Microchip Technology MIC4423YWM-TR
Microchip Technology MIC4423YWM-TR
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Microchip Technology MIC4423YWM-TR

Gate Drivers ICs Surface Mount Tape & Reel (TR) Active Gate Drivers ICs

Manufacturer No:

MIC4423YWM-TR

Utmel No:

1610-MIC4423YWM-TR

Package:

16-SOIC (0.295, 7.50mm Width)

ECAD Model:

Description:

Surface Mount Tape & Reel (TR) Active Gate Drivers ICs Inverting 2 16-SOIC (0.295, 7.50mm Width) MIC4423

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Unit Price: $2.748446

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MIC4423YWM-TR information

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Microchip Technology MIC4423YWM-TR technical specifications, attributes, parameters and parts with similar specifications to Microchip Technology MIC4423YWM-TR.
  • Type
    Parameter
  • Factory Lead Time
    8 Weeks
  • Mount

    In electronic components, the term "Mount" typically refers to the method or process of physically attaching or fixing a component onto a circuit board or other electronic device. This can involve soldering, adhesive bonding, or other techniques to secure the component in place. The mounting process is crucial for ensuring proper electrical connections and mechanical stability within the electronic system. Different components may have specific mounting requirements based on their size, shape, and function, and manufacturers provide guidelines for proper mounting procedures to ensure optimal performance and reliability of the electronic device.

    Surface Mount
  • Mounting Type

    The "Mounting Type" in electronic components refers to the method used to attach or connect a component to a circuit board or other substrate, such as through-hole, surface-mount, or panel mount.

    Surface Mount
  • Package / Case

    refers to the protective housing that encases an electronic component, providing mechanical support, electrical connections, and thermal management.

    16-SOIC (0.295, 7.50mm Width)
  • Number of Pins
    16
  • Supplier Device Package

    The parameter "Supplier Device Package" in electronic components refers to the physical packaging or housing of the component as provided by the supplier. It specifies the form factor, dimensions, and layout of the component, which are crucial for compatibility and integration into electronic circuits and systems. The supplier device package information typically includes details such as the package type (e.g., DIP, SOP, QFN), number of pins, pitch, and overall size, allowing engineers and designers to select the appropriate component for their specific application requirements. Understanding the supplier device package is essential for proper component selection, placement, and soldering during the manufacturing process to ensure optimal performance and reliability of the electronic system.

    16-SOIC
  • Driver Configuration
    Low-Side
  • Logic voltage-VIL, VIH
    0.8V 2.4V
  • Operating Temperature

    The operating temperature is the range of ambient temperature within which a power supply, or any other electrical equipment, operate in. This ranges from a minimum operating temperature, to a peak or maximum operating temperature, outside which, the power supply may fail.

    -40°C~150°C TJ
  • Packaging

    Semiconductor package is a carrier / shell used to contain and cover one or more semiconductor components or integrated circuits. The material of the shell can be metal, plastic, glass or ceramic.

    Tape & Reel (TR)
  • Part Status

    Parts can have many statuses as they progress through the configuration, analysis, review, and approval stages.

    Active
  • Moisture Sensitivity Level (MSL)

    Moisture Sensitivity Level (MSL) is a standardized rating that indicates the susceptibility of electronic components, particularly semiconductors, to moisture-induced damage during storage and the soldering process, defining the allowable exposure time to ambient conditions before they require special handling or baking to prevent failures

    2 (1 Year)
  • Max Operating Temperature

    The Maximum Operating Temperature is the maximum body temperature at which the thermistor is designed to operate for extended periods of time with acceptable stability of its electrical characteristics.

    150°C
  • Min Operating Temperature

    The "Min Operating Temperature" parameter in electronic components refers to the lowest temperature at which the component is designed to operate effectively and reliably. This parameter is crucial for ensuring the proper functioning and longevity of the component, as operating below this temperature may lead to performance issues or even damage. Manufacturers specify the minimum operating temperature to provide guidance to users on the environmental conditions in which the component can safely operate. It is important to adhere to this parameter to prevent malfunctions and ensure the overall reliability of the electronic system.

    -40°C
  • Voltage - Supply

    Voltage - Supply refers to the range of voltage levels that an electronic component or circuit is designed to operate with. It indicates the minimum and maximum supply voltage that can be applied for the device to function properly. Providing supply voltages outside this range can lead to malfunction, damage, or reduced performance. This parameter is critical for ensuring compatibility between different components in a circuit.

    4.5V~18V
  • Base Part Number

    The "Base Part Number" (BPN) in electronic components serves a similar purpose to the "Base Product Number." It refers to the primary identifier for a component that captures the essential characteristics shared by a group of similar components. The BPN provides a fundamental way to reference a family or series of components without specifying all the variations and specific details.

    MIC4423
  • Number of Outputs
    2
  • Max Output Current

    The maximum current that can be supplied to the load.

    3A
  • Input Type

    Input type in electronic components refers to the classification of the signal or data that a component can accept for processing or conversion. It indicates whether the input is analog, digital, or a specific format such as TTL or CMOS. Understanding input type is crucial for ensuring compatibility between different electronic devices and circuits, as it determines how signals are interpreted and interacted with.

    Inverting
  • Rise / Fall Time (Typ)

    The parameter "Rise / Fall Time (Typ)" in electronic components refers to the time it takes for a signal to transition from a specified low level to a specified high level (rise time) or from a high level to a low level (fall time). It is typically measured in nanoseconds or picoseconds and is an important characteristic in determining the speed and performance of a component, such as a transistor or integrated circuit. A shorter rise/fall time indicates faster signal switching and can impact the overall speed and efficiency of a circuit. Designers often consider this parameter when selecting components for high-speed applications to ensure proper signal integrity and timing.

