This range of Acoustic Floor Screens is a perfect choice to divide an office space providing an effective solution in reducing noise problems. Read More
Sound Absorbing Desk Divider
Sound Absorbing Desk Divider can be installed in open-plan offices as an effective means of sound absorption. Read More
Polyester Fiber Perforated Panel
Polyester Fiber Perforated Panel is hot pressed by high technology and made in the shape of cocoon cotton. The highest sound absorption coefficient Read More
Wooden Grooved Acoustic Panel
Wooden Grooved Acoustic Panel is a kind of slit resonance absorption material which is made from high density panel with grooves on the surface. Read More
Grooved Acoustic Panels
The support material of Grooved acoustic panels is always MDF fiberboard wood panels, in standar and fireproof versions. Surface finishes can be raw, melamine, plywood, varnished. Read More
Grooved Wooden Acoustic Panels
Tiange Grooved Wooden Acoustic Panels with high aesthetic qualities. It can be used for wall cladding as well as Ceilings. Read More
Micro-Perforated Acoustical Wood Panels
Intentionally engineered to offer pleasing design along with unmatched acoustic benefits, Micro-Perforated Acoustical Wood Panels offer a truly seamless integration of acoustic materials into all types of projects. Read More
Fiberglass Ceiling
TianGe Acoustic Fiberglass ceiling acoustic panel is a new type of ceiling decoration material formed by using fireproof and environmentally friendly Read More
Aluminum Frame Fabric Acoustic Panel
TianGe Fabric Acoustic Panel uses high quality Owens Corning fiber glass acoustic cotton, it has environmental protection, fire retardant Read More
Aluminum Perforated Acoustic Panel
Perforated aluminum acoustic panel can be processed with anti-rust treatment, environmental and no pollution. Read More
Sandrock Acoustic Panel is a new kind of seamless sound absorbing material, which is basically a hard perforated board with a certain mesh number and made of carefully-selected sands, polymerized with binding material Read More