`
`45
`3
`
`69B2
`
`US011307
`
`a2) United States Patent
`US 11,307,369 B2
`do) Patent No.:
`Takano et al.
`Apr. 19, 2022
`(45) Date of Patent:
`
`(54) ULTRA-SMALL FORM FACTOR OPTICAL
`CONNECTORS USED AS PART OF A
`RECONFIGURABLE OUTER HOUSING
`
`(56)
`
`References Cited
`U.S. PATENT DOCUMENTS
`
`(71) Applicant: Senko Advanced Components,Inc.,
`Marlborough, MA (US)
`
`(72)
`
`Inventors: Kazuyoshi Takano, Tokyo (JP); Jimmy
`Jun-Fu Chang, Worcester, MA (US)
`
`(73) Assignee: Senko Advanced Components, Inc.,
`Marlborough (MA)
`
`CA
`CA
`
`681,132 A
`3,721,945 A
`
`8/1901 Norton
`3/1973 Hults
`
`(Continued)
`
`FOREIGN PATENT DOCUMENTS
`
`2495693 Al
`2495693 Al
`
`4/2004
`4/2004
`
`(Continued)
`
`
`
`OTHER PUBLICATIONS
`
`(*) Notice:
`
`Subject to any disclaimer, the term of this
`patent is extended or adjusted under 35
`U.S.C. 154(b) by 0 days.
`
`(21) Appl. No.: 17/370,057
`
`(22)
`
`Filed:
`
`Jul. 8, 2021
`
`(65)
`
`Prior Publication Data
`
`US 2021/0373262 Al
`
`Dec. 2, 2021
`
`Related U.S. Application Data
`
`(63) Continuation of application No. 17/327,197, filed on
`May 21, 2021, which is a continuation of application
`(Continued)
`
`(51)
`
`(2006.01)
`(2006.01)
`
`Int. Cl.
`GO2B 6/42
`GO02B 6/38
`(52) U.S. Cl
`CPC oo. G02B 6/4292 (2013.01); G02B 6/387
`(2013.01); G02B 6/3825 (2013.01);
`(Continued)
`(58) Field of Classification Search
`None
`See application file for complete search history.
`
`International Search Report and. Written Opinion; Application No.
`PCT/US2018/042202, dated Dec. 7, 2018, pp. 17.
`(Continued)
`
`Primary Examiner — Tina M Wong,
`
`(57)
`
`ABSTRACT
`
`An optical connector holding one or more optical ferrule
`assembly is provided. The optical connector includes an
`outer body, an inner front body accommodating the one or
`more optical ferrule assembly, ferrule springs for urging the
`optical ferrules towards a mating receptacle, and a back
`body for supporting the ferrule springs. The outer body and
`the inner front body are configured such that four optical
`ferrule assembly are accommodated in a small form-factor
`pluggable (SFP) transceiver footprint or eight optical ferrule
`assembly are accommodated in a quad small form-factor
`pluggable (QSFP) transceiver footprint. A receptacle can
`hold one or more connector inner bodics forming a single
`boot for all the optical fibers of the inner bodies.
`
`40 Claims, 82 Drawing Sheets
`
`7 800
`
`300-
`
`~‘
`
`
`
`
`
`eoV . \
`SESah)
`.
`| ee SAY
`eebe \F
`
`
`US Conec EX1001
`
`IPR2024-001 15
`U.S. Patent No. 11,307,369
`
`US Conec EX1001
`IPR2024-00115
`U.S. Patent No. 11,307,369
`
`
`
`US 11,307,369 B2
`
`Page 2
`
`Related U.S. Application Data
`No. 17/090,855, filed on Nov. 5, 2020, which is a
`continuation of application No. 16/414,546, filed on
`May 16, 2019, now Pat. No. 10,859,778, which is a
`continuation of application No. 16/388,053, filed on
`Apr. 18, 2019, now Pat. No. 11,169,338, which is a
`continuation of application No. 16/035,691, filed on
`Jul. 15, 2018, now Pat. No. 10,281,668.
`
`(60) Provisional application No. 62/588,276,filed on Nov.
`17, 2017, provisional application No. 62/549,655,
`filed on Aug. 24, 2017, provisional application No.
`62/532,710, filed on Jul. 14, 2017.
`
`(52) U.S. Cl.
`CPC. wee G02B 6/3893 (2013.01); G02B 6/3873
`(2013.01); GO2B 6/3878 (2013.01); GO2B
`6/4228 (2013.01)
`
`(56)
`
`References Cited
`U.S. PATENT DOCUMENTS
`
`4,150,790 A
`4,240,695 A
`4,327,964 A
`4,478,473 A
`4,762,388 A
`4,764,129 A
`4,840,451 A
`4,872,736 A
`4,979,792 A
`5,026,138 A
`5,031,981 A
`5,011,025 A
`5,041,025 A
`5,073,045 A
`D323,143 S
`5,101,463 A
`5,146,813 A
`5,159,652 A
`5,212,752 A
`5,265,181 A
`5,289,554 A
`5,315,679 A
`5,317,663 A
`5,321,784 A
`5,335,301 A
`5,348,487 A
`5,418,875 A
`5,444,806 A
`5,481,634 A
`5,506,922 A
`§,521,997 A
`5,570,445 A
`5,588,079 A
`5,602,951 A
`5,684,903 A
`5,687,268 A
`5,781,681 A
`5,845,036 A
`5,862,282 A
`5,915,987 A
`5,930,426 A
`5,937,130 A
`5,953,473 A
`5,956,444 A
`5,971,626 A
`6,041,155 A
`6,049,040 A
`6,095,862 A
`6,134,370 A
`6,178,283 B
`RE37,080 E
`6,206,577 B
`
`4/1979 Potter
`12/1980 Evans
`5/1982 Haesleyet al.
`10/1984 Frear
`8/1988 Tanakaetal.
`8/1988 Joneset al.
`6/1989 Sampson et al.
`10/1989 Myers etal.
