AMC24DCKN

Heilind Number:SULAMC24DCKN
Manufacturer:Sullins Connector Solutions
Manufacturer Number:AMC24DCKN
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 AMC24DCKN
Amperage:3 A
Gender:Female
Number of Contacts:48
Number of Rows:2
Mount Type:No Mounting
Termination Method:Solder
Contact Material:Beryllium Copper
Contact Plating:Gold
Pitch:0.1 in
Voltage:700 VAC
Contact Type:Loop Bellow
Orientation:Straight
Number of Positions:48
Tail Length:.19 in, 4.83 mm
Operating Temperature Range:-65 - 150 °C
Connector Height:15.49 mm, .61 in
Connector Width:.37 in, 9.4 mm
Current Rating:3 A
Termination Plating:Gold
Voltage Rating:700 VAC
Card Thickness:0.062 in
SKU:SULAMC24DCKN

Detailed Description

The AMC24DCKN connector features a robust design, making it ideal for high-reliability applications. With PPS and Beryllium Copper construction, it ensures durability and efficient performance. Its 48 female contact positions, arranged in two rows with a pitch of 2.54mm, allow for secure connections on PCBs. The contact material is Gold-plated Beryllium Copper, ensuring excellent conductivity and corrosion resistance. Operating at voltages up to 700 VAC and amperages of 3A, this connector is suitable for a wide range of power and signal transmission needs. With a straight orientation and no mounting required, installation is straightforward. Its compact size, with a connector height of 15.49mm and width of 9.4mm, saves valuable PCB space. The connector's loop bellow contact type and thru-hole termination method further enhance its reliability, even in harsh environments. Tailored for demanding applications, the AMC24DCKN is a versatile solution for board-to-board and card edge connections. Operating temperature range of -65 to 150°C ensures performance in extreme conditions. Gold termination plating guarantees long-term durability. Trust in the AMC24DCKN for high-performance connectivity in critical systems.