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TI UCC27523DGNRRoHS

Manufacturer
MPN
UCC27523DGNR
LCSC Part #
C781807
Packaging
HVSSOP-8
Customer #
Key Attributes
Dual 5A high-speed low-side gate driver
Datasheetpdf iconTI UCC27523DGNR
In-Stock: 130
130 In stock, ships now
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QtyUnit PriceTotal Amount
1+$ 0.6218$ 0.62
10+$ 0.6087$ 6.09
30+$ 0.6006$ 18.02
100+$ 0.5908$ 59.08
Standard Packaging2500/Full Reel
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Power Management (PMIC)/Gate Drivers
ManufacturerTI
PackagingHVSSOP-8
Input Logic Level - Low1V~1.2V
Low Level Delay Time13ns
High Level Delay Time13ns
Quiescent Current-
Input Logic Level - High1.9V~2.3V
Operating Temperature-40℃~+140℃
Voltage - Supply4.5V~18V
Driven ConfigurationLow Side
Current - Output Low(IOL)5A
Rise Time7ns
Fall Time6ns
FeaturesUnder Voltage Protection;Enable shutdown
Current - Output High(IOH)5A
Load TypeMOSFET;IGBT

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging2500
Sales UnitPiece

Introduction

AI Translation

The UCC2752x family of devices are dual-channel, high-speed, low-side gate drivers capable of effectively driving MOSFET and IGBT power switches. Using a design that substantially reduces shoot-through current internally, the UCC2752x can deliver high peak current pulses of up to 5A source and 5A sink to capacitive loads. The device also features rail-to-rail drive capability and an ultra-low propagation delay with a typical value of 13ns. In addition, the driver features matched internal propagation delays between the two channels, making it well-suited for applications with stringent timing requirements for dual gate drives, such as synchronous rectifiers. This also allows the two channels to be paralleled to effectively increase current drive capability, or to drive two switches connected in parallel using a single input signal. The input pin thresholds are based on TTL and CMOS compatible low-voltage logic, which is fixed and independent of the VDD supply voltage. The wide hysteresis between the high and low thresholds provides excellent noise immunity.

The UCC2752x family offers a combination of three standard logic options — dual inverting, dual non-inverting, and one inverting plus one non-inverting driver. The UCC27526 features a dual-input design that provides flexibility for either inverting (IN− pin) or non-inverting (IN+ pin) configuration on each channel. Either the IN+ or IN− pin controls the driver output state. Unused input pins can be utilized for enable and disable functionality. For safety considerations, internal pull-up and pull-down resistors on the input pins of all devices in the UCC2752x family ensure that the output remains low when the input pins are left floating. For better control over driver application operation, the UCC27323, UCC27324, and UCC27325 each feature an enable pin (ENA and ENB). For active-high logic, these pins are internally pulled up to VDD and can be left open for standard operation.

The UCC2752x family of devices is available in SOIC-8 (D), MSOP-8 with exposed pad (DGN), and 3mm × 3mm WSON-8 with exposed pad (DSD) packages. The UCC27524 is also available in a PDIP-8 (P) package. For the UCC27526, only the 3mm × 3mm WSON (DSD) package is offered.

Features

AI Translation
  • Industry-standard pinout
  • Two independent gate drive channels
  • 5A peak source and sink drive current
  • Independent enable function per output
  • TTL and CMOS compatible logic thresholds independent of supply voltage
  • Hysteretic logic thresholds for high noise immunity
  • Input and enable pin voltage levels not limited by VDD bias supply voltage
  • 4.5V to 18V single-supply range
  • Outputs held low during VDD UVLO (ensuring glitch-free operation during power-up and power-down)
  • Fast propagation delay (13ns typical)
  • Fast rise and fall times (7ns and 6ns typical)
  • 1ns typical delay matching between two channels
  • Two outputs parallelable for higher drive current
  • Outputs held low when inputs are floating
  • PDIP-8, SOIC-8, MSOP-8 packages
  • PowerPAD and 3mm x 3mm WSON-8 package options
  • -40°C to ±140°C operating temperature range

Applications

AI Translation
  • Switch-mode power supplies
  • DC-to-DC converters
  • Motor control, solar energy
  • Gate drivers for emerging wide-bandgap power devices such as GaN