Milestone-Proposal:TPC-1 System: Difference between revisions

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|a11=Yes
|a11=Yes
|a3=1964
|a3=1964
|a1=Transpacific Cable No.1 (TPC-1) Systems, 1964
|a1=The First Transpacific Cable System (TPC-1), 1964
|plaque citation=At this site,the first Transpacific Undersea Coaxial Telephone cable linking Japan, Hawaii and the USA was landed. This joint project between American Telephone and Telegraph, Hawaiian Telephone Company, and Kokusai Denshin Denwa was inaugurated on 19 June 1964 by President Lyndon B Johnson and Prime Minister Hayato Ikeda, as they exchanged a congratulatory telephone call on the completion of a bridge between Asia and America.
|plaque citation=The first transpacific undersea coaxial telephone cable linking Japan, Hawaii, and the U.S. mainland was completed in 1964. President Lyndon B. Johnson and Prime Minister Hayato Ikeda inaugurated this communications link on 19 June 1964. This joint project involving American Telephone and Telegraph, Hawaiian Telephone Company, and Kokusai Denshin Denwa improved global communication and contributed to deep water submarine cable technologies.
|a2b=IEEE Tokyo
|a2b=IEEE Tokyo and Hawaii Sections
|IEEE units paying={{IEEE Organizational Unit Paying
|IEEE units paying={{IEEE Organizational Unit Paying
|Unit=IEEE Tokyo
|Unit=IEEE Tokyo Section
|Senior officer name=Toshitaka TSUDA
|Senior officer email=tokyosec@ieee-jp.org
}}{{IEEE Organizational Unit Paying
|Unit=IEEE Hawaii Section
|Senior officer name=John Ogawa Borland
|Senior officer email=JohnOBorland@aol.com
}}
}}
|IEEE units arranging={{IEEE Organizational Unit Arranging
|IEEE units arranging={{IEEE Organizational Unit Arranging
|Unit=IEEE Tokyo
|Unit=IEEE Tokyo Section
|Senior officer name=Toshitaka TSUDA
|Senior officer email=tokyosec@ieee-jp.org
}}{{IEEE Organizational Unit Arranging
|Unit=IEEE Hawaii Section
|Senior officer name=John Ogawa Borland
|Senior officer email=JohnOBorland@aol.com
}}
}}
|IEEE sections monitoring={{IEEE Section Monitoring
|IEEE sections monitoring={{IEEE Section Monitoring
|Section=IEEE Tokyo
|Section=IEEE Tokyo Section
|Section chair name=Toshitaka TSUDA
|Section chair email=tokyosec@ieee-jp.org
}}{{IEEE Section Monitoring
|Section=IEEE Hawaii Section
|Section chair name=John Ogawa Borland
|Section chair email=JohnOBorland@aol.com
}}
}}
|Milestone proposers={{Milestone proposer
|Milestone proposers={{Milestone proposer
|Proposer name=IEEE Tokyo
|Proposer name=Masakuni KUWAZURU
|Proposer email=ma-kuwazuru@kddi.com
}}
}}
|a2a=Yamanishi 35, Ninomiya-Machi, Kanagawa, JAPAN
|a2a=[1] KDDI Corporation, Garden Air Tower, 3-10-10, Iidabashi, Chiyoda-ku, Tokyo, 102-8460 JAPAN (coordinates: 35.700463, 139.750537)
|a7=The site is where the "TPC-1 Systems" was landed in Japan during its operation. Other telecommunication submarine cables were also landed at this site.  Operation of this site was ceased in the year 2012. TPC-1 cable was already removed.
 
