• IR2132S 28-SOIC
IR2132S 28-SOIC

IR2132S

Robust protection features prevent damage from over-voltage, over-current, and thermal overload condition

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Overview of IR2132S

The IR2132S is a Half Bridge Based MOSFET Driver optimized for high-speed and low-voltage operations. It provides excellent performance for analog and digital signal switching.

Pinout

The IR2132S pinout refers to the configuration and function of each pin in its 28-SOIC package type. This package typically includes a diagram showing the layout of the pins when viewed from the top down with pins named sequentially. Each pin on the IR2132S has a specific role such as power supply input, ground connection, or signal interface. The pinout details are crucial for integrating this component into a circuit as they ensure correct connections for optimal device performance. Designers and engineers must refer to the datasheet provided by the manufacturer to get accurate information regarding each pin's function and electrical characteristics.

Features

  • Floating channel designed for bootstrap operation: This feature allows the IR2132S to operate in a wide range of applications, including those that require high voltage levels.
  • Fully operational to +600 V: The IR2132S can handle high voltage levels, making it suitable for use in power supplies and other applications where high voltage is required.
  • Tolerant to negative transient voltage: This feature allows the IR2132S to operate in environments where there are negative transient voltages present, such as those found in some industrial control systems.
  • dV/dt immune: The IR2132S is designed to be immune to dV/dt noise, which can cause problems in some applications.
  • Gate drive supply range from 10 to 20 V: This feature allows the IR2132S to operate with a wide range of gate drive supplies, making it suitable for use in a variety of applications.
  • Undervoltage lockout for all channels: The IR2132S has an undervoltage lockout that prevents the device from operating when the supply voltage is too low, which helps to prevent damage to the device or other components in the circuit.
  • Typical deadtime 0.8 µs (IR2132) option available: The IR2132S has a typical deadtime of 0.8 µs, which is suitable for many applications where fast switching times are required.
  • Over-current shutdown turns off all six drivers: If the current flowing through the IR2132S exceeds a certain threshold, the device will shut down to prevent damage or overheating.
  • Independent half-bridge drivers: The IR2132S has independent half-bridge drivers that allow it to control two MOSFETs independently, which is useful in applications where different voltage levels are required.
  • Matched propagation delay for all channels: The IR2132S has a matched propagation delay for all channels, which helps to ensure that the device operates correctly and efficiently.
  • 2.5 V logic compatible: The IR2132S is compatible with 2.5 V logic levels, making it suitable for use in many modern electronic systems.
  • Outputs out of phase with inputs: The IR2132S has outputs that are out of phase with the inputs, which helps to ensure that the device operates correctly and efficiently.

Applications

The IR2132S is suitable for use in a variety of applications where high-speed and low-voltage operations are required. Some examples include:

  • Pulse-width modulation (PWM) control circuits
  • Digital power supplies
  • Motor control systems
  • Solar inverters
  • Power factor correction (PFC) circuits

Advantages and Disadvantages

The IR2132S has several advantages that make it a popular choice for many applications. Some of the key advantages include:

  • High-speed operation: The IR2132S is capable of operating at high speeds, making it suitable for use in applications where fast switching times are required.
  • Low-voltage operation: The IR2132S can operate at low voltage levels, which makes it suitable for use in many modern electronic systems.
  • Floating channel design: The IR2132S has a floating channel design that allows it to operate in a wide range of applications, including those that require high voltage levels.

However, the IR2132S also has some disadvantages that should be considered when selecting a device for an application. Some of the key disadvantages include:

  • High current consumption: The IR2132S consumes a significant amount of current, which can be a problem in applications where power consumption is a concern.
  • Sensitive to noise and interference: The IR2132S is sensitive to noise and interference, which can cause problems in some applications.

Equivalents

The IR2132S has several equivalents that are suitable for use in similar applications. Some of the key equivalents include:

  • IR2110: The IR2110 is a half-bridge driver that is similar to the IR2132S, but it has some differences in its design and performance.
  • IR2143: The IR2143 is a full-bridge driver that is similar to the IR2132S, but it has some differences in its design and performance.
  • STP16NF06L: The STP16NF06L is a power MOSFET that is similar to the IR2132S, but it has some differences in its design and performance.

Frequently Asked Questions

Q: What is the typical deadtime of the IR2132S?
A: The typical deadtime of the IR2132S is 0.8 µs.

Q: Can the IR2132S operate at high voltage levels?
A: Yes, the IR2132S can operate at high voltage levels due to its floating channel design.

Q: Is the IR2132S compatible with 2.5 V logic levels?
A: Yes, the IR2132S is compatible with 2.5 V logic levels.

Q: What is the maximum current that the IR2132S can handle?
A: The maximum current that the IR2132S can handle depends on the specific application and the operating conditions. However, it is generally capable of handling currents up to several amperes.

Q: Is the IR2132S suitable for use in motor control systems?
A: Yes, the IR2132S is suitable for use in motor control systems due to its high-speed operation and low-voltage design.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Input Vcc max 20.0 V Input Vcc min 10.0 V
Configuration Three Phase Isolation Type Functional levelshift

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