eBIPV
Global cutting-edge technology in Building
Integrated Photovoltaics (BIPV)
Winner of the Gold Medal at the 123rd
(2024) Concours Lépine International Paris
eBIPV
Global cutting-edge technology in Building
Integrated Photovoltaics (BIPV)
Winner of the Gold Medal at the 123rd
(2024) Concours Lépine International Paris
Customized eGeneral eBIPV
2025 Best SeOff-grid EnergInstallation aneBIPV Techniand SpecificaCertifications
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eBIPV
Vellers
gy Storage System
nd Maintenance
ical Principles
tions
eBIPV
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eBIPV
Customized
Customized eBIPV primarily targets
the commercial/industrial building
market, meeting the dual demands
of businesses for renewable energy
and enhanced aesthetic appeal in
architecture. Commercial/industrial BIPV needs to be customized
based on the specific design and
purpose of the building, so it is
essential to intervene during the
design phase to ensure the perfect
integration of the product. Customized eBIPV can be personalized
according to the specific needs of
clients and the characteristics of
the building, including aspects
such as size, shape, color, and
texture.
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Unlimited material expressiveness:
The same effect as various natural materials such
as stone, wood, and brick, perfectly integrating
with the appearance of the building.
Breaking through the limitations of traditional
photovoltaic applications:
Over 95% of buildings worldwide use non-glass
curtain wall designs, while traditional glass BIPV
technology is primarily limited to glass curtain
walls and windows. eBIPV products break
through this limitation, allowing for flexible
application across a wide range of architectural
styles, significantly expanding the scope of
photovoltaic technology in the building sector.
Higher (power conversion) efficiency and
lower carbon emissions:
Its power conversion efficiency is 90% higher
than that of glass BIPV with a transparency of
60%, with 54.6% more carbon reduction than
glass BIPV.
More functional customization:
In addition to power generation, eBIPV can also
be customized to meet client needs for advertising display, insulation, thermal resistance,
soundproofing, and other functions, enhancing
the overall performance and comfort of the
building.
Customized eBIPV
advantages
Commercial buildings: Customized eBIPV is
suitable for the exterior walls of various
commercial buildings with non-glass curtain
wall effects, providing renewable energy and
enhancing the corporate image.
Public facilities: Such as facade decorations
for stations, airports, sports venues, road
sides, bridge piers, and fences, offering both
decoration and green energy solutions.
Application scenarios
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Proposed eBIPV type: Marble Nile Light Yellow
Dimensions: 1260x750mm
Area: 5,670㎡
Power: 130W/㎡
Monthly electricity generation: 81,081 kwh (assuming 110
hours of standard solar irradiation per month)
Proposed eCovering type: Marble Nile Light Yellow
Dimensions: 1260x750mm+Customized
Area: 1,890㎡
Full life cycle carbon reduction: compared to natural stone,
eCoverings reduce carbon emissions by 138.7 tons of CO2e.
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Proposed eBIPV type: Marble Castol Grey
Dimensions: 1260x750mm
Area: 1,890㎡
Power: 120W/㎡
Monthly electricity generation: 24,948 kwh (assuming 110 hours of standard solar irradiation per
month)
Proposed eCovering type: Marble Castol Grey
Dimensions: 1260x750mm+Customized
Area: 1,890㎡
Full life cycle carbon reduction: compared to
natural stone, eCoverings reduce carbon emissions
by 138.7 tons of CO2e.
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Proposed eBIPV type: Marble Cloud Grey
Dimensions: 1260x750mm
Area: 2,835㎡
Power: 130W/㎡
Monthly electricity generation: 40,540 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (130 W/㎡)x(110 hours/month)x(2,835㎡)÷1000=
40,540 kwh/month
Proposed eCovering type: Marble Cloud Grey (non-sunny side
and non-standard area)
Dimensions: 1260x750mm
Area: 5,670㎡
Full life cycle carbon reduction: compared to natural stone,
eCoverings reduce carbon emissions by 416.12 tons of CO2e.
