The Technical Field "微生物" had 162 patent application filings in the most recent period (2023-01-01 to 2023-04-30). This is a significantly decreased of -196 filings (-54.7%) over 358 they had in the same period of the previous year (2022-01-01 to 2022-04-30). This report also includes technical terms related to " 微生物類 " in the search set.
The highest number of filings in 2016 with 1,549 cases, and their lowest number in 2023 with 275 cases.
The mean of the number of filings over the last 5 years (2019 to 2024, 5,250 cases in total) is 875, and the median is 1,078. The coefficient of variation (standard deviation/mean) is 0.6, and there have been relatively large fluctuations in the number of filings from year to year.
Index | Value |
---|---|
Average | 875 patents |
Std Dev | 531 |
COV | 0.6 |
Year | Cases | YOY |
---|---|---|
2023 year | 275 cases | -72.4 % |
2022 year | 997 cases | -14.05 % |
2021 year | 1,160 cases | -9.23 % |
This report provides the latest patent analysis information (the IP landscape, including a patent map) on the patent search results of the JP patent database for 微生物 for the period of the last 10 years (2015-01-01 to 2024-12-31). You can compare the information in this report with the trends in your competitors’ patent filings and technologies, and use it to search for important patents.
This service provides, free of charge, a patent analysis report based on the latest patent data (Japanese, U.S., European, and PCT application publications) for use in patent searches, patent analysis, and IP landscaping. The service is offered by "Patent Integration" a firm specializing in patent search/patent analysis.
This report includes basic information to help you understand the IP strategy and management of 微生物, such as changes in the number of patents/patent applications they have filed, comparisons of the numbers of patents/patent applications filed by their peers and competitors, their top coapplicants (joint research partners, alliance partners), and their most important patents. It can be used in various intellectual property business operations such as IP landscaping, patent search/patent analysis, preparation of intellectual property business evaluation reports, selection of M&A candidates, and selection of alliance partners.
He is a patent attorney at a patent office. He specializes in invention counseling, patent filing, and intellectual property strategies for start-up companies and new businesses in the fields of software, information technology and artificial intelligence. He runs a patent course for beginners on Udemy, an online course provider.
After studying physics at the University of Tokyo as a doctoral student, he was engaged in intellectual property analysis and technology trend research as an in-house patent attorney at a precision equipment manufacturer and at Toyota Central R&D Labs. Inc..
The concept of the "IP landscape" (IPL) has been attracting attention recently.
An IP landscape is not limited to patent information, but also integrates and analyzes business information (e.g., non-patent information such as papers, news releases, stock information, and market information). Intellectual-property-based business management is realized through the analysis of intellectual property information applied to the formulation of management strategies and business strategies. This is a comprehensive approach that includes but not limited to planning of open and closed strategies, selecting M&A candidates, searching for alliance partners, and formulating intellectual property strategies, through the exploitation of intellectual property information.
IP landscaping usually includes patent search and patent analysis. In patent search and patent analysis, it is important to grasp the market position of each company and the overall technological trends and development trends for each technology. More specifically, it is important to understand what intellectual property your own company and other companies hold, what the strengths and weaknesses of other companies are, and how other companies are trying to exploit their intellectual property. In other words, it is important to understand both the business strategy and the intellectual property strategy of each company.
After reading this search report, you may be interested in more detailed patent searches and patent analysis. We offer a service called Patent Integration, which is an integrated patent search and patent analysis service. With reasonable pricing and a simple user interface such that even beginners can quickly search for and analyze patent information by company or technology from a web browser, please consider using it for detailed patent searches, patent analysis, and IP landscaping.
Patent Integration has a patent-landscaping function that can visually represent a set of tens of thousands of patents/patent applications. This allows you to convincingly show the technical positions of your company and its competitors to your management and business strategists in order to formulate management strategies and business strategies.
The changes in the number of patent filings of 微生物 over the last 20 years (JP) are shown below.
