Home Energiemanagement Gate-Treiber Low-Side-Treiber

UCC27321-Q1

AKTIV

Einkanaliger Gate-Treiber, 9 A/9 A, für den Automobilbereich, mit invertierendem Eingang und geteilt

Eine neuere Version dieses Produkts ist verfügbar

Selbe Funktionalität wie der verglichene Baustein bei gleicher Anschlussbelegung.
UCC27614-Q1 AKTIV Einkanaliger Low-Side-Treiber für die Automobilindustrie, 30 V VDD, 10 A/10 A, mit 4 V UVLO und geri More recent driver with similar pinout and non-inverting inputs

Produktdetails

Number of channels 1 Power switch IGBT, MOSFET Peak output current (A) 9 Input supply voltage (min) (V) 4 Input supply voltage (max) (V) 15 Features Enable pin Operating temperature range (°C) -40 to 125 Rise time (ns) 20 Fall time (ns) 20 Propagation delay time (µs) 0.025 Input threshold CMOS, TTL Channel input logic Inverting Input negative voltage (V) 0 Rating Automotive Driver configuration Single
Number of channels 1 Power switch IGBT, MOSFET Peak output current (A) 9 Input supply voltage (min) (V) 4 Input supply voltage (max) (V) 15 Features Enable pin Operating temperature range (°C) -40 to 125 Rise time (ns) 20 Fall time (ns) 20 Propagation delay time (µs) 0.025 Input threshold CMOS, TTL Channel input logic Inverting Input negative voltage (V) 0 Rating Automotive Driver configuration Single
SOIC (D) 8 29.4 mm² (4.9 mm × 6 mm)
  • Qualified for Automotive Applications
  • AEC-Q100 Qualified With the Following Results:
    • Device Temperature Grade 1: –40°C to 125°C Ambient Operating Temperature Range
    • Device HBM ESD Classification Level 2
    • Device CDM ESD Classification Level C6
  • Industry-Standard Pinout With Addition of Enable Function
  • High Peak-Current Drive Capability of ±9 A at the Miller Plateau Region Using TrueDrive™ Technology
  • Efficient Constant-Current Sourcing Using a Unique Bipolar and CMOS Output Stage
  • TTL and CMOS-Compatible Inputs Independent of Supply Voltage
  • 20-ns Typical Rise and 15-ns Typical Fall Times With 10-nF Load
  • Typical Propagation Delay Times of 25 ns With Input Falling and 35 ns With Input Rising
  • 4-V to 15-V Supply Voltage
  • Available in Thermally Enhanced MSOP PowerPAD™ Package
  • TrueDrive Output Architecture Using Bipolar and CMOS Transistors in Parallel
  • Qualified for Automotive Applications
  • AEC-Q100 Qualified With the Following Results:
    • Device Temperature Grade 1: –40°C to 125°C Ambient Operating Temperature Range
    • Device HBM ESD Classification Level 2
    • Device CDM ESD Classification Level C6
  • Industry-Standard Pinout With Addition of Enable Function
  • High Peak-Current Drive Capability of ±9 A at the Miller Plateau Region Using TrueDrive™ Technology
  • Efficient Constant-Current Sourcing Using a Unique Bipolar and CMOS Output Stage
  • TTL and CMOS-Compatible Inputs Independent of Supply Voltage
  • 20-ns Typical Rise and 15-ns Typical Fall Times With 10-nF Load
  • Typical Propagation Delay Times of 25 ns With Input Falling and 35 ns With Input Rising
  • 4-V to 15-V Supply Voltage
  • Available in Thermally Enhanced MSOP PowerPAD™ Package
  • TrueDrive Output Architecture Using Bipolar and CMOS Transistors in Parallel

The UCC2732x-Q1 family of high-speed drivers delivers 9 A of peak drive current in an industry-standard pinout. These drivers can drive large MOSFETs for systems requiring extreme Miller current due to high dV/dt transitions. This eliminates additional external circuits and can replace multiple components to reduce space, design complexity, and assembly cost. Two standard logic options are offered, inverting (UCC27321-Q1) and noninverting (UCC27322-Q1).

Using a design that minimizes shoot-through current, the outputs of these devices can provide high gate drive current where it is most needed at the Miller plateau region during the MOSFET switching transition. A unique hybrid-output stage paralleling bipolar and MOSFET transistors (TrueDrive) allows efficient current delivery at low supply voltages. With this drive architecture, UCC2732x-Q1 can be used in industry standard 6-A, 9-A, and many 12-A driver applications. Latch-up and ESD protection circuits are also included. Finally, the UCC2732x-Q1 provides an enable (ENBL) function to better control the operation of the driver applications. ENBL is implemented on pin 3, which was previously left unused in the industry-standard pinout. It is internally pulled up to VDD for active-high logic and can be left open for standard operation.

