MX77A024SF1 Overview
The MX77A024SF1 is a high-performance semiconductor device designed for industrial and commercial applications requiring reliable and precise operation. It offers a robust set of electrical characteristics optimized for efficient power management and signal processing. With a compact form factor and proven stability across varying environmental conditions, this component enables simplified system integration and long-term durability. Engineers and sourcing specialists will appreciate its optimized balance between power consumption, switching speed, and thermal performance, making it ideal for demanding electronic designs. For full technical support and supply, visit Fabricant de circuits intégrés.
MX77A024SF1 Technical Specifications
Paramètres | Spécifications |
---|---|
Type d'emballage | SOIC-8 |
Plage de tension de fonctionnement | 4.5 V to 5.5 V |
Maximum Operating Temperature | +85??C |
Input Signal Frequency | Up to 100 MHz |
Délai de propagation | 8 ns (typical) |
Input Current | 10 ??A (max) |
Capacité d'entraînement de la sortie | 15 mA (max) |
Courant d'alimentation | 3 mA (typical) |
MX77A024SF1 Key Features
- Low propagation delay: Enables high-speed data processing, critical for timing-sensitive industrial controls.
- Wide operating voltage range: Supports flexible power supply designs, ensuring compatibility with standard 5 V systems.
- Compact SOIC-8 package: Facilitates space-saving PCB layouts and straightforward automated assembly.
- Low input current: Minimizes power consumption, beneficial for energy-efficient applications.
MX77A024SF1 Advantages vs Typical Alternatives
This device offers superior switching speed and lower propagation delay compared to typical alternatives, enhancing signal integrity in high-frequency applications. Its low input current and stable operation over a broad voltage range improve power efficiency and system reliability, making it an advantageous choice for engineers seeking optimized performance without compromising integration flexibility.
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Applications typiques
- Industrial control systems requiring precise timing and fast signal switching, benefiting from the device??s low propagation delay and robust voltage tolerance.
- Signal processing circuits where low input current reduces overall power consumption and heat dissipation.
- Embedded systems with space constraints, leveraging the compact SOIC-8 package for efficient board design.
- Power management modules that demand stable operation across temperature variations up to +85??C.
MX77A024SF1 Brand Info
The MX77A024SF1 is part of a trusted semiconductor product line offered by a leading IC Manufacturer, known for delivering reliable and high-quality electronic components. This product embodies the brand??s commitment to precision engineering and industrial-grade performance, supporting engineers worldwide in developing advanced, efficient, and durable electronic systems.
FAQ
What is the typical operating temperature range for this device?
The device operates reliably up to a maximum temperature of +85??C, making it suitable for most standard industrial environments where moderate thermal conditions are expected.
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How does the MX77A024SF1 handle power consumption in embedded systems?
With a typical supply current of 3 mA and low input current of 10 ??A max, it ensures minimal power draw, which helps extend battery life and reduce thermal load in embedded and portable applications.
Is the device compatible with common industrial voltage standards?
Yes, it supports an operating voltage range from 4.5 V to 5.5 V, aligning well with typical 5 V industrial power rails, thus simplifying integration into existing systems.
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What packaging options are available for the MX77A024SF1?
This product comes in a compact SOIC-8 package, which is widely used for automated assembly on printed circuit boards, offering a balance between size and ease of handling.
Can this product be used in high-frequency signal applications?
Absolutely. The device supports input signal frequencies up to 100 MHz and features a low propagation