NJJ29C2A8HN5/449Y Overview
The NJJ29C2A8HN5/449Y is a high-performance semiconductor device designed for industrial applications requiring reliable operation and precise control. This integrated circuit features advanced architecture that supports efficient power management and enhanced signal processing capabilities. Engineered to meet stringent quality standards, it offers consistent performance in demanding environments. Sourcing specialists and engineers will find this component suitable for systems where robustness and accuracy are paramount. For detailed technical and sourcing information, refer to the IC Manufacturer resources.
NJJ29C2A8HN5/449Y Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage | 3.3 V ?? 10% |
| Maximum Operating Temperature | 85??C |
| Input Current | 1.2 mA typical |
| Output Current | 10 mA maximum |
| Package Type | SOIC-8 |
| Signal Frequency Range | Up to 20 MHz |
| Power Dissipation | 300 mW |
| Input Signal Logic | TTL compatible |
| Response Time | 50 ns typical |
NJJ29C2A8HN5/449Y Key Features
- High-speed switching: Enables fast response times critical for timing-sensitive industrial applications.
- Low power consumption: Minimizes energy usage, increasing efficiency and reducing thermal management requirements.
- Robust operating temperature range: Supports reliable operation in harsh environments up to 85??C.
- Compact SOIC-8 package: Facilitates easy integration into space-constrained circuit boards while maintaining performance.
- TTL compatible inputs: Ensures compatibility with a wide range of digital logic systems for flexible design options.
- Stable output current: Provides consistent drive capability for downstream components, improving system reliability.
NJJ29C2A8HN5/449Y Advantages vs Typical Alternatives
This device offers superior switching speed and lower power consumption compared to typical alternatives. Its robust thermal performance and TTL compatibility enhance integration flexibility and system reliability. These advantages make it an ideal choice for engineers seeking a balance of efficiency, accuracy, and durability in industrial semiconductor components.
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Typical Applications
- Industrial control systems requiring precise timing and reliable digital signal processing for automation and monitoring.
- Embedded electronics where low power consumption and compact packaging are critical design considerations.
- Power management modules that benefit from consistent output currents and stable operation across temperature variations.
- Signal conditioning circuits in communication devices that demand fast switching and TTL logic compatibility.
NJJ29C2A8HN5/449Y Brand Info
The NJJ29C2A8HN5/449Y is manufactured by a leading semiconductor supplier known for producing high-quality integrated circuits optimized for industrial applications. This product line is recognized for its rigorous quality control and adherence to international standards. The brand focuses on delivering reliable, efficient, and scalable solutions to support complex electronic designs across multiple sectors.
FAQ
What is the maximum operating temperature for this device?
The component is rated for operation up to 85??C, making it suitable for industrial environments where elevated temperatures are common, ensuring consistent performance without thermal degradation.
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Is the NJJ29C2A8HN5/449Y compatible with TTL logic levels?
Yes, the input signals are TTL compatible, allowing seamless interfacing with standard digital logic circuits commonly used in industrial and embedded system designs.
What package type does this product use?
It is housed in an SOIC-8 package, which supports compact mounting and easy integration on printed circuit boards where space optimization is required.
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How does the power consumption of this component compare to similar devices?
This device features low power consumption, typically around 1.2 mA input current, which is advantageous for energy-efficient designs and reduces the need for extensive thermal management.
What are the typical applications for this semiconductor device?
Typical applications include industrial control systems, embedded electronics, power management modules, and signal conditioning circuits, where reliable switching, low power use, and robust operation are essential.






