
Allicdata Part #: | R5J5R0E-ND |
Manufacturer Part#: |
R5J5R0E |
Price: | $ 1.99 |
Product Category: | Resistors |
Manufacturer: | Ohmite |
Short Description: | RES 5 OHM 5W 5% RADIAL |
More Detail: | 5 Ohms ±5% 5W Through Hole Resistor Radial Flame R... |
DataSheet: | ![]() |
Quantity: | 1000 |
100 +: | $ 1.80338 |
Series: | PC-58 |
Packaging: | Bulk |
Part Status: | Active |
Resistance: | 5 Ohms |
Tolerance: | ±5% |
Power (Watts): | 5W |
Composition: | Wirewound |
Features: | Flame Retardant Coating, Safety |
Temperature Coefficient: | ±260ppm/°C |
Operating Temperature: | -- |
Package / Case: | Radial |
Supplier Device Package: | Radial Lead |
Size / Dimension: | 0.625" L x 0.344" W (15.88mm x 8.74mm) |
Height - Seated (Max): | 0.516" (13.11mm) |
Number of Terminations: | 2 |
Failure Rate: | -- |
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Through Hole Resistors are the most commonly used type of resistor. Through Hole Resistors are available in various sizes, shapes and ratings. They are used in a variety of electronic and electrical applications, such as power control, protection, signal conditioning, and current limiting. This article provides an overview of the R5J5R0E application field and working principle.
Applications of R5J5R0E
R5J5R0E Through Hole Resistors are ideal for a range of applications, including power supplies, AC/DC circuits, power and signal conditioning, as well as current limiting. They can also be used in audio and video, as well as lighting circuits. These resistors can help reduce power dissipation and can provide a safe alternative to high wattage resistors. R5J5R0E Through Hole Resistors are also suitable for noise attenuation applications. Additionally, they are ideal for use in areas that require low voltage operation.
Design Specifications of R5J5R0E
R5J5R0E Through Hole Resistors are heavier than many other types of resistors. They are generally manufactured with an outer diameter of 0.8 mm, and have lengths ranging from 1mm to 5mm. They typically feature a standard voltage of 5kV and temperatures up to 250° C. They typically have four layers of insulation for abrasion resistance, humidity and leakage protection. The actual layer thickness varies by model, and can be from 0.2mm to 0.4mm. The resistive value is usually indicated by a three-digit code.
Current Handling of R5J5R0E
The power handling ability of R5J5R0E Through Hole Resistors is usually determined by their resistance value and the width of the body. Generally, larger resistors can handle higher current levels due to their wider body and increased heat dissipation. Generally, resistors with resistance values of 5kΩ to 20kΩ can handle up to 400mA of current. For higher current levels, resistors with resistance values greater than 20kΩ are recommended. For low current levels, resistors with a resistance value of less than 1kΩ can be used.
Working Principle of R5J5R0E
R5J5R0E Through Hole Resistors work by creating resistance in an electrical circuit. This creates a voltage drop, which can be used to limit the current in a circuit. When an electrical current passes through the resistor, some of the energy is lost as heat. This process is called “resistive heating”, and the amount of heat produced is proportional to the amount of electrical current passing through the resistor. The amount of resistance created by the resistor is determined by the resistive value of the material used.
Cooling of R5J5R0E
To maintain the maximum performance of R5J5R0E Through Hole Resistors, adequate cooling is necessary. The resistor body should be kept clean to reduce thermal resistance. Good airflow or the use of heatsinks is recommended. For larger resistors, they can be installed near water-cooling systems to provide additional cooling. It is also important to note that excessive power-cycling can cause the resistor body to overheat, leading to premature failure.
Conclusion
R5J5R0E Through Hole Resistors are widely used in a variety of applications due to their high reliability and cost-effectiveness. They have a wide range of available sizes and power ratings, making them suitable for applications such as power control, protection, signal conditioning, and current limiting. Additionally, their working principle is based on the creation of resistance, which creates a voltage drop to help limit the current in a circuit. To ensure maximum performance, adequate cooling is necessary.
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