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Space Technology patent applications on 31st July 2025: Difference between revisions

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Technology trend analysis for Space Technology patent applications on 31st July 2025
 
Technology trend analysis for Space Technology patent applications on 31st July 2025
 
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On 31st July 2025, '''{{formatnum:50}}''' patent applications related to Space Technology were published, representing 0.7% of all patent applications for the day. While representing a smaller percentage, this activity indicates emerging innovation in Space Technology.
On 31st July 2025, '''{{formatnum:50}}''' patent applications related to Space Technology were published, representing 0.7% of all patent applications for the day. While representing a smaller percentage, this activity indicates emerging innovation in Space Technology.
== Market Analysis ==
=== Leading Organizations ===
The top organizations driving Space Technology innovation include:
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* '''[[RTX CORPORATION patent applications on 31st July 2025|RTX CORPORATION]]''': 4 applications (8.0% of Space Technology patents)
* '''[[T-Mobile USA Inc patent applications on 31st July 2025|T-Mobile USA Inc]]''': 3 applications (6.0% of Space Technology patents)
* '''[[Heart Aerospace Ab patent applications on 31st July 2025|Heart Aerospace Ab]]''': 2 applications (4.0% of Space Technology patents)
* '''[[QUALCOMM Incorporated patent applications on 31st July 2025|QUALCOMM Incorporated]]''': 2 applications (4.0% of Space Technology patents)
* '''[[Volkswagen Aktiengesellschaft patent applications on 31st July 2025|Volkswagen Aktiengesellschaft]]''': 2 applications (4.0% of Space Technology patents)
These 5 organizations account for 13 applications (26.0% of all Space Technology patents), indicating a diverse and competitive landscape.
== Technology Deep Dive ==
=== Core Innovation Areas ===
Patent applications in Space Technology encompass several key innovation areas:
* '''[[Satellite]]''': Core technology area
* '''[[Aerospace]]''': Core technology area
* '''[[Rocket]]''': Core technology area
* '''[[Spacecraft]]''': Core technology area
=== Technical Classification Analysis ===
The most active CPC classifications in Space Technology include:
* '''[[CPC G01S13/931|G01S13/931]]''' (RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES): 6 applications (12.0%)
* '''[[CPC H04W84/06|H04W84/06]]''' (Airborne or Satellite Networks  (space-based or airborne stations): 4 applications (8.0%)
* '''[[CPC B22F5/009|B22F5/009]]''' (Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product): 3 applications (6.0%)
* '''[[CPC G01S13/42|G01S13/42]]''' (Simultaneous measurement of distance and other co-ordinates  (indirect measurement): 3 applications (6.0%)
* '''[[CPC H04B7/18513|H04B7/18513]]''' ({Transmission in a satellite or space-based system}): 3 applications (6.0%)
* '''[[CPC B22F7/062|B22F7/062]]''' ({involving the connection or repairing of preformed parts}): 2 applications (4.0%)
* '''[[CPC B22F2007/068|B22F2007/068]]''' (WORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER  (making alloys by powder metallurgy): 2 applications (4.0%)
* '''[[CPC B33Y10/00|B33Y10/00]]''' (Processes of additive manufacturing): 2 applications (4.0%)
* '''[[CPC B33Y80/00|B33Y80/00]]''' (Products made by additive manufacturing): 2 applications (4.0%)
* '''[[CPC B22F10/25|B22F10/25]]''' (WORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER  (making alloys by powder metallurgy): 2 applications (4.0%)
== Global Innovation Landscape ==
Innovation in Space Technology spans multiple countries:
* '''[[Inventors from US|US]]''': 73 inventors (50.0%)
* '''[[Inventors from CN|CN]]''': 16 inventors (11.0%)
* '''[[Inventors from DE|DE]]''': 13 inventors (8.9%)
* '''[[Inventors from SE|SE]]''': 13 inventors (8.9%)
* '''[[Inventors from TW|TW]]''': 11 inventors (7.5%)
* '''[[Inventors from IL|IL]]''': 4 inventors (2.7%)
* '''[[Inventors from GB|GB]]''': 4 inventors (2.7%)
* '''[[Inventors from KR|KR]]''': 3 inventors (2.1%)
* '''[[Inventors from IN|IN]]''': 3 inventors (2.1%)
* '''[[Inventors from JP|JP]]''': 2 inventors (1.4%)
The US accounts for 50.0% of inventors in Space Technology, showing significant but not dominant innovation activity.
== Industry Collaborations ==
Notable collaborations in Space Technology include:
* '''[[Volkswagen Aktiengesellschaft patent applications on 31st July 2025|Volkswagen Aktiengesellschaft]]''' × '''[[Scania CV AB patent applications on 31st July 2025|Scania CV AB]]''': 2 joint applications
* '''[[SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS CO LTD patent applications on 31st July 2025|SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS CO LTD]]''' × '''[[Wuhan Mindray Bio-Medical Scientific Co Ltd patent applications on 31st July 2025|Wuhan Mindray Bio-Medical Scientific Co Ltd]]''': 1 joint applications
These collaborations represent 3 joint applications, indicating emerging collaboration trends in Space Technology.
== Leading Inventors ==
Key inventors driving Space Technology innovation:
* '''[[:Category:Peter_Breitzmann_of_Aldie_VA_US|Peter Breitzmann of Aldie VA US]]''': 4 applications
* '''[[:Category:Nils_CARLSON_of_KÄllered_SE|Nils CARLSON of KÄllered SE]]''': 2 applications
* '''[[:Category:Joel_FRANSSON_of_Göteborg_SE|Joel FRANSSON of Göteborg SE]]''': 2 applications
* '''[[:Category:Francisco_MARTINS_of_Göteborg_SE|Francisco MARTINS of Göteborg SE]]''': 2 applications
* '''[[:Category:Heiko_KURZ_of_Hannover_DE|Heiko KURZ of Hannover DE]]''': 2 applications
* '''[[:Category:Thomas_GISDER_of_Wolfsburg_DE|Thomas GISDER of Wolfsburg DE]]''': 2 applications
* '''[[:Category:Marc-Michael_MEINECKE_of_Sassenburg_DE|Marc-Michael MEINECKE of Sassenburg DE]]''': 2 applications
* '''[[:Category:Mikael_JOHANSSON_of_Nykvarn_SE|Mikael JOHANSSON of Nykvarn SE]]''': 2 applications
