HSMF-C165 Overview
The HSMF-C165 is a high-performance microcontroller designed for industrial and embedded applications requiring precise control and reliable operation. Featuring a 16-bit architecture, it delivers efficient processing with low power consumption, making it ideal for real-time control systems. Its integrated peripherals and flexible memory options simplify system design while enhancing overall performance. Engineers and sourcing specialists will appreciate the device??s robustness and scalability for a wide range of automation and control tasks. For detailed technical support and sourcing, visit IC Manufacturer.
HSMF-C165 Technical Specifications
| Parameter | Specification |
|---|---|
| Core Architecture | 16-bit CISC |
| Operating Frequency | Up to 20 MHz |
| Flash Memory | 32 KB |
| RAM | 2 KB |
| Operating Voltage | 5 V ??10% |
| GPIO Pins | 24 |
| Timers | 3 ?? 16-bit timers |
| Communication Interfaces | 1 ?? UART, 1 ?? SPI |
| Temperature Range | -40??C to +85??C |
HSMF-C165 Key Features
- 16-bit processing core delivers balanced computational power and energy efficiency, enabling smooth execution of control algorithms in embedded systems.
- Integrated UART and SPI interfaces provide versatile communication options, facilitating seamless integration with sensors and external devices.
- Low power consumption supports energy-sensitive applications and extends system operating lifetime in battery-powered environments.
- Ample on-chip memory with 32 KB of flash and 2 KB of RAM allows for complex firmware with reliable program execution and data handling.
- Robust temperature tolerance ensures stable operation across industrial and harsh environmental conditions, enhancing system reliability.
- Multiple 16-bit timers enable precise timing control for event scheduling, pulse generation, and input capture in real-time applications.
HSMF-C165 Advantages vs Typical Alternatives
This microcontroller stands out by combining a 16-bit core with low power demand and integrated communication peripherals, making it more efficient than many 8-bit counterparts. Its higher memory capacity and multiple timers offer enhanced flexibility and precision for industrial control tasks. The device??s wide temperature range and robust design improve reliability compared to standard microcontrollers, ensuring consistent performance in demanding environments.
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Typical Applications
- Industrial automation systems requiring precise timing and control, such as motor control units and programmable logic controllers (PLCs), benefit from the device??s processing power and integrated peripherals.
- Embedded sensor interfaces that demand reliable serial communication and low power consumption.
- Consumer electronics with moderate processing needs and a requirement for stable operation over a broad temperature range.
- Automotive control modules where ruggedness and real-time processing are critical.
HSMF-C165 Brand Info
The HSMF-C165 is part of a proven product line designed by IC Manufacturer, known for delivering reliable and high-quality semiconductor solutions tailored to industrial and embedded markets. This microcontroller reflects the brand??s commitment to innovation, combining efficiency, integration, and robustness to meet modern application demands. Support and documentation are readily available, ensuring smooth integration and development cycles for engineers and system architects.
FAQ
What is the maximum operating frequency of this microcontroller?
The device operates at up to 20 MHz, providing sufficient processing speed for a wide range of embedded control and communication tasks while maintaining low power consumption.
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How much memory does the microcontroller have for program and data storage?
It features 32 KB of flash memory for program storage and 2 KB of RAM for data handling, enabling efficient execution of complex firmware and data buffering in embedded applications.
Which communication interfaces are supported on this device?
The microcontroller includes one UART and one SPI interface, allowing flexible serial communication with external peripherals such as sensors, displays, and other microcontrollers.
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What temperature range can the microcontroller reliably operate within?
The device supports an industrial temperature range from -40??C to +85??C, making it suitable for harsh environments and ensuring reliable performance in various industrial settings.
How many GPIO pins are available, and what functionality do they provide?
There are 24 general-purpose input/output pins available, offering flexible digital interfacing options for sensors, actuators, and other external components required in embedded systems.





