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| Categories | Ceramic Tube Resistor |
|---|---|
| Brand Name: | JIANHONG |
| Model Number: | HR3000W |
| Place of Origin: | China |
| MOQ: | 50 |
| Price: | $13-$14 |
| Payment Terms: | T/T |
| Delivery Time: | 7-10 work days |
| Packaging Details: | Wooden box |
| Power: | 3000W |
| Resistance value: | 8 ohm(Customizable) |
| Specification: | 80*420MM(Diameter * Length) |
| Customizable: | ±5% |
| Temperature Coefficient: | ±300ppm |
| Material: | Mullite |
| Company Info. |
| Shenzhen Jianhong Jitai Technology Co., Ltd. |
| Verified Supplier |
| View Contact Details |
| Product List |
RX20 Resistor 8 Ohm Ceramic Resistor 3000W Porcelain Tube Brake Resistor
Product Features
High-temperature tolerance and heat dissipation capacity
Ceramic tube resistors use high-temperature resistant ceramic tubes
as the winding base, combined with a structural design of high
thermal conductivity materials, significantly enhancing heat
dissipation efficiency, effectively preventing performance
degradation caused by overheating, and thus extending service life.
High stability and impact resistance
The resistance wire is wound through the process to ensure the
stability of the resistance value and maintain reliable performance
even in high vibration or shock environments. It is particularly
suitable for industrial automation and mechanical equipment, and
can effectively cope with complex working environments.
Physical protection and insulation
The non-combustible paint encapsulation layer provides strong
physical protection and insulation measures for the resistance
wire, ensuring its stable operation in various environments such as
moisture, chemical corrosion, and vibration. On the other hand,
such encapsulation also reduces electromagnetic interference and
enhances the anti-interference ability of the circuit.
Diversified structural design
According to the different needs of customers, ceramic tube
resistors can be designed as fixed type, adjustable type or
corrugated type. Corrugated winding can enhance heat dissipation
performance and is suitable for high-frequency or high-dynamic load
applications.
Test project | Test conditions | Performance |
Temperature coefficient | There sistance value is measured at room temperature and at room temperature +100℃ respectively and the resistance change rate of each degree is calculated. | ±350ppm/℃ |
Short time overload | Apply avoltage of 10 times the rated power or the maximum load voltage(take the smaller value). | △R≤± (2%+0.052) |
Resistance to welding heat | Immerse in a tin furnace at 350±10%℃ for 2-3 seconds. | △R≤± (1%+0.052) |
Weld ability | Immerse in a tin furnace at 260±5%℃ for 2-3 seconds. | Solder area covers over95% |
Temperature cycle | Leave at -55℃ for 30 minutes,then at +25℃ for 10-15 minutes, then at +275℃ for 30 minutes,and finally at +25℃ for 10-15 minutes,in a total of 5 cycles. | △R≤± (1%+0.052) |
Load life in humidity | Overload rated voltage or Max. working voltage(get the lower) for 1000 hours (1.5 hours on and half-hours off) at the 40±2℃ and 90~95°relative humidity. | △R≤± (5%+0.052) |
Load life in heat | At a temperature of 70±2℃, apply the rated voltage or maximum operating voltage (which ever is lower) for a total of 1000 hours (1.5 hours on,0.5 hours off). | △R≤± (5%+0.052) |
Noncombustibility | Add AC load at 5,10,and 16 times the rated power for 5 minutes respectively. | No obvious flames |

30minutesThemaximumcurrentloadratethattheresistorcanwithstandundershorttimeload | |||||||||
Loadtime(s) | 5 | 10 | 30 | 60 | 180 | 300 | 600 | 900 | 1800 |
Maximumcurrenttolerance(%) | 400 | 350 | 250 | 200 | 140 | 120 | 110 | 105 | 100 |

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