* '''[[:Category:Derrick_L._Ives_of_North_Bend_WA_US|Derrick L. Ives of North Bend WA US]]''': 2 applications
* '''[[:Category:Ryan_P._Dreiling_of_Shawnee_KS_US|Ryan P. Dreiling of Shawnee KS US]]''': 2 applications
== Recent Patent Applications ==
Representative Space Technology patent applications from 31st July 2025:
=== 20250241612. RADIOGRAPHIC IMAGING DEVICE AND POSITIONING METHOD THEREOF ===
'''Applicant:''' [[SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS CO LTD patent applications on 31st July 2025|SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS CO LTD]], [[Wuhan Mindray Bio-Medical Scientific Co Ltd patent applications on 31st July 2025|Wuhan Mindray Bio-Medical Scientific Co Ltd]]
'''Abstract:''' A radiographic imaging device and a positioning method thereof are provided. The radiographic imaging device includes a head, a movable detector, at least one first base station and at least one tag. The first base station is configured to transmit a signal to the tag and receive a signal returned from the tag. In the present disclosure, the movable detector is used, which can be placed without being limited to a specific location.
=== 20250242200. LAUNCHPAD AUTOMATION SYSTEM ===
'''Applicant:''' [[Driveline Baseball Enterprises Llc patent applications on 31st July 2025|Driveline Baseball Enterprises Llc]]
'''Abstract:''' A system and method for automating markerless motion capture by integrating radar tracking, embedded computing, machine vision, and machine learning techniques. A radar gun tracks object speed and triggers an embedded computer system. The embedded system decodes signals from the radar gun and triggers high-speed cameras to capture video footage. Machine learning algorithms optimize camera settings and triggering accuracy over time by analyzing captured biomechanical data.
=== 20250242408. ADDITIVE MANUFACTURING REMOVAL AND REPLACEMENT OF FEATURE TO ENABLE ACCESS DURING DIRECTED ENERGY DEPOSITION REPAIR PROCESS ===
'''Applicant:''' [[RTX CORPORATION patent applications on 31st July 2025|RTX CORPORATION]]
'''Abstract:''' An aerospace part, which is made from a base material, repairing using directed energy deposition (DED) techniques. The aerospace part is inspected to identify a worn or defective repair region on a repair feature that requires repair. An intervening feature that blocks line-of-sight from a DED laser/powder head to the repair region on the repair feature is removed such that after removal of the intervening feature there is line-of-sight from the DED laser/powder head to the repair region on the...
=== 20250242409. USE OF SACRIFICIAL SURFACE DURING DIRECTED ENERGY DEPOSITION REPAIR PROCESS ===
'''Applicant:''' [[RTX CORPORATION patent applications on 31st July 2025|RTX CORPORATION]]
'''Abstract:''' A method of repairing an aerospace part including inspecting the aerospace part, made from a base material, to identify a worn or defective repair region that requires repair. A sacrificial backing material, which serves as a platform for deposition of repair layers during a repair procedure, is attached to the aerospace part. A repair procedure is performed on the repair region using a directed energy deposition (DED) energy/powder head after which the sacrificial backing material is removed fr...
=== 20250242410. ENGINEERED MICROSTRUCTURE FOR ENHANCED PERFORMANCE DURING DIRECTED ENERGY DEPOSITION REPAIR PROCESS ===
'''Applicant:''' [[RTX CORPORATION patent applications on 31st July 2025|RTX CORPORATION]]
'''Abstract:''' An aerospace part, which is made from a base material, is inspected to identify a worn or defective repair region that requires repair. A repair procedure is performed on the repair region using a directed energy deposition (DED) energy/powder head. The repair procedure includes depositing, using the DED energy/powder head, a first layer of DED powder material in the repair region; melting and consolidating, using energy from the DED energy/powder head, the first layer of DED powder material to ...
== Market Implications ==
=== Innovation Intensity ===
With 50 applications in a single day, Space Technology demonstrates moderate innovation intensity, suggesting growing market interest and investment.
=== Competitive Landscape ===
Innovation in Space Technology includes 43 organizations, indicating moderate competition with established players and emerging companies.
=== Technology Outlook ===
Emerging themes in Space Technology patents include: radar, repair, from, satellite, with, suggesting future development in these areas.
The current patent activity level suggests Space Technology is in a early development phase with emerging applications and technologies.
== Related Technology Areas ==
Innovation in Space Technology often intersects with other emerging technologies:
* [[Medical Devices patent applications on 31st July 2025|Medical Devices]]: 448 applications
* [[Semiconductors patent applications on 31st July 2025|Semiconductors]]: 429 applications
* [[Cybersecurity patent applications on 31st July 2025|Cybersecurity]]: 289 applications
* [[Renewable Energy patent applications on 31st July 2025|Renewable Energy]]: 182 applications
* [[Generative AI patent applications on 31st July 2025|Generative AI]]: 180 applications
* [[Environmental Tech patent applications on 31st July 2025|Environmental Tech]]: 165 applications
* [[5G Technology patent applications on 31st July 2025|5G Technology]]: 154 applications
* [[Internet of Things patent applications on 31st July 2025|Internet of Things]]: 152 applications
== Analysis Tools ==
=== Search Resources ===
* [[Special:Search/Space Technology patents from 31st July 2025|Search all Space Technology patents from 31st July 2025]]
* [[Category:Space Technology|Browse all Space Technology patents]]
* [[Category:Space Technology Patent Applications|Browse by category]]
== See Also ==
* [[Weekly Patent Summary]]
* [[Technology Trends in Patent Applications]]
* [[Space Technology Industry Analysis]]
* [[Patent Analytics and Trends]]


