LIGO AIR User Guide: Difference between revisions
| [checked revision] | [checked revision] |
| (28 intermediate revisions by the same user not shown) | |||
| Line 9: | Line 9: | ||
*Detailed instructions for using mobile application (LIGO BLE configurator) are described in detail in the ‘LIGO BLE Configurator App User Guide’ document. | *Detailed instructions for using mobile application (LIGO BLE configurator) are described in detail in the ‘LIGO BLE Configurator App User Guide’ document. | ||
}} | }} | ||
== Product Overview == | == Product Overview == | ||
| Line 48: | Line 47: | ||
{| class="wikitable" style="text-align:center;" | {| class="wikitable" style="text-align:center;" | ||
|- | |- | ||
! Parameter !! LIGO AIR | ! Parameter !! LIGO AIR LxS || LIGO AIR LxT !! LIGO AIR-PRO | ||
|- | |- | ||
| style="text-align:left;" | Standard length (L), mm || colspan=" | | style="text-align:left;" | Standard length (L), mm || colspan="3" | 700, 1000, 1500...up to 6000 mm | ||
|- | |- | ||
| style="text-align:left;" | Measuring error, % || colspan=" | | style="text-align:left;" | Measuring error, % || colspan="3" | ± 0.5 % | ||
|- | |- | ||
| style="text-align:left;" | Bluetooth specs || colspan=" | | style="text-align:left;" | Bluetooth specs || colspan="3" | Bluetooth 5.4, IEEE 802.15.4-2006, 2.4 GHz, -95 dBm sensitivity | ||
|- | |- | ||
| style="text-align:left;" | TX power max || 6 dBm || 19.5 dBm | | style="text-align:left;" | TX power max || 6 dBm || 6 dBm || 19.5 dBm | ||
|- | |- | ||
| style="text-align:left;" | Advertising Protocol || colspan=" | | style="text-align:left;" | Advertising Protocol || colspan="3" | - SOJI Protocol (default)<br>- Mielta Protocol (setting in mobile app)<br>- Escort Protocol (setting in mobile app) | ||
- Technoton Protocol (setting in mobile app) | |||
- EUROSEN Protocol (setting in mobile app) | |||
|- | |- | ||
| style="text-align:left;" | Power supply: Built-in Battery Li-SOCL2 || 3.6V * 2600mAh || 3.6V * 3600mAh | | style="text-align:left;" | Power supply: Built-in Battery Li-SOCL2 || 3.6V * 2600mAh || 3.6V * 2600mAh || 3.6V * 3600mAh | ||
|- | |- | ||
| style="text-align:left;" | Current consumption in working mode (uA) || 9 || 27 | | style="text-align:left;" | Current consumption in working mode (uA) || 9 || 9 || 27 | ||
|- | |- | ||
| style="text-align:left;" | Measurement interval (second) || colspan=" | | style="text-align:left;" | Measurement interval (second) || colspan="3" | From 5 to 10 | ||
|- | |- | ||
| style="text-align:left;" | Advertising message interval (second) || From 5 to 10 || From 10 | | style="text-align:left;" | Advertising message interval (second) || From 5 to 10 || From 5 to 10 || 10 | ||
|- | |- | ||
| style="text-align:left;" | Waterproof standard (Ingress protection rating, IP) || colspan=" | | style="text-align:left;" | Waterproof standard (Ingress protection rating, IP) || colspan="3" | IP69K | ||
|- | |- | ||
| style="text-align:left;" | Operating temperature (°C) || colspan=" | | style="text-align:left;" | Operating temperature (°C) || colspan="3" | -40...+85 | ||
|- | |- | ||
| style="text-align:left;" | Resolution (bit) || colspan=" | | style="text-align:left;" | Resolution (bit) || colspan="3" | 12 | ||
|- | |- | ||
| style="text-align:left;" | Accelerometer || | | style="text-align:left;" | Accelerometer || N/A || Built-in | ||
|Built-in | |||
|- | |- | ||
| style="text-align:left;" | Memory || colspan=" | | style="text-align:left;" | Memory || colspan="3" | Built-in 32Mb EEPROM | ||
|- | |- | ||
| style="text-align:left;" | Average sampling period, s || colspan=" | | style="text-align:left;" | Average sampling period, s || colspan="3" | 5 to 60 | ||
