CMF6510R000FHEK11 Allicdata Electronics
Allicdata Part #:

CMF6510R000FHEK11-ND

Manufacturer Part#:

CMF6510R000FHEK11

Price: $ 0.20
Product Category:

Resistors

Manufacturer: Vishay Dale
Short Description: RES 10 OHM 1.5W 1% AXIAL
More Detail: 10 Ohms ±1% 1.5W Through Hole Resistor Axial Flame...
DataSheet: CMF6510R000FHEK11 datasheetCMF6510R000FHEK11 Datasheet/PDF
Quantity: 1000
1000 +: $ 0.17955
5000 +: $ 0.17213
Stock 1000Can Ship Immediately
$ 0.2
Specifications
Series: CMF
Packaging: Bulk 
Part Status: Active
Resistance: 10 Ohms
Tolerance: ±1%
Power (Watts): 1.5W
Composition: Metal Film
Features: Flame Retardant Coating, Moisture Resistant, Safety
Temperature Coefficient: ±50ppm/°C
Operating Temperature: -55°C ~ 175°C
Package / Case: Axial
Supplier Device Package: Axial
Size / Dimension: 0.180" Dia x 0.562" L (4.57mm x 14.27mm)
Height - Seated (Max): --
Number of Terminations: 2
Failure Rate: --
Description

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Through Hole Resistors are a type of electronic component used in electronics to limit the amount of current passing through the circuit. They are regularly used in radio, audio, and other high-frequency applications. The CMF6510R000FHEK11 is a through hole resistor with specific design parameters that meets the industry’s most demanding requirements.The CMF6510R000FHEK11 is a rugged, high-precision through hole resistor designed to withstand the toughest environment and most extreme temperature ranges. It is constructed using a unique blend of materials to enhance both its reliability and durability. The component is built to withstand up to 1,2000 G shock and 600g of vibration, and it is corrosion resistance to harsh chemicals. It has an incredibly fast response rate with excellent noise reduction and thermal stability.Additionally, its unique construction ensures that the resistor offers superior accuracy and performance. With an operating temperature range of up to 205°C, this makes it an excellent choice for applications requiring high accuracy and repeatability. The CMF6510R000FHEK11 is also designed to minimize self-heating, enabling it to operate under heavy power loads with minimal drift. The CMF6510R000FHEK11 has dozens of possible applications, ranging from low-noise analog filters to high-field antenna trimmers. It is also regularly used in applications such as automotive electronics, imaging systems, instrumentation, and aerospace electronics. Due to its robustness, it is ideal for electric motors and medical equipment as it can operate even in extremely harsh conditions. The working principle of the CMF6510R000FHEK11 is based on ohm’s law. This law states that voltage is proportional to the current through the resistor. Thus, by controlling the current, the voltage can be controlled, which in turn, changes the resistance of the component. This is done by using a metal oxide or other semiconductor material as a variable resistor that changes its resistance in the presence of a current. The working principle of the CMF6510R000FHEK11 can be explained further by focusing on its two main components. The first component is a metal oxide coating that is applied to the surface of the resistor. This coating demonstrates some unique properties, such as its resistance to both the current and temperature-dependent changes. The second component is the variable resistor that changes its resistance in the presence of a current. This resistor is critically important for controlling the amount of current passing through the component.In conclusion, the CMF6510R000FHEK11 is an incredibly reliable and accurate through hole resistor that is perfect for numerous applications. From its high-resistance accuracy to its superior thermal stability, the CMF6510R000FHEK11 is a great choice for any project requiring high performance and reliability. Its unique design and construction makes it an ideal choice for projects in extreme environments, and its working principle based on ohm’s law ensures a good operation even under heavily loaded conditions.

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

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