AM2634COMFHAZCZR Overview
The AM2634COMFHAZCZR is a high-performance industrial microcontroller variant optimized for safety and real-time control tasks. It combines multi-core processing, integrated peripherals and hardened I/O in a compact package to address motor drives, industrial automation and safety-critical systems. The device targets applications that require lower latency, higher determinism and stricter functional safety compared with general-purpose controllers. For procurement and datasheet sourcing see IC Manufacturer.
AM2634COMFHAZCZR Technical Specifications
| Parameter | Value |
|---|---|
| Processor cores | 2 ARM Cortex-R5F |
| Maximum core clock | 200 MHz |
| On-chip SRAM | 512 KB |
| On-chip Flash / ROM | 1 MB |
| Operating voltage | 3.3 V (nominal) |
| Operating temperature range | -40 ??C to +125 ??C |
| Package type | FCBGA, 0.8 mm pitch |
| Peripheral interfaces | Multiple UART, SPI, I2C, PWM, ADC channels |
| Functional safety | Safety-oriented features and diagnostics |
| Typical supply current | Varies by mode; low-power standby available |
AM2634COMFHAZCZR Key Features
- Dual-core Real-time Processing ?? Enables parallel control loops for faster response and reduced latency in motor and motion control systems.
- Integrated Peripherals ?? On-chip UART, SPI, I2C and PWM reduce BOM count and simplify board layout for tighter integration and lower system cost.
- Industrial Temperature Range ?? Rated from -40 ??C to +125 ??C, improving reliability in harsher environments compared to consumer-grade controllers.
- Functional Safety Support ?? Built-in diagnostics and safety features that support system-level compliance and increase uptime versus non-safety devices.
Typical Applications
- Industrial motor control systems requiring deterministic, low-latency control loops and integrated PWM peripherals for inverter drives.
- Factory automation controllers where dual-core real-time processing and safety diagnostics reduce cycle time and increase production reliability.
- Safety-critical embedded controllers in robotics and motion systems that need extended temperature range and system-integrated safety features.
- Power conversion and traction inverters where on-chip ADCs, PWM and hardened I/O enable tighter control and fewer external components.
AM2634COMFHAZCZR Advantages vs Typical Alternatives
The AM2634COMFHAZCZR offers stronger determinism and integrated safety features compared with many generic microcontrollers. With dual real-time cores and on-chip peripherals, it can replace multi-chip solutions and reduce board area by 20?C50% in comparable designs. The extended industrial temperature rating and targeted diagnostics improve reliability and mean-time-between-failure versus consumer-grade alternatives, while integrated interfaces speed time-to-market and reduce system-level integration effort.
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AM2634COMFHAZCZR Brand Info
The AM2634COMFHAZCZR is produced by Texas Instruments, a global semiconductor company known for embedded processors and analog solutions. TI positions this device for industrial and safety-focused markets, backing the product with long-term availability, technical support and comprehensive development tools for real-time control designers.
FAQ
What processors does it use?
The device uses two ARM Cortex-R5F real-time cores designed for deterministic control and low interrupt latency in industrial applications.
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What temperature range is supported?
This variant supports an industrial temperature range from -40 ??C to +125 ??C, making it suitable for harsh environments and elevated ambient conditions.
Which peripherals are integrated?
On-chip peripherals include multiple UARTs, SPI, I2C buses, PWM channels and ADC inputs, reducing the need for external interface components.
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Does it support functional safety?
Yes. The part includes safety-oriented features and diagnostics to help achieve system-level functional safety targets in safety-critical designs.
How does it simplify system design?
By combining dual real-time cores, integrated analog and digital peripherals, and safety diagnostics, it reduces PCB complexity, lowers part count and shortens development time.



