F280023PNQR Overview
The F280023PNQR is a real-time 32-bit microcontroller aimed at industrial motor control and power-conversion systems. It combines a deterministic control core, multiple analog peripherals, and communication interfaces in a compact package for shorter design cycles and fewer external components. Compared with legacy 16-bit controllers, it delivers higher throughput and finer control with lower latency. For sourcing and datasheet reference visit IC Manufacturer.
F280023PNQR Technical Specifications
| Device type | 32-bit real-time microcontroller |
| CPU core | C28x 32-bit control core |
| Maximum clock | 50 MHz |
| Flash memory | 32 KB |
| SRAM | 8 KB |
| ADC resolution | 12-bit |
| ADC channels | Up to 8 channels |
| PWM modules | 3 ePWM modules |
| GPIO count | 28 programmable I/O pins |
| Package | QFN, 32-pin (PNQR suffix) |
| Operating temp | -40 ??C to +85 ??C |
| Supply voltage | 3.0 V to 3.6 V |
F280023PNQR Key Features
- High-performance control core ?? delivers deterministic 32-bit control for faster loop rates and tighter regulation versus 16-bit controllers.
- Integrated ADC ?? 12-bit converters with multiple channels reduce external analog components and speed up sensor sampling.
- Multiple PWM modules ?? three ePWM blocks simplify multi-phase motor control and enable higher-resolution switching strategies.
- Compact packaging ?? QFN 32-pin footprint lowers board area and supports denser designs in power electronics and industrial drives.
Typical Applications
- Three-phase motor control systems that require precise PWM timing and multiple synchronized ADC measurements for current and voltage sensing over shorter sampling cycles.
- Digital power conversion in inverters and DC-DC supplies where deterministic control and integrated analog reduce BOM and improve thermal margins.
- Industrial automation nodes performing closed-loop control, requiring fast control-loop execution and multiple I/O for sensors and actuators in space-constrained PCBs.
- Embedded real-time control for servo drives and robotics where lower latency and higher instruction throughput provide smoother motion and tighter position control.
F280023PNQR Advantages vs Typical Alternatives
The F280023PNQR offers a more modern 32-bit control core versus older 16-bit devices, resulting in higher instruction throughput and more headroom for advanced control algorithms. With integrated 12-bit ADCs and three PWM modules, it reduces external analog components and simplifies PCB routing. The compact QFN package yields a smaller board area than many SOIC alternatives, while the broader temperature and voltage operating ranges support industrial deployments.
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F280023PNQR Brand Info
The F280023PNQR is part of the C2000 real-time microcontroller family from Texas Instruments. The brand emphasizes industrial-grade control performance, comprehensive peripheral integration, and strong development ecosystem support including reference design examples and development tools.
FAQ
What core does this MCU use?
The device uses a 32-bit C28x control core designed for deterministic real-time control. That core focuses on low-latency interrupt handling and steady instruction timing for control loops.
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How many PWM outputs are available?
It includes three dedicated ePWM modules. Those modules are suitable for multi-phase motor control and allow synchronized, high-resolution PWM generation across phases.
What ADC performance can I expect?
Built-in 12-bit ADCs provide multiple channels for current and voltage sensing. The on-chip converters reduce the need for external ADCs and shorten analog signal paths for better noise performance.
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Is the package suitable for compact boards?
Yes. The QFN 32-pin package supports compact PCB layouts and denser designs compared with larger SOIC or DIP packages, helping save board space in embedded and industrial products.
Where is the device commonly used?
Typical uses include motor drives, inverters, servo controllers, and industrial automation nodes that demand deterministic control, integrated analog peripherals, and a small BOM footprint.



