Manufacturer Part Number
UCC27284DRCR
Manufacturer
Texas Instruments
Introduction
UCC27284DRCR is a high-performance gate driver designed for power management applications, facilitating efficient control of N-Channel MOSFETs in a half-bridge configuration.
Product Features and Performance
Dual independent drivers
Driven configuration: Half-Bridge
Gate type supported: N-Channel MOSFET
High side voltage capacity up to 100 V (Bootstrap)
Rapid switching with 10ns rise and fall times
Operates over a supply voltage range of 5.5V to 16V
Logic Voltage levels: VIL at 1.3V and VIH at 1.9V
Supports up to 3A peak source and sink current
Designed for surface mounting with a wettable flank to ensure reliable solder joints
Product Advantages
Enables efficient power conversion
Reduces power loss with fast switching times
Supports a high range of supply and logic voltages enhancing flexibility
Robust design supports extreme temperature performance from -40°C to 125°C
Key Technical Parameters
Number of Drivers: 2
Voltage Supply: 5.5V ~ 16V
Logic Voltage VIL, VIH: 1.3V, 1.9V
Current Peak Output (Source, Sink): 3A, 3A
High Side Voltage Max (Bootstrap): 100 V
Rise / Fall Time (Typ): 10ns, 10ns
Quality and Safety Features
Robust operating temperature range of -40°C to 125°C ensures reliability in various environments
Wettable flanks design promotes quality soldering and connectivity
Compatibility
Compatible with surface mount technology
Operates efficiently with N-Channel MOSFETs
Application Areas
Power supply units
Motor drives
Solar inverters
Other electronic power management systems
Product Lifecycle
Currently active product status
Not nearing discontinuation, with long-term availability
Several Key Reasons to Choose This Product
High reliability and performance in harsh temperature environments
Versatile voltage and current handling capabilities for diverse applications
High-speed switching reduces operational losses
Robust design with enhanced package reliability for surface mounting
Suitable for various power management applications demanding high efficiency and compact design