Wholesale 1200HZ Electric Induction Melting Furnace Power Capacitor

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1200HZ Electric Induction Melting Furnace Power Capacitor

The 1200HZ induction melting furnace power capacitor is carefully crafted using advanced materials and technology. This power capacitor is specially optimized for the 1200Hz high-frequency working environment. It can achieve ultra-efficient conversion of electrical energy to magnetic energy, significantly reduce energy loss, and improve the overall energy efficiency of the melting furnace. After strict quality control and durability testing, the capacitor has high-temperature resistance, voltage shock resistance, and aging resistance, ensuring stable performance under long-term high-load operation. Unique heat dissipation design effectively extends service life and reduces maintenance costs. Specifically tailored for 1200Hz electric induction melting furnaces, this capacitor can be perfectly integrated into various high-frequency induction heating systems to achieve a seamless connection with the main circuit. Through precise matching, the current waveform is optimized, harmonic interference is reduced, the overall operating efficiency and stability of the system are improved, and the melting process is ensured to be more precise and controllable.

  • Specification

    Capacitors can be supplied with either of the following configurations depending on the applications & customers' requirements.
    Configuration 1: Single cooled-live case design, with sub-sections.(one terminal connected to the casing).
    Configuration 2: Single cooled-isolated / dead case design, with sub- sections.(all terminals isolated).
    Configuration 3: Double cooled-isolated / dead case design, without sub-sections.(all terminals isolated).

  • describe

    TYPE Rated UN (V) QN(kvar) fN (Hz) IN(A) CN(uF)
    RFM 2. 5-4000-0.4S 2500 4000 400 1600 254.6
    RFM 3.3-4100-0.6S 3300 410 600 1243 100
    RFM 1.5-4241-1S 1500 4241 1000 2827.3 300
    RFM 1.8-4299-1.2S 1800 4299 1200 2388.3 176
    RFM 2.0-4986-0.8S 2000 4986 800 2493 160
    RFM 2 5-5000-0.4S 2500 5000 400 2000 318.3
    RFM 4.0-5000-0.4S 4000 5000 400 1250 124.3
    RFM 1.1-5018-2.2S 1100 5018 2200 4561.8 300
    RFM 3.0-5350-0.3S 3000 5350 300 1783.3 315.4
    RFM 3.0-5400-0 45S 3000 5400 450 1800 212.2
    RFM 3.0-5450-0.7S 3000 5450 700 1816.7 137. 7
    RFM 2 5-6000-1.5S 2500 6000 1500 2400 101.9
    RFM 3.0-6000-0.3S 3000 6000 300 2000 353.7
    RFM 3.6-6000-0.5S 3600 6000 500 1667 147.4
    RFM 5.0-6000-0.4S 5000 6000 400 1200 95.5
    RFM 3.3-6160-0.5S 3300 6160 500 1867 180.1
    RFM 4.0-6333-0.6S 4000 6333 600 1583.3 105
    RFM 3.0-6921-1.2S 3000 6921 1200 2307 102
    RFM 3.6-7000-0.4S 3600 7000 400 1944.5 214.9
    RFM 1.5-7200-1.2S 1500 7200 1200 4800 424.4
    RFM 4. 4-7260-0.6S 4400 7260 600 1650 99.5
    RFM 3.3-7350-1.5S 3300 7350 1500 2227 71.6
    RFM 4.0-7500-0.4S 4000 7500 400 1875 186.5
    RFM 3.0-7804-1.2S 3000 7804 1200 2601 115
    RFM 3.0-8000-0.7S 3000 8000 700 2666.7 202.1
    RFM 3. 6-8000-0.4S 3600 8000 400 2222 245.6
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Induction Heating & Melting Capacitors

1200Hz Electric Induction Melting Furnace Power Capacitor

Designed for high-frequency induction melting furnaces requiring ultra-efficient energy conversion and stable performance. Supports seamless integration with various high-frequency induction heating systems.

Product Overview

The RFM series delivers high-frequency performance at 1200 Hz, supporting electric induction melting furnace applications requiring efficient energy conversion and long-term stability.

The capacitor construction uses metallized polypropylene film dielectric with self-healing properties. Specially optimized for 1200 Hz high-frequency working environment, the capacitor achieves ultra-efficient conversion of electrical energy to magnetic energy, significantly reducing energy loss and improving overall energy efficiency of the melting furnace. Strict quality control and durability testing ensure high-temperature resistance, voltage shock resistance, and aging resistance, maintaining stable performance under long-term high-load operation. The unique heat dissipation design effectively extends service life and reduces maintenance costs.

Three configuration options are available to accommodate different system requirements: single cooled-live case design with sub-sections (one terminal connected to casing), single cooled-isolated case design with sub-sections (all terminals isolated), and double cooled-isolated case design without sub-sections (all terminals isolated). This flexibility allows integration with various system grounding requirements and thermal management approaches.

Core Advantages

01

Ultra-Efficient Energy Conversion

Optimized for 1200 Hz high-frequency working environment, achieving ultra-efficient conversion of electrical energy to magnetic energy, significantly reducing energy loss and improving overall melting furnace efficiency.

02

Durability & Resistance

High-temperature resistance, voltage shock resistance, and aging resistance ensure stable performance under long-term high-load operation. Strict quality control and durability testing guarantee reliability.

03

Seamless System Integration

Specifically tailored for 1200 Hz electric induction melting furnaces, enabling seamless connection with main circuit. Optimizes current waveform and reduces harmonic interference.

04

Precise & Controllable Melting

Through precise matching, ensures the melting process is more precise and controllable, improving overall operating efficiency and stability of the system.

