| Allicdata Part #: | 346-91-154-41-012000-ND |
| Manufacturer Part#: |
346-91-154-41-012000 |
| Price: | $ 11.42 |
| Product Category: | Connectors, Interconnects |
| Manufacturer: | Mill-Max Manufacturing Corp. |
| Short Description: | CONN SKT STRIP |
| More Detail: | 54 Position Receptacle Connector Through Hole |
| DataSheet: | 346-91-154-41-012000 Datasheet/PDF |
| Quantity: | 1000 |
| 50 +: | $ 10.27940 |
| Insulation Color: | Black |
| Contact Finish Thickness - Post: | 200.0µin (5.08µm) |
| Contact Material: | Beryllium Copper |
| Contact Shape: | Circular |
| Insulation Material: | Polycyclohexylenedimethylene Terephthalate (PCT), Polyester |
| Applications: | -- |
| Voltage Rating: | 100V, 150VDC |
| Current Rating: | 3A |
| Features: | -- |
| Ingress Protection: | -- |
| Mated Stacking Heights: | -- |
| Contact Finish - Post: | Tin-Lead |
| Material Flammability Rating: | UL94 V-0 |
| Operating Temperature: | -55°C ~ 125°C |
| Contact Length - Post: | 0.120" (3.05mm) |
| Insulation Height: | 0.110" (2.79mm) |
| Series: | 346 |
| Contact Finish Thickness - Mating: | 10.0µin (0.25µm) |
| Contact Finish - Mating: | Gold |
| Fastening Type: | Push-Pull |
| Termination: | Press-Fit |
| Mounting Type: | Through Hole |
| Row Spacing - Mating: | -- |
| Number of Rows: | 1 |
| Pitch - Mating: | 0.100" (2.54mm) |
| Number of Positions Loaded: | All |
| Number of Positions: | 54 |
| Style: | Board to Board |
| Contact Type: | Female Socket |
| Connector Type: | Receptacle |
| Part Status: | Active |
| Packaging: | Bulk |
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!Sockets for ICs, transistors, and other analog devices are the basis for most electronic systems. Every socket is designed to accept a specific component, and once connected the component can be protected from physical shock, temperature, and current. Sockets for ICs, transistors have specific requirements for power, timings, and signal interchange with other parts of the system.
Most ICs, transistors, and other analog devices use specialized sockets to allow connection with other electronic parts and to protect the component from overload and shock. For example, a transistor socket can be used to control the power that is fed into the component, as well as to allow the device’s signals to interact with other parts of the system. Through this connection, the entire circuit can be monitored and controlled.
Sockets for ICs, transistors have two main components, the base and the pin. The base holds the IC/transistor in place by clamping or pressing it against a flat surface. This ensures connection is solid and secure. The pin is the element that connects the IC/transistor to the rest of the circuit. Each pin must be able to support the power, timings, and signals that the IC/transistor needs.
The design and type of socket used depends on the component or device it is intended to serve. For example, for an integrated circuit, the designer must carefully select a socket that will protect the device from physical shock and vibration and maintain a secure electrical connection with the circuit. As well, the sockets must be able to accommodate the physical dimensions and pin pitch of the chosen device.
In transistors, the base may also be equipped with a heat sink or mounting plate to control the level of thermal energy transmitted to the underlying surface. Additionally, transistors often require more complex designs for their socket, since transistors produce more heat than integrated circuits and must dissipate this heat through the socket itself.
Sockets for ICs, transistors, and other analog devices are essential for ensuring high performance and reliable operation. Proper selection of the type of socket is critical in ensuring that electronic components have the protection required to remain in operational condition. As well, the socket must be able to withstand the electrical and thermal loads generated by the component, as well as provide an optimum electrical connection with the circuit.
The specific data is subject to PDF, and the above content is for reference
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346-91-154-41-012000 Datasheet/PDF