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Product Description
Solberg SM2-10-100 SpinMeister Extreme Duty Inlet Filter
The Solberg SM2-10-100 SpinMeister® Extreme Duty Inlet Filter is engineered for high-efficiency air intake filtration in harsh industrial environments with elevated dust and particulate contamination. Featuring a dual-stage filtration system, this rugged inlet filter combines a SpinMeister® centrifugal pre-cleaner with a high-performance paper filter element to maximize equipment protection and extend service life.
The integrated SpinMeister® pre-cleaner removes larger airborne particles before they reach the primary filter media, helping reduce maintenance frequency while maintaining consistent airflow performance for compressors, blowers, and vacuum systems.
Key Features
- Dual-stage SpinMeister® filtration system
- High-efficiency paper filter media rated to 2 micron
- 1" MNPT threaded connection
- Up to 35 SCFM airflow capacity
- 85% pre-cleaner efficiency at 15 microns
- Corrosion-resistant gray powder-coated carbon steel housing
- Durable molded fiber-filled composite SpinMeister® assembly
- Compact seamless housing construction
- Continuous operating temperature from -15°F to 220°F
- Designed for heavy-duty and dusty industrial applications
Applications
- Vacuum pumps and vacuum systems
- Regenerative blowers
- Piston compressors
- Screw compressors
- Construction and contractor equipment
- Vacuum coating systems
- Industrial air intake filtration
Technical Specifications
- Model: SM2-10-100
- Series: SM Series SpinMeister®
- Connection Size: 1" MNPT
- Filter Media: Paper
- Micron Rating: 2 Micron
- Filtration Efficiency: 99%+ @ 2 Micron
- Pre-cleaner Efficiency: 85% @ 15 Micron
- Assembly Airflow Rating: 35 SCFM
- Dimensions: 7.75" x 1.25" x 4.13"
- Approximate Weight: 2 lb
- Replacement Element: 10™ Paper Element
- Operating Temperature Range: -15°F to 220°F
The Solberg SM2-10-100 delivers dependable inlet filtration performance for demanding industrial operations, helping protect critical equipment from airborne contaminants while minimizing downtime and maintenance costs.
