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UCD7232

ACTIVE

Digital Control Compatible Synchronous-Buck Gate Driver with Current Sense and Fault Protection

Product details

Supply voltage (min) (V) 4.7 Supply voltage (max) (V) 15 Number of outputs 1 Peak output current (A) 6 Input threshold CMOS, TTL Propagation delay time (µs) 0.05 Driver configuration Dual Operating temperature range (°C) -40 to 125 Rating Catalog
Supply voltage (min) (V) 4.7 Supply voltage (max) (V) 15 Number of outputs 1 Peak output current (A) 6 Input threshold CMOS, TTL Propagation delay time (µs) 0.05 Driver configuration Dual Operating temperature range (°C) -40 to 125 Rating Catalog
WQFN (RTJ) 20 16 mm² 4 x 4
  • Dual High Current Drivers.
  • Full Compatibility with TI Fusion Digital Power Supply Controllers,
    such as UCD91xx and UCD92xx Families
  • Operational to 2 MHz Switching Frequency
  • High-Side FET and Output Current Limit Protection with Independently
    Adjustable Thresholds
  • Fast High-Side Overcurrent Sense Circuit with Fault Flag Output – Prevents
    Catastrophic Current Levels on a Cycle-by-Cycle Basis
  • Differential High-Gain Current Sense Amplifier
  • Voltage Proportional to Load Current Monitor Output
  • Wide Input Voltage Range: 4.7 V to 15 V
    Operation to 2.2 V Input Supported with an External
    4.5-6.5 V Bias Supply
  • Onboard Regulated Supplies for Gate Drive and Internal Circuits
  • Integrated Thermal Shutdown
  • Selectable Operation Modes:
    • PWM plus Synchronous Rectifier Enable (SRE) with Automatic Dead-Time Control
    • Direct High-Gate and Low-Gate Inputs for Direct FET Control
  • 3-State PWM Input for Power Stage Shutdown
  • UVLO Housekeeping Circuit
  • Rated from –40°C to +125°C Junction Temperature
  • APPLICATIONS
    • Digitally-Controlled Synchronous-Buck Power Stages for Single- and
      Multi-Phase Applications
    • Digitally-Controlled Power Modules

  • Dual High Current Drivers.
  • Full Compatibility with TI Fusion Digital Power Supply Controllers,
    such as UCD91xx and UCD92xx Families
  • Operational to 2 MHz Switching Frequency
  • High-Side FET and Output Current Limit Protection with Independently
    Adjustable Thresholds
  • Fast High-Side Overcurrent Sense Circuit with Fault Flag Output – Prevents
    Catastrophic Current Levels on a Cycle-by-Cycle Basis
  • Differential High-Gain Current Sense Amplifier
  • Voltage Proportional to Load Current Monitor Output
  • Wide Input Voltage Range: 4.7 V to 15 V
    Operation to 2.2 V Input Supported with an External
    4.5-6.5 V Bias Supply
  • Onboard Regulated Supplies for Gate Drive and Internal Circuits
  • Integrated Thermal Shutdown
  • Selectable Operation Modes:
    • PWM plus Synchronous Rectifier Enable (SRE) with Automatic Dead-Time Control
    • Direct High-Gate and Low-Gate Inputs for Direct FET Control
  • 3-State PWM Input for Power Stage Shutdown
  • UVLO Housekeeping Circuit
  • Rated from –40°C to +125°C Junction Temperature
  • APPLICATIONS
    • Digitally-Controlled Synchronous-Buck Power Stages for Single- and
      Multi-Phase Applications
    • Digitally-Controlled Power Modules

The UCD7232 high current driver is specifically designed for digitally-controlled, point-of-load, synchronous buck switching power supplies. Two driver circuits provide high charge and discharge current for the high-side NMOS switch and the low-side NMOS synchronous rectifier in a synchronous buck circuit. The MOSFET gates are driven by an internally regulated VGG supply. The internal VGG regulator can be disabled to permit the user to supply their own gate drive voltage. This flexibility allows a wide power conversion input voltage range of 2.2 to 15 V. Internal under voltage lockout (UVLO) logic insures VGG is good before allowing chip operation.