Note: In a full life cycle, 1㎡ of natural stones emit 74.41kg CO2e, 1
㎡ of eCoverings emit 1.02kg CO2e (according to international
database). Carbon Emission Reduction Formula: 416.121t CO2e
=(74.41kg/㎡-1.02kg/㎡)x5,670㎡
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Proposed eBIPV type: Marble Cloud Yellow
Dimensions: 1260x750mm
Area: 1,890㎡
Power: 130W/㎡
Monthly electricity generation: 27,027 kwh (assuming 110 hours of
standard solar irradiation per month)
Formula: (130 W/㎡)x(110 hours/month)x( 1,890㎡)÷1000= 27,027
kwh/month
Proposed eCovering type: Marble Cloud Yellow (non-sunny side and
non-standard area)
Dimensions: 1260x750mm
Area: 1,890㎡ (Includes non-standard custom specifications)
Full life cycle carbon reduction: compared to natural stone, Phomi
solutions reduce carbon emissions by 416.1 tons of CO2e.
Note: In a full life cycle, 1㎡ of natural stones emit 74.41kg CO2e, 1㎡ of
eCoverings emit 1.02kg CO2e (according to international database).
Carbon Emission Reduction Formula: 138.71t CO2e =(74.41kg/㎡
-1.02kg/㎡)x 1,890㎡
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Energy storage
battery
eBIPV power
generation
eBIPV power
generation
eBIPV power
generation
Lighting
Washing machine
Electric water heater
Charging station
eBIPV
General
The general eBIPV can be installed at
the designated locations on existing
buildings, including the exterior walls,
roofs, and fences of residential
buildings. It does not require complex
design, with standardized specifications and easy installation, making it
perfect for DIY applications.
General eBIPV can seamlessly
integrate with and maintain the
original building appearance by
matching the building materials (such
as stone, wood, or brick).
Combining various materials with
eBIPV (such as brick walls with wood/-
stone eBIPV) can create striking visual
contrasts and offer innovative architectural styles.
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General eBIPV is not only suitable for
exterior walls and roofs but also for a
wider range of architectural elements,
such as fences and balcony railings,
offering more possibilities for partial
applications on existing buildings. In
contrast, glass BIPV, restricted by its
transparent nature, is more suitable for
areas requiring natural light, such as roofs
and certain wall sections, making its
application scenarios relatively limited.
The versatility of eBIPV allows for easy
transformation of architectural styles and
DIY installation through mixing different
materials and colors, catering to diverse
aesthetic needs, while glass BIPV offers a
more singular style.
General eBIPV offers a variety of material
options, including stone, wood, and brick,
allowing it to seamlessly integrate into
various architectural styles and enhance
the overall aesthetic of the building. In
contrast, glass BIPV has a single material
manifestation, making it difficult to blend
with all architectural styles, especially in
situations where it is necessary to maintain or emphasize the original material
characteristics of the building.
General eBIPV has a simple and quick
installation process that requires no
complex design, thereby reducing installation costs and time. In contrast, glass BIPV
involves considerations of light transmittance and structural strength, making the
design and installation process relatively
complex, with longer design and construction periods and higher costs.
