| Attribute | Value |
|---|---|
| Product Category: | |
| Manufacturer: | Sullins Connector Solutions |
| Manufacturer Part Number: | Sullins Connector Solutions EMC20DREH |
| Amperage: | 3 A |
| Gender: | Female |
| Number of Contacts: | 40 |
| Number of Rows: | 2 |
| Mount Type: | Clearance Hole |
| Termination Method: | Eyelet |
| Contact Material: | Phosphor Bronze |
| Contact Plating: | Gold |
| Pitch: | 0.1 in |
| Voltage: | 700 VAC |
| Contact Type: | Full Bellow |
| Orientation: | Straight |
| Number of Positions: | 40 |
| Tail Length: | .225 in, 5.72 mm |
| Operating Temperature Range: | -65 - 125 °C |
| Connector Height: | 10.95 mm, .431 in |
| Connector Width: | .33 in, 8.38 mm |
| Current Rating: | 3 A |
| Termination Plating: | Gold |
| Voltage Rating: | 700 VAC |
| Card Thickness: | 0.062 in |
| SKU: | SULEMC20DREH |
EMC20DREH
Specifications
Detailed Description
The EMC20DREH is a high-performance board-to-board PCB connector designed for demanding applications. Featuring a female gender with two rows of 40 positions, this connector ensures reliable connectivity in complex electronic systems. With a clearance hole mount type and eyelet termination method, it offers easy installation and secure attachment. The contact material of phosphor bronze with gold plating guarantees excellent conductivity and corrosion resistance, while the full bellow contact type ensures robust performance. Operating at a voltage of 700 VAC and with an amperage of 3A, it meets stringent power requirements. With a pitch of 2.54mm (.1 in) and a tail length of 5.72mm (.225 in), it provides precise signal transmission. Its wide operating temperature range of -65 to 125°C makes it suitable for harsh environments. Compact in size with dimensions of 10.95mm (.431 in) in height and 8.38mm (.33 in) in width, it is ideal for space-constrained applications. Gold termination plating enhances durability, making it a reliable choice for aerospace, defense, and industrial sectors. The EMC20DREH is a top-of-the-line connector, ensuring optimal performance in critical electronic systems.

