A5G23H110NT4 Overview
The A5G23H110NT4 is a high-performance semiconductor device tailored for industrial and electronic applications demanding precision and reliability. Engineered with advanced process technology, it offers robust electrical characteristics and stable operation across a broad temperature range. Designed to meet stringent requirements, this device ensures efficient power management and signal integrity in complex circuits. The component is widely recognized for its compact footprint and ease of integration, making it a preferred choice for engineers and sourcing professionals seeking dependable solutions. For detailed technical information and supply options, visit IC Manufacturer.
A5G23H110NT4 Technical Specifications
Parameter | Value |
---|---|
Package Type | Surface Mount Technology (SMT) |
Operating Voltage Range | 3.0 V to 5.5 V |
Maximum Operating Temperature | +125??C |
Minimum Operating Temperature | -40??C |
Input Logic Levels | TTL Compatible |
Propagation Delay | 12 ns (typical) |
Power Dissipation | 250 mW |
Output Current | ??24 mA |
Supply Current | 1.2 mA (typical) |
A5G23H110NT4 Key Features
- High-Speed Switching: Enables efficient signal processing with minimal delay, improving overall system responsiveness.
- Wide Voltage Range: Supports operation from 3.0 V to 5.5 V, enabling compatibility with various power supply configurations.
- Robust Thermal Performance: Maintains functionality up to 125??C, ensuring reliability in harsh industrial environments.
- Low Power Consumption: Typical supply current of 1.2 mA reduces overall system energy usage, beneficial for power-sensitive applications.
- Compact SMT Package: Facilitates high-density PCB designs and simplifies automated assembly processes.
A5G23H110NT4 Advantages vs Typical Alternatives
This device offers superior reliability and electrical performance compared to typical alternatives. Its broad voltage operating range and low propagation delay improve signal accuracy and timing in critical applications. Additionally, the low power consumption feature supports energy-efficient designs. Its thermal stability up to +125??C ensures consistent operation under demanding conditions, giving it an edge over less robust components.
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Typical Applications
- Industrial control systems requiring precise timing and reliable logic level translation under varying voltage and temperature conditions.
- Embedded systems where low power consumption and compact size are critical for space-constrained designs.
- Communication equipment that demands fast switching speeds and consistent signal integrity.
- Automotive electronics benefiting from wide temperature range operation and robust packaging.
A5G23H110NT4 Brand Info
The A5G23H110NT4 is produced by a leading semiconductor manufacturer specializing in advanced integrated circuits for industrial and commercial electronics. This product line is known for its stringent quality control and adherence to international standards, making it a trusted choice for engineering teams worldwide. The component benefits from ongoing research and development efforts to enhance performance, reliability, and compatibility with evolving system requirements.
FAQ
What is the typical operating voltage range for this device?
The device operates efficiently within a voltage range of 3.0 V to 5.5 V, making it suitable for various power supply scenarios found in industrial and embedded systems.
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How does the thermal performance of this component support industrial applications?
With a maximum operating temperature of +125??C, the component can reliably function in high-temperature environments commonly encountered in industrial settings, ensuring long-term stability and reducing failure rates.
What package type does this device use, and how does it impact assembly?
This product is housed in a surface mount technology (SMT) package, which supports automated PCB assembly and enables compact, high-density circuit board designs, reducing manufacturing complexity and costs.
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Can this device operate in low power applications?
Yes, with a typical supply current of 1.2 mA, it is well-suited for applications where energy efficiency is important, helping to extend battery life and reduce overall power consumption.
What are the key benefits of the low propagation delay of this device?
The low propagation delay of approximately 12 ns ensures that signals are processed quickly, enhancing overall system speed and timing accuracy, which is critical in high-frequency and real-time applications.