Search

Richard Schacher

Examiner (ID: 15061)

Most Active Art Unit
3101
Art Unit(s)
3104, 3101, 3201, 3102, 3103, 2899
Total Applications
1434
Issued Applications
1321
Pending Applications
0
Abandoned Applications
113

Applications

Application numberTitle of the applicationFiling DateStatus
Array ( [id] => 11710865 [patent_doc_number] => 20170179364 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2017-06-22 [patent_title] => 'SELF-MONITORING SUPERCONDUCTING TAPE VIA INTEGRATED OPTICAL FIBERS' [patent_app_type] => utility [patent_app_number] => 15/382046 [patent_app_country] => US [patent_app_date] => 2016-12-16 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 14 [patent_figures_cnt] => 14 [patent_no_of_words] => 6630 [patent_no_of_claims] => 20 [patent_no_of_ind_claims] => 3 [patent_words_short_claim] => 0 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15382046 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/382046
Self-monitoring superconducting tape via integrated optical fibers Dec 15, 2016 Issued
Array ( [id] => 15625111 [patent_doc_number] => 20200082960 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2020-03-12 [patent_title] => SUPERCONDUCTING WIRE AND METHOD FOR FABRICATING THE SAME [patent_app_type] => utility [patent_app_number] => 16/469803 [patent_app_country] => US [patent_app_date] => 2016-12-16 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 5656 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -3 [patent_words_short_claim] => 66 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16469803 [rel_patent_id] =>[rel_patent_doc_number] =>)
16/469803
SUPERCONDUCTING WIRE AND METHOD FOR FABRICATING THE SAME Dec 15, 2016 Abandoned
Array ( [id] => 13037719 [patent_doc_number] => 10040982 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2018-08-07 [patent_title] => Rare-earth regenerator material particles, and group of rare-earth regenerator material particles, refrigerator and measuring apparatus using the same, and method for manufacturing the same [patent_app_type] => utility [patent_app_number] => 15/369546 [patent_app_country] => US [patent_app_date] => 2016-12-05 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 4 [patent_figures_cnt] => 6 [patent_no_of_words] => 9136 [patent_no_of_claims] => 10 [patent_no_of_ind_claims] => 1 [patent_words_short_claim] => 216 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15369546 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/369546
Rare-earth regenerator material particles, and group of rare-earth regenerator material particles, refrigerator and measuring apparatus using the same, and method for manufacturing the same Dec 4, 2016 Issued
Array ( [id] => 11673587 [patent_doc_number] => 20170162310 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2017-06-08 [patent_title] => 'LAYOUT FOR MAGNET COILS WOUND WITH ANISOTROPIC SUPERCONDUCTOR, AND METHOD FOR LAYING OUT THE SAME' [patent_app_type] => utility [patent_app_number] => 15/368325 [patent_app_country] => US [patent_app_date] => 2016-12-02 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 7 [patent_figures_cnt] => 7 [patent_no_of_words] => 5635 [patent_no_of_claims] => 15 [patent_no_of_ind_claims] => 2 [patent_words_short_claim] => 0 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15368325 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/368325
Layout for magnet coils wound with anisotropic superconductor, and method for laying out the same Dec 1, 2016 Issued
Array ( [id] => 15703943 [patent_doc_number] => 10608159 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2020-03-31 [patent_title] => Method of making a superconductor device [patent_app_type] => utility [patent_app_number] => 15/351755 [patent_app_country] => US [patent_app_date] => 2016-11-15 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 9 [patent_figures_cnt] => 19 [patent_no_of_words] => 4146 [patent_no_of_claims] => 20 [patent_no_of_ind_claims] => 3 [patent_words_short_claim] => 169 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15351755 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/351755
Method of making a superconductor device Nov 14, 2016 Issued
Array ( [id] => 16786284 [patent_doc_number] => 10988699 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2021-04-27 [patent_title] => Plasma gasification reactor and method [patent_app_type] => utility [patent_app_number] => 15/775773 [patent_app_country] => US [patent_app_date] => 2016-11-11 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 2 [patent_figures_cnt] => 2 [patent_no_of_words] => 4808 [patent_no_of_claims] => 12 [patent_no_of_ind_claims] => 1 [patent_words_short_claim] => 351 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15775773 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/775773
Plasma gasification reactor and method Nov 10, 2016 Issued