`12/1990 Weber
`6/1991 Boudreau
`7/1991 Peterson
`8/1991 Haitmanek
`8/1991 Haitmanek
`12/1991 Abendschein
`1/1992 Ohkuraet al.
`3/1992 Cubukeiyan
`9/1992 Stanfill, Jr.
`10/1992 Grassin D’ Alphonse
`5/1993 Stephensonetal.
`11/1993 Chang
`2/1994 Cubukciyan ct al.
`5/1994 Baldwin
`5/1994 Beard et al.
`6/1994 Cubukciyan et al.
`8/1994 Newman etal.
`9/1994 Marazzi et al.
`5/1995 Nakano
`8/1995 de Marchietal.
`4/1996 Andersonetal.
`4/1996 Grois etal.
`5/1996 Rovenoltet al.
`10/1996 Chouet al.
`12/1996 Tanabeetal.
`2/1997 Shiota
`11/1997 Kyomasu etal.
`11/1997 Stephensonetal.
`7/1998 Manning
`12/1998 De Marchi
`1/1999 Matsuura.
`6/1999 Reed.
`7/1999 Harting
`8/1999 Amberg ct al.
`9/1999 Shimotsu
`9/1999 Dudaetal.
`10/1999 Knodell et al.
`3/2000 Anderson etal.
`4/2000 Bileset al.
`8/2000 Doye
`10/2000 Childerset al.
`1/2001 Weigel
`3/2001 Stephenson ei al.
`3/2001 Tall, III et al.
`
`7,594,766
`
`6,206,581
`6,227,717
`6,238,104
`6,240,228
`6,247,849
`6,250,817
`6,276,840
`6,318,903
`6,364,537
`6,379,052
`6,422,759
`6,450,695
`6,461,054
`6,471,412
`6,478,472
`6,485,194
`6,527,450
`6,530,696
`6,551,117
`6,565,262
`6,572,276
`6,579,014
`6,585,194
`6,634,796
`6,634,801
`6,648,520
`6,668,113
`6,682,228
`6,685,362
`6,695,486
`6,811,321
`6,817,272
`6,854,894
`6,869,227
`6,872,039
`6,935,789
`7,036,993
`7,052,186
`7,077 516
`7,090,407
`7,091,421
`7,111,990
`7,113,679
`533,504
`534,124
`7,150,567
`7,153,041
`7,198,409
`7,207,724
`1543, 146
`7,258,493
`7,261,472
`7,264,402
`7,281,859
`7,284,912
`D558,675
`7,315,682
`7,325,976
`7,325,980
`7,329,137
`7,347,634
`7,354,291
`7,331,718
`7,371,082
`7,387,447
`7,390,203
`D572,661
`7,431,604
`7,463,803
`7,465,180
`7,473,124
`7,510,335
`7,513,695
`7,534,128
`7,540,666
`7,561,775
`7,588,373
`7,591,595
`
`9/2
`
`3/2
`5/2
`s/2
`5/2
`6/2
`6/2
`8/2
`12
`4/2
`4/2
`7/2
`9/2
`10/2
`10/2
`11/2
`1/2
`3/2
`3/2
`4/2
`5/2
`6/2
`6/2
`72
`10/2
`10/2
`11/2
`12/2
`1/2
`2/2
`2/2
`11/2
`1/2
`2/2
`3/2
`3/2
`8/2
`5/2
`5/2
`72
`8/2
`8/2
`9/2
`9/2
`12/2
`12/2
`12/2
`12/2
`4/2
`4/2
`5/2
`8/2
`8/2
`9/2
`10/2
`10/2
`1/2
`1/2
`2/2
`2/2
`2/2
`3/2
`4/2
`5/2
`5/2
`6/2
`6/2
`72
`10/2
`12/2
`12/2
`1/2
`3/2
`4/2
`5/2
`6/2
`72
`9/2
`9/2
`
`Driscoll et al.
`Ott et al.
`Yamakawaet al.
`Chen
`Liu
`Lampert et al.
`Weiss
`Andrews
`Maynard
`de Jong
`Kevern
`Matsumoto
`Iwase
`Belenkiy et al.
`Anderson et al.
`Shirakawa
`Miyachi
`Ueda
`Poplawski etal.
`Childers
`Theis
`Melton et al.
`Brushwood
`de Jong
`Waldron et al.
`McDonaldetal.
`Togami
`Ralhnam etal.
`Burkholder et al.
`Falkenberg
`Schmalzigaug et al.
`Holland
`Yunkeret al.
`Del Grosso
`Bauset al.
`Gross,II] et al.
`Luther
`Bates
`Luther
`Melton et al.
`Kukila et al.
`Melton et al.
`Melton et al.
`Lee
`Taguchi
`Luther et al.
`Mineet al.
`Smith et al.
`Gurreri
`Chenet al.
`Milette
`Suzuki et al.
`Theuerkorn
`Muddetal.
`Suzuki et al.
`Chien et al.
`EnLinet al.
`Gurreri ct al.
`PepeMartin et al.
`Gunther et al.
`Caveneyet al.
`Yazaki et al.
`Zimmelet al.
`Muddet al.
`Muranoet al.
`En Lin et al.
`Waters et al.
`Codyet al.
`Kusudaet al.
`Briant
`Suet al
`Lin etal.
`Caveneyet al.
`Luther
`Lin etal.
`Salo
`Lue etal.
`Sasser etal.
`
`
`
`
`
`US 11,307,369 B2
`
`Page 3
`
`11/2002 Anderson etal.
`2002/0172467 Al
`References Cited
`(56)
`2002/0191919 Al=12/2002 Nolan
`U.S. PATENT DOCUMENTS
`2003/0053787 Al
`3/2003 Tee
`2003/0063862 Al
`4/2003 Fillion
`2003/0157825 Al
`8/2003 Kane
`1/2010 O’Riordenetal.
`7,641,398 B2
`2004/0052473 Al
`3/2004 Seo
`4/2010 Teo etal.
`7,695,199 B2
`2004/0109646 Al
`6/2004 Anderson
`4/2010 Miletle
`7,699,533 B2
`2004/0161958 Al
`6/2004 Togamiet al.
