Zung Fu Automotive
RETAIL EXPERIENCE INNOVATION
Exceptional premium mobility products deserve an innovative service experience. For Zung Fu Greater China, we created and developed a connected mobility program for new drivers by creating a platform and smart device key by connecting consumers to premium Hong Kong experiences and the world of mobility as a whole.
My role was to help craft the experience design, including a full design and build of the hardware physical prototype and a detailed mapping of the user journey.
AGENCY Ogilvy – YEAR 2019 – DURATION 3 MONTHS – LOCATION HONG KONG
TEAM Vivi Fitriani - UIUX Design Lead, Debbie Fung - UI Lead, Shelin Mei - Strategy Lead, Manolis Perrakis - Tech Lead
ROLE INDUSTRIAL DESIGN, USER RESEARCH
CONCEPT
A key to more than a car.
Challenge
BRAND TRANSFORMATION:
We helped Zung Fu transform from a distributor label to a new operating business that directly creates pull with consumers around mobility as a whole.
Insight
OPPORTUNITIES:
There is a lull in the car buying process between POS and the time you receive your car.
In a city where owning a car is a non-necessary luxury, Zung Fu customers are individuals who are motivated by prestige.
Solution
OMNI-CHANNEL EXPERIENCE STRATEGY:
A branded, persona-driven O2O membership experience.
A smart key fob that opens new doors beyond your new car. A digital platform that provides total transparency and access to tailored content and member experiences.
PROCESS
DISCOVERY
From motors to mobility.
Key Omni Channel Strategy Mission Statements
How may we build brand through
digital experiences?
How may we build
content, community and loyalty?
How can we enhance
reputation and credibility?
UX + UI
Premium digital.
DESIGN & BUILD
A fully functional prototype.
This was my key contribution to this highly collaborative project.
DESIGN METHODOLOGIES
product research – formal exploration – concept sketching – design development – 3D modeling (Fusion 360) – 3D rendering (Blender) – rapid prototyping – lo-fi prototypes – materials research – hardware design