|- | |- | ||
| style="text-align:left;" | Absolute error in temperature measurement within the entire temperature measuring range, °С || colspan=" | | style="text-align:left;" | Absolute error in temperature measurement within the entire temperature measuring range, °С || colspan="3" | ±2 | ||
|- | |- | ||
| style="text-align:left;" | Average service life, years (expected) || colspan=" | | style="text-align:left;" | Average service life, years (expected) || colspan="3" | 10 years | ||
|- | |- | ||
| style="text-align:left;" | Storage condition || colspan=" | | style="text-align:left;" | Storage condition || colspan="3" | 15°C to 30°C, RH < 60% | ||
|} | |} | ||
=== Overview of sensor structure === | === Overview of sensor structure === | ||
[[File:LIGO-AIR-fig1-sensor-structure.png| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig1-sensor-structure.png|frameless|674px]] | |||
<div style="font-style:italic; color:#555;">Figure 1. LIGO AIR series' overall dimensions (mm).</div> | |||
</div> | |||
{| class="wikitable" style="text-align:center;" | {| class="wikitable" style="text-align:center;" | ||
| Line 104: | Line 109: | ||
== Installation == | == Installation == | ||
=== Fuel tank preparation === | |||
# Empty the tank, clean and dry it if necessary, for gasoline fuel tanks, all fuel vapors must be removed from the tank to prevent fire or explosion during installation. | # Empty the tank, clean and dry it if necessary, for gasoline fuel tanks, all fuel vapors must be removed from the tank to prevent fire or explosion during installation. | ||
| Line 114: | Line 117: | ||
#* Ensure that the sensor must avoid contact with reinforcement ribs and other equipment inside the tank. | #* Ensure that the sensor must avoid contact with reinforcement ribs and other equipment inside the tank. | ||
[[File:LIGO-AIR-fig2-tank-preparation.png| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig2-tank-preparation.png|frameless|600px]] | |||
<div style="font-style:italic; color:#555;">Figure 2. Tank installation location requirements</div> | |||
</div> | |||
3. Drilling a central hole (Ø42 mm), then drill four additional holes for mounting screws as shown in the figure below: | |||
<div style="text-align:center;"> | |||
[[File:LIGO-AIR-fig3-drilling.png|frameless|523px]] | |||
<div style="font-style:italic; color:#555;">Figure 3. Drilling central hole Ø42 mm and four mounting screw holes</div> | |||
</div> | |||
'''Notes:''' The mounting hole diameter depends on the material and thickness of the tank | |||
Notes: The mounting hole diameter depends on the material and thickness of the tank | |||
* For fuel tanks with a wall thickness ≤3 mm, M5 rivet nut should be used. In this case, Drill 4 × Ø7 mm mounting screw holes. | * For fuel tanks with a wall thickness ≤3 mm, M5 rivet nut should be used. In this case, Drill 4 × Ø7 mm mounting screw holes. | ||
* For fuel tanks with a wall thickness >3 mm, M4.8 self-tapping screw can be used. In this case, Drill 4 × Ø7 mm mounting screw holes. | * For fuel tanks with a wall thickness >3 mm, M4.8 self-tapping screw can be used. In this case, Drill 4 × Ø7 mm mounting screw holes. | ||
* Mounting holes positions must ensure that the sensor is installed in the direction of maximum signal transmission (the directional arrow on the sensor cover should point toward the receiving device). | * Mounting holes positions must ensure that the sensor is installed in the direction of maximum signal transmission (the directional arrow on the sensor cover should point toward the receiving device). | ||
=== Sensor preparation === | |||
