
Charles Logsdon
Examiner (ID: 15343, Phone: (571)270-0282 , Office: P/1662 )
| Most Active Art Unit | 1662 |
| Art Unit(s) | 1662 |
| Total Applications | 631 |
| Issued Applications | 390 |
| Pending Applications | 70 |
| Abandoned Applications | 178 |
Applications
| Application number | Title of the application | Filing Date | Status |
|---|---|---|---|
Array
(
[id] => 17457818
[patent_doc_number] => 20220071122
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2022-03-10
[patent_title] => Plants and Seeds of Hybrid Corn Variety CH011079
[patent_app_type] => utility
[patent_app_number] => 17/014977
[patent_app_country] => US
[patent_app_date] => 2020-09-08
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 15468
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -17
[patent_words_short_claim] => 46
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17014977
[rel_patent_id] =>[rel_patent_doc_number] =>) 17/014977 | Plants and seeds of hybrid corn variety CH011079 | Sep 7, 2020 | Issued |
Array
(
[id] => 17457817
[patent_doc_number] => 20220071121
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2022-03-10
[patent_title] => Plants and Seeds of Hybrid Corn Variety CH011070
[patent_app_type] => utility
[patent_app_number] => 17/014968
[patent_app_country] => US
[patent_app_date] => 2020-09-08
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 15225
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -17
[patent_words_short_claim] => 46
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17014968
[rel_patent_id] =>[rel_patent_doc_number] =>) 17/014968 | Plants and seeds of hybrid corn variety CH011070 | Sep 7, 2020 | Issued |
Array
(
[id] => 17457820
[patent_doc_number] => 20220071124
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2022-03-10
[patent_title] => Plants and Seeds of Hybrid Corn Variety CH011136
[patent_app_type] => utility
[patent_app_number] => 17/014987
[patent_app_country] => US
[patent_app_date] => 2020-09-08
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 15227
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -17
[patent_words_short_claim] => 46
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17014987
[rel_patent_id] =>[rel_patent_doc_number] =>) 17/014987 | Plants and seeds of hybrid corn variety CH011136 | Sep 7, 2020 | Issued |
Array
(
[id] => 17867432
[patent_doc_number] => 20220290168
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2022-09-15
[patent_title] => METHODS FOR TRANSFORMATION OF DICOT PLANT CELLS
[patent_app_type] => utility
[patent_app_number] => 17/640099
[patent_app_country] => US
[patent_app_date] => 2020-08-28
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 8224
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -25
[patent_words_short_claim] => 14
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17640099
[rel_patent_id] =>[rel_patent_doc_number] =>) 17/640099 | Methods for transformation of dicot plant cells | Aug 27, 2020 | Issued |
Array
(
[id] => 19226872
[patent_doc_number] => 12006506
[patent_country] => US
[patent_kind] => B2
[patent_issue_date] => 2024-06-11
[patent_title] => Methods and compositions for obtaining useful plant traits
[patent_app_type] => utility
[patent_app_number] => 16/989422
[patent_app_country] => US
[patent_app_date] => 2020-08-10
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 83
[patent_figures_cnt] => 83
[patent_no_of_words] => 31774
[patent_no_of_claims] => 9
[patent_no_of_ind_claims] => 1
[patent_words_short_claim] => 202
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16989422
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/989422 | Methods and compositions for obtaining useful plant traits | Aug 9, 2020 | Issued |
Array
(
[id] => 16611303
[patent_doc_number] => 20210029956
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2021-02-04
[patent_title] => DIPLOID, FERTILE AND HIGHLY HOMOZYGOUS POTATO LINE SOLYNTUS
[patent_app_type] => utility
[patent_app_number] => 16/941998
[patent_app_country] => US
[patent_app_date] => 2020-07-29
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 5414
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -17
[patent_words_short_claim] => 28
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16941998
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/941998 | DIPLOID, FERTILE AND HIGHLY HOMOZYGOUS POTATO LINE SOLYNTUS | Jul 28, 2020 | Abandoned |
Array
(
[id] => 16437409
[patent_doc_number] => 20200354735
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2020-11-12
[patent_title] => PLANTS WITH INCREASED SEED SIZE
[patent_app_type] => utility
[patent_app_number] => 16/946783
[patent_app_country] => US
[patent_app_date] => 2020-07-06
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 22599
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -7
