Allicdata Part #: | FMP100FTE52-18R2-ND |
Manufacturer Part#: |
FMP100FTE52-18R2 |
Price: | $ 0.02 |
Product Category: | Resistors |
Manufacturer: | Yageo |
Short Description: | RES MF 1W 1% AXIAL |
More Detail: | 18.2 Ohms ±1% 1W Through Hole Resistor Axial Flame... |
DataSheet: | FMP100FTE52-18R2 Datasheet/PDF |
Quantity: | 1000 |
5000 +: | $ 0.01229 |
Specifications
Series: | FMP |
Packaging: | Tape & Box (TB) |
Part Status: | Active |
Resistance: | 18.2 Ohms |
Tolerance: | ±1% |
Power (Watts): | 1W |
Composition: | Metal Film |
Features: | Flame Proof, Safety |
Temperature Coefficient: | ±50ppm/°C |
Operating Temperature: | -55°C ~ 155°C |
Package / Case: | Axial |
Supplier Device Package: | Axial |
Size / Dimension: | 0.094" Dia x 0.248" L (2.40mm x 6.30mm) |
Height - Seated (Max): | -- |
Number of Terminations: | 2 |
Description
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Through Hole Resistors are the most common type of resistors. In the electronics industry, these types of resistors are usually mounted in printed circuit boards (PCBs) and used to provide a stable impedance range in electrical devices. The FMP100FTE52-18R2 is an example of a through hole resistor which is widely used in the industry. This article will discuss the application field and working principle of this type of resistor.The FMP100FTE52-18R2 is a through-hole resistor used primarily in applications for industry level electrical systems, such as power supplies, rectifier and inverter circuits, and motor control systems. Due to its stability against temperature and electrical noise, the FMP100FTE52-18R2 is also often used as a precision timing or ballast resistor.The main application of this type of resistor is to control the flow of current from one part of a circuit to another. This can be done both for the purpose of controlling power or to reduce energy consumption in a device. The FMP100FTE52-18R2 also has the capability to provide protection from electrical noise in the form of voltage spikes or transients.The FMP100FTE52-18R2 is a through-hole resistor with excellent temperature stability and a low power loss. The main components of the FMP100FTE52-18R2 include a conductive carbon material as the resistor element and a metal leadframe encapsulated in epoxy. The leadframe is used to provide the mechanical support of the resistor element and helps to spread the heat produced during operation.The working principle of the FMP100FTE52-18R2 through-hole resistor is based on the ‘Ohm’s law’, which states that “the current flowing in a conductor is directly proportional to the potential difference across its terminals”. In other words, when a voltage is applied to the terminals of the resistor, the current flowing in the circuit will be proportional to the voltage applied.The FMP100FTE52-18R2 can be used in a variety of applications including the control of power in a circuit, reduction of energy consumption, and protection of electrical components from voltage spikes or transients. The working principle of this type of resistor is based on the ‘Ohm’s law’, which states that “the current flowing in a conductor is directly proportional to the potential difference across its terminals”. Therefore, when a voltage is applied to the terminals of the resistor, the current flowing in the circuit will be proportional to the voltage applied.The FMP100FTE52-18R2 through-hole resistor can be used in a variety of electronic systems and devices, including power supplies, rectifier and inverter circuits, and motor control systems. The resistor can also be used as a precision timing or ballast resistor due to its excellent temperature stability and low power loss. Additionally, the FMP100FTE52-18R2 is capable of providing protection from voltage spikes and transients.Overall, the FMP100FTE52-18R2 is a very reliable and efficient through-hole resistor used in the electronics industry. With its excellent temperature stability and low power loss, the resistor is capable of providing reliable protection from voltage spikes or transients in electronic systems and devices. The resistor’s working principle is based on the ‘Ohm’s law’, which states that the current flowing in a conductor is directly proportional to the potential difference across its terminals. Therefore, when a voltage is applied to the terminals of the resistor, the current flowing in the circuit will be proportional to the voltage applied.
The specific data is subject to PDF, and the above content is for reference
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