[[Category:Space Technology]]
[[Category:Space Technology]]

Latest revision as of 01:41, 4 August 2025

Space Technology Patent Applications on 31st July 2025

Executive Summary

On 31st July 2025, 50 patent applications related to Space Technology were published, representing 0.7% of all patent applications for the day. While representing a smaller percentage, this activity indicates emerging innovation in Space Technology.

Market Analysis

Leading Organizations

The top organizations driving Space Technology innovation include:

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These 5 organizations account for 13 applications (26.0% of all Space Technology patents), indicating a diverse and competitive landscape.

Technology Deep Dive

Core Innovation Areas

Patent applications in Space Technology encompass several key innovation areas:

Technical Classification Analysis

The most active CPC classifications in Space Technology include:

  • G01S13/931 (RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES): 6 applications (12.0%)
  • H04W84/06 (Airborne or Satellite Networks (space-based or airborne stations): 4 applications (8.0%)
  • B22F5/009 (Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product): 3 applications (6.0%)
  • G01S13/42 (Simultaneous measurement of distance and other co-ordinates (indirect measurement): 3 applications (6.0%)
  • H04B7/18513 ({Transmission in a satellite or space-based system}): 3 applications (6.0%)
  • B22F7/062 ({involving the connection or repairing of preformed parts}): 2 applications (4.0%)
  • B22F2007/068 (WORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER (making alloys by powder metallurgy): 2 applications (4.0%)
  • B33Y10/00 (Processes of additive manufacturing): 2 applications (4.0%)
  • B33Y80/00 (Products made by additive manufacturing): 2 applications (4.0%)
  • B22F10/25 (WORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER (making alloys by powder metallurgy): 2 applications (4.0%)

