CY8C4125LQI8-483 Overview
The CY8C4125LQI8-483 is a versatile and compact 8-bit microcontroller designed for embedded system applications requiring low power consumption and integrated analog capabilities. Featuring a robust ARM Cortex-M0 core, this device offers efficient processing performance with enhanced flexibility for mixed-signal applications. Its rich peripheral set includes configurable analog and digital blocks, making it an ideal solution for sensor interfaces, control systems, and low-power IoT devices. The small form factor and extensive I/O options enable seamless integration into space-constrained industrial and consumer electronics. For detailed technical information and purchasing options, visit IC Manufacturer.
CY8C4125LQI8-483 Technical Specifications
Parameter | Specification |
---|---|
Core | ARM Cortex-M0 |
Operating Voltage | 1.71 V to 3.6 V |
Maximum CPU Frequency | 24 MHz |
Flash Memory | 16 KB |
SRAM | 4 KB |
Package Type | LQFP-48 |
Analog-to-Digital Converter (ADC) | 12-bit SAR ADC with up to 8 channels |
Digital-to-Analog Converter (DAC) | 8-bit DAC |
Communication Interfaces | I2C, SPI, UART |
Operating Temperature Range | -40??C to +85??C |
CY8C4125LQI8-483 Key Features
- ARM Cortex-M0 core provides efficient processing with low power consumption, enabling extended battery life in portable applications.
- Integrated 12-bit SAR ADC supports precise analog signal conversion, essential for sensor data acquisition and control accuracy.
- Flexible digital and analog peripherals allow customization for diverse embedded solutions, reducing external component count.
- Wide operating voltage range ensures compatibility with various power supplies common in industrial and consumer devices.
- Small 48-pin LQFP package facilitates compact system designs without sacrificing functionality.
- Multiple communication protocols (I2C, SPI, UART) enhance connectivity options for interfacing with external modules and sensors.
- Robust operating temperature range supports reliable performance in harsh and industrial environments.
CY8C4125LQI8-483 Advantages vs Typical Alternatives
This microcontroller stands out with its integration of high-resolution ADC and DAC modules combined with a low-power ARM Cortex-M0 core, delivering superior analog-to-digital conversion accuracy and energy efficiency. Its flexible peripheral set and compact LQFP-48 package provide excellent system integration advantages over typical 8-bit MCUs that lack mixed-signal capabilities or require additional external components, thereby reducing overall BOM cost and design complexity.
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Typical Applications
- Sensor interface modules for industrial automation, leveraging its accurate ADC and low power operation to monitor environmental or process variables reliably.
- Battery-powered IoT devices where energy efficiency and compact size are critical for extended field deployment.
- Consumer electronics requiring mixed-signal processing, such as smart home controllers or wearable devices.
- Embedded control systems in automotive and industrial equipment, benefiting from robust temperature tolerance and communication interfaces.
CY8C4125LQI8-483 Brand Info
The CY8C4125LQI8-483 is part of a well-established product line known for combining microcontroller functionality with programmable analog blocks, tailored for embedded applications demanding precise analog integration. Manufactured under stringent quality standards, this device reflects the brand??s commitment to innovation, reliability, and comprehensive support for system designers. Its design enables engineers to accelerate development cycles while optimizing power and performance in compact footprints.
FAQ
What is the core architecture of this microcontroller?
The device is based on the ARM Cortex-M0 core, a 32-bit processor known for its low power consumption and efficient performance, suitable for cost-sensitive embedded applications requiring moderate processing capabilities.
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How many analog inputs does the ADC support?
The integrated 12-bit SAR ADC supports up to 8 input channels, allowing simultaneous monitoring of multiple analog signals