General eBIPV
advantages
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Proposed eBIPV type: G Snowy Brown
Dimensions:812x580mm
Area: 100 pieces
Power: 55W/piece
Monthly electricity generation: 605 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (55 W/piece)x(100 pieces)x(110
hours/month)÷1000= 605 kwh/month
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Proposed eBIPV type: G Idyllic Orange
Dimensions:812x580mm
Area: 50 pieces
Power: 55W/piece
Monthly electricity generation: 302.5 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (55 W/piece)x(50 pieces)x(110
hours/month)÷1000= 302.5 kwh/month
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Proposed eBIPV type: G Idyllic White
Dimensions:812x580mm
Area: 30 pieces
Power: 55W/piece
Monthly electricity generation: 181.5 kwh (assuming
110 hours of standard solar irradiation per month)
Formula: (55 W/piece)x( 30 pieces)x(110
hours/month)÷1000= 181.5 kwh/month
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Proposed eBIPV type: Poly Wood Yoly
Dimensions:812x580mm
Area: 60 pieces
Power: 55W/piece
Monthly electricity generation: 363 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (55 W/piece)x( 60 pieces)x(110
hours/month)÷1000= 363 kwh/month
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Proposed eBIPV type: G Idyllic Orange
Dimensions:812x580mm
Area: 60 pieces
Power: 55W/piece
Monthly electricity generation: 363 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (55 W/piece)x( 60 pieces)x(110
hours/month)÷1000= 363 kwh/month
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Proposed eBIPV type: G Idyllic Red
Dimensions:812x580mm
Area: 30 pieces
Power: 55W/piece
Monthly electricity generation: 181.5 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (55 W/piece)x( 30 pieces)x(110
hours/month)÷1000= 181.5 kwh/month
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Proposed eBIPV type: Spliced Wood Silk-mist Brown
Dimensions:812x580mm
Area: 60 pieces
Power: 55W/piece
Monthly electricity generation: 363 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (55 W/piece)x(60 pieces)x(110
hours/month)÷1000= 363 kwh/month
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Proposed eBIPV type: Spliced Wood Twilight
Mountain Gray
Dimensions:812x580mm
Area: 80 pieces
Power: 55W/piece
Monthly electricity generation: 484 kwh (assuming
110 hours of standard solar irradiation per month)
Formula: (55 W/piece)x( 80 pieces)x(110
hours/month)÷1000= 484 kwh/month
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Proposed eBIPV type: Bush Hammered Starry
Dimensions:812x580mm
Area: 30 pieces
Power: 55W/piece
Monthly electricity generation: 181.5 kwh (assuming
110 hours of standard solar irradiation per month)
Formula: (55 W/piece)x( 30 pieces)x(110
hours/month)÷1000= 181.5 kwh/month
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Proposed eBIPV type: Stone Brick Copper Rust Red
Dimensions:812x580mm
Area: 35 pieces
Power: 55W/piece
Monthly electricity generation: 211.75 kwh (assuming 110
hours of standard solar irradiation per month)
Formula: (55 W/piece)x( 35 pieces)x(110
hours/month)÷1000= 211.75 kwh/month
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eBIPV Stone Series
Customized eBIPV standard dimensions: 1260x750(mm)
Power: 90W-170W/㎡
Other dimension customizable
General eBIPV standard dimensions: 812x580(mm)
Power: 50W-60W/㎡
eBIPV Best SMarble Castol White
Marble Veil White Marble Cloud White Marble Veil Grey
Marble Andes White Marble Andes Gold Marble Cloud Yellow
Marble Andes Yellow Marble Cloud Orange Marble Cloud Grey
Marble Veil White Marble Nile Warm Grey Marble Loki Mountain Light Gray
Marble Salento Yellow
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eBIPV Wood Series
Sellers
eBIPV Brick Series
Sawtooth Wood Yoly
Stone Brick Kamu Yellow
G Idyllic White G Kata Yellow G Idyllic Yellow
G Kata White G Misted White
Stone Brick
Copper Rust Red
G Time White Stone Brick Gold Sesame
Stone Brick
Polish Concrete Wall Fog
Stone Brick Gilded Iron
Poly Wood Peach
Poly Wood Moonlight Poly Wood Sunset Yellow Poly Wood Autumn
Poly Wood Caesious Poly Wood Plain Brown
Poly Wood
Brownish Yellow
Poly Wood Orange Poly Wood Light Brown Poly Wood Dark Brown
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General eBIPV: When purchasing general eBIPV, Phomi will provide you with (extra
charge) an off-grid energy storage system, including storage batteries, controllers, and
inverters, based on your order quantity. Please consult your local Phomi Agency for the
pricing of eBIPV and the energy storage system.
Commercial eBIPV: The installation of the electrical components should proceed in
sync with the setup of the curtain wall, strictly following the electrical design drawings
and the relevant design and construction standards.
eBIPV off-grid energy
storage system
eBIPV
dry-hanging unit
Energy storage reverse
control integrated machine
DC load
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1. Cleaning: After acceptance, the frequency of cleaning should be determined based on the
level of wall contamination, with a minimum of once a year. Use hand soap mixed with tap
water, and avoid using organic solvents.
