array(12) {
["id"]=>
string(4) "3007"
["status"]=>
string(7) "publish"
["url"]=>
string(70) "https://www.solarcontainer.energy/product/mobile-solar-containers.html"
["image"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["title"]=>
string(23) "Mobile Solar Containers"
["description"]=>
string(471) "
SolaraBox Mobile Solar Container brings green energy wherever you need it.
The integrated solar system delivers 400–670 kWh of energy daily. Thanks to foldable solar arrays, the container is rapidly deployable — operating within hours to support power needs across diverse scenarios.
Built for longevity, the SolaraBox solar container is built to withstand harsh environmental conditions and ensure a reliable power supply.
"
["date"]=>
string(16) "2025年8月13日"
["content"]=>
string(18788) "
The SolaraBox mobile solar container is a portable solar power plant that delivers reliable electricity with minimal setup. It's road-ready and quick to deploy, making it ideal for remote worksites, disaster relief, events, and temporary camps — and in many cases, it can replace grid connections or diesel generators.
SolaraBox is built to solve project power needs. The system is modular and easily scalable: you can add multiple units to increase output, and it supports on-grid, off-grid, and hybrid configurations.
Grid connection(on-grid)refers to the technology of connecting solar photovoltaic power systems to the national power grid to achieve energy sharing and complementarity. In some areas with high electricity prices, this technology can be used to feed back excess power to the grid after load absorption to make profit. | Off-grid power generation refers to an independent power generation system that does not rely on the public power grid. It is usually composed of solar panels, batteries, and inverters, and is suitable for areas without grid coverage or unstable power supply. | Hybrid solar power system utilizes an array of solar photovoltaic modules alongside a diesel generator that serves as a backup power source. The diesel generator can act as an auxiliary power supply when the load demand increases significantly. |
Parameters of Mobile Solar Container
| Technical data | | |
| System Type | SolaraBox-20HSO-113KW | SolaraBox-40HSO-226KW |
| Type of container | 20 Feet High Cube Open Side | 40 Feet High Cube Open Side |
| External Dimensions (L*w*H/mm) | 6058*2438*2896 | 12192*2438*2896 |
| Container Weight (Tons) | 3 | 6.74 |
| Solar Array capacity(Pmax/kwp) | 113KW | 226KW |
| Total weight (Tons) | 10.64 | 30.48 |
| Folding & Unfolding Time (Min.) | 120/80 | 240/160 |
| Installation Person | 6 | 12 |
| operating Temperature(°C) | -30~+60 | -30~+60 |
| Unfolded Footprint (L*w*H/m) @21° | 107*6*0.9 | 107*12*0.9 |
| Folded Footprint (L*w*H/m) | 6*2.34*2.9 | 12*2.34*2.9 |
| Max. slope limit | 1% | 1% |
| Compatibility(option 1) | AC output with inverter | AC output with inverter |
| Orientation | Any azimuth by container | Any azimuth by container |
| Solar Panel Type | N Type i-Topcon | N Type i-Topcon |
| Solar Panel Power (Pmax/wp) | 590W per module Tier 1 | 590W per module Tier 1 |
| Quantity of modules | 192 | 384 |
| String capacity(Pmax /kwp) | 113.28 KWP | 226.56 KWP |
| Output Power Volt.¤t(v/Hz) | 220 / 380, 230 / 400, 3L / N / PE or 3L / PE | 220 / 380, 230 / 400, 3L / N / PE or 3L / PE |
| Operating temperature | -30 °C to +60 °C (-86°F to +140 F°) | -30 °C to +60 °C (-86°F to +140 F°) |
| Inverter Brand | GOODWE /SINENG | GOODWE /SINENG |
| Inverter Type | GW100K-GT On-Gird or SN100PT-X On-Gird | GW100K-GT On-Gird or SN100PT-X On-Gird |
| Quantity of inverters (sets) | 1 | 2 |
| Bracket Materials | Hot Galvanized Carbon Steel | Hot Galvanized Carbon Steel |
| Single Bracket Dimension(mm) | 4718*2342*30/48Pages/4 Row | 4718*2342*30/48 Pages/8 Row |
| Angle of Unfolding Bracket (°) | 21 | 21 |
| Length of Unfolding Bracket(m) | 107 | 107 |
| Project area of Unfolding Bracket(m) | 642 | 1284 |
| Certification | TÜV tested, CE-certified | TÜV tested, CE-certified |
| Connection options | On-Grid | On-Grid |
Requires more energy storage. | Whether you need a compact 100 kWh container or a massive 5 MWh containerized battery, our systems are custom-built to your exact requirements. Scale your storage seamlessly with our modular design. |
Adapting to Environmental Challenges | Feature advanced alert systems that continuously monitor weather conditions and initiate instantaneous protective measures to ensure operational safety and reliability. |
Key Features
Portable energy infrastructure that moves your site into the future.