|a8=The building "Ninomiya Cable Landign Station" is not in use now, but still exists as of today (December 2013), but will be removed in near future.
[2] Hawaiian Telcom, 1177 Bishop Street, Honolulu, Hawaii, 96822 U.S.A. (coordinates: 21.309688, -157.859081)
|mounting details=The plaque is to be mounted at a corner of the site (the open ground).
|a7=[1] The site in Japan is the corporate building of KDDI (the successor of Kokusai Denshin Denwa Co., Ltd., Japanese party of TPC-1 System).
|a9=The site is not used as Cable Landing Station, but is used for mobile system facilities. The site is surrounded by fences.  The visitors can access with prior appointment to KDDI (International Network Department, +81 3 6678 0800).
 
|a10=KDDI Corporation
[2] The site in Hawaii is the corporate building of Hawaiian Telcom (the successor of Hawaiian Telephone Company, Hawaiian party of TPC-1 System).
|permission letter=To be arranged
|a8=[1] The original building of "Ninomiya Cable Landign Station" still exists, but is no longer used (as of January 2014), and will be removed in the near future. Therefore, the plaque is to be placed at the building of KDDI Headquarter.
|support letter=To be arranged
 
|a4="TPC-1 Systems" was the first submarine telephone cables connecting the North America and Asia with the length of longer than 10,000km in total by applying the state of the art technology, SD cable system, which was developed by the Bell Laboratory of AT&T. TPC-1 Systems started its operation on 19th June 1964 with the congratulatory speeches of the President Lyndon B Johnson of USA and the Prime Minister Hayato Ikeda of Japan as the important national project of USA and Japan. It has contributed to closer relationship and to the mutual development in culture and economy between USA and Japan. TPC-1 Systems also triggered the rapid development of the submarine telephone cable network in Eastern Asia, providing a big communication capacity between Eastern Asia and USA/Europe.  
[2] The original building in Hawaii no longer exists.
TPC-1 Systems was composed of three segments; 1) TPC-1 connecting Japan with Hawaii via Guam, Midway and Wake, 2) HAW-1 and HAW-2 connecting Hawaii and main land USA and 3) Guam-Philippine Cable, the branch of TPC-1. TPC-1 Systems was cross connected at Hawaii with COMPAC, the British Commonwealth cable linking Canada, New Zeeland and Australia. TPC-1 Systems and COMPAC formed the Pan Pacific coaxial submarine cable network.
|mounting details=[1] The plaque is to be placed where the visitors can access.
TPC-1 Systems was jointly constructed by AT&T, HTC and KDD and started its operation in June, 1964and were completed in December, 1964 by joining of Guam-Philippine Cable. Since then, TPC-1 Systems was in operation more than a quarter century and will have 50 years anniversary in 2014.
 
The quality of telephone circuit of the longest multi links through TPC-1 Systems, land cables in North American Continent and submarine cables in Atlantic Ocean was proven to satisfy the CCITT recommendation as the first time. The technology developed in SD cable system covers the dynamics of the cable in the sea, the machinery on board a cable ship and methodology of cable lay and repair, which became de facto standard of the cable lay and repair methodology. The technology developed in TPC-1 Systems has become the foundation of the construction and maintenance for the current fiber optic submarine cable used for international telecommunication today.
[2] The plaque is to be placed where the visitors can access.
|a6=The extremely high reliability was necessary for the repeater especially for the vacuum tube in it, which amplifies the transmission signal in tandem. The requirement of high reliability was achieved by means of the quality control developed by Bell Laboratory and has been proved in long operation of TPC-1 Systems. The quality control methodology used in SD systems was succeeded to current fiber optic submarine cable systems. TPC-1 was necessary to cross the Mariana trench and to be laid on complicated feature of the sea floor along the trenches. Scientists on ocean floor of USA and Japan jointly examined the hydrographic survey data obtained by Japanese Oceanography Service and determined the safe and stable cable route in the region. The knowledge established through coordination between the academic field and the business field has contributed to the planning of the following trans-ocean submarine cable projects.
|a9=[1] The plaque site is within KDDI Headquarter, and is under the propoer security control.  The visitors can access with prior appointment to KDDI (International Network Department, +81 3 6678 0800).
|a5=In order to satisfy the need for the stable telephone communication between Eastern Asia and USA/Europe in building a new world order after the second world war, USA and Japan agreed to construct TPC-1 Systems as the national project for both countries and AT&T, HTC and KDD signed the TPC-1 Construction and Maintenance Agreement in February 1962. After the completion of the construction, the telephone traffic through TPC-1 Systems grew more than 50 percent every year, which showed the big contribution of TPC-1 Systems to the social and economic activities between Asia and USA/Europe. The telecommunication development in quality and quantity introduced by TPC-1 Systems, together with the development in transportation, drastically enhanced the inter-continents activities in community exchange and import/export. This drastic increase showed the potential huge growth in telecommunication traffic between Eastern Asia and USA/Europe and accelerated the construction of the submarine cable networks in East Asia and South East Asia, which subsequently contributed in harmonizing Eastern Asia and USA/Europe. AT&T and KDD enhanced coordination in implementation of TPC-1 Systems. For example, the considerably large part of the SD cable and some telecommunication facilities, such as channel banks, echo suppressor, international telephone exchange switch for TPC-1 Systems were developed and manufactured in Japan under the co-supervision of AT&T and KDD.
 
