
For medical devices such as blood pressure monitors, blood glucose meters, ventilators, and oxygen concentrators, our medical housing solution addresses pain points such as unsafe materials, poor disinfection resistance, susceptibility to impact, and compliance challenges. The housing is made of medical-compatible materials, featuring long-lasting antibacterial and anti-aging properties, no sanitation dead zones, shock resistance, and flame retardancy, all in accordance with medical industry standards. It supports customization of appearance and structure, ensuring high consistency in mass production, facilitating compliant mass production of medical devices, and enhancing product safety and durability.
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With the rapid advancement of household medical equipment towards portability, intelligence, and widespread civilian use, devices such as portable blood pressure monitors, home blood glucose meters, ventilators, and oxygen concentrators have become pivotal tools for home health monitoring and daily healthcare. Compared to regular civilian electronic products, household medical equipment operates in unique scenarios involving close human contact, frequent cleaning and disinfection, temperature and humidity fluctuations, and daily bumps and falls. These factors impose stringent medical-grade requirements on the equipment's casing, including biological safety, hygienic antibacterial properties, structural reliability, environmental resistance, and medical compliance. Our company specializes in the research, development, mold-making, and mass production of medical-grade equipment casings. Addressing the operational conditions, hygiene standards, and production challenges of household medical equipment, we have developed a highly safe, antibacterial, weather-resistant, compliant, and rapidly customizable medical casing solution. This ensures stable mass production for medical equipment manufacturers and facilitates the safe and compliant iteration and upgrading of household medical products.
Home medical equipment faces strict access regulations, and its usage scenarios are closely related to people's health. However, there are numerous technical and mass production challenges commonly encountered in the shell assembly process:
Poor environmental adaptability: In a home environment with significant fluctuations in temperature and humidity, frequent daily movement and bumping, and prolonged wiping and cleaning, ordinary civilian casings are prone to issues such as aging and whitening, cracking and deformation, paint peeling and loosening, leading to structural loosening of the device and a significant reduction in its service life.
Lack of hygienic antibacterial capability: The device is held close to the skin for long periods and comes into close contact with human skin. The surface of the ordinary shell is prone to dust accumulation and bacterial growth, and it cannot withstand repeated wiping with medical disinfectants such as 75% alcohol and quaternary ammonium salts, posing a hygienic hazard in home healthcare.
Inadequate biosafety performance: The raw materials of ordinary shells contain trace amounts of harmful leachables, which have not passed medical biocompatibility testing. Long-term human contact can easily cause skin irritation, allergies, and sensitization, failing to meet the safety standards for medical equipment.
Weak structural protection performance: Portable devices such as blood pressure monitors and blood glucose meters are often carried around and prone to falls and bumps. Ordinary casings have poor impact resistance and deformation resistance, making them prone to damage and cracking, and unable to effectively protect the internal precision circuits and core components.
The threshold for medical compliance is stringent: household medical equipment is subject to mandatory medical specifications for shell materials, including non-toxic environmental protection, flame retardant protection, weather resistance and corrosion resistance, and biological safety. Ordinary civilian shell materials and lower process standards cannot pass medical qualification certification.
High consistency requirements for mass production: Medical equipment has extremely high requirements for shell dimensional accuracy, appearance flatness, and seamless hygienic structure. Common shells have large production tolerances, high defect rates, and unstable batch quality, which directly affect the overall quality and market compliance of the entire machine.
This plan strictly adheres to relevant standards in the medical industry, focusing on six core dimensions: biocompatibility and safety, antibacterial and disinfection resistance, shock resistance and weather resistance, flame retardant protection, dust-free and hygienic structure, and medical compliance. It aims to build a fully-scenario, highly reliable dedicated technical system for the housing of household medical equipment.
Application scenarios: All types of household medical devices such as portable blood pressure monitors, home blood glucose meters, home ventilators, oxygen concentrators, home health monitoring devices, portable rehabilitation therapy devices, and home respiratory assistance modules.
