Substrat d'oxyde de béryllium

GORGEOUS is a leading international ceramic supplier, specializing in providing customers with beryllium oxide substrate products and customized solutions for the manufacturing of high-power semiconductor devices and microwave and radio frequency devices.

High-Quality BeO Substrate

GORGEOUS offers high-purity beryllium oxide substrates (BeO substrates), as well as thin-film and thick-film metallized ceramic substrates.

Avantages du produit :

Excellent thermal conductivity ensures excellent heat dissipation in high-power electronic applications.

High dielectric strength and insulation properties provide both electrical insulation and excellent thermal management.

Low dielectric constant and low dielectric loss make them suitable for high-frequency and microwave devices.

High dimensional stability minimizes warping, bending, or deformation.

Leading Global Manufacturer of Beryllium Oxide Substrate

 

GORGEOUS has over 15 years of expertise in high-performance ceramic substrate manufacturing, specializing in the manufacture and supply of beryllium oxide substrates.

Nos lignes de production et nos équipements de test de pointe garantissent que chaque substrat produit répond aux normes les plus élevées de précision, de fiabilité et de performance thermique. Du traitement de la matière première à l'inspection finale, chaque étape est soumise à un contrôle qualité rigoureux.

Notre équipe d'ingénieurs expérimentés fournit un support de conception personnalisé et des conseils techniques, aidant les clients à optimiser leurs solutions pour améliorer les performances et la rentabilité.

Avec GORGEOUS, vous gagnez non seulement un fournisseur, mais aussi un partenaire de fabrication de confiance capable d'une production à grande échelle et de livraisons rapides.

 

 

Beryllium Oxide Substrate Product Gallery

Basic Specifications of Beryllium Oxide Substrate

Épaisseur ≥0.254mm
Roughness (Ra) 0.05-0.1μm(polishing)
Conductivité thermique 200-310W/mK
constante diélectrique 6.5-7.3@1MHZ

 

 

 

 

Beryllium Oxide Substrate Applications

High-Power Semiconductor Device Packaging

Beryllium oxide substrates can be used as substrates for devices such as power transistors, IGBTs, and MOSFETs.
Because BeO has a thermal conductivity close to that of copper (200–260 W/m·K), it can quickly dissipate heat and ensure stable device operation at high power levels.

Microwave and RF Devices

Beryllium oxide substrates can be used in radar systems, satellite communications, and 5G RF modules.
BeO's low dielectric constant and low dielectric loss can reduce energy loss in high-frequency signals and improve transmission efficiency.

Optoelectronics and Laser Devices

Beryllium oxide substrates can be used as heat sinks for laser diodes (LDs), high-brightness LEDs, and infrared lasers.
Due to its high thermal conductivity and electrical insulation properties, beryllium oxide substrates ensure stable, long-term operation of optoelectronic devices at high power levels.

Aerospace and Military Electronics

BeO substrates can be used in missile radar systems, aerospace communications equipment, and high-energy weapon electronic modules.
BeO also maintains reliable performance in extreme environments such as high temperatures and strong radiation.

Dispositifs médicaux

Beryllium oxide substrates can be used in X-ray tubes, medical lasers, and radiotherapy equipment.
BeO's high thermal conductivity and insulation properties ensure the safe operation of medical electronic components under high voltage and high power conditions.

Êtes-vous inquiet au sujet du MOQ ?

Our BeO substrates offer a special minimum order quantity (MOQ) of one piece to meet small order needs. Experience our service now.

Pourquoi choisir GORGEOUS ?

At GORGEOUS, quality control is our top priority. Every beryllium oxide substrate is manufactured to our customers’ exacting specifications and undergoes extensive inspection and testing, from raw materials to finished product, to ensure consistent performance and reliable quality.

Notre usine est certifiée IATF 16949:2016 pour l'industrie automobile et ISO 9001:2015 pour les systèmes internationaux de management de la qualité. Cela démontre non seulement notre engagement envers la qualité, mais garantit également que nous pouvons fournir à nos clients des solutions personnalisées répondant aux normes les plus élevées.

Nos réussites en matière de passeports Témoignages

We are developing the next generation of high-power RF modules, which place extreme demands on the thermal conductivity and dielectric properties of ceramic substrates. The BeO substrate samples provided by GORGEOUS fully meet our theoretical design values.

Article de témoignage

James Walker

Technical Director

GORGEOUS demonstrated amazing flexibility and quick response when handling our orders, and the beryllium oxide substrates offered a very competitive price/performance ratio.

Article de témoignage

David

Purchasing Manager

In terms of price and absolute quality reliability, GORGEOUS has done impeccable.

Article de témoignage

Christopher Johnson

Grossiste

FAQ

Can beryllium oxide ceramic substrates be customized for specific applications?

Yes, beryllium oxide ceramic substrates can be produced in a standardized manner. GORGEOUS also utilizes its expertise to provide in-depth customization based on customer needs, including size, shape, thickness, surface treatment, metallization, and structural design.

What are the manufacturing methods of beryllium oxide ceramic substrates?

There are many methods for manufacturing beryllium oxide ceramic substrates, including dry pressing, isostatic pressing, injection molding, tape casting, and hot pressing. Different processes address different application requirements.

What are the advantages of using beryllium oxide ceramic substrates?

The advantages of beryllium oxide ceramic substrates are mainly reflected in thermal conductivity, electrical insulation, high temperature resistance and other aspects. They are widely used in applications with extremely high requirements for thermal management and stability.