ACM06DTAH-S328

Heilind Number:SULACM06DTAH-S328
Manufacturer:Sullins Connector Solutions
Manufacturer Number:ACM06DTAH-S328
ECAD Model:
3D Model

Description:

PPS & BERYLLIUM COPPER; .0

More >>

Specifications

AttributeValue
Product Category:
Manufacturer:Sullins Connector Solutions
Manufacturer Part Number:Sullins Connector Solutions ACM06DTAH-S328
Pitch:0.156 in
Gender:Female
Voltage:950 VAC
Amperage:3 A
Mount Type:Clearance Hole
Orientation:Right Angle
Tail Length:.1 in, 2.54 mm
Contact Type:Loop Bellow
Number of Rows:2
Connector Width:.37 in, 9.4 mm
Contact Plating:Gold
Connector Height:15.49 mm, .61 in
Contact Material:Beryllium Copper
Termination Method:Solder
Number of Positions:12
Termination Plating:Matte Tin
Operating Temperature Range:-65 - 150 °C
Card Thickness:0.062 in
Current Rating:3 A
Voltage Rating:950 VAC
Number of Contacts:12
SKU:SULACM06DTAH-S328

Detailed Description

The ACM06DTAH-S328 is a high-performance board-to-board PCB connector designed for reliable power and signal transmission in demanding environments. Featuring a female gender with two rows and a clearance hole mount type, this connector offers easy installation on PCBs. Its termination method through-hole ensures secure connections. Built with PPS and Beryllium Copper materials, it guarantees durability and efficient conductivity. The gold contact plating and loop bellow contact type further enhance its performance, with a pitch of 3.96mm (.156 inches) accommodating precise connections. With a voltage rating of 950 VAC and an operating temperature range of -65 to 150°C, this connector is suitable for a wide range of applications. Its 12 positions and 2.54mm (.1 inch) tail length provide ample connectivity options. The connector's compact design, with a height of .61 inches (15.49mm) and width of 9.4mm (.37 inches), allows for space-saving installation. Terminated with matte tin plating, it ensures long-term reliability. Ideal for use in aerospace, military, and industrial settings, the ACM06DTAH-S328 guarantees high performance and durability in critical applications.