Norman Joseph Woodland, sketching on a Miami Beach shore, drags his fingers through the sand and forms concentric circles, imagining a code that could be read from any direction.
Woodland and Silver file a patent for their 'Classifying Apparatus and Method,' describing a linear and a circular bullseye-style barcode symbol.
Woodland and Silver build a bulky working prototype of their bullseye scanner, powered by an oversized light source and using RCA components, proving the concept but revealing its impracticality for retail use.
Facing rising labor costs and slow checkout lines, U.S. grocery trade associations form a committee to investigate automated product identification systems.
RCA, having acquired rights related to the original Woodland-Silver patent, conducts a real-world trial of a bullseye-style barcode scanning system in a Kroger supermarket.
An IBM team led by George Laurer, building on Woodland's own reengineering work, develops the rectangular linear barcode symbol that becomes the Universal Product Code, chosen over the original bullseye design.
A pack of Wrigley's chewing gum becomes the first retail product scanned using the Universal Product Code, at a Marsh supermarket in Ohio.
Through the late 1970s and 1980s, barcode scanning spreads globally beyond groceries into general retail, warehousing, shipping and manufacturing, revolutionizing inventory management.
Engineer Masahiro Hara at Denso Wave in Japan invents the Quick Response (QR) code, a two-dimensional matrix barcode capable of storing far more data than linear barcodes.
Radio-frequency identification tags, building on decades of parallel development, become widely commercialized for retail and logistics, allowing wireless, contactless tracking of goods without direct line of sight.
Filed on October 20, 1949 and formally granted on October 7, 1952 as US Patent 2,612,994, the document described both a linear pattern of lines and a circular, target-like design of concentric rings meant to be scanned from any direction using a system of photomultiplier tubes and a 500-watt incandescent bulb. The technology needed to read the code reliably and cheaply simply did not exist yet, so the invention sat largely dormant, a solution in search of adequate hardware.