Array ( [id] => 13537095 [patent_doc_number] => 20180320094 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2018-11-08 [patent_title] => METHOD FOR PRODUCING A SYNTHESIS GAS [patent_app_type] => utility [patent_app_number] => 15/773345 [patent_app_country] => US [patent_app_date] => 2016-11-04 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 8845 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -13 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15773345 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/773345
Method for producing a synthesis gas Nov 3, 2016 Issued
Array ( [id] => 13613207 [patent_doc_number] => 20180358153 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2018-12-13 [patent_title] => OXIDE SUPERCONDUCTING THIN FILM WIRE AND METHOD FOR PRODUCING THE SAME [patent_app_type] => utility [patent_app_number] => 15/772182 [patent_app_country] => US [patent_app_date] => 2016-11-01 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 10923 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -4 [patent_words_short_claim] => 69 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15772182 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/772182
OXIDE SUPERCONDUCTING THIN FILM WIRE AND METHOD FOR PRODUCING THE SAME Oct 31, 2016 Abandoned
Array ( [id] => 12670273 [patent_doc_number] => 20180115257 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2018-04-26 [patent_title] => MANUFACTURING METHOD AND APPLICATION FOR A QUANTUM SUPERCONDUCTOR RECTIFIER [patent_app_type] => utility [patent_app_number] => 15/331328 [patent_app_country] => US [patent_app_date] => 2016-10-21 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 1781 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -9 [patent_words_short_claim] => 93 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15331328 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/331328
MANUFACTURING METHOD AND APPLICATION FOR A QUANTUM SUPERCONDUCTOR RECTIFIER Oct 20, 2016 Abandoned
Array ( [id] => 15193553 [patent_doc_number] => 10494255 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2019-12-03 [patent_title] => Water gas shift process [patent_app_type] => utility [patent_app_number] => 15/771417 [patent_app_country] => US [patent_app_date] => 2016-10-14 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 1 [patent_figures_cnt] => 2 [patent_no_of_words] => 6675 [patent_no_of_claims] => 15 [patent_no_of_ind_claims] => 1 [patent_words_short_claim] => 139 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15771417 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/771417
Water gas shift process Oct 13, 2016 Issued
Array ( [id] => 13499435 [patent_doc_number] => 20180301260 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2018-10-18 [patent_title] => OXIDE SUPERCONDUCTING BULK MAGNET [patent_app_type] => utility [patent_app_number] => 15/758852 [patent_app_country] => US [patent_app_date] => 2016-09-29 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 11750 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -19 [patent_words_short_claim] => 131 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15758852 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/758852
Oxide superconducting bulk magnet Sep 28, 2016 Issued
Array ( [id] => 13970715 [patent_doc_number] => 10214700 [patent_country] => US [patent_kind] => B1 [patent_issue_date] => 2019-02-26 [patent_title] => Methods utilizing durable functional materials for chemical processes that include an oxidation step [patent_app_type] => utility [patent_app_number] => 15/280758 [patent_app_country] => US [patent_app_date] => 2016-09-29 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 2846 [patent_no_of_claims] => 11 [patent_no_of_ind_claims] => 1 [patent_words_short_claim] => 78 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15280758 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/280758
Methods utilizing durable functional materials for chemical processes that include an oxidation step Sep 28, 2016 Issued
Array ( [id] => 14989105 [patent_doc_number] => 10448496 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2019-10-15 [patent_title] => Superconducting cavity coupler [patent_app_type] => utility [patent_app_number] => 15/278299 [patent_app_country] => US [patent_app_date] => 2016-09-28 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 2 [patent_figures_cnt] => 2 [patent_no_of_words] => 3010 [patent_no_of_claims] => 14 [patent_no_of_ind_claims] => 2 [patent_words_short_claim] => 73 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15278299 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/278299
Superconducting cavity coupler Sep 27, 2016 Issued
Array ( [id] => 11528450 [patent_doc_number] => 20170088426 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2017-03-30 [patent_title] => 'NANOPARTICLE COMPOSITIONS AND METHODS OF MAKING AND USING THE SAME' [patent_app_type] => utility [patent_app_number] => 15/278232 [patent_app_country] => US [patent_app_date] => 2016-09-28 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 23 [patent_figures_cnt] => 23 [patent_no_of_words] => 17521 [patent_no_of_claims] => 20 [patent_no_of_ind_claims] => 2 [patent_words_short_claim] => 0 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15278232 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/278232