    28ns 32ns
  • Channel Type

    In electronic components, the parameter "Channel Type" refers to the type of channel through which electrical signals or current flow within the component. This parameter is commonly associated with field-effect transistors (FETs) and other semiconductor devices. The channel type can be categorized as either N-channel or P-channel, depending on the polarity of the majority charge carriers (electrons or holes) that carry the current within the channel. N-channel devices have an electron-conducting channel, while P-channel devices have a hole-conducting channel. Understanding the channel type is crucial for proper circuit design and component selection to ensure compatibility and optimal performance.

    Independent
  • Number of Drivers
    2
  • Gate Type

    In electronic components, the term "Gate Type" typically refers to the type of logic gate used in digital circuits. A logic gate is a fundamental building block of digital circuits that performs a specific logical operation based on the input signals it receives. Common types of logic gates include AND, OR, NOT, NAND, NOR, XOR, and XNOR gates.The Gate Type parameter specifies the specific logic function that the gate performs, such as AND, OR, or NOT. Different gate types have different truth tables that define their behavior based on the input signals. By selecting the appropriate gate type for a given application, designers can implement various logical functions and operations in digital circuits.Understanding the gate type is essential for designing and analyzing digital circuits, as it determines how the circuit processes and manipulates binary data. Choosing the right gate type is crucial for ensuring the correct functionality and performance of the digital system being designed.

    N-Channel, P-Channel MOSFET
  • Current - Peak Output (Source, Sink)

    The parameter "Current - Peak Output (Source, Sink)" in electronic components refers to the maximum amount of current that the component can either supply (source) or sink (absorb) under peak conditions. This parameter is important for understanding the capability of the component to handle sudden surges or spikes in current without being damaged. The peak output current is typically specified in datasheets and is crucial for designing circuits that require high current handling capabilities. It is essential to consider this parameter to ensure the component operates within its safe operating limits and to prevent potential damage or malfunction.

    3A 3A
  • RoHS Status

    RoHS means “Restriction of Certain Hazardous Substances” in the “Hazardous Substances Directive” in electrical and electronic equipment.

    ROHS3 Compliant
  • Lead Free

    Lead Free is a term used to describe electronic components that do not contain lead as part of their composition. Lead is a toxic material that can have harmful effects on human health and the environment, so the electronics industry has been moving towards lead-free components to reduce these risks. Lead-free components are typically made using alternative materials such as silver, copper, and tin. Manufacturers must comply with regulations such as the Restriction of Hazardous Substances (RoHS) directive to ensure that their products are lead-free and environmentally friendly.

    Lead Free
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Download datasheets and manufacturer documentation for Microchip Technology MIC4423YWM-TR.

Product Description: MIC4423YWM-TR Gate Driver IC

1. Description

The MIC4423YWM-TR is a high-performance, low-side gate driver IC designed by Microchip Technology. This integrated circuit is specifically engineered to drive N-channel and P-channel MOSFETs in various applications requiring efficient and reliable switching operations. The MIC4423YWM-TR is part of the PMIC - Gate Drivers subcategory, offering a robust solution for power management systems.

2. Features

  • Independent Channel Type: Each channel operates independently, allowing for flexible control over multiple MOSFETs.
  • High Peak Output Current: The IC can handle peak output currents of up to 3A in both source and sink configurations.
  • Low-Side Driver Configuration: Suitable for applications where the driver is connected to the low side of the MOSFET.
  • N-Channel, P-Channel MOSFET Support: Compatible with both N-channel and P-channel MOSFETs, providing versatility in circuit design.
  • Inverting Input Type: The input signal is inverted, which is useful in various control schemes.
  • Lead-Free and RoHS3 Compliant: Ensures compliance with environmental regulations and safety standards.
  • Surface Mount Package: The 16-SOIC package is designed for surface mount applications, facilitating compact and efficient PCB design.
  • Operating Temperature Range: The IC operates within a wide temperature range from -40°C to 150°C, making it suitable for harsh environments.
  • Fast Rise/Fall Times: The typical rise and fall times are 28ns and 32ns respectively, ensuring fast switching operations.

3. Applications

The MIC4423YWM-TR gate driver IC is primarily used in: - Power Supplies: For controlling high-power MOSFETs in DC-DC converters, AC-DC converters, and other power supply circuits. - Motor Control Systems: In applications requiring precise control over motor speed and direction. - Industrial Automation: In systems involving high-current switching operations such as robotics and conveyor belts. - Automotive Systems: For use in automotive electronics where reliability and high performance are critical.

Secondary applications include: - Audio Equipment: In audio amplifiers where precise control over power transistors is necessary. - Medical Devices: In medical equipment requiring high reliability and precision control over electrical signals.

4. Alternative Parts

Alternative parts to the MIC4423YWM-TR include: - MIC4423YMTR: Another variant from Microchip Technology with similar specifications but potentially different packaging or lead times. - Other Low-Side Gate Drivers: From other manufacturers like STMicroelectronics (e.g., STGAP15DMTR) or Texas Instruments (e.g., UCC27511).

5. Embedded Modules

The MIC4423YWM-TR is often used in various embedded modules such as: - DC-DC Converter Modules: Integrated modules for converting DC power from one voltage level to another. - Motor Control Modules: Pre-configured modules designed specifically for motor control applications. - Power Management Boards: Boards that integrate multiple power management components including gate drivers like the MIC4423YWM-TR.

The MIC4423YWM-TR offers a robust solution for gate driving applications requiring high performance and reliability. Its wide operating temperature range, fast switching times, and lead-free compliance make it an excellent choice for various industrial and automotive applications.

The three parts on the right have similar specifications to Microchip Technology & MIC4423YWM-TR.
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