AFIC10275NR5 Overview
The AFIC10275NR5 is a high-performance integrated circuit designed for precision signal processing in industrial electronics. Featuring a robust architecture and compact footprint, it is optimized for demanding environments requiring stable operation and low power consumption. Its advanced functionality supports reliable and efficient system designs, making it a preferred choice for engineers seeking enhanced accuracy and integration. The device is manufactured with stringent quality standards, ensuring consistent performance in various applications. For detailed technical support and procurement options, visit IC Manufacturer.
AFIC10275NR5 Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage Range | 2.7 V to 5.5 V |
| Maximum Operating Temperature | +125??C |
| Supply Current | 3.2 mA (typical) |
| Input Signal Range | 0 V to 3.3 V |
| Output Type | Push-Pull CMOS |
| Package Type | SOIC-8 |
| Response Time | 1.5 ??s (typical) |
| ESD Protection | ??4 kV HBM |
AFIC10275NR5 Key Features
- Wide Operating Voltage Range: Ensures compatibility with multiple power supply configurations, enhancing design flexibility.
- Fast Response Time: Allows for rapid signal processing, crucial in applications demanding real-time data accuracy.
- Low Power Consumption: Minimizes energy usage, contributing to longer device lifetimes and reduced thermal stress.
- Robust ESD Protection: Provides enhanced reliability in harsh industrial environments prone to electrostatic discharge events.
- Compact SOIC-8 Package: Facilitates space-saving PCB layouts without compromising performance or thermal management.
AFIC10275NR5 Advantages vs Typical Alternatives
This device stands out due to its combination of low power consumption and fast response time, which is often a trade-off in similar ICs. Its wide operating voltage range and robust ESD protection contribute to enhanced reliability and flexibility in industrial applications. The compact package further enables high-density PCB designs, making it a superior choice compared to bulkier or less resilient alternatives.
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Typical Applications
- Industrial signal conditioning circuits requiring precise and stable analog processing under variable power conditions.
- Embedded systems where low power and fast response are critical for real-time control and monitoring.
- Automation equipment demanding robust operation in electrically noisy environments.
- Sensor interface modules that benefit from compact packaging and enhanced ESD tolerance.
AFIC10275NR5 Brand Info
The AFIC10275NR5 is produced by a leading semiconductor manufacturer known for delivering reliable, high-quality integrated circuits tailored for industrial and commercial electronics. This product reflects the brand??s commitment to innovation, precision engineering, and stringent quality control, ensuring consistent performance in challenging operational conditions. It is supported by comprehensive documentation and engineering resources to aid seamless integration into various system designs.
FAQ
What is the typical operating voltage range for this device?
The operational voltage spans from 2.7 volts to 5.5 volts, enabling compatibility with a wide array of power supplies commonly used in industrial and embedded electronics.
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How does the response time impact its application?
With a typical response time of 1.5 microseconds, the device supports rapid signal changes, making it suitable for applications where timing and signal integrity are critical.
Can the device handle harsh environmental conditions?
Yes, it is rated for operation up to 125??C and includes ESD protection up to ??4 kV, ensuring durability and reliability in electrically noisy or extreme temperature environments.
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What package options are available for this product?
This model is offered in a standard SOIC-8 package, which balances compact size with ease of handling and soldering during PCB assembly.
Is this device energy efficient for battery-powered applications?
Its low typical supply current of 3.2 mA helps reduce overall power consumption, making it a practical choice for battery-operated systems where energy efficiency is important.





