ASMF-LWG8-NRUAD Overview
The ASMF-LWG8-NRUAD is a high-performance semiconductor device designed for demanding industrial applications requiring robust and reliable operation. Engineered with advanced materials and precision manufacturing, this product delivers consistent electrical characteristics suitable for power management and signal conditioning tasks. It supports a broad range of operating conditions while maintaining low leakage and high breakdown voltage, ensuring long-term stability in harsh environments. Ideal for engineers and sourcing specialists, this component combines efficiency with durability, reflecting the stringent quality standards upheld by IC-Hersteller.
ASMF-LWG8-NRUAD Technical Specifications
Parameter | Spezifikation |
---|---|
Maximum Reverse Voltage (VR) | 600 V |
Durchschnittlicher Vorwärtsstrom (IF(AV)) | 8 A |
Stoßvorwärtsstrom (IFSM) | 150 A |
Forward Voltage Drop (VF) at IF | 1.1 V @ 8 A |
Reverse Leakage Current (IR) | 10 ??A @ VR |
Operating Junction Temperature (Tj) | -55° C bis +150° C |
Storage Temperature Range (Tstg) | -55??C to +175??C |
Paket Typ | DO-214AB (SMC) |
ASMF-LWG8-NRUAD Key Features
- Hohe Stoßstrombelastbarkeit: Supports surge currents up to 150 A, allowing reliable operation under transient load conditions, which is critical for power supply and motor drive circuits.
- Niedriger Vorwärtsspannungsabfall: The device??s forward voltage of 1.1 V at rated current minimizes conduction losses, improving overall system efficiency and thermal management.
- Breiter Betriebstemperaturbereich: Functionality from -55??C to +150??C ensures stable performance in extreme industrial environments, enhancing reliability and longevity.
- Compact DO-214AB Package: Provides efficient thermal dissipation while supporting automated assembly processes, facilitating integration into densely packed PCBs.
ASMF-LWG8-NRUAD Advantages vs Typical Alternatives
This device offers superior surge current handling and a lower forward voltage compared to many standard diodes in the same class, resulting in reduced power loss and improved thermal stability. Its broad operating temperature range and low leakage current make it especially advantageous for high-reliability industrial systems where accuracy and durability are paramount. The compact package type also supports easier system integration versus bulkier alternatives.
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Typische Anwendungen
- Power supply rectification in industrial equipment, where robust current handling and thermal stability ensure efficient and reliable energy conversion over extended periods.
- Freewheeling diode in motor control circuits, providing protection against voltage spikes and enhancing system resilience.
- Input protection in power management modules, preventing damage from transient voltage events.
- Voltage clamping in surge suppression circuits, safeguarding sensitive components from electrical overstress.
ASMF-LWG8-NRUAD Brand Info
The ASMF-LWG8-NRUAD is a product from a leading semiconductor manufacturer known for delivering high-quality discrete components tailored for industrial power electronics. This product line focuses on optimizing performance in critical applications by combining advanced semiconductor technology with rigorous quality control. Each unit undergoes stringent testing to meet international standards, ensuring reliability and consistency for demanding engineering specifications.
FAQ
What is the maximum reverse voltage rating of this device?
The device is rated for a maximum reverse voltage of 600 V, making it suitable for applications requiring high voltage blocking capability, such as power rectification and surge protection.
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How does the forward voltage drop affect system efficiency?
A lower forward voltage drop decreases power dissipation during conduction, which improves overall system efficiency and reduces thermal stress on the device, resulting in longer operational life and lower cooling requirements.
What package type is used and why is it important?
This product uses the DO-214AB (SMC) package, which offers excellent thermal dissipation and mechanical robustness, while supporting automated PCB assembly processes common in industrial manufacturing.
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Can this device operate reliably in extreme temperatures?
Yes, the device supports continuous operation from -55??C up to +150??C, allowing it to function reliably in harsh industrial environments without degradation of performance.
What are typical use cases for this semiconductor device?
It is typically used in power supply rectifiers, motor control circuits, input protection modules, and surge suppression applications, where its electrical characteristics and rugged design provide long-term reliability and efficiency.