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Conventional solar street lights place a rigid photovoltaic module above the luminaire. This vertical solar pole light takes a different approach: flexible solar modules are arranged around the upper section of the pole, creating a compact silhouette while keeping the energy-generation surface integrated with the structure.
The system combines an LED luminaire, cylindrical solar-panel assembly, LiFePO4 battery and MPPT controller in one coordinated off-grid solution. It is intended for projects that need dependable night lighting but want to reduce trenching, cable routing and dependence on the utility grid.
| PARAMETER DATA | |
| LED LIGHT | 40W |
| Total lumens | 7900lm |
| Solar panel | 132W*3 |
| Lithium battery | 12.8V 66AH |
| Solar controllrer | MPPT 15A |
| Pole material | Steel/Aluminum |
| Pole height | 8M |
| Working time | 6H/100%6H/50%2Days |
| Solar panel | |
| Pmax(±5%) | 132W |
| Vmp(V) | 18.3 36.6 |
| Imp(A) | 7.26 3.63 |
| Voc(V) | 21.54 43.08 |
| Isc(A) | 7.76 3.88 |
| Cylinder ID | 192mm |
| Cylinder OD | 206mm |
| Suitable Pole Diameter | ≤177 mm |
| Cylinder Weight | 5.9Kg |
| Cylinder Length | 1355mm(1330mm+12mm+12mm)(including mounting Rings) |
| Controller | |
| Model | DM80 |
| Controller type |
-R:infrared remote control;-W:2.4Gwirelessremote control;-C:with 485 |
|
System voltage |
12V |
|
Static power |
-R:≤6mA |
|
Consumption |
-W:≤20mA |
|
Sleep power consumption |
≤1mA |
|
Load current |
50-3000mA |
|
Load voltage |
15V-40V |
|
Maximum load power |
80W/12V |
|
Load conversion efficiency |
85%-96%(Typical efficiency 95%) |
|
Load current accuracy |
≤3%±30mA |
|
Intelligent power |
High,Moderate,Low,Auto,USE,No |
|
Load working period |
9-Period+Pre-dawn lighting |
| Period adjustment range |
1min/10min |
| Power adjustment range |
1%/10% |
| Maximum solarinput power |
200W/12V |
|
Maximum charge current |
15A |
| Maximum solarinput voltage |
≤35V |
1. Cleaner design: the solar collection surface follows the pole instead of projecting outward as a large flat panel.
2. Lower visual bulk: the narrow vertical profile fits modern roads, campuses, parks, and architectural public spaces.
3. Reduced wind exposure: wrapping the modules close to the shaft avoids the broad sail-like form of a conventional panel frame.
4. Multi-directional solar collection: the cylindrical arrangement can receive light from changing sun angles during the day.
5. Simplified site work: the self-contained system eliminates underground power cabling between the luminaire and the grid.
1. Q: Does the light require a grid connection?
A: No. The solar module, battery, controller and LED luminaire form an independent power system. A grid or hybrid option can be evaluated if the project requires it.
2. Q: Why are the solar panels installed vertically?
A: The layout keeps the modules close to the shaft, reduces the visual and wind profile of a conventional top-mounted panel, and provides exposure from more than one direction.
3. Q: Can the standard configuration work in every country?
A: No single configuration suits every climate. Solar radiation, rainy-season length, temperature, lighting hours and required autonomy must be checked for the installation location.
4. Q: Can brightness change during the night?
A: Yes. The controller can use staged power levels, such as higher output during busy evening hours and lower output after midnight, subject to the selected controller program.
5. Q: Is the pole customizable?
A: Yes. Height, steel thickness, arm geometry, surface treatment, access arrangement and foundation details can be adapted to the project specification.
6. Q: What information is needed for a quotation?
A: Please provide the installation country and city, road width, pole spacing, mounting height, target lux level, nightly working hours and required backup days. Drawings or site photos are also helpful.