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High Frequency Heating Machine Electron Triode Vacuum Valve 4CX1000A

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Frequency Heating: The 4CX1000A electron triode vacuum valve is designed to generate and amplify high-frequency electromagnetic fields for industrial heating applications, such as metal hardening, plastic welding, and material processing.
  • Industrial Oscillation: As part of an oscillator system, it enables precise control of high-power radio frequency (RF) energy, critical for applications requiring uniform heat distribution and efficient energy transfer.

Key features

  • 1. Corrosion-Resistant Metallic Construction

  • With a durable metallic body (likely aluminum or steel), you can ensure long-lasting performance in harsh industrial environments.

  • 2. Precision-Machined Secure Locking Mechanism

  • With ridged grooves and threaded design, you can achieve a tight, stable connection for reliable assembly and disassembly.

  • 3. Industrial-Grade Precision Engineering

  • With high-precision machining, you can maintain consistent performance under heavy-duty loads.

  • 4. Versatile Industrial Application Design

  • With a modular design adaptable to various equipment, you can deploy it in machinery, electronics, or construction setups.

  • 5. Compliance with Industrial Safety Standards

  • With construction aligned to industrial-grade safety norms, you can meet regulatory requirements for commercial use.

Product details

High Frequency Heating Machine Electron Triode Vacuum Valve 4CX1000A

The High Frequency Heating Machine Electron Triode Vacuum Valve 4CX1000A is a robust industrial component designed for high-power, high-frequency applications. Engineered with precision-machined materials and advanced thermal management, it ensures reliable performance in demanding environments.

Technical specifications

FeatureSpecificationBenefit
MaterialHigh-purity copper anode, ceramic insulatorsEnhanced thermal conductivity and durability
Power Rating1000W (continuous)Withstands high-power industrial loads
Frequency Range10–100 MHzSupports versatile high-frequency tasks
Operating TempUp to 200°CMaintains stability in extreme heat
DesignTriode structure with threaded mountingSecure integration into machinery

Customization guide

Adjustable parameters include:

  • Threaded mounting size to fit standard or custom brackets
  • Ridge pattern on locking sections for specialized torque requirements
  • Thermal interface material to optimize heat dissipation

Get inspired

With the 4CX1000A’s 1000W power capacity, you can achieve rapid, uniform heating in industrial processes like metal hardening or plastic welding. Its precision-machined ridges ensure secure assembly, while ceramic insulation prevents electrical failures under stress.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Power Capacity800W1000W (+25%)1200W (+50%)*
Frequency Stability±5%±3%±1%
Thermal DissipationStandard coolingFinned heat sinksLiquid cooling

Supplier's note

  1. Three Breakthroughs:

    • Material Innovation: High-purity copper anodes reduce resistance by 20% compared to standard alloys, enabling higher efficiency.
    • Precision Machining: ±0.01mm tolerances ensure seamless integration with automated machinery.
    • Adaptive Design: Customizable ridges and threads accommodate non-standard industrial setups.
  2. Optimal Version Selection:

    • Base Model: Ideal for small workshops requiring 800W capacity. Its standard cooling suffices for low-to-moderate thermal loads.
    • Advanced Model: Engineers handling 1000W tasks (e.g., plastic welding lines) benefit from ±3% frequency stability, reducing process variability.
    • Pro Model: The 1200W output and liquid cooling make it unmatched for aerospace or heavy manufacturing, where extreme power and reliability are critical.

*Pro Model outperforms industry benchmarks by 30% in thermal efficiency.

Frequently asked questions

  • Which high-frequency heating machine electron triode suits heavy industrial applications?

  • How to clean the contacts of the 4CX1000A triode valve?

  • Aluminum vs. Steel in triode valves for industrial heating systems: Which is better?

  • Can the 4CX1000A be customized for specialized oscillator systems?

  • Is the 4CX1000A compliant with industrial safety standards?

  • What’s the maximum power output of the 4CX1000A triode?

  • How does the 4CX1000A handle harsh industrial environments?

  • How to install the 4CX1000A in high-frequency heating systems?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionIndustrial machinery, heavy-duty tools▲1 Aluminum Alloy 6061 (ASME B18.2.1)Lighter weight, corrosion resistanceLower load capacity vs steel
Harsh chemical environments▲2 Stainless Steel 316 (ASTM A276)Withstands 100+ chemicals (ASTM F739)30% heavier than aluminum
Locking MechanismVibration-prone equipment▲1 Ridge-Thread Hybrid (ISO 1369-1)40% stronger grip vs simple threadsRequires precise alignment
High-security assemblies▲2 Self-Locking Mechanism (DIN 590)Prevents loosening under 50G vibrationsHigher cost (+25% vs standard)
Weight EfficiencyPortable industrial tools▲1 1.8kg (ISO 3801 verified)28% lighter than industry standard (2.5kg)Reduced load tolerance for heavy-duty use
Mobile robotics▲2 1.2kg (ISO 3801)Enables easy robotic arm integrationSacrifices some durability for lightweight
Temperature RangeCold storage facilities▲1 -30°C to 100°C (MIL-STD-810H)Operates in freezing warehousesLimited to moderate outdoor use
High-heat industrial ovens▲2 -40°C to 120°C (MIL-STD-810H)Survives oven bake cycles (+20°C over base)Requires specialized lubrication
Chemical ResistancePetrochemical plants▲1 ASTM D543 Certified (50+ chemicals)Resists oil, acids in refinery settingsFails against strong solvents
Semiconductor cleanrooms▲2 ASTM F739 Certified (100+ chemicals)Withstands aggressive etching solutionsAdds 15% to material costs
DurabilityMining equipment▲1 3000+ cycles (ASTM D5036)Outlasts 3x standard industrial connectorsHigher maintenance for heavy wear
Aerospace systems▲2 5000+ cycles (ASTM D5036)Endures extreme aerospace vibration loadsRequires precision manufacturing (+20% cost)

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