Recent Projects

Integration of IP Camera with Solar Lighting System (A051)

| August 3, 2024 | 393 |
  • Case Summary:

  • In remote mountainous areas, such as wilderness exploration and nature reserves, where there is no electricity supply but a need for area surveillance or lighting, the products in this solution can meet such requirements effectively.

    Diverse derivative products, priced variably, cater to the premium demands of various sectors.
    1. Solar Streetlight + Ultra HD Surveillance (WiFi Version)
    2. Solar Streetlight + Ultra HD Surveillance (4G SIM Card Version)
    3. Solar Ultra HD Surveillance (WiFi Version)
    4. Solar Ultra HD Surveillance (4G SIM Card Version)

    Now accepting pre-orders, order here.

    Oder Now


Description:

Overview:

Combining the functions of a solar-powered lighting system with an IP surveillance camera to create a comprehensive security solution.
Designed for outdoor applications, such as public spaces, parking lots, and remote areas.

This proposal outlines a solar lighting solution designed to provide reliable illumination using LiFePO4 batteries, high-efficiency 10W and 30W LED lighting integrated with Wireless PTZ Dome Camera and the capability to operate for 3-5 days during cloudy weather conditions. The system is designed to optimize energy consumption by varying the brightness throughout the night.

Power Requirements

1. Wi-Fi Camera Power Consumption
– Typical Power Usage: Wi-Fi cameras typically consume between 2-5W, depending on the model and features (such as night vision, resolution, and continuous recording).
– Daily Energy Consumption:
For a 5W camera operating continuously: 5 Wx 24 hours = 120 Wh/day.

2. Total System Power RequirementsLighting Requirements:
10W LED: 66 Wh/day (as calculated previously)30W LED: 198 Wh/day (as calculated previously)Combined Power Consumption:
with 10w LED: 66 Wh + 120 Wh = 186 Wh/daywith 3ow LED: 198 Wh + 120 Wh = 318 Wh/day.

3. Battery Sizing
– Battery Capacity Requirement (to support up to 5 cloudy days):
– 10W LED + Camera:186 Wh/day x 5 days = 930 Wh
– 30W LED + Camera:318 Wh/day x 5 days = 1590 Wh

Convert to Amp-hours for LiFeP04 battery (12V system):
– 10W LED + Camera: 930 Wh/12V≈ 77.5 Ah
– 30W LED + Camera: 1590 Wh/12V≈ 132.5 Ah

4. Recommended Battery Capacity:
– 10W LED + Camera: Use an 80 Ah battery
– 30W LED + Camera: Use a 140 Ah battery

5. Solar Panel Sizing
• Average Daily Sunlight Hours: Assume 4 peak sunlight hours for calculations.
• Required Solar Panel Capacity:

– 10W LED + Camera:

– 30W LED + Cammera:

• Recomended Solar Panel ca pacity.

– 10W LED + Camera, Use a 7OW solar panel.
– 30W LED + camera: Use a 120W solar penel.

6. System Configuration.

• 10W LED + Wi-Fi Camera:
– Battery: 80 Ah LiFePO4
– Solar Panels: 70W capacity
– Charge Controller: MPPT type
• 30W LED + Wi-Fi Camera:
– Battery: 140 Ah LiFePO4
– Solar Panels: 120W capacity
– Charge Controller: MPPT type

7. Additional Considerations
• Camera Features:
– Motion Detection: To reduce energy consumption, use motion detection features to record only when activity is detected.
– Recording and Storage: Consider how footage will be stored (e.g., local storage, cloud-based solutions) and the power requirements for any additional equipment.

• Wireless Connectivity:
– Network Requirements: Ensure that the camera’s Wi-Fi capabilities can connect to a network, either via a dedicated router or a mesh network system.
– Signal Range: Evaluate the Wi-Fi signal strength and range to ensure the camera can transmit data effectively.
• Energy Management:
– Smart Control Systems: Implement smart energy management systems to prioritize essential functions during periods of low solar energy availability.
– Efficiency Optimizations: Use energy-efficient components and settings to extend the operational time during cloudy days.
• Environmental Factors:
– Location: Ensure the system components are suitable for the local environmental conditions, such as temperature fluctuations, humidity, and potential bstructions to sunlight.
– Maintenance: Regularly maintain solar panels, batteries, and other components to ensure optimal performance and longevity.

