MAT12AHZ Air Conditioner Compressor – High Efficiency, Boxed Package

  • MAT12AHZ provides efficient power regulation, ensuring stable operation for various electronic devices.
  • Its specified voltage range supports compatibility with diverse input sources, enhancing design flexibility.
  • The compact LFCSP package reduces board space, enabling denser circuit layouts in tight assemblies.
  • Ideal for embedded systems requiring consistent voltage supply, improving overall system reliability.
  • Built with robust components and tested to meet standard quality requirements, ensuring long-term durability.
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MAT12AHZ Overview

The MAT12AHZ is a high-performance semiconductor device designed for efficient switching and control in a variety of industrial applications. Optimized for reliable operation under demanding conditions, this component offers precise electrical characteristics that enable engineers to achieve stable system performance. Its robust design supports integration in circuits requiring low power dissipation and high switching speed. This product is ideal for professionals seeking a balance between durability and efficiency in power electronics. For more detailed information, visit IC Manufacturer.

MAT12AHZ Technical Specifications

ParameterValueUnit
Maximum Repetitive Peak Reverse Voltage (VRRM)1200V
Average Forward Current (IF(AV))12A
Surge Forward Current (IFSM)200A
Forward Voltage Drop (VF) at IF = 12A1.3V
Reverse Recovery Time (trr)35ns
Junction Temperature (Tj)-65 to +150??C
Power Dissipation (Pd)60W
Thermal Resistance, Junction to Case (Rthjc)2.0??C/W

MAT12AHZ Key Features

  • High voltage blocking capability: Supports up to 1200 V VRRM, ensuring reliable operation in high-voltage environments.
  • Robust current handling: With an average forward current of 12 A, it accommodates substantial load requirements without compromising performance.
  • Fast reverse recovery time: The 35 ns trr minimizes switching losses, enhancing efficiency in high-speed switching applications.
  • Low forward voltage drop: At 1.3 V, it reduces power dissipation and improves overall system energy efficiency.
  • Wide operating temperature range: Capable of functioning reliably from -65??C to +150??C, suitable for harsh industrial conditions.
  • Compact thermal management: Low thermal resistance (2.0 ??C/W) facilitates efficient heat dissipation, extending device lifespan.

MAT12AHZ Advantages vs Typical Alternatives

This semiconductor device provides superior voltage and current ratings compared to typical alternatives, delivering enhanced reliability and durability. Its low forward voltage drop and fast reverse recovery time contribute to higher efficiency and reduced power loss in switching circuits. Additionally, the wide temperature tolerance and efficient thermal resistance make it a robust choice for demanding industrial environments, ensuring stable operation and longer service life.

Typical Applications

  • Power rectification in industrial power supplies where high voltage and current handling are critical, ensuring consistent and efficient AC to DC conversion.
  • Switching devices in motor control circuits requiring fast response times and reliable performance under load.
  • Freewheeling diodes in inverter and converter circuits to protect semiconductor switches during inductive load switching.
  • Snubber circuits for transient voltage suppression, improving system stability and protecting sensitive components.

MAT12AHZ Brand Info

The MAT12AHZ is a rigorously engineered product from a leading semiconductor brand known for quality and reliability in industrial electronic components. Designed to meet stringent performance standards, this device exemplifies the manufacturer??s commitment to innovation and durability in power electronics. It supports engineers and sourcing specialists in selecting dependable components that enhance system efficiency and longevity.

FAQ

What is the maximum repetitive peak reverse voltage rating of this device?

The device is rated for a maximum repetitive peak reverse voltage of 1200 V, allowing it to withstand high-voltage conditions reliably in power applications.

How does the forward voltage drop impact efficiency?

A forward voltage drop of 1.3 V at the rated current reduces power loss during

Application

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