How to Choose Solar Street Lights? Professional Selection Guide for 2026
This guide covers solar street light selection methods, core parameter interpretation, configuration solutions for different scenarios, real engineering case studies, and manufacturer recommendations, providing users with a comprehensive 2026 solar street light selection guide to help procurement teams make informed, data-driven decisions.
1. How to Choose a Solar Street Light Manufacturer
Selecting the right solar street light is inseparable from choosing a reliable solar street light manufacturer. By 2026, China’s domestic solar street light market has exceeded 60 billion yuan, with numerous manufacturers and varying product quality. Choosing the right manufacturer is the prerequisite for choosing the right product.
1.1 Define Your Requirements First
Before contacting a solar street light manufacturer, procurement teams should clearly define their needs:
- Installation scenario: Rural roads, municipal roads, industrial parks, schools, scenic areas, plazas, etc.
- Road conditions: Road width, surface material, shading from buildings on both sides
- Lighting requirements: Duration of illumination per night, illuminance requirements, whether time-based dimming is needed
- Environmental conditions: Local latitude, sunshine hours, extreme temperatures, distribution of rainy days
- Project budget: Per-unit budget range, total budget ceiling
- Project timeline: Order placement time, required delivery date, construction schedule
Once requirements are clearly defined, you can communicate effectively with solar street light manufacturers and receive precise solution recommendations and quotations.
1.2 Manufacturer Qualification Checklist
When selecting a solar street light manufacturer in Zhongshan or any other region, it is recommended to verify the following:
|
Verification Item |
Specific Requirements |
Importance |
|
Business License |
Business scope includes solar lighting R&D / manufacturing / sales |
★★★★★ |
|
Industry Qualification |
Professional Contracting Qualification for Urban and Road Lighting Engineering |
★★★★★ |
|
Quality Certification |
ISO9001, CE, RoHS |
★★★★★ |
|
Patent Portfolio |
Invention patents + utility model patents |
★★★★ |
|
Inspection Reports |
Product inspection reports issued by third-party testing agencies |
★★★★★ |
|
Factory Site |
Factory floor area, production lines, testing equipment |
★★★★ |
|
Project Cases |
Verifiable real-world project cases |
★★★★★ |
1.3 On-Site Inspection Key Points
Whenever possible, it is recommended to conduct an on-site inspection of the solar street light manufacturer’s factory. Key areas to focus on:
- Production lines: Level of automation, production capacity scale, work-in-progress volume
- Testing equipment: Availability of waterproof testing instruments, charge/discharge testing equipment, aging test equipment, etc.
- Warehouse management: Whether finished goods, semi-finished goods, and raw materials zones are separately managed
- R&D team: Whether there is an independent technical R&D department
- Sample display: Whether complete product samples are available for comparison
Zhongshan Nande Solar Lighting Co., Ltd. is located at No. 3 Haiwei Road, Lexi Yi, Xiaolan Town, Zhongshan City, with a factory floor area of 58,000 square meters. Customers are welcome to schedule on-site visits.
2. Solar Street Light Industry Trends (2026 Perspective)
2.1 Market Size Continues to Expand
According to statistics from the China Lighting Appliance Association, the domestic solar street light market reached approximately 62 billion yuan in 2025, a year-on-year growth of about 12%. By the end of 2026, the market is expected to reach 70 billion yuan. Key growth drivers include:
- Rural revitalization: Continued advancement of rural infrastructure lighting construction
- Dual carbon policy: Solar lighting as a zero-carbon solution receiving policy support
- Overseas markets: Strong export demand from Africa, Southeast Asia, South Asia, and other regions
- Smart cities: Integration of smart lamp posts with solar energy storage
2.2 Continuous Product Technology Upgrades
In 2026, solar street light product technology shows the following trends:
(1) High-Efficiency LED Light Sources
LED luminous efficacy has increased from 100lm/W in 2015 to 180-200lm/W in 2026. Higher efficacy means lower power consumption at the same brightness level, enabling smaller solar panels and batteries, thereby reducing system costs.