The change in the number of patents/patent applications is the most basic index in patent analysis. By examining the change in the number of patents/patent applications, you can see the status of technological development and R&D focus for each company or technology. It should be noted that since there is a one and a half year lag between the filing and the laying open of patent applications, it is not possible to analyze the situation more recently than one and half years prior to the present.
In this report, you can only see the change in the number of patents/patent applications by company or technology, whereas Patent Integration allows you to quickly compare the number of patent applications with your competitors in each technical field by cross-referencing with other keywords and patent classifications.
This patent analysis report was created for a patent search set of 11,236 cases retrieved by applying the following search formula and analysis period to the following patent database. Patent information such as a patent analysis result, a patent map, and a patent landscape can be freely used for patent searches, analysis, and work on intellectual property strategies, including IP landscaping.
The number of patents and changes in the number of patents of other companies (competitors) in the same industry as 微生物 are shown below.
Comparison of changes in the number of patents with peers and competitors is an important analytical index for understanding the intellectual property strategies of each company. By checking the transition of the number of patents for each company / competitor, you can check the status of focus on technology development and R&D for each company / technology.
It should be noted that patents have a time lag of one and a half years from filing to publication, so it is not possible to analyze the situation more recent than one and a half years.
If you want to find out more information, " Patent Integration , You can compare the number of patent applications with competitors in each technical field in a short time by multiplying with other keywords and patent classifications.Please use it for more detailed patent information analysis such as selection of M&A candidate destinations and alliance destinations.
Comparing the number of applications of each company, 花王株式会社 has the highest number of joint applications in the last in the last 3 years (2023 to 2025) with 11 cases, followed by 国立研究開発法人産業技術総合研究所 with 6 cases.
Comparing the number of applications of each company, 花王株式会社 has the highest number of joint applications in the last for the target period (2015 to 2025) with 105 cases, followed by 住友化学株式会社 with 97 cases.
Name | Cases |
---|---|
花王株式会社 | 105 cases |
住友化学株式会社 | 97 cases |
味の素株式会社 | 73 cases |
株式会社カネカ | 71 cases |
国立研究開発法人産業技術総合研究所 | 63 cases |
栗田工業株式会社 | 50 cases |
東レ株式会社 | 32 cases |
パナソニックホールディングス株式会社 | 21 cases |
三菱化学株式会社 | 3 cases |
Below is a patent map showing changes in the number of applications for JP patents of 11 companies in the same industry over the past 20 years.
The number of patents and changes in the number of patents of other companies (competitors) in the same industry as 微生物 are shown below.
Comparison of changes in the number of patents with peers and competitors is an important analytical index for understanding the intellectual property strategies of each company. By checking the transition of the number of patents for each company / competitor, you can check the status of focus on technology development and R&D for each company / technology.
It should be noted that patents have a time lag of one and a half years from filing to publication, so it is not possible to analyze the situation more recent than one and a half years.
If you want to find out more information, " Patent Integration , You can compare the number of patent applications with competitors in each technical field in a short time by multiplying with other keywords and patent classifications.Please use it for more detailed patent information analysis such as selection of M&A candidate destinations and alliance destinations.
Among the top coapplicants, 花王株式会社 has the highest number of joint applications in the last in the last 3 years (2023 to 2025) with 11 cases, followed by 国立研究開発法人産業技術総合研究所 with 6 cases.
Among the top coapplicants, 花王株式会社 has the highest number of joint applications in the last for the target period (2015 to 2025) with 105 cases, followed by 住友化学株式会社 with 97 cases.
Name | Cases |
---|---|
花王株式会社 | 105 cases |
住友化学株式会社 | 97 cases |
味の素株式会社 | 73 cases |
株式会社カネカ | 71 cases |
国立研究開発法人産業技術総合研究所 | 63 cases |
栗田工業株式会社 | 50 cases |
パナソニックホールディングス株式会社 | 21 cases |
Below is a ranking of the number of JP patent applications by 微生物’s top 7 coapplicants over the last 20 years.
