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Rated input voltage: Three-phase AC 415V ± 10% 50Hz
In line with the national power quality standards
Rated input current: AC 19.3A
Rated input power: 13.9KVA
Rated input power factor: COSΦ≥0.95
Output voltage: DC 0~12V adjustable
Output current: DC 0~1000A adjustable
Steady current precision: ≤1%
Steady voltage precision: ≤1%
Display accuracy: 1A, 0.01V
Rated output efficiency: ≥91%
Application Industry: Surface treatment industry, such as CED Coating
Electroplating, a widely used technique in the surface treatment industry, involves depositing a thin layer of metal or alloy onto the surface of another material through electrolysis. This process plays a crucial role in enhancing properties such as wear resistance, conductivity, reflectivity, and corrosion resistance, while also improving visual appeal. Various electroplating methods, including copper, nickel, gold, palladium-nickel, tin-lead, silver, zinc, ABS, and chrome plating, are extensively applied across the surface treatment industry.
The electroplating process relies on several essential components: the cathode (the item being plated), the anode (either the metal to be deposited or an insoluble anode made of precious metals), a solution containing the metal ions, a tank to hold the solution, and a rectifier providing direct current (DC) power. These elements work in harmony to ensure precise and effective surface treatment. High-Frequency Switching Power Supplies are integral in electroplating, offering energy-efficient operation, stable output, and the flexibility to adjust waveforms, making them invaluable for various applications in the surface treatment industry.
This versatile technique finds significant use in industries like automotive manufacturing, where it serves both functional and aesthetic purposes. Electroplating is also commonly applied to ABS materials, enhancing their durability and appearance. The applications extend to areas such as PCB electroplating and the deposition of metals like copper, nickel, and chromium. High-Frequency Switching Power Supplies play a pivotal role in these processes, driving efficiency and precision within the surface treatment industry.
The Plating Rectifier Equipment series of electroplating rectifiers is extensively utilized for a variety of surface treatments, including PCB electroplating, hard chrome coating, as well as plating with copper, nickel, zinc, gold, and silver, among other hardware surface treatment applications.
1)Field application diagram:
2)Industry application examples:
Characteristics of an electroplating rectifier:
› Excellent Energy-Saving Effect:
The rectifier is designed to operate efficiently, converting incoming AC power into DC power with minimal energy loss. This leads to significant savings in electricity consumption, which can be particularly beneficial for large-scale electroplating operations that require continuous power supply.
› High Output Stability:
The rectifier is capable of maintaining a constant and stable DC output voltage and current, even under varying load conditions. This ensures consistent and uniform plating thickness, which is crucial for achieving high-quality electroplating results.
› Flexible Output Waveform Modulation:
The output waveform of the rectifier can be easily modulated to suit different electroplating processes and requirements. This includes adjusting the pulse width, frequency, and duty cycle of the output waveform, which can optimize the plating efficiency and quality for specific applications.
› Ease of Waveform Modulation:
In addition to flexibility, the rectifier is also designed for ease of waveform modulation. Operators can quickly and accurately adjust the waveform parameters using intuitive controls or automated systems, allowing for precise control over the electroplating process.
Overall, these characteristics make the electroplating rectifier an essential tool for achieving high-quality, efficient, and energy-saving electroplating processes.
Enhance Wear Resistance, Conductivity, and Reflectivity: By depositing a thin layer of a harder or more conductive material onto the surface of an object, electroplating significantly improves its wear resistance, allowing it to withstand friction and abrasion better. It also enhances conductivity, particularly in electronic and electrical components, by providing a smoother and more uniform surface for the flow of current. Additionally, certain metals, such as silver and chromium, can improve reflectivity, making electroplated surfaces ideal for mirrors, reflectors, and other optical applications. Improve Corrosion Resistance and Enhance Aesthetics: By creating a barrier between the base material and the environment, electroplating protects the object from corrosive elements like moisture, oxygen, and chemicals, thereby extending its lifespan. Furthermore, electroplating can add a decorative finish to an object, enhancing its aesthetic appeal. Whether it’s the shiny chrome finish on car bumpers or the gold plating on jewelry, electroplating adds a touch of elegance and sophistication. In summary, electroplating serves a dual purpose: it not only enhances the functional properties of an object but also improves its appearance and extends its durability.
› Copper Plating:
Purpose: Primarily used as a primer to enhance adhesion of subsequent plating layers and improve corrosion resistance.
Considerations: Copper is prone to oxidation, which forms copper oxide (copper green) that loses conductivity. Therefore, copper-plated products must undergo copper protection treatments.
› Nickel Plating:
Purpose: Used as a primer or for aesthetic purposes to enhance corrosion resistance and wear resistance. Chemical nickel plating is a modern process that offers wear resistance comparable to chrome plating.
Considerations: Note that many electronic products, such as DIN heads and N heads, no longer use nickel as a primer due to its magnetic properties, which can affect the electrical performance and passive intermodulation inside the device.
› Gold Plating:
Purpose: Improves conductive contact impedance and enhances signal transmission.
Considerations: Gold is highly stable but also the most expensive option.
› Palladium-Nickel Plating:
Purpose: Improves conductive contact impedance and enhances signal transmission. Offers better wear resistance than gold.
Advantages: Combines the benefits of palladium’s corrosion resistance and nickel’s hardness.
› Tin-Lead Plating:
Purpose: Improves soldering ability.
Considerations: Due to concerns about lead content, tin-lead plating is being phased out and replaced by alternatives such as bright tin and mist tin plating.
› Silver Plating:
Purpose: Improves conductive contact impedance and enhances signal transmission.
Advantages: Silver offers the best electrical conductivity among these metals and is relatively resistant to oxidation, maintaining conductivity even after oxidation.
