ACM11DSES-S13

Heilind Number:SULACM11DSES-S13
Manufacturer:Sullins Connector Solutions
Manufacturer Number:ACM11DSES-S13
ECAD Model:
3D Model

Description:

PPS & BERYLLIUM COPPER; .0

More >>

Specifications

AttributeValue
Product Category:
Manufacturer:Sullins Connector Solutions
Manufacturer Part Number:Sullins Connector Solutions ACM11DSES-S13
Pitch:0.156 in
Gender:Female
Voltage:950 VAC
Amperage:5 A
Mount Type:Side Hole
Orientation:Straddle
Tail Length:.21 in, 5.33 mm
Contact Type:Full Bellow
Number of Rows:2
Connector Width:.325 in, 8.26 mm
Contact Plating:Gold
Connector Height:10.95 mm, .431 in
Contact Material:Beryllium Copper
Termination Method:Eyelet
Number of Positions:22
Termination Plating:Matte Tin
Operating Temperature Range:-65 - 150 °C
Card Thickness:0.062 in
Current Rating:5 A
Voltage Rating:950 VAC
Number of Contacts:22
SKU:SULACM11DSES-S13

Detailed Description

Introducing the ACM11DSES-S13, a high-performance board-to-board PCB connector designed for demanding applications. This female connector features two rows with a side hole mount type, ensuring secure and stable installation. Engineered with PPS and Beryllium Copper materials, it guarantees exceptional durability and conductivity. The termination method of Card Extender, along with Gold contact plating, enables reliable signal transmission even in harsh environments. With a pitch of 3.96mm and a voltage rating of 950 VAC, this connector offers excellent performance in power and data applications. Its Full Bellow contact type and Straddle orientation further enhance connectivity. With 22 positions and a tail length of 5.33mm, it provides ample connectivity options. Operating within a wide temperature range of -65 to 150°C, this connector is suitable for use in various industries. Its compact design, measuring 10.95mm in height and 8.26mm in width, makes it ideal for space-constrained installations. The termination plating of Matte Tin ensures long-term durability. Certified for quality and reliability, the ACM11DSES-S13 is the perfect choice for mission-critical systems.