AD8343ARUZ-REEL7 Overview
The AD8343ARUZ-REEL7 is a high-performance analog multiplier designed for precision signal processing applications. Offering wide bandwidth and excellent linearity, this device supports accurate modulation, demodulation, and signal mixing functions. Its low distortion and high dynamic range make it well-suited for communications, instrumentation, and industrial electronics. Packaged in a compact surface-mount form factor, the product supports automated assembly and high-volume manufacturing. Engineers and sourcing specialists can rely on this multiplier for consistent, reliable operation across demanding environments. For more detailed technical resources and purchasing options, visit IC-fabrikant.
AD8343ARUZ-REEL7 Technical Specifications
Parameter | Specificatie |
---|---|
Bedrijfsspanning | +5 V |
Bandbreedte | DC to 500 MHz |
Input Signal Range | ??1.5 V |
Conversion Gain | 0.9 V/V (typical) |
Total Harmonic Distortion (THD) | -55 dBc at 1 MHz |
Bereik uitgangsspanning | ??1.5 V |
Type verpakking | 16-Lead SOIC |
Energieverlies | 450 mW (typical) |
Bedrijfstemperatuurbereik | -40 °C tot +85 °C |
AD8343ARUZ-REEL7 Key Features
- Wide Bandwidth: Supports frequencies up to 500 MHz, enabling precise signal multiplication across a broad spectrum for RF and IF applications.
- High Linearity: Low total harmonic distortion ensures signal integrity, critical for accurate modulation and demodulation tasks.
- Compacte opbouwverpakking: The 16-lead SOIC package facilitates high-density PCB layouts and automated assembly, improving manufacturing efficiency.
- Laag stroomverbruik: Consumes approximately 450 mW, reducing thermal stress and power requirements in system design.
- Wide Input and Output Voltage Range: Accommodates ??1.5 V signals, providing flexibility for diverse analog signal processing needs.
- Robust Operating Temperature: Reliable operation from -40??C to +85??C suits industrial and commercial environments.
AD8343ARUZ-REEL7 Advantages vs Typical Alternatives
This device offers superior linearity and extended bandwidth compared to typical analog multipliers, enhancing signal fidelity in critical applications. Its low power dissipation improves system efficiency, while the standardized SOIC package enables seamless integration into existing manufacturing workflows. These characteristics combine to deliver a reliable, cost-effective solution for precision analog multiplication over alternatives that may compromise on frequency response or power consumption.
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Typische toepassingen
- Quadrature Modulation and Demodulation: Ideal for communication systems requiring accurate phase and amplitude signal multiplication over wide frequency ranges.
- Signal Conditioning: Used in instrumentation for precise analog signal processing where linearity and low distortion are paramount.
- Dynamic Range Compression: Suitable for audio and RF applications where maintaining signal integrity under varying conditions is essential.
- Industrial Control Systems: Enables accurate sensor signal multiplication and processing in harsh environments due to its robust temperature range.
AD8343ARUZ-REEL7 Brand Info
This analog multiplier is part of a trusted product line known for precision and reliability in semiconductor analog components. Manufactured under stringent quality standards, the AD8343ARUZ-REEL7 is engineered to meet the rigorous demands of industrial and communication electronics markets. Its design reflects a commitment to high-performance analog signal processing, backed by comprehensive technical support and global distribution channels.
FAQ
What is the maximum frequency the AD8343ARUZ-REEL7 can handle?
The device supports a bandwidth up to 500 MHz, allowing it to process signals from DC up to this frequency with high linearity and low distortion. This makes it suitable for RF and IF signal applications.
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What package type does this analog multiplier come in?
The product is available in a 16-lead Small Outline Integrated Circuit (SOIC) package. This surface-mount form factor facilitates automated PCB assembly and compact board layouts.
What is the typical power consumption of this device?
Typical power dissipation is approximately 450 milliwatts, which helps