Haiman develops MEMS-based analysis chips and instruments, including microcantilever gas sensing systems and thermal analysis devices, to provide precise characterization of materials and chemical interactions. The company's technology enables researchers and industries to efficiently analyze trace gases and thermodynamic properties, facilitating advancements in fields such as biochemistry and catalysis.
Funding
Funding not disclosed
Founders
Product
Problem
Precise characterization of materials and chemical interactions often requires complex and expensive analytical equipment, limiting accessibility and efficiency for researchers and industries. Traditional methods for analyzing trace gases and thermodynamic properties can be time-consuming and may not provide the sensitivity needed for certain applications.
Solution
Haiman develops micro-electro-mechanical systems (MEMS)-based analysis chips and instruments designed for precise material and chemical interaction characterization. Their product line includes microcantilever gas sensing systems, thermal analysis devices, and related accessories. These systems enable efficient analysis of trace gases and thermodynamic properties, facilitating advancements in fields such as biochemistry, catalysis, and materials science. The core technology centers around resonant microcantilevers, providing high sensitivity and enabling novel analytical approaches.
Target Audience
Haiman's primary customers include researchers and industries in advanced materials, biochemical sensing, catalysis research, and life sciences requiring precise analytical tools for material characterization and chemical interaction studies.
Features
- Microcantilever gas sensing systems for trace gas detection
- Interface thermodynamic/kinetic parameter analyzers for studying molecular adsorption
- Chip-based thermogravimetric analyzers for thermal analysis
- In-situ temperature-programmed desorption/reaction (TPD/TPR) analyzers for catalyst characterization
- Smart dynamic gas mixing systems for controlled gas environments
- Portable hydrogen detectors for leak detection
- Microchip dispensing systems for micro-region sample preparation
- Vacuum and micro reaction chambers for controlled environment testing
- Libra series microcantilever chips for ultra-high sensitivity measurements
- Phoenix series microcantilever chips with on-chip temperature control and weighing capabilities
- Environmental in-situ TEM chips for real-time observation under thermal, gas, electrical, and liquid conditions
- Micro electrochemical chips for rapid and flexible electrochemical analysis