IOTE EXPO CHINA

lOTE 2026 The 25th International Internet of Things Exhibition-Shenzhen

2026.08.26-28 | Shenzhen World Exhibition & Convention Center (Bao’an District), Guangdong Province, China

Gensor Platform

Company Profile

GENSOR Platform is the world’s leading vertical one-stop service platform for sensors developed and operated by Shanghai Gansuan Electronic Technology Co., Ltd. GENSOR Platform is committed to deeply integrating the upstream and downstream high-quality resources of the industrial chain, reshaping the service ecology of the sensor industry, and fully empowering China Zhizao to innovate and upgrade with excellent platform capabilities.

Main Business

GENSOR Platform deeply cultivates the sensor industry and adheres to the service concept of taking technological innovation as the engine and promoting industrial development. Focusing on the diversified needs of users, we have built a full-dimensional, high-value professional service system, which comprehensively covers one-stop professional services such as sensor selection and replacement, global procurement and trade, customized solution development, precise supply and demand matching, personalized product customization, PCB design and processing, and R&D and testing.

Main Products

Description

GaN High-Dynamic Robot Joint Servo Drive Solution Product Description: This solution is based on GaN (gallium nitride) technology and is specifically designed for robot joint drives. It utilises the LSM32G431 as the main controller, paired with the INS2040QC driver and the INN100EBD018DAD GaN power transistor, to deliver exceptional performance. Key Advantages: High power density: GaN devices significantly reduce the footprint, enabling a more compact joint design. Ultra-high dynamic response: With a PWM switching frequency of up to 100 kHz and an FOC control cycle of less than 20 microseconds, torque output is rapid and precise. High-precision control: Equipped with a 16-bit absolute magnetic encoder, supporting both high-speed servo and precise positioning modes. This solution significantly enhances the explosive power and control precision of robotic joints, making it the ideal choice for high-performance robots. Application: Industrial robotic joints, biomimetic robots, precision gimbals



Description

BMS Battery Management Solution Product Overview: Our customised BMS solution for drones is specifically designed for drone battery management, offering the following key advantages: Ultra-high-precision monitoring: Cell voltage measurement error 5 mV, current accuracy of 1 per cent, and temperature error 2 °C, ensuring precise and reliable data. Intelligent SOC algorithm: Optimised integration and temperature compensation result in an SOC error of 5 per cent, which can be reduced to 3 per cent when combined with customer data, effectively addressing pulse loads and low-current interference. Comprehensive Safety Protection: Features alarm logging, self-heating (to prevent low-temperature damage) and self-discharge (to prevent high-voltage damage during full-charge storage), ensuring flight safety. Lightweight Design: Reduces the weight of the battery pack, directly enhancing the drones flight endurance. High precision, high safety and long endurance a one-stop solution to the challenges of drone battery management. Application: Logistics and delivery, industrial inspections, agricultural crop protection, military and defence



Description

Dexterous Hand (Fingertip Tactile Sensing) Solution Product Description: This solution is specifically designed for integration into robotic fingertips, with the following key advantages: High-density sensing: 96 tactile points distributed across a 9.5 × 16 mm area, with a native pitch of 1 mm; super-resolution algorithms enhance positioning accuracy to <0.1 mm. Precise force feedback: Normal force measurement range of 0.120 N, with a minimum detectable force of 0.1 N; the sensor-side MCU calculates three-dimensional force vectors (normal + shear) in real time. Low-latency, high-speed data acquisition: A sampling rate of 100 Hz meets the requirements for closed-loop haptic control. Stability and consistency: Coefficient of variation (CV) between tactile points and across batches is <10%. High density, high precision and low latency enable robotic fingertips to truly possess tactile sensation. Application: Robotics, industrial automation, VR/AR haptic feedback