319-10-106-30-008000 Allicdata Electronics
Allicdata Part #:

ED10774-ND

Manufacturer Part#:

319-10-106-30-008000

Price: $ 2.95
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: LOW PROFILE SLC TARGET CONNECTOR
More Detail: 6 Position Spring Mating Target Connector Surface ...
DataSheet: 319-10-106-30-008000 datasheet319-10-106-30-008000 Datasheet/PDF
Quantity: 156
1 +: $ 2.68380
10 +: $ 2.57355
100 +: $ 2.14452
500 +: $ 1.82284
1000 +: $ 1.55478
Stock 156Can Ship Immediately
$ 2.95
Specifications
Series: 319
Packaging: Bulk 
Part Status: Active
Connector Type: Mating Target
Number of Contacts: 6
Pitch: 0.100" (2.54mm)
Number of Rows: 1
Row Spacing: --
Mounting Type: Surface Mount
Material: Brass Alloy
Contact Finish: Gold
Contact Finish Thickness: 10.0µin (0.25µm)
Description

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Rectangular Connectors - Spring Loaded are generally used in situations where secure connections with specialized wiring are required, such as in the manufacturing and testing of automotive, aerospace, railway and medical equipment. The 319-10-106-30-008000 Connector is one such device which is designed to provide an electrical interface for a housing made up of two parallel lines of ten pins. The connector also has a locking mechanism to protect it from environmental conditions, such as vibration or movement, and to ensure that optimal performance remains throughout the entire life of the system.

The connector uses a spring-loaded design which provides a secure connection by applying a constant force across the pins. This ensures that there is no need to manually drive the pins into the housing as with many other connectors. The force of the spring helps to ensure that all connections remain secure and reliable and that they do not become loose or disconnected under normal circumstances.

The connector also features a two piece design which allows for easy installation and adjustment of the pins. This feature is extremely helpful during the assembly and testing process. The pins can be easily positioned, adjusted and fixed to ensure that the device performs optimally and that it is sealed against the circuit board on which it is mounted. The two pieces of the connector then fit together with a locking mechanism in order to prevent any environmental conditions from damaging the connection between the pins and the housing.

In terms of its application field, the 319-10-106-30-008000 Connector is primarily used in test and diagnostic equipment to interface between sensors and the control components of a system. This allows the operator to accurately and quickly troubleshoot the system and identify any potential problems with the wiring or components. The connector is also suitable for the manufacturing and testing of a wide range of automotive, aerospace, railway and medical devices.

The working principle of the 319-10-106-30-008000 Connector is based on the constant tension of the spring-loaded design. As the springs are compressed, a tension force is applied across the pins to ensure that the connection is secure and stable. This allows the pins to remain secure in a variety of conditions, including extreme temperatures, vibration and shock.

The spring-loaded design also reduces the risk of accidental disconnection as the force of the spring ensures that the pins remain connected to the housing even under intense conditions. The locking mechanism that is used on the two pieces of the connector also helps to ensure that the pins remain secure and no damage occurs to the device.

In conclusion, the 319-10-106-30-008000 Connector is a specialty device which is designed to provide a secure electrical interface for a range of automotive, aerospace, railway and medical devices. It uses a spring-loaded design which applies a tension force across the pins, ensuring that the connection remains secure and reliable throughout the life of the product. This device can also be used for test and diagnostic purposes as well as for the manufacturing and testing of various equipment.

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

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