solutions and is recognized for its innovations in various sectors, including automotive electronics, smart devices, and secure identification.
Application
The MC13213 is a low-power, highly integrated microcontroller with a built-in RF transceiver, primarily used in wireless sensor networks, smart home applications, remote controls, and industrial monitoring systems. Its features support applications requiring low power consumption, such as energy-efficient smart metering, asset tracking, and home automation. It is also utilized in medical devices and IoT applications where reliable communication and minimal power usage are essential.
Equivalent
The MC13213 chip, a low-power microcontroller with an integrated RF transceiver, has several equivalent products, including:
1. Microchip's RN2483 - LoRa module with MCU.
2. Semtech's SX1276 - LoRa transceiver, requires external MCU.
3. NXP's Kinetis KW41Z - Dual-mode wireless MCU with BLE and IEEE 802.15.4.
4. Texas Instruments' CC1350 - Multi-band wireless MCU for sub-1 GHz and Bluetooth.
These alternatives vary in features and power consumption, so selection depends on specific application requirements.
1. Microchip's RN2483 - LoRa module with MCU.
2. Semtech's SX1276 - LoRa transceiver, requires external MCU.
3. NXP's Kinetis KW41Z - Dual-mode wireless MCU with BLE and IEEE 802.15.4.
4. Texas Instruments' CC1350 - Multi-band wireless MCU for sub-1 GHz and Bluetooth.
These alternatives vary in features and power consumption, so selection depends on specific application requirements.
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