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  • SCD9 Series zero magnetic flux hall effect current sensor
  • SCD9 Series zero magnetic flux hall effect current sensor
SCD9 Series zero magnetic flux hall effect current sensor

SCD9 Series zero magnetic flux hall effect current sensor

$29.00-$42.00/ Unit|50 Unit/Units(Min. Order)

Customization:

Customized logo(Min.Order: 5000 pieces)
Customized packaging(Min.Order: 5000 pieces)
Graphic customization(Min.Order: 5000 pieces)

SCD9 Series zero magnetic flux hall effect current sensor

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Zero Magnetic Flux Measurement: Utilizes Hall effect technology to provide precise AC/DC current sensing with no magnetic interference, ensuring high accuracy in diverse electrical systems.
  • Digital Output & Communication: Delivers real-time digital signals via standardized interfaces, enabling seamless integration into smart grids, automation systems, and IoT platforms.

Key features

  • 1. Durable Blue Composite Construction for Harsh Environments

  • With a corrosion-resistant blue composite body, you can ensure long-term reliability in industrial settings where exposure to moisture, dust, or temperature fluctuations is common.

  • 2. Digital Communication for Seamless Integration

  • With a digital output and standardized green connector, you can integrate the sensor effortlessly into smart systems or existing electrical networks for real-time data transmission, unlike analog sensors requiring additional conversion*.

  • 3. High-Precision Zero Magnetic Flux Technology

  • With zero magnetic flux Hall Effect technology, you can achieve ~20% more accurate current measurements than traditional electromagnetic sensors*, enabling precise monitoring in applications like industrial machinery or renewable energy systems.

  • 4. Modular Design for Versatile Installation

  • With four mounting holes and a compact circular structure, you can install the sensor quickly in tight spaces or complex setups, ideal for both commercial and industrial continuous operation scenarios*.

  • 5. Compliance with Industrial Safety Standards

  • With adherence to safety certifications for high-current environments*, you can trust the sensor’s reliability in critical applications where precision and durability are paramount.

Product details

SCD9 Series zero magnetic flux hall effect current sensor

The SCD9 Series zero magnetic flux Hall effect current sensor is a precision measurement device designed for industrial and electrical systems. Its circular blue composite construction ensures durability, while the integrated green connector and four mounting holes enable seamless integration into diverse applications. The SCD9-10mA model offers a 10mA current rating, combining digital output and hall effect technology for accurate, non-invasive current monitoring.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialBlue composite (insulated, durable)Harsh industrial environments
DesignCircular with central openingSpace-constrained installations
TechnologyZero magnetic flux Hall effectReal-time current measurement
CommunicationDigital interfaceData logging and automation systems
Output TypeDigital signalHigh-precision control systems
Current Rating10mA (SCD9-10mA model)Low-current circuit monitoring
MountingFour standardized holesModular integration into panels
Connector TypeGreen standard electrical connectorCompatibility with industry standards

Customization guide

Adjustable parameters include:

  • Current Range: Customize ratings (e.g., 20mA or 30mA) for specific system requirements.
  • Connector Type: Swap connectors to match existing infrastructure.
  • Material Finish: Opt for UV-resistant coatings for outdoor use.

Get inspired

With the SCD9’s zero magnetic flux design, you can achieve precise current measurement without core saturation, ensuring reliability in fluctuating loads. The digital output enables 20% faster data transmission than analog sensors, ideal for real-time monitoring in smart grids. Its rugged blue composite construction withstands temperatures up to 70°C, making it perfect for industrial machinery and power distribution systems.

Choose your model

ParameterBase Model (SCD9-10mA)Advanced ModelPro Model
Current Rating10mA20mA30mA
Accuracy±1%±0.5%±0.2%
Operating Temp-20°C to 70°C-30°C to 85°C-40°C to 105°C*
Isolation Voltage2kV4kV6kV

Supplier's note

  1. Technical Breakthroughs:

    • Zero Magnetic Flux Technology: Eliminates core saturation, enabling stable measurements in high-frequency circuits.
    • Digital Output: Reduces signal interference by 50% compared to analog sensors.
    • Ruggedized Design: Withstands extreme temperatures and vibrations, outperforming standard plastic sensors by 30%.
  2. Version Selection Guidance:

    • Base Model: Ideal for basic industrial monitoring (e.g., HVAC systems).
    • Advanced Model: Suitable for precision applications like robotics or medical equipment.
    • Pro Model: Designed for harsh environments (e.g., oil rigs or substations), offering triple the isolation voltage of industry benchmarks.

The Pro model’s 6kV isolation voltage ensures safe operation in high-voltage grids, while its -40°C rating enables use in Arctic installations. Pair this with the digital output for seamless integration into IoT systems, enhancing both safety and efficiency.

Frequently asked questions

  • Which SCD9 Series model is best suited for industrial current measurement up to 10mA?

  • Is the SCD9 Series Hall effect sensor certified for industrial safety standards?

  • How do I install the SCD9 Series current sensor with its mounting holes?

  • Can the SCD9 Series digital output interface connect to PLC systems?

  • Why choose the Hall effect technology in the SCD9 Series over traditional sensors?

  • Can the SCD9 Series specifications be customized for specific current ranges?

  • How does the SCD9 Series withstand harsh industrial environments?

  • What maintenance steps are needed for the SCD9 Series sensor?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Hall Effect TechnologyIndustrial Automation, Power MonitoringHall Effect Technology (Base: ±2% accuracy) ▲
Advanced: ±0.5% accuracy ▲▲ (ISO 10012 compliant)
Outperforms shunt-based Industry Standards (±5% accuracy)Calibration required in extreme temperatures (-40°C to 85°C)
Communication InterfaceSmart Grids, IoT SystemsDigital Output (Base: I2C/SPI protocols) ▲
Advanced: Dual I2C/SPI + RS-485 ▲▲
Direct integration with microcontrollers vs analog Industry StandardsBase lacks support for industrial networks (e.g., RS-485)
Output TypeData Logging, Control SystemsDigital Resolution (Base: 12-bit) ▲
Advanced: 16-bit ▲▲ (IEC 61131-2 compliant)
12-bit resolution vs analog Industry StandardsAdvanced requires more processing power for 16-bit data
Measurement AccuracyPrecision Measurement, Calibration LabsMeasurement Accuracy (Base: ±2% FS) ▲
Advanced: ±0.5% FS ▲▲
Base exceeds Industry's ±5%, Advanced meets lab-grade precisionAdvanced models cost 30% more than Base
Response TimeReal-Time Monitoring, Fault DetectionResponse Time (Base: 1ms) ▲
Advanced: 0.1ms ▲▲ (IEC 61131-3 compliant)
1ms response vs Industry's 5ms+, enabling real-time controlAdvanced draws 20% more power
Environmental ResistanceOutdoor Installations, Harsh EnvironmentsEnvironmental Protection (Base: IP54) ▲
Advanced: IP67 ▲▲ (IEC 60529)
IP54 dust/water resistance, Advanced fully sealed for harsh environmentsAdvanced models 20% larger in size

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