[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] => 16946783
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/946783 | PLANTS WITH INCREASED SEED SIZE | Jul 5, 2020 | Abandoned |
Array
(
[id] => 17807776
[patent_doc_number] => 20220259611
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2022-08-18
[patent_title] => METHOD FOR INCREASING YIELD IN PLANTS
[patent_app_type] => utility
[patent_app_number] => 17/624754
[patent_app_country] => US
[patent_app_date] => 2020-07-03
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 8999
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -16
[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] => 17624754
[rel_patent_id] =>[rel_patent_doc_number] =>) 17/624754 | METHOD FOR INCREASING YIELD IN PLANTS | Jul 2, 2020 | Abandoned |
Array
(
[id] => 18185775
[patent_doc_number] => 11576326
[patent_country] => US
[patent_kind] => B2
[patent_issue_date] => 2023-02-14
[patent_title] => Wheat with new alleles of Rht-B1
[patent_app_type] => utility
[patent_app_number] => 16/906535
[patent_app_country] => US
[patent_app_date] => 2020-06-19
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 11
[patent_figures_cnt] => 11
[patent_no_of_words] => 24208
[patent_no_of_claims] => 37
[patent_no_of_ind_claims] => 3
[patent_words_short_claim] => 97
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16906535
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/906535 | Wheat with new alleles of Rht-B1 | Jun 18, 2020 | Issued |
Array
(
[id] => 16376647
[patent_doc_number] => 20200325489
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2020-10-15
[patent_title] => ISOLATED POLYNUCLEOTIDES AND POLYPEPTIDES AND METHODS OF USING SAME FOR INCREASING PLANT YIELD, BIOMASS, GROWTH RATE, VIGOR, OIL CONTENT, ABIOTIC STRESS TOLERANCE OF PLANTS AND NITROGEN USE EFFICIENCY
[patent_app_type] => utility
[patent_app_number] => 16/891176
[patent_app_country] => US
[patent_app_date] => 2020-06-03
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 80555
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -18
[patent_words_short_claim] => 167
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16891176
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/891176 | ISOLATED POLYNUCLEOTIDES AND POLYPEPTIDES AND METHODS OF USING SAME FOR INCREASING PLANT YIELD, BIOMASS, GROWTH RATE, VIGOR, OIL CONTENT, ABIOTIC STRESS TOLERANCE OF PLANTS AND NITROGEN USE EFFICIENCY | Jun 2, 2020 | Abandoned |
Array
(
[id] => 18051770
[patent_doc_number] => 11525143
[patent_country] => US
[patent_kind] => B2
[patent_issue_date] => 2022-12-13
[patent_title] => Method for promoting an increase in plant biomass, productivity, and drought resistance
[patent_app_type] => utility
[patent_app_number] => 16/866467
[patent_app_country] => US
[patent_app_date] => 2020-05-04
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 12
[patent_figures_cnt] => 22
[patent_no_of_words] => 9335
[patent_no_of_claims] => 20
[patent_no_of_ind_claims] => 3
[patent_words_short_claim] => 59
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16866467
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/866467 | Method for promoting an increase in plant biomass, productivity, and drought resistance | May 3, 2020 | Issued |
Array
(
[id] => 18134945
[patent_doc_number] => 11560601
[patent_country] => US
[patent_kind] => B2
[patent_issue_date] => 2023-01-24
[patent_title] => Gene controlling fruit color phenotype in palm
[patent_app_type] => utility
[patent_app_number] => 16/864946
[patent_app_country] => US
[patent_app_date] => 2020-05-01
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 26
[patent_figures_cnt] => 23
[patent_no_of_words] => 29134
[patent_no_of_claims] => 12
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 163
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16864946
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/864946 | Gene controlling fruit color phenotype in palm | Apr 30, 2020 | Issued |
Array
(
[id] => 16328693
[patent_doc_number] => 20200299659
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2020-09-24
[patent_title] => NOVEL CRISPR-ASSOCIATED SYSTEMS AND COMPONENTS
[patent_app_type] => utility
[patent_app_number] => 16/862261
[patent_app_country] => US
[patent_app_date] => 2020-04-29
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 18326
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -19
[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] => 16862261
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/862261 | CRISPR-associated systems and components | Apr 28, 2020 | Issued |
Array
(
[id] => 17800385
[patent_doc_number] => 11414670
[patent_country] => US
[patent_kind] => B2
[patent_issue_date] => 2022-08-16
[patent_title] => Methods and compositions for short stature plants through manipulation of gibberellin metabolism to increase harvestable yield
