Provides AI-powered adjustable dumbbells that automatically change weight, count reps, and correct form in real time using velocity-based training (VBT) algorithms. This system eliminates the need for multiple equipment sets, ensuring safe, efficient, and personalized strength training for users of all levels.
Funding
$7M 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
Traditional strength training often requires multiple sets of dumbbells to accommodate varying fitness levels and exercise types, leading to space constraints and inefficient workout routines. Users may also struggle with maintaining proper form, leading to potential injuries and hindering progress.
Solution
Kabata provides AI-powered adjustable dumbbells that automatically adjust weight, count repetitions, and provide real-time form correction using velocity-based training (VBT) algorithms. The system analyzes the speed of repetitions to determine when to increase or decrease the weight, ensuring safe and effective progression. The dumbbells replace the need for multiple sets, saving space and streamlining workouts. Integrated sensors and AI algorithms provide personalized training plans and real-time feedback, optimizing workouts for muscle gain, weight loss, and overall fitness goals.
Target Audience
The primary target audience includes individuals seeking efficient and personalized strength training at home, as well as athletes and fitness enthusiasts looking to optimize their performance with data-driven insights.
Features
- Automatic weight adjustment from 5-60 lbs in 5 lb increments
- Real-time form correction using AI-powered motion analysis
- Velocity-based training (VBT) algorithms for personalized weight recommendations
- Automatic rep counting and personalized analytics
- AI-driven workout plans tailored to individual fitness goals
- Integration of close to 50 movements and over 75 workouts
- Range of motion (ROM) detection and symmetry analysis