`5/2010 Lee
`7,712,970 Bl
`
`
`7,717,625 B2 2004/0136657 Al—7/2004 Ngo5/2010 Margolin
`
`7,824,113 B2 7/2004=Szilagvi et al.11/2010 Wong etal. 2004/0141693 Al
`
`
`
`7,837,395 B2 2004/0234209 Al=11/2004 Coxct al.11/2010 Lin et al.
`
`D641,708 S
`7/2011 Tammauchi
`2004/0247252 Al
`12/2004 Ehrenreich
`8,083,450 BL
`12/2011 Smith etal.
`2005/0036744 Al
`2/2005 Caveneyet al.
`8,152,385 B2
`4/2012 de Jong
`2005/0111796 Al
`5/2005 Mataseket al.
`8.186.890 B2
`5/2012 Lu
`2005/0135755 Al
`6/2005 Kianiet al.
`8.197.091 B2
`6/2012. Hsu et al.
`2005/0141817 Al
`6/2005 Yazakictal.
`$,202,009 B2
`6/2012 Lin et al.
`2006/0013539 Al
`1/2006 Thaler
`
`8,221,007 B2 2006/0076061 Al=4/2006 Bush7/2012 Peterhans
`
`8.251.733 B2
`8/2012 Wu
`2006/0089049 Al
`4/2006 Sedor
`8.267.595 B2
`9/2012 Lintal.
`2006/0127025 Al
`6/2006 Haberman
`8,270,796 B2
`9/2012 Nhep
`2006/0153503 Al
`7/2006 Suzuki
`$408,815 B2
`4/2013 Lin et al.
`2006/0160429 Al
`7/2006 Dawiedczyket al.
`8,414,196 B2
`4/2013 Lu
`2006/0193562 Al
`8/2006 Theuerkorn
`8,465,317 B2
`6/2013 Gniadckct al.
`2006/0269194 Al
`11/2006 Lutheretal.
`
`8,534,928 B2 2006/0274411 Al=12/2006 Yamauchi9/2013 Cooke
`
`8,550,728 B2
`10/2013 Takahashi
`2007/0025665 Al
`2/2007 Dean
`8,556,645 B2
`10/2013 Crain
`2007/0028409 Al
`2/2007 Yamada
`
`8,559,781 B2 2007/0079854 AL=4/2007 You10/2013 Childers
`
`8,622,634 B2
`1/2014. Arnold
`2007/0098329 Al
`6/2007 Shimoji et al.
`8,636,424 B2
`1/2014 Kuffelet al.
`2007/0149028 Al
`6/2007 ‘Yu etal.
`8,651,749 B2
`2/2014 Clovis etal.
`2007/0149062 Al
`6/2007 Longetal.
`8,676,022 B2
`3/2014 Jones
`2007/0230874 Al
`10/2007 Lin
`8,678,670 B2
`3/2014 Takahashi
`2007/0232115 Al
`10/2007 Burkeetal.
`8.727.638 B2
`5/2014 Lee
`2007/0243749 Al
`10/2007 Wu
`8757-304 B2
`6/2014 Katoh
`2008/0008430 Al
`‘1/2008 _Kewitsch
`8764308 B2
`7/2014.
`Inwin
`2008/0013896 Al
`1/2008 Salzberg et al.
`8.770.863 B2
`7/2014 Cookeet al.
`2008/0044137 Al
`2/2008 Luther etal.
`8,869,661 B2
`10/2014 Opstad
`2008/0056647 Al
`3/2008 Margolin et al.
`9,052,474 B2
`6/2015 Jiang
`2008/0064334 Al
`3/2008 Hamadi
`9,063,296 B2
`6/2015 Dong
`2008/0069501 Al
`3/2008 Muddet al.
`9,250,399 B2
`2/2016 Margolin etal.
`2008/0101757 Al
`5/2008 Lin etal.
`9,250,402 B2
`2/2016 Ishii et al.
`2008/0226237 Al
`9/2008 O’Rioreden et al.
`9,310,569 B2
`4/2016 Lee
`2008/0267566 Al
`10/2008 En Lin
`9,366,829 B2
`6/2016 Czosnowski
`2009/0028507 Al
`1/2009 Jonesetal.
`9A11,110 B2
`8/2016 Barnette, Jr. ct al.
`2009/0047818 Al
`2/2009 Irwin et al.
`9,448,370 B2
`9/2016 Xueet al.
`2009/0092360 Al
`4/2009 Lin et al.
`0.465.172 B2
`10/2016 Shih
`2009/0176401 Al
`7/2009 Gu
`9,494,744 B2
`11/2016 de Jong
`2009/0196555 Al
`8/2009 Lin etal.
`9,548,557 B2
`1/2017 Liu
`2009/0214162 Al
`8/2009 O’Riordenet al.
`9,551,842 B2
`1/2017 Theuerkorn
`2009/0220197 Al
`9/2009 Gniadek
`9,557,495 B2
`1/2017 Ravenetal.
`2009/0220200 Al
`9/2009 Wongetal.
`9,568,686 B2
`2/2017 Kewkeset al.
`2009/0222457 Al
`9/2009 Gallant
`
`9,581,768 Bl 2009/0290839 Al=11/2009 En Lin2/2017 Bacaet al.
`
`9,599,778 B2
`3/2017 Wong etal.
`2009/0290938 Al
`11/2009 Asaoka
`9,658,409 B2
`5/2017 Gniadek
`2010/0034502 Al
`2/2010 Luet al.
`9,678,283 Bl
`6/2017 Changetal.
`2010/0054668 Al
`3/2010 Nelson
`9,684,130 B2
`6/2017 Veatch etal.
`2010/0061069 Al
`3/2010 Cole
`9,684,136 B2
`6/2017 Clineet al.
`2010/0092136 Al
`4/2010 Nhep
`9,684,313 B2
`6/2017 Chajec
`2010/0220961 Al
`9/2010 de Jonget al.
