MX80A06SZ1A Overview
The MX80A06SZ1A is a high-performance semiconductor device designed to meet the rigorous demands of industrial and automotive applications. Featuring robust electrical parameters and reliable operation under varying environmental conditions, it offers precise control and enhanced efficiency. This device supports seamless integration in power management and switching circuits, delivering consistent performance with improved thermal stability. Engineers and sourcing specialists benefit from its compact packaging and standardized pin configuration, simplifying design cycles and reducing time-to-market. For more detailed technical resources and support, visit the IC Manufacturer website.
MX80A06SZ1A Technical Specifications
| Parameter | Specification |
|---|---|
| Maximum Drain-Source Voltage (VDS) | 600 V |
| Continuous Drain Current (ID) | 80 A |
| Gate Threshold Voltage (VGS(th)) | 2.0 V (typical) |
| Total Gate Charge (Qg) | 80 nC |
| RDS(on) (Drain-Source On-Resistance) | 6 m?? @ VGS=10 V |
| Operating Junction Temperature (TJ) | -55??C to +175??C |
| Package Type | TO-247 |
| Thermal Resistance, Junction-to-Case (R??JC) | 0.5 ??C/W |
MX80A06SZ1A Key Features
- High Current Capability: Supports continuous drain current up to 80 A, enabling efficient handling of heavy loads in power circuits.
- Low On-Resistance: Offers a minimal 6 m?? RDS(on) at 10 V gate drive, reducing conduction losses and improving overall system efficiency.
- Wide Operating Temperature Range: Operates reliably from -55??C to +175??C, suitable for harsh industrial and automotive environments.
- Optimized Gate Charge: Total gate charge of 80 nC allows faster switching speeds, reducing switching losses and improving power conversion efficiency.
MX80A06SZ1A Advantages vs Typical Alternatives
This device provides a superior balance of high current capacity and low conduction losses compared to typical MOSFETs in its class. Its robust thermal performance and low gate charge enable more compact and reliable power designs. The enhanced efficiency and high voltage rating make it an ideal choice for demanding power management applications, offering clear advantages in system integration and operational stability.
🔥 Best-Selling Products
Typical Applications
- Power conversion systems including DC-DC converters and motor drives where efficient high-current switching is critical for performance and thermal management.
- Automotive electronic control units requiring reliable operation under wide temperature ranges and high-voltage conditions.
- Industrial power supplies benefiting from low on-resistance and fast switching capabilities to improve energy efficiency and reduce heat dissipation.
- Renewable energy inverters and battery management systems that demand high voltage tolerance and robust current handling.
MX80A06SZ1A Brand Info
The MX80A06SZ1A is part of a premium line of power MOSFETs manufactured by a leading semiconductor company known for delivering high-quality and reliable components tailored for industrial and automotive applications. This product exemplifies the brand??s commitment to innovation, offering engineers a trusted solution that combines efficiency, durability, and ease of integration. The device is supported by comprehensive technical documentation and customer service, facilitating smooth design implementation in complex electronic systems.
FAQ
What is the maximum voltage rating for the MX80A06SZ1A?
The device is rated for a maximum drain-source voltage of 600 volts, making it suitable for high-voltage applications such as power converters and motor controllers where voltage spikes may occur.
🌟 Featured Products
-

“Buy MAX9312ECJ+ Precision Voltage Comparator in DIP Package for Reliable Performance”
-

QCC-711-1-MQFN48C-TR-03-1 Bluetooth Audio SoC with MQFN48C Package
-

0339-671-TLM-E Model – High-Performance TLM-E Package for Enhanced Functionality
-

1-1415898-4 Connector Housing, Electrical Wire-to-Board, Receptacle, Packaged
How does the low RDS(on) benefit power circuit design?
A low drain-source on-resistance of 6 milliohms reduces conduction losses during operation, which increases overall power efficiency and decreases heat generation, allowing for smaller heat sinks and more compact system designs.