|references=To be arranged.
[2] The plaque is within HT Headquarter, and is under the proper security control.  The visitors can access at the normal business hour.
(1) BSTJ (Bell Systems Technical Journal)
|a10=[1] KDDI Corporation (KDDI)
(2) KDD Technical Journal (in Japanese)
 
|supporting materials=To be arranged.
[2] Hawaiian Telcom (HT)
(1) TPC-1 C&MA
|permission letter=TPC-1 IEEE OwnerLetters.pdf
(2) HAW-2 Agreement
|support letter=TPC-1 IEEE SectionChairLetters.pdf
|submitted=No
|a4=The Transpacific Cable System No.1 “TPC-1” was the first submarine telephone cable connecting North America and Asia with a total length over 10,000km. TPC-1 became operational on 19th June 1964 with the congratulatory speeches of President Lyndon B. Johnson of U.S.A. and Prime Minister Hayato Ikeda of Japan noting the importance of the project for the U.S.A. and Japan. It has contributed to a closer relationship and to the mutual development in culture and economy between U.S.A. and Japan. It also triggered the rapid development of submarine telephone cable networks in Eastern Asia, providing large communications capacity between Eastern Asia and U.S.A./Europe. TPC-1 was a US$83Million project, which was jointly constructed by AT&T, HTC and KDD, by applying the state of the art technology (“SD” type cable system design), developed by Bell Laboratories of AT&T, following previous SA & SB designs. A newly established Japanese company, Ocean Cable Company (OCC), also manufactured some portions of the submarine cable under AT&T’s supervision. TPC-1 was composed of three cable networks; 1) TPC-1 connecting Japan with Hawaii via Guam, Midway and Wake, 2) HAW-1 and HAW-2 connecting Hawaii and the mainland U.S.A. and 3) Guam-Philippines Cable, a branch of TPC-1. TPC-1 was also cross connected at Hawaii with COMPAC, the British Commonwealth cable linking Canada, New Zealand and Australia. TPC-1 and COMPAC formed the Pan Pacific coaxial submarine cable network. TPC-1 began operation in June, 1964, and was followed by joining of Guam-Philippines Cable in December, 1964. Since then, TPC-1 was in operation more than a quarter century, and will achieve its 50 year anniversary in 2014. The quality of telephone circuits of the longest multi links through TPC-1, land cables on the North American Continent and submarine cables in Atlantic Ocean was proven to satisfy the CCITT voice quality recommendations the very first time. The technology developed in the SD type cable covers the implementation of cables undersea.  This included machinery on board a cable ship and methodologies of cable laying and repairing, which became the standard going forward.   The technology developed in TPC-1 continues to be the foundation for the construction and maintenance in current fiber optic submarine cables used for international telecommunication today.
|a6=Extremely high reliability was necessary for the repeaters due to the vacuum electron tubes contained inside, which amplify the transmission signal in tandem. The requirement of high reliability was achieved by means of the quality control developed by Bell Laboratories and proven by the system’s longevity. The quality control methodology used in SD type cable systems was succeeded by the fiber optic submarine cable systems in service today. In addition, it was necessary for TPC-1 to cross the Mariana trench and to be deployed on the complicated features of the sea floor. Ocean floor geologists from U.S.A. and Japan jointly examined the hydrographic survey data obtained by Japanese Oceanography Service and determined a safe and stable cable route in the region. This knowledge established through coordination between the academic field and the business field contributed to the planning of future trans-ocean submarine cable projects.
