LITERATURE / TECHNICAL INFORMATION
PODLOGIC · DATA CENTER COOLING
The platform that optimizes cooling across all rack densities.
Cool individual racks at exactly the capacity they need, from low-density air cooling to data center liquid cooling. One platform, four cooling technologies, one interface, so you never over-cool the room or get caught short as density climbs.
THE PROBLEM
What is the right cooling solution for a data center with rising rack densities?
Four pressures are closing in on critical-facilities teams at the same time.
01
Rack densification
Rack densities are rising faster than the cooling that it was designed for them.
02
Variable cooling
demands
IT Loads fluctuate from rack to rack and hour by hour. Fixed cooling systems cannot adapt to these dynamic changes
03
Unknown future
requirements
You have to plan for densities
you cannot yet predict.
04
Lower PUE targets
Efficiency goals keep
tightening while heat loads
keep rising.
The usual answer is to bet on one cooling approach, or rip out what you have and start over.
Both leave you exposed.
ONE PLATFORM, NOT ONE PRODUCT
Cooling at each rack, exactly when and
where it is needed.
PodLogic responds to server load as it swings, and cools pods where racks of different densities sit side by side. You match the right cooling to each rack, not the whole room to its hottest rack.
PodLogic is an intelligent thermal management platform that unifies the control and monitoring of multiple cooling technologies within a single pod. The PodLogic controller integrates across multiple cooling technologies at the pod level, in one interface. It is technology-agnostic, and it works inside the facility you already have, with no rip-and-replace.
ENERGY EFFICIENCY
SCALABILITY
SPACE OPTIMIZATION
CONFIGURABLE PLATFORM
THE COOLING CONTINUUM
The right cooling for every rack, from air to liquid
How much cooling does each PodLogic product deliver? Match the technology to the density, and step a rack up the continuum as its load climbs.
One platform spans the whole density continuum, a marketed range of 25, 40, 65, and 800 kW per rack. Capacities are shown as maximums.
PRODUCT
TECHNOLOGY
CAPACITY / RACK
BEST FIT
UFRC
Underfloor rack cooling (air)
UP TO 25 kW
Low to mid-density air-cooled racks
IRC
In-row chilled-water cooling
UP TO 40 kW
Hot or cold aisle containment
RDHx
Rear-door heat exchanger
UP TO 65 kW
High density air-cooled racks
CDU
Coolant distribution unit (direct-to-chip liquid cooling)
UP TO 800 kW
Highest-density HPC and GPU racks
FOUR TECHNOLOGIES, ONE CONTROLLER
The PodLogic product line
Each technology stands on its own and integrates with the PodLogic Controller.
UFRC
UP TO 25 kW
UNDERFLOOR RACK COOLING · AIR
UFRC replaces fan wall system and CRAH units with local modular cooling under each rack, virtually linked for pod-level control, modulating cold air exactly to match rack demand.
STANDOUT SPECS
Under-rack placement · pod-level virtual linking · no raised-floor plenum required.
Integrates with the PodLogic Controller · UFRC product page
UP TO 40 kW
IRC
IN-ROW CHILLED-WATER COOLING
Add close-coupled cooling to mid-density rows without re-architecting the hall. IRC sits in the row for hot or cold aisle containment, close-coupled to the racks it serves.
STANDOUT SPECS
Integrated fans move exhaust from the hot aisle · cold air delivered into containment · scales with the PodLogic platform.
Integrates with the PodLogic Controller · IRC product page
RDHx
UP TO 65 kW
REAR-DOOR HEAT EXCHANGER
Deliver localized and energy-efficient cooling in data centers. Designed for HPC and warm-water cooling, it allows free cooling under certain ambient temperatures.
STANDOUT SPECS
Complete rear-door retrofit for existing racks · chilled water heat exchanger cools exhaust before room return.
Integrates with the PodLogic Controller · RDHx product page
CDU
UP TO 800 kW
COOLANT DISTRIBUTION UNIT · DIRECT-TO-CHIP LIQUID COOLING
Liquid-cooling designed to deliver efficient and safe TC water to racks, offering the highest-density cooling option within the PodLogic Platform.
STANDOUT SPECS
Direct-to-chip liquid cooling · FWS-powered CDU drives the TCS loop · integrated enclosure with removable panels and doors.
Sub-option: the In-Rack CDU brings direct-to-chip liquid cooling to a single rack for smaller or phased deployments.
Integrates with the PodLogic Controller · CDU product page
PROOF, IN NUMBERS
What the platform delivers
15%
UP TO
total energy savings vs. CRAH
15%
UP TO
more leasable square feet in the same footprint
IES Prototype study: where the energy savings come from
810 MWh
fan-energy reduction (40%)
45 MWh
pump energy (16%)
374 MWh
chiller energy (7%)
24 MWh
heat rejection (7%)
Add cooling as your racks demand it
PodLogic scales three ways, so your capital tracks real density instead of getting locked into cooling capacity
you bought 18 months too early.
More racks per pod
Grow a pod's cooling as you fill it, without re-architecting the hall.
More pods in the hall
Repeat the pod as the floor fills, on the
same single interface.
Higher density per rack
Step a rack up the continuum, from air to liquid, when its load climbs.
No CRAH rooms and no fan rooms means up to 15% more leasable space, or a building up to 15% smaller. It also opens office-to-data-center and odd-footprint industrial conversions wherever power already exists.
SEE IT RUNNING
Denver Demonstration Center
See a functioning system in person. Our Denver demonstration center lets you watch the platform run before you commit a single rack.
The centre is being built to showcase how the PodLogic platform manages multiple cooling technologies simultaneously.
CREDIBILITY
Backed by manufacturing, partnership, and press
PodLogic is manufactured in North America, built through our alliance with nVent, with patents pending.
IN THE PRESS
CASE STUDY

THE QUESTIONS OPERATORS ASK
PodLogic data center cooling, answered
THE NEXT STEP
Bring us your next data hall
Send us the shape of the project, and we will review the opportunity, show how the PodLogic platform maps to your floor, and propose a layout. No hard sell, just a plan you can take to your team.
Four quick questions to get us started:
-
Total capacity you are planning, in kW
-
How many racks
-
Rack density, in kW per rack
-
Whether you have the data hall layout