Considerations: While silver’s performance is excellent, its cost and tendency to tarnish over time should be considered.
the choice of plating type depends on the specific requirements of the application, including corrosion resistance, wear resistance, electrical conductivity, cost, and environmental considerations.
Cathode: The plated object, specifically referring to various connector terminals or other metallic surfaces that are intended to receive the electroplated coating. The cathode serves as the surface where the desired metal ions are reduced and deposited as a solid layer.
Anode: Depending on the type of electroplating process, the anode can be either soluble or insoluble.
Soluble anode: This is the metal that is to be plated onto the cathode. During the electroplating process, metal ions from the anode dissolve into the plating solution and are then plated onto the cathode.
Insoluble anode: In some cases, especially when using precious metals like white gold or iridium oxide, an insoluble anode may be used. This anode does not dissolve during the process but serves as a source of electrons for the reduction reaction that occurs at the cathode.
Plating Solution: This is a solution that contains ions of the metal that is to be plated onto the cathode. The composition and concentration of the plating solution are crucial for achieving the desired plating properties, such as thickness, adhesion, and appearance.
Plating Tank: The tank that holds and stores the plating solution during the electroplating process. The tank must be able to withstand the corrosive effects of the plating solution and maintain a constant temperature to ensure consistent plating results. Strength, corrosion resistance, temperature resistance, and chemical compatibility are key considerations in selecting the material for the plating tank.
Rectifier: The equipment that provides the direct current (DC) power supply for the electroplating process. The rectifier converts alternating current (AC) from the main power supply into DC, which is then used to drive the electroplating reaction. The voltage and current output of the rectifier can be adjusted to control the rate of deposition and the thickness of the plated layer.
Additionally, other elements may also be involved in the electroplating process, such as filters to remove impurities from the plating solution, heaters to maintain the solution at a constant temperature, and stirrers to ensure uniform mixing of the solution.
Air Cooling:Heat dissipation fan + air duct + comb heat sink
Water Cooling:Built-in water circulation line
Attribute type | Parameter items | Technical requirements | |
Input characteristics | Rated input voltage | Three-phase AC 415V ± 10% 50Hz
In line with the national power quality standards |
|
Rated input current | AC 19.3A | ||
Rated input power | 13.9KVA | ||
Rated input power factor | COSΦ≥0.95 | ||
Output characteristics | Output voltage | DC 0~12V adjustable | |
Output current | DC 0~1000A adjustable | ||
Steady current precision | ≤1% | ||
Steady voltage precision | ≤1% | ||
Display accuracy | 1A,0.01V | ||
Rated output efficiency | ≥91% | ||
Insulation characteristics | Insulation resistance | Input-output: ≥ 5MΩ | |
Input-chassis: ≥ 5MΩ | |||
Output-chassis; ≥5MΩ | |||
Protection characteristics | It has self-protection function under abnormal conditions such as overvoltage, overcurrent, overload, short circuit and overheat | ||
Other characteristics | Noise | ≤75dB | |
Operating status | Continuous full load operation of the product | ||
Load grade | Grade II | ||
Insulation grade of transformer | Class B |
Liyuan will keep up with the world’s latest technology closely, and uphold the concept of providing customers with high-quality power supplies and professional integrated services.
With advanced design and rich experience in rectifier manufacturing, we will provide the best power solutions as well as the most stable and efficient power supply for users both at home and abroad.
LIYUAN rectifier is the most competitive brand in China
Company relies on strong technology research and development cooperation basis, created a number of advanced technology, in recent 3 years amounted to more than 30 to apply for a patent, which has nearly 10 patents of invention.
Equipped with the national electric power transformation and control engineering technology research center (branch), and has set up a loan enterprise academician workstation.
Strict implementation of ISO quality management system, and through the CE safety certification, has been implementing ERP management for many years, to achieve the network, systematic computer control, the formation of a standard, efficient modern management system.
Liyuan adhere to innovation and the continuous improvement of power conversion efficiency and product quality.
The increasing R&D investment every year, and cooperation with China’s well-known universities, we has established the research center of national electric power conversion and control engineering technology.
Especially the related core patents of high-power synchronous rectifier power supply, stay ahead of the whole industry in China.
The ISO 9001 quality management system has been fully implemented in Liyuan, including quality inspection of components in warehouse, production process inspection, and final product inspection.
We adopt advanced scientific quality management system and the most stringent testing methods in the whole process to ensure the stability and reliability of products.
› Packing
1)Small size rectifier packing in carton box separately.
2)Large size rectifier will be packed in wooden case.
3)We guarantee that all the packing is intact when it reaches its destination.
› Shipping
1)30-45 Days after payment.
2)Transport: DHL, FEDEX, UPS, Air shipping, Boat shipping
3)You may choose our shipping partner or your own partner.
› Maintenance
We are pleasant to share our theory and experience on equipment maintenance with users.
We are pleasant to interact with users to collect their tips and know-hows on equipment maintenance.
The module “Maintenance” here is intended to help users solve various problems they possibly encounter during equipment maintenance…
If you need other power electroplating rectifiers, we can custom design them according to customer requirements. Please contact us.
Are you looking for TBFB-1000A12V High-Frequency Switching Power Supply? Liyuan Haina Group is one of the professional manufacturers and suppliers in this field. With over 27 years of focus on R&D, design, production, sales, and technical services for industrial rectifiers, we have already exported our products to the United States, Canada, Britain, Italy, Spain, South Africa, Russia, the UAE, Japan, South Korea, Malaysia, and other parts of the world. Equipped with a productive factory, we warmly welcome you to purchase our high-quality, Made-in-China products at competitive prices or try our customized service.
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