|a5=In order to satisfy the need for stable telephone communication between Eastern Asia and the U.S.A./Europe, establishing a new world order after the second world war, the U.S.A. and Japan agreed to construct TPC-1 as a national project for both countries and, AT&T, HTC and KDD signed the "TPC-1 Construction and Maintenance Agreement (C&MA)" in February 1962. TPC-1 improved the voice communication between Asia and the U.S.A./Europe from the previous media, interruptible and unstable "short wave radio". After the completion of the construction, the telephone traffic through TPC-1 grew more than 50 percent every year, which demonstrated the significant contribution and importance of TPC-1 to the social and economic activities between Asia and the U.S.A./Europe. The telecommunication development in quality and quantity introduced by TPC-1, together with the development in transportation, drastically enhanced the inter-continents activities in community exchange and import/export. This increase showed the potential growth in telecommunication traffic between Eastern Asia and the U.S.A./Europe, which accelerated the construction of submarine cable networks in East Asia and South East Asia (such as JASC, China-Japan, Korea-Japan, Taiwan-Okinawa, OLUHO, ASEAN cables with the total lengths more than 10,000km), and subsequently contributed to the harmony between Eastern Asia and the U.S.A./Europe. The significant  part of the SD cable, manufactured by OCC, and some telecommunication equipment, such as channel banks, echo suppressors, international telephone exchange switches for TPC-1, were developed and manufactured in Japan under the co-supervision of AT&T and KDD.  AT&T, HTC and KDD’s enhanced coordination and collaboration in implementing TPC-1, lead to the successful achievement of TPC-1 and subsequent future cable systems active today.
|references=(1)Article on Japan Times (June 20, 1964) [attached].
(2)Article on New York Times (June 19, 1964) [attached].
(3)Article on Japan Times (February 16, 1962) [attached].  
(4)TPC-1 Construction & Maintenance Agreement [attached].
(5)"The SD Submarine Cable System", Bell System Technical Journal, July 1964.
http://www3.alcatel-lucent.com/bstj/vol43-1964/articles/bstj43-4-1155.pdf
(6) "A Cable Laying Facility", Bell System Technical Journal, July1964.
http://www3.alcatel-lucent.com/bstj/vol43-1964/articles/bstj43-4-1367.pdf
|supporting materials=(7)TPC-1 Movie in Japanese (English version is availabel by DVD).
http://www.kagakueizo.org/movie/industrial/78/
(8)"The Deep Sea Cables", Western Electric, 1963 [attached].
|submitted=Yes
}}
}}
<br />[[Media:TPC-1 JapanTimes(19640620).pdf|TPC-1 JapanTimes(19640620).pdf]]<br />[[Media:(2) TPC-1 NewYorkTimes(19640619).pdf|(2) TPC-1 NewYorkTimes(19640619).pdf]]<br />[[Media:(3) TPC-1 JapanTimes(19620216).pdf|(3) TPC-1 JapanTimes(19620216).pdf]]<br />[[Media:(4) TPC-1 C&MA(19620214).pdf|(4) TPC-1 C&MA(19620214).pdf]]<br />[[Media:TheDeepSeaCables(WesternElectric).pdf|TheDeepSeaCables(WesternElectric).pdf]]

Latest revision as of 19:24, 1 May 2014

Docket #:2013-25

This proposal has been submitted for review.


