PD IEC TR 62595 is a technical report on a display lighting unit. PD IEC TR 62595‑1‑3 provides the best industry guidance on lightning units with arbitrary shapes. PD IEC TR 62595‑1‑3 is the third subpart of the first part of a multi-part series that focuses on common issues of light emission such as spatial uniformity of luminance and colour, the angular distribution of luminance and colour, from lighting units with arbitrary shapes like flexible lighting sources (FLSs).
PD IEC TR 62595‑1‑3 details a model of light emission from a curved FLS and of light measurement on a curved FLS. Because the development of flexible liquid crystal panels is in progress (see the notes), the intent of PD IEC TR 62595‑1‑3 is to guide the development of future measurement standards. PD IEC TR 62595‑1‑3 applies to FLSs either as light sources, products or elements with arbitrary shapes of geometrical curvature having different spectral and spatial characteristics of light emission.
PD IEC TR 62595‑1‑3 on the lightning units with arbitrary shapes is relevant to:
Recent developments in materials for flexible lighting sources (FLSs) with arbitrary shapes such as organic light-emitting devices (OLEDs) have boosted their fabrication process as well as expanded their applications in various fields. Since FLSs can emit light in a curved and deformed shape even under external stress, which is different from that of the devices with rigid substrates, these characteristics and performances require new evaluation and measurement methods. PD IEC TR 62595‑1‑3 delivers an archetype of a curved FLS’ light emission and its measurement.
PD IEC TR 62595‑1‑3 assists in measuring the field on a single-curvature FLS for precise evaluation. PD IEC TR 62595‑1‑3, you can identify and resolve the issues regarding light emission from FLSs to manufacture standardised lighting units of better quality and standard. With compliance and obedience to PD IEC TR 62595‑1‑3, you can efficiently determine the emission characteristics of flexible lightning units. In addition, with the help of secondary optics, you can shape the emitted light by using FLS light emission directionality.
IEC TR 62595-1-3:2019