Manufacturer Part Number
DGD2003S8-13
Manufacturer
diodes
Introduction
The DGD2003S8-13 is a high-performance half-bridge gate driver from diodes Incorporated, designed to efficiently drive N-channel MOSFET power switches. It features a wide supply voltage range, high output current capability, and fast switching speeds, making it suitable for a variety of power conversion and motor control applications.
Product Features and Performance
Dual N-channel MOSFET gate driver
Wide supply voltage range: 10V to 20V
High peak output current: 290mA source, 600mA sink
Fast rise and fall times: 70ns, 35ns (typical)
Operating temperature range: -40°C to 125°C
Integrated bootstrap diode for high-side gate drive
Non-inverting inputs for easy logic interface
Product Advantages
Efficient and high-speed MOSFET switching
Robust design with wide operating voltage and temperature range
Compact surface-mount package for space-constrained applications
Simplifies power electronics design with integrated features
Key Reasons to Choose This Product
Proven reliability and performance from a trusted manufacturer
Versatile design suitable for a wide range of power conversion and motor control systems
Optimized for efficiency and fast switching to enhance system performance
Easy integration with simple non-inverting logic interface
Quality and Safety Features
Compliance with industry safety and reliability standards
Robust overcurrent and thermal protection mechanisms
Rigorous quality control and testing procedures
Compatibility
The DGD2003S8-13 is compatible with a variety of N-channel MOSFET power switches and can be used in a wide range of power conversion and motor control applications.
Application Areas
Switch-mode power supplies
Motor drives and servo systems
Inverters and converters
Industrial and automotive electronics
Product Lifecycle
The DGD2003S8-13 is an active, in-production product. There are no plans for discontinuation at this time. Users should contact our website's sales team for information on any potential alternative or equivalent models that may become available in the future.