Amir Omidvar
Amir Omidvar
President -
(23)
5
Pocket Clinic Corp.
Pocket Clinic Corp.
Toronto, Ontario, Canada

Secure Communication Protocols for Medical Devices

Pocket Clinic Corp. is seeking to enhance the security of its medical devices by developing robust cybersecurity protocols. The primary goal of this project is to ensure secure communication between the medical device, its mobile app, and the cloud. This involves defining security measures for the device, establishing a cybersecurity protocol for Bluetooth communication between the app and the device, and creating a protocol for secure data transmission from the mobile app to the cloud. The project will provide learners with an opportunity to apply their knowledge of cybersecurity and network protocols in a practical setting. By focusing on these specific areas, the project aims to protect sensitive medical data from unauthorized access and ensure patient privacy. The project is designed to be completed by a team of learners allowing them to gain hands-on experience in the field of medical device security.

Matches 1
Category Cloud technologies
Open
Pocket Clinic Corp.
Pocket Clinic Corp.
Toronto, Ontario, Canada

Electrical Circuit Design for a Medical Device

Main Goal for the Project: The main goal of this project is to develop and refine the hardware and software components of the Pocket Clinic smart injector, ensuring it meets all functional and regulatory requirements. Problem Learners Will Be Solving: Learners will address the challenge of designing and coding the electronic boards for the smart injector. This involves creating schematics, selecting appropriate components, designing the PCB, and developing the firmware to ensure seamless operation of the device. Expected Outcome by the End of the Project: By the end of the project, learners are expected to achieve the following outcomes: Hardware Development: Design electronic boards that meet the specific requirements of the Pocket Clinic smart injector. Create detailed schematics and select the appropriate components for optimal performance. Successfully design and fabricate the printed circuit boards (PCBs). Software Development: Develop and debug firmware to ensure the smart injector operates efficiently and accurately. Implement coding solutions that enhance the functionality and reliability of the device. Ensure seamless integration between the hardware and software components for optimal performance. Overall, learners will gain comprehensive experience in both hardware and software aspects of medical device development, contributing to the successful creation of the Pocket Clinic smart injector.

Matches 3
Category Software development + 3
Open