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  • Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA
  • Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA
  • Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA
  • Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA
  • Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA
  • Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA
Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA
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Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA

  • >= 10 Pieces
    $2

Customization:

Customized logo(Min.Order: 100 pieces)
Customized packaging(Min.Order: 2000 pieces)
Graphic customization(Min.Order: 100 pieces)

Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precise Motor Control: Enables accurate and efficient operation of robot arm motors through advanced multilayer circuit design, supporting tasks requiring high precision.
  • Multi-Axis Coordination: Designed to manage complex movements across multiple axes, ideal for applications like automation, assembly, and robotic manipulation.

Key features

  • 1. Material Technology

  • With a flexible insulated copper coil, ensure reliable energy transfer in dynamic environments. ~20% more durable than rigid alternatives*

  • 2. Interactive Design

  • With customizable ICs and USB connectivity, adapt to diverse motor control requirements and update firmware for seamless performance adjustments.

  • 3. Performance Parameters

  • The spiral coil design optimizes energy efficiency, enabling faster charging compared to linear coil layouts*.

  • 4. Scenario Solutions

  • Designed for consumer electronics applications like robot arms, ensuring precise motor control in home automation or small-scale industrial setups.

  • 5. Certification Standards

  • With FR-4 substrate construction, meet industry safety and thermal standards for reliable operation in consumer electronics devices*.

Product details

Robot Arm Motor Control PCB Multilayer Control Circuit Board/ Electronic PCBA

The Robot Arm Motor Control PCB Multilayer Control Circuit Board is a versatile electronic PCBA designed for efficient wireless charging integration in consumer electronics. Built with a spiral coil and FR-4 substrate PCB, it ensures optimal energy transfer and customization flexibility for robotics, wearable devices, and IoT applications.

Technical specifications

FeatureSpecificationBenefit
Coil DesignSpiral-wound copper wire with insulated coatingEnhanced energy transfer efficiency (20% faster than flat coils)
PCB MaterialFR-4 substrate with multilayer constructionSuperior thermal stability and durability under high-power conditions
ComponentsIntegrated Circuits (ICs), resistors, capacitors, USB connectorSupports Qi/AirFuel standards, power regulation, and seamless connectivity
Wireless ChargingCustomizable power output (5–15W)Adaptable for low-power sensors to high-demand robotics systems

Customization guide

Adjustable parameters:

  • Coil material (e.g., copper vs. aluminum) to optimize power output for specific applications.
  • PCB layout to reduce size for compact devices or improve heat dissipation for industrial use.
  • IC selection to support additional wireless charging standards (e.g., PMA).

Get inspired

With its modular design, this PCB enables developers to create smart robot arms with wireless charging capabilities, wearable health monitors, or IoT devices. For instance, pairing the spiral coil with a high-efficiency IC reduces energy loss, ensuring reliable operation in robotics applications.


Choose your model

ParameterBase ModelAdvanced ModelPro Model
Power Efficiency75%+15% (86.5%)+30% (97.5%)*
CompatibilityQi StandardQi + AirFuelQi + AirFuel + Custom
Integration ComplexityPlug-and-playModular slotsFull custom firmware
DurabilityIP54IP67IP68

*Based on industry benchmarks (IEEE 1901.5).


Supplier's note

  1. Technical Breakthroughs:

    • The spiral coil design reduces energy loss by 20% compared to flat coils, enabling faster charging.
    • FR-4 substrate ensures thermal stability up to 140°C, outperforming standard PCB materials.
    • Customizable IC slots allow users to adapt to emerging wireless standards without redesigning the PCB.
  2. Optimal Version Selection:

    • Base Model: Ideal for low-power consumer devices (e.g., smartwatches) requiring basic Qi compatibility.
    • Advanced Model: Best for robotics developers needing multi-standard support and moderate power handling.
    • Pro Model: Tailored for industrial IoT systems requiring extreme durability (IP68) and high-power efficiency (97.5%).

With the Pro version’s IP68 rating, you can deploy the PCB in harsh environments like underwater drones. Pair it with the spiral coil to ensure uninterrupted power delivery even in extreme conditions.


Key Sentences Using "With X, you can Y":

  • "With the spiral coil design, you can achieve 20% faster wireless charging than traditional flat coils."
  • "With the Pro Model’s IP68 rating, you can deploy the PCB in environments with water or dust exposure."
  • "With customizable IC slots, you can future-proof your design for emerging wireless standards."

Frequently asked questions

  • Which Robot Arm Motor Control PCB model suits small consumer electronics devices?

  • How do I clean the PCB components of a Robot Arm Motor Control PCB to avoid damage?

  • What material is used for the coil in the Robot Arm Motor Control PCB, and why is it better?

  • Can the Robot Arm Motor Control PCB be customized to support Qi and AirFuel wireless standards?

  • Is the Robot Arm Motor Control PCB certified for consumer electronics safety?

  • How does the Robot Arm Motor Control PCB integrate with existing robot arm systems?

  • What makes the spiral coil design in this PCB more efficient for motor control?

  • Can I use the USB connector on the PCB for data transfer alongside charging?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Coil Material & DesignIndustrial robotics, high-voltage systemsIndustry: Copper 0.3mm (IEC 60228) ▲ Base: Flexible 0.25mm (IEC 60228) ▲▲ Advanced: 0.2mm (ASTM B3)▲▲ Thinner wire reduces size by 20%, improves energy transfer efficiency by 15%▲▲ Requires specialized handling to prevent breakage (0.2mm tolerance)
PCB Substrate MaterialHigh-temperature devicesIndustry: FR-4 1.6mm (ISO 17024) ▲ Base: 1.4mm ▲▲ Advanced: 1.2mm (UL 746B)▲▲ 30% better thermal conductivity, 25% less heat buildup under load▲▲ Thinner PCB may reduce mechanical stability in rugged environments
Component IntegrationPrecision motor control systemsIndustry: 5 ICs (ISO 13849) ▲ Base: 8 ICs ▲▲ Advanced: 12 ICs (ISO 9283)▲▲ Supports 5-axis robotic arms with ±0.01mm positioning accuracy▲▲ Higher component density increases failure risk in dusty environments
Wireless Charging StandardsMulti-standard devicesIndustry: Qi only (WPC 1.2.4) ▲ Base: Qi + AirFuel ▲▲ Advanced: Triple-standard (IEC 62368)▲▲ Compatible with 95% of global wireless charging devices▲▲ Requires 30% more certification costs for multi-standard compliance
Customization FlexibilityCustom robotic solutionsIndustry: Fixed ICs ▲ Base: 50% customizable ▲▲ Advanced: Full API control (ISO 10218)▲▲ Real-time parameter adjustments for niche applications▲▲ Requires advanced engineering skills to configure API parameters
Integration & ModularityRapid prototypingIndustry: Dedicated connectors ▲ Base: USB + 2-pin ▲▲ Advanced: Universal slots (IEC 61131)▲▲ Plug-and-play with 20+ modules (e.g., sensors, actuators)▲▲ Modular slots add 15% bulk compared to non-modular designs

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