[patent_app_type] => utility
[patent_app_number] => 16/847283
[patent_app_country] => US
[patent_app_date] => 2020-04-13
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 13
[patent_figures_cnt] => 17
[patent_no_of_words] => 76213
[patent_no_of_claims] => 73
[patent_no_of_ind_claims] => 2
[patent_words_short_claim] => 146
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16847283
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/847283 | Methods and compositions for short stature plants through manipulation of gibberellin metabolism to increase harvestable yield | Apr 12, 2020 | Issued |
Array
(
[id] => 16223083
[patent_doc_number] => 20200248199
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2020-08-06
[patent_title] => METHODS AND COMPOSITIONS FOR SHORT STATURE PLANTS THROUGH MANIPULATION OF GIBBERELLIN METABOLISM TO INCREASE HARVESTABLE YIELD
[patent_app_type] => utility
[patent_app_number] => 16/847244
[patent_app_country] => US
[patent_app_date] => 2020-04-13
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 76357
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -69
[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] => 16847244
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/847244 | Methods and compositions for short stature plants through manipulation of gibberellin metabolism to increase harvestable yield | Apr 12, 2020 | Issued |
Array
(
[id] => 18369309
[patent_doc_number] => 11649466
[patent_country] => US
[patent_kind] => B2
[patent_issue_date] => 2023-05-16
[patent_title] => Genetic loci associated with response to abiotic stress
[patent_app_type] => utility
[patent_app_number] => 16/843295
[patent_app_country] => US
[patent_app_date] => 2020-04-08
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 9
[patent_figures_cnt] => 9
[patent_no_of_words] => 21550
[patent_no_of_claims] => 4
[patent_no_of_ind_claims] => 3
[patent_words_short_claim] => 93
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16843295
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/843295 | Genetic loci associated with response to abiotic stress | Apr 7, 2020 | Issued |
Array
(
[id] => 16251362
[patent_doc_number] => 20200260736
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2020-08-20
[patent_title] => RHIZOBACTERIA AND USES THEREOF
[patent_app_type] => utility
[patent_app_number] => 16/841036
[patent_app_country] => US
[patent_app_date] => 2020-04-06
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 15614
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -11
[patent_words_short_claim] => 22
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16841036
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/841036 | Rhizobacteria and uses thereof | Apr 5, 2020 | Issued |
Array
(
[id] => 16435746
[patent_doc_number] => 20200353071
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2020-11-12
[patent_title] => VIRUS LIKE PARTICLE PRODUCTION IN PLANTS
[patent_app_type] => utility
[patent_app_number] => 16/831012
[patent_app_country] => US
[patent_app_date] => 2020-03-26
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 21292
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -25
[patent_words_short_claim] => 43
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16831012
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/831012 | VIRUS LIKE PARTICLE PRODUCTION IN PLANTS | Mar 25, 2020 | Abandoned |
Array
(
[id] => 16525637
[patent_doc_number] => 20200399717
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2020-12-24
[patent_title] => GENE CONTROLLING SHELL PHENOTYPE IN PALM
[patent_app_type] => utility
[patent_app_number] => 16/828452
[patent_app_country] => US
[patent_app_date] => 2020-03-24
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 50577
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -8
[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] => 16828452
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/828452 | Gene controlling shell phenotype in palm | Mar 23, 2020 | Issued |
Array
(
[id] => 17094563
[patent_doc_number] => 20210282354
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2021-09-16
[patent_title] => Bean Variety SVGF2074
[patent_app_type] => utility
[patent_app_number] => 16/820240
[patent_app_country] => US
[patent_app_date] => 2020-03-16
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 0
[patent_figures_cnt] => 0
[patent_no_of_words] => 8979
[patent_no_of_claims] => 0
[patent_no_of_ind_claims] => -16
[patent_words_short_claim] => 23
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => publication
[pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 16820240
[rel_patent_id] =>[rel_patent_doc_number] =>) 16/820240 | Bean variety SVGF2074 | Mar 15, 2020 | Issued |