Low viscosity supports adaptation in small areas Radiopaque formula supports x-ray assessment Fluoride-releasing resin adds restorative benefit A2 shade supports natural restorative matching 1 Gram syringe includes 5 disposable tips Quantity: 1 per Pack SDI Wave Nanofilled Flowable Composite, Light-Cure, Syringe Refill, Low Viscosity, 1 Gram, A2 is used for direct restorative procedures that require a low-viscosity flowable composite with controlled adaptation, radiopacity, fluoride release, and an A2 restorative shade. Wave is designed for a broad range of applications, including Class V restorations, tunnel preparations, pit and fissure sealing, minimal Class I through Class IV restorations, radiopaque cavity lining, cervical abrasion and erosion lesions, minor core build-ups, and selected repair procedures. Each pack contains one 1 Gram syringe in Shade A2, plus five single-use disposable tips.Dental offices ordering flowable composite from their supplier can buy this standard low-viscosity Wave version, distinct from the medium-viscosity Wave MV and high-viscosity Wave HV variants, since the syringe format allows direct placement through the supplied tips, helping clinicians access narrow preparations and apply material with controlled delivery for a familiar tooth-colored restorative result. Wave uses a resin-based composite system with nano-filler technology that supports smooth extrusion and restorative handling. Its radiopacity helps the material remain visible on radiographs, supporting differentiation of the restoration and adjacent tooth structure during follow-up assessment. The formulation also releases fluoride, adding a material characteristic commonly considered when selecting a flowable restorative composite, and SDI offers Wave in three viscosity levels, allowing clinicians to match handling characteristics to the clinical situation, with the original Wave formulation being the low-viscosity option, giving it greater flow than the MV and HV versions while retaining a restorative profile suitable for numerous anterior and posterior applications requiring controlled, precise adaptation into the prepared cavity.