Data Center TES Tanks and Pump Skids - Whaley Products, Inc.

Accelerate data center deployment with integrated TES tank and pump skid solutions that arrive factory-tested, installation-ready, and engineered for performance.

TES Tank and Pump Skids Designed for Rapid Data Center Expansion

Factory-Built TES Tank & Pump Skid Solutions for Data Centers

Modern data centers demand speed, scalability, and uptime. Whaley Products delivers fully integrated TES tank and pump skid systems that are engineered, fabricated, and tested in a controlled factory environment. By minimizing field installation, reducing schedule risk, and accelerating commissioning, our modular systems help owners, contractors, and operators bring critical cooling infrastructure online faster and with greater confidence.

Data Center TES Tank & Pump Skid Systems

Whaley Products designs and manufactures fully integrated TES tank and pump skid packages engineered for mission-critical data center cooling applications. Factory-built and performance tested before shipment, our modular systems reduce onsite labor, accelerate installation, and help bring capacity online faster with greater confidence.

Modular Cooling Infrastructure for Data Centers

From hyperscale campuses to colocation facilities, Whaley's prefabricated TES tank and pump skid systems simplify mechanical construction while improving quality and consistency. Delivered ready for installation, our solutions help shorten schedules, reduce project risk, and support long-term operational reliability.

Why Choose Whaley Products

Whaley Products combines decades of fabrication expertise with a modular approach tailored to the demanding requirements of modern data centers. Our TES tank and pump skid systems are engineered to reduce construction timelines, improve installation efficiency, and deliver reliable long-term performance for mission-critical cooling infrastructure.

Programming & Controls

Programming governs system operation through PLCs or automation platforms. Sequences for chiller staging, tower fan modulation, and pump speed control are developed. Advanced programming includes adaptive setpoint algorithms, predictive fault detection, and real‑time dashboards.