Fluorinated fluid paired with a combined high- and low-temperature unit.
I. Core Adaptation Advantages
- Seamless coverage across an ultra-wide temperature range : The fluorinated fluid has a pour point as low as −100°C and a boiling point as high as 230°C, enabling stable circulation across the **−80°C to +200°C** range. It supports bidirectional temperature control—ultra‑low‑temperature cooling and high‑temperature heating—in all‑in‑one systems, addressing the longstanding issues of conventional media freezing at low temperatures and volatilizing at high temperatures.
- High insulation, safe and free of hazards. : With an insulation strength exceeding 40 kV, the device poses no risk of short circuits or leakage even when operating under live conditions, making it suitable for testing and temperature control in high-voltage, high-electromagnetic‑field environments and ensuring safe system operation.
- High-efficiency heat exchange with precise temperature control : High thermal conductivity and excellent fluidity (low viscosity), combined with the integrated unit’s PID temperature control for precise regulation, ensure temperature fluctuations are maintained within **±0.1℃**, meeting the stringent requirements of high-precision applications such as semiconductors and precision instruments.
- Chemically inert, long-lasting and stable : Compatible with materials such as metals, plastics, and rubbers; non-corrosive, non‑swelling, and non‑oxidizing; resistant to scaling and degradation over long-term use, reducing the frequency of all‑in‑one unit maintenance and extending equipment lifespan.
- Environmentally friendly, low-consumption, and easy to maintain. : ODP = 0, low GWP, environmentally friendly; non-flammable and non-explosive, with low volatility; a fully sealed closed-loop design minimizes losses, eliminating the need for frequent fluid replenishment and reducing operational and maintenance costs.
II. System Operating Principle
The integrated high‑low temperature unit utilizes built-in cooling/heating modules and a circulation pump to drive an electronic fluorinated fluid in a closed loop between the equipment and the load:
- Low-temperature mode : The integrated refrigeration system cools the load, with fluorinated liquid rapidly absorbing thermal energy to precisely maintain an ultra-low temperature range of -80°C to 0°C.
- High-temperature mode : The all-in-one unit’s heating module rapidly raises the temperature, while the fluorinated liquid ensures stable heat transfer, meeting high-temperature control requirements from 0°C to 200°C.
- Advantage Loop : A compact unit that recirculates fluorinated heat-transfer fluid after heat exchange, with secondary temperature control and closed-loop circulation, ensuring impurity-free operation and leak-proof performance throughout the process to maintain stable temperature control.
III. Typical Application Scenarios
- Semiconductor manufacturing : Reaction chambers for etching tools, deposition equipment, and ion implanters, along with thermal‑sink plate temperature control, ensure process stability and yield.
- Precision Testing Experiment : Wide‑range temperature control for chip thermal cycling , as well as for laboratory instrument and material performance testing.
- New energy sector : High- and low-temperature environmental simulation testing for energy storage battery packs and power battery modules, with precise temperature control to suppress thermal runaway.
- Aviation and Aerospace Electronics : Extreme‑environment thermal control for airborne precision electronics and radar components, compatible with harsh operating conditions ranging from –60°C to 180°C.
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