The MKS 354 Micro-Ion Vacuum Gauge Module combines the world’s smallest ionization vacuum gauge with integrated control electronics to deliver a compact, reliable, and cost-saving solution for high vacuum applications. Featuring an all-metal enclosure with high immunity to electrical noise, the module provides accurate and repeatable pressure measurement from 5 x 10⁻² Torr down to 10⁻⁹ Torr. The patented dual ion collector design optimizes electron motion and ion collection, enhancing performance in a compact volume.
Product Features
- Compact, convenient, reliable, and cost-saving vacuum measurement solution
- Vacuum pressure measurement range from 10⁻⁹ Torr (10⁻⁹ mbar, 10⁻⁷ Pa) to 5 x 10⁻² Torr
- Dual yttria-coated iridium filaments increase equipment uptime
- Ultra-clean construction allows rapid response during pump down
- Rugged, all-metal RF and noise-immune module compliant with CE standards
- Optional local display available for setup and diagnostics
- RS-485 and DeviceNet digital interfaces available
- Increased long-term stability over traditional vacuum gauge designs
Applications
The 354 Micro-Ion Vacuum Gauge Modules provide a convenient and reliable solution for high vacuum applications that do not require front panel displays and controls.
Benefits
- High accuracy and stability ensure reliable vacuum measurement in critical environments
- Compact size reduces installation space requirements
- Dual filaments extend equipment uptime and reduce maintenance frequency
- Noise immunity improves measurement consistency in electrically noisy environments
- Flexible interface options simplify integration into diverse control systems
Why Choose the MKS 354 Micro-Ion Replacement Gauge Filament?
With its advanced dual filament design, rugged construction, and broad measurement range, the MKS 354 Micro-Ion replacement filament offers enhanced performance and reliability for demanding vacuum applications. Its compact form factor and multiple communication options make it an ideal component for modern vacuum measurement systems.