Payment Terms | T/T |
Delivery Time | 3-4 Weeks |
Packaging Details | Carton |
Inductance | 140uH/254uH/480uH |
Voltage | 690V |
Keyword | DC Reactor |
Feature | Low DC Resistance |
Application scenarios | Power circuit |
Key parameters for selection | Inductance value/rated current/DCR/temperature characteristics |
Brand Name | ZXY |
Model Number | ZXY |
Certification | RoHS、ISO9001、CE |
Place of Origin | Huizhou.China |
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Product Specification
Payment Terms | T/T | Delivery Time | 3-4 Weeks |
Packaging Details | Carton | Inductance | 140uH/254uH/480uH |
Voltage | 690V | Keyword | DC Reactor |
Feature | Low DC Resistance | Application scenarios | Power circuit |
Key parameters for selection | Inductance value/rated current/DCR/temperature characteristics | Brand Name | ZXY |
Model Number | ZXY | Certification | RoHS、ISO9001、CE |
Place of Origin | Huizhou.China |
This custom DC choke/reactor offers versatile inductance options (140μH, 254μH, 480μH) for high-voltage applications up to 690V, designed to smooth DC current, reduce ripple, and protect power electronics in industrial drives, renewable energy systems, and HVDC applications. Its robust construction ensures reliable performance in demanding environments with high current capacity and minimal losses.
DC choke is a passive electronic component used to suppress high-frequency noise or ripple in DC circuits. Its core feature is the use of inductance to obstruct current changes. The following are its main characteristics:
1. Suppress high-frequency noise
Low pass filtering characteristics: DC Choke has extremely low impedance to DC or low-frequency signals (mainly from the DC resistance of wires), but exhibits high impedance to high-frequency noise (such as switching noise of switching power supplies, EMI/RFI interference), which can effectively filter out these interferences.
Combined with capacitors: often combined with capacitors to form LC filters, further smoothing the DC power supply.
2. Maintain DC stability
Preventing sudden changes in current: By utilizing the characteristic of inductance that "obstructs current changes", it suppresses current fluctuations caused by load changes or power supply switching, and protects the circuit from instantaneous shocks.
Reduce Ripple: In switch mode power supplies (such as Buck/Boost circuits), the current ripple at the output can be reduced.
3. Low DC resistance (DCR)
High efficiency: During design, it is necessary to minimize the direct current resistance (DCR) of the winding to reduce power loss and heat generation, especially in high current applications such as motor drives and photovoltaic inverters.
4. Saturation current capability
Anti magnetic saturation: It is necessary to choose a model with a saturation current (Isat) higher than the operating current to avoid a sudden drop in inductance value due to magnetic core saturation, which may cause failure. Commonly used powder magnetic cores (such as iron silicon aluminum) or open-loop magnetic cores are used to improve saturation resistance.
5. Application scenarios
Power circuit: Switching power supply input/output filtering, DC-DC converter.
Motor drive: Suppress the noise generated by motor commutation.
New energy system: DC bus filtering for photovoltaic inverters and electric vehicle charging stations.
Industrial equipment: EMI suppression for welding machines and frequency converters.
6. Differences from AC Choke
DC bias: DC chokes need to withstand DC current in the magnetic core, and the stability of inductance under bias should be considered in the design; And AC chokes (such as AC inductors) only handle alternating current.
No eddy current loss: The magnetic core has no alternating magnetic field under DC, so there is no eddy current loss (but attention should be paid to saturation caused by DC bias).
7. Key parameters for selection
Inductance value (L): Select based on noise frequency and filtering requirements.
Rated current: including DC working current and saturation current.
DCR: Affects power consumption and temperature rise.
Temperature characteristics: Whether the inductance value is stable at high temperatures.
summarize
DC Choke achieves DC stability and noise suppression through its inductive characteristics, and its performance depends on the magnetic core material, winding design, and operating conditions. In high-performance or high-power applications, it is necessary to balance the inductance value, saturation current, and DCR.
Feature | Specification |
Inductance Range | 140uH / 254uH / 480uH (customizable) |
Rated Voltage | 690V DC |
Current Capacity | High current handling (customizable based on application) |
Core Material | High-grade laminated silicon steel or powder core (low losses, high saturation) |
Insulation Class | Class H (180C) or higher (ensures thermal stability) |
Cooling Method | Natural convection / Forced air cooling (optional) |
Ripple Reduction | Excellent attenuation of DC bus harmonics & noise |
Temperature Rise | Optimized design for minimal temperature rise under full load |
Protection | Overcurrent & thermal overload resistance |
Mounting | Bolt-on or chassis mounting (robust mechanical design) |
Standards Compliance | CE, RoHS, IEC 61558 (or customizable to meet industry standards) |
Applications | Industrial VFDs, renewable energy systems, HVDC, UPS, and motor drives |
Company Details
Business Type:
Manufacturer,Exporter
Year Established:
2011
Total Annual:
6000000-8000000
Employee Number:
100~120
Ecer Certification:
Verified Supplier
Shenzhen Zhixiangyuan Electronics Co.,Ltd is a high tech enterprise, specializing in customizing various types of audio transformers, high frequency transformers, low frequency transformers,switching power transformers, toroidal inductors, choke coils, SMD power inductors, supper high current indu... Shenzhen Zhixiangyuan Electronics Co.,Ltd is a high tech enterprise, specializing in customizing various types of audio transformers, high frequency transformers, low frequency transformers,switching power transformers, toroidal inductors, choke coils, SMD power inductors, supper high current indu...
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