F2800137RHBR Overview
The F2800137RHBR is a 32?bit real?time microcontroller in the C2000 family designed for control and power?conversion applications. It combines a deterministic C28x core with integrated analog and timer peripherals to support high?performance motor control, digital power and industrial automation. The device targets systems that need tighter loop timing and lower latency than general?purpose MCUs. For purchase and distribution details, visit IC Manufacturer.
F2800137RHBR Technical Specifications
| Device type | 32?bit real?time microcontroller |
| CPU core | C28x real?time MCU core |
| Maximum CPU frequency | 100 MHz |
| On?chip Flash | 256 KB |
| On?chip SRAM | 100 KB |
| Operating voltage | 3.3 V |
| Operating temperature | ?40 ??C to +85 ??C |
| Package | 100?pin LQFP |
| ADC resolution | 12?bit |
| PWM channels | Up to 12 channels |
F2800137RHBR Key Features
- Deterministic C28x core: Delivers low interrupt latency for faster control loop response and tighter timing compared with general?purpose MCUs.
- On?chip Flash and SRAM: 256 KB Flash and 100 KB SRAM support larger control firmware and fewer external memory components, reducing board area and BOM cost.
- High?resolution ADCs: Integrated 12?bit converters provide precise analog sensing for current and voltage feedback, improving measurement accuracy versus lower?resolution alternatives.
- Flexible PWM generation: Multiple PWM channels enable independent motor phase control and multi?output power stages with synchronized timing for improved efficiency.
Typical Applications
- Three?phase motor control systems requiring deterministic control loops and fast interrupt handling for smoother torque control and higher efficiency in industrial drives.
- Digital power supplies and inverters where integrated PWM and ADC resources reduce external components and improve transient response under load changes.
- Industrial automation controllers that need high?precision analog measurement and multiple timers to coordinate sensors, actuators, and safety interlocks reliably.
- Embedded real?time control in robotics and motion control axes, providing tight synchronization of multiple motors and sensors for coordinated movement.
F2800137RHBR Advantages vs Typical Alternatives
The device??s real?time C28x core and integrated peripherals offer lower latency and tighter timing control compared with general?purpose 32?bit MCUs. With 256 KB of on?chip Flash and substantial SRAM, it reduces the need for external memory and simplifies board designs. The combination of multi?channel PWM and 12?bit ADCs improves control precision and integration density versus discrete solutions, enabling smaller, more reliable power and motor control systems.
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F2800137RHBR Brand Info
The F2800137RHBR is a Texas Instruments C2000 family microcontroller. TI positions this series for real?time embedded control tasks in motor drives, power conversion, and industrial automation. The brand emphasizes long?term availability, comprehensive development tools, and ecosystem support for rapid prototyping and production deployment.
FAQ
What core does this MCU use?
The MCU uses a C28x real?time processing core optimized for deterministic interrupt handling and control algorithms, suitable for closed?loop motor and power control tasks.
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What memory is available on?chip?
The device includes on?chip nonvolatile Flash for program storage and on?chip SRAM for data and stack use, enabling compact designs without external memory in many applications.
Which peripherals support motor control?
Integrated peripherals include multiple PWM channels and 12?bit ADCs, which together enable high?resolution sensing and precise phase?oriented PWM generation for motor drive applications.
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What temperature range is supported?
The device is rated for industrial temperature ranges, allowing operation from ?40 ??C up to +85 ??C, which suits most factory and field environments.
How does this part simplify system design?
By combining a real?time core with ample Flash/SRAM, ADCs and PWM in a single package, the part reduces external components, lowers PCB complexity, and shortens development time compared with multi?chip solutions.




