INDUSTRY

Micro-Nano Processing: Femtosecond Laser vs. Picosecond Laser – How to Choose Tool?

Micro-Nano Processing: Femtosecond Laser vs. Picosecond Laser – How to Choose Tool?

In high-precision fields such as microelectronic manufacturing, medical device R&D, and optical component processing, "non-contact processing" has...
MONO | 2025-11-12
Why Femtosecond Lasers Are the Inevitable Choice for Ultra-Precision Polymer Processing

Why Femtosecond Lasers Are the Inevitable Choice for Ultra-Precision Polymer Processing

Polymers are increasingly used in fields like medical devices and consumer electronics due to their light weight, corrosion resistance, and insulating propertie...
MONO | 2025-11-07
Medical Micro-Tubing Manufacturing: Precision Cutting with Femtosecond Lasers

Medical Micro-Tubing Manufacturing: Precision Cutting with Femtosecond Lasers

As medical devices continue to miniaturize, the ability to achieve high-quality cuts and intricate features on micro-tubing has become more critical than ever. ...
MONO | 2025-11-03
Struggling with Micro-Nano Machining of High-Melting-Point Molybdenum? Femtosecond Lasers Break Through 4 Core Challenges

Struggling with Micro-Nano Machining of High-Melting-Point Molybdenum? Femtosecond Lasers Break Through 4 Core Challenges

As a "high-temperature resistant material star" with a melting point of 2623°C, molybdenum (Mo) is widely used in high-end fields such as aerospace no...
MONO | 2025-10-23
High-End Application Scenarios of Femtosecond Laser Processing for Molybdenum: From Aerospace to Medical Equipment

High-End Application Scenarios of Femtosecond Laser Processing for Molybdenum: From Aerospace to Medical Equipment

As the demand for "high-precision molybdenum components" surges in the aerospace, semiconductor, and medical fields, femtosecond laser processing tech...
MONO | 2025-10-23
Zero-Taper Microholes: Precision Drilling for High-End Components by MONO

Zero-Taper Microholes: Precision Drilling for High-End Components by MONO

As femtosecond lasers gain popularity in precision manufacturing, their "cold processing" characteristics—no heat-affected zone (HAZ)and sub-micron le...
MONO | 2025-10-11
Femtosecond Laser Grid Precision Cutting: Application Breakthroughs in TEM Grids, TWT Grids & Ion Source Grids

Femtosecond Laser Grid Precision Cutting: Application Breakthroughs in TEM Grids, TWT Grids & Ion Source Grids

High-performance grids are critical components in numerous cutting-edge applications, covering fields such as Transmission Electron Microscopes (TEM), Traveling...
MONO | 2025-09-28
Innovation in Transparent Material Processing: Femtosecond Laser Breaks Precision Machining Barriers for Ruby & Sapphire

Innovation in Transparent Material Processing: Femtosecond Laser Breaks Precision Machining Barriers for Ruby & Sapphire

Ruby and sapphire are widely used in optical components and micromechanical devices, thanks to their exceptional mechanical, optical, and electrical properties....
MONO | 2025-09-16
BCEIA 2025 | Monochromatic Technology Presents Femtosecond Laser Micro-Nano Machining Solutions to Empower Analytical Science Instruments

BCEIA 2025 | Monochromatic Technology Presents Femtosecond Laser Micro-Nano Machining Solutions to Empower Analytical Science Instruments

The 21st Beijing Conference and Exhibition on Instrumental Analysis (BCEIA 2025) – a top event for global analytical science – grandly kicked off at the China I...
MONO | 2025-09-12
Femtosecond Laser vs. WEDM (Wire Electrical Discharge Machining): Which Is Ideal for Your Micro-Nano Precision Machining Needs?

Femtosecond Laser vs. WEDM (Wire Electrical Discharge Machining): Which Is Ideal for Your Micro-Nano Precision Machining Needs?

In the field of micro-nano precision machining, selecting the right precision processing technology directly influences product precision, efficiency, and cost-...
MONO | 2025-09-11
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