Global Innovation Landscape

Innovation in Space Technology spans multiple countries:

  • US: 73 inventors (50.0%)
  • CN: 16 inventors (11.0%)
  • DE: 13 inventors (8.9%)
  • SE: 13 inventors (8.9%)
  • TW: 11 inventors (7.5%)
  • IL: 4 inventors (2.7%)
  • GB: 4 inventors (2.7%)
  • KR: 3 inventors (2.1%)
  • IN: 3 inventors (2.1%)
  • JP: 2 inventors (1.4%)

The US accounts for 50.0% of inventors in Space Technology, showing significant but not dominant innovation activity.

Industry Collaborations

Notable collaborations in Space Technology include:

These collaborations represent 3 joint applications, indicating emerging collaboration trends in Space Technology.

Leading Inventors

Key inventors driving Space Technology innovation:

Recent Patent Applications

Representative Space Technology patent applications from 31st July 2025:

20250241612. RADIOGRAPHIC IMAGING DEVICE AND POSITIONING METHOD THEREOF

Applicant: SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS CO LTD, Wuhan Mindray Bio-Medical Scientific Co Ltd

Abstract: A radiographic imaging device and a positioning method thereof are provided. The radiographic imaging device includes a head, a movable detector, at least one first base station and at least one tag. The first base station is configured to transmit a signal to the tag and receive a signal returned from the tag. In the present disclosure, the movable detector is used, which can be placed without being limited to a specific location.

20250242200. LAUNCHPAD AUTOMATION SYSTEM

Applicant: Driveline Baseball Enterprises Llc

Abstract: A system and method for automating markerless motion capture by integrating radar tracking, embedded computing, machine vision, and machine learning techniques. A radar gun tracks object speed and triggers an embedded computer system. The embedded system decodes signals from the radar gun and triggers high-speed cameras to capture video footage. Machine learning algorithms optimize camera settings and triggering accuracy over time by analyzing captured biomechanical data.

20250242408. ADDITIVE MANUFACTURING REMOVAL AND REPLACEMENT OF FEATURE TO ENABLE ACCESS DURING DIRECTED ENERGY DEPOSITION REPAIR PROCESS

Applicant: RTX CORPORATION

Abstract: An aerospace part, which is made from a base material, repairing using directed energy deposition (DED) techniques. The aerospace part is inspected to identify a worn or defective repair region on a repair feature that requires repair. An intervening feature that blocks line-of-sight from a DED laser/powder head to the repair region on the repair feature is removed such that after removal of the intervening feature there is line-of-sight from the DED laser/powder head to the repair region on the...

20250242409. USE OF SACRIFICIAL SURFACE DURING DIRECTED ENERGY DEPOSITION REPAIR PROCESS

Applicant: RTX CORPORATION

Abstract: A method of repairing an aerospace part including inspecting the aerospace part, made from a base material, to identify a worn or defective repair region that requires repair. A sacrificial backing material, which serves as a platform for deposition of repair layers during a repair procedure, is attached to the aerospace part. A repair procedure is performed on the repair region using a directed energy deposition (DED) energy/powder head after which the sacrificial backing material is removed fr...

20250242410. ENGINEERED MICROSTRUCTURE FOR ENHANCED PERFORMANCE DURING DIRECTED ENERGY DEPOSITION REPAIR PROCESS

Applicant: RTX CORPORATION

Abstract: An aerospace part, which is made from a base material, is inspected to identify a worn or defective repair region that requires repair. A repair procedure is performed on the repair region using a directed energy deposition (DED) energy/powder head. The repair procedure includes depositing, using the DED energy/powder head, a first layer of DED powder material in the repair region; melting and consolidating, using energy from the DED energy/powder head, the first layer of DED powder material to ...

Market Implications

Innovation Intensity

With 50 applications in a single day, Space Technology demonstrates moderate innovation intensity, suggesting growing market interest and investment.

Competitive Landscape

Innovation in Space Technology includes 43 organizations, indicating moderate competition with established players and emerging companies.

Technology Outlook

Emerging themes in Space Technology patents include: radar, repair, from, satellite, with, suggesting future development in these areas.

The current patent activity level suggests Space Technology is in a early development phase with emerging applications and technologies.

Related Technology Areas

Innovation in Space Technology often intersects with other emerging technologies:

Analysis Tools

Search Resources

See Also

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