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TTI

TTI TT06R-4-3SDV

The TTI TT06R-4-3SDV is a 3µm dual phase microglass hydraulic filter element. It measures 2.04" OD x 0.88" ID. Filtration efficiency is rated at β2000 per ISO 16889. Seals are Viton. Collapse pressure rating is 150 PSID.

3µmDual Phase MicroglassViton

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Part NumberTT06R-4-3SDV
ManufacturerTTI
CategoryHydraulic

What are the specifications of the TTI TT06R-4-3SDV?

Technical specifications for the TTI TT06R-4-3SDV filter element. Data sourced from manufacturer catalogs and verified against OEM documentation.

SpecificationValue
Performance
Media TypeDual Phase Microglass
Micron Rating3µm
Efficiency (ISO 16889)β2000
Collapse Rating150 PSID
Series06R
Dimensions
Seal MaterialViton
O.D. (inches)2.04"
I.D. (inches)0.88"
Additional
Filter TypeCartridge Element
Beta Ratioβ3[C] ≥ 2000
Max Temperature225°F (107°C)

Last verified: February 2026

Application & Compatibility

The TTI TT06R-4-3SDV is designed for use in hydraulic and lubrication filtration systems. With a 3µm rating, this element is suitable for servo valve protection and high-precision hydraulic systems. Viton seals provide compatibility with petroleum-based fluids, synthetic fluids, phosphate esters, and water-glycol mixtures.

The 150 PSID collapse rating indicates the maximum differential pressure this element can withstand during cold starts or bypass conditions without structural failure. Ensure your system's maximum differential pressure does not exceed this rating.

Frequently Asked Questions

What micron rating is the TTI TT06R-4-3SDV?

The TTI TT06R-4-3SDV has a 3µm micron rating with dual phase microglass filter media, rated at β2000 per ISO 16889.

What are the dimensions of the TTI TT06R-4-3SDV?

The TTI TT06R-4-3SDV measures 2.04" OD, 0.88" ID.

What seal material does the TTI TT06R-4-3SDV use?

The TTI TT06R-4-3SDV uses Viton seals.

What is the collapse pressure rating of the TTI TT06R-4-3SDV?

The TTI TT06R-4-3SDV has a collapse pressure rating of 150 PSID. This indicates the maximum differential pressure the element can withstand without structural failure.

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