Allicdata Part #: | HVW3\4250K0JEE-ND |
Manufacturer Part#: |
HVW3\4250K0JEE |
Price: | $ 0.57 |
Product Category: | Resistors |
Manufacturer: | Vishay Dale |
Short Description: | HVW-3/4 250K 5% EE E3 |
More Detail: | 250 kOhms ±5% 1.5W Through Hole Resistor Axial Hig... |
DataSheet: | HVW3\4250K0JEE Datasheet/PDF |
Quantity: | 1000 |
2500 +: | $ 0.51351 |
5000 +: | $ 0.50747 |
Specifications
Series: | HVW |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Resistance: | 250 kOhms |
Tolerance: | ±5% |
Power (Watts): | 1.5W |
Composition: | Carbon Film |
Features: | High Voltage |
Temperature Coefficient: | -- |
Operating Temperature: | -- |
Package / Case: | Axial |
Supplier Device Package: | Axial |
Size / Dimension: | 0.155" Dia x 0.895" L (3.94mm x 22.73mm) |
Height - Seated (Max): | -- |
Number of Terminations: | 2 |
Failure Rate: | -- |
Description
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Through Hole ResistorsThrough hole resistors are components that are used in electrical circuits in order to control the amount of current flowing through a circuit. This helps achieve the desired input and output results of the particular circuit. Through hole resistors are among the most commonly used electrical components on the market and are used in a variety of applications. Their popularity is due to their wide range of sizes and resistive values, as well as their ability to dissipate power effectively.The HVW3\4250K0JEE is a through hole resistor with a given value of 4.25kΩ (ohms). This is a surface mountable device, meaning it can be placed directly onto a Printed Circuit Board (PCB) and then soldered in place. This resistor is quite commonly used in both analog and digital circuits, as it has a very low thermal coefficient which makes it ideal for applications requiring accuracy and precision. It is also capable of dissipating high levels of power without degrading its performance, making it suitable for many different applications.One of the most common applications for the HVW3\4250K0JEE are in audio systems, particularly when it comes to volume and tone control. Because of the resistors low thermal coefficient, circuit designers can be sure that any changes in resistance values won’t affect the overall performance of the system. Additionally, because of the resistors high power rating and low thermal coefficient, it can act as a ‘conditioner’ in audio systems, whereby any excess current is dissipated and not allowed to enter the main audio signal flowing through the circuit.The working principle of the HVW3\4250K0JEE is quite simple. It adheres to Ohm’s Law, which states that the current (I) flowing through a circuit is equal to the voltage (V) divided by the resistance (R). In other words, the current flowing through a circuit is inversely proportional to the resistance in the circuit. As such, by placing a resistor of a given value in the circuit, the total current flowing through can be limited. This is what allows the resistor to act as a ‘conditioner’, as the heat generated by excessive current is dissipated by the resistor, which helps protect the main audio signal.Another application for the HVW3\4250K0JEE is in high-speed data transmission circuits. When transmitting data at high speeds, the signals must travel through circuits with a very low resistance. If the resistance were too high, the signals would not have enough power to reach their destination. However, the HVW3\4250K0JEE is ideal for this application, as its low thermal coefficient and ability to dissipate high power levels, make it an ideal choice for high-speed circuits.In conclusion, the HVW3\4250K0JEE resistor is a versatile component used in countless applications. It is widely used due to its low thermal coefficient, allowing circuit designers to be sure that any resistive values won’t affect the circuit’s performance. Additionally, its power rating and low thermal coefficient make it an ideal choice for audio and high-speed data transmission circuits. The working principle of this resistor is simple, adhering to Ohm’s Law, whereby the current flowing through a circuit is inversely proportional to the resistance in the circuit.The specific data is subject to PDF, and the above content is for reference
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