
George P. Wyszomierski
Examiner (ID: 12499, Phone: (571)272-1252 , Office: P/1733 )
| Most Active Art Unit | 1733 |
| Art Unit(s) | 1742, 1733, 1304, 1793, 1754, 1311, 1101 |
| Total Applications | 3478 |
| Issued Applications | 2671 |
| Pending Applications | 181 |
| Abandoned Applications | 659 |
Applications
| Application number | Title of the application | Filing Date | Status |
|---|---|---|---|
Array
(
[id] => 507162
[patent_doc_number] => 07195681
[patent_country] => US
[patent_kind] => B2
[patent_issue_date] => 2007-03-27
[patent_title] => 'Cu—Zn—Al(6%) shape memory alloy with low martensitic temperature and a process for its manufacture'
[patent_app_type] => utility
[patent_app_number] => 10/823423
[patent_app_country] => US
[patent_app_date] => 2004-04-12
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 8
[patent_figures_cnt] => 8
[patent_no_of_words] => 4031
[patent_no_of_claims] => 2
[patent_no_of_ind_claims] => 1
[patent_words_short_claim] => 183
[patent_maintenance] => 1
[patent_no_of_assignments] => 0
[patent_current_assignee] =>[type] => patent
[pdf_file] => patents/07/195/07195681.pdf
[firstpage_image] =>[orig_patent_app_number] => 10823423
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/823423 | Cu—Zn—Al(6%) shape memory alloy with low martensitic temperature and a process for its manufacture | Apr 11, 2004 | Issued |
Array
(
[id] => 7170957
[patent_doc_number] => 20040200318
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2004-10-14
[patent_title] => 'Metallic nickel powders, method for preparing the same, conductive paste, and MLCC'
[patent_app_type] => new
[patent_app_number] => 10/819918
[patent_app_country] => US
[patent_app_date] => 2004-04-08
[patent_effective_date] => 0000-00-00
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[pdf_file] => publications/A1/0200/20040200318.pdf
[firstpage_image] =>[orig_patent_app_number] => 10819918
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/819918 | Metallic nickel powders, method for preparing the same, conductive paste, and MLCC | Apr 7, 2004 | Issued |
Array
(
[id] => 184565
[patent_doc_number] => 07645350
[patent_country] => US
[patent_kind] => B1
[patent_issue_date] => 2010-01-12
[patent_title] => 'High-density metallic glass alloys'
[patent_app_type] => utility
[patent_app_number] => 10/828530
[patent_app_country] => US
[patent_app_date] => 2004-04-06
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 8
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[pdf_file] => patents/07/645/07645350.pdf
[firstpage_image] =>[orig_patent_app_number] => 10828530
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/828530 | High-density metallic glass alloys | Apr 5, 2004 | Issued |
Array
(
[id] => 7290258
[patent_doc_number] => 20040211291
[patent_country] => US
[patent_kind] => A1
[patent_issue_date] => 2004-10-28
[patent_title] => 'Method of manufacturing fine metal particles, substance containing fine metal particles, and paste solder composition'
[patent_app_type] => new
[patent_app_number] => 10/817289
[patent_app_country] => US
[patent_app_date] => 2004-04-02
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 5
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[patent_no_of_words] => 12297
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[pdf_file] => publications/A1/0211/20040211291.pdf
[firstpage_image] =>[orig_patent_app_number] => 10817289
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/817289 | Method of manufacturing fine metal particles, substance containing fine metal particles, and paste solder composition | Apr 1, 2004 | Abandoned |
Array
(
[id] => 7173357
[patent_doc_number] => 20050188789
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[patent_kind] => A1
[patent_issue_date] => 2005-09-01
[patent_title] => 'Methods of controlling nanoparticle growth'
[patent_app_type] => utility
[patent_app_number] => 10/817754
[patent_app_country] => US
[patent_app_date] => 2004-04-02
[patent_effective_date] => 0000-00-00
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[firstpage_image] =>[orig_patent_app_number] => 10817754
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/817754 | Methods of controlling nanoparticle growth | Apr 1, 2004 | Issued |
Array
(
[id] => 424714
[patent_doc_number] => 07270695
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[patent_issue_date] => 2007-09-18
[patent_title] => 'Synthesis of nanosized metal particles'
[patent_app_type] => utility
[patent_app_number] => 10/814151
[patent_app_country] => US
[patent_app_date] => 2004-04-01
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[firstpage_image] =>[orig_patent_app_number] => 10814151
