Amp-Leaf Series, Edgeboard Connectors

Results:
6
Manufacturer
Series
Number of Positions
Flange Feature
Color
Mounting Type
Number of Positions/Bay/Row
Operating Temperature
Number of Rows
Contact Finish Thickness
Contact Finish
Termination
Pitch
Read Out
Contact Type
Gender
Card Thickness
Contact Material
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Card Type
Results remaining6
Applied Filters:
Amp-Leaf
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ImageProduct DetailPriceAvailabilityECAD ModelFeaturesOperating TemperatureTerminationContact FinishContact Finish ThicknessColorMounting TypeContact MaterialNumber of PositionsPitchSeriesNumber of RowsContact TypeCard TypeCard ThicknessGenderNumber of Positions/Bay/RowRead OutFlange Feature
583599-1
CONN EDGE DUAL FMALE 20POS 0.156
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Solder
Gold
15.0µin (0.38µm)
Black
Through Hole, Right Angle
Phosphor Bronze
20
0.156" (3.96mm)
Amp-Leaf
2
-
Non Specified - Dual Edge
0.055" ~ 0.070" (1.40mm ~ 1.78mm)
Female
22
Dual
Side Mount Opening, Unthreaded, 0.125" (3.18mm) Dia
582776-1
CONN EDGE DUAL FMALE 44POS 0.156
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Solder Eyelet(s)
Gold
-
Blue
Panel Mount
Phosphor Bronze
44
0.156" (3.96mm)
Amp-Leaf
2
-
Non Specified - Dual Edge
0.055" ~ 0.070" (1.40mm ~ 1.78mm)
Female
22
Dual
Top Mount Opening, Unthreaded, 0.125" (3.18mm) Dia
5-145066-1
CONN EDGE DUAL FMALE 60POS GOLD
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Solder
Gold
-
Black
Through Hole
Phosphor Bronze
60
-
Amp-Leaf
2
-
Non Specified - Dual Edge
0.055" ~ 0.070" (1.40mm ~ 1.78mm)
Female
-
Dual
-
5-582772-3
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
Solder Eyelet(s)
-
-
-
Panel Mount
Phosphor Bronze
30
0.156" (3.96mm)
Amp-Leaf
2
-
Non Specified - Dual Edge
0.055" ~ 0.070" (1.40mm ~ 1.78mm)
Female
15
Dual
Top Mount Opening, Unthreaded, 0.128" (3.25mm) Dia
5-582776-1
CONN EDGE DUAL FMALE 44POS 0.156
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Solder Eyelet(s)
Gold
-
Blue
Panel Mount
Phosphor Bronze
44
0.156" (3.96mm)
Amp-Leaf
2
-
Non Specified - Dual Edge
0.055" ~ 0.070" (1.40mm ~ 1.78mm)
Female
22
Dual
Top Mount Opening, Unthreaded, 0.125" (3.18mm) Dia
582772-3
CONN EDGE DUAL FMALE 30POS 0.156
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
Solder Eyelet(s)
Gold
-
-
Panel Mount
Phosphor Bronze
30
0.156" (3.96mm)
Amp-Leaf
2
-
Non Specified - Dual Edge
0.055" ~ 0.070" (1.40mm ~ 1.78mm)
Female
15
Dual
Top Mount Opening, Unthreaded, 0.128" (3.25mm) Dia

About  Edgeboard Connectors

Card edge connectors, also known as edgeboard connectors, are a popular style of connector system widely used in various applications. These connectors utilize a pattern of exposed copper regions located at the edge of a printed circuit board (PCB) to form one half of the mating connector pair. One common application for card edge connectors is the connection of accessory cards, such as graphics accelerators, to computer motherboards in desktop PC applications. The exposed copper regions on the PCB serve as the male contacts of the connector system, while the complementary female contacts are housed within the mating connector. One of the key advantages of card edge connectors is their relatively low cost compared to other connector options. This makes them an attractive choice for applications where cost efficiency is important. Additionally, card edge connectors offer high density interconnect capabilities, allowing for the connection of numerous signals or power lines in a compact space. It's worth noting that card edge connectors may not be the preferred choice for applications where durability is a primary concern. While they provide reliable electrical connections, they may not offer the same level of mechanical strength and protection as more robust connector systems. In summary, card edge connectors are a cost-effective and high-density interconnect option commonly used for connecting accessory cards to motherboards in desktop PC applications. Their design incorporates exposed copper regions on the PCB, which form one half of the mating connector pair. While they may not be suitable for applications requiring exceptional durability, they offer a practical solution for many connectivity needs.