Manufacturer Part Number
MAX668EUB+
Manufacturer
Analog Devices
Introduction
The MAX668EUB+ is a versatile, efficient, and robust switching controller for DC-DC power conversions.
Product Features and Performance
Supports multiple topologies including Boost, Flyback, and SEPIC
Wide input voltage range from 3V to 28V
Adjustable switching frequency from 100kHz to 500kHz
Maximum duty cycle of 90%
Single output with transistor driver
Isolation capability when used with appropriate topology
Clock synchronization available
Product Advantages
Flexibility in design due to multiple topology support
Suitable for a broad range of input voltages
High duty cycle enables high power boosts
Precision control via frequency control features
Capable of operating in a wide range of temperatures
Key Technical Parameters
Topology: Boost, Flyback, SEPIC
Output Configuration: Positive, Isolation Capable
Number of Outputs: 1
Output Phases: 1
Voltage Supply (Vcc/Vdd): 3V ~ 28V
Frequency Switching: 100kHz ~ 500kHz
Duty Cycle (Max): 90%
Synchronous Rectifier: No
Clock Sync: Yes
Control Features: Enable, Frequency Control
Operating Temperature: -40°C ~ 85°C (TA)
Quality and Safety Features
Built to operate reliably within industrial temperature ranges
Robust design adheres to high manufacturing standards of Analog Devices
Compatibility
Usable in various application due to its flexible topologies and voltage range
Compatible with surface mount technology for PCB integration
Application Areas
Power supply modules
Portable devices
Communication equipment
Medical devices with power management needs
Industrial controls
Product Lifecycle
Currently active product status
Availability of ongoing support and potential future upgrades
Several Key Reasons to Choose This Product
Versatility in design applications due to multiple supported topologies
High efficiency potential with a 90% maximum duty cycle
Stable operation facilitated by clock synchronization feature
Broad compatibility with various systems through wide voltage supply range
Reliable performance in challenging operating temperatures