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Parking Guidance System Surface Mount Dual Mode Geomagnetic Parking Space Detector
With outdoor wireless waterproof parking sensor, the parking guidance system can help the motorist to find the available parking space easily.
Car Park Guidance Product Features:
1) Advanced recognition algorithm and anti-interference design,
detection accuracy rate is as high as 99% or more;
2) Direct screw positioning installation of parking space,
eliminating the trouble of drilling holes, low construction
difficulty;
3) The geomagnetic parking space detector is suitable in size and
has little damage to the parking space ground;
4) High-strength shell design, with pressure resistance and
corrosion resistance, long service life;
5) Adopting protection design up to IP68, it can effectively cope
with various harsh environments of outdoor parking spaces.
6) Mobile phone APP Bluetooth debugging, convenient and simple,
easy to maintain.
Technical Parameter Table Of Geomagnetic Parking Detector | |||
Product Model: | P- T10S | Working Voltage: | 3.4V-3.6V (built-in battery) |
Specification Size: | Φ175×40mm | Battery Capacity: | 19000mAh |
Shell Material: | Black PC+ABS | Average Current: | <50uA |
Identification Method: | Dual detection of geomagnetic and radar | Response Time: | 10S |
Protection Level: | IP68 | Battery Life: | Can work for more than 3 years |
Radar Frequency: | 24GHZ millimeter wave radar | Geomagnetic Sensor: | 3-axis digital geomagnetic sensor |
Radar Distance: | 10-80cm | Detection Group: | Automobile |
Net Weight: | 650g | Communication Method: | Lora470 |
Bluetooth 2.4GHz | |||
Installation Method: | Surface type | Communication Distance: | ≤100m with outdoor zone control |
Working Temperature: | -40℃~+85℃ | Detection Accuracy: | ≥99% |
Pressure Resistance: | 20t | Environmental Humidity: | ≤90%RH (no condensation) |
Wireless Upgrade: | Support | Upgrade Method | Bluetooth upgrade |
A Parking Guidance System (PGS) using a surface mount dual-mode geomagnetic parking space detector is designed to improve parking efficiency and enhance user experience.
Here’s an overview of how such a system typically works and its components:
1. Geomagnetic Sensors:
These sensors detect changes in the Earth's magnetic field caused
by the presence of a vehicle in a parking space.
They can differentiate between occupied and unoccupied spaces by
analyzing the magnetic signature.
2. Dual Mode Functionality:
The system can operate in two modes: Real-time Monitoring and Data
Logging.
Real-time Monitoring: Provides immediate feedback to drivers about
available parking spaces.
Data Logging: Collects data over time for analysis and optimization
of parking space usage.
3. Surface Mount Technology (SMT):
The sensors are designed for surface mounting, allowing for easy
installation on various surfaces.
This technology enhances durability and reduces the footprint of
the devices.
Car Park Guidance Key Features
1. User-Friendly Interface: Displays real-time parking availability on digital signage or
mobile applications.
2. Integration with Smart Systems: Can be integrated with city-wide smart parking solutions or IoT
platforms.
3. Energy Efficient: Low power consumption, often powered by solar panels or low-energy
batteries.
4. Weather Resistant: Designed to withstand outdoor conditions, ensuring long-term
reliability.
Geomagnetic Parking Space Detector Benefits
1. Reduced Traffic Congestion: Helps drivers find parking spaces quickly, decreasing the time
spent searching.
2. Improved Parking Management: Provides data analytics for better management of parking
resources.
3. Enhanced User Experience: Increases satisfaction for drivers by reducing frustration
associated with finding parking.
Car Park Guidance Applications
1. Urban Parking: Ideal for use in city centers, shopping malls, and large
complexes.
2. Event Venues: Efficient for managing parking during events, allowing for better
crowd control.
3. Residential Areas: Useful in neighborhoods with limited parking availability.
A surface mount dual-mode geomagnetic parking space detector represents a significant advancement in parking technology, combining efficiency, ease of use, and data-driven management for improved urban mobility.