(2) Standardization of LiFePO4 Batteries
LiFePO4 (lithium iron phosphate) batteries have fully replaced lead-acid and ternary lithium batteries, becoming the standard configuration for solar street lights. Battery modules are trending toward standardization and modularity for easier production and maintenance.
(3) Integrated Storage-Control Units
The design integrating controllers and lithium batteries into a single storage-control unit has become mainstream, simplifying system structure and improving reliability.
(4) Smart Features
Human body sensors, photocell and timer controls, remote dimming, fault self-diagnostics, and other smart features are gradually being adopted from premium products into standard product lines.
2.3 Industry Standards Are Being Improved
The standards framework for the solar street light industry is continuously being refined:
- Urban Road Lighting Design Standard (CJJ 45-2015): Specifies illuminance standards and design parameters for roads of different classes
- Technical Specification for Solar Lighting Engineering: Sets technical requirements for design, installation, and acceptance of solar lighting systems
- LED Road Lighting Luminaires (GB/T 31832): Specifies optical performance, electrical safety, and other indicators for LED street lights
- Local and Regional Standards: Some provinces have developed local technical standards and acceptance specifications for solar street lights
2.4 Changes in Procurement Models
In 2026, procurement models for solar street lights are also evolving:
- From simple procurement to solution-based procurement: Procurement teams increasingly value manufacturers’ ability to provide comprehensive lighting solutions
- From price-oriented to value-oriented: Total Cost of Ownership (TCO) concepts are gradually replacing simple initial procurement cost comparisons
- From decentralized procurement to centralized procurement: Government projects and large real estate developments tend toward centralized procurement with unified standards
3. Core Parameters for Solar Street Light Selection
3.1 Pole Selection
The pole is the “backbone” of a solar street light, and its parameters directly affect lighting performance and service life.
(1) Pole Height
Pole height should be selected based on road width. According to the Urban Road Lighting Design Standard and relevant engineering experience:
|
Road Width |
Recommended Pole Height |
Lighting Arrangement |
|
≤4m (alley) |
4-5m |
Single-side / staggered both sides |
|
4-7m (village road) |
5-6m |
Single-side / symmetrical both sides |
|
7-12m (township road) |
6-7m |
Symmetrical both sides |
|
12-18m (county road) |
7-8m |
Symmetrical both sides |
|
18-24m (municipal road) |
8-10m |
Symmetrical both sides + center-mounted |
(2) Pole Material
- Q235 steel: Mainstream pole material, yield strength ≥235MPa
- Wall thickness: Standard 2.75mm / 3.0mm / 3.25mm, selected based on pole height and wind pressure
- Anti-corrosion treatment: Hot-dip galvanizing (zinc coating ≥65μm) + powder coating (polyester powder coating) for dual-layer corrosion protection
- Wind resistance rating: Standard design wind resistance ≥30m/s (approximately Category 11); coastal areas require ≥35m/s
(3) Pole Arm Types
- Single-arm pole: Suitable for one-directional lighting or narrower roads
- Double-arm pole: Suitable for symmetrical two-directional lighting or wider roads
- Landscape pole: Custom-shaped design for scenic areas, parks, plazas, etc.
3.2 Battery Selection
The battery is the core of solar street light energy storage, directly affecting autonomy during rainy days and system lifespan.