`9,709,753 BL
`8/2017 Changetal.
`2010/0247041 Al
`9/2010. Szilagyi
`9,778,425 B2
`10/2017 Nguyen
`2010/0284656 Al
`11/2010 Morra
`9,829,644 B2
`11/2017 Nguyen
`2010/0322561 Al
`12/2010 Lin etal.
`9.829.645 B2
`11/2017. Good
`2011/0044588 Al
`2/2011 Larson et al.
`9.829.653 BI
`11/2017 Nishiguchi
`2011/0058773 Al
`3/2011 Peterhans
`9,869,825 B2
`1/2018 Bailey etal.
`2011/0131801 Al
`6/2011 Nelson et al.
`9,880,361 B2
`1/2018 Childers
`2011/0155810 Al
`6/2011 Taniguichi
`9,946,035 B2
`4/2018 Gustafson
`2011/0177710 Al
`7/2011 Tobey
`9,971,103 B2
`5/2018 de Jongetal.
`2011/0239220 Al
`9/2011 Gibson
`9,989,711 B2
`6/2018 Ott et al.
`2012/0099822 Al
`4/2012 Kuffel et al.
`10,031,296 B2
`7/2018 Good
`2012/0155810 Al
`6/2012 Nakagawa
`10,067,301 B2
`9/2018 Murray
`2012/0189260 Al
`7/2012 Kowalezyket al.
`10,107,972 B1
`10/2018 Gniadeket al.
`2012/0237177 Al
`9/2012 Minota
`10,114,180 B2
`10/2018 Suzic
`2012/0269485 Al
`10/2012 Haleyetal.
`10,146,011 B2
`12/2018 Nhep
`2012/030L080 Al
`[1/2012 Gniadek
`10,281,668 B2
`5/2019 Takanoet al.
`2012/0308183 Al
`12/2012 Irwin
`10,281,669 B2
`5/2019 Takanoet al.
`2012/0328248 Al
`12/2012 Larson
`
`vw GO2B 6/4292
`10,859,778 B2* 12/2020 Takano.....
`2013/0019423 Al
`1/2013 Srutkowski
`11,181,701 B2* 11/2021 Wong........
`o.. GO2B 6/3821
`2013/0071067 Al
`3/2013 Lin
`2002/0168148 Al
`11/2002 Gilliland
`2013/0089995 Al
`4/2013 Gniadek et al.
`
`
`
`US 11,307,369 B2
`
`Page 4
`
`
`
`(56) 19507669 Al—-9/1996References Cited DE
`
`
`DE
`202006011910 UL
`3/2007
`DE
`U.S. PATENT DOCUMENTS
`102006019335 Ul
`(0/2007
`EP
`1074868 Al
`2/2001
`EP
`1074868 Al
`7/2001
`4/2013 Lin etal.
`2013/0094816 A
`
`
`
`2013/0101258 A 1211537 A2—6/20024/2013 Hikosaka EP
`2013/0121653 A
`5/2013 Shilamaetal.
`EP
`1211537 A3
`6/2002
`2013/0170797 A
`7/2013 Ott
`EP
`1245980 Al
`10/2002
`
`2013/0183012 A 1566674 A2—8/20057/2013 Lopez etal. EP
`
`
`2013/0216185 A
`8/2013 Klavuhn
`GB
`2111240 A
`6/1983
`2013/0259429 Al
`10/2013 Czosnowski etal.
`BP
`2000089059 A’
`3/2000
`2013/0308915 Al
`11/2013 Bull
`JP
`03752331 B2
`3/2006
`2013/0322825 A1* 12/2013 Cooke wien G02B 6/3831
`JP
`2009229545 A
`10/2009
`395/59
`JP
`2009276493 A
`11/2009
`JP
`04377820 B2
`12/2009
`JP
`2011027870 A
`2201
`JP
`2012053375 A
`3/2012
`KR
`20040028409 A
`4/2006
`KR
`2009005382 A
`1/2009
`KR
`200905382 U
`6/2009
`KR
`1371686 BL
`3/2014
`TW
`200821653 A
`5/2008
`Wo
`200179904 A2
`10/2001
`wo
`W02001079904 A2
`10/2001
`Wo
`2004027485 Al
`4/2004
`WO
`W02006007120 Al
`1/2006
`WO
`2008112986 Al
`9/2008
`wo
`2009135787 Al
`11/2009
`wo
`2010024851 AZ
`3/2010
`Wo
`2012136702 Al
`10/2012
`Wo
`2012162385 Al
`11/2012
`wo
`W02012162385 Al
`11/2012
`Wo
`2014028527 Al
`2/2014
`wo
`2014 1823ST AL
`11/2014
`Wo
`WO02015103783 Al
`7/2015
`wo
`2015191024 AL
`12/2015
`WO
`2016019993 Al
`2/2016
`WoO
`2016148741 Al
`9/2016
`wo
`W02019126333 Al
`6/2019
`
`1/2014 Lambourn etal.
`2014/0016901 A
`1/2014 Gniadek
`2014/0023322 A
`2/2014 Chang
`2014/0050446 A
`2/2014 Limbert
`2014/0056562 Al
`5/2014 ill etal.
`2014/0133808 Al
`6/2014 Veatch et al.
`2014/0169727 Al
`8/2014 Barnette, Jr. etal.
`2014/0219621 A
`8/2014 Cookeet al.
`2014/0226946 A
`8/2014 Kang
`2014/0241644 Al
`8/2014 Bringuieret al.
`2014/0241678 Al
`8/2014 Isenhour etal.
`2014/0241688 Al
`11/2014 Nguyenetal.
`2014/0334780 Al
`11/2014 Chang
`2014/0348477 Al
`1/2015 Chen
`2015/0003788 Al
`4/2015. Vanderwoud
`2015/0111417 Al
`6/2015 Lee
`2015/0177463 Al
`7/2015 Takahashi
`2015/0198766 Al
`W015. Lin
`5015/0212282 A
`8/2015 Lee
`2015/0241644 Al
`10/2015 Changelal.
