Product Details
Place of Origin: China
Brand Name: TYOHM
Payment & Shipping Terms
Minimum Order Quantity: 1K
Price: Please contact us for details
Packaging Details: T/B
Delivery Time: 7-10 work days
Payment Terms: T/T
Supply Ability: Depending on the specific circumstances, it generally takes 5-7 work days to complete
Resistance Value: |
0.01Ω ~ 4.7Ω |
Resistance Tolerance: |
±5%, ±10% |
Power Range: |
2W ~ 10W ( Two Pins ) ; 2W+2W ~ 7W+7W ( Three Pins ) |
Inductance: |
<1μH |
Leaching: |
Immerge Into The 350±10°C Tin Furnace For 2~3 Seconds. |
Nonflammability: |
16 Times Rated Power For 5 Minutes |
Resistance Value: |
0.01Ω ~ 4.7Ω |
Resistance Tolerance: |
±5%, ±10% |
Power Range: |
2W ~ 10W ( Two Pins ) ; 2W+2W ~ 7W+7W ( Three Pins ) |
Inductance: |
<1μH |
Leaching: |
Immerge Into The 350±10°C Tin Furnace For 2~3 Seconds. |
Nonflammability: |
16 Times Rated Power For 5 Minutes |
The RGC series of metal plate non-inductive cement resistors uses high-quality nickel-chromium alloy resistive sheets as conductors, combined with a ceramic shell and high-temperature resistant inorganic filler materials. These resistors exhibit excellent thermal stability and a low temperature coefficient, maintaining stable electrical performance under high loads and over a wide temperature range. The non-inductive design effectively suppresses parasitic inductance and high-frequency noise, ensuring signal purity and response speed, making them particularly suitable for circuits requiring high precision and stability.
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| Item | Specification |
|---|---|
| Model | RGC Series |
| Pulse Overload | 1/4W ~ 4W : According 5 tnes rated power to account the voltange , 5W ~ 10W : According 10 times rated power to account the voltage or max. overload voltage for 5 seconds. |
| Operating Temperature | -55℃ ~ +275℃ |
| Temperature Coefficient | ≤ ±350ppm/℃ |
| Resistance Material | Nickel Chrome Plate |
| Encapsulation | Ceramic Housing + Inorganic Filler Material |
| Withstand Voltage | ≤ 1000V |
| Insulation Resistance | ≥100MΩ (DC 500V) |
RGC series resistors operate stably over a wide temperature range of -55℃ to +275℃, exhibiting extremely high thermal stability and overload resistance. The non-inductive design effectively eliminates parasitic effects and electromagnetic interference in high-frequency circuits.
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