
( Brand: Ohmite ), ( Manufacturer Part Number: H-125-F1-352 ), ( Part Type: Wire Resistor ), ( Avionic Part Type: Reostat Resistor ), ( Adjustable: Insulated For 300 Volts )
The H-125-F1-352 Ohmite Mfg. Wire Wound Resistor is a high-quality electrical component designed for precise voltage control and power dissipation applications. This resistor is a part of Ohmite's robust portfolio of reliable and durable resistors, known for their superior performance and long-lasting reliability.
The H-125-F1-352 is a wire-wound resistor, which is a type of resistor that employs a coil of resistive material, typically made of wire, around a former. This design allows for greater power handling capabilities compared to other types of resistors, making it an ideal choice for applications requiring high power dissipation.
The resistor has a resistance value of 352 ohms, which allows for precise voltage control in various electrical circuits. It operates within a temperature range of -55 C to 150 C, ensuring reliable performance even under extreme temperature conditions. The H-125-F1-352 is rated for a maximum power of 2 watts, making it suitable for low-to-medium power applications.
The resistor features a 1/4-inch diameter, 1-inch length, and 1/8-inch terminal spacing, making it compact and easy to incorporate into various electrical systems. It is constructed using Ohmite's high-quality, nickel-chromium-manganese alloy, which ensures stability and accuracy in resistance values over time.
The H-125-F1-352 Ohmite Mfg. Wire Wound Resistor is a versatile electrical component that offers excellent stability, precision, and power handling capabilities. It is a reliable choice for various applications, such as automotive, industrial, and aerospace, where precise voltage control and power dissipation are essential.
Pros of buying a Ohmite MFG H-125-F1-352 wire wound reostat resistor:1. High-quality construction: Ohmite is a reputable manufacturer known for producing high-quality resistors. The wire wound design of this resistor ensures durability and long-term performance.
2. Wide temperature range: The H-125-F1-352 resistor can operate between -65 C to 200 C, making it suitable for various applications with varying temperature requirements.
3. Precise resistance values: The resistor offers a tolerance of 1%, ensuring a high degree of accuracy in electrical circuits.
4. Low inductance: The wire wound design of the resistor results in low inductance, which can help minimize noise and improve signal integrity in high-frequency applications.
Cons of buying a Ohmite MFG H-125-F1-352 wire wound reostat resistor:1. Higher cost: Compared to other resistor types, wire wound resistors are generally more expensive due to their more complex manufacturing process.
2. Bulkier and heavier: The wire wound design of the resistor makes it bulkier and heavier than other types of resistors, which may be a disadvantage in applications requiring compact components.
3. Less stable over time: While the Ohmite H-125-F1-352 offers a low tolerance of 1%, its stability over time may not be as good as that of other types of resistors, such as thin-film or metal-oxide resistors.
Conclusion:The Ohmite MFG H-125-F1-352 wire wound reostat resistor is a high-quality component suitable for applications requiring precision resistance values, low inductance, and wide temperature ranges. However, its higher cost and bulkier size may be disadvantages for some applications. If cost and size are critical factors, other types of resistors, such as thin-film or metal-oxide resistors, may be more suitable alternatives.
Recommendation:If the application requires a high-quality wire wound resistor with a wide temperature range and precise resistance values, the Ohmite MFG H-125-F1-352 is a good choice. However, if cost and size are critical factors, it is recommended to consider alternative types of resistors to find a more suitable solution.
You are looking at an Ohmite mfg co model wire wound adjustable reostat resistor P/N: h-125-f1 as removed free shipping for us.
S mainland states.