RN55D2493FBSL Allicdata Electronics
Allicdata Part #:

RN55D2493FBSL-ND

Manufacturer Part#:

RN55D2493FBSL

Price: $ 0.75
Product Category:

Resistors

Manufacturer: Vishay Dale
Short Description: RES 249K OHM 1/8W 1% AXIAL
More Detail: 249 kOhms ±1% 0.125W, 1/8W Through Hole Resistor A...
DataSheet: RN55D2493FBSL datasheetRN55D2493FBSL Datasheet/PDF
Quantity: 1000
100 +: $ 0.68040
300 +: $ 0.58320
500 +: $ 0.48600
1000 +: $ 0.42120
5000 +: $ 0.40824
Stock 1000Can Ship Immediately
$ 0.75
Specifications
Series: Military, MIL-R-10509/7, RN55
Packaging: Bulk 
Part Status: Active
Resistance: 249 kOhms
Tolerance: ±1%
Power (Watts): 0.125W, 1/8W
Composition: Metal Film
Features: Flame Retardant Coating, Military, Moisture Resistant, Safety
Temperature Coefficient: ±100ppm/°C
Operating Temperature: -65°C ~ 175°C
Package / Case: Axial
Supplier Device Package: Axial
Size / Dimension: 0.090" Dia x 0.240" L (2.29mm x 6.10mm)
Height - Seated (Max): --
Number of Terminations: 2
Failure Rate: --
Description

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Through hole resistors are electrical components used to reduce current flow, adjust signal levels, divide voltages, and for every other task of playing the role of current and voltage regulator. Among the numerous types of through hole resistors, the RN55D2493FBSL has its own application field and working principle.

The RN55D2493FBSL is a relatively compact through hole resistor that is usually used to increase power efficiency in small electronic circuits. It is designed with metal alloy due to its excellent ability to resist moisture. This type of resistor can be found in a variety of electronic devices such as medical systems, household appliances, and industrial machinery and can be commonly found in the form of a small cylindrical body with two leads.

In order to understand the application field and working principle of the RN55D2493FBSL, it is important first to understand the basics of the resistor. As the most commonly used component in circuit design, a resistor is an electrical element designed to reduce current flow by introducing resistance into the circuit. Each resistor will have a specific resistance value, which will determine how much current can pass through it. Depending on the design of the resistor, the amount of current that can pass through it will vary. This value can typically be found on the resistor’s body.

In the case of the RN55D2493FBSL, the resistor has a power rating of 1/16W and a resistance value of 2493 ohms. The size of this resistor is typically 0.4” in length and 0.2” in diameter. Its two leads have a 0.063” diameter and it is encased in a metal shell. This prevents the resistor from corroding and increases its useful life.

The RN55D2493FBSL can be used in a variety of applications, from controlling fan speed to regulating the flow of current in a circuit. Its primary use is as a current limiter that prevents excessive current from passing through a circuit. By controlling the current, it helps system engineers reduce system noise levels and maintain the stability of the system.

The working principle of the RN55D2493FBSL is relatively straightforward. It utilizes Ohm’s law to control the flow of current. Ohm’s law states that the current flowing through a resistor is inversely proportional to its resistance. In other words, if the resistance increases, the current decreases. Because of this, when the RN55D2493FBSL is placed in a circuit, it acts as a current limiter, forcing the current to reduce to a safe level.

In a nutshell, the RN55D2493FBSL is a type of through hole resistor that is specifically designed to control the current in a circuit. Its metal body prevents it from corroding due to moisture and its two leads have a diameter of 0.063”. Its power rating is 1/16W and it has a resistance value of 2493 ohms. Its main use is as a current limiter to prevent excessive current from passing through the circuit. By controlling the current levels, it ensures the stability of the system and prevents system noise. Its working principle is based on Ohm’s law, which states that the current flowing through a resistor is inversely proportional to its resistance.

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

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