Core capabilities: All series adopt medical-grade raw materials, rigorously passing medical biocompatibility tests, and possess core characteristics such as non-toxic, non-irritating, long-lasting antibacterial properties, and resistance to repeated disinfection and wiping. The shell adopts a reinforced structural design, considering drop impact resistance, wide temperature tolerance, flame retardant insulation performance, and can fully adapt to the harsh working conditions of high-frequency handheld use in household equipment, daily cleaning and disinfection, and long-term storage at home.
Scenario Advantages: It adopts an integrated, seamless, and dead-angle-free sanitary structure design, with a smooth surface that is easy to clean, effectively eliminating the problems of dirt accumulation and bacterial growth. High-precision mold production ensures tight assembly and structural stability of the entire machine. Full-process medical-grade quality control ensures strong compliance and high batch stability, fully meeting the safe usage requirements throughout the entire lifecycle of household medical equipment.
Exclusively developed for medical use, with strong adaptability to working conditions: Tailored for specific scenarios of personal use, high-frequency disinfection, and susceptibility to knocks in household medical equipment, it addresses core pain points such as shell aging, damage, and unhygienic conditions from the perspectives of material, structure, and craftsmanship.
Biosafety compliance ensures worry-free personal use: The raw materials have passed medical tests for cytotoxicity, skin irritation, and allergenicity, with no heavy metals or harmful substances leaching out. They meet human contact safety standards, completely avoiding health risks.
Fully compliant with medical standards to mitigate certification risks: The product meets the mandatory standards for flame retardancy, environmental protection, weather resistance, and antibacterial and hygienic properties, ensuring it can smoothly pass medical registration and qualification certification, thereby reducing the risk for customers in market launch.
Sterile and hygienic structure, convenient for cleaning and maintenance: The shell features no sharp edges, no grooves or gaps, and a low-roughness surface design, eliminating any hygiene dead zones. It is suitable for daily high-frequency disinfection and cleaning, ensuring long-term cleanliness and hygiene of the equipment.
Standardized medical production line ensures stable mass production delivery: Relying on a medical-grade standardized production system and rigorous quality control throughout the entire process, we ensure precise shell dimensions, flawless appearance, and high batch consistency, guaranteeing customers stable mass production delivery on a large scale.
Customized rapid iteration for adapting to new product development: Supporting personalized customization of shell appearance, structural dimensions, surface craftsmanship, color matching and silk screening, as well as functional openings, we quickly respond to customer needs for new product research and development, structural iteration, and scene adaptation.
Addressing the core issues of household medical equipment, such as easily damaged and aged casings, potential bacterial growth, and insufficient biological safety, we aim to comprehensively enhance the safety, hygiene, and durability of end devices. Leveraging a high-standard medical compliance system, we assist customers in mitigating medical certification risks and ensuring consistent quality across batches of complete machines. Through efficient, customized research and development, coupled with rapid implementation capabilities, we shorten the development cycle of new products, helping household medical products establish a competitive edge in the market based on safety, compliance, and high quality.
Amidst the industry trend of universal penetration of household medical equipment and continuous upgrading of quality standards, biosecurity, hygiene and antibacterial properties, and structural reliability of the housing are the core cornerstones of household medical equipment quality. Relying on our mature medical housing technology accumulation, comprehensive reliability verification system, strict mass production quality control capabilities, and flexible customized services, our company provides customers with high-safety, high-compliance, and cost-effective overall solutions for household medical housing, fully assisting in the safe launch, rapid iteration, and large-scale production of household medical products.
Products involved in this solution

BP800A
BP800A|ABS Injection Molding|Fully Automatic for Home Use|Class II Medical Device

GL-50
GL-50|ABS|High-temperature injection molding|Snap-on upper and lower split shell|Mini and portable|Type II

BG-200
BG-200|ABS engineering plastic|high-temperature melting|snap-on top and bottom split design|Type II

GLW-01
GLW-01|ABS+PC composite engineering plastic|high-temperature melting|snap-on split type|portable household use|Class II

VUN-001 / VUN-002
Medical-grade ventilation equipment | Class II medical device | Resistant to drop and shock | Suitable for household use