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High-Performance Microwave Communication Ceramic Gold-Plated Plates - Leading China Suppliers & Factory
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High-Performance Microwave Communication Ceramic Gold-Plated Plates - Leading China Suppliers & Factory

As a leading supplier and factory in China, we specialize in the manufacturing of thick film circuits and sensors. With years of technological accumulation, we are your trusted expert in delivering high-quality products that meet industry standards. Our commitment to innovation and excellence ensures that our clients receive the best solutions for their needs. Choose us for reliable and efficient manufacturing services in the thick film circuit and sensor market
  • Customized Provide customized services
  • Surface treatment Support surface treatment processes such as nickel palladium plating, sputtered copper, electroplated copper, etc
  • Operating Temperature -55℃~850℃
  • Thermal conductivity Aluminum oxide 24-28W/(m · K), aluminum nitride 170-230W/m · K

Advantages

Five advantages to provide you with a good user experience.

Multiple product certifications

Multiple product certifications

Exquisite craftsmanship

Exquisite craftsmanship

Lightweight

Lightweight

Small size

Small size

Long service life

Long service life

Feature

Surface gold plating treatment can enhance oxidation resistance and conductivity, and has strong corrosion resistance.
Increase the reliability of solder joints and apply gold wire bonding technology.
Crafted with ingenuity, the choice of quality.

Product scope of application

Microwave communication ceramic gold-plated board refers to a high-frequency circuit substrate made of microwave ceramic materials. It is usually made by precision machining high-performance ceramic substrates such as alumina and aluminum nitride, and depositing a layer of high-purity gold on their surface through processes such as sputtering and electroplating. Microwave ceramic materials have excellent characteristics such as high dielectric constant, high quality factor, and good temperature stability, and are therefore widely used in high-frequency circuit fields such as microwave communication, radar, satellite communication, and antennas. The dielectric constant of microwave ceramic substrates is usually between 5 and 15, with a quality factor between 10000 and 100000. They have low dielectric loss and good frequency stability, making them suitable for the production of high-frequency circuits. As a key core material in the field of microwave and radio frequency, it is necessary to strictly control parameters such as plating solution composition and current density to ensure uniform coating thickness and avoid increased signal transmission loss. Especially in the aerospace industry, which is sensitive to material weight, it is necessary to optimize the thickness of the gold plating layer to reduce the overall weight.

Product parameter

Product name Microwave communication ceramic gold-plated plate
Customized Provide customized services
Functional materials High pressure resistant materials such as 99 alumina, aluminum nitride, beryllium oxide, etc
Surface treatment Support surface treatment processes such as nickel palladium plating, sputtered copper, electroplated copper, etc
Operating Temperature -55℃~850℃
Thermal conductivity Aluminum oxide 24-28W/(m · K), aluminum nitride 170-230W/m · K
Storage conditions Temperature 5 ℃~35 ℃, relative humidity ≤ 75% RH

Application Cases

Microwave devices

Used to manufacture high-frequency components such as filters and couplers, improving signal transmission efficiency and stability.

5G base station

It can achieve low loss transmission of millimeter wave signals and reduce base station energy consumption.

Aerospace

Due to the high temperature stability and radiation resistance of gold plating, it is used in key electronic components such as satellite communication and navigation systems.

New energy vehicles

The power semiconductor module adopts a gold-plated ceramic substrate, optimizing the heat dissipation performance of IGBT and SiC modules, and improving the efficiency of the electronic control system.

With the rapid development of modern communication technology, the special requirements for the use of communication equipment have led to increasingly high demands for the weight and size of communication system equipment, especially for the miniaturization, lightweight, high-frequency, and low-power requirements of filters in mobile communication systems. The application of microwave communication ceramic gold-plated plates in high-tech industries is becoming increasingly widespread.
镀金板应用图片

Frequently Asked Questions

QWhat materials are used in these microwave communication ceramic boards?

We utilize high pressure resistant, high-performance ceramic substrates such as 99% alumina (aluminum oxide), aluminum nitride, and beryllium oxide to ensure optimal thermal conductivity and dielectric properties.

QWhat is the operating temperature range of the ceramic gold-plated plates?

Our ceramic gold-plated plates are engineered to withstand extreme environmental conditions, operating reliably within a temperature range of -55℃ to 850℃.

QCan I request custom specifications for my application?

Yes, we provide fully customized services to meet your specific dimensions, material requirements, and surface treatment preferences for microwave communication projects.

QWhat surface treatment processes do you support?

We support multiple surface treatment processes including nickel palladium plating, sputtered copper, and electroplated copper, in addition to our high-purity gold plating.

QHow does gold plating improve high-frequency circuit performance?

Surface gold plating enhances conductivity and oxidation resistance while providing strong corrosion resistance. It also increases the reliability of solder joints and supports advanced gold wire bonding technology.

QWhat are the storage guidelines for these ceramic plates?

To maintain optimal quality and prevent degradation, the plates should be stored in a controlled environment with a temperature of 5℃ to 35℃ and a relative humidity of ≤ 75% RH.