1. Cutting sensor tube | |||
The length of the sensor tube should be calculated according to the following formula: | The length of the sensor tube should be calculated according to the following formula: | ||
L = H - 25 mm | '''L = H - 25 mm''' | ||
Where: | Where: | ||
* L – final tube length after cutting | * '''L''' – final tube length after cutting | ||
* H - height of the tank at the installation point. | * '''H''' - height of the tank at the installation point. | ||
After cutting, remove any burrs and clean the tube using fuel. | After cutting, remove any burrs and clean the tube using fuel. | ||
Note: The minimum length of the tube after cutting must be at least 150 mm (15cm) | '''Note:''' The minimum length of the tube after cutting must be at least 150 mm (15cm) | ||
2. Installing bottom-stop springs and filter | |||
Installing the bottom-stop and the oil filter in sequence, as shown in the figure below: | Installing the bottom-stop and the oil filter in sequence, as shown in the figure below: | ||
[[File: | <div style="text-align:center;"> | ||
[[File:Screenshot 2026-06-19 161113.png|frameless|562px]] | |||
<div style="font-style:italic; color:#555;">Figure 4. Installing bottom-stop springs and oil filter</div> | |||
</div> | |||
=== Installing sensor on the fuel tank === | === Installing sensor on the fuel tank === | ||
| Line 152: | Line 162: | ||
# Insert the LIGO AIR fuel sensor into the tank and secure fasten it securely using the appropriate screws (using self-tapping screws or rivet nut depending on fuel tank thickness and material as mentioned above). | # Insert the LIGO AIR fuel sensor into the tank and secure fasten it securely using the appropriate screws (using self-tapping screws or rivet nut depending on fuel tank thickness and material as mentioned above). | ||
[[File:LIGO-AIR-fig5-installing-on-tank.png| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig5-installing-on-tank.png|frameless|624px]] | |||
<div style="font-style:italic; color:#555;">Figure 5. Installing sensor on the fuel tank</div> | |||
</div> | |||
Note: Install the sensor in the direction of maximum signal transmission (the directional arrow on the sensor cover should point toward the receiving device). | '''Note:''' Install the sensor in the direction of maximum signal transmission (the directional arrow on the sensor cover should point toward the receiving device). | ||
[[File:LIGO-AIR-fig6-clearance.png| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig6-clearance.png|frameless|540px]] | |||
<div style="font-style:italic; color:#555;">Figure 6. Minimum 150 mm clearance between sensor top and overhead metal surface</div> | |||
</div> | |||
Note: Ensure a minimum clearance of 150 mm between the top of the sensor and any overhead metal surface. | '''Note:''' Ensure a minimum clearance of 150 mm between the top of the sensor and any overhead metal surface. | ||
=== Installing protective cap === | === Installing protective cap === | ||
| Line 164: | Line 180: | ||
The protective cap should be installed after the sensor installation and calibration processes are completed. This cap helps prevent unauthorized access and protects the sensor from environmental factors such as sunlight, physical impact… | The protective cap should be installed after the sensor installation and calibration processes are completed. This cap helps prevent unauthorized access and protects the sensor from environmental factors such as sunlight, physical impact… | ||
[[File:LIGO-AIR-fig7-protective-cap-install.png| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig7-protective-cap-install.png|frameless|537px]] | |||
