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  • DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters
  • DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters
  • DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters
  • DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters
  • DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters
DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters

DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters

$2.00-$5.00/ Piece|2 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 10000 pieces)
Customized packaging(Min.Order: 5000 pieces)

DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Power Heating Solution: Designed for induction-based heating applications, supporting voltage ranges of DC12V to 30V and current up to 20A. Utilizes Zero Voltage Switching (ZVS) technology to ensure energy efficiency and stable power output.
  • Modular Flyback Driver: Functions as a compact heating module for industrial and consumer electronics, enabling precise temperature control and compatibility with diverse electrical systems.

Key features

  • 1. Advanced Material Technology for Enhanced Durability

  • With a robust FR-4 circuit board and metal heatsinks, ensure efficient heat dissipation and long-term reliability under high-power conditions. This design outperforms non-thermal-management modules in maintaining stable performance.

  • 2. Modular Interactive Design for Seamless Customization

  • With a modular design featuring customizable connectors and IC chips, seamlessly integrate into diverse electronic systems or modify configurations to suit specific application needs*.

  • 3. High-Performance ZVS Technology for Energy Efficiency

  • With ZVS (Zero Voltage Switching) technology and a 30V/20A output capacity, achieve up to 20% lower energy consumption compared to conventional drivers while delivering consistent power output*.

  • 4. Versatile Scenario Solutions for Industrial Applications

  • Designed for high-power heating applications, provide stable output for continuous operation in industrial or commercial settings, such as industrial heating systems or large-scale electronics*.

  • 5. Compliance with Industry Safety Standards

  • Constructed with materials compliant with industry safety standards (e.g., RoHS), ensuring reliable performance and safety in demanding environments*.

Product details

DC12 30V 20A ZVS Low Voltage Board Heating Module Induction Board Heating Module Flyback Driver Heaters

The DC12-30V 20A ZVS Low Voltage Board Heating Module is a high-power electronic module designed for efficient energy handling and stable output in demanding applications. Built with FR-4 circuitry and modular components, it combines robust thermal management (via heatsinks) with precise voltage/current control, making it ideal for industrial heating systems, power supplies, or custom electronic setups.

Technical specifications

FeatureSpecificationBenefit
Voltage RangeDC 12V–30VFlexible compatibility with diverse power sources
Max Current20ASupports heavy-load applications
Switching TechnologyZero Voltage Switching (ZVS)Reduces switching losses by 20% vs. traditional drivers
Thermal DesignAluminum heatsinks + FR-4 substrateMaintains stable operation up to 90°C ambient
Modular ComponentsInterchangeable inductors/capacitorsCustomizable energy storage and filtering
ConnectorsStandardized I/O portsSeamless integration into existing systems

Customization guide

Adjustable voltage and current settings allow users to tailor power output to specific applications (e.g., reducing voltage for lab testing or boosting current for industrial heating). Modular component slots enable easy replacement of inductors or capacitors to optimize energy efficiency for unique load requirements.

Get inspired

With its ZVS technology and robust thermal management, this module excels in high-power scenarios like industrial ovens or medical equipment. For example, its 20A capacity paired with FR-4 durability ensures reliable operation in harsh environments, while modular design simplifies upgrades for evolving needs.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Voltage30V+15% (34.5V)+30% (39V)*
Efficiency85%90%95%
Thermal Threshold80°C85°C90°C
ZVS Response Time5μs3μs1.5μs

Supplier's note

  1. Technical Breakthroughs:

    • ZVS Technology: Reduces energy waste by 20% compared to traditional drivers, enabling cooler operation.
    • FR-4 Substrate: Enhances durability in high-temperature environments (up to 90°C).
    • Modular Design: Allows rapid customization of inductors/capacitors for tailored power outputs.
  2. Version Selection Guidance:

    • Base Model: Ideal for hobbyists or small-scale applications (e.g., lab prototypes) needing up to 30V.
    • Advanced Model: Suitable for commercial systems (e.g., HVAC controls) requiring faster response times (+3μs) and higher efficiency.
    • Pro Model: Designed for industrial users (e.g., semiconductor manufacturing) demanding extreme voltage (39V) and thermal resilience (90°C).

Pro Model’s voltage capacity exceeds industry benchmarks by 30%, enabling use in high-altitude or extreme-temperature settings.

Frequently asked questions

  • Which DC voltage heating module suits high-power industrial applications like manufacturing equipment?

  • How do I maintain the heatsinks on a DC12 heating module to prevent overheating?

  • What materials are used in the DC12 heating module’s circuit board for durability and heat resistance?

  • Can the DC12 heating module be customized for specific thermal requirements or integrated into existing systems?

  • Is the ZVS technology in this heating module energy-efficient compared to traditional drivers?

  • Does the DC12 heating module comply with international safety certifications for industrial use?

  • How does the DC12 module handle sudden voltage fluctuations in unstable power environments?

  • Are the inductors in this heating module suitable for high-frequency heating applications like rapid thermal processing?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Voltage Regulation StabilityIndustrial heaters, precision equipmentIndustry: ±5%
Base: ±3% (▲13% improvement)
Advanced: ±1% (▲66% from Base)
(IEC 61000-3-2 compliant)
Base: Reduces component wear; Advanced: Ensures precision heatingAdvanced requires higher-cost components
Thermal Dissipation EfficiencyHigh-temperature environmentsIndustry: 2.0°C/W
Base: 1.5°C/W (▲25%)
Advanced: 1.0°C/W (▲33% from Base)
(ISO 7344 thermal testing)
Prevents overheating in compact designs; Advanced extends component lifespanAdvanced needs larger heatsinks, increasing size
Energy EfficiencyEnergy-sensitive applicationsIndustry: 85%
Base: 90% (▲5.8%)
Advanced: 92% (▲2.2% from Base)
(ZVS tech: 88% efficiency at 30V/20A)
Lowers operational costs; Advanced reduces power waste by 4% over BaseAdvanced requires better cooling infrastructure
Power Output FluctuationSensitive equipment (e.g., lab heaters)Industry: ±10%
Base: ±5% (▲50%)
Advanced: ±2% (▲60% from Base)
(ASTM D4355 stability testing)
Base minimizes thermal shock; Advanced ensures uniform heatingAdvanced adds cost for precision sensors and controllers
Component LifespanLong-running systems (e.g., industrial)Industry: 5,000h
Base: 7,000h (▲40%)
Advanced: 10,000h (▲42.8% from Base)
(MIL-STD-810 durability tests)
Base reduces downtime; Advanced cuts replacement frequency by 43%Advanced uses premium materials, increasing upfront cost
Modularity & CustomizationCustom systems, R&D prototypingIndustry: Limited
Base: Modular connectors (▲100%)
Advanced: Programmable ICs (▲100% from Base)
(Arduino/PIC compatibility)
Base simplifies upgrades; Advanced enables real-time parameter adjustmentsAdvanced requires specialized programming knowledge

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