Healthcare

Nanochap ENS001 Chip: A New Era of Wrist Joint Rehabilitation Trainers vs. Tradition

Release time:2025-04-11

In the field of rehabilitation medicine, wrist joint rehabilitation training is crucial for restoring hand function and improving quality of life. Although traditional wrist joint rehabilitation trainers can assist patients to perform joint activities to a certain extent, their low degree of intelligence, lack of personalized training programs, and insufficient data tracking and analysis capabilities limit the further improvement of their rehabilitation effects. The emergence of Nanochap ENS001 chip, with its unique technical advantages, has revolutionized the wrist joint rehabilitation trainer.

 

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Limitations of traditional wrist joint rehabilitation trainers

Traditional wrist joint rehabilitation trainers are mostly designed mechanically or pneumatically to simulate joint activity through preset trajectories and resistance. However, there are several significant problems with this design:

1. Lack of personalization: traditional rehabilitation devices are unable to adjust the training parameters according to the patient's specific situation (e.g., age, gender, severity of the disease, etc.), which results in training effects varying from person to person, making it difficult to meet individualized needs.

2. Low degree of intelligence: lack of intelligent sensing and data processing capabilities, unable to real-time monitoring of the patient's movement status, muscle activity or joint mobility, and thus unable to adjust the training program in a timely manner.

3. Insufficient data tracking and analysis: the traditional rehabilitation device cannot record and analyze the patient's training data, so it is difficult for the doctor to assess the progress of rehabilitation, and the patient is unable to intuitively understand his or her own rehabilitation situation.

 

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Core technology advantages of Nanochap ENS001 chip

Nanochap ENS001 chip has introduced a number of innovative technologies to address the limitations of traditional wrist joint rehabilitation trainers, bringing a qualitative leap in rehabilitation training.

1. Highly programmable: The Nanochap ENS001 chip has powerful programmable features that allow users to configure and program the chip flexibly according to specific application requirements. This programmability allows the chip to be used in a variety of different stimulation scenarios, such as nerve stimulation, muscle stimulation, and so on.

2. Precise stimulation output: The ENS001 chip integrates an ARM Cortex-M0 MCU, a powerful microcontroller that provides the chip with highly efficient computing power, enabling it to quickly process a variety of complex commands and realize precise control of stimulation parameters.

3. Integration and miniaturization: The integration of a power switch and a high-voltage boost converter simplifies the overall circuit design, which not only shortens the product development cycle, but also reduces production costs.


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4. Safety and reliability: ENS001 chip comes with over-temperature and over-voltage detection, real-time monitoring of the operating status of the device, once found abnormal, take immediate measures to ensure the safety and stability of the treatment process. In addition, the chip also has a charge balance technology, through the charge replication technology to maintain the positive and negative half-cycle charge close to the balance, effectively avoiding damage to human tissue, while preventing electrode corrosion.

5. Easy integration and compatibility: The ENS001 chip provides a wealth of interfaces and protocols, making it easy to integrate with other devices and systems. In addition, it may also support a variety of communication protocols, such as SPI, I2C, etc., to facilitate communication with different microcontrollers or processors.


The Nanochap ENS001 chip brings an unprecedented level of intelligence and personalization to wrist joint rehab trainers with its core technology advantages of highly programmability, precise stimulus output, high integration, high security and easy integration.

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