MX19004P51 Overview
The MX19004P51 is a high-performance semiconductor device designed for precise signal processing in industrial and automotive applications. Featuring robust electrical characteristics and a compact package, it delivers reliable operation under varied environmental conditions. With optimized power consumption and enhanced switching capabilities, the device supports efficient system integration and improved overall performance. This product is ideal for engineers and sourcing specialists seeking a dependable IC solution with consistent quality and proven functionality. For detailed product sourcing and technical information, visit Fabricant de circuits intégrés.
MX19004P51 Technical Specifications
Paramètres | Spécifications |
---|---|
Plage de tension de fonctionnement | 3.0 V to 5.5 V |
Fréquence maximale de fonctionnement | 150 MHz |
Input Voltage Level | TTL/CMOS Compatible |
Délai de propagation | 8 ns (typical) |
Power Dissipation | 250 mW (max) |
Plage de température de fonctionnement | De -40 ??C à +85 ??C |
Type d'emballage | SSOP-16 |
Input Leakage Current | ??1 ??A (max) |
MX19004P51 Key Features
- High Frequency Operation: Supports up to 150 MHz, enabling fast data processing critical in timing-sensitive applications.
- Large gamme de tensions : Operates efficiently between 3.0 V and 5.5 V, ensuring compatibility with various logic families and power domains.
- Faible délai de propagation : Typical delay of 8 ns reduces latency, improving signal integrity and system responsiveness.
- Low Power Dissipation: Maximum power consumption of 250 mW helps extend device longevity and system energy efficiency.
- Robust Temperature Tolerance: Handles industrial temperature ranges from -40 ??C to +85 ??C for reliable performance in harsh environments.
- Compact SSOP-16 Package: Facilitates easy PCB layout and space-saving integration in densely populated assemblies.
- Input Compatibility: Supports both TTL and CMOS input levels, enhancing interoperability across diverse circuit designs.
MX19004P51 Advantages vs Typical Alternatives
This device offers superior switching speed and lower propagation delay compared to typical alternatives, providing enhanced timing accuracy. Its wide operating voltage range and industrial temperature tolerance ensure reliable performance in demanding environments. Additionally, the low power dissipation and compact package improve system efficiency and integration flexibility, making it a preferred choice for engineers seeking robust and efficient semiconductor components.
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Applications typiques
- High-speed digital signal processing systems requiring precise timing control and low latency operation, such as communication interfaces and data converters.
- Industrial automation equipment where reliable switching and wide temperature range operation are critical for consistent functionality.
- Automotive electronic control units (ECUs) that demand robust voltage tolerance and rapid signal propagation in harsh conditions.
- Consumer electronics devices that benefit from low power consumption and compact packaging for efficient circuit design.
MX19004P51 Brand Info
The MX19004P51 is manufactured by a leading semiconductor supplier committed to delivering high-quality integrated circuits designed for industrial and automotive markets. This product exemplifies the brand??s focus on reliability, precision, and efficient power management. Engineered to meet rigorous industry standards, it supports diverse applications requiring high-speed switching and robust electrical characteristics. The manufacturer provides comprehensive technical support and documentation to assist engineers and sourcing professionals in seamless product integration.
FAQ
What is the maximum operating frequency of this semiconductor device?
The device supports a maximum operating frequency of 150 MHz, making it suitable for high-speed digital signal processing and timing-critical applications.
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Can this device operate under industrial temperature conditions?
Yes, it is rated for operation within a temperature range of -40 ??C to +85 ??C, ensuring reliable performance in industrial environments.
What types of input voltage levels are compatible with this IC?
This device accepts both TTL and CMOS compatible input voltage levels