• Array Pressure Distribution

    Array Pressure Distribution can be used for applications such as pressure distribution measurement, multi-point monitoring, occlusal monitoring, gait analysis, local stress analysis, ulcer and pressure ulcer analysis, foot neuropathy analysis, and more

STANDARD PRODUCT

RPPS-1600
Array Pressure Distribution

FPH2500pro
Array Pressure Distribution

STANDARD PRODUCT

RPPS-1600

RPPS-400485

FPH2500pro

RPPS-99

Pressure Distribution Detection System

The pressure distribution system collects real-time pressure data on the surface of objects through a sensor matrix ,
and conducts visual analysis of the data.
Help users make scientific decisions, which is widely applied in various fields,
and helps optimize product design, enhance safety and comfort.
• Technical features: High precision and real-time performance, high sensor density
(approximately 200 sensing points per square centimeter), capable of dynamically capturing pressure changes.
• Visualization and Data Analysis: Generate pressure heat maps,
supporting quantitative analysis of indicators such as pressure peaks and uniformity.
• Customized Adaptation: Sensor arrays with flexible and waterproof characteristics can be designed according to specific requirements.

Car Seat

  • Driver status monitoring:
    Real-time detection of seat pressure distribution, identification of the driver’s sitting posture (such as body tilt, prolonged sitting fatigue), and automatic adjustment of the lumbar support or ventilation function of the seat to enhance comfort.
  • Fatigue prevention driving warning:
    Analysis of pressure changes during long-term driving (such as frequent adjustments of sitting posture), combined with algorithms to determine fatigue status, and through sound or vibration to remind of rest.

The array-type pressure sensor upgrades traditional car seats into intelligent interactive terminals, balancing comfort optimization and active safety protection, and driving the intelligent cabin towards a more humanized and highly secure direction.

Seat cushion pressure distribution system

  • Healthcare for preventing pressure sores:
    Regularly monitor the pressure distribution of bedridden or sedentary users (such as wheelchair cushions, hospital beds), identify high-risk pressure areas and remind them to adjust their posture to reduce the probability of pressure sores.
  • Rehabilitation assessment:
    In spinal cord injury or post-operative rehabilitation, quantify the patient’s sitting balance ability to provide data support for physical therapy.
  • Office health management:
    Embed office chair cushions to monitor the duration of sitting and the distribution of pressure points, and联动 remind users to stand up and move or adjust their sitting posture.

This system achieves precise health intervention through dynamic pressure monitoring and is widely applied in medical care, rehabilitation training, and daily office settings, significantly improving the quality of life for people who spend long periods sitting or lying down.

Foot sole pressure distribution system

  • Gait analysis and motion optimization:
    Detect the pressure distribution on the sole during walking or running (such as arch support, center of gravity shift), and assist in correcting abnormal gait (such as flat feet, inward/outward bowing).
  • Personalized shoe customization:
    Design orthotic insoles or sports shoes based on pressure data to alleviate foot diseases (such as diabetic foot, plantar fasciitis).
  • Improvement of athlete performance:
    Analyze the force distribution on the sole during actions like jumping and landing, and optimize training plans (such as basketball, sprinting). 。

The foot pressure system, integrating biomechanics and sensor technology, has become a core tool in sports science, medical rehabilitation, and footwear design, facilitating precise health management and breakthroughs in athletic performance.

Smart Mattress

  • Sleep quality analysis:
    Monitor the distribution of body pressure during sleep, identify the frequency of turning over, breathing rhythm and changes in heart rate, and generate a sleep quality report.
  • Adaptive support adjustment:
    Dynamically adjust the softness of different areas of the mattress (such as hard in the waist and soft in the shoulders), adapting to different sleeping postures (side lying, supine position).
  • Long-term bed care:
    Real-time alert for areas at risk of pressure sores, link with the inflation and deflation system of the air mattress, and distribute local pressure.

The intelligent mattress integrates pressure sensing technology with intelligent algorithms to cover all scenarios from sleep optimization to critical care, becoming an important carrier for smart healthcare and home health.

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