<div style="font-style:italic; color:#555;">Figure 7. Installing protective cap</div> | |||
</div> | |||
Push the protective cap until it clicks into place, indicating that it is fully seated. | Push the protective cap until it clicks into place, indicating that it is fully seated. | ||
| Line 170: | Line 189: | ||
In cases when sensor inspection is required, the protective cap must be removed. Follow the removal procedure as shown in picture below: | In cases when sensor inspection is required, the protective cap must be removed. Follow the removal procedure as shown in picture below: | ||
[[File:LIGO-AIR-fig8-protective-cap-remove.png| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig8-protective-cap-remove.png|frameless|651px]] | |||
<div style="font-style:italic; color:#555;">Figure 8. Protective cap removal procedure</div> | |||
</div> | |||
Note: Please ensure that no parts of the sensor are damaged while removing the protective cap. | '''Note:''' Please ensure that no parts of the sensor are damaged while removing the protective cap. | ||
== Configuration == | == Configuration == | ||
| Line 178: | Line 200: | ||
=== Connecting sensor to smartphone and setting === | === Connecting sensor to smartphone and setting === | ||
To configure the LIGO AIR fuel sensor, download the LIGO BLE Configurator app on Appstore (for IOS) or CH Play (for Android devices). | To configure the LIGO AIR fuel sensor, download the '''LIGO BLE Configurator''' app on '''Appstore (for IOS) or CH Play (for Android devices).''' | ||
Hereinafter LIGO BLE Configurator is referred to as the "application" or "app". | Hereinafter LIGO BLE Configurator is referred to as the "application" or "app". | ||
Note: For full operation, you must grant all the permissions requested by the app | '''Note:''' For full operation, you must grant all the permissions requested by the app | ||
<gallery mode="packed" widths=" | <gallery mode="packed" widths="250" heights="500"> | ||
File:LIGO-AIR-fig9-app-permissions-1.jpg|Grant all the permissions request by program | File:LIGO-AIR-fig9-app-permissions-1.jpg|Figure 9. Grant all the permissions request by program | ||
File:LIGO-AIR-fig10-app-permissions-2.jpg|Grant all the permissions request by program | File:LIGO-AIR-fig10-app-permissions-2.jpg|Figure 10. Grant all the permissions request by program | ||
</gallery> | </gallery> | ||
| Line 195: | Line 217: | ||
Run the application and select the sensor you want to connect to, as shown in the pictures below: | Run the application and select the sensor you want to connect to, as shown in the pictures below: | ||
<gallery mode="packed" widths=" | <gallery mode="packed" widths="250" heights="500"> | ||
File:LIGO-AIR-fig11-connect-1.jpg| | File:LIGO-AIR-fig11-connect-1.jpg|Figure 11. Selecting sensor type | ||
File:LIGO-AIR-fig12-connect-2.jpg|Connecting sensor | File:LIGO-AIR-fig12-connect-2.jpg|Figure 12. Connecting sensor | ||
</gallery> | </gallery> | ||
==== Set Empty and Set Full ==== | ==== Set Empty and Set Full ==== | ||
Step 1: Set Full | |||
* Immerse the sensor in fuel until the fuel reaches the sensor flange | * Immerse the sensor in fuel until the fuel reaches the sensor flange | ||
* Wait for C_working value to stablize and then press Set Full button | * Wait for C_working value to stablize and then press Set Full button | ||
[[File:LIGO-AIR-fig13-set-full.jpg| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig13-set-full.jpg|frameless|304px]] | |||
<div style="font-style:italic; color:#555;">Figure 13. Set Full</div> | |||
</div> | |||
Step 2: Set Empty | |||
