DESIGN NAME: Pact
PRIMARY FUNCTION: Muscle Recovery System
INSPIRATION: Inspired by Professional Trainers, the Pact System Tailors Your Massage Experience to Your Muscle Profile and Body Conditions. Its Ergonomic, Clean Design Language Devoid of Ornamentation, Separates It From Other Products on the Market. The Ergonomics of the Device Enable the User to Comfortably Reach Every Area of Their Body. Soft-touch Medical-grade Silicone Provides Grip and Comfort During Use, and Metal Components Are Finished in Machined Aluminum and Polished Stainless-steel.
UNIQUE PROPERTIES / PROJECT DESCRIPTION: Pact Is a Muscle Recovery System Consisting of Two Devices; a Muscle Scanner and a Percussive Massager.
The Pact System First Measures Your Muscles’ Condition Before Recommending an Appropriate Recovery Treatment. Using Six Sensors, Pact Sense Tracks the User’s Muscle Readiness. The Data Gathered Allows the Pact Mobile App to Generate Personalized Warm-up and Recovery Routines, Which Informs Pact Pulse to Deliver a Precise and Optimized Massage.
OPERATION / FLOW / INTERACTION: The Pact system first measures your muscles’ condition before recommending an appropriate recovery treatment. Using six sensors, Pact Sense tracks the user’s muscle readiness. The data gathered allows the Pact mobile app to generate personalized warm-up and recovery routines, which informs Pact Pulse to deliver a precise and optimized massage.
PROJECT DURATION AND LOCATION: The project started in 2017 in Boston with a product conceptualization. Technology development started in January 2018. Industrial Design was completed in June 2021, and the product was launch on Indiegogo in November 2021.
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PRODUCTION / REALIZATION TECHNOLOGY: -
SPECIFICATIONS / TECHNICAL PROPERTIES: 347mm x 266mm x 79mm
TAGS: percussive massager, active recovery, muscle scanning, smart massage, muscle recovery
RESEARCH ABSTRACT: -
CHALLENGE: -
ADDED DATE: 2022-03-07 06:09:43
TEAM MEMBERS (4) : Timothy Golnik, Chad Bean, Bridget Hunter-Jones and Craig Cheney
IMAGE CREDITS: Timothy Golnik, 2021.
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