Is the achievement you are proposing more than 25 years old? Yes

Is the achievement you are proposing within IEEE’s fields of interest? (e.g. “the theory and practice of electrical, electronics, communications and computer engineering, as well as computer science, the allied branches of engineering and the related arts and sciences” – from the IEEE Constitution) Yes

Did the achievement provide a meaningful benefit for humanity? Yes

Was it of at least regional importance? Yes

Has an IEEE Organizational Unit agreed to pay for the milestone plaque(s)? Yes

Has an IEEE Organizational Unit agreed to arrange the dedication ceremony? Yes

Has the IEEE Section in which the milestone is located agreed to take responsibility for the plaque after it is dedicated? Yes

Has the owner of the site agreed to have it designated as an Electrical Engineering Milestone? Yes


Year or range of years in which the achievement occurred:

1964

Title of the proposed milestone:

The First Transpacific Cable System (TPC-1), 1964

Plaque citation summarizing the achievement and its significance:

The first transpacific undersea coaxial telephone cable linking Japan, Hawaii, and the U.S. mainland was completed in 1964. President Lyndon B. Johnson and Prime Minister Hayato Ikeda inaugurated this communications link on 19 June 1964. This joint project involving American Telephone and Telegraph, Hawaiian Telephone Company, and Kokusai Denshin Denwa improved global communication and contributed to deep water submarine cable technologies.

In what IEEE section(s) does it reside?

IEEE Tokyo and Hawaii Sections

IEEE Organizational Unit(s) which have agreed to sponsor the Milestone:

IEEE Organizational Unit(s) paying for milestone plaque(s):

Unit: IEEE Tokyo Section
Senior Officer Name: Senior officer name masked to public

Unit: IEEE Hawaii Section
Senior Officer Name: Senior officer name masked to public

IEEE Organizational Unit(s) arranging the dedication ceremony:

Unit: IEEE Tokyo Section
Senior Officer Name: Senior officer name masked to public

Unit: IEEE Hawaii Section
Senior Officer Name: Senior officer name masked to public

IEEE section(s) monitoring the plaque(s):

IEEE Section: IEEE Tokyo Section
IEEE Section Chair name: Section chair name masked to public

IEEE Section: IEEE Hawaii Section
IEEE Section Chair name: Section chair name masked to public

Milestone proposer(s):

Proposer name: Proposer's name masked to public
Proposer email: Proposer's email masked to public

Please note: your email address and contact information will be masked on the website for privacy reasons. Only IEEE History Center Staff will be able to view the email address.

Street address(es) and GPS coordinates of the intended milestone plaque site(s):

[1] KDDI Corporation, Garden Air Tower, 3-10-10, Iidabashi, Chiyoda-ku, Tokyo, 102-8460 JAPAN (coordinates: 35.700463, 139.750537)

[2] Hawaiian Telcom, 1177 Bishop Street, Honolulu, Hawaii, 96822 U.S.A. (coordinates: 21.309688, -157.859081)

Describe briefly the intended site(s) of the milestone plaque(s). The intended site(s) must have a direct connection with the achievement (e.g. where developed, invented, tested, demonstrated, installed, or operated, etc.). A museum where a device or example of the technology is displayed, or the university where the inventor studied, are not, in themselves, sufficient connection for a milestone plaque.

Please give the address(es) of the plaque site(s) (GPS coordinates if you have them). Also please give the details of the mounting, i.e. on the outside of the building, in the ground floor entrance hall, on a plinth on the grounds, etc. If visitors to the plaque site will need to go through security, or make an appointment, please give the contact information visitors will need.

