The VenusLab optomechanical products serve as the core carrier for supporting the stable operation of optical experiments and industrial optical systems, with "Full-Dimensional Regulation + High-Stability Support + Extreme Environment Adaptability" as their core value.They cover the full range of needs, spanning from "microscopic position alignment" to "macroscopic system construction", and from "normal temperature & conventional scenarios" to "high-low temperature/vacuum extreme scenarios".
These products can achieve seamless synergy with the company’s in-house detectors, imaging equipment, light sources, and other products, forming an integrated optical solution for "optical signal generation - transmission - regulation - detection". They provide precision mechanical control capabilities ranging from the micrometer to nanometer scale for the scientific research and industrial fields.

The “zero-threshold” teaching-grade optical platform

"Sketchpad for optical paths" – a feather-light, portable solid-aluminum breadboard.

"Palm-sized Magnetic Suction Lab" — Lightweight Ferromagnetic Breadboard

"Push to Start Class" — A Lightweight Vibration Isolation Platform Specifically for Teaching Scenarios

The first choice for scientific research-level beginners

"Sub-hertz Quiet Zone" — A Scientific Research-Grade Precision Damping Platform

"One-click quiet sub-hertz air cushion" —— Scientific research-grade air flotation platform

"Removable Tool Bin by the Optical Table" — Modular Instrument Rack

316L zero magnetism, ready to use immediately

"Extra-large size with zero stitching gaps"

It provides a precise temperature environment for optical microscope observation or material heat treatment, adapts to different sample forms and experimental needs, and covers three scenarios: "polarized light observation", "ultra-thin sample compatibility", and "industrial heat treatment simulation".

Provide temperature control support for spectral analysis, ellipsometric testing, and electron microscopic observation, compatible with optical paths and vacuum environments, enabling the "temperature-optical properties" correlation research.

Provide a "temperature + electric field/magnetic field" multi-field coupling environment for testing the electrical properties of electronic devices, and reveal the correlation law of "temperature - electrical characteristics".

It provides a temperature-controlled environment for mechanical experiments such as tension and compression, studies the correlation law of "temperature-mechanical properties", and is compatible with equipment such as universal testing machines and nanoindenters.

It targets extreme scenarios such as ultra-high temperature, vacuum, and high pressure, meets special experimental needs, and breaks through the environmental limitations of conventional equipment.