Blog

Medical Device Injector

Our Client was developing a compact, portable, and battery operated anaesthetic injector for post-operative pain management, and engaged Boost Design to develop all of the electronics, firmware, and clinician software for the device. Boost Design conducted the following activities: Review of product requirements and design of product architecture R&D into options for device minaturisation Development […]

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Sports Wearable

In this project the Client wanted to integrate smart electronic sensing into their own (non-electronic) sports products. Boost Design was engaged to research the viability of the project, technology, size and power requirements, analyse competing products, and develop the product for manufacturing. Boost Design performed the following tasks: Located and reviewed white papers and peer-reviewed […]

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Ultrasound Array Medical Device

Our client had been developing technology based on a phased ultrasound transducer arrays for a medical treatment application, and required a proof-of-concept device in order to continue with their research. This project included the following activities: Research and development of the technology, with a view to developing a working and efficacious transducer head Evaluated numerous […]

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Diagnostics Control System

Our client was developing a laboratory diagnostics device and required assistance with the development of the sample control system. The intent was to upgrade an existing product with new features, and as such the electronic control system was required to fit within a defined space with appropriate mechanical, electrical and software interfaces. Boost Design completed […]

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IoT Touchscreen Controller

As part of a Client’s new product innovation plan, the client aimed to develop a wireless touchscreen controller for their growing range of laboratory products. Boost Design was engaged and performed the following activities: Research and present options for the Bluetooth Controller processor mainboards that would be powerful enough to run the Client’s Windows-based controller […]

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Laryngoscope Research & Development

This startup company was developing a novel Laryngoscope device incorporating new endotracheal intubation technology that is safer, quicker, and easier to deploy. As part of their product development, the Client engaged Boost Design to complete the following activities: Researching competing laryngoscope products, and recommending a range of design requirements for key product features Determining methodologies […]

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IoT Medical Monitor

The client wished to develop an IoT product for monitoring the status of a wide range of medical devices placed in the field. This would ensure that medical devices with faults could be automatically identified, and that operational medical devices could be easily located by users with a companion smartphone App. Boost Design performed the […]

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Elite Sports Sensor System

High-performance sensor electronics were designed from scratch for the purposes of detecting and classifying the human motion of elite athletes. This product was to be used as a research platform for algorithm development and testing. Project activities included: Determination of needs, and development of project scope and product requirements Development of experimental techniques for quantitative […]

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Radiology Medical Device

Breathe Well is a Class I device designed to assist cancer radiation patients better control their breathing in order to achieve improved treatment. Key activities undertaken by Boost Design include: Review of regulatory strategy and existing TGA/FDA documentation prior to submission Translation of product features into testable requirements Development of basic verification and validation test […]

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IoT Consumable Tracking System

As part of a larger project, Boost Design was engaged to develop a system to track the use of re-usable consumables in a laboratory device. The system required miniaturised electronics to be attached to each consumable, suitable for high volume production at low price. The system needed the capability for each consumable to be individually […]

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