High Voltage DC Contactor

High Voltage DC Contactor DHC300
Application:Telecom equipment、Solar system、Engineering machinery、Electromobile、Electric vehicle、Charging system、Train、Ships、UPS et...
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High Voltage DC Contactor DHC350P
Contact form: 1H(SPST-NO); Aux. contact form: 1NO; Min load of Aux. contact: 6VDC/ 0.1A; Rated load(Resistive load): 350A; Min app...
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High Voltage DC Contactor DHC400
Application:Telecom equipment、Solar system、Engineering machinery、Electromobile、Electric vehicle、Charging system、Train、Ships、UPS et...
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High Voltage DC Contactor DHC800
Main Part No. DHC800 Contact Data Contact form 1H(SPST-NO) Rated current 800A Rated voltage 1500VDC...
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High Voltage DC Contactor DHC600P
Main Part No. DHC600P Contact Data Contact form 1H(SPST-NO) Rated current 600A Rated voltage 1500VDC Min.load ...
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High Voltage DC Contactor DHC500P
Main Part No. DHC500P Contact Data Contact form 1H(SPST-NO) Rated current 500A Rated voltage 1500VDC Min.load ...
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DHCH300 HV Contactor
Contact form: 1H(SPST-NO); Rated load(Resistive load) : 300A; Min applicable load (Resistive load): 1A/12VDC;Max switch current: 2...
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Versatile Applications for High Voltage DC Contactors
Our high voltage DC contactors are engineered for a wide range of applications, ensuring reliability and efficiency in demanding environments.
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Dual Gun Charging Post
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Centralized Power Distribution
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Switching Module
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On-board PDU
Practical Case Demonstration
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European Home Storage Project

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Charging Pile Project

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Charging project

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Supercharging project

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Spruce 120kw Project

Frequently Asked Questions

Q1: What is the rated voltage range of your HV/LV DC contactors? Can they support 1500V DC PV/ESS systems?

A: Our DC contactors cover a wide voltage range from 12V to 1500V DC. The 1500V series is specifically designed for PV energy storage and high-voltage boxes, complying with IEC 60947-4-1.

Q2: What is the protection rating? Can they be used in humid/dusty environments?

A: With an IP67 protection rating, it is fully dust-tight and waterproof, making it ideal for outdoor charging piles and offshore wind power energy storage applications.

Q3: How do DC contactors achieve arc extinction?

Answer:
DC contactors primarily use two key mechanisms to extinguish arcs effectively:
1. Magnetic Blow-out Arc Extinguishing:
The contactor stretches the electric arc as much as possible within the limited space of the arc chamber. This makes it difficult for the DC arc to sustain itself, leading to its eventual break.
2. Protective Gas:
When an arc is generated, the protective gas inside the chamber is difficult to ionize. This property effectively enhances the dielectric strength of the space, helping to quench the arc.

 

Q4: What is the temperature rise capability of your product?

A: When using the specified copper busbar, our product's temperature rise is kept within ≤65K. Upon request, we can provide corresponding test reports, including those under normal and high ambient temperatures. If specific current levels or copper busbars are required, we can conduct preliminary tests.

Q5: Can your product meet our operating conditions of **A / *V?

A: Our product has undergone electrical life tests for make and break operations at the rated current and voltage. The number of operations is documented in our reports, which we can organize and provide. Additionally, we have relevant certification reports. Furthermore, we can conduct preliminary tests based on customer requirements.

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