Product Offerings

We currently have four main product categories available for sale:

Solar Street light + Wi-Fi PTZ Camera.
Cost: US$66
The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar Street light +4G PTZ Camera.
Cost: US$71

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar 1080P Wi-Fi Camera. 
Cost: US$33.9

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar  4G  PTZ Camera.

Cost:US$36

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Key Benefits:

1. Easy Installation: Unlike wired security systems that require professional wiring, solar-powered systems are significantly easier to install. There’s no need for hard wiring, making setup hassle-free.
2. Wireless Convenience: Solar security cameras are truly wireless. They connect via Wi-Fi, eliminating the need for placement near a power supply. This convenience is especially valuable for remote locations.

3. Continuous Recording: Quality solar systems can record for 12-plus hours on battery alone, even without sunlight. Advances in battery storage technology contribute to this extended recording capability.
4. Long Lifespan: Well-maintained solar-powered security systems typically last between 5 and 10 years. These robust, waterproof systems require minimal maintenance.
5. No Direct Sunlight Required: Solar panels can generate power even during cloudy or rainy weather, ensuring consistent operation.

Share this:

10kW Home Solar Power Storage System Solution (A050)

Related All-in-One Solutions

Recent Projects

Integration of IP Camera with Solar Lighting System (A051)

| August 3, 2024 | 393 |
  • Summary:

  • In remote mountainous areas, such as wilderness exploration and nature reserves, where there is no electricity supply but a need for area surveillance or lighting, the products in this solution can meet such requirements effectively.

    Diverse derivative products, priced variably, cater to the premium demands of various sectors.
    1. Solar Streetlight + Ultra HD Surveillance (WiFi Version)
    2. Solar Streetlight + Ultra HD Surveillance (4G SIM Card Version)
    3. Solar Ultra HD Surveillance (WiFi Version)
    4. Solar Ultra HD Surveillance (4G SIM Card Version)

    Now accepting pre-orders, order here.

    Oder Now


Description:

Overview:

Combining the functions of a solar-powered lighting system with an IP surveillance camera to create a comprehensive security solution.
Designed for outdoor applications, such as public spaces, parking lots, and remote areas.

This proposal outlines a solar lighting solution designed to provide reliable illumination using LiFePO4 batteries, high-efficiency 10W and 30W LED lighting integrated with Wireless PTZ Dome Camera and the capability to operate for 3-5 days during cloudy weather conditions. The system is designed to optimize energy consumption by varying the brightness throughout the night.

Power Requirements

1. Wi-Fi Camera Power Consumption
– Typical Power Usage: Wi-Fi cameras typically consume between 2-5W, depending on the model and features (such as night vision, resolution, and continuous recording).
– Daily Energy Consumption:
For a 5W camera operating continuously: 5 Wx 24 hours = 120 Wh/day.

2. Total System Power RequirementsLighting Requirements:
10W LED: 66 Wh/day (as calculated previously)30W LED: 198 Wh/day (as calculated previously)Combined Power Consumption:
with 10w LED: 66 Wh + 120 Wh = 186 Wh/daywith 3ow LED: 198 Wh + 120 Wh = 318 Wh/day.

3. Battery Sizing
– Battery Capacity Requirement (to support up to 5 cloudy days):
– 10W LED + Camera:186 Wh/day x 5 days = 930 Wh
– 30W LED + Camera:318 Wh/day x 5 days = 1590 Wh

Convert to Amp-hours for LiFeP04 battery (12V system):
– 10W LED + Camera: 930 Wh/12V≈ 77.5 Ah
– 30W LED + Camera: 1590 Wh/12V≈ 132.5 Ah

4. Recommended Battery Capacity:
– 10W LED + Camera: Use an 80 Ah battery
– 30W LED + Camera: Use a 140 Ah battery

5. Solar Panel Sizing
• Average Daily Sunlight Hours: Assume 4 peak sunlight hours for calculations.
• Required Solar Panel Capacity:

– 10W LED + Camera:

– 30W LED + Cammera:

• Recomended Solar Panel ca pacity.