Plug-and-Play Ready to run with minimal setup — unfold and commission in minimal about 120 minutes (fold-away ~80 minutes). Pre-wired modules and an integrated inverter mean crews can get power without trenching or complex wiring. | High, Scalable Output Each SolaraBox delivers 50–168 kWp; add more units to match your project’s needs at any time. That makes it suitable for anything from temporary charging stations to supporting industrial site loads. | Smart Monitoring & Energy Management Built-in EMS and remote monitoring provide real-time diagnostics and control so you can track performance, optimize output, and protect equipment. The system can throttle or shut down other generators during strong PV production. |
Rugged, Climate-Ready Design Engineered for tough field conditions — heavy winds, extreme temperatures and rough sites. Galvanized steel rails plus mobile anchors give secure, easy on-site fixation without permanent ground works. | Flexible Grid Integration Supports on-grid, off-grid and hybrid configurations, so it works as a grid-tie supplement, an independent microgrid, or a hybrid backup. Ideal for construction sites, temporary camps, events, and isolated communities. | Lower Emissions, Better Synergy Cut diesel runtime and fuel costs while reducing CO₂ emissions and maintenance downtime. Pair with battery storage or thermal systems (e.g., hot water) to store excess PV energy and smooth supply during peak demand. |
How to Get Your Mobile Green Energy with SolaraBox?
Step 01: Share your needs
Tell us about your project—whether it’s energy needs for events, residential, or remote construction camp. We listen and help shape your idea.
Step 02: Receive your custom offer
We design a solar container that fits your needs and send you a personalized quote.
Step 03: Watch your SolaraBox come to life
After you approve the quote, we start building. We’ll update you regularly throughout the process.
Step 04: Pick up and learn
Once ready, collect your SolaraBox. We’ll walk you through how to use it and answer all your questions.
Step 05: Long-term support
We provide continuous assistance for any technical issues—so your green energy source keeps running smoothly.
Go green anywhere, anytime. Contact us today and make it happen with SolaraBox.
Applications
SolaraBox always provides reliable customized mobile solar solutions anywhere you need.
| Temporary Power | Temporary power refers to short-term electricity supply set up to meet project or event needs without building permanent grid infrastructure. SolaraBox mobile solar containers can be scaled to meet demand and removed when no longer needed. |
| Large Venues and Events | Concerts, festivals, and sports events often require high power for lighting, sound systems, and visitor facilities. Solar container can be deployed quickly to deliver reliable, noise-free energy, while avoiding the pollution and cost of diesel generators. |
| Camp Power Supply | Short-term camps, or emergency shelters need stable electricity for housing, and communication systems. Solar container offers scalable, off-grid solutions that ensure living and working facilities run smoothly in temporary locations. |
| Seasonal Production Bases | Farms, factories, or warehouses that operate seasonally often need extra energy during peak periods. SolaraBox provides flexible solar power that can be added or removed based on demand, cutting fuel costs and supporting sustainable operations. |
| Long-Term Power | Long-term power refers to continuous electricity supply for operations that run for years. SolaraBox mobile solar containers are cutting costs and emissions over time |
| Industrial Production Sites | Factories and workshops often need reliable power for machinery, welding, and assembly lines. Solar container offers steady solar energy that lowers electricity bills and provides backup security in case of grid failures. |
