
Allicdata Part #: | RN50C7150FB14-ND |
Manufacturer Part#: |
RN50C7150FB14 |
Price: | $ 0.63 |
Product Category: | Resistors |
Manufacturer: | Vishay Dale |
Short Description: | RES 715 OHM 1/20W 1% AXIAL |
More Detail: | 715 Ohms ±1% 0.05W, 1/20W Through Hole Resistor Ax... |
DataSheet: | ![]() |
Quantity: | 1000 |
100 +: | $ 0.56700 |
300 +: | $ 0.48600 |
500 +: | $ 0.40500 |
1000 +: | $ 0.35100 |
5000 +: | $ 0.34020 |
Series: | Military, MIL-R-10509/8, RN50 |
Packaging: | Bulk |
Part Status: | Active |
Resistance: | 715 Ohms |
Tolerance: | ±1% |
Power (Watts): | 0.05W, 1/20W |
Composition: | Metal Film |
Features: | Flame Retardant Coating, Military, Moisture Resistant, Safety |
Temperature Coefficient: | ±50ppm/°C |
Operating Temperature: | -65°C ~ 175°C |
Package / Case: | Axial |
Supplier Device Package: | Axial |
Size / Dimension: | 0.065" Dia x 0.150" L (1.65mm x 3.81mm) |
Height - Seated (Max): | -- |
Number of Terminations: | 2 |
Failure Rate: | -- |
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Through Hole Resistors are one type of resistors used to control or limit the energy flow in an electronic circuit. They come in a variety of shapes and sizes and are used for a variety of applications. The RN50C7150FB14 is one such resistor that is commonly used in a variety of applications. This article will discuss the application field and working principle of the RN50C7150FB14.
Application Field
The RN50C7150FB14 resistor is mostly designed for high temperature applications. It has a maximum operating temperature of up to 155°C and can working successfully for even higher temperatures. It is designed for through-hole mount applications and is made of a nickel-iron alloy for added durability. It is suitable for power management systems, solar panel controls, power supplies, frequency control circuits, and other related projects.
Specifically, the RN50C7150FB14 is used commonly in industrial automation, radio systems, automotive applications, and military equipment. It can also be used in various types of feedback circuits which require precise and stable voltage or current flow. Additionally, the RN50C7150FB14 can be used in military equipments such as night vision goggles and missiles. It can even be used in aerospace navigation systems and navigational instruments.
Working Principle
The working principle used by the RN50C7150FB14 is that of resistor divider. It uses two resistors in a series to split the total supplied voltage or current into two parts. The two resistors act like two “buckets” where one takes in the full input flow, while the other takes in a portion of the total flow. The ratio of the total input flow to the portion of the flow taken by the second bucket is determined by the ratio of their resistance value. Specifically, the resistor divider works by the resistor with the lower resistance value consuming more current compared to the other resistor.
For example, let us assume that the two resistors used in the resistor divider have values of R1=1 kΩ and R2=2 kΩ. The total current flowing from the positive terminal of the power supply is 3 Amps. Assuming that the resistors are of equal quality, we can denote that each resistor will dissipate 1.5 Amps of current. This means that the resistor with the lower resistance (R1) will take in 1.5 Amps of current, while the resistor with the higher resistance (R2) will take in 0.5 Amps of current.
By using the resistor divider, the RN50C7150FB14 can be used to accurately control the flow of current or voltage in applications which require precise readings. The use of such resistor also ensures that the components used in the circuit are protected from shocks and over-current.
Conclusion
The RN50C7150FB14 is a high temperature, through-hole mounted resistor which is suitable for a variety of applications. It uses a resistor divider to accurately split the voltage or current into two parts. The RN50C7150FB14 is commonly used in industrial automation, radio systems, automotive applications, and military equipment, but can also be used in other fields. Therefore, the RN50C7150FB14 can be an invaluable asset to any circuit design.
The specific data is subject to PDF, and the above content is for reference
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