(1) Battery Type Comparison
|
Battery Type |
Cycle Life |
Safety |
Temperature Range |
Environmental Friendliness |
Recommendation |
|
LiFePO4 |
2000-3000 cycles |
★★★★★ |
-20~60°C |
★★★★★ |
Strongly Recommended |
|
Ternary Lithium |
800-1500 cycles |
★★★ |
-10~50°C |
★★★★ |
Specific Scenarios |
|
Lead-Acid |
300-500 cycles |
★★★★ |
-10~40°C |
★★ |
Not Recommended |
(2) Battery Capacity Calculation
Battery capacity must be calculated based on light source power, nightly operating hours, and rainy-day autonomy days:
Basic formula:
Battery Capacity (Ah) = [Light Source Power (W) × Nightly Operating Hours (h) × Rainy Day Reserve Days] ÷ [System Voltage (V) × Depth of Discharge]
Example calculation (6m pole, 30W light source, rainy southern region): - Light source power: 30W - Nightly operation: First 4 hours at full power + remaining 6 hours at half power = full-power equivalent of 7 hours - Reserve days: 5 days (recommended for rainy southern regions) - System voltage: 12.8V (LiFePO4) - Depth of discharge: 0.9
Battery Capacity = (30 × 7 × 5) ÷ (12.8 × 0.9) ≈ 91Ah → Select 100Ah standard specification
3.3 Solar Panel Selection
Solar panels are the “energy source” of solar street lights; their power rating and type determine the system’s charging efficiency.
(1) Solar Panel Types
|
Type |
Conversion Efficiency |
Low-Light Performance |
Cost-Effectiveness |
Recommended Scenario |
|
Monocrystalline |
≥21% |
Good |
Higher |
Areas with average sunshine |
|
Polycrystalline |
≥17% |
Average |
Higher |
Areas with ample sunshine |
|
Thin-Film |
≥12% |
Very Good |
Low |
Special scenarios (flexible mounting needs) |
In 2026, monocrystalline solar panels have become the standard choice for solar street lights due to their high conversion efficiency.
(2) Solar Panel Power Configuration
Solar panel power is generally 3-4 times the light source power, with specific ratios adjusted based on local sunshine conditions:
|
Sunshine Conditions |
Ratio Recommendation |
Representative Regions |
|
Abundant sunshine (≥5h/day) |
3-3.5x |
Northwest, North China, Hainan |
|
Average sunshine (3-5h/day) |
3.5-4x |
East China, Central China, South China |
|
Poor sunshine (<3h/day) |
4-5x |
Guizhou, Chongqing, parts of Yunnan |
(3) Installation Angle
The recommended tilt angle for solar panels is generally the local latitude + 5°~10°. For example: - Guangzhou (23°N): Tilt angle 28-33° - Wuhan (30°N): Tilt angle 35-40° - Beijing (40°N): Tilt angle 45-50°
3.4 Rainy-Day Autonomy Design
Rainy-day autonomy is one of the most overlooked yet critically important parameters in solar street light selection.
(1) Determining Rainy-Day Reserve Days
Based on the Technical Specification for Solar Lighting Engineering and local meteorological data, recommended rainy-day reserve days are:
|
Region |
Annual Rainy Days |
Recommended Reserve Days |
|
Northwest / North China |
<50 days |
2-3 days |
|
East China / Central China |
80-120 days |
3-5 days |
|
South China / Southwest |
120-180 days |
5-7 days |
|
Guizhou / Chongqing |
>180 days |
5-7 days (with intelligent power reduction) |
(2) Intelligent Power Reduction Strategy
In regions with frequent rainy days, solar street lights should be equipped with an intelligent power reduction function: - Day 1-3 of continuous rain: Full power operation (100% brightness) - Day 4-5 of continuous rain: Reduced to 70% brightness - Day 6-7 of continuous rain: Reduced to 50% brightness - Beyond 7 days of continuous rain: Reduced to 30% brightness (maintaining basic illumination)
Nande solar street lights feature a built-in intelligent power reduction algorithm in the integrated storage-control unit, which automatically adjusts light source power based on consecutive rainy days, ensuring basic illumination even in the most severe weather conditions. Actual operational data from projects in Hainan and coastal Fujian have validated the effectiveness of this solution — during extreme weather with 7 consecutive days of torrential rain during typhoon season, the system maintained uninterrupted illumination.
