Tanktwo offers a software-defined battery operating system (TBOS) that simplifies custom battery pack engineering and management. TBOS uses predictive analytics to optimize resource usage and proactively identify issues, accelerating electrification for manufacturers of high-value equipment.
Funding
$5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Founders
Product
Problem
Developing custom battery solutions for high-value equipment is a complex, time-consuming, and hazardous process. Current hardware-centric approaches hinder innovation and efficient resource utilization in the growing electrification sector.
Solution
Tanktwo provides the Tanktwo Battery Operating System (TBOS), a software-defined battery platform that simplifies custom battery pack engineering and management. TBOS utilizes predictive analytics to optimize resource usage and proactively identify potential issues, thereby reducing the total cost of ownership and environmental impact for users. This data-driven approach accelerates electrification and decarbonization efforts by offering unparalleled flexibility in battery configuration and performance tuning. The system allows for rapid adaptation to evolving demands without hardware modifications, streamlining product development cycles and compliance testing.
Target Audience
Manufacturers of high-value equipment, including those in the heavy-duty truck, mobile medical device, healthcare, telecom, defense, and transportation sectors, seeking to accelerate electrification and improve battery system performance.
Features
- Software-defined battery management system enabling dynamic reconfiguration of battery parameters via software interfaces.
- Predictive analytics engine for optimizing resource utilization and identifying potential hardware failures.
- Support for custom battery pack configurations in various form factors, including string cells, modules, and stacked units.
- API and SDK for simplified integration into diverse equipment, reducing reliance on specialized engineering resources.
- Accelerated compliance and certification processes through streamlined testing and validation workflows.
- Ability to adapt battery output voltage (4V to 400V) and charging characteristics through software adjustments.
- Enhanced reliability through automatic re-configuration in response to individual cell underperformance or failure.
- Compatibility with a wide range of battery chemistries.