Allicdata Part #: | FTE-126-01-G-DV-EC-A-P-TR-ND |
Manufacturer Part#: |
FTE-126-01-G-DV-EC-A-P-TR |
Price: | $ 7.34 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Samtec Inc. |
Short Description: | .8MM MICRO TERMINAL STRIP |
More Detail: | Connector Header Surface Mount 52 position 0.031" ... |
DataSheet: | FTE-126-01-G-DV-EC-A-P-TR Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 6.60870 |
Specifications
Series: | FTE |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Connector Type: | Header |
Contact Type: | Male Pin |
Pitch - Mating: | 0.031" (0.80mm) |
Number of Positions: | 52 |
Number of Rows: | 2 |
Row Spacing - Mating: | 0.047" (1.20mm) |
Number of Positions Loaded: | All |
Style: | Board to Board |
Shrouding: | Unshrouded |
Mounting Type: | Surface Mount |
Termination: | Solder |
Fastening Type: | Push-Pull |
Contact Length - Mating: | 0.075" (1.90mm) |
Contact Length - Post: | -- |
Overall Contact Length: | -- |
Insulation Height: | 0.055" (1.40mm) |
Contact Shape: | Square |
Contact Finish - Mating: | Gold |
Contact Finish Thickness - Mating: | 10.0µin (0.25µm) |
Contact Finish - Post: | Gold |
Contact Material: | Phosphor Bronze |
Insulation Material: | Liquid Crystal Polymer (LCP) |
Features: | Board Lock, End Shrouds, Pick and Place |
Operating Temperature: | -55°C ~ 125°C |
Ingress Protection: | -- |
Material Flammability Rating: | UL94 V-0 |
Insulation Color: | Black |
Current Rating: | 2.7A per Contact |
Voltage Rating: | -- |
Mated Stacking Heights: | -- |
Contact Finish Thickness - Post: | -- |
Applications: | -- |
Description
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
FTE-126-01-G-DV-EC-A-P-TR is a header design which refers to the rectangular connectors used on printed circuit boards (PCBs). As the name suggests, it comprises two main components namely header and male pins. The header is usually a plastic molded piece with metal contacts. The header is designed in such a way to facilitate connections to a printed circuit board. The male pins are typically made from metal and are designed to fit into the header and provide the necessary electrical connection between the header and the PCB.There are a variety of applications where these types of connectors are used. One common application is in the computers and electronics industry. Commonly, they are used to connect components such as capacitors, transistors, resistors and other components to the printed circuit board. Sometimes, they are used to enable communication between different components in the system. The FTE-126-01-G-DV-EC-A-P-TR header designs are popular among manufacturers due to their versatility and ease of use. The connectors can be quickly and easily embedded into the printed circuit board so that components such as transistors or resistors can be easily connected to each other. Moreover, the design of the pin is such that it can easily fit into tight spaces meaning it can be easily fit into spaces without crowding out other components.The working principle of FTE-126-01-G-DV-EC-A-P-TR connectors is based on the transfer of electrons. The electron flow in the connector is initiated when the electrons pass through the metal pins in the header and interact with the opposite charges in the printed circuit board. This then causes a current to flow from the header to the PCB and vice-versa. The current then allows signals to be transmitted across the board between components. The connectors also provide other benefits when used on a PCB. For example, they provide high levels of power integration, allowing the power to be easily supplied to multiple components at once without the need for multiple power pins. Additionally, the pins allow the components to be connected to each other without the need for additional wires which can lead to unwanted clutter in the system.Overall, FTE-126-01-G-DV-EC-A-P-TR connectors are popular among electronics and computer engineers as they offer significant advantages when used in the building of systems. They are able to quickly and easily fit into tight spaces without crowding out other components. Additionally, they are able to provide high levels of power integration while also allowing components to connect to each other without needing additional wiring. Finally, their working principle is based on the transfer of electrons which enables signals to be transmitted between the components on the printed circuit board.
The specific data is subject to PDF, and the above content is for reference
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