A drive logic block allows operation in one of two modes selected by the SRE Mode pin. In Synchronous Mode, the logic block uses the PWM signal to control both the high-side and low-side gate drive signals. Dead time is automatically adjusted to prevent cross conduction. The Synchronous Rectifier Enable (SRE) pin controls whether or not the low-side FET is turned on when the PWM signal is low. In Independent Mode, the PWM and SRE pins control the high-side and low-side gates directly. No anti-cross-conduction logic is used in this mode.

On-board comparators monitor the voltage across the high side switch and the voltage across an external current sense element to safeguard the power stage from sudden high current loads. Blanking delay is set for the high side comparator by a single resistor in order to avoid false reports coincident with switching edge noise. In the event of a high-side fault or an over-current fault, the high-side FET turned off and the Fault Flag (FLT) is asserted to alert the digital controller. The fault thresholds are independently set by the HS Sense and ILIM pins.

Output current is measured and monitored by a precision, high gain, switched capacitor differential amplifier that processes the voltage present across an external current sense element. The amplified signal is available for use by the digital controller on the IMON pin. The current sense amplifier has output offset of 0.5 V so that both positive (sourcing) and negative (sinking) current can be sensed.

An on-chip temperature sense monitors the die temperature. If it exceeds approximately 165°C, the temperature sensor will initiate a thermal shutdown that halts output switching and sets the FLT flag. The temperature fault automatically clears when the die temperatures falls by approximately 207°.

The UCD7232 high current driver is specifically designed for digitally-controlled, point-of-load, synchronous buck switching power supplies. Two driver circuits provide high charge and discharge current for the high-side NMOS switch and the low-side NMOS synchronous rectifier in a synchronous buck circuit. The MOSFET gates are driven by an internally regulated VGG supply. The internal VGG regulator can be disabled to permit the user to supply their own gate drive voltage. This flexibility allows a wide power conversion input voltage range of 2.2 to 15 V. Internal under voltage lockout (UVLO) logic insures VGG is good before allowing chip operation.

A drive logic block allows operation in one of two modes selected by the SRE Mode pin. In Synchronous Mode, the logic block uses the PWM signal to control both the high-side and low-side gate drive signals. Dead time is automatically adjusted to prevent cross conduction. The Synchronous Rectifier Enable (SRE) pin controls whether or not the low-side FET is turned on when the PWM signal is low. In Independent Mode, the PWM and SRE pins control the high-side and low-side gates directly. No anti-cross-conduction logic is used in this mode.

On-board comparators monitor the voltage across the high side switch and the voltage across an external current sense element to safeguard the power stage from sudden high current loads. Blanking delay is set for the high side comparator by a single resistor in order to avoid false reports coincident with switching edge noise. In the event of a high-side fault or an over-current fault, the high-side FET turned off and the Fault Flag (FLT) is asserted to alert the digital controller. The fault thresholds are independently set by the HS Sense and ILIM pins.

Output current is measured and monitored by a precision, high gain, switched capacitor differential amplifier that processes the voltage present across an external current sense element. The amplified signal is available for use by the digital controller on the IMON pin. The current sense amplifier has output offset of 0.5 V so that both positive (sourcing) and negative (sinking) current can be sensed.

An on-chip temperature sense monitors the die temperature. If it exceeds approximately 165°C, the temperature sensor will initiate a thermal shutdown that halts output switching and sets the FLT flag. The temperature fault automatically clears when the die temperatures falls by approximately 207°.

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Technical documentation

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* Data sheet Digital Control Compatible Synchronous-Buck Gate Driver. datasheet 16 May 2011
Selection guide Power Management Guide 2018 (Rev. R) 25 Jun 2018

Design & development

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Application software & framework

FUSION_DIGITAL_POWER_DESIGNER — Digital Power Software

Fusion Digital Power™ graphical user interface (GUI) software is used to configure and monitor select Texas Instruments digital power controllers and sequencer/health monitors. The application uses the PMBus protocol to communicate with the device over serial bus by way of a TI USB adapter.
Application software & framework

FUSION_MFR_GUI — Fusion Digital Power Manufacturing Tool

The Fusion Digital Power Manufacturing Tool (aka MFR GUI) is a Graphical User Interface used to download firmware, upgrade firmware, configure, calibrate and test .

The MFR GUI supports the same devices as Fusion Digital Power Designer software.  This tool is typically used in manufacturing (...)

Simulation tool

PSPICE-FOR-TI — PSpice® for TI design and simulation tool

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
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WQFN (RTJ) 20 View options

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