837-019-523-103

Heilind Number:EDA837-019-523-103
Manufacturer:EDAC
Manufacturer Number:837-019-523-103
ECAD Model:
3D Model

Description:

High Temp Card Edge Connector

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Specifications

AttributeValue
Product Category:
Manufacturer:EDAC
Manufacturer Part Number:EDAC 837-019-523-103
Color:Green
Amperage:3 A
Housing Material:UL 94V-0 Diallyl Phthalate
Number of Rows:1
Contact Material:Copper Alloy
Pitch:.156 in
Row Spacing:.2 in
Number of Positions:19
Mount Orientation:Straight
Operating Temperature Range:-40 - 105 °C
SKU:EDA837-019-523-103

Detailed Description

Upgrade your high-temperature electronics with this top-of-the-line Card Edge Connector. Featuring a vibrant green color and a sleek, straight mount orientation, this connector is as stylish as it is functional. With an amperage rating of 3 A and durable UL 94V-0 Diallyl Phthalate housing material, it guarantees reliable performance in even the most demanding conditions. Copper alloy contacts ensure efficient connectivity, while the 19 positions and .156-inch pitch offer ample room for your PCB connections. Perfect for board-to-board applications, this connector is a must-have for any electronic setup. Operating flawlessly in temperatures ranging from -40 to 105 °C, it's designed to withstand extreme environments without compromising performance.Upgrade your high-temperature electronics with this top-of-the-line Card Edge Connector. Featuring a vibrant green color and a sleek, straight mount orientation, this connector is as stylish as it is functional. With an amperage rating of 3 A and durable UL 94V-0 Diallyl Phthalate housing material, it guarantees reliable performance in even the most demanding conditions. Copper alloy contacts ensure efficient connectivity, while the 19 positions and .156-inch pitch offer ample room for your PCB connections. Perfect for board-to-board applications, this connector is a must-have for any electronic setup. Operating flawlessly in temperatures ranging from -40 to 105 °C, it's designed to withstand extreme environments without compromising performance.