RR03J620RTB Allicdata Electronics
Allicdata Part #:

A138479TB-ND

Manufacturer Part#:

RR03J620RTB

Price: $ 0.03
Product Category:

Resistors

Manufacturer: TE Connectivity Passive Product
Short Description: RES 620 OHM 3W 5% AXIAL
More Detail: 620 Ohms ±5% 3W Through Hole Resistor Axial Flame ...
DataSheet: RR03J620RTB datasheetRR03J620RTB Datasheet/PDF
Quantity: 1000
1000 +: $ 0.02654
2000 +: $ 0.02459
5000 +: $ 0.02224
10000 +: $ 0.02123
25000 +: $ 0.02034
50000 +: $ 0.01990
100000 +: $ 0.01951
Stock 1000Can Ship Immediately
$ 0.03
Specifications
Series: RR, Neohm
Packaging: Tape & Box (TB) 
Part Status: Active
Resistance: 620 Ohms
Tolerance: ±5%
Power (Watts): 3W
Composition: Metal Film
Features: Flame Retardant Coating, Pulse Withstanding, Safety
Temperature Coefficient: ±300ppm/°C
Operating Temperature: -55°C ~ 235°C
Package / Case: Axial
Supplier Device Package: Axial
Size / Dimension: 0.197" Dia x 0.591" L (5.00mm x 15.00mm)
Height - Seated (Max): --
Number of Terminations: 2
Failure Rate: --
Description

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Through Hole Resistors are important components of many electronic systems, as they regulate the flow of electricity with precision and accuracy. The RR03J620RTB is one such type of resistor, and is used mainly for providing reliable low-noise and precise current regulation. In order for it to work effectively, certain components must be included in its design. This article will discuss the RR03J620RTB application field and its working principle.

The RR03J620RTB is most commonly used in industrial control systems, where precise current setting is required to monitor and control various processes and electrical systems. It is usually mounted on a printed circuit board and matched with a control system or a power supply. This allows the resistor to be used to fine-tune the current to the board\'s components, ensuring accurate current regulation. The RR03J620RTB is also used as a general purpose resistor in various electronic applications, such as consumer electronics devices, car audio equipment, and industrial machinery.

The working principle of the RR03J620RTB is based on a three-terminal integrated circuit (IC) architecture. This IC architecture contains two external resistors – a primary resistor and a secondary resistor. The primary resistor is the one that is connected directly to the power supply, while the secondary resistor is the one that is connected to the printed circuit board. The primary resistor and the secondary resistor are connected to each other through the IC architecture, which provides the control of current regulation.

The primary resistor has a large resistance value and is controlled by the current flow of the application. The secondary resistor, on the other hand, has a much lower resistance value, and it regulates the current by limiting the current to a specific range. The secondary resistor is also known as the adjustable resistor, because it can be adjusted by changing its resistance value. This allows for precise current setting, which makes the RR03J620RTB ideal for applications that require accurate current regulation.

The main advantages of the RR03J620RTB include its ability to provide precise current regulation, its low-noise performance, and its high stability. Additionally, the RR03J620RTB has a wide operating temperature range that allows it to be used in a variety of applications. The RR03J620RTB is also extremely neat and compact, and this makes it easy to install onto a printed circuit board.

In conclusion, the RR03J620RTB is a three-terminal integrated circuit (IC) resistor, which is used mainly for providing reliable low-noise and precise current regulation. Its working principle is based on a three-terminal IC architecture, which contains two external resistors – a primary resistor and a secondary resistor – that are connected to each other. The primary resistor has a large resistance value and is controlled by the current flow of the application, while the secondary resistor has a much lower resistance value and it regulates the current by limiting the current to a specific range. Its main advantages include its ability to provide precise current regulation, its low-noise performance, and its high stability. It is mainly used in industrial control systems, where precise current setting is required to monitor and control various processes and electrical systems.

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

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