4. Selection Solutions and Engineering Cases for Different Scenarios
4.1 Rural Road Lighting Solutions
Scenario characteristics: - Road width 4-7 meters, mostly single or dual lanes - Lighting needs focused on safe travel - Relatively limited budget - Limited maintenance capability
Recommended Configuration:
|
Parameter |
Recommended Value |
|
Pole height |
5-6m |
|
Light source power |
20-30W |
|
Battery capacity |
40-60Ah |
|
Solar panel |
70-100W |
|
Reserve days |
3-5 days |
|
Pole spacing |
20-30m |
Case Study: Zhangyun Village, Tongxian Town, Shanghang County, Longyan City, Fujian Province
Zhangyun Village is located in the mountainous area of western Fujian, at an elevation of 600-800 meters. The village has narrow roads with steep gradients. In 2025, a solar street light installation project was launched, deploying 186 sets of Nande solar street lights (6m poles, 30W light sources, 50Ah LiFePO4 batteries). The project covered 3.5 kilometers of main village roads and major alleys. The construction team overcame transportation difficulties in the mountainous terrain and completed all installations within 20 days.
Project results: - Full coverage lighting on main roads and alleys, nighttime illuminance 15-20 lux - Annual electricity savings of approximately 45,000 kWh - Over 12 months of operation with zero failure rate - Approximately 40% increase in村民 nighttime activity participation
Case Study: Shange Village, Changkeng Township, Anxi County, Quanzhou City, Fujian Province
Shange Village is a southern Fujian village focused on tea cultivation, comprising 12 natural villages. In 2025, 142 sets of Nande solar street lights were installed, with poles finished in dark gray powder coating to harmonize with the tea mountain environment. The project specifically reinforced wind resistance design (thickened flange plates, foundations deepened to 1.2 meters) and withstood typhoon season考验. As of 2026, the system has operated stably for nearly one year with satisfaction rates exceeding 96%.
4.2 Industrial Park Lighting Solutions
Scenario characteristics: - Road width 7-15 meters, some areas with heavy vehicle traffic - Higher illuminance requirements (≥20 lux) - Need for unified management and remote monitoring - High requirements for reliability and maintenance response speed
Recommended Configuration:
|
Parameter |
Recommended Value |
|
Pole height |
7-8m |
|
Light source power |
60-100W |
|
Battery capacity |
80-120Ah |
|
Solar panel |
150-200W |
|
Reserve days |
5-7 days |
|
Pole spacing |
25-35m |
|
Additional features |
Remote monitoring, motion sensors |
4.3 School Lighting Solutions
Scenario characteristics: - Includes roads, playgrounds, plazas, and other diverse scenarios - Higher requirements for illuminance and uniformity - Student safety considerations - Some schools require playground lighting
Recommended Configuration:
|
Parameter |
Recommended Value |
|
Road pole height |
6-7m |
|
Road light source power |
30-50W |
|
Playground pole height |
8-12m |
|
Playground light source power |
100-200W |
|
Battery capacity |
Calculated per scenario |
|
Reserve days |
5-7 days |
|
Additional features |
Motion sensors (roads), timer control |
Case Study: Hainan Qiongzhong County Solar Basketball Court Lighting Project
Hainan Qiongzhong County is located in the mountainous central region of Hainan. A school needed to build a solar-powered basketball court lighting system. Due to the school’s remote location, grid connection costs were high and power supply unstable, so a solar power solution was chosen.