* Remove the sensor from the fuel and wait for 1-2 minutes allow the fuel drain from the measuring probe and then press Set Empty button. | * Remove the sensor from the fuel and wait for 1-2 minutes allow the fuel drain from the measuring probe and then press Set Empty button. | ||
[[File:LIGO-AIR-fig14-set-empty.jpg| | <div style="text-align:center;"> | ||
[[File:LIGO-AIR-fig14-set-empty.jpg|frameless|304px]] | |||
<div style="font-style:italic; color:#555;">Figure 14. Set Empty</div> | |||
</div> | |||
=== Calibration table === | === Calibration table === | ||
| Line 244: | Line 272: | ||
== Troubleshooting == | == Troubleshooting == | ||
<div class="dim"> | |||
{| class="wikitable" | {| class="wikitable" | ||
|- | |- | ||
| Line 251: | Line 279: | ||
| Sensor not discovered by LIGO BLE Configurator app | | Sensor not discovered by LIGO BLE Configurator app | ||
| | | | ||
* App permissions not granted | |||
* Sensor outside Bluetooth range | * Sensor outside Bluetooth range | ||
* Metal obstruction blocking sensor head | * Metal obstruction blocking sensor head | ||
* Sensor battery depleted (end of service life) | * Sensor battery depleted (end of service life) | ||
| | | | ||
* Re-grant Bluetooth & location permissions | |||
* Move within range; verify line-of-sight | * Move within range; verify line-of-sight | ||
* Remove any metal plate above sensor | * Remove any metal plate above sensor | ||
* Verify sensor age vs ~10-year service life | * Verify sensor age vs ~10-year service life | ||
|- | |- | ||
| RSSI at receiver below −80 dBm | | RSSI at receiver below −80 dBm | ||
| Line 283: | Line 311: | ||
* Default password already changed by previous user | * Default password already changed by previous user | ||
| | | | ||
* Contact the previous installer | * Contact the previous installer | ||
|} | |} | ||
If the problem persists, contact [[#Support / Contact|Support]]. | If the problem persists, contact [[#Support / Contact|Support]]. | ||
</div> | |||
== Maintenance == | == Maintenance == | ||
== Certification / Compliance == | == Certification / Compliance == | ||
Refer to [[LIGO AIR Certification & Approvals]] for current certificate status.'' | |||
== Support / Contact == | == Support / Contact == | ||
| Line 315: | Line 329: | ||
! Channel !! Detail | ! Channel !! Detail | ||
|- | |- | ||
| | | Company || SOJI ELECTRONICS.,JSC | ||
|- | |- | ||
| | | Address || C50-LK13, Lot No. 09, New Urban Area, Le Trong Tan street, Duong Noi Ward, Ha Dong District, Hanoi City, Vietnam | ||
|- | |- | ||
| | | Tel/Fax || +84 24 62 932 369 | ||
|- | |- | ||
| | | Email || contact@sojielectronics.com | ||
|- | |- | ||
| | | Website || [http://sojielectronics.com sojielectronics.com] | ||
|} | |} | ||
<div class="noprint"> | <div class="noprint"> | ||
Latest revision as of 01:55, 26 June 2026
Safety Information
| ℹ️ NOTICE — Important notes during sensor installation |
|---|
|
Product Overview
This user guide provides detailed instructions for the proper installation of the LIGO AIR fuel level sensor. The guide is intended for technicians, engineers, system integrators and end-users who are responsible for installing and maintaining the sensor in a variety of fuel tanks and vehicles.
The LIGO AIR fuel level sensor is a precision device designed by SOJI Electronics to measure the level of fuel in tanks with high accuracy and reliability. Correct installation is critical to ensure optimal performance and long-term durability.
Please read this guide thoroughly before beginning the installation process. Following the steps and recommendations provided will help you avoid common issues and ensure safe, effective operation of the sensor.
