Location
Hilton Waikoloa Village, Hawaii
Event Website
https://hicss.hawaii.edu/
Start Date
7-1-2025 12:00 AM
End Date
10-1-2025 12:00 AM
Description
Low-code platforms (LCPs) allow the development, testing, and deployment of software applications with minimal manual coding by using pre-built software components and visual design tools. LCPs frequently enter into technology partnerships to offer extensive capabilities required for software development. In this study, we identify and characterize these technology partnerships to understand and develop the structure of the LCP ecosystem. We model the LCP ecosystem and identify nine types of technology partnerships. In doing so, we advance our understanding in three key areas: (1) provide insight into the evolving LCP ecosystem, (2) reveal that LCP vendors use various technological partnerships and strategies across different capability areas with varying partner network sizes and capability compositions, and (3) demonstrate the value of ecosystem visualization. Collectively, our findings can help LCP users and developers to understand the foundational, competitive, and niche partnership strategies and enable LCP vendors to innovate and collaborate effectively.
Recommended Citation
Naqvi, Syed Asad Ali; Zimmer, Markus; Drews, Paul; and Basole, Rahul, "Understanding Partnering Strategies in the Low-Code Platform Ecosystem" (2025). Hawaii International Conference on System Sciences 2025 (HICSS-58). 4.
https://aisel.aisnet.org/hicss-58/os/managing_ecosystems/4
Understanding Partnering Strategies in the Low-Code Platform Ecosystem
Hilton Waikoloa Village, Hawaii
Low-code platforms (LCPs) allow the development, testing, and deployment of software applications with minimal manual coding by using pre-built software components and visual design tools. LCPs frequently enter into technology partnerships to offer extensive capabilities required for software development. In this study, we identify and characterize these technology partnerships to understand and develop the structure of the LCP ecosystem. We model the LCP ecosystem and identify nine types of technology partnerships. In doing so, we advance our understanding in three key areas: (1) provide insight into the evolving LCP ecosystem, (2) reveal that LCP vendors use various technological partnerships and strategies across different capability areas with varying partner network sizes and capability compositions, and (3) demonstrate the value of ecosystem visualization. Collectively, our findings can help LCP users and developers to understand the foundational, competitive, and niche partnership strategies and enable LCP vendors to innovate and collaborate effectively.
https://aisel.aisnet.org/hicss-58/os/managing_ecosystems/4