Texas Instruments_UC3714D
original

Texas Instruments
UC3714D

730-UC3714D
PDF Datasheet
2-Ch Gate Driver, 1A Out, 1MHz, 60ns Fall, SOIC
12 weeks

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Tech Specifications

Package/Case
SOIC
Fall Time
60ns
Frequency
1MHz
Lead Free
Lead Free
Max Operating Temperature
70°C
Min Operating Temperature
0°C
Max Output Current
2A
Max Supply Current
24mA
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UC3714D Description

UC3714D Description

The UC3714D is a high-performance gate driver IC designed for low-side applications, manufactured by Texas Instruments. This device is part of the Power Management Integrated Circuits (PMIC) category and is housed in an 8SOIC package. The UC3714D is engineered to deliver robust performance in a compact form factor, making it ideal for a variety of power management applications.

Key technical specifications include an operating temperature range of 0°C to 150°C (TJ), ensuring reliable operation in demanding environments. The device supports a supply voltage range of 7V to 20V, providing flexibility in power supply design. With a peak output current capability of 1A for sourcing and 2A for sinking, the UC3714D can drive high-power loads efficiently. The rise and fall times are typically 30ns and 25ns, respectively, enabling fast switching and reduced power losses.

The UC3714D features a synchronous channel type, which enhances efficiency and reduces electromagnetic interference (EMI). It is RoHS3 compliant and REACH unaffected, meeting stringent environmental standards. The device is also moisture sensitivity level 2 (1 year), ensuring durability in storage and handling.

UC3714D Features

  • Dual Drivers: The UC3714D includes two drivers, allowing for simultaneous control of multiple power devices.
  • Fast Switching: With typical rise and fall times of 30ns and 25ns, the UC3714D minimizes switching losses and improves overall system efficiency.
  • Wide Operating Voltage Range: Supporting a supply voltage range of 7V to 20V, the device is versatile and can be used in various power supply configurations.
  • High Current Capability: The peak output current of 1A (source) and 2A (sink) enables the UC3714D to drive high-power loads effectively.
  • Synchronous Channel Type: This feature enhances efficiency and reduces EMI, making the device suitable for high-frequency applications.
  • Surface Mount Technology: The UC3714D is designed for surface mount applications, facilitating compact and reliable PCB designs.
  • Environmental Compliance: The device is RoHS3 compliant and REACH unaffected, ensuring it meets global environmental regulations.
  • Moisture Sensitivity Level 2 (1 Year): This rating ensures the UC3714D remains durable and reliable during storage and handling.

UC3714D Applications

The UC3714D is well-suited for applications requiring high efficiency and fast switching. Its dual drivers and high current capability make it ideal for driving power MOSFETs in various power management systems, including:

  • DC-to-DC Converters: The UC3714D's fast switching and high current capability make it suitable for high-efficiency DC-to-DC conversion.
  • Motor Control: The device can drive power MOSFETs in motor control applications, providing precise control and high efficiency.
  • Power Supplies: The UC3714D is ideal for driving power MOSFETs in power supply designs, ensuring reliable and efficient operation.
  • Battery Management Systems: The device's wide operating voltage range and high current capability make it suitable for battery management applications.

Conclusion of UC3714D

The UC3714D is a versatile and high-performance gate driver IC designed for low-side applications. Its dual drivers, fast switching capabilities, and high current output make it an excellent choice for a variety of power management applications. The device's wide operating voltage range, synchronous channel type, and environmental compliance further enhance its appeal. The UC3714D's compact surface mount package and moisture sensitivity level 2 (1 year) ensure it is durable and reliable in both storage and operation. Overall, the UC3714D stands out as a reliable and efficient solution for driving power MOSFETs in demanding power management systems.

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