MC34152 - High Speed Dual MOSFET Drivers - ON Semiconductor 2026

Get Form
MC34152 - High Speed Dual MOSFET Drivers - ON Semiconductor Preview on Page 1

Here's how it works

01. Edit your form online
Type text, add images, blackout confidential details, add comments, highlights and more.
02. Sign it in a few clicks
Draw your signature, type it, upload its image, or use your mobile device as a signature pad.
03. Share your form with others
Send it via email, link, or fax. You can also download it, export it or print it out.

Definition & Meaning

The MC34152, MC33152, and NCV33152 high-speed dual MOSFET drivers by ON Semiconductor are advanced integrated circuits designed to handle substantial capacitive loads using minimal digital signals. These devices are instrumental in converting low-power digital signals into the high-power signals necessary for driving MOSFETs effectively. Their design focuses on providing features like low input current compatibility with both CMOS and LSTTL logic, which ensures efficient operation in various electronic systems.

Key Features

  • Low Input Current: Makes them highly compatible with low-power logic systems.
  • High Slew Rate: Enables rapid switching, crucial for applications needing fast response times.
  • Undervoltage Lockout: Ensures stable operation by preventing the driver from functioning under inadequate voltage conditions.

Practical Applications

These drivers are typically used in power supplies, converters, and motor controllers. Their ability to handle high-speed operations makes them suitable for environments where quick response cycles are vital.

Steps to Complete the Form

Step 1: Gather Technical Requirements

Before utilizing the MC34152, clearly define your technical requirements. This involves understanding the electrical specifications necessary for your application, such as voltage levels and the type of logic system being integrated (e.g., CMOS).

Step 2: Understand the Electrical Characteristics

Study the driver’s electrical characteristics, like maximum ratings and typical performance data. Ensure these align with your system’s demands to prevent component malfunction.

Step 3: Consult Application Information

Review detailed application notes and layout considerations. These will guide you in integrating the driver correctly within your circuits, ensuring optimal performance and longevity of the components.

Who Typically Uses the MC34152 - High Speed Dual MOSFET Drivers - ON Semiconductor

decoration image ratings of Dochub

Electronics Engineers

Professionals designing electronic circuits with substantial power needs often utilize these drivers. Their expertise helps in effectively implementing the MOSFET driver into existing systems, such as within motor controllers or power supplies.

Industrial Applications

Industries where precise power management and efficient switching are vital often rely on these drivers. Examples include the automation sector and consumer electronics manufacturing, where durability and performance are crucial.

Important Terms Related to MC34152 - High Speed Dual MOSFET Drivers

MOSFET

A metal-oxide-semiconductor field-effect transistor used for amplifying or switching electronic signals.

Slew Rate

The rate at which an output voltage can change, crucial for applications requiring fast signal processing.

Input Hysteresis

A feature that helps in handling slow-changing input signals, which might otherwise lead to erroneous operations in digital circuits.

Key Elements to Consider

Compatibility

Ensure the driver’s compatibility with existing logic systems, such as CMOS and LSTTL, to avoid integration issues.

Thermal Performance

Consider thermal management, as drivers can become hot under high-power loads, requiring effective heat dissipation mechanisms.

Voltage Levels

Verify that the voltage specifications align with your system to ensure efficient and safe operation.

Examples of Using the MC34152 - High Speed Dual MOSFET Drivers

Scenario 1: Power Supply Design

In designing a power supply, the MC34152 can efficiently switch power transistors, ensuring high-efficiency power conversion and minimal energy loss.

Scenario 2: Motor Controllers

For motor control applications, these drivers provide the necessary switching speed and power handling to manage motor speeds and positions accurately.

Digital vs. Paper Version

Digital Documentation

Often, technical manuals and specifications for the MC34152 are provided digitally. This format facilitates easy access and ensures the information is up-to-date.

Paper Reference Materials

Some engineers may prefer printed documentation for ease of annotation and reference during hands-on work. Having a paper version can provide quick access without digital interfaces.

Business Types That Benefit Most

Manufacturing

Manufacturers focusing on complex electronics benefit from the MC34152 due to its ability to handle high-speed operations and versatile applications, such as within industrial control systems.

Research and Development

R&D departments in tech companies utilize these drivers to prototype new products that require efficient power and signal management solutions, capitalizing on the drivers’ high-speed capabilities.

be ready to get more

Complete this form in 5 minutes or less

Get form

Got questions?

We have answers to the most popular questions from our customers. If you can't find an answer to your question, please contact us.
Contact us
Modern IGBTs have the switching speed suitable for power supply applications, thus IGBTs will compete with MOSFETs for certain high voltage applications as well. Many designers have therefore turned to MOSFET drivers such as UCC2753x and UCC53xx for their IGBT drive requirements.
Low-side means the current travels from the load or device through the mosfet to ground (common). High-side means the current travels from the supply through the mosfet to the load and then to ground. Another way to put that is: Low-side = mosfet source to ground, drain to load, load to supply.
MOSFETs are unipolar devices that use only electrons as carriers, while IGBTs are bipolar devices that use both electrons and holes. IGBT (Insulated Gate Bipolar Transistor) is also a voltage-controlled element with an insulated gate, similar to MOSFET (Metal Oxide Semiconductor Field Effect Transistor).
Choosing the MOSFETs Be sure to choose power MOSFETs that are rated for at least the power supply voltage and the maximum current needed by the motor. Some margin is necessary as well. Generally, the drain-to-source voltage rating (VDS) of the MOSFETs should be at least 20% higher than the supply voltage.

Security and compliance

At DocHub, your data security is our priority. We follow HIPAA, SOC2, GDPR, and other standards, so you can work on your documents with confidence.

Learn more
ccpa2
pci-dss
gdpr-compliance
hipaa
soc-compliance