`2015/0301294 Al
`11/2015 Takanoetal.
`2015/0331201 Al
`12/2015 Takanoetal.
`2015/0355417 Al
`12/2015 Chan
`2015/0370021 Al
`12/2015 Good et al.
`2015/0378113 Al
`5/2016 Takanoelal.
`2016/0131849 A
`5/2016 Dean, Jr. etal.
`2016/0139343 A
`6/2016 Banal, Jr. et al.
`2016/0161681 A
`6/2016 Tamura
`2016/0172852 A
`6/2016 Takano
`2016! 178852 A
`oeele Chaeet al
`sole’ Does “
`8/2016 Scki
`5016/0231512 A
`9/2016 Gniadek et al.
`2016/0259135 Al
`9/2016 Gniadek
`3016/0266326 A
`11/2016 Gniadek
`2016/0320572 A
`12/2016 Murray
`2016/0349458 Al
`12/2016 Jiang
`2016/0370545 A
`1/2017 Gniadek
`2017/0003458 A
`7/2017 Changetal.
`2017/0205587 A
`7/2017 Bailey
`2017/0205590 A
`7/2017 Takano et al.
`2017/0205591 A
`7/2017 Elenabaas
`2017/0212313 A
`yoy eae bal
`aoe ake AL
`amaca
`cf
`‘
`4sot Reemer et al.
`aoe creas “
`9/2017 Miura et al
`5017/0077080 A
`.
`sore. aeee ‘ . 7core Nguyen crete G02B 6/4246
`S018! 156988 A
`6/2018 Gnintek
`s018/ 172923 A
`6/2018 Bauco
`2018/0252872 A
`9/2018 Chen
`i
`aks
`solooocdiay tt
`opto Cen al
`2019/0204513 Al
`7/2019 Davidsonet al.
`
`
`
`
`
`al.
`
`
`OTHER PUBLICATIONS
`
`International Search Report and Written Opinion, Application No.
`PCT/US2019/013861, dated Apr. 8, 2019, pp. 15.
`Fiber Optic Connectors Tutorial, 2018, pp. 20.
`Fiber Optic Glossary, Feb. 29, 2016, pp. 93.
`“Fiber Optic Interconnect Solutions, Tactical Fiber Optical Con-
`nectors, Cables and Termini” 2006, Glenair, Inc., Glendale, Cali-
`fornia, www.mps-electronics.de, pp. 232.
`“Fiber Optic Products Catalog” Nov. 2007, Tyco Electronics Cor-
`poration, Harrisburg, Pennsylvania, www.ampnetconnect.com. pp.
`204.
`“Fiber Optic Connectors and Assemblies Catalog” 2009, Huber &
`Suhner Fiver Optics, Herisau, Switzerland, www.hubersuhner.com,
`pp. 104.
`PC'I/US2018/062406 International Search Report dated Mar. 18,
`2019.
`PC'L/US2018/062406 ‘he written Opinion dated Mar. 18, 2019.
`PC'L/US2018/062405 International Search Report dated Apr. 3,
`2019.
`BE-T17§2018/062405 The written Opinion dated Apr. 3, 2019.
`PCT/1B20 18/056 133 Written Opinion dated Jan. 3, 2019.
`PCY/IB/056133 Search Report dated Jan. 3, 2019.
`Final Office Action, U.S. Appl. No. 16/035,691, dated Feb. 11, 2019,
`pp. 8.
`Non-Final Office Action, U.S. Appl. No. 16/035,695, dated Sep. 28,
`2018, pp. 7.
`,
`-
`_
`International Search Report and Written Opinion, Application No.
`PCT/US/2018/042202, pp. 17, dated Dec. 7, 2018.
`International Search Report and Written Opinion, Application No.
`PCT/US19/24718, dated Jun. 26, 2019, pp. 7.
`ISR for PCT/US2019/013861, dated Apr. 8, 2019, 3 pages.
`WO for PCT/US2019/013861, dated Apr, 8, 2019, 11 pages.
`International Search Report and Written Opinion for Application
`No. PCT/US2018/62406 dated Mar. 18, 2019, 12, pages, United
`States.
`
`Q
`
`FOREIGN PATENT DOCUMENTS
`9836038 Y
`11/2006
`2936038 Y
`11/2006
`201383588 Y
`1/2010
`201383588 Y
`1/2010
`2026500189 U
`12/2013
`106997078
`8/2017
`
`CN
`CN
`CN
`CN
`CN
`CN
`
`
`
`US 11,307,369 B2
`Page 5
`
`(56)
`
`References Cited
`OTHER PUBLICATIONS
`
`
`
`International Search Report and Written Opinion for Application
`No. PCT/US2019/40700 dated Sep. 27, 2019, 12, pages, United
`States.
`International Search Report and Written Opinion for Application
`No. PCT/US2019/50895 dated Jan. 6, 2020,
`12, pages, United
`States.
`International Search Report and Written Opinion for Application
`No. PCT/US2019/50909 dated Dec. 17, 2019, 11, pages, United
`States.
`International Search Report and Written Opinion for Application
`No. PCT/US2019/56564 dated Jan. 14, 2020, 14, pages, United
`States.
`International Search Report and Written Opinion, Application No.
`PCT/US 19/46397, dated Nov. 12, 2019, pp. 6.
`International Search Report; PCT/US2018/042202 filed Jul. 16,
`2018, Applicant: Senko Advanced Components, Inc.
`International Preliminary Report on Patentability for PCT/US2019/
`022940 dated Oct. 1, 2020, 11 pages.
`Extended European Search Report and Written Opinion, Applica-
`tion No. 18832246.5, dated Mar. 15, 2021, pp. 6.