Below is a patent map showing the changes in the numbers of JP patent filings by 微生物’s top 7 coapplicants over the last 20 years.
微生物 filed 73 joint applications with 味の素株式会社 for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 21 cases in total) is 3.5, and the median is 2.0. The coefficient of variation (standard deviation/mean) is 1.1, and there have been very big fluctuations in the number of filings from year to year.
The number of filings has been decreasing for the last 3 years (2021 to 2024). The highest number of filings in 2016 with 16 cases, and their lowest number in 2023 with 1 cases.
Index | Value |
---|---|
Average | 3.5 patents |
Std Dev | 3.7 |
COV | 1.1 |
Year | Cases | YOY |
---|---|---|
2023 year | 1 cases | -50.0 % |
2022 year | 2 cases | 0 |
2021 year | 2 cases | -60.0 % |
微生物 filed 21 joint applications with パナソニックホールディングス株式会社 for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 2 cases in total) is 0.3, and the median is 0. The coefficient of variation (standard deviation/mean) is 1.4, and there have been very big fluctuations in the number of filings from year to year.
The highest number of filings in 2016 with 9 cases, and their lowest number in 2023 with 0 cases.
Index | Value |
---|---|
Average | 0.3 patents |
Std Dev | 0.5 |
COV | 1.4 |
Year | Cases | YOY |
---|---|---|
2022 year | 1 cases | - |
2021 year | 0 cases | -100 % |
2020 year | 1 cases | - |
微生物 filed 105 joint applications with 花王株式会社 for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 52 cases in total) is 8.7, and the median is 10.0. The coefficient of variation (standard deviation/mean) is 0.5, and there have been big fluctuations in the number of filings from year to year.
The number of filings has been decreasing for the last 3 years (2021 to 2024). The highest number of filings in 2015 with 22 cases, and their lowest number in 2021 with 5 cases.
Index | Value |
---|---|
Average | 8.7 patents |
Std Dev | 3.9 |
COV | 0.5 |
Year | Cases | YOY |
---|---|---|
2023 year | 9 cases | -25.00 % |
2022 year | 12 cases | +140 % |
2021 year | 5 cases | -54.5 % |
微生物 filed 50 joint applications with 栗田工業株式会社 for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 21 cases in total) is 3.5, and the median is 3.0. The coefficient of variation (standard deviation/mean) is 0.9, and there have been relatively large fluctuations in the number of filings from year to year.
The number of filings has been decreasing for the last 3 years (2021 to 2024). The highest number of filings in 2017 with 10 cases, and their lowest number in 2023 with 1 cases.
Index | Value |
---|---|
Average | 3.5 patents |
Std Dev | 3.0 |
COV | 0.9 |
Year | Cases | YOY |
---|---|---|
2023 year | 1 cases | -80.0 % |
2022 year | 5 cases | +150 % |
2021 year | 2 cases | -50.0 % |
微生物 filed 71 joint applications with 株式会社カネカ for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 32 cases in total) is 5.3, and the median is 5.0. The coefficient of variation (standard deviation/mean) is 0.6, and there have been big fluctuations in the number of filings from year to year.
The highest number of filings in 2015 with 14 cases, and their lowest number in 2021 with 4 cases.
Index | Value |
---|---|
Average | 5.3 patents |
Std Dev | 3.1 |
COV | 0.6 |
Year | Cases | YOY |
---|---|---|
2023 year | 5 cases | 0 |
2022 year | 5 cases | +25.00 % |
2021 year | 4 cases | -50.0 % |
The following shows JP patents held by 微生物 that have had an invalidation trial against them demanded or an opposition filed against them by a third party, and 微生物’s JP patents/patent applications of high importance cited by Examiners in patent examination processes.
By noting the most important patents, you can obtain knowledge of the competitive business environment in which 微生物 is placed (e.g., whether it is a fiercely competitive environment or an oligopolistic market and the like). In general, it can be understood that a company with a large number of demands for invalidation trials is developing their business in a business environment where IP disputes are common.