| Hospitals and Clinics | Healthcare facilities demand uninterrupted electricity for lighting, refrigeration, and critical medical equipment. Solar container provides dependable clean energy, reducing reliance on unstable grids and costly diesel backup systems. |
| Agricultural Operations | Farms require electricity year-round for irrigation, cold storage, and processing. Solar container supports these needs with clean, predictable power, reducing reliance on diesel pumps and helping farms operate more sustainably. |
| Weak Grid Support | Weak grid support means providing reliable, stable power in areas where the public grid is unstable, limited, or too far to extend. |
| Remote Camps in Harsh Terrains | From mountains and islands to desert mining sites, remote camps often face weak or unstable grids. Solar container provides steady solar power to support daily operations and equipment, while reducing costly fuel transport and frequent outages. |
| Remote Settlements | Villages in distant regions often struggle with low-voltage or inconsistent power. Solar container works as a supplemental energy source, stabilizing electricity for lighting, schools, and community facilities. |
| Offshore Oil Platforms | Oil platforms far from shore depend heavily on diesel generators. SolaraBox offers a cleaner alternative by supplying auxiliary solar power, reducing generator load, and lowering emissions in offshore operations. |
| SolaraBox Quality and Security | Each SolaraBox solar container unit is pre-assembled and tested in the factory before shipment. Every component meets strict quality standards, and with our complete after-sales support, you can use it worry-free. |
"
["image_title"]=>
string(15) "solar-container"
["image_alt"]=>
string(15) "solar-container"
["home_desc"]=>
string(0) ""
["images"]=>
array(5) {
[0]=>
array(24) {
["ID"]=>
string(4) "6286"
["id"]=>
string(4) "6286"
["title"]=>
string(21) "green-solar-container"
["filename"]=>
string(21) "5-20250923075749.webp"
["filesize"]=>
string(5) "86990"
["url"]=>
string(62) "https://www.solarcontainer.energy/images/5-20250923075749.webp"
["link"]=>
string(35) "https://www.solarcontainer.energy/5"
["alt"]=>
string(21) "green-solar-container"
["author"]=>
string(1) "1"
["description"]=>
string(0) ""
["caption"]=>
string(0) ""
["name"]=>
string(1) "5"
["status"]=>
string(7) "inherit"
["uploaded_to"]=>
int(0)
["date"]=>
string(19) "2025-09-23 07:57:49"
["modified"]=>
string(19) "2025-09-28 09:15:45"
["menu_order"]=>
int(0)
["mime_type"]=>
string(10) "image/webp"
["type"]=>
string(5) "image"
["subtype"]=>
string(4) "webp"
["icon"]=>
string(69) "https://ks.solarcontainer.energy/wp-includes/images/media/default.png"
["width"]=>
string(3) "600"
["height"]=>
string(3) "450"
["sizes"]=>
array(18) {
["thumbnail"]=>
string(62) "https://www.solarcontainer.energy/images/5-20250923075749.webp"
["thumbnail-width"]=>
string(3) "128"
["thumbnail-height"]=>
string(2) "96"
["medium"]=>
string(62) "https://www.solarcontainer.energy/images/5-20250923075749.webp"
["medium-width"]=>
string(3) "600"
["medium-height"]=>
string(3) "450"
["medium_large"]=>
string(62) "https://www.solarcontainer.energy/images/5-20250923075749.webp"
["medium_large-width"]=>
string(3) "600"
["medium_large-height"]=>
string(3) "450"
["large"]=>
string(62) "https://www.solarcontainer.energy/images/5-20250923075749.webp"
["large-width"]=>
string(3) "600"
["large-height"]=>
string(3) "450"
["1536x1536"]=>
string(62) "https://www.solarcontainer.energy/images/5-20250923075749.webp"
["1536x1536-width"]=>
string(3) "600"
["1536x1536-height"]=>
string(3) "450"
["2048x2048"]=>
string(62) "https://www.solarcontainer.energy/images/5-20250923075749.webp"
["2048x2048-width"]=>
string(3) "600"
["2048x2048-height"]=>
string(3) "450"
}
}
[1]=>
array(24) {
