LabExact® Grade B 1.0 µm Binderless Glass Microfiber Filters
New Product
LabExact® Grade B Fine porosity, medium to fast flow rate, with a 1.0 µm size particle retention. Ideally suited for the collection of biochemical polymers that have been precipitated by denaturation. This material is twice as thick as Grade A with a higher loading capacity. May also be used as a solid particulate filter for gasses or as a prefilter.
- Glass microfiber filters are produced from 100% borosilicate glass microfiber without the use of binders or strengthening agents
- Depth filtration categorizes filter media that traps particulate within the random matrix of fibers found within the thickness of the media
- The efficiency rating of the filter is characteristic of the complex void space structure that develops as the fibers overlap
The fibers used to manufacture these depth filters are smooth and uniform permitting their characteristically high flow rates while allowing retention of exceptionally small particles and high load capacity.
: Box of 100 filters.
- Catalog No:
- 77590-480
- 77590-478
- 77590-476
- 77590-456
- 77590-474
- 77590-472
- 77590-470
- 77590-468
- 77590-486
- 77590-466
- 77590-458
- 77590-460
- 77590-462
- 77590-464
- Water Flow Rate:
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- 30 s/100 ml, 47 mm Ø @ 10 mbar
- Airflow Rate:
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- 12 s/100 ml/sq. in.
- Retention:
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm
- 1.0 µm