Fluorine & Silicone, for a Better Life
CN
Leave Your Message

Single Phase Submerged Data Center Immersion Cooling Fluids

Advanced Dielectric Thermal Management for Semiconductor Manufacturing & High-Performance Electronic Cooling

The Revolution of Thermal Management in the AI Era

As the global digital economy accelerates, the demand for high-performance computing (HPC), artificial intelligence (AI), and 5G telecommunications has pushed traditional cooling methods to their physical limits. Single Phase Submerged Data Center Immersion Cooling Fluids have emerged as the gold standard for managing the heat flux of next-generation processors. Unlike traditional air cooling or even direct-to-chip liquid cooling, single-phase immersion cooling involves submerging the entire server or electronic component in a non-conductive, dielectric fluid. This fluid remains in a liquid state throughout the entire cooling cycle, offering a simplified, reliable, and incredibly efficient thermal management path.

In the realm of Semiconductor Manufacturing, precision is everything. The manufacturing process—from lithography to wafer testing—requires ultra-stable temperature environments. Any fluctuation can lead to microscopic defects, reducing yield and increasing costs. Our PFPE (Perfluoropolyether) fluids provide the extreme thermal-oxidative stability required to operate in these high-stakes environments, ensuring that semiconductor equipment remains at peak performance without the risk of corrosion or fluid degradation.

Dielectric Integrity

Our fluids boast high dielectric strength, ensuring zero risk of short circuits even when sensitive electronic components are fully submerged for years.

🌱

PUE Optimization

Help data centers achieve a Power Usage Effectiveness (PUE) close to 1.0 by eliminating energy-hungry chillers and fans.

🛡️

Material Compatibility

Chemically inert PFPE fluids are compatible with a wide range of plastics, metals, and elastomers used in modern electronics.

Deep Application Analysis: Semiconductor & Electronic Cooling

1. Semiconductor Manufacturing & Wafer Testing

The semiconductor industry is shifting toward smaller nodes (3nm and below), which generate concentrated heat during the testing phase. Single-phase immersion fluids are used in "Chillers" and automated test equipment (ATE) to maintain stable temperatures. Because PFPE fluids have low pour points and high boiling points, they can handle the wide temperature swings required during stress testing of chips, from cryogenic levels to over 200°C, without changing phase or losing properties.

2. Data Center Immersion Cooling

The rise of GPUs like NVIDIA's H100 and H200 series has pushed server rack power density from 10kW to over 100kW. Air cooling simply cannot move heat fast enough. Single-phase immersion cooling allows for higher density, as servers can be packed closer together. The fluid’s high heat capacity (compared to air) means it absorbs heat instantly, transferring it to a heat exchanger with minimal energy loss. This is the cornerstone of sustainable "Green Data Centers."

3. Power Electronics and EV Components

Beyond data centers, electronic cooling is vital for power inverters in electric vehicles (EVs) and high-speed rail. Submerging power modules in dielectric fluids reduces the size of the cooling system and protects components from environmental contaminants like dust, moisture, and vibration, significantly extending the lifespan of the electronics.

Semiconductor Manufacturing

Semiconductor Manufacturing

Data Center Cooling

Data Center Cooling

Automotive Sealing

Automotive Sealing

Aerospace Materials

Aerospace Aviation

Global Trends and Industrial Status

The global market for immersion cooling is projected to grow at a CAGR of over 20% through 2030. Key drivers include:

  • Carbon Neutrality Goals: Governments are mandating lower PUE for data centers. Immersion cooling can reduce total energy consumption by up to 30-40%.
  • PFAS Regulations: The industry is moving toward "Green Chemistry." Our focus on sustainable fluorinated surfactants (FSA) and eco-friendly PFPE formulations aligns with future regulatory landscapes in the EU and North America.
  • Edge Computing: Small-scale data centers located in harsh environments (like 5G base stations) benefit from immersion cooling because it seals the electronics away from the elements.

As the first Chinese manufacturer to produce Y-Type FSA on a large scale, we are positioned at the forefront of this transition. Our ChipChill series of coolants is specifically designed to meet the rigorous demands of 24/7 data center operations, providing a balance between thermal performance and environmental responsibility.

Why Choose Our Advanced Material Solutions

We are a leading producer of immersion coolants, directly contributing to carbon neutrality. Our ChipChill coolant helps IDC centers achieve a PUE value close to 1.0, while our FSA is critical for new energy lithium battery PVDF adhesives and solar cell backsheets. Our elastomer products serve the automotive, petroleum, chemical processing, and wearable electronics industries due to their excellent resistance to high temperatures and corrosion.

Innovation & Technology

Our innovation is driven by Kingrande’s unique APA&D (Advanced Polymer Architecture and Design) Platform, which integrates Advanced Polymer Hybridization (APH), Polymerization Process (APP), Modification Process (AMP), and Functionalization (APF).

Our Equipment

Supported by advanced equipment such as short-path molecular distillation and electronic-grade purification filtration, we ensure superior product quality.

Our R&D Team

Our R&D team consists of 30 professionals. To date, we have secured 49 patents (including 27 national invention patents and 19 utility model patents) accepted by the State Intellectual Property Office.

R&D & Manufacturing Excellence

Our quality assurance is backed by state-of-the-art analytical instrumentation. Each batch of our single-phase immersion cooling fluid undergoes rigorous testing to ensure it meets the ultra-pure requirements of electronic-grade applications.

FTIR Spectroscopy

FTIR Spectroscopy: Molecular analysis for chemical purity.

Gas Chromatograph

Gas Chromatograph (GC): Ensuring high-purity testing standards.

HPLC System

HPLC System: Complex chemical mixture analysis.

TGA Analysis

TGA Analysis: Testing thermal stability limits.

Keywords Summary: Single Phase Submerged Data Center Immersion Cooling Fluids, Semiconductor Manufacturing Cooling, Electronic Cooling, PFPE Fluids, Dielectric Coolants, PUE 1.0, Thermal Management Solutions, ChipChill, Kingrande Advanced Materials, Fluorinated Surfactants, FKM Elastomers.

As the industry moves toward more powerful AI chips and denser server architectures, the role of specialized cooling fluids becomes paramount. Our commitment to R&D, patent-backed innovation, and large-scale manufacturing ensures that we provide the high-tech era with the sustainable, efficient, and reliable cooling solutions it requires to keep growing.