D3V-162-2C24 Allicdata Electronics
Allicdata Part #:

Z4815-ND

Manufacturer Part#:

D3V-162-2C24

Price: $ 1.95
Product Category:

Switches

Manufacturer: Omron Electronics Inc-EMC Div
Short Description: SWITCH SNAP ACT SPST-NC 16A 250V
More Detail: N/A
DataSheet: D3V-162-2C24 datasheetD3V-162-2C24 Datasheet/PDF
Quantity: 1000
1 +: $ 1.77660
10 +: $ 1.63989
25 +: $ 1.53720
50 +: $ 1.50318
100 +: $ 1.19568
250 +: $ 1.12735
500 +: $ 1.05902
1000 +: $ 0.99070
5000 +: $ 0.92237
Stock 1000Can Ship Immediately
$ 1.95
Specifications
Ingress Protection: IP40
Mechanical Life: 10,000,000 Cycles
Electrical Life: 100,000 Cycles
Operating Position: 0.600" (15.2mm)
Operating Temperature: -25°C ~ 105°C
Overtravel: 0.062" (1.6mm)
Differential Travel: 0.060" (1.5mm)
Pretravel: 0.157" (4.0mm)
Release Force: 6.118gf
Operating Force: 60gf
Features: --
Series: D3V
Termination Style: Quick Connect - 0.187" (4.7mm)
Mounting Type: Chassis Mount
Actuator Type: Lever, Straight
Voltage Rating - DC: 30V
Voltage Rating - AC: 250V
Current Rating: 16A (AC), 10A (DC)
Switch Function: On-Mom
Circuit: SPST-NC
Part Status: Active
Packaging: Bulk 
Description

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D3V-162-2C24 is a type of snap action, limit switch that is widely used for various applications. It is able to detect the arrival of an object or a presence of an object and then initiate the appropriate action that is necessary for the intended operation. It is also typically used to indicate the position of an object with respect to its predetermined limit.

D3V-162-2C24 consists of a few components including a contact, an actuator, springs, as well as a switching mechanism. The contacts are mainly made of either silver or gold and are separated by an insulating material. When the actuator is operated, the contact that is connected to the actuating mechanism is forced to move within the switch housing. This action results in an electrical connection being made between the two contacts.

The actuator operates by means of an external force (mechanical, electromechanical or other) on the actuator which causes the mechanism to move. The movement of the mechanism creates a force that pushes or pulls the contact of the switch. This action then creates a connection between the two contacts and an electrical connection is made.

The springs in the device help to keep the contact in its resting state. When the external force is removed, the contact returns to its resting state. This ensures that the contacts are not damaged by excessive force during switching.

The switching mechanism of the device is designed to prevent any accidental switching of the contacts. It also helps to isolate the contacts from any potential damage caused by current flow, high temperature operations, or electromagnetic interference (EMI).

The device has a wide range of applications including home appliances, security systems, industrial automation, and consumer electronics. It is also used in the automotive industry to measure the position of a brake pedal, differential pressure, etc. and in the medical field to measure pressure in the lungs, detect heartbeats, or measure body temperature.

The D3V-162-2C24 is also suitable for use in rugged environments and applications in which high reliability and safety is of utmost importance. It is also capable of being used in high temperature and hazardous environments, such as those found in the aerospace industry.

The working principle of D3V-162-2C24 is based on the physical contact between two contacts when the actuator is operated. When the actuator is activated, the contact connected to the actuating mechanism is forced to move within the switch housing, creating an electrical connection between the two contacts. This contact is held in its resting state by springs that are connected to the contact or the actuator. When the external force is removed, the contact returns to its resting state, and the electrical connection is broken.

The D3V-162-2C24 is a reliable and cost-effective device that is suitable for a variety of applications. It has a high reliability and is capable of being used in a wide range of environments. In addition, it is able to provide accurate detection and switching functions with minimal current consumption.

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

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