External Enhanced Pulsation Therapy System

Embedded System and Software/Hardware Integrated Development

Integrated Hardware/Software development for embedded systems is a complex technical task that involves coordinating and seamlessly combining elements. One of the key challenges in this area is ensuring interoperability between hardware and software to meet specific application requirements. Hardware development includes circuit design, selection and integration of sensors, processors and other hardware components. At the same time, software development involves programming, development and optimization of embedded operating systems to ensure the functional integrity and performance excellence of the system. Our process of integrating hardware and software requires careful planning and collaborative work to overcome potential compatibility and performance issues, creating a comprehensive, stable, reliable, and automated embedded system to help products effectively perform various tasks.

Gas Anesthesia System (Animal)

Product Appearance Design/Mechanical Design/ Metal Parts Production/Machine Assembly/UI Planning

Gas Anesthesia System (Animal) is a key medical device that provides perfect support for safe surgical treatment of animals. Appearance design ensures that the device is visually appealing and meets modern standards for medical equipment. Mechanical design involves the structure and operation within a device to ensure its functionality and reliability. Metal parts production is the production of parts to ensure their quality and stability. The entire machine assembly process requires bringing all the components together to ensure that the equipment works together efficiently. UI usage process planning involves user interface design to ensure that the operation interface is friendly to medical staff and operators, thereby improving operation efficiency. The excellent performance of the Gas Anesthesia System (Animal) meets the needs of partners in the medical industry for high-quality equipment.

Hyper S300 螢光顯微鏡調光箱 & Controller

Injection Molding/ Metal Stamping / PCB Assembly

The Hyper S300 Fluorescence Microscope Dimmer Box & Controller is a highly professional device used for research and applications in the field of microscopy. We execute several key components including form injection molding, metal stamping and PCB assembly. Injection molding is a key process for manufacturing equipment and components. Metal stamping involves the manufacturing of metal parts to ensure the mechanical structure and stability of the equipment. At the same time, PCB assembly is a critical electronic component assembly process that ensures reliability. Through our precision design and manufacturing process, we ensure the high quality and reliability of the "Hyper S300 Fluorescence Microscope Dimmer Box & Controller" and meet the needs of our partners for high-precision equipment.

Physio-Control

Embedded System and Software/Hardware Integrated Development

The cardiopulmonary resuscitation (Physio-Control) is an innovative medical device used for cardiopulmonary resuscitation in emergency situations to save lives. We assist in integrated software and hardware development for the entire embedded system. The hardware part includes circuit design, sensors, processors, etc.. The software part involves programming, user interface design and operating system development to ensure smooth and user-friendly operation of the device. After this series of design and testing, the reliability and performance of the device are ensured. The result is a comprehensive, stable and reliable product.

Stereolithography 3D Printer

Product Appearance Design/Mechanical Design/Metal Parts Production

Stereolithography 3D Printer is an advanced technology that represents the future manufacturing trend. First of all, product appearance design is important in this technology because it determines the appearance and user experience of the printer. An attractive, modern exterior design can enhance product appeal and make it more suitable for modern office and work environments. Secondly, the mechanism design involves the internal structure and operating flow of the printer. This aspect of the design ensures that the machine's mechanical components work seamlessly together to enable high-quality printing. At the same time, metal production ensures the reliable quality of the printer's body parts and provides necessary support and protection. We also assist our partners to ensure the success of these printers in the market.

Controller of ‘Radiofrequency ablation (RFA)’

Product design/Mechanism design/Metal stamping

Controller of ‘Radiofrequency ablation (RFA)’ It is an important device for radiofrequency ablation treatment and control. We include the product design, mechanism design and metal stamping. Product design is an important part of ensuring that devices meet the needs of the medical industry. It involves appearance design, user interface and functionality to ensure that the device is easy to use and fully functional. Mechanism design involves the design of internal components and structures to ensure stability of the equipment. Metal stamping involves the production of metal plate parts. Through a series of precision products, mechanism design and metal stamping and other manufacturing processes, we ensure the reliability and optimal performance of our partners' equipment.

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