About Us
Suzhou Heaten Machinery Industry Co., Ltd.
Founded in 2012, Suzhou Heaten is a professional metal mold design & fabrication supplier and precision part manufacturer. Heaten’s products are widely used in automotive, consumer electronics, medical and others. We focus on deep drawing, precision metal mold design and product manufacturing.
Suzhou Heaten Machinery Industry Co.,Ltd. is China Wholesale 5G communication control housing Suppliers and 5G communication control housing Factory. We have rich experience in stainless steel, aluminum, copper, iron and other materials. Our equipment includes: 30 sets of stamping precision processing equipment (110T-1000T punch press), 20 sets of mold manufacturing equipment (wire cutting machine, processing center, water mill, precision grinding, etc.) and inspection and testing equipment (hexcon coordinate, 2.5 dimensional, salt spray testing machine, etc.).
We are certified by IATF16949, ISO9001 and ISO14001. We carry out "Service, Quality" concept and people-oriented principle to meet the needs of customers.
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READ MOREMaterial selection for 5G communication control housings is critical to ensuring device performance, durability, and safety. Here are some common selection criteria and considerations:
1. Thermal Conductivity
Since 5G communication equipment usually needs to run at high load for a long time, the heat generated is large. Therefore, the material of the housing needs to have good thermal conductivity to effectively dissipate heat and avoid overheating of the equipment.
Aluminum alloy: Aluminum alloy is a common material for 5G communication control housings because of its good thermal conductivity, light weight, and corrosion resistance. It is often used in equipment housings that require strong heat dissipation.
Copper: Although the cost is higher, copper has superior thermal conductivity and can be used for equipment with higher heat dissipation requirements.
2. Corrosion Resistance
5G communication control housings are usually exposed to various environmental conditions, including high humidity and large temperature differences, so corrosion resistance is a very important consideration.
Stainless steel: Stainless steel has strong corrosion resistance and is particularly suitable for harsh environments, such as coastal areas or places with heavy industrial pollution.
Coated aluminum alloy: Through special coating or anodizing treatment, aluminum alloy can improve corrosion resistance and extend the service life of the shell.
3. Strength and Durability
5G communication equipment often needs to work under high pressure, vibration or other extreme environments. Therefore, the strength and durability of the shell must be able to withstand these physical pressures and protect the sensitive electronic components inside.
Aluminum alloy and magnesium alloy: These two materials have high specific strength and can provide good strength and impact resistance without adding too much weight.
Plastic (such as PC, ABS): Although plastic has low strength, it can achieve sufficient strength through design improvement and material modification, and they usually have low cost and good processability.
4. Electromagnetic Shielding
In 5G communication equipment, electromagnetic interference (EMI) is an important issue, so the control shell needs to have a certain electromagnetic shielding capability to prevent external electromagnetic interference from affecting the normal operation of the equipment.
Metal materials: Metal materials such as aluminum alloy and stainless steel have natural electromagnetic shielding capabilities and can effectively prevent electromagnetic interference (EMI).
Composite materials: Some new composite materials (such as aluminum-plastic composite materials) can simultaneously meet the requirements of heat dissipation, electromagnetic shielding and weight, and become an innovative choice for the housing of modern communication equipment.
5. Weight
5G communication equipment needs to maintain a certain degree of mobility and convenience, especially in the application of base stations or small devices, the weight of the housing is also an important consideration.
Aluminum alloy: Aluminum alloy materials are lightweight and are very suitable for 5G communication control housings that need to reduce the weight of equipment.
Plastic materials: Plastics (such as ABS, PC) are light and easy to process, and are suitable for some housings with low strength requirements.
6. Workability and cost
The housing material needs to have a certain degree of workability to meet complex design requirements while controlling production costs.
Aluminum alloy: Aluminum alloy can be processed by precision casting, extrusion, etc., and is suitable for making housings of various complex shapes.
Plastics (such as ABS, PC): Plastics are easy to form, injection molded or 3D printed, so the cost is low and suitable for mass production.
7. Ingress Protection (IP Rating)
The control housing of 5G communication equipment needs to have a certain ingress protection level to ensure waterproof, dustproof and explosion-proof functions. Depending on the use environment, the housing material needs to meet the corresponding IP level requirements.
Metal housing: such as aluminum alloy and stainless steel, usually provide a higher level of protection and are suitable for environments that require higher protection.
Plastic housing: Although the protection performance of plastic itself is low, its IP protection level can be improved by adding sealing strips and adopting special designs.
8. Eco-friendliness and Recyclability
In today's increasingly stringent environmental protection requirements, choosing environmentally friendly materials and improving recyclability are also important considerations.
Aluminum alloy: Aluminum materials not only have high strength and corrosion resistance, but can also be recycled and reused, meeting environmental protection requirements.
Plastic (such as ABS, PC): Some plastic materials also have good recycling performance and meet the requirements of sustainable development.