["ID"]=>
string(5) "16197"
["id"]=>
string(5) "16197"
["title"]=>
string(15) "solar-container"
["filename"]=>
string(35) "solar-container-20251015032710.webp"
["filesize"]=>
string(5) "31374"
["url"]=>
string(76) "https://www.solarcontainer.energy/images/solar-container-20251015032710.webp"
["link"]=>
string(51) "https://www.solarcontainer.energy/solar-container-6"
["alt"]=>
string(0) ""
["author"]=>
string(1) "1"
["description"]=>
string(0) ""
["caption"]=>
string(0) ""
["name"]=>
string(17) "solar-container-6"
["status"]=>
string(7) "inherit"
["uploaded_to"]=>
int(0)
["date"]=>
string(19) "2025-10-15 03:27:10"
["modified"]=>
string(19) "2025-10-15 03:27:10"
["menu_order"]=>
int(0)
["mime_type"]=>
string(10) "image/webp"
["type"]=>
string(5) "image"
["subtype"]=>
string(4) "webp"
["icon"]=>
string(69) "https://ks.solarcontainer.energy/wp-includes/images/media/default.png"
["width"]=>
string(3) "600"
["height"]=>
string(3) "450"
["sizes"]=>
array(18) {
["thumbnail"]=>
string(76) "https://www.solarcontainer.energy/images/solar-container-20251015032710.webp"
["thumbnail-width"]=>
string(3) "128"
["thumbnail-height"]=>
string(2) "96"
["medium"]=>
string(76) "https://www.solarcontainer.energy/images/solar-container-20251015032710.webp"
["medium-width"]=>
string(3) "600"
["medium-height"]=>
string(3) "450"
["medium_large"]=>
string(76) "https://www.solarcontainer.energy/images/solar-container-20251015032710.webp"
["medium_large-width"]=>
string(3) "600"
["medium_large-height"]=>
string(3) "450"
["large"]=>
string(76) "https://www.solarcontainer.energy/images/solar-container-20251015032710.webp"
["large-width"]=>
string(3) "600"
["large-height"]=>
string(3) "450"
["1536x1536"]=>
string(76) "https://www.solarcontainer.energy/images/solar-container-20251015032710.webp"
["1536x1536-width"]=>
string(3) "600"
["1536x1536-height"]=>
string(3) "450"
["2048x2048"]=>
string(76) "https://www.solarcontainer.energy/images/solar-container-20251015032710.webp"
["2048x2048-width"]=>
string(3) "600"
["2048x2048-height"]=>
string(3) "450"
}
}
[2]=>
array(24) {
["ID"]=>
string(4) "6284"
["id"]=>
string(4) "6284"
["title"]=>
string(15) "solar-container"
["filename"]=>
string(21) "1-20250923075656.webp"
["filesize"]=>
string(5) "48766"
["url"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["link"]=>
string(35) "https://www.solarcontainer.energy/1"
["alt"]=>
string(15) "solar-container"
["author"]=>
string(1) "1"
["description"]=>
string(0) ""
["caption"]=>
string(0) ""
["name"]=>
string(1) "1"
["status"]=>
string(7) "inherit"
["uploaded_to"]=>
int(0)
["date"]=>
string(19) "2025-09-23 07:56:57"
["modified"]=>
string(19) "2025-09-28 09:13:35"
["menu_order"]=>
int(0)
["mime_type"]=>
string(10) "image/webp"
["type"]=>
string(5) "image"
["subtype"]=>
string(4) "webp"
["icon"]=>
string(69) "https://ks.solarcontainer.energy/wp-includes/images/media/default.png"
["width"]=>
string(3) "600"
["height"]=>
string(3) "450"
["sizes"]=>
array(18) {
["thumbnail"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["thumbnail-width"]=>
string(3) "128"
["thumbnail-height"]=>
string(2) "96"
["medium"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["medium-width"]=>
string(3) "600"
["medium-height"]=>
string(3) "450"
["medium_large"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["medium_large-width"]=>
string(3) "600"
["medium_large-height"]=>
string(3) "450"
["large"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["large-width"]=>
string(3) "600"
["large-height"]=>
string(3) "450"
["1536x1536"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["1536x1536-width"]=>
string(3) "600"
["1536x1536-height"]=>
string(3) "450"
["2048x2048"]=>
string(62) "https://www.solarcontainer.energy/images/1-20250923075656.webp"
["2048x2048-width"]=>
string(3) "600"
["2048x2048-height"]=>
string(3) "450"
}
}
[3]=>
array(24) {
["ID"]=>
