SFR16S0001053FR500 Allicdata Electronics

SFR16S0001053FR500 Resistors

Allicdata Part #:

PPC105KXTR-ND

Manufacturer Part#:

SFR16S0001053FR500

Price: $ 0.01
Product Category:

Resistors

Manufacturer: Vishay BC Components
Short Description: RES 105K OHM 1/2W 1% AXIAL
More Detail: 105 kOhms ±1% 0.5W, 1/2W Through Hole Resistor Axi...
DataSheet: SFR16S0001053FR500 datasheetSFR16S0001053FR500 Datasheet/PDF
Quantity: 1000
5000 +: $ 0.00965
Stock 1000Can Ship Immediately
$ 0.01
Specifications
Series: SFR16S
Packaging: Tape & Reel (TR) 
Part Status: Active
Resistance: 105 kOhms
Tolerance: ±1%
Power (Watts): 0.5W, 1/2W
Composition: Metal Film
Features: --
Temperature Coefficient: ±250ppm/°C
Operating Temperature: -55°C ~ 155°C
Package / Case: Axial
Supplier Device Package: Axial
Size / Dimension: 0.075" Dia x 0.138" L (1.90mm x 3.50mm)
Height - Seated (Max): --
Number of Terminations: 2
Failure Rate: --
Description

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Through hole resistors are a type of electronic component specified for the intermediate to higher power applications as compared to their surface mount counterparts. The SFR16S0001053FR500 is an example of through hole resistor, which is featured in most application areas, typically utilizing applications present in the resistance range of 10 Ohm up to 1MW.

In general, the SFR16S0001053FR500 is a specific model of a through hole resistor, which actually has a much more refined design as compared to other products, due to its use of high-grade materials, components, and processes. The construction of this specific type of through hole resistor features a ceramic-based insulated body, which increases not only its thermal dissipation, but also its temperature coefficient of resistance.

The SFR16S0001053FR500 is also designed to provide exceptional stability in both environmental and electrical circumstances that include the average working temperature range of -55 to +125 degrees Celsius, which is considered to be slightly greater than the standard through hole resistor. In addition, the SFR16S0001053FR500 model is capable to withstand overload in case of an unexpected increase in currents, thereby reducing some potential risks of damages to the circuitry.

Aside from its advanced construction qualities, the SFR16S0001053FR500 through hole resistor also employs a few industry standard techniques for their operation and working principle. Generally, this type of resistor works by converting the electrical signals to specific types of suitable resistance in order to reduce the current flow, thereby enabling the prevention of damage to the circuitry parts from excessive load.

Furthermore, the SFR16S0001053FR500 through hole resistor also serves as a voltage divider, which can be used to divide an applied voltage to a suitable value. This can be done by connecting a certain amount of resistance in series with the supply voltage, which then distributes a portion of it to other components in a circuit. By doing this, the SFR16S0001053FR500 can easily control the power levels as well as the voltage fluctuations across all parts of the circuit.

Another important function of the SFR16S0001053FR500 through hole resistor is its ability to limit the flow of current in a certain component of the electrical circuitry. This works similarly to the voltage divider principle, but in this specific case, an additional conductive element is used to absorb the excessive current that was either generated by electrical spikes or added to the circuit due to human error. In doing so, the SFR16S0001053FR500 resistor can easily protect the other components from possible damage.

These are the primary application fields and working principles of the SFR16S0001053FR500 through hole resistor, which explain why this type of device is so widely used in most electronic circuits. With its advanced construction, versatile operational options, and reliability capabilities, as well as its ability to rapidly regulate voltage, it is easy to understand why this is such a popular component within the industry. It is also a perfect choice for those situations where a higher power is required, yet very compact sizes are needed for the overall design.

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

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