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Milestone-Nomination:Birthplace of the Bar Code, 1948

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==  ==
 
==  ==
  
Birthplace of the Bar Code, 1948  
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Birthplace of the Barcode, 1948  
  
<br>In an attempt to automate the reading of product information in a local grocery store, Bernard Silver and Norman Joseph Woodland&nbsp;at the Drexel Institute of Technology developed a solution that became the ubiquitous Barcode Identification System. Patented in 1952, the Barcode has become a key technology for product identification and inventory control in industry and daily life.
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<br>In an attempt to automate the reading of product information in a local grocery store, Bernard Silver and Norman Joseph Woodland&nbsp;at the Drexel Institute of Technology developed a solution that became the ubiquitous Barcode Identification System. Patented in 1952, the Barcode has become a key technology for product identification and inventory control in industry and daily life.  
  
== In the space below the line, please describe the historic significance of this work: its importance to the evolution of electrical and computer engineering and science and its importance to regional/national/international development.  ==
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== Historic significance of this work: its importance to the evolution of electrical and computer engineering and science and its importance to regional/national/international development.  ==
  
 
At the period of its conception, there were no simple mechanisms that could code data in a way that would make it machine readable, and no technology that could scan images on-the-fly and extract useful information from them. Moreover computing infrastructure that can support the data storage and processing requirements associated with mass scale inventory tracking and control was non-existent. The barcode technology served to invent some of these components including optical readers, and in the process of adapting other components towards its own cause, helped improve these supporting technologies. Consequently, simultaneous efforts in the many areas of electrical and computer engineering such as machine vision, signal processing, data representation, coding, error correction, data storage, data security and database design and management were required to implement the barcode technology. This eventually contributed immensely towards the development in those areas.  
 
At the period of its conception, there were no simple mechanisms that could code data in a way that would make it machine readable, and no technology that could scan images on-the-fly and extract useful information from them. Moreover computing infrastructure that can support the data storage and processing requirements associated with mass scale inventory tracking and control was non-existent. The barcode technology served to invent some of these components including optical readers, and in the process of adapting other components towards its own cause, helped improve these supporting technologies. Consequently, simultaneous efforts in the many areas of electrical and computer engineering such as machine vision, signal processing, data representation, coding, error correction, data storage, data security and database design and management were required to implement the barcode technology. This eventually contributed immensely towards the development in those areas.  
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Barcodes revolutionized the way logistics of goods and inventories were organized and managed, and provided a robust and economically feasible solution for inventory management and tracking across regional, national and international borders. It has become an ubiquitous technology to find applications in every imaginable sector ranging from aerospace, to healthcare to retail to service industries. Due to its applicability in any application that requires a multitude of objects to be tracked and managed, the barcode technology has been universally adopted across the entire globe.  
 
Barcodes revolutionized the way logistics of goods and inventories were organized and managed, and provided a robust and economically feasible solution for inventory management and tracking across regional, national and international borders. It has become an ubiquitous technology to find applications in every imaginable sector ranging from aerospace, to healthcare to retail to service industries. Due to its applicability in any application that requires a multitude of objects to be tracked and managed, the barcode technology has been universally adopted across the entire globe.  
  
Selected References:
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Selected References:  
  
1. US Patent 2,612,994 Issued 7 october 1952 Classified Apparatus and Method, available on-line: http://www.adams1.com/patents/2612994.pdf
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1. US Patent 2,612,994 Issued 7 october 1952 Classified Apparatus and Method, available on-line: http://www.adams1.com/patents/2612994.pdf  
  
2. Alan G. Robinson, Sam Stern: Corporate creativity: how innovation and improvement actually happen, Berrett-Koehler Publishers (January 1, 1997) ISBN: 9781576750094, chapter entitled “Self-Initiated Activity”.
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2. Alan G. Robinson, Sam Stern: Corporate creativity: how innovation and improvement actually happen, Berrett-Koehler Publishers (January 1, 1997) ISBN: 9781576750094, chapter entitled “Self-Initiated Activity”.  
  
