3-2199250-3

Heilind Number:AMP3-2199250-3
Manufacturer:TE Connectivity
Manufacturer Number:3-2199250-3
Datasheet:Datasheet
ECAD Model:
3D Model

Description:

Shield Finger, Loose Piece, Type C, 3.2h

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Specifications

AttributeValue
Product Category:
Manufacturer:TE Connectivity
Manufacturer Part Number:TE Connectivity 3-2199250-3
Contact Material:Copper Alloy
Contact Length:.136 in, 3.45 mm
Contact Width:.059 in, 1.5 mm
Package Quantity:4500
Contact Amperage:2 A
Number of Positions:1
GPL:K85
Packaging:Tape & Reel
Operating Temperature Range:-40 - 185 °F, -40 - 85 °C
Circuit Application:Signal
Contact Mating Area Plating:Gold
Contact Underplating Material:Nickel
Sealable:No
GPL Description:Data and Devices
Connector and Contact Terminate To:Printed Circuit Board
Product Code:F211
Connector System:Board to Board
ECCN:EAR99
Height:.126 in, 3.2 mm
Scalable:Yes
Spring Finger Type:C-Clip
Side Protected:Yes
Contact Working Range High:.091 in, 2.3 mm
Contact Working Range Low:.118 in, 3 mm
Part Aliases:3-2199250-3
SKU:AMP3-2199250-3

Detailed Description

Shield Finger, Loose Piece, Type C, 3.2h – A crucial component for signal applications, this Copper Alloy shield finger ensures reliable connectivity with its precise .136-inch contact length and .059-inch contact width. With a contact amperage of 2A, it offers high performance in demanding environments. Operating within a wide temperature range from -40 to 85°C, it guarantees durability. Gold-plated for optimal conductivity and nickel underplating for enhanced longevity, this shield finger is suitable for board-to-board connections. Packaged in a convenient tape & reel format, it is ideal for bulk installations. RoHS compliant and ECCN classified as EAR99, it meets international standards for environmental responsibility and export control. The side-protected C-Clip design and scalable height of .126 inches make it versatile for various applications. Whether in telecommunications, aerospace, or industrial machinery, this shield finger is a dependable choice for maintaining signal integrity.