2. Curtain wall inspection and maintenance:
· A comprehensive inspection of the curtain wall should be conducted every five years, including the panels, sealing strips, and sealants.
· Tighten any loose bolts, and for corroded connectors, remove rust and repaint or replace
them.
· Loose or damaged panels should be repaired or replaced.
· Sealants and sealing strips that have fallen off or are damaged should be repaired or
replaced.
· Damaged components or connectors should be replaced or reinforced if the anchoring is
loose.
· Regularly check the drainage system, and clear any blockages.
· Any loose or damaged hardware should be replaced.
· Conduct a comprehensive inspection and repair reinforcement after natural disasters.
Installation and
Maintenance
Attach/Secure the aluminum brackets to the back
of the honeycomb panel with bolts and nuts.
Secure the aluminum rail with expansion bolts to
the solid wall. Insert the aluminum brackets of
honeycomb panel into the aluminum rail on the
solid wall, then secure the brackets to the rail
with screws (bolts and nuts).
Schematic diagram of Dry-Hanging
Washer
Expansion bolts
Dry-Hanging
interlocking channel
Honeycomb
Panel
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Aluminum Bracket
Aluminum Rail
Solid Wall
Back of Honeycomb Panel
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eBIPV specifications
econiclay adhesion agent
Customized Aluminum
Honeycomb Panel
Customized Facing
(stones, woods, bricks etc.)
integrated Solar Cell
eBIPV
ELECTRICAL SPECIFICATIONS I-V CURVES
Test Conditions STC
Maximum Power (Pmax)
Maximum Power Voltage (Vpmax)
Maximum Power Current (Ipmax)
Open Circuit Voltage (Voc)
Maximum System Voltage (VDC)
Series Fuse Rating
Power & Other Electrical Specification Tolerance
25 A
5%
85.13 ~ 166.62 W
27.25 ~ 29.22 V
3.12 ~ 5.70 A
34.48 ~ 35.52 V
Short Circuit Current (Isc) 3.49 ~ 6.17 A
Module Efficiency 9.01 ~ 17.63 %
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This invention, eBIPV, is based on precise control of the
microscopic structure of the covering material, allowing
it to guide light to propagate in specific directions while
maintaining its opaque characteristics. In practice, after
penetrating this specially structured covering material,
the light will be absorbed by the internal high-efficiency
photovoltaic materials and converted into electrical
energy. This process not only significantly improves the
energy conversion efficiency of the material but also
avoids light pollution in buildings caused by sunlight
reflection.
In addition to the unidirectional light-guiding function,
the covering material also utilizes a distinctive process to
print 3D textures and patterns on the inorganic econiclay
(zero-carbon) material. These textures and patterns not
only enhance the visual appeal of the covering material
but also integrate seamlessly with architectural design,
elevating the overall aesthetic value of the building.
eBIPV technical principles
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eBIPV has won
the International Invention Gold Medal
eBIPV successfully addresses the visual art disruption issue caused by glass BIPV,
breaking through its aesthetic limitations. eBIPV products not only provide more
efficient clean energy but also integrate various architectural decorative styles,
significantly reducing carbon emissions from buildings.
Winner of the Gold Medal at the 123rd (2024) Concours Lépine International Paris.
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Certifications
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Founded in 2008,focusing on the research, development and
production of econiclay based materials, we are committed to
providing carbon-neutral material solutions to the world. With
start-up mentality we develop up-to-date, sustainable material
solutions for new challenges of living on our planet.
Phomi is the creator of the MCM (econiclay) industry and has
been the global leader and standard setter in this filed. In
2023, it completed a technological iteration, and became the
global groundbreaker in two cutting-edge products: eBIPV and
eDisplay.
As an technical enabler, we give our material solutions and
knowledge to partners to spread it worldwide. How to benefit
the entire world with increasing application possibilities of
econiclay products, is the responsibility we assume for society
and human future.
Phomi has established manufacturing bases in multiple
locations, and its products are used in over 120 countries and
regions. Its service system covers Europe, North America, the
Middle East, Asia, and Africa.
About Phomi
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www.phomi.com I 2024-10-20
All rights reserved. Reproduction without
permission is strictly prohibited.