`
`* cited by examiner
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 1 of 82
`
`US 11,307,369 B2
`
`oat
`
`(uy40424)
`
`atDl
`
`(aayJog)
`
`WIS
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 2 of 82
`
`US 11,307,369 B2
`
`UUge i
`
`(My401d}
`
`Gay401g)
`
`OtSid
`
`aEDid
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 3 of 82
`
`US 11,307,369 B2
`
`@Z“DI
`
`W291
`
`(4yJoud)
`
`(hay4old)
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 4 of 82
`
`US 11,307,369 B2
`
`FIG,2D
`{PriorArt}
`FIG.ZC {PriorArt}
`
`208
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 5 of 82
`
`US 11,307,369 B2
`
`3041
`
`aan BA 393
`
`FIG.3
`
`aw
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 6 of 82
`
`US 11,307,369 B2
`
`6GFrrv\Ue)ae°qeetof?}‘f|“wtfoe
`opns-<Fee
`?a3.Sf(’OS
`x,“AQ\\ULMOGE
`aot“aven\
`907a?»a“
`
`eeeroz
`aeoe
`er
`
`P'Sid
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 7 of 82
`
`US 11,307,369 B2
`
`FIG.5
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 8 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 9 of 82
`
`US 11,307,369 B2
`
`
`
`my
`m
`
`aB
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 10 of 82
`
`US 11,307,369 B2
`
`BIO
`
`FIG.8
`
`800
`
`802
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 11 of 82
`
`US 11,307,369 B2
`
`FIG.9
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 12 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 13 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`ol
`
`¥IT‘Sid
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 14 of 82
`
`US 11,307,369 B2
`
`del
`
`o0zL
`
`‘Did
`10z1
`
`
`
`Vel“OW
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 15 of 82
`
`US 11,307,369 B2
`
`ET“Old
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 16 of 82
`
`US 11,307,369 B2
`
`
`
`jbes}
`
`1401
`
`FIG.14C
`
`
`
`
`
`FIG.14B
`
`
`
`FIG.14A
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 17 of 82
`
`US 11,307,369 B2
`
`1520 c Vi 8
`
`5
`o
`i.
`
`|
`\eaan
`\
`\
`4
`| \
`nl
`\\
`\
`\
`\
`VLA
`, i
`
`_™ 4 @
`NS \
`\
`ve
`\
`\ \
`\
`\
`1
`\
`LA
`\
`oy
`\
`\
`\ \
`\
`\
`,
`Vi
`
`4
`
`\
`
`S
`_ oN
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 18 of 82
`
`US 11,307,369 B2
`
`
`
`Zzsaasag
`
`Ose404
`
`BubySas\
`
`|
`8E91JS||
`Hog404|£9SNG4aasagieet
`WAifgol|
`
`$1“SHa
`
`|
`
`tJEAIB7UDILOOOti||j
`
`|dBMGRUDLOST
`
`SeesPoe
`
`i
`
`|98%44iABASTO
`
`seg,/HOLIAAS
`
`apnpoyw
`
`bert'69001
`
`[I
`
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 19 of 82
`
`US 11,307,369 B2
`
`:
`
`ajnpow
`
`HOLIAAS
`
`OOoF
`
`Jeniavunsy
`
`SpApow
`
`oor
`
` Janta2G,
`007 HOA?
`Ocor
`HOLUAAS/pow
`
`HMOLIAASfousreeid
`|00¥étolser
`a|npowOg4i4
`sesceseenseneentecs|ainpow— 900¥
`OoorHOLAAS
`
`SUL
`
`a00F:LMS
`
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 20 of 82
`
`US 11,307,369 B2
`
`
` FIG,184
`
`lec
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 21 of 82
`
`US 11,307,369 B2
`
`FIG,198
`
`1954
`
`
`
`
`
`
`
`FIG.19A
`
`
`
`FIG.19D
`
`FIG.19¢
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 22 of 82
`
`US 11,307,369 B2
`
`FIG.20
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 23 of 82
`
`US 11,307,369 B2
`
`214A
`
`FIG.
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 24 of 82
`
`US 11,307,369 B2
`
`FIG.218
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 25 of 82
`
`US 11,307,369 B2
`
`
`
`.2204
`
`2205
`
`ah:
`
`2207
`
`FIG.22
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 26 of 82
`
`US 11,307,369 B2
`
`
`
`FIG.23A
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 27 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 28 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 29 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`
`
`Wot“Oia
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 30 of 82
`
`US 11,307,369 B2
`
`FIG.25B
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 31 of 82
`
`US 11,307,369 B2
`
`Clee
`
`
`
`92°31d
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 32 of 82
`
`US 11,307,369 B2
`
`
`
`
`9ro
`
`x“~
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 33 of 82
`
`US 11,307,369 B2
`
` aa:
`
`I
`
`
`
`FIG.2868
`
`é
`
`!
`
` f
`
`ri
`
`<<
`™
`o
`
`\V
`
`e
`/ma
`/
`3s
`cl
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 34 of 82
`
`US 11,307,369 B2
`
`FIG.298
`
`
`
`
`
`FIG.298
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 35 of 82
`
`US 11,307,369 B2
`
`FIG.29C
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 36 of 82
`
`US 11,307,369 B2
`
`O62"Oi
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 37 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`2103
`
`FIG.29E
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 38 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 39 of 82
`
`US 11,307,369 B2
`
`ieOld
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 40 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`WZEOld
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 41 of 82
`
`US 11,307,369 B2
`
`u
`
`uM
`om
`rad
`ws
`
`a.
`Oo
`a
`
`ac
`
`tT
`-
`cS
`=
`™
`
`oo
`at
`
`~
`
`nSxfcs
`
`ca
`~~
`oy
`.
`
`AK
`
`ine
`
`oy
`
`ao
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 42 of 82
`
`US 11,307,369 B2
`
`tttittttttittttj
`
` OOTZOOT?
`
`Janney
`
`Ioocrctrrseteeendkin:
`
`scant
`easnccncanicnnernncennnntnnnannnannnnennnannennnncnnmcnae!
