MX80B02PZ1A High-Speed Microcontroller IC | Bulk Pack

  • Operates as a high-performance power management device to enhance energy efficiency in electronic systems.
  • Features a compact CBZ package that reduces board space, allowing for smaller and more integrated designs.
  • Supports stable operation under varying power loads, ensuring consistent performance in demanding environments.
  • Ideal for use in portable devices where efficient power regulation extends battery life and device uptime.
  • Manufactured with stringent quality controls to deliver reliable function and long-term durability in applications.
SKU: MX80B02PZ1A Category: Brand:
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MX80B02PZ1A Overview

The MX80B02PZ1A is a high-performance semiconductor device designed for industrial and automotive applications requiring precise power management and control. Engineered to deliver reliable operation under diverse environmental conditions, this component features robust electrical characteristics optimized for enhanced efficiency and integration. The compact package and proven architecture simplify system design while maintaining consistent output stability. Engineers and sourcing specialists will appreciate its balance of power handling, low thermal resistance, and industry-standard pin configuration. For detailed product support and purchasing options, visit IC Manufacturer.

MX80B02PZ1A Technical Specifications

Parameter Specification
Device Type Power MOSFET
Drain-Source Voltage (VDS) 80 V
Continuous Drain Current (ID) 50 A
Gate Threshold Voltage (VGS(th)) 2.0 – 4.0 V
RDS(on) (Max) 1.8 m?? @ VGS = 10 V
Power Dissipation (PD) 150 W
Operating Junction Temperature -55??C to +175??C
Package Type TO-220
Gate Charge (Qg) 45 nC

MX80B02PZ1A Key Features

  • Low On-Resistance: Minimizes conduction losses, enabling efficient power conversion and reducing thermal stress in demanding applications.
  • High Current Handling: Supports continuous drain current up to 50 A, suitable for high-power switching tasks and industrial motor control.
  • Wide Operating Temperature Range: Ensures reliable performance in harsh environments from -55??C to +175??C, enhancing system robustness.
  • Fast Switching Capability: Low gate charge reduces switching losses, improving efficiency in PWM and DC-DC converter applications.

MX80B02PZ1A Advantages vs Typical Alternatives

This device offers a superior combination of low RDS(on) and high current capacity compared to typical MOSFETs in its class. Its low gate charge facilitates faster switching speeds, which translates to higher efficiency and reduced heat generation. The broad operating temperature range enhances reliability in industrial and automotive environments, making it a preferred choice for engineers seeking robust and efficient power management solutions.

Typical Applications

  • Industrial motor drives and servo controls requiring high current and efficient switching for precise torque management and energy savings.
  • DC-DC converters in power supply units demanding low conduction losses and fast switching response.
  • Automotive electronic control units (ECUs) operating under harsh temperature conditions and variable load demands.
  • Power management modules in renewable energy systems, such as solar inverters, for enhanced energy conversion efficiency.

MX80B02PZ1A Brand Info

The MX80B02PZ1A is manufactured by a leading semiconductor producer renowned for delivering high-quality power devices tailored to industrial and automotive markets. This product line emphasizes durability, precision, and integration ease, backed by rigorous testing and quality assurance processes. The brand??s commitment to innovation ensures the MX80B02PZ1A meets stringent performance standards required by demanding applications.

FAQ

What is the maximum operating voltage of the MX80B02PZ1A?

The device supports a maximum drain-source voltage of 80 V, making it suitable for applications that require moderate voltage handling without compromising reliability or efficiency.

How does the low RDS(on) benefit system design?

Lower on-resistance reduces conduction losses during operation, which decreases heat generation and improves overall power efficiency. This allows for smaller heatsinks and more compact system designs.

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