The TE-1004-BLX is a maintenance-free brushless motor assembly engineered for polyurethane foam (PUF) high volume air sampling systems. This 220-volt motor assembly delivers reliable vacuum generation for collecting airborne particulate and vapor contaminants, including volatile organic compounds and airborne pesticides.
Technical Design
The brushless design eliminates the carbon brush maintenance requirements of traditional brush-style motors, providing extended service life without routine brush replacement and zero emissions during operation. The motor assembly integrates with PUF sampling systems that operate between 125-250 lpm flow rates, pulling air through a critical orifice to control and calculate ambient flow rate.
Key Specifications
- Voltage: 220V
- Motor Type: Brushless (maintenance-free)
- Operating Range: 125-250 lpm
- Application: PUF high volume air sampling
- Design: Zero emissions, no brush maintenance
Compatibility
This motor assembly is designed specifically for Tisch Environmental PUF sampling systems. The TE-1004-BLX works with related PUF system components including motor flange TE-1004-1, flange gasket TE-1004-2, motor housing TE-1004-3, and motor back plate TE-1004-7. For 110V applications, the equivalent TE-1004-BL model is available.
EPA Compliance Applications
PUF sampling systems equipped with the TE-1004-BLX motor assembly are designed to meet requirements for EPA methods TO-4A, TO-9A, and TO-13A for determination of toxic organic compounds in ambient air. The dual sampling module design collects volatile organic compounds, airborne pesticides, and PFAS in ambient air, supporting comprehensive environmental monitoring programs.
Maintenance Advantages
The brushless technology provides significant operational benefits over traditional brush-style motors. Brushless motors require no maintenance and produce no emissions, reducing downtime and ensuring consistent performance in long-term monitoring applications. This makes the TE-1004-BLX particularly suitable for remote monitoring stations where regular maintenance access is limited.