[1] The site in Japan is the corporate building of KDDI (the successor of Kokusai Denshin Denwa Co., Ltd., Japanese party of TPC-1 System).

[2] The site in Hawaii is the corporate building of Hawaiian Telcom (the successor of Hawaiian Telephone Company, Hawaiian party of TPC-1 System).

Are the original buildings extant?

[1] The original building of "Ninomiya Cable Landign Station" still exists, but is no longer used (as of January 2014), and will be removed in the near future. Therefore, the plaque is to be placed at the building of KDDI Headquarter.

[2] The original building in Hawaii no longer exists.

Details of the plaque mounting:

[1] The plaque is to be placed where the visitors can access.

[2] The plaque is to be placed where the visitors can access.

How is the site protected/secured, and in what ways is it accessible to the public?

[1] The plaque site is within KDDI Headquarter, and is under the propoer security control. The visitors can access with prior appointment to KDDI (International Network Department, +81 3 6678 0800).

[2] The plaque is within HT Headquarter, and is under the proper security control. The visitors can access at the normal business hour.

Who is the present owner of the site(s)?

[1] KDDI Corporation (KDDI)

[2] Hawaiian Telcom (HT)

A letter in English, or with English translation, from the site owner(s) giving permission to place IEEE milestone plaque on the property:

File:TPC-1 IEEE OwnerLetters.pdf

A letter or email from the appropriate Section Chair supporting the Milestone application:

File:TPC-1 IEEE SectionChairLetters.pdf

What is the historical significance of the work (its technological, scientific, or social importance)?

The Transpacific Cable System No.1 “TPC-1” was the first submarine telephone cable connecting North America and Asia with a total length over 10,000km. TPC-1 became operational on 19th June 1964 with the congratulatory speeches of President Lyndon B. Johnson of U.S.A. and Prime Minister Hayato Ikeda of Japan noting the importance of the project for the U.S.A. and Japan. It has contributed to a closer relationship and to the mutual development in culture and economy between U.S.A. and Japan. It also triggered the rapid development of submarine telephone cable networks in Eastern Asia, providing large communications capacity between Eastern Asia and U.S.A./Europe. TPC-1 was a US$83Million project, which was jointly constructed by AT&T, HTC and KDD, by applying the state of the art technology (“SD” type cable system design), developed by Bell Laboratories of AT&T, following previous SA & SB designs. A newly established Japanese company, Ocean Cable Company (OCC), also manufactured some portions of the submarine cable under AT&T’s supervision. TPC-1 was composed of three cable networks; 1) TPC-1 connecting Japan with Hawaii via Guam, Midway and Wake, 2) HAW-1 and HAW-2 connecting Hawaii and the mainland U.S.A. and 3) Guam-Philippines Cable, a branch of TPC-1. TPC-1 was also cross connected at Hawaii with COMPAC, the British Commonwealth cable linking Canada, New Zealand and Australia. TPC-1 and COMPAC formed the Pan Pacific coaxial submarine cable network. TPC-1 began operation in June, 1964, and was followed by joining of Guam-Philippines Cable in December, 1964. Since then, TPC-1 was in operation more than a quarter century, and will achieve its 50 year anniversary in 2014. The quality of telephone circuits of the longest multi links through TPC-1, land cables on the North American Continent and submarine cables in Atlantic Ocean was proven to satisfy the CCITT voice quality recommendations the very first time. The technology developed in the SD type cable covers the implementation of cables undersea. This included machinery on board a cable ship and methodologies of cable laying and repairing, which became the standard going forward. The technology developed in TPC-1 continues to be the foundation for the construction and maintenance in current fiber optic submarine cables used for international telecommunication today.

What obstacles (technical, political, geographic) needed to be overcome?

