JiCe UPECS: A High-Precision Microenvironment Solution Tailored for Optical Platforms
Release time:
2026-05-08
The Jice UPECS environmental control system achieves ±0.002°C temperature control, ±0.1% RH humidity control, and ISO Class 1 cleanliness through independent micro-environments, thereby ensuring the stability of optical platforms and advancing the development of optical technologies.
In precision optical experiments and metrology applications, the stability of the optical table is the fundamental cornerstone of optical-path accuracy; meanwhile, environmental factors such as temperature drift, humidity fluctuations, and particulate contamination consistently represent critical bottlenecks that limit the full performance potential of optical tables.
JiCe High-Precision Environmental Control System UPECS The design logic of this system is precisely rooted in such real-world scenarios. Rather than modifying the laboratory itself, it functions as an independent micro-environmental unit that “isolates” the platform area from the broader laboratory environment, creating a localized steady-state zone with temperature stability as high as ±0.002°C (other temperature stabilities, such as ±0.05°C, can be customized on demand). At the same time, it achieves humidity stability of ±0.1% RH, cleanliness levels up to ISO Class 1, and operational noise controlled below 45 dB. These performance parameters effectively make “repeated experiments” a practical reality, providing “tailor-made” environmental protection for optical platforms.
On optical platforms, heat-generating equipment such as lasers, motorized translation stages, and power meters are often distributed and vary in power consumption. UPECS’s localized air-bath module enables targeted, site-specific thermal management for each heat source, thereby minimizing energy waste and airflow disturbances caused by excessive cooling. In addition, UPECS’s monitoring and data-logging capabilities provide essential infrastructure to support these requirements.
Advances in optical research are reflected in longer coherence lengths, shorter pulse widths, and higher detection sensitivity; however, realizing these performance metrics ultimately hinges on one fundamental prerequisite: a stable environment. Jice will continue to deepen its expertise in ultra-precise environmental control technologies, iteratively refining and optimizing the performance of the UPECS system to achieve ever-greater temperature-control stability—down to ±0.001°C (±1 mK)—thereby providing unparalleled environmental assurance for cutting-edge fields such as optical and optoelectronic applications, semiconductors, and quantum computing.
Here is the title one h1 placeholder text
More news