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/814151 | Synthesis of nanosized metal particles | Mar 31, 2004 | Issued |
Array
(
[id] => 7372637
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[patent_title] => 'Ti-Ni-based shape-memory alloy and method of manufacturing same'
[patent_app_type] => new
[patent_app_number] => 10/810838
[patent_app_country] => US
[patent_app_date] => 2004-03-29
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[patent_drawing_sheets_cnt] => 7
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[pdf_file] => publications/A1/0177/20040177904.pdf
[firstpage_image] =>[orig_patent_app_number] => 10810838
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/810838 | Ti-Ni-based shape-memory alloy and method of manufacturing same | Mar 28, 2004 | Abandoned |
Array
(
[id] => 435601
[patent_doc_number] => 07261855
[patent_country] => US
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[patent_issue_date] => 2007-08-28
[patent_title] => 'Method and system for manufacturing of complex shape parts from powder materials by hot isostatic pressing with controlled pressure inside the tooling and providing the shape of the part by multi-layer inserts'
[patent_app_type] => utility
[patent_app_number] => 10/809669
[patent_app_country] => US
[patent_app_date] => 2004-03-26
[patent_effective_date] => 0000-00-00
[patent_drawing_sheets_cnt] => 5
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[pdf_file] => patents/07/261/07261855.pdf
[firstpage_image] =>[orig_patent_app_number] => 10809669
[rel_patent_id] =>[rel_patent_doc_number] =>) 10/809669 | Method and system for manufacturing of complex shape parts from powder materials by hot isostatic pressing with controlled pressure inside the tooling and providing the shape of the part by multi-layer inserts | Mar 25, 2004 | Issued |
Array
(
[id] => 7332176
[patent_doc_number] => 20040187980
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[patent_issue_date] => 2004-09-30
[patent_title] => 'Coherent nanodispersion-strengthened shape-memory alloys'
[patent_app_type] => new
[patent_app_number] => 10/809082
[patent_app_country] => US
[patent_app_date] => 2004-03-25
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[rel_patent_id] =>[rel_patent_doc_number] =>) 10/809082 | Coherent nanodispersion-strengthened shape-memory alloys | Mar 24, 2004 | Issued |
Array
(
[id] => 7022220
[patent_doc_number] => 20050016642
[patent_country] => US
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[patent_issue_date] => 2005-01-27
[patent_title] => 'Shape memory alloy and method for producing same'
[patent_app_type] => utility
[patent_app_number] => 10/804244
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[patent_app_date] => 2004-03-18
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[rel_patent_id] =>[rel_patent_doc_number] =>) 10/804244 | Shape memory alloy and method for producing same | Mar 17, 2004 | Issued |
Array
(
[id] => 739240
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[patent_title] => 'Core-shell magnetic nanoparticles and nanocomposite materials formed therefrom'
[patent_app_type] => utility
[patent_app_number] => 10/801696
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[rel_patent_id] =>[rel_patent_doc_number] =>) 10/801696 | Core-shell magnetic nanoparticles and nanocomposite materials formed therefrom | Mar 16, 2004 | Issued |
Array
(
[id] => 5097693
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[patent_title] => 'HIGH PURITY COBALT, METHOD OF MANUFACTURING THEREOF, AND HIGH PURITY COBALT TARGETS'
[patent_app_type] => utility
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Array
(
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[patent_title] => 'METHOD OF PRODUCING METAL NANOCOMPOSITE POWDER REINFORCED WITH CARBON NANOTUBES AND THE POWDER PREPARED THEREBY'
[patent_app_type] => utility
[patent_app_number] => 10/799923
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[rel_patent_id] =>[rel_patent_doc_number] =>) 10/799923 | Method of producing metal nanocomposite powder reinforced with carbon nanotubes and the power prepared thereby | Mar 14, 2004 | Issued |
Array
(
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[patent_title] => 'TRIANGULAR NANOFRAMES AND METHOD OF MAKING SAME'
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Array
(
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[patent_title] => 'Separator for fuel cell'
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Array
(
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Array
(
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Array
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Array
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