JCB10DYFT

Heilind Number:SULJCB10DYFT
Manufacturer:Sullins Connector Solutions
Manufacturer Number:JCB10DYFT
ECAD Model:
3D Model

Description:

PA9T & BERYLLIUM COPPER;.0

More >>

Specifications

AttributeValue
Product Category:
Manufacturer:Sullins Connector Solutions
Manufacturer Part Number:Sullins Connector Solutions JCB10DYFT
Pitch:0.05 in
Gender:Female
Voltage:300 VAC
Amperage:1 A
Mount Type:Threaded
Orientation:Straight
Tail Length:.1 in, 2.54 mm
Contact Type:Cantilever
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:Surface Mount
Number of Positions:20
Termination Plating:Matte Tin
Operating Temperature Range:-65 - 150 °C
Card Thickness:0.062 in
Current Rating:1 A
Voltage Rating:300 VAC
Number of Contacts:20
SKU:SULJCB10DYFT

Detailed Description

The JCB10DYFT is a high-performance female board-to-board PCB connector designed for demanding applications. Featuring PA9T and Beryllium Copper construction, it ensures reliable connectivity even in harsh environments. With a current rating of 1A and voltage handling capability of 300VAC, this connector is suitable for power and signal transmission. Its threaded mount type and surface mount termination method offer secure and easy installation. The contact material is gold-plated Beryllium Copper, guaranteeing low contact resistance and enhanced durability. With a pitch of 1.27mm (.05in) and 20 positions across two rows, it allows for precise and efficient PCB mating. The Cantilever contact type and straight orientation further optimize signal integrity. Operating in a wide temperature range from -65 to 150°C, this connector is reliable in extreme conditions. Measuring 15.49mm in height and 9.4mm in width, it is compact yet robust. The termination plating of Matte Tin ensures compatibility with various soldering processes. Classified under the category of hi-rel connectors, the JCB10DYFT is a dependable choice for aerospace, defense, and other mission-critical applications.