If you want to search for more detailed information, you can use Patent Integration to retrieve and download by company cited patents/patent applications or patents undergoing invalidation trials. You can quickly extract important patents from a patent set that includes multiple competitors by cross-referencing with other keywords and patent classifications. Please consider using it for searches for important patents/patent applications.
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 1 patents Invalidation Trial from third parties. The average number of Invalidation Trial is 1.0 times. The most recently Invalidation Trial patent is 特許4414623 "病原微生物および抗微生物剤の検出法、抗微生物剤の薬効評価法ならびに抗微生物剤" (Invalidation Trial day 2023-01-11) .
- | No. | Title | Invalidation Trial days |
---|---|---|---|
1 | 特許4414623 | 病原微生物および抗微生物剤の検出法、抗微生物剤の薬効評価法ならびに抗微生物剤 | 2023-01-11 |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 3 patents/patent applications were invalidation trial more than once in the examination process of other patent applications. The mean of the number of invalidation trial is 1.3. The most invalidation trial patent is 特許6275313 "エクオール含有抽出物及びその製造方法、エクオール抽出方法、並びにエクオールを含む食品" (2 times) , and the next most invalidation trial patent is 特許6554730 "ビフィドバクテリウム・ロンガム及び海馬BDNF発現" (1 times) .
- | No. | Title | |
---|---|---|---|
1 | 特許6275313 | エクオール含有抽出物及びその製造方法、エクオール抽出方法、並びにエクオールを含む食品 | 2 times |
2 | 特許6554730 | ビフィドバクテリウム・ロンガム及び海馬BDNF発現 | 1 times |
3 | 特許6743078 | 保護性通気性材料および保護性通気性材料を製造するための方法 | 1 times |
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 21 patents Opposition from third parties. The average number of Opposition is 1.0 times. The most recently Opposition patent is 特許7495017 "水系の微生物汚染抑制方法" (Opposition day 2024-12-02) , next is 特許7391092 "メタン富化ガス組成物の製造のためにCO2含有産業ガスを使用する方法" (Opposition day 2024-06-03) .
- | No. | Title | Opposition days |
---|---|---|---|
1 | 特許7495017 | 水系の微生物汚染抑制方法 | 2024-12-02 |
2 | 特許7391092 | メタン富化ガス組成物の製造のためにCO2含有産業ガスを使用する方法 | 2024-06-03 |
3 | 特許7349907 | 微生物抑制方法及び微生物抑制システム | 2024-03-11 |
4 | 特許7329554 | 抗ウィルス性基体 | 2024-02-14 |
5 | 特許7305630 | N-アセチルノイラミン酸の発酵生産 | 2024-01-09 |
6 | 特許7265860 | 高内相W/O型乳化組成物及びこれを利用した化粧料 | 2023-10-24 |
7 | 特許7229216 | 抗ウィルス部材 | 2023-08-28 |
8 | 特許7229215 | 抗ウィルス部材 | 2023-08-28 |
9 | 特許7171840 | シルク性能衣服及び製品、並びにこれらを製造する方法 | 2023-05-15 |
10 | 特許7149235 | 抗ウィルス性基体、抗ウィルス性組成物、抗ウィルス性基体の製造方法、抗微生物基体、抗微生物組成物及び抗微生物基体の製造方法 | 2023-04-05 |
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 103 patents Protest from third parties. The average number of Protest is 1.3 times. The most recently Protest patent is 特表2024-530153 "抗微生物コーティング組成物及びそれを用いた抗微生物コーティング鋼板" (Protest day 2024-11-22) , next is 特開2024-037736 "推測装置、推測システム、推測プログラム及び推測方法" (Protest day 2024-11-12) .