Nanoparticle compositions and methods of making and using the same Sep 27, 2016 Issued
Array ( [id] => 13995441 [patent_doc_number] => 20190066878 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2019-02-28 [patent_title] => Energy Transmission Apparatus For A Vehicle [patent_app_type] => utility [patent_app_number] => 15/768681 [patent_app_country] => US [patent_app_date] => 2016-09-28 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 8070 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -12 [patent_words_short_claim] => 57 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15768681 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/768681
Energy Transmission Apparatus For A Vehicle Sep 27, 2016 Abandoned
Array ( [id] => 12736783 [patent_doc_number] => 20180137428 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2018-05-17 [patent_title] => ROUTING QUANTUM SIGNALS IN THE MICROWAVE DOMAIN USING TIME DEPENDENT SWITCHING [patent_app_type] => utility [patent_app_number] => 15/275509 [patent_app_country] => US [patent_app_date] => 2016-09-26 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 11028 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -20 [patent_words_short_claim] => 75 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15275509 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/275509
Routing quantum signals in the microwave domain using time dependent switching Sep 25, 2016 Issued
Array ( [id] => 14359873 [patent_doc_number] => 10301221 [patent_country] => US [patent_kind] => B1 [patent_issue_date] => 2019-05-28 [patent_title] => Materials, devices, and methods for producing strong magnetic-flux pinning in superconducting materials by including sites having high electronic effective mass and charge carrier density [patent_app_type] => utility [patent_app_number] => 15/270233 [patent_app_country] => US [patent_app_date] => 2016-09-20 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 5 [patent_figures_cnt] => 5 [patent_no_of_words] => 3948 [patent_no_of_claims] => 10 [patent_no_of_ind_claims] => 1 [patent_words_short_claim] => 105 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15270233 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/270233
Materials, devices, and methods for producing strong magnetic-flux pinning in superconducting materials by including sites having high electronic effective mass and charge carrier density Sep 19, 2016 Issued
Array ( [id] => 13597881 [patent_doc_number] => 20180350489 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2018-12-06 [patent_title] => HIGH-TEMPERATURE SUPERCONDUCTING CONDUCTOR, HIGH-TEMPERATURE SUPERCONDUCTING COIL, AND CONNECTING STRUCTURE OF HIGH-TEMPERATURE SUPERCONDUCTING COIL [patent_app_type] => utility [patent_app_number] => 15/761530 [patent_app_country] => US [patent_app_date] => 2016-09-16 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 7569 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -7 [patent_words_short_claim] => 146 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 15761530 [rel_patent_id] =>[rel_patent_doc_number] =>)
15/761530
High-temperature superconducting conductor, high-temperature superconducting coil, and connecting structure of high-temperature superconducting coil Sep 15, 2016 Issued
Array ( [id] => 14542907 [patent_doc_number] => 20190207075 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2019-07-04 [patent_title] => REDUCING DISSIPATION AND FREQUENCY NOISE IN QUANTUM DEVICES USING A LOCAL VACUUM CAVITY [patent_app_type] => utility [patent_app_number] => 16/333058 [patent_app_country] => US [patent_app_date] => 2016-09-14 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 6395 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -22 [patent_words_short_claim] => 48 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16333058 [rel_patent_id] =>[rel_patent_doc_number] =>)
16/333058
Reducing dissipation and frequency noise in quantum devices using a local vacuum cavity Sep 13, 2016 Issued
Array ( [id] => 14542907 [patent_doc_number] => 20190207075 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2019-07-04 [patent_title] => REDUCING DISSIPATION AND FREQUENCY NOISE IN QUANTUM DEVICES USING A LOCAL VACUUM CAVITY [patent_app_type] => utility [patent_app_number] => 16/333058 [patent_app_country] => US [patent_app_date] => 2016-09-14 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 6395 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -22 [patent_words_short_claim] => 48 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16333058 [rel_patent_id] =>[rel_patent_doc_number] =>)
16/333058
Reducing dissipation and frequency noise in quantum devices using a local vacuum cavity Sep 13, 2016 Issued
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