MX58024SFB Overview
The MX58024SFB is a high-performance semiconductor device designed for advanced industrial applications requiring precise control and robust operation. This integrated circuit offers a blend of efficiency, reliability, and compact design, making it suitable for complex electronic systems. With a focus on seamless integration and dependable performance, the device supports engineers and sourcing specialists in optimizing system-level functionality. For more detailed information and sourcing options, visit IC Manufacturer.
MX58024SFB Technical Specifications
| Parameter | Specification |
|---|---|
| Package Type | SFB (Small Flat Package) |
| Operating Voltage | 3.3 V ?? 0.3 V |
| Operating Temperature Range | -40??C to 85??C |
| Input Logic Levels | TTL/CMOS Compatible |
| Output Configuration | Open-drain with internal pull-up resistor |
| Maximum Switching Frequency | 100 MHz |
| Power Dissipation | 250 mW (max) |
| ESD Protection | 2 kV HBM (Human Body Model) |
MX58024SFB Key Features
- High-frequency operation: Supports switching frequencies up to 100 MHz, enabling high-speed signal processing for demanding applications.
- Low power consumption: Maximum power dissipation of 250 mW helps reduce overall system power requirements, essential for energy-efficient designs.
- Robust ESD protection: Integrated 2 kV Human Body Model protection enhances device reliability in harsh industrial environments.
- Compact SFB package: The Small Flat Package allows for high-density PCB layouts, saving board space without compromising thermal performance.
- Wide operating temperature range: -40??C to 85??C ensures stable performance across diverse environmental conditions.
- Flexible logic interface: Compatible with TTL and CMOS input levels, facilitating easy integration into existing digital systems.
- Open-drain output with pull-up resistor: Offers versatile output configurations for various interfacing requirements.
MX58024SFB Advantages vs Typical Alternatives
This device offers superior integration with its compact SFB packaging and low power consumption compared to conventional alternatives. Its robust ESD protection and wide temperature range enhance reliability in industrial settings. The high switching frequency capability supports faster data rates, making it ideal for modern electronics requiring precise timing and control without sacrificing efficiency or durability.
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Typical Applications
- High-speed digital signal processing systems where fast switching and low power dissipation are critical to overall performance and thermal management.
- Industrial automation controllers requiring reliable operation within wide temperature ranges and protection against electrostatic discharge.
- Embedded systems integrating mixed TTL and CMOS logic circuits for flexible interfacing and compact system design.
- Communication equipment needing compact footprint components with high-frequency operation and robust electrical characteristics.
MX58024SFB Brand Info
The MX58024SFB is manufactured by a leading semiconductor company recognized for delivering high-quality integrated circuits tailored to industrial and commercial electronics. This product line emphasizes precision engineering and stringent quality control processes, ensuring devices meet rigorous performance and reliability standards. Its design targets engineers and procurement professionals seeking dependable components that enable efficient system integration and long-term operational stability.
FAQ
What is the maximum operating frequency of this device?
The device supports a maximum switching frequency of 100 MHz, making it suitable for applications that require high-speed digital signal processing and precise timing control.
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What temperature range can the device reliably operate within?
It operates reliably within a temperature range from -40??C to 85??C, which covers most industrial and commercial environmental conditions.
How does the device handle electrostatic discharge (ESD) protection?
The integrated ESD protection meets 2 kV Human Body Model standards, providing robust defense against electrostatic events and enhancing device durability in demanding environments.
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Is the device compatible with different logic families?
Yes,