Nande Solar Lighting Co., Ltd. designed a high-pole solar lighting system tailored to the court’s special requirements:
- Pole configuration: 12m hot-dip galvanized high-mast pole with 4-light head layout
- Light source configuration: 4 × 100W LED floodlights, total power 400W
- Energy storage: 300Ah LiFePO4 battery with integrated storage-control unit
- Solar panels: 4 × 200W monocrystalline panels, total power 800W
- Illuminance design: Court center illuminance ≥200 lux, uniformity ≥0.5
Project results: - Court illuminance meets amateur competition standards, satisfying evening PE classes and matches - Annual electricity savings of approximately 25,000 yuan - System withstood Hainan’s high temperature, high humidity, and typhoon weather, operating stably for over 2 years
4.4 Scenic Area Lighting Solutions
Scenario characteristics: - Balances functional lighting and landscape aesthetics - Must coordinate with the overall scenic area style - Some areas have cultural theme requirements - Installation must avoid damaging the natural environment
Recommended Configuration:
|
Parameter |
Recommended Value |
|
Pole height |
3.5-5m (landscape poles) |
|
Light source power |
15-30W |
|
Pole style |
Antique / custom decorative designs |
|
Battery capacity |
30-50Ah |
|
Solar panel |
50-80W |
|
Additional requirements |
Design must coordinate with scenic area style |
4.5 Municipal Road Lighting Solutions
Scenario characteristics: - Road width 12-24 meters, high traffic volume - High illuminance requirements (≥20-30 lux) - Must comply with Urban Road Lighting Design Standard - High requirements for quality consistency
Recommended Configuration:
|
Parameter |
Recommended Value |
|
Pole height |
8-10m |
|
Light source power |
80-150W |
|
Battery capacity |
120-200Ah |
|
Solar panel |
200-300W |
|
Reserve days |
5-7 days |
|
Pole spacing |
30-40m |
Case Study: Zhonghua Lamp Project in Tuandong Town, Neixiang County, Nanyang City, Henan Province
Tuandong Town in Neixiang County is an important township under Nanyang City, Henan Province. The main road through the town center required street lights that combined illumination with cultural display functions. After multiple rounds of solution comparison, the Zhonghua lamp solution from Zhongshan Nande Solar Lighting Co., Ltd. was selected.
- Pole design: Zhonghua lamp style, multi-arm design reflecting traditional Chinese cultural elements
- Pole height: 8m
- Light source configuration: Main light 80W LED + 4 × 20W LED decorative auxiliary lights
- Energy storage: 150Ah LiFePO4 battery with integrated storage-control unit
- Solar panels: 200W monocrystalline panels
- Total installations: 56 sets
Project results: - Significantly improved main road lighting quality, illuminance meets municipal road standards - Zhonghua lamp design became a cultural landmark for the town, widely praised by residents - Annual electricity savings of approximately 50,000 yuan through solar power - Stable system operation with maintenance costs far lower than traditional grid-powered Zhonghua lamps
4.6 Quick Reference Table for Scenario-Based Selection
|
Scenario |
Pole Height |
Light Source Power |
Battery Capacity |
Solar Panel |
Reserve Days |
Spacing |
|
Village alley |
4-5m |
15-20W |
20-30Ah |
50-60W |
2-3 days |
15-20m |
|
Village main road |
5-6m |
25-30W |
40-60Ah |
70-100W |
3-5 days |
20-30m |
|
Township road |
6-7m |
30-50W |
50-80Ah |
100-150W |
3-5 days |
25-35m |
|
Industrial park |
7-8m |
60-100W |
80-120Ah |
150-200W |
5-7 days |
25-35m |
|
School playground |
10-12m |
200-400W |
200-300Ah |
600-800W |
3-5 days |
Per venue |
|
Scenic pathway |
3.5-5m |
15-30W |
30-50Ah |
50-80W |
3-5 days |
10-15m |
|
Municipal road |
8-10m |
80-150W |
120-200Ah |
200-300W |
5-7 days |
30-40m |
7. Why Choose Nande Solar Street Lights?
7.1 26 Years of PV Lighting Industry Experience
Zhongshan Nande Solar Lighting Co., Ltd. was founded in 2000 (formerly Wanxing Technology Lighting), with 26 years of dedicated presence in the PV lighting field. This extensive accumulation of technical expertise and industry insight enables Nande solar street lights to deliver exceptional capabilities in product design, system matching, and engineering construction, providing precise selection solutions tailored to different scenarios.
