
Allicdata Part #: | RNF18FTC200K-ND |
Manufacturer Part#: |
RNF18FTC200K |
Price: | $ 0.01 |
Product Category: | Resistors |
Manufacturer: | Stackpole Electronics Inc. |
Short Description: | RES 200K OHM 1/8W 1% AXIAL |
More Detail: | 200 kOhms ±1% 0.125W, 1/8W Through Hole Resistor A... |
DataSheet: | ![]() |
Quantity: | 1000 |
5000 +: | $ 0.00878 |
Series: | RNF |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Resistance: | 200 kOhms |
Tolerance: | ±1% |
Power (Watts): | 0.125W, 1/8W |
Composition: | Metal Film |
Features: | Flame Retardant Coating, Safety |
Temperature Coefficient: | ±50ppm/°C |
Operating Temperature: | -55°C ~ 155°C |
Package / Case: | Axial |
Supplier Device Package: | Axial |
Size / Dimension: | 0.071" Dia x 0.130" L (1.80mm x 3.30mm) |
Height - Seated (Max): | -- |
Number of Terminations: | 2 |
Failure Rate: | -- |
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Through Hole Resistors are an invaluable part of the electronic engineering world, and RNF18FTC200K are among the most popular and versatile of these versatile components. As the name suggests, Through Hole Resistors require a hole in the board on which they are soldered, and can be used in a wide variety of applications.
A RNF18FTC200K is typically a low-resistance resistive element that is used to set and maintain a current or voltage in an electrical system. The resistor is differentiated from other connective forms of resistors as it creates a very high resistance connection that is more difficult to damage. In this way, it provides an extra layer of protection to a circuit. This form of Through Hole Resistor is particularly useful when dealing with high voltages.
The RNF18FTC200K’s application field is rather wide. Generally, it can be used in a variety of different applications, such as load balancing, current or voltage limitation, heating, audio amplifier protection, time delay circuits, digital power management, as well as digital logic circuits.
What is more, RNF18FTC200K can be used for many different applications in both digital and analog electronics, and are capable of providing voltage and current limitations as well as signal conditioning. It can also be used in audio signals, loudspeaker protection, power diagnosis, over-temperature protection, and even enhance the performance of DC-DC converters.
Due to the design of the Through Hole Resistor, its working principle is relatively simple. Unlike other forms of resistors, the RNF18FTC200K has a pair of fixed leads that come out of the two sides of the Through Hole Resistor. These leads allow a small amount of electricity to flow between them, thus forming the resistance. That resistance is converted to a voltage or current within the circuitry.
In order to achieve the greatest accuracy and reliability, the RNF18FTC200K must be assembled with the utmost precision. The main feature of RNF18FTC200K is its strong accurate operation, which makes them ideal for circuits designed to have precise set points when dealing with voltage or current. Additionally, these Through Hole Resistors have a wide resistance range and are able to sustain extreme temperatures, thus making them suitable for various applications.
Finally, it is worth noting that the RNF18FTC200K can be used in different kinds of circuits, including AC and DC, switching, linear, and clamping circuits. Additionally, the RNF18FTC200K is available in different physical sizes and shapes, making them ideal for projects that require a certain level of space optimization.
Overall, the RNF18FTC200K are incredibly important components, as they have allowed the Through Hole Resistor to become an integral part of the electronic engineering world. Thanks to its versatile nature and wide range of applications, the RNF18FTC200K can be used in a host of different circuits, making them even more invaluable and indispensable to modern technology.
The specific data is subject to PDF, and the above content is for reference
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RNF14BTE499R | Stackpole El... | 0.07 $ | 1000 | RES 499 OHM 1/4W .1% AXIA... |
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RNF14BAE154R | Stackpole El... | 0.09 $ | 1000 | RES 154 OHM 1/4W .1% AXIA... |
RNF14BAE2K03 | Stackpole El... | 0.09 $ | 1000 | RES 2.03K OHM 1/4W .1% AX... |
RNF14BAE2K77 | Stackpole El... | 0.09 $ | 1000 | RES 2.77K OHM 1/4W .1% AX... |
RNF14BAE4K59 | Stackpole El... | 0.09 $ | 1000 | RES 4.59K OHM 1/4W .1% AX... |
RNF14BTT24K9 | Stackpole El... | 0.61 $ | 1000 | RES 24.9K OHM 1/4W 0.1% A... |
RNF12FTD93K1 | Stackpole El... | 0.01 $ | 1000 | RES 93.1K OHM 1/2W 1% AXI... |
RNF14FBD44R2 | Stackpole El... | 0.01 $ | 1000 | RES 44.2 OHM 1/4W 1% AXIA... |
RNF18FTD84K5 | Stackpole El... | 0.01 $ | 1000 | RES 84.5K OHM 1/8W 1% AXI... |
RNF18FTD169R | Stackpole El... | 0.01 $ | 1000 | RES 169 OHM 1/8W 1% AXIAL... |
RNF18FTD301R | Stackpole El... | 0.01 $ | 1000 | RES 301 OHM 1/8W 1% AXIAL... |
RNF14FAD150R | Stackpole El... | 0.01 $ | 1000 | RES 150 OHM 1/4W 1% AXIAL... |
RNF14FAD30K1 | Stackpole El... | 0.01 $ | 1000 | RES 30.1K OHM 1/4W 1% AXI... |
RNF14FAD7K32 | Stackpole El... | 0.01 $ | 1000 | RES 7.32K OHM 1/4W 1% AXI... |
RNF14FTD127R | Stackpole El... | 0.01 $ | 1000 | RES 127 OHM 1/4W 1% AXIAL... |
RNF14FTC26K7 | Stackpole El... | 0.01 $ | 1000 | RES 26.7K OHM 1/4W 1% AXI... |
RNF14FAC137K | Stackpole El... | 0.01 $ | 1000 | RES 137K OHM 1/4W 1% AXIA... |
RNF14FTC12K1 | Stackpole El... | 0.01 $ | 1000 | RES 12.1K OHM 1/4W 1% AXI... |
RNF14FTC3K65 | Stackpole El... | 0.01 $ | 1000 | RES 3.65K OHM 1/4W 1% AXI... |
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RNF12FTD2M10 | Stackpole El... | 0.02 $ | 1000 | RES 2.1M OHM 1/2W 1% AXIA... |
RNF12FTC10R0 | Stackpole El... | 0.02 $ | 1000 | RES 10 OHM 1/2W 1% AXIAL1... |
RNF12FTC127K | Stackpole El... | 0.02 $ | 1000 | RES 127K OHM 1/2W 1% AXIA... |
RNF14DTC698R | Stackpole El... | 0.02 $ | 1000 | RES 698 OHM 1/4W .5% AXIA... |
RNF14FTE3K74 | Stackpole El... | 0.02 $ | 1000 | RES 3.74K OHM 1/4W 1% AXI... |
RNF12FTD4R87 | Stackpole El... | 0.03 $ | 1000 | RES 4.87 OHM 1/2W 1% AXIA... |
RNF12FTC4R70 | Stackpole El... | 0.03 $ | 1000 | RES 4.7 OHM 1/2W 1% AXIAL... |
RNF14BTD15K0 | Stackpole El... | 0.04 $ | 1000 | RES 15K OHM 1/4W .1% AXIA... |
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RES 750K OHM 1/4W 1% AXIAL750 kOhms 1% 0...

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