Package Contents
| No. | Description | Qty (pcs) |
|---|---|---|
| 1 | LIGO AIR Fuel Level Sensor. Standard lengths: 700, 1000, and 1500mm (for customized lengths, please contact the manufacturer) | 01 |
| 2 | Oil filter | 01 |
| 3 | Gasoline-resistant rubber gasket | 01 |
| 4 | Bottom-stop and springs | 01 |
| 5 | Self-drilling screw M4.8x32mm | 05 |
| 6 | Rivet and screw M5x20mm | 05 |
| 7 | Protective cap | 01 |
| 8 | User manual | 01 |
Specifications
Technical specifications
| Parameter | LIGO AIR LxS | LIGO AIR LxT | LIGO AIR-PRO |
|---|---|---|---|
| Standard length (L), mm | 700, 1000, 1500...up to 6000 mm | ||
| Measuring error, % | ± 0.5 % | ||
| Bluetooth specs | Bluetooth 5.4, IEEE 802.15.4-2006, 2.4 GHz, -95 dBm sensitivity | ||
| TX power max | 6 dBm | 6 dBm | 19.5 dBm |
| Advertising Protocol | - SOJI Protocol (default) - Mielta Protocol (setting in mobile app) - Escort Protocol (setting in mobile app) - Technoton Protocol (setting in mobile app) - EUROSEN Protocol (setting in mobile app) | ||
| Power supply: Built-in Battery Li-SOCL2 | 3.6V * 2600mAh | 3.6V * 2600mAh | 3.6V * 3600mAh |
| Current consumption in working mode (uA) | 9 | 9 | 27 |
| Measurement interval (second) | From 5 to 10 | ||
| Advertising message interval (second) | From 5 to 10 | From 5 to 10 | 10 |
| Waterproof standard (Ingress protection rating, IP) | IP69K | ||
| Operating temperature (°C) | -40...+85 | ||
| Resolution (bit) | 12 | ||
| Accelerometer | N/A | Built-in | Built-in |
| Memory | Built-in 32Mb EEPROM | ||
| Average sampling period, s | 5 to 60 | ||
| Absolute error in temperature measurement within the entire temperature measuring range, °С | ±2 | ||
| Average service life, years (expected) | 10 years | ||
| Storage condition | 15°C to 30°C, RH < 60% | ||
Overview of sensor structure
| Manufacturer part number | L (mm) |
|---|---|
| LIGO AIR – L7S LIGO AIR – L7T LIGO AIR PRO – L7S |
700 ± 3 |
| LIGO AIR – L10S LIGO AIR – L10T LIGO AIR PRO – L10S |
1000 ± 3 |
| LIGO AIR – L15S LIGO AIR – L15T LIGO AIR PRO – L15S |
1500 ± 3 |
Installation
Fuel tank preparation
- Empty the tank, clean and dry it if necessary, for gasoline fuel tanks, all fuel vapors must be removed from the tank to prevent fire or explosion during installation.
- Selecting the installation location for the LIGO AIR fuel level sensor, take the following requirements into account:
- The sensor's installation location must be as close as possible to the tank's geometric center and at its deepest point.
- The sensor's installation location must be as close as possible to the tank's geometric center and at its deepest point.
- Ensure that the sensor must avoid contact with reinforcement ribs and other equipment inside the tank.
Error creating thumbnail: Unable to save thumbnail to destination
3. Drilling a central hole (Ø42 mm), then drill four additional holes for mounting screws as shown in the figure below:
Error creating thumbnail: Unable to save thumbnail to destination
Notes: The mounting hole diameter depends on the material and thickness of the tank
- For fuel tanks with a wall thickness ≤3 mm, M5 rivet nut should be used. In this case, Drill 4 × Ø7 mm mounting screw holes.
- For fuel tanks with a wall thickness >3 mm, M4.8 self-tapping screw can be used. In this case, Drill 4 × Ø7 mm mounting screw holes.
- Mounting holes positions must ensure that the sensor is installed in the direction of maximum signal transmission (the directional arrow on the sensor cover should point toward the receiving device).
Sensor preparation
1. Cutting sensor tube
The length of the sensor tube should be calculated according to the following formula:
L = H - 25 mm
Where:
- L – final tube length after cutting
- H - height of the tank at the installation point.
After cutting, remove any burrs and clean the tube using fuel.
Note: The minimum length of the tube after cutting must be at least 150 mm (15cm)
2. Installing bottom-stop springs and filter
Installing the bottom-stop and the oil filter in sequence, as shown in the figure below:
Error creating thumbnail: Unable to save thumbnail to destination
Installing sensor on the fuel tank
- Apply gasket sealant to fuel tank, gasket and sensor flange (using Fuel resistant RTV Silicone gasket maker).
- Insert the LIGO AIR fuel sensor into the tank and secure fasten it securely using the appropriate screws (using self-tapping screws or rivet nut depending on fuel tank thickness and material as mentioned above).