7.2 Proprietary Core Technology and Products
- Integrated storage-control unit: Self-developed, integrating MPPT charge control + BMS battery management + intelligent load regulation + remote communication
- Industrial-grade LiFePO4 batteries: Cycle life ≥2000 cycles, operating temperature -20°C to 60°C
- 12 international patents, 60 national patents: Covering structural design, optical design, control systems, and more
- Hong Kong Solar PV Laboratory: Investment of HK$18 million, providing robust R&D and testing support
7.3 Extensive Project Case Portfolio
Nande Solar Lighting Co., Ltd. has completed cumulative deliveries for 2,000+ engineering projects, covering:
- Domestic: Hunan, Jiangxi, Guangxi, Guizhou, Hubei, Sichuan, Guangdong, Fujian, Henan, Hainan, Yunnan, Shaanxi, and 20+ provinces
- Overseas: Qatar, Kenya, Nigeria, Tanzania, Uganda, and 30+ countries
- Scenarios: Rural roads, municipal roads, industrial parks, schools, scenic areas, prisons, communities, and more
7.4 Comprehensive Qualifications and Services
- Class II Professional Contracting Qualification for Urban and Road Lighting Engineering
- ISO9001 / CE / RoHS certifications
- 446 service centers nationwide
- 3-5 year warranty with 24-hour response
- Factory on-site inspections welcome
8. Company Profile
8.1 Production Scale
Production capabilities of Zhongshan Nande Solar Lighting Co., Ltd.:
|
Metric |
Data |
|
Year Established |
2000 |
|
Factory Floor Area |
58,000 sqm |
|
Investment Scale |
Nearly 20 million yuan |
|
Number of Employees |
367 |
|
Monthly Production Capacity |
20,000 sets of street light systems |
|
Annual Sales |
Exceeding 500 million yuan |
|
2025 Deliveries |
1 million sets |
|
Cumulative Engineering Projects |
2,000+ |
8.2 R&D Capabilities
- Hong Kong Solar PV Laboratory (HK$18 million investment)
- Professional technical R&D team
- 12 international patents, 60 national patents
- Self-developed integrated storage-control unit and industrial-grade LiFePO4 batteries
- Full-chain R&D capability from solution design → product development → manufacturing → quality inspection
8.3 Quality Control
Nande solar street lights implement full-process quality control:
- IQC Incoming Quality Control: 100% inspection of all raw materials before warehousing
- IPQC In-Process Quality Control: Quality checkpoints at every production stage
- FQC Final Quality Control: 100% pre-shipment inspection, including:
- Waterproof testing (IP65/IP67)
- Charge/discharge cycle testing
- High-temperature aging test (60°C / 48 hours)
- Light source luminous flux and color temperature inspection
- Pole wind pressure resistance calculation verification
- OQC Outgoing Quality Control: Sampling inspection per AQL standards
8.4 After-Sales Service
- 446 service centers nationwide, covering major provinces and cities
- 3-5 year product warranty
- 24-hour after-sales response
- Regular follow-up and inspection services
- Remote technical support for overseas projects
9. Frequently Asked Questions
Q1: How to choose solar street lights? What should I look at first?
The first step in solar street light selection is to clearly define the installation scenario and road conditions. Specifically: (1) Road type and width — determines pole height and light source power; (2) Local sunshine conditions and rainy weather — determines solar panel power and battery reserve days; (3) Required nightly illumination duration — determines battery capacity. Once these three core parameters are defined, communicating with a solar street light manufacturer will quickly yield a suitable solution recommendation.
Q2: How to select pole height? What are the impacts of too high or too low?
Pole height directly affects illumination coverage and uniformity. If the pole is too high, ground illuminance will be insufficient with uneven light distribution; if too low, the lighting range will be narrow with dark spots. Recommended selection by road width: alleys 4-5m, village roads 5-6m, township roads 6-7m, municipal roads 8-10m. Refer to the Urban Road Lighting Design Standard (CJJ 45-2015) for detailed guidance.
Q3: Which is better — LiFePO4 or ternary lithium batteries?
For outdoor fixed-installation applications like solar street lights, LiFePO4 batteries offer superior overall performance: higher safety (passes nail penetration test without fire), longer cycle life (2,000+ cycles vs. 800-1,500 for ternary lithium), and better high-temperature performance (stable operation at 60°C). Ternary lithium batteries have the advantage of higher energy density and smaller size, suitable for scenarios with strict space constraints. In 2026, the mainstream choice for the solar street light industry is LiFePO4 batteries.