– 10W LED + Camera, Use a 7OW solar panel.
– 30W LED + camera: Use a 120W solar penel.

6. System Configuration.

• 10W LED + Wi-Fi Camera:
– Battery: 80 Ah LiFePO4
– Solar Panels: 70W capacity
– Charge Controller: MPPT type
• 30W LED + Wi-Fi Camera:
– Battery: 140 Ah LiFePO4
– Solar Panels: 120W capacity
– Charge Controller: MPPT type

7. Additional Considerations
• Camera Features:
– Motion Detection: To reduce energy consumption, use motion detection features to record only when activity is detected.
– Recording and Storage: Consider how footage will be stored (e.g., local storage, cloud-based solutions) and the power requirements for any additional equipment.

• Wireless Connectivity:
– Network Requirements: Ensure that the camera’s Wi-Fi capabilities can connect to a network, either via a dedicated router or a mesh network system.
– Signal Range: Evaluate the Wi-Fi signal strength and range to ensure the camera can transmit data effectively.
• Energy Management:
– Smart Control Systems: Implement smart energy management systems to prioritize essential functions during periods of low solar energy availability.
– Efficiency Optimizations: Use energy-efficient components and settings to extend the operational time during cloudy days.
• Environmental Factors:
– Location: Ensure the system components are suitable for the local environmental conditions, such as temperature fluctuations, humidity, and potential bstructions to sunlight.
– Maintenance: Regularly maintain solar panels, batteries, and other components to ensure optimal performance and longevity.

Product Offerings

We currently have four main product categories available for sale:

Solar Street light + Wi-Fi PTZ Camera.
Cost: US$66
The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar Street light +4G PTZ Camera.
Cost: US$71

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar 1080P Wi-Fi Camera. 
Cost: US$33.9

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar  4G  PTZ Camera.

Cost:US$36

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Key Benefits:

1. Easy Installation: Unlike wired security systems that require professional wiring, solar-powered systems are significantly easier to install. There’s no need for hard wiring, making setup hassle-free.
2. Wireless Convenience: Solar security cameras are truly wireless. They connect via Wi-Fi, eliminating the need for placement near a power supply. This convenience is especially valuable for remote locations.

3. Continuous Recording: Quality solar systems can record for 12-plus hours on battery alone, even without sunlight. Advances in battery storage technology contribute to this extended recording capability.
4. Long Lifespan: Well-maintained solar-powered security systems typically last between 5 and 10 years. These robust, waterproof systems require minimal maintenance.
5. No Direct Sunlight Required: Solar panels can generate power even during cloudy or rainy weather, ensuring consistent operation.

Share this:

10kW Home Solar Power Storage System Solution (A050)

Related All-in-One Solutions

Integration of IP Camera with Solar Lighting System (A051)

| August 3, 2024 | 393 |

Summary:

In remote mountainous areas, such as wilderness exploration and nature reserves, where there is no electricity supply but a need for area surveillance or lighting, the products in this solution can meet such requirements effectively.

Diverse derivative products, priced variably, cater to the premium demands of various sectors.
1. Solar Streetlight + Ultra HD Surveillance (WiFi Version)
2. Solar Streetlight + Ultra HD Surveillance (4G SIM Card Version)
3. Solar Ultra HD Surveillance (WiFi Version)
4. Solar Ultra HD Surveillance (4G SIM Card Version)

Now accepting pre-orders, order here.

Oder Now


Description:

Overview:

Combining the functions of a solar-powered lighting system with an IP surveillance camera to create a comprehensive security solution.
Designed for outdoor applications, such as public spaces, parking lots, and remote areas.

This proposal outlines a solar lighting solution designed to provide reliable illumination using LiFePO4 batteries, high-efficiency 10W and 30W LED lighting integrated with Wireless PTZ Dome Camera and the capability to operate for 3-5 days during cloudy weather conditions. The system is designed to optimize energy consumption by varying the brightness throughout the night.

Power Requirements

1. Wi-Fi Camera Power Consumption
– Typical Power Usage: Wi-Fi cameras typically consume between 2-5W, depending on the model and features (such as night vision, resolution, and continuous recording).
– Daily Energy Consumption:
For a 5W camera operating continuously: 5 Wx 24 hours = 120 Wh/day.

