Bridge Load Deflection Integrated Analyzer with Micron-Level Monitoring and 30-200Hz Frequency for Structural Health Assessment
Price:
Negotiable
MOQ:
1
Delivery Time:
2 weeks
Brand:
Enviko
Product Description
Bridge Load-Deflection Integrated Analyzer
The CET-CI Vehicle Load-Deflection Integrated Intelligent Analyzer addresses the industry challenge of analyzing causal mechanisms of highway bridge main girder dynamic deflection. By precisely detecting vehicle loads and bridge structural deflection responses in real-time, it conducts front-end fusion matching analysis to study vehicle load impact on main girder deflection. This establishes a model correlating bridge load magnitude and distribution with main girder deflection response, providing critical foundational data for bridge structural safety assessment.
Ultra-Sensitive Video Deflection Monitoring
Ultra-sensitive monitoring at micron level precision
Ultra-fast computation within hundreds of milliseconds
High frequency operation from 30Hz to 200Hz
Lightweight Sensor Data Fusion
Fusion analysis of vehicle loads and deflection responses
Comprehensive acquisition of regional vehicle load-deflection data
Lightweight, Low-Cost Vehicle Load Detection
Low-cost digital piezoelectric sensors
Integrated temperature sensors for environmental compensation
No coil design for simplified installation
Convenient Power Supply Solutions
Mains AC power supply for continuous operation
Solar DC power supply for remote locations
Product Images
Technical Specifications
| Parameter | Specification |
|---|---|
| Monitoring Sensitivity | Micron level precision |
| Computation Speed | Hundreds of milliseconds |
| Operating Frequency | 30Hz to 200Hz |
| Sensor Type | Digital piezoelectric with temperature compensation |
| Power Options | AC mains and DC solar power |
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Chengdu Enviko Technology Co.,Ltd
Location
Room 1001, Unit 2, Building 2, No. 158 Tianfu 4th Street
Contact Person
Max Chung