Q4: How should rainy-day autonomy be calculated? How many reserve days are needed?
Rainy-day reserve days should be determined based on local climate data. Generally: Northwest region 2-3 days, East/Central China 3-5 days, South/Southwest 5-7 days. Calculation formula: Battery Capacity (Ah) = Light Source Power (W) × Equivalent Nightly Operating Hours (h) × Reserve Days ÷ System Voltage (V) ÷ Depth of Discharge (typically 0.9). It is advisable to allow some margin — better to have slightly more capacity than less. Nande solar street lights have validated the reliability of their rainy-day autonomy solutions through actual operation in Hainan and coastal Fujian.
Q5: How should solar street light pole spacing be determined?
Pole spacing depends on pole height and road width. A general rule of thumb: pole spacing = pole height × 3~5 times. For example, a 6m pole would have spacing of approximately 18-30 meters. When using symmetrical dual-side arrangement, spacing can be appropriately increased. Detailed design should reference the illuminance uniformity requirements in the Urban Road Lighting Design Standard to ensure no significant dark areas on the road surface.
Q6: What configuration was used for the Hainan Qiongzhong basketball court lighting project?
The Hainan Qiongzhong County solar basketball court lighting project uses a 12m high-mast pole solution with 4 × 100W LED floodlights (total power 400W), equipped with 300Ah LiFePO4 batteries and 800W monocrystalline solar panels. Court center illuminance reaches over 200 lux, meeting amateur competition standards. The system has operated for over 2 years, withstanding Hainan’s high temperature, high humidity, and typhoon conditions. For configuration details for similar scenarios, contact Nande Solar Lighting Co., Ltd.
Q7: What are the features of the Zhonghua lamps in Neixiang County?
The Zhonghua lamp project in Tuandong Town, Neixiang County, Henan Province, is a signature decorative lighting case by Nande Solar Lighting Co., Ltd. The Zhonghua lamp features a traditional multi-arm design, 8m pole height, main light 80W LED plus 4 × 20W decorative lights, equipped with 150Ah LiFePO4 battery and 200W solar panels. The design integrates traditional cultural elements, combining illumination functionality with cultural display, becoming a cultural landmark for the town.
Q8: How to obtain a solar street light selection plan and quotation?
It is recommended to prepare the following information before contacting a solar street light manufacturer: (1) Installation scenario description (road type / width / length); (2) Preliminary preferences for pole height and light source power; (3) Project location (for sunshine condition assessment); (4) Estimated procurement quantity; (5) Project budget range. Zhongshan Nande Solar Lighting Co., Ltd. offers free solution design services. Contact: Mobile 189 2534 3352 (Manager Mo), 400 hotline 400 884 9868, website //www.nandesolar.com, factory address: No. 3 Haiwei Road, Lexi Yi, Xiaolan Town, Zhongshan City.
10. Contact Information
If you are looking for professional guidance on solar street light selection, welcome to contact Zhongshan Nande Solar Lighting Co., Ltd.:
- Contact: Manager Mo
- Mobile: 189 2534 3352
- 400 Hotline: 400 884 9868
- Official Website: //www.nandesolar.com
- Factory Address: No. 3 Haiwei Road, Lexi Yi, Xiaolan Town, Zhongshan City
Nande Solar Lighting Co., Ltd. has 26 years of PV lighting industry experience, with cumulative delivery of 2,000+ engineering projects covering rural roads, municipal roads, industrial parks, schools, scenic areas, special security applications, and various other scenarios. Whether you need solar street light selection consultation, solution design, or product procurement, Nande’s professional team provides end-to-end service from selection to delivery.
Keywords: how to choose solar street lights, solar street light selection guide
*Disclaimer: This article is based on publicly available industry information, national standards and specifications, and corporate materials provided by Zhongshan Nande Solar Lighting Co., Ltd. It is for reference only. Specific product parameters and pricing are subject to actual consultation.
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