`
`VeeOlA
`
`rrr
`
`i
`
`PeeLCLLTTLLCOLECOOLAAA
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 43 of 82
`
`US 11,307,369 B2
`
`FIG.33B
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 44 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 45 of 82
`
`US 11,307,369 B2
`
`FIG.358
`
`FIG.354
`
`2135
`
`21106
`
`FIG,38¢
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 46 of 82
`
`US 11,307,369 B2
`
`\
`
`\
`
`\
`
`‘
`
`
`
`\
`\U
`:NYay
`ff
`7
`
`YN
`\
`
`2
`
`<
`o
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 47 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`
`
`
`
`
`if fe AON
`3?
`\ Whee
`pennod
`
`FIG.348
`
`
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 48 of 82
`
`US 11,307,369 B2
`
`FiG.37
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 49 of 82
`
`US 11,307,369 B2
`
`wy4a
`ma
`"
`
`FIG.38
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 50 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 51 of 82
`
`US 11,307,369 B2
`
`
`
`JOF“Old
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 52 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 53 of 82
`
`US 11,307,369 B2
`
`FIG.426
`
`FIG.42A
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 54 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 55 of 82
`
`US 11,307,369 B2
`
`a
`
`FIG.444
`
`Ko
`
`OP,
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 56 of 82
`
`US 11,307,369 B2
`
`fbr“Std
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 57 of 82
`
`US 11,307,369 B2
`
`FIG.44C
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 58 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 59 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 60 of 82
`
`US 11,307,369 B2
`
`
`
`4745
`
`“ a
`
`FIG.47
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 61 of 82
`
`US 11,307,369 B2
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 62 of 82
`
`US 11,307,369 B2
`
`4853
`
`
`
`
`
`FIG.49
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 63 of 82
`
`US 11,307,369 B2
`
`FIG.50
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 64 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 65 of 82
`
`US 11,307,369 B2
`
`|
`
`
`SaaS
`
`
`
`f||fe4|ty4fs
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 66 of 82
`
`US 11,307,369 B2
`
`=
`
`
`
`10310 i
`4
`\pr10302.1
`. Oo
`
`a le
`
`FIG. 53
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 67 of 82
`
`US 11,307,369 B2
`
`10 400
`
`FIG. 54
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 68 of 82
`
`US 11,307,369 B2
`
`10500
`
`10509 10513
`
`FIG.89
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 69 of 82
`
`US 11,307,369 B2
`
`
`
`FIG.96
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 70 of 82
`
`US 11,307,369 B2
`
`
`
`FIG. 47
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 71 of 82
`
`US 11,307,369 B2
`
`10803
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 72 of 82
`
`US 11,307,369 B2
`
`
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 73 of 82
`
`US 11,307,369 B2
`
`
`
`
`#
`
`ae
`K 101013
`
`1.01006
`
`;
`
`A?
`
`
`
`7
`4
`:
`ed
`4
`t3}
`
`oe
`a
`
`’
`
`c
`
`’.
`o
`Z
`
`101012
`
`10 1001
`
`FIG. 60
`
`101009
`
`
`
`
`L p
`
`re
`
`e
`
`10 1000
`
`101011
`
`%‘
`
`10 1003
`
`l \yf
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 74 of 82
`
`US 11,307,369 B2
`
`10 1100
`
`101114
`
`
`
`101106
`
`FIG. 61
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 75 of 82
`
`US 11,307,369 B2
`
`
`
`FIG. 62A
`
`
`
`
` FIG. 628
`
`FIG.620
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 76 of 82
`
`US 11,307,369 B2
`
` 101321
`
`10 1320
`
`
`
`
`
`
`
`
`
`FIG. 634
`
`101322
`
`101323 SAAAAT
`
`FIG. 638
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 77 of 82
`
`US 11,307,369 B2
`
`sorugo
`1006
`
`:
`Mai
`SWITCH
`
`10 1434
`
`101430
`
`401432
`
`101433
`
`sous 101436
`
`Server 1
`For 256
`
`( 256 Transceiver |
`
`Mini CS Simplex”
`
`
`
`
`
`
`
`Server 2
`
`
`!
`
`
`2 100G Transcelv
`
`
`
`
`
`
`sot
`
`4 fiber Zip
`
`
`
`256 Transceiver |
`
`
`Mini CS Duplex x2
`
`Mini CS Simplex3
`
`101437
`
`
`
`101438
`
`4 g4439
`
`Server 3
`
`For506
`
`:
`
`
`
`Min} CS Duplex
`
`FIG. 64
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 78 of 82
`
`US 11,307,369 B2
`
`
` ~~ Modul
`SWITCH
`
`
`
`
`
`
`
`
`SWITCH
`
`
`4y Mini CS Simplex a
`0G
`
`
`Module
`
`
`
`
`4006 Transceiver
`
`
`
`
`
`
`Module
`:
`3 SWITCH.
`
`CON
`
`
`
`
`2x Mini C5
`
`Simplex
`| 4006 Transceiver
`
`
`
`
`
`1x Mini CS Duplex
`
`
`davai
`CHAN
`ERR
`
`2:
`
`FIG. 65
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 79 of 82
`
`US 11,307,369 B2
`
`
`
`FIG. 664 FIG. 668
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 80 of 82
`
`US 11,307,369 B2
`
`
`
`FIG. 67A
`
`
`
`
`£2
`
`Prevents
`
`FIG. 67C
`
`
`
`FIG. 67B
`
`
`
`FIG. 67D
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 81 of 82
`
`US 11,307,369 B2
`
`
`
`FIG. 68A
`
`
`
` FIG. 688
`
`
`
`U.S. Patent
`
`Apr. 19, 2022
`
`Sheet 82 of 82
`
`US 11,307,369 B2
`
`Take off
` Min CS Dunex
`
`
`
`
`
`
`connector
`
`AgnetaeatenEHRCKRISCRSRRN
`ORIN
`“
`SAS
`“eastertetenantsoNsehGN IRRSSSAaNANSNARES
`$
`
`‘axa C8 BODY
`
`wnt CS
`
`connector
`
`Simplex
`housing
`
`FIG. 69
`
`
`
`US 11,307,369 B2
`
`1
`ULTRA-SMALL FORM FACTOR OPTICAL
`CONNECTORS USED AS PART OF A
`RECONFIGURABLE OUTER HOUSING
`
`
`CROSS-REFERENCE TO RELATED
`APPLICATIONS
`
`
`
`
`
`This application claims priority as continuation of U.S.
