Recommended Values Table for Choose Street Lights Based on Road Width

Recommended Values Table for Choose Street Lights Based on Road Width

Choose Street Lights Based on Road Width

Table of Contents

This table is the main reference engineers use when they want to Choose Street Lights Based on Road Width.

1
10 1
Road WidthRecommended LumensRecommended LED PowerPole HeightSpacing Between LightsRecommended Lux
2–4 m4,000–6,000 lm40–60 W4–5 m15–20 m10–15 lux
4–6 m8,000–12,000 lm80–100 W6–7 m20–25 m15–20 lux
6–9 m15,000–25,000 lm150–200 W8–10 m25–30 m20–30 lux
9–12 m30,000–50,000 lm250–350 W10–12 m30–35 m30–40 lux
12+ m60,000+ lm400–600 W12–15 m35–40 m35–40 lux

This table helps you quickly decide the correct lighting system before installation.


1. Choose Street Lights Based on Road Width for Narrow Roads (2–4 m)

10 2

These are small roads, alleys, walking streets, and local access roads.

Cars move slowly and people walk more.

That means we do not need very strong lighting. We need soft, balanced, and comfortable lighting.

Recommended Values

ItemValue
Lumens4,000–6,000 lm
LED Power40–60 W
Pole Height4–5 m
Spacing15–20 m
Lux Level10–15 lux

Practical Example

If you have a small alley in Old Cairo:

  • Use 50W LED
  • Pole height = 4.5 meters
  • One pole every 18 meters

This gives safe walking visibility without wasting electricity.

This is a simple example of how to Choose Street Lights Based on Road Width correctly.


2. Choose Street Lights Based on Road Width for Local Streets (4–6 m)

2

These are normal streets inside residential areas like neighborhoods and housing zones.

Cars move daily and people use these roads often.

Lighting must be stronger than narrow roads.

Recommended Values

ItemValue
Lumens8,000–12,000 lm
LED Power80–100 W
Pole Height6–7 m
Spacing20–25 m
Lux Level15–20 lux

Practical Example

For a local street in Nasr City:

  • Use 100W LED
  • Pole height = 6.5 meters
  • One light every 22 meters

This creates clear visibility and saves around 70% electricity compared to old sodium lamps.

This is why engineers always Choose Street Lights Based on Road Width before purchasing.


3. Choose Street Lights Based on Road Width for Main Roads (6–9 m)

09 3

These roads carry more traffic and faster movement.

Drivers need stronger lighting and better beam coverage.

Recommended Values

ItemValue
Lumens15,000–25,000 lm
LED Power150–200 W
Pole Height8–10 m
Spacing25–30 m
Lux Level20–30 lux

Practical Example

For a road like Haram Street:

  • Use 180W LED
  • Pole height = 9 meters
  • One pole every 28 meters

This gives strong lighting and safer night driving.

This is another clear case where we must Choose Street Lights Based on Road Width and not by guesswork.


4. Choose Street Lights Based on Road Width for Wide Roads (9–12 m)

09 4

These include Corniche roads and large city roads.

These roads need wider beam coverage and stronger illumination.

Recommended Values

ItemValue
Lumens30,000–50,000 lm
LED Power250–350 W
Pole Height10–12 m
Spacing30–35 m
Lux Level30–40 lux

Practical Example

For Nile Corniche:

  • Use 300W LED
  • Pole height = 11 meters
  • One light every 32 meters

This supports traffic flow and improves visibility during night driving.

This is why planners must always Choose Street Lights Based on Road Width first.


5. Choose Street Lights Based on Road Width for Highways and Ring Roads (12+ m)

These are high-speed roads where dark zones become very dangerous.

Lighting must be strong, high, and uniform.

Recommended Values

09

Practical Example

For Ring Road:

  • Use 500W LED
  • Pole height = 14 meters
  • Large beam angle design

This supports safe driving at high speed and reduces accident risks.

This is one of the strongest examples of why we must Choose Street Lights Based on Road Width carefully.


Simple Formula to Choose Street Lights Based on Road Width

09 2

To estimate the number of street lights needed, use this simple formula:Number of Lights=(Road LengthSpacing)×(Road Width2)\text{Number of Lights} = \left( \frac{\text{Road Length}}{\text{Spacing}} \right) \times \left( \frac{\text{Road Width}}{2} \right)Number of Lights=(SpacingRoad Length​)×(2Road Width​)

This helps in planning the total project cost.


Example Calculation

Road length = 200 meters

Road width = 6 meters

Recommended spacing = 25 metersNumber of Lights=(20025)×(62)\text{Number of Lights} = \left( \frac{200}{25} \right) \times \left( \frac{6}{2} \right)Number of Lights=(25200​)×(26​)=8×3=24= 8 \times 3 = 24=8×3=24

Final result:

You need 24 street lights.

If each light is 100W:24×100=2400W=2.4kW24 \times 100 = 2400W = 2.4kW24×100=2400W=2.4kW

Total electrical load = 2.4 kW

This is how professionals Choose Street Lights Based on Road Width using calculations instead of assumptions.


