| Parameter | Description |
|---|---|
| Inductance Value | Very low (less than 1 μH), effectively suppressing parasitic inductance effects |
| Anti-Pulse Performance | Excellent characteristics, withstands high-energy instantaneous impacts |
| Coating Characteristics | Fire-resistant coating with excellent heat and solvent resistance |
| Structure Type | Metal film structure with excellent stability and low noise characteristics |
| Temperature Coefficient | Small linear coefficient ensures stable resistance under temperature changes |
| Power Range | Multiple power ratings available for different applications |
| Resistance Range | Wide range of values from low to high, precisely customizable |
| Resistance Accuracy | Up to ±0.1% or higher, meeting high-precision equipment requirements |
| Operating Temperature | -55°C to +155°C wide temperature range |
| Reliability Rating | Low annual drift rate with excellent long-term stability |
These resistors are manufactured using high-temperature vacuum deposition technology to create a dense resistive layer of metal film material, ensuring long-term stability. A low-temperature coefficient design (low TCR value) effectively reduces resistance changes caused by temperature fluctuations.
They exhibit extremely low noise characteristics, avoiding additional interference in sensitive circuits. Excellent pulse immunity allows them to maintain stable resistance values even under high-energy surges. A fire-resistant coating enhances thermal stability and environmental adaptability, ensuring reliable operation under harsh conditions.