In addition to 8-pin SOIC (D) package offerings, the UCC2732x-Q1 also comes in the thermally enhanced but tiny 8-pin MSOP-PowerPAD (DGN) package. The PowerPAD package drastically lowers the thermal resistance to extend the temperature operation range and improve long-term reliability.

The UCC2732x-Q1 family of high-speed drivers delivers 9 A of peak drive current in an industry-standard pinout. These drivers can drive large MOSFETs for systems requiring extreme Miller current due to high dV/dt transitions. This eliminates additional external circuits and can replace multiple components to reduce space, design complexity, and assembly cost. Two standard logic options are offered, inverting (UCC27321-Q1) and noninverting (UCC27322-Q1).

Using a design that minimizes shoot-through current, the outputs of these devices can provide high gate drive current where it is most needed at the Miller plateau region during the MOSFET switching transition. A unique hybrid-output stage paralleling bipolar and MOSFET transistors (TrueDrive) allows efficient current delivery at low supply voltages. With this drive architecture, UCC2732x-Q1 can be used in industry standard 6-A, 9-A, and many 12-A driver applications. Latch-up and ESD protection circuits are also included. Finally, the UCC2732x-Q1 provides an enable (ENBL) function to better control the operation of the driver applications. ENBL is implemented on pin 3, which was previously left unused in the industry-standard pinout. It is internally pulled up to VDD for active-high logic and can be left open for standard operation.

In addition to 8-pin SOIC (D) package offerings, the UCC2732x-Q1 also comes in the thermally enhanced but tiny 8-pin MSOP-PowerPAD (DGN) package. The PowerPAD package drastically lowers the thermal resistance to extend the temperature operation range and improve long-term reliability.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt UCC2732x-Q1 Single 9-A High-Speed Low-Side MOSFET Driver With Enable datasheet (Rev. E) PDF | HTML 28.11.2023
Anwendungshinweis Review of Different Power Factor Correction (PFC) Topologies' Gate Driver Needs PDF | HTML 22.01.2024
Anwendungshinweis Using a Single-Output Gate-Driver for High-Side or Low-Side Drive (Rev. B) PDF | HTML 08.09.2023
Application brief External Gate Resistor Selection Guide (Rev. A) 28.02.2020
Application brief Understanding Peak IOH and IOL Currents (Rev. A) 28.02.2020
Application brief How to overcome negative voltage transients on low-side gate drivers' inputs 18.01.2019
Weitere Dokumente Fundamentals of MOSFET and IGBT Gate Driver Circuits (Replaces SLUP169) (Rev. A) 29.10.2018

Design und Entwicklung

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Evaluierungsplatine

UCC27321Q1EVM — UCC27321-Q1 Einzel-9-A Highspeed-Low-Side-MOSFET-Treiber mit Enable für die Automobilindustrie

UCC2732X-Q1 ist eine Familie von Hochgeschwindigkeitstreibern, die bis zu 9 A Spitzenstrom liefern können und für Systeme optimiert sind, die aufgrund hoher dv/dt-Übergänge extreme Miller-Ströme benötigen. Das EVM ermöglicht die Evaluierung der beiden angebotenen Logikoptionen, invertierend (...)

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Evaluierungsplatine

UCC27322Q1EVM — UCC27322-Q1 Einzel-9-A Highspeed-Low-Side-MOSFET-Treiber mit Enable für die Automobilindustrie

UCC2732X-Q1 ist eine Familie von Hochgeschwindigkeitstreibern, die bis zu 9 A Spitzenstrom liefern können und für Systeme optimiert sind, die aufgrund hoher dv/dt-Übergänge extreme Miller-Ströme benötigen. Das EVM ermöglicht die Evaluierung beider angebotenen Logikoptionen, invertierend (...)

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Simulationsmodell

UCC27321 PSpice Transient Model

SLUM301.ZIP (31 KB) - PSpice-Modell
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Simulationsmodell

UCC27321 Unencrypted PSpice Transient Model

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Berechnungstool

SLURB25 — UCC2732X Schematic Review Template

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Berechnungstool

SLURB26 — UCC2732X and UCC3732X Schematic Review Template

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