Best LED Type to Choose Street Lights Based on Road Width

09 5

Different roads need different fixture designs.

Road WidthBest LED Type
2–4 mCOB LED
4–6 mSMD LED
6–9 mLens LED
9–12 mHigh Bay LED
12+ mFlood LED

The correct LED type improves beam direction, coverage, and maintenance life.

Choosing only by watt is a common mistake.


Common Mistakes When You Do Not Choose Street Lights Based on Road Width

Many projects fail because people ignore professional lighting rules.

Common mistakes include:

  • Choosing by watt only
  • Ignoring lumen output
  • Low pole height
  • Very large spacing
  • Using old fluorescent fixtures
  • No lux calculation
  • Wrong beam angle selection

These mistakes increase:

  • Electricity bills
  • Maintenance cost
  • Dark spots
  • Traffic accidents
  • Legal problems

That is why the correct solution is always to Choose Street Lights Based on Road Width.


Smart Solutions for Better Street Lighting

09 1

Modern street lighting projects should include smart systems like:

  • Motion sensors
  • Auto dimming
  • Remote IoT control
  • Fault alarms
  • Central monitoring system
  • Smart scheduling systems

These reduce electricity cost and improve maintenance speed.

Smart control becomes even better when you first Choose Street Lights Based on Road Width correctly.


Cost Example for 1 km Road

Road length = 1000 meters

Road width = 6 meters

Spacing = 25 meters

Number of lights:1000÷25=401000 \div 25 = 401000÷25=40

Total lights needed = 40

Each light:

  • 100W LED
  • Price = 4,500 EGP

Total project cost:40×4500=180,000 EGP40 \times 4500 = 180,000 \text{ EGP}40×4500=180,000 EGP

Annual electricity savings:

Around 120,000 EGP

Return on investment:

About 18 months

This proves that when you Choose Street Lights Based on Road Width, you save money and improve performance.


Final Conclusion

10

The most important rule in road lighting is simple:

Choose Street Lights Based on Road Width

Do not start with watt.

Do not start with price.

Start with road width.

Then choose:

  • Correct lumen value
  • Correct pole height
  • Correct spacing
  • Correct lux level
  • Correct LED fixture type

This gives you:

  • Better safety
  • Lower bills
  • Strong visibility
  • Legal compliance
  • Faster return on investment

Professional lighting always starts with one decision:

Choose Street Lights Based on Road Width.

Sources :

Suggested Topics :

Share This Post:

Facebook
Twitter
LinkedIn
Pinterest
Reddit
Tumblr
X
Telegram
WhatsApp
Email
Print

Related Posts

Energy Consumption Comparison Between Traditional and LED High Bay
12Jan

Energy Consumption Comparison Between Traditional and LED High Bay

High bay lighting is one of the most energy-intensive lighting applications in industrial and commercial facilities. Warehouses, factories, logistics centers, […]

Common Lighting Mistakes That Increase Energy Consumption
05Jan

Common Lighting Mistakes That Increase Energy Consumption

Energy efficiency has become a fundamental aspect of modern building design and operation. Despite major advancements in lighting technologies, many […]

Smart Dimming Systems: A Game Changer for Modern Lighting Control
27Dec

Smart Dimming Systems: A Game Changer for Modern Lighting Control

Lighting control has evolved dramatically over the past decade. Fixed lighting levels and manual switches no longer meet the needs […]

Uses of Solar Lighting in Agriculture and Irrigation
23Dec

Uses of Solar Lighting in Agriculture and Irrigation

Modern agricultural operations are evolving rapidly as sustainability, energy efficiency, and reliability become critical priorities. One of the most impactful […]

Are Sensor Lights Worth the Investment? A Comparison of Types and Applications
19Dec

Are Sensor Lights Worth the Investment? A Comparison of Types and Applications

Lighting systems have evolved far beyond manual switches and fixed schedules. As buildings become smarter and energy efficiency becomes a […]

Advanced LED Lighting for Lecture Halls & Auditoriums
15Dec

Advanced LED Lighting for Lecture Halls & Auditoriums

Lecture halls and auditoriums are among the most visually demanding spaces in educational and professional environments. These spaces must support […]

The Effect of LED Lighting on Improving Light Quality While Reducing Energy Use
11Dec

The Effect of LED Lighting on Improving Light Quality While Reducing Energy Use

Lighting is one of the most influential elements in any built environment. It affects how people see, think, feel, and […]

Choosing the Right CRI for Outdoor Parking Lot Illumination
07Dec

Choosing the Right CRI for Outdoor Parking Lot Illumination

Outdoor parking lots play a critical role in safety, navigation, and overall user experience. While factors such as light intensity […]

Creating the Perfect Workspace with LED Lighting
04Dec

Creating the Perfect Workspace with LED Lighting

Designing an effective workspace in 2025 requires more than furniture, technology, or room layout. The foundation of productivity today lies […]

Enhancing Product Visibility with LED Showroom Lighting
30Nov

Enhancing Product Visibility with LED Showroom Lighting

The way a product appears inside a showroom plays a crucial role in shaping the customer’s perception of quality, value, […]

1 2 3 4 5 10
Scroll to Top