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AS10043 High Force DC Holding Electromagnet Custom Manufacturer

 DC Holding Electromagnet A DC holding electromagnet is an electrically controlled device that generates a magnetic field when direct current flows through its coil, producing a strong holding force to secure ferromagnetic workpieces. Unlike permanent magnets, they offer instant on/off control, enabling precise automation. They are designed for temporary holding, clamping, positioning, and lifting in industrial applications, where they convert electrical energy into magnetic attraction for reliable performance .

    Product Description

    Brand Dr. Solenoid Model Number AS 10043
    Rated Voltage (V) DC12V  or 24V  Rated Power(W) 3W
    Work Mode Holding Type Holding Force (N) 340 Kgs
    Stroke(mm) O MM Working Duty  Intermittance 
    Service Life 200 Thousand Times Certification CE,ROHS,ISO9001,
    Material Superior Magnet Iron Lead Wire Length(mm) 200 MM
    Install Style Screw Tolerance of Dimension  +/-  0.1 MM
    Water-proof  None Insulation Class B
    Hi-Pot Test AC 600V 50/60Hz 2s Non-excitation Holding Force 0
    Working Temperature -10°C-100°C Duty Cycle 1-100%
    Thread Depth(mm)  M10 * 20 MM Payment Term TT, or LC At Sight
    Sample Order Yes Warranty 1 Year
    MOQ 100 pcs Supply Ability 5000 pcs per Week
    Delivery Time 30 Days Port of Loading shenzhen

    Product detail diagram

    DC Holding Electromagnet Structure, Features and BenefitsReliable DC Holding Electromagnet for Industrial ApplicationsEnergy Saving DC Holding Electromagnet for Smart SystemsDC Holding Electromagnet vs Solenoid Key DifferencesIndustrial DC Holding Electromagnet with High Holding ForceMini DC Holding Electromagnet for Compact Applications


    Main Feature DC holding electromagnets   
    feature a compact, maintenance-free design with a high holding force-to-size ratio . They offer fast switching, silent operation, and high repeatability for millions of cycles. They consume minimal power, with standard voltages of 6V, 12V, 24V, and 48V DC . Available in round, rectangular, or flat designs, they feature robust construction with corrosion-resistant surface treatments, waterproof options (IP65/IP67), and various mounting styles .

    Industrial Application In factory automation,

    they are used for workpiece positioning in assembly, welding, and CNC machining, and as end effectors in robotic pick-and-place systems . They secure fixtures and parts in machine tools, packaging machinery, and textile equipment . In the steel industry, they handle sheets, beams, billets, and scrap . Other applications include electromagnetic door locks in security systems, diagnostic equipment in medical devices, and positioning systems in semiconductor and printing equipment . They integrate easily with PLCs and industrial controllers for automated systems

    How to Select the Right DC Holding Electromagnet
    To select the right electromagnet, first accurately calculate the required holding force. Determine the weight of the load and apply a safety factor (typically 1.5 to 3x) to account for surface conditions, vibrations, and potential air gaps . Next, identify your power supply voltage
    common options are 12V, 24V, and 48V DCand match it to the electromagnet . Consider the duty cycle: for continuous operation, choose a 100% duty cycle rating to prevent overheating; for intermittent use, lower ratings are acceptable . Evaluate the physical environment, including temperature, humidity, and potential exposure to corrosive substances, and choose models with appropriate protection classes (e.g., IP65) . Assess the mounting space and available mounting methods (e.g., threaded holes, brackets) . Finally, confirm compatibility with your control system; the electromagnet should interface seamlessly with PLCs or microcontrollers . Always consult the manufacturers data sheet for technical specifications and derating factors to ensure safe and reliable operation. 

     


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