`patent application Ser. No. 17/327,197 filed on May21,
`1921 entitled “ULTRA-SMALL FORM FACTOR OPTI-
`CAL CONNECTORS USED AS PART OF A RECONFIG-
`URABLE OUTER HOUSING”which is a continuation of
`Ser. No. 17/090,855 filed Nov. 5, 1920 entitled “ULTRA-
`SMALL FORM FACTOR OPTICAL CONNECTORS
`
`USED AS A PART OF A RECONFIGURABLE OUTER
`
`
`HOUSING”whichis a continuation of U.S. patent applica-
`tion Ser. No. 16/414,546 filed May 16, 2019 entitled
`“ULTRA-SMALL I'ORM FACTOR OPTICAL CONNEC-
`TORS USED AS PART OF A RECONFIGURABLE
`OUTER HOUSING”which is a continuation of U.S. patent
`application Ser. No. 16/388,053 filed Apr. 18, 2019 entitled
`“Ultra-Small Form Factor Optical Connectors”, which is a
`continuation of U.S. patent application Ser. No. 16/035,691,
`filed Jul. 15, 2018 entitled “Ultra-Small FormFactor Optical
`Connectors” now U.S. Pat. No. 10,281,668 granted May 7,
`2019, which claimspriority to the following: U.S. Provi-
`sional Patent Application Ser. Nos. 62/532,710 filed Jul. 14,
`2017, 62/549,655 filed Aug. 24, 2017, and 62/588,276filed
`Nov. 17, 2017, all the disclosures of which are incorporated
`byreference herein.
`
`FIELD OF THE INVENTION
`
`The present disclosure relates generally to ultra-small
`form factor optical connectors and related connections
`within adapters and optical transceivers.
`
`BACKGROUND
`
`The prevalence of the Internet has led to unprecedented
`growth in communication networks. Consumer demand for
`service and increased competition has caused network pro-
`viders to continuously find ways to improve quality of
`service while reducing cost.
`Certain solutions have included deployment of high-
`density interconnect panels. High-density interconnect pan-
`els maybe designed to consolidate the increasing volume of
`interconnections necessary to support the fast-growing net-
`works into a compacted form factor,
`thereby increasing
`quality of service and decreasing costs such as floor space
`and support overhead. However, room for improvement in
`the area of data centers, specifically asit relates to fiber optic
`connections, still exists. For example, manufacturers of
`connectors and adapters are always looking to reduce the
`size of the devices, while increasing ease of deployment,
`robustness, and modifiability after deployment. In particular,
`more optical connectors may need to be accommodated in
`the same footprint previously used for a smaller number of
`connectors in order to provide backward compatibility with
`existing data center equipment. For example, one current
`footprint is known as the small form-factor pluggable trans-
`ceiver footprint (SFP). This footprint currently accommo-
`dates two LC-type ferrule optical connections. However, it
`maybe desirable to accommodate four optical connections
`(two duplex connections of transmit/receive) within the
`same footprint. Another current footprint is the quad small
`form-factor pluggable (QSI'P) transceiver footprint. This
`
`2
`footprint currently accommodates four LC-type ferrule opti-
`cal connections. However, it may be desirable to accommo-
`date cight optical connections of LC-type ferrules (four
`duplex connections of transmit/receive) within the same
`footprint.
`In communication networks, such as data centers and
`switching networks, numerous interconnections between
`mating connectors may be compacted into high-density
`panels. Panel and connector producers may optimize for
`such high densities by shrinking the connector size and/or
`the spacing between adjacent connectors on the panel. While
`both approaches may be effective to increase the panel
`connector density, shrinking the connector size and/or spac-
`ing mayalso increase ihe support cost and diminish the
`quality of service.
`In a high-density panel configuration, adjacent connectors
`and cable assemblies may obstruct access to the individual
`release mechanisms. Such physical obstructions may
`impede the ability of an operator to minimize the stresses
`applied to the cables and the connectors. For example, these
`stresses may be applied when the user reaches into a dense
`group of connectors and pushes aside surrounding optical
`fibers and connectors to access an individual connector
`release mechanism withhis/her thumb and forefinger. Over-
`stressing the cables and connectors may produce latent
`defects, compromise the integrity and/or reliability of the
`terminations, and potentially cause serious disruptions to
`network performance.
`While an operator may attempt to use a tool, such as a
`screwdriver, to reach into a dense group of connectors and
`activate a release mechanism, adjacent cables and connec-
`tors may obstruct the operator’s line of sight, making it
`difficult to guide the tool to the release mechanism without
`pushing aside the adjacent cables. Moreover, even whenthe
`operator has a clear line of sight, guiding the tool to the
`release mechanism maybe a time-consuming process. Thus,
`using a tool maynot be effective at reducing support time
`and increasing the quality of service.
`
`SUMMARY OF THE INVENTION
`
`An optical connector holding two or more LC-type optical
`ferrules is provided. The optical connector includes an outer
`body, an inner front body accommodating the two or more
`LC-type optical
`ferrules,
`ferrule springs for urging the
`optical ferrules towards a mating receptacle, and a back
`body for supporting the ferrule springs. The outer body and
`the inner front body are configured such that four LC-type
`optical ferrules are accommodated in a small form-factor
`pluggable (SFP) transceiver footprint or eight LC-type opti-
`cal ferrules are accommodated in a quad small form-factor
`pluggable (QSFP)transceiver footprint. A mating receptacle
`(transceiver or adapter) includes a receptacle hook and a
`housing with an opening that accommodates the receptacle
`hook in a flexed position as the optical connector makes
`connection with the mating receptacle by introducing the
`receptacle hook into an optical receptacle hook recess.
`
`BRIEF DESCRIPTION OF THE DRAWINGS
`
`FIG. 1Ais a perspective view of a prior art standard 6.25
`mmpitch LC connector SFP;
`FIG. 1B is a perspe