M52-5010945 Allicdata Electronics
Allicdata Part #:

M52-5010945-ND

Manufacturer Part#:

M52-5010945

Price: $ 0.41
Product Category:

Connectors, Interconnects

Manufacturer: Harwin Inc.
Short Description: CONN RCPT 9POS T/H 1.27MM GOLD
More Detail: 9 Position Receptacle Connector 0.050" (1.27mm) Th...
DataSheet: M52-5010945 datasheetM52-5010945 Datasheet/PDF
Quantity: 1000
1000 +: $ 0.37699
Stock 1000Can Ship Immediately
$ 0.41
Specifications
Insulation Color: Black
Contact Finish Thickness - Post: --
Contact Material: Phosphor Bronze
Contact Shape: Rectangular
Insulation Material: Polyamide (PA9T), Nylon 9T
Applications: General Purpose, Medical, Telecommunications
Voltage Rating: --
Current Rating: 1A
Features: --
Ingress Protection: --
Mated Stacking Heights: --
Contact Finish - Post: --
Material Flammability Rating: UL94 V-0
Operating Temperature: -40°C ~ 105°C
Contact Length - Post: 0.110" (2.79mm)
Insulation Height: 0.335" (8.51mm)
Series: Archer M52
Contact Finish Thickness - Mating: --
Contact Finish - Mating: Gold
Fastening Type: Push-Pull
Termination: Solder
Mounting Type: Through Hole
Row Spacing - Mating: --
Number of Rows: 1
Pitch - Mating: 0.050" (1.27mm)
Number of Positions Loaded: All
Number of Positions: 9
Style: Board to Board
Contact Type: Forked
Connector Type: Receptacle
Part Status: Active
Packaging: Tube 
Description

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Rectangular Connectors are one of the most common amongst industrial and electronic applications. The M52-5010945 Rectangular Connector is a high current style of connector that is commonly used in industry and electronics applications. The M52-5010945 connector is also commonly known as a header, receptacle, or female socket.

The M52-5010945 connector is a unique type of connector because of its ability to handle high current applications up to 50A, and temperatures up to 150°C. It has three locking tabs that hold the plug securely in place and the male contacts provide stable and superior electrical contact. The housings of this type of connector are made from zinc die-cast material and the pins are made from brass, ensuring a strong and reliable connection.

The most common application for the M52-5010945 connectors is for DC power applications. It can also be used in industrial controls and instrumentation, communications and automotive applications. The M52-5010945 connectors are typically used in applications with voltages up to 200V, but they can be operated with voltages up to 250V. As with any electrical connector application, care should be taken to make sure that the voltage used is compatible with the voltage rating of the connector.

The M52-5010945 connectors provide several advantages for electrical applications. They feature a double locking system that ensures a secure and reliable connection. The design has been optimized to ensure that the pins stay firmly in place when the plug is inserted. The contact resistance of the connectors is also low, so that the electrical connection is highly reliable. The design also allows for the connectors to be used in high current applications, up to 50A.

When it comes to the working principle of the M52-5010945 connectors, it is based on a straightforward dual locking mechanism that requires the plug to be inserted and twisted before locking into place. The locking system is designed to keep the pins firmly in place when the plug is inserted. The pins form a tight and secure connection that prevents electrical arcing within the connector. The pins have also been optimized for low resistance and high current applications.

In conclusion, the M52-5010945 connectors are highly reliable and are well suited for use in high current applications. They are most commonly used in DC power applications and can be used in temperatures ranging from -20°C to +150°C. Their double locking system ensures secure connection and their superior electrical contact is highly reliable. Moreover, the low contact resistance of the pins make them ideal for high current applications.

The specific data is subject to PDF, and the above content is for reference

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