- | No. | Title | Protest days |
---|---|---|---|
1 | 特表2024-530153 | 抗微生物コーティング組成物及びそれを用いた抗微生物コーティング鋼板 | 2024-11-22 |
2 | 特開2024-037736 | 推測装置、推測システム、推測プログラム及び推測方法 | 2024-11-12 |
3 | 特開2022-012974 | 廃棄物処理システム及び廃棄物処理方法 | 2024-11-12 |
4 | 特開2022-126707 | ドコサヘキサエン酸含有油及びその製造方法 | 2024-11-08 |
5 | 特表2024-515377 | 味、栄養および食感の優れたインスタントご飯形態の全粒穀物ご飯 | 2024-09-30 |
6 | 特表2023-514396 | 抗菌組成物 | 2024-09-27 |
7 | 特開2022-140165 | 抗微生物活性繊維糸、抗微生物活性繊維糸の製造方法、抗微生物活性不織布及び抗微生物活性マスク | 2024-09-25 |
8 | 特表2022-521426 | 安定なタンパク質製剤 | 2024-09-17 |
9 | 特表2024-515376 | 釜飯の味、栄養および食感を実現したインスタントご飯の製造用システム | 2024-09-06 |
10 | 特表2023-529392 | 繊維が補充された酸性化乳製品及びそれを提供する方法 | 2024-09-02 |
11 | 特表2024-515865 | 釜飯の味、栄養および食感を実現したインスタントご飯の製造方法 | 2024-08-20 |
12 | 特表2023-532989 | 食品、花、及び植物の改善された保管及び/又は輸送 | 2024-07-26 |
13 | 特開2024-095220 | ミネラル水の製造方法及び微生物の繁殖抑制方法 | 2024-07-20 |
14 | 特開2024-073718 | 微生物検出用の培地、及び当該培地を用いる微生物の検出方法 | 2024-06-20 |
15 | 特表2024-515375 | 味、栄養および食感の優れたインスタント食品の製造方法 | 2024-06-10 |
16 | 特開2023-163325 | チルド麺及びチルド麺を用いたカップ食品及びチルド麺の製造方法 | 2024-05-20 |
17 | 特開2023-171425 | 抗微生物基体 | 2024-04-30 |
18 | 特表2022-513628 | クモ糸タンパク質のアルカリ精製法 | 2024-04-25 |
19 | 特表2023-518247 | ナノ粒子の効率的な分散のための材料および方法 | 2024-04-09 |
20 | 特開2023-175853 | 疾患診断および健康評価のための個々の対象の低分子生化学プロファイリングの方法 | 2024-02-16 |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 188 patents/patent applications were protest more than once in the examination process of other patent applications. The mean of the number of protest is 1.3. The most protest patent is 特許7128530 "油脂含有排水処理方法、システムおよび装置" (6 times) , and the next most protest patent is 特許7315302 "皮膚外用組成物" (4 times) .
- | No. | Title | |
---|---|---|---|
1 | 特許7128530 | 油脂含有排水処理方法、システムおよび装置 | 6 times |
2 | 特許7315302 | 皮膚外用組成物 | 4 times |
3 | 再公表2017/094804 | ドコサヘキサエン酸含有油及びその製造方法 | 4 times |
4 | 特許7394537 | 飲料 | 3 times |
5 | 特開2018-090619 | 脂質代謝促進用組成物、脂質代謝促進用機能性食品及び肥満の予防または改善方法 | 3 times |
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 207 patents Inspection from third parties. The average number of Inspection is 1.7 times. The most recently Inspection patent is 特開2023-082077 "1,3-ブタンジオールの産生のための生物" (Inspection day 2024-12-19) , next is 特開2022-066228 "バイオベースポリエチレンテレフタレートパッケージング及びその製造方法" (Inspection day 2024-12-17) .