string(4) "6285"
["id"]=>
string(4) "6285"
["title"]=>
string(17) "solar-container-1"
["filename"]=>
string(21) "2-20250923075720.webp"
["filesize"]=>
string(5) "45586"
["url"]=>
string(62) "https://www.solarcontainer.energy/images/2-20250923075720.webp"
["link"]=>
string(35) "https://www.solarcontainer.energy/2"
["alt"]=>
string(17) "solar-container-1"
["author"]=>
string(1) "1"
["description"]=>
string(0) ""
["caption"]=>
string(0) ""
["name"]=>
string(1) "2"
["status"]=>
string(7) "inherit"
["uploaded_to"]=>
int(0)
["date"]=>
string(19) "2025-09-23 07:57:20"
["modified"]=>
string(19) "2025-09-28 09:16:19"
["menu_order"]=>
int(0)
["mime_type"]=>
string(10) "image/webp"
["type"]=>
string(5) "image"
["subtype"]=>
string(4) "webp"
["icon"]=>
string(69) "https://ks.solarcontainer.energy/wp-includes/images/media/default.png"
["width"]=>
string(3) "600"
["height"]=>
string(3) "450"
["sizes"]=>
array(18) {
["thumbnail"]=>
string(62) "https://www.solarcontainer.energy/images/2-20250923075720.webp"
["thumbnail-width"]=>
string(3) "128"
["thumbnail-height"]=>
string(2) "96"
["medium"]=>
string(62) "https://www.solarcontainer.energy/images/2-20250923075720.webp"
["medium-width"]=>
string(3) "600"
["medium-height"]=>
string(3) "450"
["medium_large"]=>
string(62) "https://www.solarcontainer.energy/images/2-20250923075720.webp"
["medium_large-width"]=>
string(3) "600"
["medium_large-height"]=>
string(3) "450"
["large"]=>
string(62) "https://www.solarcontainer.energy/images/2-20250923075720.webp"
["large-width"]=>
string(3) "600"
["large-height"]=>
string(3) "450"
["1536x1536"]=>
string(62) "https://www.solarcontainer.energy/images/2-20250923075720.webp"
["1536x1536-width"]=>
string(3) "600"
["1536x1536-height"]=>
string(3) "450"
["2048x2048"]=>
string(62) "https://www.solarcontainer.energy/images/2-20250923075720.webp"
["2048x2048-width"]=>
string(3) "600"
["2048x2048-height"]=>
string(3) "450"
}
}
[4]=>
array(24) {
["ID"]=>
string(4) "6287"
["id"]=>
string(4) "6287"
["title"]=>
string(17) "solar-container-2"
["filename"]=>
string(21) "3-20250923075749.webp"
["filesize"]=>
string(5) "39414"
["url"]=>
string(62) "https://www.solarcontainer.energy/images/3-20250923075749.webp"
["link"]=>
string(35) "https://www.solarcontainer.energy/3"
["alt"]=>
string(17) "solar-container-2"
["author"]=>
string(1) "1"
["description"]=>
string(0) ""
["caption"]=>
string(0) ""
["name"]=>
string(1) "3"
["status"]=>
string(7) "inherit"
["uploaded_to"]=>
int(0)
["date"]=>
string(19) "2025-09-23 07:57:49"
["modified"]=>
string(19) "2025-09-28 09:16:28"
["menu_order"]=>
int(0)
["mime_type"]=>
string(10) "image/webp"
["type"]=>
string(5) "image"
["subtype"]=>
string(4) "webp"
["icon"]=>
string(69) "https://ks.solarcontainer.energy/wp-includes/images/media/default.png"
["width"]=>
string(3) "600"
["height"]=>
string(3) "450"
["sizes"]=>
array(18) {
["thumbnail"]=>
string(62) "https://www.solarcontainer.energy/images/3-20250923075749.webp"
["thumbnail-width"]=>
string(3) "128"
["thumbnail-height"]=>
string(2) "96"
["medium"]=>
string(62) "https://www.solarcontainer.energy/images/3-20250923075749.webp"
["medium-width"]=>
string(3) "600"
["medium-height"]=>
string(3) "450"
["medium_large"]=>
string(62) "https://www.solarcontainer.energy/images/3-20250923075749.webp"
["medium_large-width"]=>
string(3) "600"
["medium_large-height"]=>
string(3) "450"
["large"]=>
string(62) "https://www.solarcontainer.energy/images/3-20250923075749.webp"
["large-width"]=>
string(3) "600"
["large-height"]=>
string(3) "450"
["1536x1536"]=>
string(62) "https://www.solarcontainer.energy/images/3-20250923075749.webp"
["1536x1536-width"]=>
string(3) "600"
["1536x1536-height"]=>
string(3) "450"
["2048x2048"]=>
string(62) "https://www.solarcontainer.energy/images/3-20250923075749.webp"
["2048x2048-width"]=>
string(3) "600"
["2048x2048-height"]=>
string(3) "450"
}
}
}
}