AEDL-5810-J11 Overview
The AEDL-5810-J11 is a high-performance semiconductor device designed for industrial electronics applications requiring precise control and efficient power management. It delivers reliable operation under varied environmental conditions, featuring advanced integration that simplifies system design. Engineers and sourcing specialists value this component for its robust technical specifications and adaptability across multiple industrial use cases. The product’s compact form factor combined with its optimized electrical characteristics makes it a suitable choice for demanding applications. For detailed product sourcing and technical support, visit IC Manufacturer.
AEDL-5810-J11 Technical Specifications
Parameter | Specification |
---|---|
Operating Voltage | 3.3 V to 5.5 V |
Maximum Current | 1.8 A |
Power Dissipation | 2.5 W |
Operating Temperature Range | -40??C to +85??C |
Package Type | QFN 16-pin |
Switching Frequency | 500 kHz |
Input Logic Level | TTL Compatible |
Thermal Resistance (Junction to Ambient) | 40 ??C/W |
AEDL-5810-J11 Key Features
- Integrated Power Management: Enables efficient voltage regulation, reducing power loss and improving system stability.
- Wide Operating Voltage Range: Supports 3.3 V to 5.5 V, providing flexibility for diverse industrial power systems.
- Compact QFN Package: Facilitates high-density PCB layouts and enhances thermal dissipation for reliable operation.
- Robust Thermal Performance: With a junction-to-ambient thermal resistance of 40 ??C/W, it maintains stable operation under elevated temperatures.
AEDL-5810-J11 Advantages vs Typical Alternatives
This device offers improved integration and optimized switching frequency compared to typical alternatives, delivering enhanced efficiency and reduced thermal stress. Its wide operating voltage range and robust thermal characteristics ensure superior reliability in demanding industrial environments. Additionally, the compact QFN package supports streamlined PCB design, making it a preferred choice for engineers seeking precision and durability.
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Typical Applications
- Industrial power control circuits requiring stable voltage regulation and efficient energy management across varying load conditions.
- Embedded systems in automation equipment that demand reliable operation within a broad temperature range.
- Sensor interface modules where low power consumption and compact design are critical.
- Communication devices integrating power management to optimize performance and maintain signal integrity.
AEDL-5810-J11 Brand Info
The AEDL-5810-J11 is part of a product line from a leading semiconductor manufacturer specializing in industrial-grade integrated circuits. Designed to meet stringent quality and performance standards, this component embodies the brand??s commitment to innovation and reliability. It is engineered to support complex industrial applications, providing customers with trusted solutions that enhance system efficiency and durability.
FAQ
What is the operating voltage range of this device?
The component operates within a voltage range of 3.3 V to 5.5 V, allowing it to be used in a wide variety of industrial power systems that require flexible voltage input options.
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What package type does the AEDL-5810-J11 use?
This device is housed in a QFN 16-pin package, which supports compact PCB layouts and offers improved thermal dissipation compared to traditional packages.
Can this device operate in harsh temperature environments?
Yes, it is specified to operate reliably within a temperature range of -40??C to +85??C, making it suitable for many industrial applications that experience wide temperature variations.
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What is the maximum current rating of this component?
The device supports a maximum current of 1.8 A, enabling it to handle moderate power loads typical in industrial control and embedded system applications.
How does the device contribute to system efficiency?
By integrating efficient power management capabilities and operating at a switching frequency of 500 kHz, it minimizes power loss and reduces heat generation, thus enhancing overall system efficiency.