F280025CPNQR Overview
The F280025CPNQR is a 32-bit microcontroller from the C2000 family optimized for real-time control in industrial systems. It combines a fixed-point C28x CPU core with integrated power-peripheral functions to enable tighter motor control, lower latency, and fewer external components. With multiple ADC inputs, enhanced PWM modules, and common serial interfaces, it delivers higher deterministic performance for closed-loop control compared with many 8-bit and 16-bit alternatives. Find procurement details and authorized distribution from IC Manufacturer.
F280025CPNQR Technical Specifications
| Parameter | Value |
|---|---|
| Core | 32-bit C28x fixed-point |
| Maximum CPU Clock | 50 MHz |
| Flash Memory | 64 KB |
| RAM (SRAM) | 8 KB |
| ADC Resolution | 12-bit |
| ADC Channels (max) | 8 |
| ePWM Modules | 3 modules |
| Communication Interfaces | 3?? SPI, 2?? UART, 2?? I2C, 1?? CAN |
| Operating Voltage | 3.3 V (typical) |
| Package | 32-pin VQFN |
| Operating Temp Range | -40 ??C to +85 ??C |
| Industrial Grade | Yes |
F280025CPNQR Key Features
- Deterministic C28x core delivering tightly timed control loops for faster response and lower jitter in motor-drive systems.
- Integrated 12-bit ADC with multiple channels to reduce external analog components and enable finer sensor resolution for closed-loop control.
- Enhanced PWM modules that support high-resolution switching and synchronized outputs for efficient power conversion and reduced electromagnetic interference.
- Multiple serial interfaces (SPI, UART, I2C, CAN) to simplify system integration and connect more sensors, actuators, and network nodes with fewer bridges.
Typical Applications
- Three-phase motor control drives that require precise PWM timing and fast ADC sampling for torque and speed regulation in industrial automation.
- Solar inverter control systems needing reliable PWM generation, ADC measurement and CAN communications for grid-tied power conversion and monitoring.
- Battery management systems where balanced cell measurement, state-of-charge estimation and serial communication are critical for reliability and safety.
- Embedded power supplies and digital power controllers that demand compact integration of control, measurement and communication in tight PCB footprints.
F280025CPNQR Advantages vs Typical Alternatives
The F280025CPNQR provides a stronger real-time control profile than many 8-bit or 16-bit MCUs by using a 32-bit C28x core and on-chip peripherals optimized for power electronics. It offers higher ADC resolution and more PWM channels, allowing fewer external components and reduced BOM costs. With multiple serial interfaces and an industrial temperature rating, it suits distributed control nodes better than generic microcontrollers that lack synchronized PWM and deterministic interrupt handling.
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F280025CPNQR Brand Info
TMS320F280025CPNQR is a product line by Texas Instruments. The brand focuses on mixed-signal and embedded processing solutions for industrial and automotive markets. TI emphasizes long-term availability, comprehensive development tools, and ecosystem support for control-oriented microcontrollers and power-conversion applications.
FAQ
What core does it use?
The device uses a 32-bit C28x fixed-point core designed for deterministic signal processing and real-time control tasks in embedded systems.
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Is it suitable for motor drives?
Yes. The part includes enhanced PWM modules and multiple 12-bit ADC inputs, which are commonly required for high-performance three-phase motor control and closed-loop regulation.
Which communications are available?
Standard interfaces include SPI, UART, I2C and CAN, enabling sensor integration, debugging, and networked control in distributed industrial systems.
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What package and temperature range?
The component is supplied in a compact VQFN package and is rated for industrial temperatures from -40 ??C to +85 ??C for reliable field operation.
Can it reduce BOM cost?
Yes. By integrating ADCs, PWM controllers and multiple serial ports on-chip, the device can cut external component count, lower PCB area and simplify system design.




