High Security Medical PCB Printed Circuit Board / Medical Equipment PCB
Product Details:
Place of Origin: | China |
Brand Name: | xingqiang |
Certification: | ROHS, CE |
Model Number: | KAZD |
Payment & Shipping Terms:
Minimum Order Quantity: | 1 |
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Price: | NA |
Delivery Time: | 14-15 work days |
Payment Terms: | ,T/T,Western Union |
Supply Ability: | 3000㎡ |
Detail Information |
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Min. Solder Mask Clearance: | 0.1mm | Pcba Standard: | IPC-A-610E |
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Aspect Ratio: | 20:1 | Board Thinkness: | 1.2mm |
Minimum Line Space: | 3mil (0.075mm) | Surface Finishing: | HASL/OSP/ENIG |
Materila: | FR4 | Product: | Print Circuit Board |
Highlight: | High Security Medical PCB,High Security Medical Equipment PCB |
Product Description
Medical PCB
Advantages of Medicaal PCB:
- Stable working performance
- Improve the security of the equipment
- Support high-density function integration
- Enhance anti-jamming capability
- Extend the service life of equipment
product Description:
Medical PCB (Medical PCB) is a printed circuit board specially designed for medical equipment and used to carry and connect electronic components in medical equipment. They play a key role in the medical field, responsible for signal transmission, control functions, power management, and data processing. The design and manufacturing requirements of medical PCBs are very strict and must meet high reliability, stability, accuracy and performance requirements in special environments.
product Features:
- High reliability
- Precision and stability
- Anti-electromagnetic interference (EMI)
- High security
- Miniaturization and high integration
- Temperature and humidity resistance
- biocompatibility
Manufacturing process:
- Design requirements: The design of medical PCBs must comply with strict standards, especially for precision, stability, and durability. During the design process, issues as functional layout, signal integrity, and thermal management must be considered.
- Material selection: Common materials include FR4, high-frequency materials, polyimide (PI), etc., especially in devices that require high-frequency signal processing high-temperature resistance, material selection needs to be particularly cautious.
- Multilayer design and precision processing: Medical PCBs often adopt a multilayer design to accommodate high-density circuit layouts. The circuit layout on each needs to ensure good electrical isolation and signal transmission, and reduce signal interference.
- Anti-electromagnetic interference design: Since medical equipment usually operates in hospitals with complex electromagnetic environments, medical PCBs need to be designed with effective electromagnetic shielding anti-interference measures to ensure that signals are not affected by external interference.
- Reliability testing: After the medical PCB is manufactured, it undergoes strict testing and verification, including functional testing, thermal cycle testing, humidity testing, electromagnetic interference resistance testing, to ensure its long-term stability in harsh environments.
- Biocompatibility: For implantable devices, the materials used in the PCB must meet biocompatibility standards to avoid any negative impact on the human body Non-toxic, non-corrosive materials are typically used, and it is ensured that the device can operate safely for an extended period after implantation