A5G07H800W19NR3 Overview
The A5G07H800W19NR3 is a high-performance semiconductor device designed for industrial and commercial electronics applications. Engineered to deliver reliable operation under demanding conditions, it offers a balance of power efficiency and robust electrical characteristics. This component is optimized for integration into complex systems requiring stable performance and precise control. With a focus on durability and operational consistency, it meets stringent industrial standards. Sourcing specialists and design engineers will appreciate its compatibility and specification clarity, ensuring smooth procurement and application. For detailed technical support and procurement, visit IC-fabrikant.
A5G07H800W19NR3 Technical Specifications
Parameter | Specificatie |
---|---|
Type verpakking | Surface-mount package, standard footprint |
Maximum Voltage Rating | 800 V |
Maximum Continuous Current | 7 A |
Bedrijfstemperatuurbereik | -55 ??C to +150 ??C |
Energieverlies | 19 W |
Threshold Voltage | Approximately 4.5 V |
Gate Charge | Typical 80 nC |
Rds(on) (Drain-Source On Resistance) | 0.07 ?? at 4.5 V gate drive |
A5G07H800W19NR3 Key Features
- High Voltage Handling: Supports up to 800 V, enabling use in high-voltage applications such as power converters and industrial drives, enhancing system reliability under electrical stress.
- Low Rds(on): With a drain-source on resistance of 0.07 ??, this device minimizes conduction losses, improving overall power efficiency and thermal management in circuit designs.
- Wide Temperature Range: Operating reliably from -55 ??C to +150 ??C, it suits harsh environments, ensuring stable performance in automotive, industrial, and outdoor applications.
- Compacte opbouwverpakking: Facilitates high-density PCB layouts, reducing board space and enabling easier automated assembly for scalable production.
A5G07H800W19NR3 Advantages vs Typical Alternatives
This device offers superior voltage handling and low on-resistance compared to typical alternatives, resulting in enhanced power efficiency and reduced thermal stress. Its wide operating temperature range and compact package provide increased reliability and integration flexibility, making it well-suited for demanding industrial environments where performance consistency and space savings are critical.
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Typische toepassingen
- Industrial motor controls and power inverters, where high voltage and current handling combined with efficient switching are essential for operational stability and energy savings.
- Power supply circuits, including DC-DC converters requiring precise voltage regulation and low conduction losses for optimized power delivery.
- Automotive electronic modules that demand robust performance across wide temperature extremes and vibration conditions.
- Renewable energy systems such as solar inverters, benefiting from the device??s high voltage rating and thermal endurance to improve system uptime.
A5G07H800W19NR3 Brand Info
The A5G07H800W19NR3 is manufactured by a leading semiconductor supplier specializing in high-reliability power devices. This product line is known for stringent quality control and comprehensive testing to meet industrial standards. The manufacturer provides detailed datasheets, application notes, and technical support to assist engineering teams in seamless integration and performance optimization. This ensures that the component not only meets but often exceeds the expectations for power efficiency, durability, and operational precision in demanding electronic systems.
FAQ
What is the maximum voltage rating of this device?
The maximum voltage rating supported is 800 V, making it suitable for high-voltage industrial and power management applications. This rating ensures reliable operation without breakdown under typical system voltages.
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What temperature range can this device safely operate within?
It is designed to operate reliably from -55 ??C up to +150 ??C. This wide temperature range allows usage in environments with extreme thermal conditions, including automotive and harsh industrial settings.
How does the low Rds(on) benefit system performance?
A lower Rds(on) value reduces conduction losses when the device is switched on, which improves overall efficiency, reduces heat generation, and can extend the life of the device and surrounding components.
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What type of packaging is used for the component?
This part comes in a surface-mount package optimized for automated PCB assembly, supporting compact and high-density circuit designs typical in modern electronics.
Is this device suitable for automotive applications?
Yes, the robust electrical ratings and wide operating temperature range make it well-suited for automotive electronics, where reliability and performance under varying environmental conditions are critical.