Guangdong, China
Global Engineering RFQ Review
In-Rack Liquid-to-Air CDU

TC-CDU-A24R In-Rack Liquid-to-Air CDU (24 kW · 15U)

Liquid-to-Air Coolant Distribution Unit · 24 kW · 15U · liquid cooling without facility water

↓ Download Datasheet (PDF)

English PDF · Free download · No form required

In-Rack Liquid-to-Air CDU
In-Rack Liquid-to-Air CDU — series illustration; dimensions vary by model.
24 kWRated capacity
10 °CApproach temp.
40 LPMSecondary flow
1+1Redundant pumps
15URack height
ModbusRTU / TCP
APPLICATION ENGINEERING

Edge rooms & pilot racks

Room HVAC removes heatIT loadRack-mounted CDURoom airConceptual application layout · configuration and sizing depend on the project

How it is used

Add direct-to-chip cooling where facility water is unavailable. The room cooling system must remove the heat rejected by the CDU.

Selection checkpoint

Confirm inlet air temperature, rack space and room heat-rejection capacity.

Illustrative architecture, not a customer installation or an installation drawing.

Overview

  • Liquid-to-air CDU: PG25 to the cold plates on the secondary side, heat rejected to room air by the built-in heat exchanger and fans, no facility water required
  • 24 kW rated at 25 °C inlet air, 10 °C approach, 40 LPM secondary flow, variable 20–100%
  • 1+1 redundant pumps with auto switchover, dual-feed ATS, leak detection, coolant quality monitoring, 25 µm filter
  • PID control of both airflow and coolant flow; Modbus RTU / TCP for BMS / DCIM
  • 19-inch rack, 15U, 482 × 870 × 665 mm, approx. 105 kg, IP55
  • For enterprise / edge rooms without facility water, university and finance clusters, single-rack GPU pilots

Engineering fit

For enterprise / edge rooms without facility water, university and finance clusters, single-rack GPU pilots: only power and room air conditioning are needed to run direct-to-chip liquid cooling — no chilled water or cooling tower. 35 °C secondary supply is obtained from 25 °C room inlet air (10 °C approach); capacity derates with warmer room air per the selection table. Pairs with ToneCooling cold plates, manifolds and hose assemblies from the same factory.

  • Enterprise / edge rooms without facility water, single GPU racks (up to about 24 kW on liquid)
  • Small liquid-cooled clusters in universities and finance
  • Pilots and POCs: one unit per rack, online in hours
  • Smooth migration to a liquid-to-liquid CDU when facility water is added later

Key specifications

ParameterSpecification
Rated cooling capacity24 kW
InstallationIn-rack, 19-inch, 15U
Dimensions (W × D × H)482 × 870 × 665 mm
Weightapprox. 105 kg
CoolantPG25 (25 % propylene glycol / water)
Power supplyAC 220 V, 50/60 Hz
Dual-feed ATSYes
Power consumption< 1.5 kW
Ingress protectionIP55
Display7″ touch HMI

Performance & control

ParameterSpecification
Approach temperature10 °C
Primary air in / out25 °C / 35 °C
Secondary liquid out / in35 °C / 45 °C
Secondary rated flow40 LPM
Flow range20–100%
Pump head25 m
Redundant pumps, auto switchover1+1
ControlPID, airflow and flow vs. temperature
Flow check60,000 × 24 ÷ (1030 × 3.9 × 10 K) ≈ 36 LPM; 40 LPM rated incl. margin (ρ in kg/m³, cp in kJ/kg·K; ΔT in K)

Monitoring · interfaces · environment

ParameterSpecification
Leak detectionYes
Coolant quality monitoringYes
Secondary filter25 µm
Bypass online-replaceable filterNo (standard on in-row models)
Automatic refillNo (standard on in-row models)
CommunicationModbus RTU & TCP/IP
Operating environment−10 to 55 °C, 5–90 % RH
Storage environment−45 to 70 °C, 5–93 % RH
Heat rejectionBuilt-in fans to room air; 25 °C inlet air and a return-air path required
In-Rack Liquid-to-Air CDU
In-Rack Liquid-to-Air CDU — series illustration; dimensions vary by model.

Note: rated at 25 °C inlet air, 35 °C secondary supply, PG25; derate per selection table for other inlet air temperatures. Platform names indicate compatibility only and imply no endorsement or partnership. Specifications subject to change.

Documents and factory tests

Supplied: dimensional / connection drawing, P&ID, Modbus register map, flow–pressure-drop curve, selection table, user manual. Factory tests: pressure hold, leak test, flow resistance at rated flow, pump / ATS switchover, leak-sensor / coolant-quality / comms check; records ship with every unit. Combined cold plate + manifold + CDU report for full-rack projects.

Compare models in this series

ModelCapacityRated flowSize / heightEnglish datasheet
TC-CDU-A6R6 kW10 L/min6U↓ Download PDF
TC-CDU-A15R15 kW25 L/min10U↓ Download PDF
TC-CDU-A24R24 kW40 L/min15U↓ Download PDF
TC-CDU-A30R30 kW50 L/min20U↓ Download PDF

Read the selection guide

Frequently asked questions

Under what conditions is the 24 kW rating valid?

Rated at 25 °C inlet air, 35 °C secondary supply and PG25. Usable capacity derates as room return air gets warmer; size the unit for the actual inlet air temperature.

Liquid-to-air or liquid-to-liquid CDU?

Choose liquid-to-air when the room has no chilled water or cooling tower, or when the water system must not be touched — room air conditioning removes the heat. Choose liquid-to-liquid when facility water exists and the load is large; it uses less energy per kW. Secondary connections are the same, so you can migrate later.

How much room cooling is needed?

The unit rejects the 24 kW cold-plate load into room air, so room CRAC/CRAH capacity must grow by 24 kW sensible, with hot/cold aisle airflow kept separate.

Which coolant on the secondary side?

Closed PG25 (25 % propylene glycol / water) loop with 25 µm filtration, cleaned at the factory and pre-filled on request.

Which protocols are supported?

Modbus RTU and Modbus TCP/IP are standard; the register map ships with the unit. Ask about other protocols when requesting a quote.

Lead time?

Standard units ship in 6–8 weeks; every unit ships with pressure, leak and flow-resistance test records.

Get a CDU selection review

Send your rack or loop heat load, inlet temperature, coolant, required flow, pressure drop, power supply and available space. We will confirm the model and operating conditions.

Request an engineering review

Sample lead time: 6–8 weeks. Large primary-side production units: 8–10 weeks, subject to project confirmation.

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