Manufacturer Part Number
MCP14E5T-E/SN
Manufacturer
Microchip Technology
Introduction
High-speed dual low-side MOSFET driver for efficient power management
Product Features and Performance
Dual independent driver channels
Low-side configuration for flexible applications
Capable of driving IGBTs, and N/P-Channel MOSFETs
Fast rise and fall times for efficient switching
Robust operating temperature range for high-temperature environments
Product Advantages
High peak output current enables driving large capacitive loads
Immune to negative transients which offers better reliability
Tolerant to wide supply voltage range for versatile applications
ESD protected inputs for increased durability
Key Technical Parameters
Supply Voltage: 4.5V to 18V
Logic Voltage (VIL, VIH): 0.8V, 2.4V
Peak Output Current (Source, Sink): 4A
Input Type: Inverting and Non-Inverting
Rise Time (Typical): 15ns
Fall Time (Typical): 18ns
Number of Drivers: 2
Quality and Safety Features
Extended temperature range from -40°C to 150°C ensures reliability under harsh conditions
Robust against latch-up events due to heavy ion effects
Compatibility
Suitable for driving IGBTs, N-Channel, and P-Channel MOSFETs
Compatible with a wide range of supply voltages
Application Areas
Motor control applications
Switching power supplies
Power management systems
Consumer electronics
Product Lifecycle
Active product status suggesting ongoing production and availability
Future replacement or upgrade possibilities due to active lifecycle state
Several Key Reasons to Choose This Product
Dual channel flexibility accommodates complex circuit designs
High-speed operations for efficient power conversion
Wide input logic level range compatible with various control interfaces
Surface mount 8-SOIC package ideal for space-constrained applications
Microchip Technology's reputation for quality and long-term reliability
Supports energy-efficient solutions with its low rise/fall time characteristics
Product continuity assurance provided by Microchip's commitment to long-term availability