Skip to main navigation Skip to main content Skip to page footer

Organic Solarfilm

Discover ASCA® projects

Projects with unlimited possibilities

ASCA® projects demonstrate the versatility of organic photovoltaics (OPV). In architecture, we combine aesthetic design with sustainable energy generation, from elegant façades to innovative glass roofs.

In mobility, we advance the energy transition by powering vehicles and infrastructures. Our smart solutions turn everyday objects into energy sources, opening up new possibilities.

Get inspired and discover how ASCA® is shaping a sustainable future.

Architecture
FlectoLine PV-Façade

Bio-inspired, pneumatically activated façade system with custom-designed organic photovoltaics

Explore project

Architecture
Solaroase

Mobile architecture where design, technology, and sustainability merge into a harmonious overall concept.

Explore project

Architecture
Solar Loops

Visionary lightweight structure that unites architecture, energy, and lightness in a fluid spatial form. 

Explore project

Architecture
BOOSTER: BAPV Façade Demonstrator

Façade system with integrated organic photovoltaics for retrofit building integration

Explore project

Architecture Mobility
Solar Raft

Organic solar elements from ASCA supply the “Wohlenfloß” with energy for lighting, charging functions, and onboard electronics.

Explore project

Architecture
BIPV Media Façade

100% autonomous media façade thanks to integrated solar solutions

Explore project

Smart Products
A self-sufficient solar lamp

This designer lamp provides up to 35 hours of light with just 6 hours of sunlight, all year round.

Explore project

Architecture
OPV sail

ASCA has developed a unique energy-generating sunshade in the shape of the African continent.

Explore project

Architecture
OPV glass facade

This BIPV facade makes it possible to energize a previously unused surface.

Explore project

Architecture
Printed OPV solar umbrellas

For the Thuringian Climate Pavilion, ASCA provided an architecturally integrated photovoltaic solution.

Explore project

Architecture
OPV Solartree®

The energy is stored in an internal power bank. Mobile devices can be charged via the USB port located in the trunk.

Explore project

Architecture
Solar Spline

300 printed organic photovoltaic modules are integrated into a seemingly floating ultralight structure.

Explore project

Architecture
Solar Trees at EXPO 2015

Economical use of space combined with modern architecture: The EXPO 2015 solar trees have been replanted.

Explore project

Architecture
ETFE Façade Concept

An aesthetically and technically high-quality solution for an energy-efficient membrane façade

Explore project

Architecture
Self-tending vertical garden

A visually appealing combination of a green facade and printed organic photovoltaics (OPV) by ASCA

Explore project

Architecture
OPV facade concept

The facade concept combines the technologies OPV (organic photovoltaics) and OLED (organic light-emitting diodes)

Explore project

Mobility
ASCA enters the world of solar sailing!

ASCA has developed a sail made entirely of flexible solar film

Explore project

Architecture
First thermal insulation composite system

ASCA modules integrated in a composite thermal insulation system

Explore project

Mobility
ASCA SunGo Roll

Ultra-light, compact and rollable: This solar charger concept is the answer to your mobility needs.

Explore project

Architecture
Smart solar bench

Transparent ASCA® modules generate electricity, which is stored in a battery, providing 100% autonomous furniture.

Explore project

Smart Products
Autonomous sensors

The electronic system is connected to a network of sensors, which is fully powered by ASCA® modules.

Explore project

Smart Products
Autonomous display

The low energy screen is powered by an ASCA® organic photovoltaic (OPV) module.

Explore project

Architecture
Energy-generating glass balustrades

Glass balustrades with customized and semi-transparent green ASCA® solar modules (OPV)

Explore project

Smart Products
Connected clothing

The flexible and lotus-shaped organic photovoltaic film ASCA® enables power supply.

Explore project

Architecture
Solar roof - Expo 2020

An energy-autonomous biotope for the Dutch Pavilion at Expo 2020 in Dubai

Explore project

Smart Products
Ra, a solar artwork

Ra is a solar artwork by solar designer Marjan van Aubel, which introduces solar energy into everyday life through objects.

Explore project

Architecture
A design solar tree

Solar tree from ASCA supplies e-bike stations with environmentally friendly energy

Explore project

Architecture
A solar wall by ASCA®

In addition to recharging nearby electric bicycles, this solar wall also powers a backlight after dark.

Explore project

Architecture
Solar Decathlon Europe

Developing a sustainable energy solution for a modular extension project

Explore project

Smart Products
Eco-designed clock

In collaboration with BODET TIME, a clock has been developed that is powered by two ASCA® solar modules.

Explore project

Architecture
Solar greenhouse

A design solar greenhouse that extends plant growth during the night

Explore project

Smart Products
Suntex, a solar textile

Suntex combines the properties of textiles with the energy harvesting potential of ASCA® solutions.

Explore project

Smart Products
Connected solar clothing

The solar modules, in various shapes, are integrated into clothing and accessories to create unique creations.

Explore project

Architecture
BIPV glass façade of an administrative building

Building-integrated photovoltaics: Integration of solar modules into large composite glass panes

Explore project

Smart Products
On Aura Tout Tu

ASCA® modules have been integrated into the Sunlightpower collection of the Parisian haute couture house 'On Aura Tout Vu'.

Explore project

Smart Products
100% autonomous computer keyboard

ASCA® has designed an autonomous computer keyboard that is fully powered by solar energy.

Explore project

Architecture
The Solar Poplar

This series of urban furniture aims to revolutionize the way renewable energy is generated at the local level.

Explore project