ACM06DRTI-S13

Heilind Number:SULACM06DRTI-S13
Manufacturer:Sullins Connector Solutions
Manufacturer Number:ACM06DRTI-S13
ECAD Model:
3D Model

Description:

PPS & BERYLLIUM COPPER; .0

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Specifications

AttributeValue
Product Category:
Manufacturer:Sullins Connector Solutions
Manufacturer Part Number:Sullins Connector Solutions ACM06DRTI-S13
Pitch:0.156 in
Gender:Female
Voltage:950 VAC
Amperage:5 A
Mount Type:Threaded
Orientation:Straddle
Tail Length:.122 in, 3.1 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:Solder
Number of Positions:12
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:12
SKU:SULACM06DRTI-S13

Detailed Description

The ACM06DRTI-S13 is a high-performance board-to-board PCB connector designed for demanding applications. Featuring a rugged construction with PPS and Beryllium Copper materials, this connector ensures reliable connectivity in harsh environments. The female connector, with two rows and a threaded mount type, offers secure attachment to PCBs. Utilizing a card extender termination method and gold-plated Beryllium Copper contacts, it guarantees excellent signal transmission with a 5A current rating and 950VAC voltage capacity. With a pitch of 3.96mm and 12 positions, it facilitates precise board-to-board connections. The full bellow contact type and straddle orientation further enhance its durability and performance. Operating flawlessly in a wide temperature range of -65 to 150°C, this connector is ideal for aerospace, military, and industrial applications. Its compact design, with a connector height of 10.95mm and width of 8.26mm, allows for efficient PCB layout. The matte tin termination plating ensures corrosion resistance and longevity. In summary, the ACM06DRTIS13 is a top-of-the-line connector that offers unparalleled reliability and performance in critical electronic systems.