Timeback provides a no‑code framework that lets entrepreneurs and teams create AI agents to automate repetitive tasks and integrate disparate tools. By handling busywork such as data syncing, workflow orchestration, and routine decision‑making, the platform frees users to focus on strategic creation, leadership, and personal time. The service emphasizes safety and ease of use, allowing non‑technical users to deploy functional agents without building complex flowcharts.
Funding
Funding not disclosed
Founders
Product
Problem
Entrepreneurs and teams spend significant time on repetitive administrative tasks because their existing software tools do not integrate seamlessly, and building custom automations requires coding or complex flowchart tools that most users find cumbersome.
Solution
Timeback offers a no‑code framework that lets users create AI agents to automate routine work across disparate applications. Users define the tasks they want to delegate, and the platform generates autonomous agents that learn preferences, operate continuously, and interact with existing tools through built‑in integrations. The agents are managed through a simple conversational interface, eliminating the need for flowcharts or programming expertise. By handling busywork safely and efficiently, Timeback frees users to focus on higher‑value activities such as creation, leadership, and strategic planning.
Target Audience
Primary customers are solopreneurs, small business owners, and mid‑size teams that rely on multiple SaaS applications but lack technical resources to build custom automations.
Features
- Drag‑and‑drop workflow builder that requires no coding or flowchart design
- Pre‑built connectors for common SaaS tools, enabling agents to move data between systems automatically
- Conversational UI where users can instruct agents in natural language and monitor progress
- Continuous learning capabilities allowing agents to adapt to user preferences over time
- 24/7 autonomous execution of tasks, reducing reliance on manual intervention
- Built‑in safety controls and sandboxed execution to mitigate risks associated with AI automation