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HYBRID PV T COOLING · 600 W BIFACIAL

Cool the panel.
Keep the heat.

A cooling package for 600 W bifacial arrays

that sprays the glass clean and cool, draws heat off the back through a finned copper exchanger, and sends that heat where your facility can use it.

Hybrid PV cooling system
600 W bifacial hybrid PV cooling
14.7 °C
up to this much cooler per panel in field pilot1
8.6%
up to this much DC voltage gain per panel1
5,420
BTU/hr of heat per panel at peak sun, field-measured1
25–40 W
blower draw for a 6 kW zone2
WHERE IT FITS

Built for hot, dusty sites.

Warehouses · agriculture · greenhouses · C&I rooftops · heat-pump facilities

01

FRONT
Spray and self-clean

A timed spray (2 min on, 4 off) cools the glass and washes off dust, worth about 1% more yield with no manual cleaning.

02

REAR
Finned copper HX

A copper heat spreader bonded to the back carries heat into copper fins, where zone airflow sweeps it away.

03

AIR
Smart zone blower

One variable-speed EC blower draws air behind 10 modules and runs only when the watts it recovers beat the watts it uses.

04

HEAT
Deliver or exhaust

A diverter feeds warm air to make-up air, shop heat, drying or a heat-pump coil, and vents it outdoors when not needed.

CLIMATE SCREENING

Up to, by location · per 100 panels3

Site Cooling h/yr Extra kWh/yr Heat MMBtu/yr
Riyadh, Saudi Arabia 1,660 2,300 (+2.1%) 901
Karachi, Pakistan 1,500 2,000 (+2.1%) 816
Phoenix, Arizona 1,510 2,000 (+2.0%) 816
Houston, Texas 900 1,300 (+1.5%) 491
San Diego, California 710 1,100 (+1.2%) 386
Indianapolis, Indiana 490 700 (+0.9%) 263
Toronto, Ontario 290 400 (+0.6%) 154
Syracuse, New York 260 380 (+0.6%) 140
Pilot1: panel 57.0 → 42.3 °C; up to 8.6% DC voltage gain.
SYSTEM OVERVIEW

Hybrid cooling in action.

Hybrid PV cooling system overview
ZONE SPECIFICATION

Designed around a 6.0 kWdc zone.

A compact zone architecture combines bifacial PV cooling, rear heat recovery and variable-speed airflow.

Module
600 W TOPCon bifacial
Eff. / bifaciality
23.3% / 80% ±5%
Temp. coefficient
−0.29 %/°C
Modules per zone
10 (6.0 kWdc)
Airflow
300–600 CFM
EC blower
25–40 W
Rear clearance
150–200 mm
Rear HX
Finned copper
THERMAL VALUE

The heat is the business case.

Best fit: sites that buy electric heat or run heat pumps. 100-panel illustration at measured heat2.

542,000
BTU/hr peak heat from 100 panels
≈$23,800
a year when displacing electric heat
≈$6,800
a year when displacing natural gas
New solar may qualify for the §48E credit if placed in service by the end of 2027. Confirm with your tax adviser.

Modern Thermal Design

Hybrid PV cooling and thermal energy recovery.

317-505-9200
modernthermaldesign.com

1 Field pilot by Modern Thermal Design Pakistan Office and R&D, 625 W-class module, front spray plus copper HX. 2 5,420 BTU/hr per panel, 1,000 full-sun h/yr, $0.15/kWh or $10/MMBtu gas at 80% efficiency. 3 Climate-normal screening model, net of blower energy, before spray-pump energy; heat is an upper bound. Sites modeled from GPS coordinates. Illustrative, not guaranteed. U.S. patent pending.