Extremely high reliability was necessary for the repeaters due to the vacuum electron tubes contained inside, which amplify the transmission signal in tandem. The requirement of high reliability was achieved by means of the quality control developed by Bell Laboratories and proven by the system’s longevity. The quality control methodology used in SD type cable systems was succeeded by the fiber optic submarine cable systems in service today. In addition, it was necessary for TPC-1 to cross the Mariana trench and to be deployed on the complicated features of the sea floor. Ocean floor geologists from U.S.A. and Japan jointly examined the hydrographic survey data obtained by Japanese Oceanography Service and determined a safe and stable cable route in the region. This knowledge established through coordination between the academic field and the business field contributed to the planning of future trans-ocean submarine cable projects.

What features set this work apart from similar achievements?

In order to satisfy the need for stable telephone communication between Eastern Asia and the U.S.A./Europe, establishing a new world order after the second world war, the U.S.A. and Japan agreed to construct TPC-1 as a national project for both countries and, AT&T, HTC and KDD signed the "TPC-1 Construction and Maintenance Agreement (C&MA)" in February 1962. TPC-1 improved the voice communication between Asia and the U.S.A./Europe from the previous media, interruptible and unstable "short wave radio". After the completion of the construction, the telephone traffic through TPC-1 grew more than 50 percent every year, which demonstrated the significant contribution and importance of TPC-1 to the social and economic activities between Asia and the U.S.A./Europe. The telecommunication development in quality and quantity introduced by TPC-1, together with the development in transportation, drastically enhanced the inter-continents activities in community exchange and import/export. This increase showed the potential growth in telecommunication traffic between Eastern Asia and the U.S.A./Europe, which accelerated the construction of submarine cable networks in East Asia and South East Asia (such as JASC, China-Japan, Korea-Japan, Taiwan-Okinawa, OLUHO, ASEAN cables with the total lengths more than 10,000km), and subsequently contributed to the harmony between Eastern Asia and the U.S.A./Europe. The significant part of the SD cable, manufactured by OCC, and some telecommunication equipment, such as channel banks, echo suppressors, international telephone exchange switches for TPC-1, were developed and manufactured in Japan under the co-supervision of AT&T and KDD. AT&T, HTC and KDD’s enhanced coordination and collaboration in implementing TPC-1, lead to the successful achievement of TPC-1 and subsequent future cable systems active today.

References to establish the dates, location, and importance of the achievement: Minimum of five (5), but as many as needed to support the milestone, such as patents, contemporary newspaper articles, journal articles, or citations to pages in scholarly books. At least one of the references must be from a scholarly book or journal article.

(1)Article on Japan Times (June 20, 1964) [attached]. (2)Article on New York Times (June 19, 1964) [attached]. (3)Article on Japan Times (February 16, 1962) [attached]. (4)TPC-1 Construction & Maintenance Agreement [attached]. (5)"The SD Submarine Cable System", Bell System Technical Journal, July 1964. http://www3.alcatel-lucent.com/bstj/vol43-1964/articles/bstj43-4-1155.pdf (6) "A Cable Laying Facility", Bell System Technical Journal, July1964. http://www3.alcatel-lucent.com/bstj/vol43-1964/articles/bstj43-4-1367.pdf

Supporting materials (supported formats: GIF, JPEG, PNG, PDF, DOC): All supporting materials must be in English, or if not in English, accompanied by an English translation. You must supply the texts or excerpts themselves, not just the references. For documents that are copyright-encumbered, or which you do not have rights to post, email the documents themselves to ieee-history@ieee.org. Please see the Milestone Program Guidelines for more information.

(7)TPC-1 Movie in Japanese (English version is availabel by DVD). http://www.kagakueizo.org/movie/industrial/78/ (8)"The Deep Sea Cables", Western Electric, 1963 [attached].



TPC-1 JapanTimes(19640620).pdf
(2) TPC-1 NewYorkTimes(19640619).pdf
(3) TPC-1 JapanTimes(19620216).pdf
(4) TPC-1 C&MA(19620214).pdf
TheDeepSeaCables(WesternElectric).pdf