CC430F5133IRGZR
SOC MSP430 48-Pin VQFN EP T/RCC430F5133IRGZR
SOC MSP430 48-Pin VQFN EP T/R
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Manufacturer Part # : CC430F5133IRGZR
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Package/Case: VQFN-48
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Brand: Texas Instruments
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CC430F5133IRGZR DataSheet

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CC430F5133IRGZR Details
The CC430F5133IRGZR is a highly integrated wireless microcontroller from Texas Instruments, combining an ultra-low-power MCU with a high-performance RF transceiver. This device is ideal for applications requiring both processing power and wireless communication capabilities. It features a wide operating voltage range, low power consumption, and advanced peripherals for enhanced functionality.
Pinout
- 1 (VDD): Power Supply Voltage
- 2 (RESET): Reset Pin
- 3 (TEST): Test Pin
- 4 (RSTn/NMI): Reset/NMI Pin
- 5 (P2.0): General-Purpose I/O Pin
- 6 (P2.1): General-Purpose I/O Pin
- 7 (P2.2): General-Purpose I/O Pin
- 8 (GND): Ground
(Tip: For detailed pinout information, please refer to the corresponding datasheet.)
Key Features
- Integrated MCU and RF Transceiver: Combines processing power and wireless communication in a single chip.
- Low Power Consumption: Designed for ultra-low-power operation, extending battery life in portable devices.
- Wide Operating Voltage Range: Supports a wide voltage range for flexibility in different power supply configurations.
- Advanced Peripherals: Includes a variety of peripherals for versatile functionality and connectivity options.
- High-Performance RF: Features a high-performance RF transceiver for reliable wireless communication.
Application
- Wireless Sensor Networks: Suitable for creating wireless sensor networks for remote monitoring and control.
- Smart Energy: Used in smart energy systems for wireless communication and data processing.
- IoT Devices: Ideal for IoT devices that require wireless connectivity and low power consumption.
Where to Use
The CC430F5133IRGZR is ideal for applications that demand wireless communication and low power consumption, such as wireless sensor networks, smart energy systems, and IoT devices. It offers a high level of integration and performance for diverse applications.
How to Use
Integrate the CC430F5133IRGZR into your system by connecting the power supply to the VDD pin and ensuring proper grounding to GND. Utilize the GPIO pins for interfacing with external devices and configure the RF transceiver for wireless communication. Refer to the datasheet for detailed setup and programming instructions.
Application Circuit
The application circuit diagram for the CC430F5133IRGZR illustrates how to connect the microcontroller and RF transceiver in a typical application setup. It includes connections for power, reset, GPIO, and RF signals to enable wireless communication and data processing.
(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)
Equivalents
- CC1310: A similar wireless microcontroller with enhanced features for IoT applications.
- CC2530: An alternative RF microcontroller offering compatibility with Zigbee applications.
Complementary
The CC430F5133IRGZR can be complemented by the CC1101 RF transceiver, providing additional RF communication capabilities for extended range and network coverage. Pairing complementary components ensures seamless integration and improved performance in wireless applications.
Frequently Asked Questions
Q: What is the power consumption of the CC430F5133IRGZR in active mode?
A: The CC430F5133IRGZR has low power consumption in active mode, typically consuming X mA. Refer to the datasheet for detailed power consumption data under different operating conditions.
Q: Is the RF transceiver in the CC430F5133IRGZR compatible with Bluetooth communication?
A: The RF transceiver in the CC430F5133IRGZR is designed for proprietary wireless communication protocols. For Bluetooth compatibility, consider using TI's Bluetooth modules or chips designed for Bluetooth connectivity.

Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
Protocols | Proprietary | Frequency bands | 315 MHz, 433 MHz, 779 MHz, 868 MHz, 915 MHz, 920 MHz |
Type | Wireless MCU | TX power (max) (dBm) | 13 |
RAM (kByte) | 2 | Flash memory (kByte) | 8 |
CPU | MSP430 | Peripherals | 1 SPI, 1 UART, 1 timer, 12-bit ADC, I2C |
Sensitivity (best) (dBm) | -117 | Number of GPIOs | 30 |
RX current (lowest) (mA) | 15 | Data rate (max) (MBps) | 0.5 |
Rating | Catalog | Operating temperature range (°C) | -40 to 85 |
Datasheet PDF
Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.
FAQs
What is CC430F5133IRGZR?
The CC430F5133IRGZR is a highly integrated system-on-chip (SoC) from Texas Instruments, combining a low-power microcontroller with a sub-1GHz RF transceiver. It is designed for applications requiring wireless connectivity, such as wireless sensor networks, home automation, and Internet of Things (IoT) devices.
How Does CC430F5133IRGZR Work?
The CC430F5133IRGZR functions as a microcontroller with an integrated RF transceiver, allowing it to communicate wirelessly in the sub-1GHz frequency band. It can run user application code while handling wireless communication tasks, enabling efficient and compact wireless designs. The device offers low power consumption and features like low-energy modes for extended battery life in battery-powered applications.
How Many Pins does CC430F5133IRGZR have and What are the Functions of the Pinout Configuration?
The CC430F5133IRGZR comes in a 40-pin QFN (Quad Flat No-leads) package. The pinout configuration includes:
- GPIO: General-purpose input/output pins for digital signals.
- ADC: Analog-to-digital converter input pins for sampling analog signals.
- USART/SPI/I2C: Serial communication interface pins for connecting to external devices.
- RF: RF transceiver pins for wireless communication.
- Power Pins: VDD, VSS, and other power supply and ground pins.
- Reset and Boot Pins: Pins for device reset and boot modes.
What are the Pros and Cons of CC430F5133IRGZR?
Pros:
- Integration: Combines microcontroller and RF transceiver in a single chip, simplifying wireless designs.
- Low Power: Offers low power consumption for extended battery life in wireless sensor applications.
- Wireless Connectivity: Supports sub-1GHz RF communication for reliable and long-range wireless links.
- Peripheral Integration: Includes a variety of communication interfaces and peripherals for versatile applications.
- Scalability: Part of a family of devices with different memory and feature combinations to suit various requirements.
Cons:
- Complexity: Integrated SoC design may require careful RF and digital design considerations for optimal performance.
- Cost: Higher integration and wireless capabilities may result in a higher cost compared to standalone microcontrollers.
- Software Development: Developing software for combined microcontroller and RF functionality may require specialized expertise.
Are There Any Equivalents/Alternatives to CC430F5133IRGZR for Recommendation?
- The CC1310 from Texas Instruments offers similar integrated MCU and RF functionality with additional features.
- Alternatives to the CC430F5133IRGZR include the nRF24LE1 from Nordic Semiconductor and the Si4463 from Silicon Labs.
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