2. Total System Power RequirementsLighting Requirements:
10W LED: 66 Wh/day (as calculated previously)30W LED: 198 Wh/day (as calculated previously)Combined Power Consumption:
with 10w LED: 66 Wh + 120 Wh = 186 Wh/daywith 3ow LED: 198 Wh + 120 Wh = 318 Wh/day.

3. Battery Sizing
– Battery Capacity Requirement (to support up to 5 cloudy days):
– 10W LED + Camera:186 Wh/day x 5 days = 930 Wh
– 30W LED + Camera:318 Wh/day x 5 days = 1590 Wh

Convert to Amp-hours for LiFeP04 battery (12V system):
– 10W LED + Camera: 930 Wh/12V≈ 77.5 Ah
– 30W LED + Camera: 1590 Wh/12V≈ 132.5 Ah

4. Recommended Battery Capacity:
– 10W LED + Camera: Use an 80 Ah battery
– 30W LED + Camera: Use a 140 Ah battery

5. Solar Panel Sizing
• Average Daily Sunlight Hours: Assume 4 peak sunlight hours for calculations.
• Required Solar Panel Capacity:

– 10W LED + Camera:

– 30W LED + Cammera:

• Recomended Solar Panel ca pacity.

– 10W LED + Camera, Use a 7OW solar panel.
– 30W LED + camera: Use a 120W solar penel.

6. System Configuration.

• 10W LED + Wi-Fi Camera:
– Battery: 80 Ah LiFePO4
– Solar Panels: 70W capacity
– Charge Controller: MPPT type
• 30W LED + Wi-Fi Camera:
– Battery: 140 Ah LiFePO4
– Solar Panels: 120W capacity
– Charge Controller: MPPT type

7. Additional Considerations
• Camera Features:
– Motion Detection: To reduce energy consumption, use motion detection features to record only when activity is detected.
– Recording and Storage: Consider how footage will be stored (e.g., local storage, cloud-based solutions) and the power requirements for any additional equipment.

• Wireless Connectivity:
– Network Requirements: Ensure that the camera’s Wi-Fi capabilities can connect to a network, either via a dedicated router or a mesh network system.
– Signal Range: Evaluate the Wi-Fi signal strength and range to ensure the camera can transmit data effectively.
• Energy Management:
– Smart Control Systems: Implement smart energy management systems to prioritize essential functions during periods of low solar energy availability.
– Efficiency Optimizations: Use energy-efficient components and settings to extend the operational time during cloudy days.
• Environmental Factors:
– Location: Ensure the system components are suitable for the local environmental conditions, such as temperature fluctuations, humidity, and potential bstructions to sunlight.
– Maintenance: Regularly maintain solar panels, batteries, and other components to ensure optimal performance and longevity.

Product Offerings

We currently have four main product categories available for sale:

Solar Street light + Wi-Fi PTZ Camera.
Cost: US$66
The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar Street light +4G PTZ Camera.
Cost: US$71

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar 1080P Wi-Fi Camera. 
Cost: US$33.9

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Solar  4G  PTZ Camera.

Cost:US$36

The product delivery time is 7 to 15 days globally, excluding shipping costs. Wholesale orders and commercial collaborations are welcome.

Key Benefits:

1. Easy Installation: Unlike wired security systems that require professional wiring, solar-powered systems are significantly easier to install. There’s no need for hard wiring, making setup hassle-free.
2. Wireless Convenience: Solar security cameras are truly wireless. They connect via Wi-Fi, eliminating the need for placement near a power supply. This convenience is especially valuable for remote locations.

3. Continuous Recording: Quality solar systems can record for 12-plus hours on battery alone, even without sunlight. Advances in battery storage technology contribute to this extended recording capability.
4. Long Lifespan: Well-maintained solar-powered security systems typically last between 5 and 10 years. These robust, waterproof systems require minimal maintenance.
5. No Direct Sunlight Required: Solar panels can generate power even during cloudy or rainy weather, ensuring consistent operation.

Share this:

10kW Home Solar Power Storage System Solution (A050)

Related All-in-One Solutions