Product Characteristics

Dielectric System

Metallized polypropylene film with self-healing properties. Advanced materials and technology ensure high-temperature resistance and voltage shock resistance at 1200 Hz operation.

Energy Conversion Efficiency

Specially optimized for 1200 Hz high-frequency environment, achieving ultra-efficient conversion of electrical energy to magnetic energy, significantly reducing energy loss.

Heat Dissipation Design

Unique heat dissipation design effectively extends service life and reduces maintenance costs. Ensures stable performance under long-term high-load operation.

Case Configurations

Live case design with one terminal connected to casing for grounded systems. Isolated case design with all terminals isolated for floating systems. Sub-section options for internal fault isolation.

System Optimization

Precise matching optimizes current waveform, reduces harmonic interference, and improves overall operating efficiency and stability of the melting furnace system.

Application Scenarios

Induction Melting Furnaces

Provides ultra-efficient energy conversion for induction melting furnace operations. High-frequency optimization ensures rapid and precise melting of various materials.

High-Frequency Heating Systems

Supports integration with various high-frequency induction heating systems. Seamless connection with main circuit ensures stable and reliable operation.

Metal Processing

Enables precise and controllable melting processes for metal processing applications. Reduces harmonic interference and improves overall system efficiency.

Industrial Melting Operations

Provides reliable power delivery for industrial melting operations. High-temperature resistance and voltage shock resistance ensure long-term performance under demanding conditions.

Installation & Operation Notes

01

Cooling Requirements

Single cooled configurations require adequate airflow for heat dissipation. Double cooled configurations provide enhanced thermal management for higher power applications. Unique heat dissipation design extends service life.

02

System Matching

Verify capacitor is properly matched to 1200 Hz electric induction melting furnace system. Precise matching ensures current waveform optimization and harmonic interference reduction.

03

Mounting Orientation

Install with cooling ports oriented for optimal airflow. Single cooled configurations require horizontal mounting; double cooled configurations offer more installation flexibility.

04

Electrical Connections

Torque bus bar connections to specified values to minimize contact resistance. Loose connections cause localized heating and potential performance degradation. Follow manufacturer specifications.

05

Environmental Conditions

Indoor installation only. Ambient temperature range: -25°C to +50°C. Avoid corrosive gases, conductive dust, and excessive vibration. High-temperature resistance ensures reliable operation in demanding environments.

Frequently Asked Questions

What is the difference between live case and isolated case configurations? +
In live case configuration, one terminal is internally connected to the capacitor casing, requiring the casing to be grounded. This design is typically used in systems where the capacitor is part of a grounded circuit. In isolated case configuration, all terminals are isolated from the casing, providing flexibility for floating or ungrounded system designs.
What is the difference between single cooled and double cooled configurations? +
Single cooled configuration uses one cooling system and includes sub-sections for internal fault isolation. Double cooled configuration provides enhanced thermal management with two independent cooling systems and no sub-sections, suitable for higher power applications requiring maximum heat dissipation capacity.
How does the capacitor achieve ultra-efficient energy conversion? +
The capacitor is specially optimized for the 1200 Hz high-frequency working environment using advanced materials and technology. This enables ultra-efficient conversion of electrical energy to magnetic energy, significantly reducing energy loss and improving the overall energy efficiency of the melting furnace.
What is the expected service life under continuous operation? +
Service life is influenced by operating temperature, voltage stress, and duty cycle. Under rated conditions with proper cooling, the design life exceeds 80,000 hours. High-temperature resistance, voltage shock resistance, and aging resistance contribute to extended service intervals, with regular monitoring of capacitance and dissipation factor recommended to track degradation.
How does the capacitor reduce harmonic interference? +
Through precise matching and integration with the main circuit, the capacitor optimizes current waveform, effectively reducing harmonic interference. This improves the overall operating efficiency and stability of the system, ensuring the melting process is more precise and controllable.
Jiande Antai Power Capacitor Co., Ltd.
Jiande Antai Power Capacitor Co., Ltd.
Jiande Antai Power Capacitor Co., Ltd. is China Wholesale 1200HZ Electric Induction Melting Furnace Power Capacitor Factory and 1200HZ Electric Induction Melting Furnace Power Capacitor Suppliers, located on the banks of the beautiful Xin'an River in Jiande City, Zhejiang Province. It was founded in 2003 and has a history of nearly 20 years. The company specializes in producing RFM series electric heating capacitors, series resonant capacitors for small and high frequencies, and DZMJ series DC filter capacitors, with a complete production and quality management system. 1S09001 management system certification and CE certification, the company has a strong technical force, advanced production technology, complete testing methods, and independent research and development capabilities. The company's products are novel in design, exquisite in manufacturing, stable in quality, and deeply trusted by domestic and foreign users. With more than 10 years of export experience, the products are exported to the United States, Italy, Germany, Ukraine, Turkey, South Korea, India and other countries. Series resonant capacitors, large-capacity high-voltage capacitors, and filter capacitors have an advantage in the domestic and foreign markets. We offer 1200HZ Electric Induction Melting Furnace Power Capacitor Suppliers for sale.
Certificate Of Honor
  • Certification
  • A Double Cooling Capacitor With Integrated Power Conduction And Heat Dissipation Mechanism
  • A Kind Of Welding And Flipping Platform For Capacitor Cooling Mechanism
  • A Copper Tube Expansion And Bending Device For Heat Dissipation Mechanism For Capacitors
  • A Copper Tube Expansion Machine With A Heat Dissipation Mechanism For Capacitors
  • A Capacitor Terminal Block
  • A Capacitor Film Core
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