ROX1002M50GNLB Allicdata Electronics
Allicdata Part #:

ROX1002M50GNLB-ND

Manufacturer Part#:

ROX1002M50GNLB

Price: $ 2.42
Product Category:

Resistors

Manufacturer: Vishay Dale
Short Description: ROX-1 2.5M 2% T-00 L05
More Detail: 2.5 MOhms ±2% 4W Through Hole Resistor Axial Flame...
DataSheet: ROX1002M50GNLB datasheetROX1002M50GNLB Datasheet/PDF
Quantity: 1000
100 +: $ 2.19600
260 +: $ 1.99012
500 +: $ 1.85287
1000 +: $ 1.71563
Stock 1000Can Ship Immediately
$ 2.42
Specifications
Series: ROX
Packaging: Bulk 
Part Status: Active
Resistance: 2.5 MOhms
Tolerance: ±2%
Power (Watts): 4W
Composition: Metal Oxide Film
Features: Flame Retardant Coating, High Voltage, Safety
Temperature Coefficient: ±200ppm/°C
Operating Temperature: -55°C ~ 180°C
Package / Case: Axial
Supplier Device Package: Axial
Size / Dimension: 0.310" Dia x 0.920" L (7.87mm x 23.37mm)
Height - Seated (Max): --
Number of Terminations: 2
Failure Rate: --
Description

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Through Hole Resistors are an essential electrical component that is important for a variety of tasks, ranging from controlling circuit current on power boards to providing power to devices when they are in low-power states. Among these resistors, the ROX 1002M50GNLB is becoming increasingly popular for more power-critical applications. In this article, we will discuss the application field and working principle of the ROX 1002M50GNLB resistor.

The ROX 1002M50GNLB is a through-hole resistor that is characterized by its superior operating characteristics, wide temperature range, and relatively low price. This is why it is becoming so widely used in the industrial and automotive sectors. It is able to provide excellent performance and reliability in applications where high voltage and current levels may be encountered, such as in power supplies, motor controllers, and AC inverters. It also has a high surge capability and can withstand a wide range of temperatures, making it a popular choice in applications such as solar panels, air conditioners, and refrigerators.

The ROX 1002M50GNLB is a two-terminal resistor that has a power rating of 500 mW at 100 V. It has a temperature coefficient of 100ppm/°C and a tolerance of +/-1%. Its maximum working voltage is 200 V, and it has a resistance range of 1,000 ohms to 5,000 ohms. It is also available in several sizes to accommodate the needs of different applications, such as 0402, 0603, 0805, 1206, 1408, and 1210.

The working principle of the ROX 1002M50GNLB is based on the fact that the flow of electrical charge is resisted by the material of the resistor. In other words, the resistor is essentially a material with high electrical resistance. When an electrical current passes through it, the current is divided according to its resistance. The amount of current passing through is proportional to the resistance of the resistor. This is why resistors are used in a variety of applications to control currents and signals, and why the ROX 1002M50GNLB is becoming so widely used in power-critical applications.

In addition to its use in power-critical applications, the ROX 1002M50GNLB is also used in other applications such as medical device prototyping and prototype PCB testing. It is also used as an input element in electronic devices, such as digital signal processing circuits. As a result, the ROX 1002M50GNLB is suitable for a variety of applications, due to its wide temperature range, low price, and superior performance.

In conclusion, the ROX 1002M50GNLB is a through-hole resistor that is becoming increasingly popular for more power-critical applications. It is characterized by its superior operating characteristics, wide temperature range, and relatively low price. Its working principle is based on the fact that the flow of electrical charge is resisted by the material of the resistor, and it can be used in a variety of applications to control currents and signals. For these reasons, the ROX 1002M50GNLB is an essential electrical component that is important for a variety of tasks, ranging from controlling circuit current on power boards to providing power to devices when they are in low-power states.

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

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