- | No. | Title | Inspection days |
---|---|---|---|
1 | 特開2023-082077 | 1,3-ブタンジオールの産生のための生物 | 2024-12-19 |
2 | 特開2022-066228 | バイオベースポリエチレンテレフタレートパッケージング及びその製造方法 | 2024-12-17 |
3 | 特開2023-024691 | 形質導入および細胞プロセシングのための方法 | 2024-12-17 |
4 | 特開2023-085281 | 扱いにくい試料タイプのための試料調製 | 2024-12-13 |
5 | 特開2024-037736 | 推測装置、推測システム、推測プログラム及び推測方法 | 2024-12-11 |
6 | 特開2022-126707 | ドコサヘキサエン酸含有油及びその製造方法 | 2024-12-03 |
7 | 特開2022-012974 | 廃棄物処理システム及び廃棄物処理方法 | 2024-11-22 |
8 | 特表2022-504139 | バイオフィルムの除去のためのHMGB1タンパク質誘導体 | 2024-11-05 |
9 | 特許7580951 | 有機物質の製造方法、及び有機物質製造装置 | 2024-11-01 |
10 | 特表2024-515377 | 味、栄養および食感の優れたインスタントご飯形態の全粒穀物ご飯 | 2024-10-10 |
11 | 特表2022-521426 | 安定なタンパク質製剤 | 2024-10-09 |
12 | 特表2019-500021 | 樹状細胞療法においてex vivoでの抗原のプロセシングと提示を亢進させるための合成ベクターとしての脂質 | 2024-10-02 |
13 | 特表2024-515376 | 釜飯の味、栄養および食感を実現したインスタントご飯の製造用システム | 2024-09-18 |
14 | 特表2023-529392 | 繊維が補充された酸性化乳製品及びそれを提供する方法 | 2024-09-12 |
15 | 特表2021-529515 | 有機酸を産生するための微生物細胞株の単離 | 2024-09-10 |
16 | 特表2022-526084 | 3次元定量的位相イメージングを用いる微生物の同定 | 2024-09-09 |
17 | 特表2024-515865 | 釜飯の味、栄養および食感を実現したインスタントご飯の製造方法 | 2024-08-27 |
18 | 特許6190456 | メタンの生成 | 2024-08-22 |
19 | 特開2024-095220 | ミネラル水の製造方法及び微生物の繁殖抑制方法 | 2024-08-13 |
20 | 特許7495017 | 水系の微生物汚染抑制方法 | 2024-08-09 |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 356 patents/patent applications were inspection more than once in the examination process of other patent applications. The mean of the number of inspection is 1.4. The most inspection patent is 特開2015-128429 "澱粉含有穀物から得られる蛋白質濃縮物、その組成、製造方法及び使用" (9 times) , and the next most inspection patent is 再公表2017/094804 "ドコサヘキサエン酸含有油及びその製造方法" (9 times) .
- | No. | Title | |
---|---|---|---|
1 | 特開2015-128429 | 澱粉含有穀物から得られる蛋白質濃縮物、その組成、製造方法及び使用 | 9 times |
2 | 再公表2017/094804 | ドコサヘキサエン酸含有油及びその製造方法 | 9 times |
3 | 特許7128530 | 油脂含有排水処理方法、システムおよび装置 | 7 times |
4 | 特開2018-203628 | 化粧料組成物又は飲食品組成物 | 6 times |
5 | 特許6349296 | 液状食品組成物 | 6 times |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 2,000 patents/patent applications were cited more than once in the examination process of other patent applications. The mean of the number of cited is 2.0. The most cited patent is 特許7148307 "アクチュエーティングセンサモジュール" (84 times) , and the next most cited patent is 特許7276695 "工業的プロセスにおける微生物及び/又はバイオフィルムの増殖を制御するための方法" (21 times) .
- | No. | Title | |
---|---|---|---|
1 | 特許7148307 | アクチュエーティングセンサモジュール | 84 times |
2 | 特許7276695 | 工業的プロセスにおける微生物及び/又はバイオフィルムの増殖を制御するための方法 | 21 times |
3 | 特開2018-075240 | 微生物の殺菌・静菌および昆虫や病害虫の防除を行う数気圧の加圧により大気に開放された水中に発生させるCO2マイクロ・ナノバブル水 | 19 times |
4 | 特許6035578 | 乳酸菌、それを含む組成物及びそれらの使用 | 17 times |
5 | 特許6161669 | 使用済み吸収性物品のリサイクル方法 | 17 times |
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