== What features or characteristics set this work apart from similar achievements?  ==
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== Features or characteristics set this work apart from similar achievements?  ==
  
 
Prior to the invention of barcodes, automated registration of components and goods was largely unavailable. Designs proposed earlier for such purposes including punch cards were too expensive and cumbersome. Tedious manual processes based on tags that were human read and recorded were the most common alternative before the barcode came into common use. The extremely low costs associated with the printing of barcodes (in the order of 0.5 cents) and its conformability were also features that set the barcode so apart from competing technologies that led to its success and universal adoption.  
 
Prior to the invention of barcodes, automated registration of components and goods was largely unavailable. Designs proposed earlier for such purposes including punch cards were too expensive and cumbersome. Tedious manual processes based on tags that were human read and recorded were the most common alternative before the barcode came into common use. The extremely low costs associated with the printing of barcodes (in the order of 0.5 cents) and its conformability were also features that set the barcode so apart from competing technologies that led to its success and universal adoption.  
  
== Please attach a letter in English, or with English translation, from the site owner giving permission to place IEEE milestone plaque on the property.  ==
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== Letter from the site owner giving permission to place IEEE milestone plaque on the property.  ==
  
 
''The letter is necessary in order to process your nomination form. Click the Attachments tab to upload your letter.''  
 
''The letter is necessary in order to process your nomination form. Click the Attachments tab to upload your letter.''  
  
 
[[Media:Dean_letter.pdf]]
 
[[Media:Dean_letter.pdf]]

Latest revision as of 20:29, 4 April 2012


Docket Number: 2009-06

Proposal Link: http://www.ieeeghn.org/wiki/index.php/Milestone-Proposal:Birthplace_of_the_Bar_Code,_1948

Birthplace of the Barcode, 1948


In an attempt to automate the reading of product information in a local grocery store, Bernard Silver and Norman Joseph Woodland at the Drexel Institute of Technology developed a solution that became the ubiquitous Barcode Identification System. Patented in 1952, the Barcode has become a key technology for product identification and inventory control in industry and daily life.

Historic significance of this work: its importance to the evolution of electrical and computer engineering and science and its importance to regional/national/international development.

At the period of its conception, there were no simple mechanisms that could code data in a way that would make it machine readable, and no technology that could scan images on-the-fly and extract useful information from them. Moreover computing infrastructure that can support the data storage and processing requirements associated with mass scale inventory tracking and control was non-existent. The barcode technology served to invent some of these components including optical readers, and in the process of adapting other components towards its own cause, helped improve these supporting technologies. Consequently, simultaneous efforts in the many areas of electrical and computer engineering such as machine vision, signal processing, data representation, coding, error correction, data storage, data security and database design and management were required to implement the barcode technology. This eventually contributed immensely towards the development in those areas.

Barcodes revolutionized the way logistics of goods and inventories were organized and managed, and provided a robust and economically feasible solution for inventory management and tracking across regional, national and international borders. It has become an ubiquitous technology to find applications in every imaginable sector ranging from aerospace, to healthcare to retail to service industries. Due to its applicability in any application that requires a multitude of objects to be tracked and managed, the barcode technology has been universally adopted across the entire globe.

Selected References:

1. US Patent 2,612,994 Issued 7 october 1952 Classified Apparatus and Method, available on-line: http://www.adams1.com/patents/2612994.pdf

2. Alan G. Robinson, Sam Stern: Corporate creativity: how innovation and improvement actually happen, Berrett-Koehler Publishers (January 1, 1997) ISBN: 9781576750094, chapter entitled “Self-Initiated Activity”.

Features or characteristics set this work apart from similar achievements?

Prior to the invention of barcodes, automated registration of components and goods was largely unavailable. Designs proposed earlier for such purposes including punch cards were too expensive and cumbersome. Tedious manual processes based on tags that were human read and recorded were the most common alternative before the barcode came into common use. The extremely low costs associated with the printing of barcodes (in the order of 0.5 cents) and its conformability were also features that set the barcode so apart from competing technologies that led to its success and universal adoption.

Letter from the site owner giving permission to place IEEE milestone plaque on the property.

The letter is necessary in order to process your nomination form. Click the Attachments tab to upload your letter.

Media:Dean_letter.pdf