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CANTILEVER Datasheet, PDF

Searched Keyword : 'CANTILEVER' - Total: 82 (1/5) Pages
ManufacturerPart #DatasheetDescription
Company Logo Img
Molex Electronics Ltd.
0009075068 Datasheet pdf image
464Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 6 Circuits
0009075098 Datasheet pdf image
464Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 9 Circuits
0009075028 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 2 Circuits
0009072138 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 13 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009072068 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 6 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009072058 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 5 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009072088 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 8 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009072028 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 2 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009072128 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 12 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009072047 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 4 Circuits, Tin (Sn), Feed- Through, 20 Stranded, Blue ID Strip
0009072067 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 6 Circuits, Tin (Sn), Feed-Through, 20 Stranded, Blue ID Strip
0009072077 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 7 Circuits, Tin (Sn), Feed- Through, 20 Stranded, Blue ID Strip
0009072038 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 3 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009072048 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 4 Circuits, Tin (Sn), Feed-To, 20 Stranded, Blue ID Strip
0009070037 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 3 Circuits, Tin (Sn), Feed- Through, 18 Solid or Fused Stranded, Yellow ID Strip
0009070087 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 8 Circuits, Tin (Sn), Feed-Through, 18 Solid or Fused Stranded, Yellow ID Strip
0009070108 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 10 Circuits, Tin (Sn), Feed-To, 18 Solid or Fused Stranded, Yellow ID Strip
0009070167 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 16 Circuits, Tin (Sn), Feed- Through, 18 Solid or Fused Stranded, Yellow ID Strip
0009070027 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 2 Circuits, Tin (Sn), Feed-Through, 18 Solid or Fused Stranded, Yellow ID Strip
0009070058 Datasheet pdf image
465Kb/26P
3.96mm (.156") KK짰 IDT Double Cantilever Contact, 5 Circuits, Tin (Sn), Feed-To, 18 Solid or Fused Stranded, Yellow ID Strip

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What is CANTILEVER


In electronic components, cantilever is a term referring to a shape in which one end of a structure or device protrudes farther than the other.

The cantilever represents the principle of supporting its own weight and external load with its end resting without any kind of support.

In electronic components, cantilever is used for various purposes. Some prime examples are:

Micro Device: Cantilever is one of the important components of micro device. For example, in micro-electromechanical systems (MEMS) technology, cantilevers can be used as sensors or actuators.

A sensor or actuator may be attached to the tip of the cantilever to detect a specific sensor technology (eg stress, mass, force) or actuator action (eg vibration, bending).

Industrial Inspection and Measurement: The Cantilever can be used as a probe used in instruments such as high-resolution atomic force microscopes (AFM) or scanning electron microscopes (SEM).

These probes are used to measure and investigate the surface morphology, properties, and composition of specimens with a high degree of precision and sensitivity.

Nanotechnology: Cantilever is also widely used in the field of nanotechnology. For example, in nanochips, Cantilever can be used for sensing or manipulation of specific molecules or nanoparticles.

The size and shape of the cantilever is designed to fit the desired purpose, enabling work at the nanoscale.

The cantilever has one free end and a fixed end, making it useful in a variety of applications.

This can offer a number of advantages, such as space savings, simplification of fixation and support structures, and sensitive measurements and inspections.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.


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