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HOLE Datasheet, PDF

Searched Keyword : 'HOLE' - Total: 14 (1/1) Pages
ManufacturerPart #DatasheetDescription
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Kemet Corporation
T322 Datasheet pdf image
508Kb/1P
Axial Through-Hole Tantalum
C062H105K5R5GA7303 Datasheet pdf image
1Mb/13P
Radial Through-Hole Multilayer Ceramic Capacitors
C052H272F2G5GA7301 Datasheet pdf image
1Mb/14P
Radial Through-Hole Multilayer Ceramic Capacitors
M550B108M060AA Datasheet pdf image
526Kb/10P
Tantalum Through-Hole Capacitors ??Hermetically Sealed
T35XA105M035AS Datasheet pdf image
504Kb/13P
Tantalum Through-Hole Capacitors ??Radial Dipped
SBT-0140W Datasheet pdf image
234Kb/5P
Common Mode for Signal Line, Through-Hole Type, SBT-01W Series
LA12-50V21 Datasheet pdf image
149Kb/1P
KEMET, MDCS, Current, Through-Hole, DC/AC/Pulse, AC, DC and Pulse Current Detection
LA12-48V21 Datasheet pdf image
149Kb/1P
KEMET, MDCS, Current, Through-Hole, DC/AC/Pulse, AC, DC and Pulse Current Detection
LA12-60V21 Datasheet pdf image
149Kb/1P
KEMET, MDCS, Current, Through-Hole, DC/AC/Pulse, AC, DC and Pulse Current Detection
VS20K123B320AA Datasheet pdf image
34Kb/1P
Varistors, VS, Through Hole, Disc, 420 V, 320 VAC, 510 V, 100 A, 12000 A, 420 J, 1 W
VM474MK122R030P050 Datasheet pdf image
61Kb/1P
KEMET, VM, Varistors, Through Hole, Dual Function, 38 V, 30 VAC, 47 V, 50 V, 77 V, 10 A, 1.2 kA, 10 J, 12 J, 30 mW
VM474MK801R020P050 Datasheet pdf image
61Kb/1P
KEMET, VM, Varistors, Through Hole, Dual Function, 26 V, 20 VAC, 33 V, 36 V, 54 V, 5 A, 800 A, 3.2 J, 6 J, 15 mW
VM105MK801R020P050 Datasheet pdf image
60Kb/1P
KEMET, VM, Varistors, Through Hole, Dual Function, 26 V, 20 VAC, 33 V, 36 V, 54 V, 5 A, 800 A, 3.2 J, 6 J, 15 mW
VM105MK122R030P050 Datasheet pdf image
60Kb/1P
KEMET, VM, Varistors, Through Hole, Dual Function, 38 V, 30 VAC, 47 V, 50 V, 77 V, 10 A, 1.2 kA, 10 J, 12 J, 30 mW

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What is HOLE


Hole is one of the concepts used in semiconductor theory.

Semiconductor is a field that studies the operation of electrons, and the flow of electrons can be explained by the concept of holes, a concept related to the movement of electrons and the lack of electrons at the same time.

Hole refers to electron deprivation, which is caused by the movement of an electron from an atom to which it is bonded.

This indicates a lack of electrons in the bonded atoms.

These holes have a positive charge, as opposed to electrons, and affect electrical behavior.

Hole plays an important role in semiconductor device design.

In particular, in a P-type semiconductor device, the movement of holes and the movement of electrons occur together.

These holes serve to facilitate the movement of current in P-type semiconductor devices.

*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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