Error creating thumbnail: Unable to save thumbnail to destination
Note: Install the sensor in the direction of maximum signal transmission (the directional arrow on the sensor cover should point toward the receiving device).
Error creating thumbnail: Unable to save thumbnail to destination
Note: Ensure a minimum clearance of 150 mm between the top of the sensor and any overhead metal surface.
Installing protective cap
The protective cap should be installed after the sensor installation and calibration processes are completed. This cap helps prevent unauthorized access and protects the sensor from environmental factors such as sunlight, physical impact…
Error creating thumbnail: Unable to save thumbnail to destination
Push the protective cap until it clicks into place, indicating that it is fully seated.
In cases when sensor inspection is required, the protective cap must be removed. Follow the removal procedure as shown in picture below:
Error creating thumbnail: Unable to save thumbnail to destination
Note: Please ensure that no parts of the sensor are damaged while removing the protective cap.
Configuration
Connecting sensor to smartphone and setting
To configure the LIGO AIR fuel sensor, download the LIGO BLE Configurator app on Appstore (for IOS) or CH Play (for Android devices).
Hereinafter LIGO BLE Configurator is referred to as the "application" or "app".
Note: For full operation, you must grant all the permissions requested by the app
-
Figure 9. Grant all the permissions request by program
-
Figure 10. Grant all the permissions request by program
Grant all the permissions request by program as above
Connecting sensor
Run the application and select the sensor you want to connect to, as shown in the pictures below:
-
Figure 11. Selecting sensor type
-
Figure 12. Connecting sensor
Set Empty and Set Full
Step 1: Set Full
- Immerse the sensor in fuel until the fuel reaches the sensor flange
- Wait for C_working value to stablize and then press Set Full button
Error creating thumbnail: Unable to save thumbnail to destination
Step 2: Set Empty
- Remove the sensor from the fuel and wait for 1-2 minutes allow the fuel drain from the measuring probe and then press Set Empty button.
Calibration table
After installation, the sensor must be calibrated to ensure accurate volume measurement. Calibration table can be performed either on the platform (server) or locally on the sensor.
- Calibration table on the Platform (Server): The sensor sends raw level values (ranging from 0 to 4095) to the server via the telematic device. The platform uses a calibration table to convert these values into volume (liters).
- Calibration table on the Sensor: The sensor directly sends volume values (liters) based on the internal calibration table.
Note: For LIGO AIR sensors, the manufacturer recommends performing calibration table on the platform.
Operation
Solutions for long-range or in metal-obstructed environments
In some cases, when the distance between the sensor and the receiver is long or there are many metal obstacles causing signal attenuation, customers can choose the LIGO AIR PRO model to increase transmission power or install the LIGO AIR Adapter at the receiver side to boost the signal received from the sensor.
Below is a comparison table of transmission distances between different types of sensors and receivers:
| Device | Bluetooth signal range |
|---|---|
| LIGO AIR + Telematics (tracker) device | Standard distance |
| LIGO AIR + LIGO AIR Adapter | 2 x Standard distance |
| LIGO AIR Pro + LIGO AIR Adapter | 4 x Standard distance |
Troubleshooting
| Symptom | Possible Cause | Solution |
|---|---|---|
| Sensor not discovered by LIGO BLE Configurator app |
|
|
| RSSI at receiver below −80 dBm |
|
|
| Reading shows 0% after Set Empty when fuel is present |
|
|
| Cannot connect with default password (login refused) |
|
|
If the problem persists, contact Support.
Maintenance
Certification / Compliance
Refer to LIGO AIR Certification & Approvals for current certificate status.
Support / Contact
| Channel | Detail |
|---|---|
| Company | SOJI ELECTRONICS.,JSC |
| Address | C50-LK13, Lot No. 09, New Urban Area, Le Trong Tan street, Duong Noi Ward, Ha Dong District, Hanoi City, Vietnam |
| Tel/Fax | +84 24 62 932 369 |
| contact@sojielectronics.com | |
| Website | sojielectronics.com |
Revision History
Loading revision history...