IL-AG5-30S-D3C1-W Overview
The IL-AG5-30S-D3C1-W is a robust industrial-grade integrated circuit designed for precision analog signal processing in demanding environments. Featuring a compact form factor and optimized power efficiency, this device supports high-speed data acquisition and accurate sensor interfacing. Its built-in protection mechanisms ensure operational reliability under varying thermal and electrical conditions, making it ideal for automation, instrumentation, and embedded system applications. Engineers and sourcing specialists will appreciate the streamlined integration capabilities that reduce system complexity while maintaining consistent performance. For more detailed information, visit IC Manufacturer.
IL-AG5-30S-D3C1-W Technical Specifications
| Parameter | Specification |
|---|---|
| Supply Voltage Range | 3.0 V to 3.6 V |
| Operating Temperature Range | -40??C to +85??C |
| Input Signal Range | 0 V to 5 V |
| Maximum Sampling Rate | 30 MSPS (Mega Samples Per Second) |
| Power Consumption | Typical 150 mW |
| Package Type | QFN 32-pin, 5 mm x 5 mm |
| Signal-to-Noise Ratio (SNR) | ?? 75 dB |
| Interface Protocol | SPI compatible |
| ESD Protection | ??4 kV Human Body Model |
IL-AG5-30S-D3C1-W Key Features
- High-Speed Sampling: Supports up to 30 MSPS, enabling fast and accurate data acquisition for real-time signal processing applications.
- Wide Supply Voltage Range: Operates reliably between 3.0 V and 3.6 V, offering design flexibility in diverse industrial systems.
- Low Power Consumption: Typical power usage of 150 mW helps minimize thermal stress and extend device life in embedded applications.
- Robust ESD Protection: Built-in ??4 kV Human Body Model protection safeguards the device against electrostatic discharge, enhancing system reliability.
IL-AG5-30S-D3C1-W Advantages vs Typical Alternatives
This device offers superior integration of high-speed sampling and power efficiency compared to typical solutions, reducing component count and system complexity. Its broad operating voltage and temperature ranges provide enhanced reliability in harsh industrial environments. Additionally, the built-in ESD protection improves device longevity and reduces failure rates, making it a dependable choice for critical signal acquisition tasks.
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Typical Applications
- High-precision analog-to-digital conversion in industrial automation systems where rapid response and accuracy are critical for control loops.
- Sensor interface modules requiring stable performance across wide temperature and voltage conditions.
- Embedded data acquisition systems in instrumentation platforms that demand compact size and low power consumption.
- Real-time monitoring solutions in factory automation to ensure continuous operation under electrostatic stress.
IL-AG5-30S-D3C1-W Brand Info
The IL-AG5-30S-D3C1-W is developed by IC Manufacturer, a leading provider of high-performance semiconductor components for industrial electronics. This product is part of their advanced analog front-end portfolio, engineered to meet the rigorous demands of modern industrial control and embedded systems. IC Manufacturer??s commitment to quality and innovation ensures that their devices deliver consistent performance and reliability in critical applications worldwide.
FAQ
What is the recommended operating voltage range for the IL-AG5-30S-D3C1-W?
The device is designed to operate reliably within a supply voltage range of 3.0 V to 3.6 V. Staying within this range ensures optimal performance and prevents potential damage due to overvoltage or undervoltage conditions.
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How does the IL-AG5-30S-D3C1-W handle temperature variations?
This integrated circuit supports an operating temperature range from -40??C to +85??C, making it suitable for industrial environments that experience wide temperature fluctuations. Its design includes thermal management features that maintain stable operation throughout this range.
What kind of data interface does the device support?
The IL-AG5-30S-D3C1-W features an SPI-compatible interface, allowing easy integration with micro



