Hardware & PCB design
PCB, enclosure, connectors, antenna and power design are reviewed against the installation and operating requirements.

This Rechargeable Waterproof Magnetic GPS Tracker is a portable 4G LTE Cat.1 tracking device designed for vehicles, trailers, construction equipment and movable assets. Its built-in magnet enables fast installation on metal surfaces without wiring or drilling. Multi-GNSS positioning, a rechargeable battery and a water-resistant housing make it suitable for outdoor and mobile tracking applications.
Final pricing depends on configuration, quantity, taxes and shipping.
Sample availability, quantity and lead time depend on the selected model. Confirm the pilot scope before placing a production order.
The Rechargeable Waterproof Magnetic GPS Tracker provides a practical tracking solution for vehicles and assets that cannot use a permanently wired GPS device. Its built-in magnetic mounting system allows installers to attach the tracker directly to a suitable metal surface, reducing installation time and avoiding changes to the vehicle’s electrical system.
The device operates over a 4G LTE Cat.1 cellular network and supports GPS, GLONASS, Galileo and BeiDou positioning. Access to multiple satellite navigation systems improves satellite availability across different countries and operating environments. Location information can be transmitted to a web-based tracking platform or mobile application for remote management.
Users can view the latest position, review historical travel routes and create electronic geofences. Depending on the selected platform configuration, movement, overspeed, low-battery and geofence events can be reported to the administrator. These functions make the tracker suitable for fleet supervision, equipment management, rental-asset protection and anti-theft monitoring.
Because the device contains a rechargeable battery, it can operate independently from the vehicle or asset power supply. The reporting interval can be adjusted according to the project requirements. Frequent position uploads provide more detailed route data, while longer intervals can reduce network activity and extend operating time.
The waterproof housing is designed for outdoor use and helps protect the internal electronics from rain and splashing water. For reliable positioning, the tracker should be mounted with the GNSS receiving side facing outward and should not be completely enclosed by thick metal.
Typical applications include cars, commercial vehicles, trailers, construction machinery, generators, agricultural equipment, rental assets, containers and high-value mobile equipment. The portable design also allows the same tracker to be transferred between different assets when necessary.
Shenzhen Jinshengchang Technology Co., Ltd. provides OEM and ODM services for rechargeable magnetic GPS tracker projects. Customization options include private logos, enclosure development, battery configuration, firmware functions, communication protocols, API integration and white-label GPS tracking platforms.
Reference configurations are shown below. Final specifications are confirmed in the approved product specification.
| Network | 4G LTE Cat.1 |
|---|---|
| Frequency Bands | LTE-FDD B1/B2/B3/B4/B5/B7/B8/B20/B28/B66; LTE-TDD B38/B41 |
| Positioning | GPS / Glonass / Galileo / BeiDou |
| Chip Model | CC1167Q |
| Channels | 64 |
| Tracking Sensitivity | -160 dBm |
| Cold Start | 28 s |
| Hot Start | 2 s |
| Update Rate | 1 Hz |
| Battery | 7,500 mAh 3.7V (rechargeable) |
| Current | 800 μA sleep / 24 mA active |
| Charging | 5V 2A, Type-C |
| Memory | 10,000 records (4 MB) |
| Sensor | 3D accelerometer |
| Water & Dust Resistant | IP67 |
| Dimensions | 95 x 72 x 35 mm |
| Weight | 287 g |
| Shell Material | ABS + PC (V0) |
| SIM Card | Micro SIM |
| Working Temperature | -20°C to 75°C |
| Storage Temperature | -40°C to 85°C |
Charge the Device: Fully charge the internal battery before first use
Install the SIM Card: Use an activated SIM card compatible with the device frequency bands
Configure the APN: Set the correct APN according to the network operator
Configure the Server: Enter the platform IP address, domain name and communication port
Register the Device: Add the IMEI or device ID to the tracking platform
Set the Reporting Interval: Select an interval based on tracking frequency and battery-life requirements
Choose the Installation Position: Select a concealed metal surface with stable magnetic contact
Check GNSS Reception: Avoid locations completely enclosed by thick metal
Secure the Device: Confirm that the magnet is firmly attached before vehicle movement
Test the Connection: Verify online status, position updates and alarm reporting
Create Geofences: Set authorized operating areas and restricted zones on the platform
Check Battery Status: Recharge the device before the power level becomes too low
Perform Regular Inspection: Check the housing, charging port and mounting position periodically
Define the application, country, quantity, reporting interval and target battery life.
Agree the device, network, power system, payload and platform interfaces.
Test representative devices, coverage, power consumption and alarm delivery on site.
Approve the specification and pilot results, then plan production, installation and support.
PCB, enclosure, connectors, antenna and power design are reviewed against the installation and operating requirements.
Reporting intervals, event logic, payload encoding and remote configuration are defined in a versioned interface document.
Device registration, maps, history, alarms and customer APIs are scoped together with access permissions and data handling.
Logo, enclosure color, labels, packaging and white-label interfaces can be assessed for the selected product and order quantity.
Sample availability, quantity and lead time depend on the selected model. Confirm the pilot scope before placing a production order.
Logo, packaging, firmware, payloads and API integration can be assessed within the agreed OEM / ODM scope.
Reporting interval, installation, radio conditions and temperature affect results. Confirm the operating profile and validate it during the pilot.
Share the country, device quantity, application, network, power target and platform requirements. Include drawings or interface documents when available.