Manufacturer Part Number
DF40HC(2.5)-30DS-0.4V(70)
Manufacturer
Hirose
Introduction
The DF40HC(2.5)-30DS-0.4V(70) is a high-density, low-profile rectangular connector from Hirose. It is designed for board-to-board connections in a wide range of electronic applications, providing a compact and reliable solution for transmitting power and signals between PCBs.
Product Features and Performance
Compact and low-profile design with a mated height of only 2.5mm
30-position configuration with 0.4mm pitch for high-density interconnections
Center strip contacts for reliable signal transmission
Surface mount termination for easy PCB assembly
Gold-plated contacts for superior conductivity and corrosion resistance
Product Advantages
Enables high-density board-to-board connections in space-constrained applications
Robust design and materials ensure long-term reliability and durability
Easy to install and integrate into PCB designs
Key Reasons to Choose This Product
Compact and low-profile design for space-saving applications
High-density 30-position configuration for efficient signal/power transmission
Reliable center strip contact design for consistent performance
Hirose's reputation for quality and innovation in the connector industry
Quality and Safety Features
Manufactured to Hirose's strict quality standards
Tested for safety and compliance with industry regulations
Compatibility
The DF40HC(2.5)-30DS-0.4V(70) is designed to be compatible with other Hirose DF40 series connectors, allowing for flexible and modular board-to-board interconnect solutions.
Application Areas
Automotive electronics
Industrial automation equipment
Telecommunications and networking equipment
Medical devices
Consumer electronics
Product Lifecycle
The DF40HC(2.5)-30DS-0.4V(70) is an active, in-production product from Hirose. There are no announced plans for discontinuation at this time. Customers are advised to contact our website's sales team or visit our website's sales team for the most up-to-date information on availability and potential alternative models.